Document q8aBErnyzxXMz52m6beM6yKq
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Study Title
Soil Adsorption/Desorption Study of Potassium Perfluorooctanesulfonate (PFOS)
Data Requirement Based on OECD 106
Author
Mark E. Ellefson
Study Initiation Date October 17,2000
Study Completion Date Date of Signing
Performing Laboratory
3M Environmental Laboratory Building 2-3E-09,935 Bush Avenue
St. Paul, MN 55106 Project Identification 3M Laboratory Report No: E00-13 11
Total Number of Pages
703
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GLP Compliance Statement
Study Title:
Soil AdsorptiodDesorption Study of Potassium Perfluorooctanesulfonate (PFOS)
Study Identification Number: EOO-1311
This study was conducted in compliance with Toxic Substances Control Act (TSCA) Good Laboratory Practice (GLP) Standards with the exceptions listed below:
Exceptions to GLP compliance:
40 CFR 972.130(e): There is not an electronic audit trail of corrections. The authenticated hardcopy printouts are considered the original raw data.
William K. Reagen, Testing Facility Management
Date
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Quality Assurance Statement
Study Title: Soil AdsorptiodDesorption of Potassium Perfluorooctanesulfonate (PFOS) Study Identification Number: E00-13 11
This study was audited by the 3M Environmental Laboratory Quality Assurance Unit (QAU), as indicated in the following table. The findings were reported to the study director and laboratory management.
Inspection Dates
911 9/00
~
~~~
~
11/07/00
4/18/01
511 1/01
~
~
~~
~
5/14/01
5/17/01
5/22/01
512510 1
Phase
Protocol
~~
In-phase Data (Tier I) Data (Tier II&III)
~~
Data (Tier II&III) Data (Tier II&III) Data (Tier II&III)
Final Report
Date Reported to Management Study Director
9/20/00
~
11/07/00
9/20/00 11/07/00
411810 1
4/18/01
511 1/01
~
5/14/01
511 1/01 5/14/01
5/17/01 512210 1
5/17/01
~
512210 1
512510 1
512510 1
QAU Repvesedative
6-"/-a1
Date
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Table of Contents
GLP Compliance Statement ...................................................................................................... 3
Quality Assurance Statement..................................................................................................... 4
List of Tables ........................................................................................................................... 6
Study Personnel and Contributors .............................................................................................. 6
Location of Archives ................................................................................................................ 7
Summary ................................................................................................................................. 7
Introduction ............................................................................................................................. 8
Purpose ........................................................................................................................................... 8
Materials and Methods.............................................................................................................. 1 0 Chemical Characterization ............................................................................................................... 10
Method Summaries .......................................................................................................................... 11 Specimen Collection and Analysis .................................................................................................... 1 4
Results and Discussion ............................................................................................................. 16
Data Quality Objectives ................................................................................................................... 16 Statistical Methods and Calculations ................................................................................................. 17 Data Summary and Discussion ......................................................................................................... 17
Conclusions ............................................................................................................................. 23
References ............................................................................................................................... 23
Signatures ................................................................................................................................ 24
Appendix A: Study Protocol EOO- 1311- ..................................................................................... 25
Appendix B: Analytical Methods ............................................................................................... 26
ETS-8-159 "Preparation of Soil Samples for Preliminary (Tier I) Sorption Studies for Fluorochemicals as the Test Substance"...................................................................................................................... 51
ETS-8-160 "Preparation of Soil Samples for Screening (Tier 11) and Advanced (Tier 111) Sorption
Studies for Fluorochemicals as the Test Substance"............................................................................ 74 OECD 106 "Adsorption - Desorption Using a Batch Equilibrium Method" ......................................... 89 ETS-8-155 "Analysis of Potassium Perfluorooctanesulfonate or Other Fluorochemicals in Waste Stream of Water Extracts Using HPLC-Electrospraylhlass Spectrometry" ........................................... 133 ETS-8-110 "Analysis of Potassium Perfluorooctanesulfonate or Other Fluorochemicals in Water Extracts Using HPLC-ElectrosprayiMass Spectrometry/Mass Spectrometry" ....................................... 142
Appendix C: Sample Preparation Sheets .................................................................................... 27 Appendix D: Indi.vi.dual Sample Data................................................................................................ 28
Appendix E: Quality Control Sample Data ................................................................................. 29
Appendix F: Notes to File and Deviation forms.......................................................................... 30
Appendix G: Chromatograms .................................................................................................... 31
Appendix H: Raw Data Summaries............................................................................................ 32
Appendix I: Traceability Information......................................................................................... 33
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List of Tables
Table 1. Summary Table of PFOS Adsorb/Desorb Tier I Studies..................................................... 7 Table 2. Summary Table of PFOS Adsorb/Desorb Tier I1 Studies ................................................... 8 Table 3. Summary Table of PFOS AdsorbDesorb Tier I11 Studies.................................................. 8
Table 4. Characterization of the Test Substance, Test System, and Analytical Reference Substances .............................................................................. ........................................... 10
Table 5 . Test System Distribution for Study LRN-E00-1311 ........................................................... 13 Table 6. Sample Collection and Preparation for Study LRN-EOO- 1311...........................................14 Table 7. Suitable Analytical Method Determination......................................................................... 17
Table 8. Suitable Test Vessel Determination..................................................................................... 17 Table 9. Equilibrium Time for Adsorption of PFOS......................................................................... 18 Table 10: Suitable Desorb Solvent, Methanol ................................................................................... 19
Table 11. Stability of PFOS during the Study Period....................................................................... 20 Table 12. Adsorption Kinetics of PFOS, 1 5 Soi1:Solution Ratio, 48 hour Time Point .................... 20 Table 13. Desorption Kinetics of PFOS, 1:5 Soi1:Solution Ratio, 48 hour Time Point ....................2 1 Table 14. Adsorption Isotherms......................................................................................................... 22
Table 15. Desorption Isotherms.........................................................................................................23
Study Personnel and Contributors
Study Director
Mark E. Ellefson
3M Environmental Laboratory Building 2-3E-09 935 Bush Avenue St. Paul, MN 55106
Sponsor
William K. Reagan, Laboratory Manager
3M Environmental Laboratory Building 2-3E-09 935 Bush Avenue St. Paul, MN 55106
3M Environmental Laboratory and Professional Services Contributing Personnel
Cindy M. Carlson (Pace Analytical Services, Inc., 1700 Elm St., Minneapolis, MN 55144) Linda A. Goodspeed (Braun Intertec Corporation, 6875 Washington Ave. South, Minneapolis, MN 55439) Kristin L. Terrell (Braun Intertec Corporation, 6875 Washington Ave. South, Minneapolis, MN 55439) Mark L. Anderson (Braun Intertec Corporation, 6875 Washington Ave. South, Minneapolis, MN 55439)
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Location of Archives
All original raw data and the report have been archived at the 3M Environmental Laboratory. The test materials and analytical reference standard reserve samples, as well as the samples pertaining to the analytical phase of this study are archived at the 3M Environmental Laboratory.
Reserve samples, digital copies of original data and all original paper data will be retained in the archives of 3M Environmental Laboratory for a period of at least 10 years following the effective date of the applicable final test rule.
Summary
A preliminary, screening, and advanced study of the soil adsorptioddesorption of Potassium Perfluorooctanesulfonate was performed to better understand partitioning under a variety of environmental conditions. Specifically, three types of soil, one sediment, and one sludge were tested. Analyses were conducted as described by 3M Environmental L,aboratory Analytical Methods ETS-8-159 "Preparation of Soil Samples for Preliminary (Tier I) Sorption Studies for Fluorochemicals as the Test Substance" and ETS-8-160 "Preparation of Soil Samples for Screening (Tier 11)and Advanced (Tier 111) Sorption Studies for Fluorochemicals as the Test Substance" (Appendix A), according to OECD Guideline 106 "Adsorption - Desorption Using a Batch Equilibrium Method".
Results of the study are presented in the following tables:
Table 1. Summary Table of PFOS AdsorbDesorb Tier I Studies
Question
Is the analytical method appropriatehdequate for the study?
What is the best test vessel to use?
What is the equilibrium time and amount adsorbed at equilibriuiii`?
1 What is a suitable desorption solvent?
What is the optimal soi1:solution ratio?
Conclusion
The 1 :5 soil:solution ratio shows a >50% adsorption for both soils tested. The equilibrium time is 48 hours.
1 II Methanol is a suitable desorption solvent.
The optimal soi1:solution
Is the test substance sufficiently stable during the study period? The test substance is stable during the course of the study.
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Table 2. Summary Table of PFOS AdsorbDesorb Tier 11 Studies
I
Clay (ST-1)
I
Clay Loam (ST-2)
Sandy Loam (ST-3)
River Sedimcnt (STSed)
I Domestic Sludge (ST-Slg) I
0.0183
I
2.6
I
70.4
0.00972
2.6
31.4
0.0353
2.8
126
0.00742
1.3
57.1
<0.120
I
NA
I
NA
Table 3. Summary Table of PFOS AdsorbDesorb Tier III Studies
I ~aiidy~oarn I
River Seditiieiit Doinestic Sludge
0.0349
0.047 1 0.0100 < 0.237
0.0919 0.0421 0.0560 0.0094 0.0568
0.104
0.082 0.222 0.039 29.5
Introduction
F -F
FF
F.
F -F
POTASSIUMPERFLUOROOCTANESULFO(PNFAOTSE)
CAS Number: 2795-39-3
Chemical Formula: CgF17S03K
Molecular Weight: 538.22 g/mol
Purpose
Adsorption/desorption studies are useful for generating essential information on the mobility of chemicals and their distribution in the soil, water, and air compartments of our biosphere. They can be used in the prediction or estimation of the availability of a chemical for degradation,
transformation and uptake by organisms; soil leaching profile; volatility from soil; and run-off from land surfaces into natural waters. Adsorption data can also be used for comparative and
modeling purposes.
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The distribution of a chemical between soil and aqueous phases is a complex process depending on a number of different factors: the chemical nature of the substance, the characteristics of the soil, and climatic factors such as rainfall, temperature, sunlight and wind. Thus, the numerous phenomena and mechanisms involved in the process of adsorption of a chemical by soil cannot be completely defined by a simplified laboratory model such as the present guideline. However, even if this attempt cannot cover all of the environmental possibilities cases, it provides valuable information on the environmental relevance of the adsorption of a cheinical.1
OECD guideline 106 is aimed at estimating the adsorptiorddesorption behavior of a substance on soils. The goal is to obtain a sorption value that can be used to predict partitioning under a variety of environmental conditions. Therefore, equilibrium adsorption coefficients for a chemical onto various soils are determined as a function of soil characteristics. Different soil types must be used in order to emulate the interactions of a given substance with naturally occurring soils. The soil parameters that are believed most important for adsorption are pH, organic carbon content, clay content, and soil texture. The procedures outlined in the guideline are designed to evaluate the adsorption of a chemical on different soil types that have a varying range of pH, organic carbon content, and soil texture. The guideline is comprised of three tiers:
1.1 Tier I: The Preliminary Study
1.1.1 The preliminary study is designed to determine: a) a suitable analytical method
b) the adsorption of the test substance onto the surfaces of the test vessels
c) the equilibration time for adsorption and the amount of test substance adsorbed at equilibrium
d) a suitable desorption solvent
e) the soi1:aqueous solution ratio
f) the stability of the test substance during the study period
1.1.2 The preparatory methodology for Tier I is described in the 3M Environmental Laboratory Method ETS-8- 159: Preparation of Soil Samples for Preliminary (Tier I) Sorption Studies for Fluorochemicals as the Test Substance (based on OECD Guideline 106).
1.2 Tier 11: Screening Study: 1.2.1 The screening study is designed to study the adsorption of the test substance in three different soil systems, one sediment, and one dried sludge by means of: a) adsorption kinetics at a single concentration
b) determination of distribution coefficients Kd and Koc
1.2.2 The preparatory methodology for Tier I1 is described in the 3M Environmental Laboratory Method ETS-8-160: Preparation of Soil Samples for Screening (Tier 11) and Advanced (Tier 111) Sorption Studies for Fluorochemicals as the Test Substance (based on OECD Guideline 106).
1.3 Tier 111: Adsorption Isotherms and Desorption Kinetics/Desorption Isotherms 1.3.1 The advanced study is designed to: a) determine the Freundlich adsorption isotherms that, in turn, determine the influence of concentration on the extent of adsorption onto the soils, sediment
' According to OECD Guideline 106
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1.3.2
and sludge.
b) study desorption by means of determining desorption kinetics/Freundlich desorption isotherms
The preparatory methodology for Tier 111is described in the 3M Environmental Laboratory Method ETS-8-160: Preparation of Soil Samples for Screening (Tier 11) and Advanced (Tier 111) Sorption Studies for Fluorochemicals as the Test Substance (based on OECD Guideline 106).
Materials and Methods
Chemical Characterization
Table 4. Characterization of the Test Substance, Test System, and Analytical Reference Substances
Test Substance
I
PFOS
I
THPFOS
1
Source
3M SpecialtyChemicals, Bldg. 236IB-10
SynQuest Labs
I Expiration Date
1 8/31/2001
1 none
I
I Storage Conditions
I Frozen
I Frozen
I
I TCR Identification Number I Physical Description
1 TCR-00017-046 I White Powder
I TCR-00017-047
I
I Whitepowder
I
I 97.9%
1 TBD
I
ASTM Type I Water Natural Seawater
Aqucous Solution of 3.5% Sodium Chloride n-Octanol
12.7uglnlz, ** 20.2 u g l d ** 56.0 udmL ***
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Soil Type
Source Expiration Date Storage
I
I
Agvise 1:2/31/2015
I I LotNumber
I 1 Description
00-2407
Driedand sieved
%Organic
Carbon
I %Sand
2.6%
1 16%
Barnes
I
I Agvise 12/31/2015
Room Temperature
I 00-2404 1 Driedand
sieved
4.9%
I 39%
I Clay Loam
I
Agvise
I 12/31/2015
Room
1.
Temperature 00-2405
Dried and sieved
2.6%
I 21%
Sandy Loam
River Sediment
Agvise
1 Aevise
Domestic Sludge
1 NIST -1
811I20 15
12/3 1/20 15
1013 1I2005
99-2564 Dried and
2.8% 5 8% 22%
I 00-2046
Dried and
I 2781 I
Dried and
1.3%
I 39%
1
42%
NIA
I I1 NIA N/A
Method Summaries
0 ETS-8-159 "Preparation of Soil Samples for Preliminary (Tier I)Sorption Studies for Fluorochemicals as the Test Substance"
0 Suitable Analytical Method:
A soil of high adsorbability (high organic carbon and clay content) is agitated with an appropriate volume of 0.01 M CaC12 solution at a 1 3 (w:v) ratio for a minimum of 4 hours. The mixture is centrifuged and the aqueous phase filtered, if necessary. This "matrix solution" is then prepared by adding lOOuL of 5OOmg/L PFOS in a lOml volumetric flask to reach a nominal concentration within the concentration range that is likely to occur during the test. This "study sample" is then analyzed using HPLCMS. After the study sample has been analyzed, a determination is made as to whether HPLCMS is a suitable analytical method for the test substance.
0 Suitable (Minimally Adsorbing) Container
Up to five containers comprising a variety of materials are exposed to a 0.01 M CaC12 aqueous solution dosed with the test substance at a concentration of O.lOmg/L and 1.Omg/L for a minimum of 24 hours. The resulting solution is analyzed for the test substance using HPLCMS. In addition, an extraction of the container walls is made with methanol. This extract is analyzed as well. Any container that adsorbs less than 10% of the test substance onto its walls is considered suitable for use as a study container. Alternatively, the container demonstrating the least amount of test substance absorption is chosen from those tested.
0 Selection of Optimal Soil: Aqueous Solution Ratio, Determination of Equilibration Time, and Stability of the Test Substance Under the Conditions of the Study
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The optimal soil: aqueous ratio is determined by using two types of soils and three soil: solution ratios. An aqueous solution in contact with the soil is spiked with 125uL of
5OOmg/L PFOS to a concentration of 5 .Omg/L. Sufficient tubes are prepared such that tubes can be removed at intervals (spanning 0 to 48 hr) and the aqueous portion analyzed.
Equilibrium is determined by plotting the adsorption of the test substance over time. The optimal soil: solution ratio is determined by comparing of the amount of adsorption of the test substance at equilibrium for the various soil: solution ratio study samples. Acceptable values are soil: solution ratios that give a depletion of the test chemical greater than 20% and preferably greater than 50% at equilibrium. Stability is determined by a mass balance determination following a methanol extraction of the soil. The mass balance determination is conducted on the one soi1:solutionratio per soil that gives a depletion of the test chemical above 20% and preferably above 50% at equilibrium.
Suitable Desorption Solvent:
Methanol was investigated as the suitable desorption solvent for the test substance. A high clay content soil was dosed with the test substance at two levels (0.75 pg, 7.5 pg). The test substance was then extracted from the study samples three times with methanol. The combined methanol extracts are then prepared for analysis by HPLC/MS.
In all cases, adequate quality assurance samples were prepared and analyzed. The equilibration steps were performed at 19 to 30 degrees C.
ETS-8-160 "Preparation of Soil Samples for Screening (Tier 11) and Advanced (Tier 111) Sorption Studies for Fluorochemicals as the Test Substance"
Tier 11: Adsorption Kinetics (One concentration):
Appropriate soils and/or sediments and/or sludges were selected for the study. Replicate study samples containing the soils (or sediments or sludges) are equilibrated by shaking for at least 12 hours at room temperature with 0.01 M CaC12. Study samples are dosed with the test substance at approximately 0.5 mg/L and placed on an orbital shaker.
Replicate sets of these study samples are removed at designated time points throughout a
48 hour time period. Study samples are then prepared and analyzed for the target analyte. The adsorption kinetics are determined using this data. The last set of study samples (48 hour) are saved and used for the desorption kinetics portion of the method.
Tier 111: Desorption Kinetics (One concentration):
After the adsorption kinetics experiment, the 48 hour study samples are centrifuged and the aqueous phase removed. The volume of solution removed is replaced by an equal volume of 0.01 M CaC12 without test substance. The new mixture is agitated until the desorption equilibrium is reached. During a 48 hour period, at defined time intervals, small aliquots of the aqueous phase are removed and analyzed for the target analyte. The experiment then continues with the original mixture. The desorption kinetics are determined using this data.
0 Tier 111: Adsorption Isotherms (Five concentrations):
Five test substance concentrations are used, covering two orders of magnitude. Study samples containing soil (or sediments or sludges) in contact with 0.01 M CaC12 are equilibrated for a minimum of 12 hours. After equilibration, the study samples are dosed
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with test substance. The samples are then gently agitated until adsorption equilibrium is reached. Sample sets are removed from the orbital shaker at designated time intervals. The study samples are then prepared and analyzed for the target analyte. The adsorption isotherms are calculated using this data. The study samples from the last time interval are saved for the desorption isotherm study.
0 Tier 111: Desorption Isotherms: The study samples from the adsorption isotherm study are used for the desorption isotherm study. These samples are centrifuged and the aqueous layer removed. An equal volume of fresh 0.01 M CaC12 solution containing no test substance is added to each sample. The samples are placed in the orbital shaker and equilibrated for 48 hours. The samples are then prepared and analyzed for the target analyte. (These study samples are saved and used to determine mass balance.) The desorption isotherms are determined using this data.
Tier 111: Mass Balance: The study samples from the desorption isotherm study are used for the mass balance study. The study samples are centrifuged and the aqueous layer removed. Three portions of methanol are added to the study samples. With each addition of methanol, the study samples are agitated, centrifuged, and the methanol removed and placed in a second container. These subsequent (methanol) study samples are then prepared and analyzed for the target analyte. Mass balance is determined using this data.
In all cases, adequate quality control samples are prepared and analyzed. Additionally, the equilibration steps were carried out at between 19 and 30 degrees C.
Table 5. Test System Distribution for Study LRN-E00-1311
Tier I "Suitable Analytical Method"
Tier I "Suitable Desorption Solvent"
Tier I "Suitable (Minimally
Adsorbing) Container" Tier I "Selection of
Optimal Soil: Solution Ratios"
Tier I1 "Adsorption Kinetics"
Test Substance Solutions
Control Blanks Test Substance
Solutions Control Blanks Test Substance
Solutions Control Blanks Test Substance
Solutions Control Blanks
Test Substance Solutions
Control Blanks
45
15
18 + 6 Matrix
Spikes
9 + 3 matrix spikes
60 + 16 Matrix
Spikes
30 + 8 matrix spikes 171 + 57 Matrix
Spikes
63 + 21 matrix
I I spikes
I 1 144+S4p8ikMesatrix 36 + 12 matrix spikes
45 15
18 + 6 Matnx Spikes 9 + 3 matrix spikes
60 + 16 Matrix Spikes
29 + 8 matrix spikes
171 + 57 Matrix Spikes
I 139 +48 Matrix Spikes
36 + 12 matrix spikes
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Tier I11 "Desorption Test Substance 126 + 42 Matrix
Kinetics"
Solutions
Spikes
Control Blanks 126 + 42 Matrix
Spikes
Tier I11 "Adsorption Test Substance 180 + 60 Matrix
Isotherms"
Solutions
Spikes
Control Blanks 36 + 12 matrix
spikes
Tier I11 "Desorption Test Substance
90 + 30 Matrix
Isotherms"
Solutions
Spikes
Control Blanks 18 + 6 matrix spikes
Tier I11 "Mass
Test Substance
90 + 30 Matrix
Balance"
Solutions
Suikes
I Control Blanks 1 18 + 6 matrix spikes 1
115 + 42 Matrix Spikes 126 + 42 Matnx Spikes 180 + 60 Matrix Spikes
36 + 12 matrix spikes 89 + 30 Matrix Spikes 18 + 6 matrix spikes 89 + 30 Matrix Spikes
18 + 6 matrix spikes I
Specimen Collection and Analysis
During the course of the study, aliquots of the test systems were collected at predetermined time intervals. Some sample aliquots were diluted with methanol. The following table describes the sampling regimen information:
Table 6. Sample Collection and Preparation for Study LRN-E00-1311
Tier I "Suitable Analytical Work"
Tier I "Suitable Container"
Tier I "Suitable Desorption Solvent"
Each of the three soils, the sediment, and the sludge are equilibrated with 0.01M CaC1, in
triplicate. This "matrix solution" is then removed and dosed with the test substance,
and the resulting solution analyzed.
Four types of test vessels, each of a different material, are exposed to the test substance for 24 hours. The resulting solution is analyzed for the test substance to measure any loss to the container. The test vessel is then extracted to measure any test substance that may have
adsorbed onto the sides if the container.
Two types of soil are dosed with the test substance, and the soil is extracted with methanol three times. The extracts are combined and analyzed to measure the
suitability of the solvent.
Each "matnx solution" is dosed in triplicate, and one control sample is prepared.
Each type of container is dosed at two concentrations, and a set of controls is also prepared. Every vessel is
extracted with methanol after the test substance has
been removed. Each type of soil is dosed at two concentrations, and a set of controls is also prepared.
Samples aliquotted 11/02/00
Aqueous samples aliquotted 11/14/00 Methanol extractions aliquotted 11/15/00
Methanol extractions aliquotted 1122101
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Tier I "Selection of Optimal Soil:
Solution Ratios and Mass Balance"
Tier I1 "Adsoiption Kinetics"
Tier 111 "Desorption Kinetics"
Tier 111 "Adsorption Isotherms"
Tier 111 "Desoiption Isotherms"
Tier I11 "Mass Balance
Determination
Two types of soil are prepared in three soi1:solutionratios to determinethe optimal ratio to use in the remainder of the study. Samplesare prepared at several time points to determine the time required for the solution to
reach equilibrium, and a mass balance calculation is performed.
Three soils, one sediment, and one sludge are prepared in the soi1:solutionratio indicated in the Tier I study. The samples are dosed with
the test substance and placed on a shaker, samples are then pulled at several time points.
The aqueous layer is removed from the 48 hour samples from the above step. Fresh CaC1, is added to the test vessel and the vessel is placed on a shaker. Small samples are taken at several time points, and additional aqueous solution is added to replace the sample taken.
Three soils, one sediment, and one sludge are prepared in the soi1:solution ratio indcated in the Tier 1study. The samples are dosedwith the test substance (at one of 5 concentrations)
and equilibrated for either 0 or 48 hours.
The aqueous layer is removed from the 48 hour samples from the above step. Fresh aqueous CaC1, solution is added to the test vessel and the vessel is placed on a shaker for
48 hours.
The aqueous solution is removed from the 48 hour samples in the above step. The
remaining soil is then extracted with three pofions of methanol, each time the solution is
decanted into the same vessel.
~
Each soillratioltime combination is prepared in triplicate, one matrix spike is performed, and one control
is prepared.
Each soilltime combination is prepared in triplicate, one matrix spike is performed,
and a set of controls is prepared.
Each 48 hour sample vessel from the above step
produces 9 samples over the course of the desorption
(seven time points and two matrix splkes).
Each soillconcentratiodtime point combination is
prepared in triplicate, one matrix spike is performed.
Each 48 hour vessel ~ produces one sample, and every third sample is also prepared as a matrix spike.
Each 48 hour vessel produces one sample, and every third sample is also prepared as a maisix spike.
Aqueous samples aliquotted 11/29/00-
12/4/00 Methanol extractions
aliquotted 12/7/00
Aqueous samples aliquotted 2/1/01-
21710 1
Aqueous samples aliquotted 2/13/01-
2/15/01
Aqueous samples aliquotted 2114101-
211 510 1
AqueousGmplesaliquotted 2121101
Methanol extractions aliquotted 2122101-
212610 1
Diluted samples (1.e. sample extracts) containing 250 ng/mL THPFOS as internal standard were analyzed using high-performance liquid chromatography/mass spectrometry (HPLC/MS) in the negative ion mode. PFOS levels were evaluated versus standard curves ranging in concentration
from 2.5-1000 ng/mL PFOS and 250 ng/mL THPFOS. Internal Standard quantification was used to best fit and report the data. Target ions were deprotonated PFOS (m!z = 499), and deprotonated THPFOS (m/z = 427).
Analytical details are included in the file for this study that is maintained by the 3M Environmental Laboratory; the study folder is located in the 3M archives. All study samples were generated and analyzed at the 3M Environmental Laboratory. No chain of custody forms were generated or required.
Reserve samples of reference materials from the 3M Environmental Laboratory will be stored at the 3M Environmental Laboratory for a period not less than 10 years following the effective date of the final test rule, or until the quality of the preparation no longer affords evaluation. Reserve
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samples of the reference materials from the contract laboratory will be returned to the 3M Environmental laboratory for retention and archiving.
Results and Discussion
Data Quality Objectives
The following data quality objectives are from the methods used in the present study. The data quality objectives were met, except as documented in raw data.
Coefficient of Determination (r2). The coefficients of determination (r2) for the calibration curves were 0.985 or greater. The curves were examined closely for accuracy of quantitation at the low and high ends of the curve. Quadratic curve fit was applied to calibration standards and sample data to improve quantitation over the concentration range appropriate to the data.
Method Blanks. Method blanks (applicable sample matrix taken through the entire sample preparation, dilution, and analysis process) provided a measure of laboratory contamination. Acceptable values for the blanks were less than 50% of the limit of quantitation (LOQ), defined herein as the concentration of the lowest standard.
Matrix Spike Recoveries. A post-preparatory matrix spike sample for each of the sample groups used in the study was prepared by adding aliquots of test-analyte solution according to 3M Method ETS-8-159 and 160. The spike recoveries for >80% of the samples were acceptable (100 k 30%). Instances where spike recoveries outside of the control range were observed are indicated in Appendix E.
Sample Triplicates. The Relative Standard Deviations of triplicate samples were acceptable when at least 80% of them were less than or equal to 30%. Q-tests were used to exclude outliers in data sets.
Continuing Calibration Verification. If the percent difference for the amount of quantitated analyte was greater than 30% from the true value relative to the initial standard
curve, only those samples analyzed before the last acceptable calibration check standard were
used. The remaining samples were analyzed with a new curve.
Limit of Quantitation (LOQ). The LOQ was equal to the lowest acceptable standard in the calibration curve.
Calibration Standards. Eleven standards ranging in concentration from approximately 2.5 to 1000ng PFOS/mL methanol were used for the calibration curves. Calibration curves were run before and after every analytical sequence.
Solvent Blanks. Solvent (Methanol) blanks provide a measure of instrumental contamination. Acceptable values for the blanks were less than 50% of the limit of quantitation, defined herein as the lowest calibration standard.
System Suitability. Without performing a method validation, system suitability was demonstrated by acceptable instrumental checks (e.g abbreviated m/z check-tune, or full auto-tune routines).
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Statistical Methods and Calculations Means and standard deviations were calculated using functions provided in Microsoft@ Excel@ software. Calculations with the raw data were made using the equations described in the OECD Method 106 (see Appendix B).
Data Summary and Discussion Appendices D and E summarize individual sample data. Representative chromatograms are presented in Appendix G. All concentrations and calculations can be found in the data tables, along with the log plots used to determine the isotherm values. These data are used in all subsequent tables and figures in this report.
Results of the Tier I study are presented in table 7 through 11: Table 7. Suitable Analytical Method Determination
I%arneLs oam (ST-1) Clay Loam (ST-2)
Clay (ST-3) River Sediment(STSed) Domestic Sludge (STSlg)
E00-131 1-0001,-0002,-0003 E00-1311-0004, -0005, -0006 EOO-13 1 1-0007, -0008, -0009 E00-1311-0010,-0011,-0012 EOO-1311-0013, -0014, -0015
Table 8. Suitable Test Vessel Determination
115% 1 IS% 99.8% 116% 88.3%
21.81 8.88 15.97
I
Polypropylene
I
Polystyrene
Glass
Teflon
96.19% 94.51% 96.74% 89.49%
I I I 244.36ppb
116.18%
~
172.43ppb
203.04%
397.75ppb
206.69%
94.37ppb
170.45%
It was determined that the polypropylene centrifuge tubes were suitable for this study. These tubes had the least amount of extractable PFOS, and were the only tubes with acceptable matrix spike recoveries.
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Table 9. Equilibrium Time for Adsorption of PFOS
Clay
~
~~
Sediment
1:l 1.5 1 :25 1:l
1.5
1: 2 5
I
36
I
20.98%
48
12.74%
24
21 3 3 %
23.51% 19.71%
24
57.42%
36
60.15%
48
66.80%
24
I 1.04%
36
14.32%
I
48
I
10.63%1
I
24
I
45.85%
36
45.010/;,
48
42.19%)
65.34%
67.310/;,
I
48
I
6X.00%
100.00 r'
.0- 80.00
U
0
v)
60.00
U
Q
40.00
' ? m I
U r 20.00
a
2
a
a
0.00
0
Adsorption Equilibrium Plot
-- -
--t 1:IRatio (clay)
1.5Ratio (clay)
+-1:25 Ratio (clay)
20
40
60
Equilibrium Time, hours
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~
~_.._______
_-____
I
Adsorption Equilibrium Plot
I
~
100.00
80.00
s 60.00 40.00
I --e 1:l Ratio (Sediment) 1:5 Ratio (sediment) 1 2 5 Ratio (sediment) ~
20.00
0.00 0
20
40
60
EquilibriumTime, hours
1-
I
I I
____~
The test substance appeared to reach equilibrium after 24 hours in all of the soi1:solution ratios. The clay appeared to take more time to reach equilibrium, therefore the 48 hour time point was used as the equilibrium time for the remainder of the study. This ensured that all five of the soils were given ample time to equilibrate.
Table 10: Suitable Desorb Solvent, Methanol
Clay
I
Sediment
1 - 0.0
< 25.0
100
71.2
71.2%
1000
591
59.1%
0.0
I
< 25.0
- 1
1 7
100
1000
60 1
60.1%
Despite using methanol, an excellent solvent for PFOS, the average percent recovery of PFOS ranged from zero to 96%. It is unlikely that a different solvent would yield better recovery.
Previous results in this study have indicated that the test substance is readily and rapidly adsorbed
on the soil, and is not likely to be completely extracted from it. .
The optimal soi1:solution ratio was determined to be 1:5 (refer to Table 9 for applicable data). This ratio demonstrated average adsorption percentages of PFOS ranging from approximately 75% in clay to 55% in sediment.
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Table 11. Stability of PFOS during the Study Period
Clay
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Sediiiient
According to OECD guideline 106, the mass balance calculation should show at least 90% recovery of the test substance for the test substance to be considered stable over the course of the study. The recovery of the test substance was lower than the OECD guideline, likely due to the incomplete desorption of the test substance from the soil. Hydrolysis studies of PFOS conducted at the 3M Environmental Laboratory have demonstrated test substance stability in aqueous matrices.
The results of the Tier I1 study are presented in Table 12:
Table 12. Adsorption Kinetics of PFOS, 1:5 SoikSolution Ratio, 48 Hour Time Point
I 1 ClayLoam(ST-2) I I Sandy Loam (ST-3)
River Sediment (ST-Sed) Domestic Sludge (ST-Slg)
0.00972
0.00742 <0.120
26
I
2.6
I
1.3 NA
I 70 4
37.4
I
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100 90 80 70 60 50 40 30 20 10
0 0
___________________~.
Adsorption Percentage as a Function of Time
+Sandy
Loam
-W-River Sediment
10
20
30
40
50
Time, hours
All of the soil/sediment/sludge matrices adsorbed the test substance strongly. The sludge samples, in the adsorption portion of the kinetics study, demonstrated very strong adsorption (>96%) and PFOS was not detected in the samples. The data indicates that adsorption occurred within the first few hours of exposure and the test substance concentration does not vary significantly after the 16 hour time point.
The results of the Tier I11 study are presented in Tables 13 through 15:
Table 13. Desorption Kinetics of PFOS, 1:5 Soi1:Solution Ratio, 48 hour Time Point
Barnes h a i n (ST-I) Clay Loam (ST-2)
Clay (ST-3) River Sediment (ST-Sed) Domestic Sludge (STSlg)
0.047 1 0.0158 0.0349 0.0100 < 0.237
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, 80.00
70.00
60.00
.'. ' 50.00
18 '=52 40.00 0 $ 30.00 0 20.00
10.00
0.00 0
Desorption Percentage as a Function of Time
~-A- Sandy Loam +River Sediment
10
20
30
40
50
Time, hours
The test substance was poorly desorbed from the soil/sediment/sludge matrices during the 48-hour study period. The river sediment displayed the most desorption at only 39% after 48 hours. The sludge samples did not desorb a detectable amount of test substance. Desorption that did occur was accomplished rather quickly, after the 8 hour time point the test substance concentration did not vary significantly.
Table 14. Adsorption Isotherms
Clay Loam Domestic Sludge
-1.2515 -1.3762 - 1.0369 -2.0261 -1.246
0.0560 0.0421 0.0919 0.0094 0.0568
0.884 0.841 0.829 0.989 1.2581
1.13 1.19 1.21 1.01 0.795
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Table 15. Desorption Isotherms
Clay Clay Loam Sandy Loam River Sediment Domestic Sludge
-0.653
-1.084
-0.981
-1.41
1.47
~
0.222 0.082 0.104 0.039 29.5
0.935 0.954 1.01 1.02 0.327
1.07 1.05 0.988 0.984 3.06
Freundlich isotherms relate the amount of test substance adsorbed on the soil to the amount present in the aqueous solution at equilibrium. The values calculated for the regression constant indicate that the data obtained for the test substance over two orders of magnitude is slightly nonlinear.
Conclusions
Perfluorooctanesulfonate (PFOS) strongly adsorbs to all of the soil/sediment/sludge matrices tested. The test substance, once adsorbed, does not desorb readily, even when extracted with an organic solvent. In either case, adsorption or desorption, an equilibrium is achieved in less than 24 hours, with substantial adsorption (>50%) occurring in some of the time 0 samples. The low recoveries demonstrated by the mass balance calculations are likely the result of the test substance being strongly adsorbed, since it is unlikely that the test substance degraded during the course of this study.
References
1. Adsorption-Desorption Using a Batch Equilibrium Method (OECD 106), January 2000.
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The final draft of this report is a true representation of the data developed in this study. It has been issued by:
Mark E. hllefson, Study Director Management
Dhe '
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Appendix A: Study Protocol E00-1311-
Soil AdsorptionLDesorptionStudy of Potassium Perfluorooctanesulfonate
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--
STUDY PROTOCOL
STUDY TITLE Soil AdsorptiodDesorptionStudy of Perfluorooctanesulfonate(PFOS)
SPONSOR William K. Reagen, Ph.D.
TESTING FACILITY 3M Environmental Laboratory
Building 2-3E-09 935 Bush Avenue St Paul, MN 55106 LABORATORY STUDY IDENTIFICATION Laboratory Request Number (LRN)-EOO- 1311
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Laboratory Request Number (LRN)--E00-13111
Protocol Signatures
Study Director:
3M Environmental Laboratoh
Protocol Approval
Sponsor: William K. Reagen, Ph.D. 3M Environmental Laboratory
/cl//ir/uo
Date:
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Laboratory Request Number (LRN)-E00-1311 I
STUDY IDENTIFICATION Soil Adsorption/DesorptionStudy of Perfluorooctanesulfonate(PFOS)
TESTSUBSTANCE SPONSOR SPONSOR EPRESENTATIVE
STUDYDIRECTOR
TESTFACILITY PROPOSESDTUDYTIMETABLE
Perfluorooctanesulfonate (PFOS)
3M Environmental Laboratory 935 Bush Avenue, Building 2-3E-09 St. Paul, MN 55106
William Reagen, Ph.D.
3M Environmental Laboratory 935 Bush Avenue, Building 2-3E-09 St. Paul, MN 55 106 (65 1)778-6565
Mark E. Ellefson
3M Environmental Laboratory 935 Bush Avenue, Building 2-3E-09 St. Paul, MN 55106 (65 1)778-5405
3M Environmental Laboratory 935 Bush Avenue, Building 2-3E-09 St. Paul, MN 55106
Experimental Start Date Experimental Termination Date
18 October 2000 15 December 2000
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Laboratory Request Number (LRN)-E00-1311
1.O Introduction and Purpose/Objective
1.1 Adsorptioddesorption studies are useful for generating essential information on the mobility of chemicals and their distribution in the soil, water and air compartments of our biosphere. They can be used in the prediction or estimation of the availability of a chemical for degradation, transformation and uptake by organisms; leaching through the soil profile; volatility from soil; and run-off from land surfaces into natural waters. Adsorption data can also be used for comparativeand modeling purposes.'
The distribution of a chemical between soil and aqueous phases is a complex process depending on a number of different factors: the chemical nature of the substance, the characteristics of the soil, and climatic factors such as rainfall, temperature, sunlight and wind. Thus, the numerous phenomena and mechanisms involved in the process of adsorption of a chemical by soil cannot be completely defined by a simplified laboratory model such as the present guideline. However, even if this attempt cannot cover,all the environmentally possible cases, it provides valuable information on the environmental relevance of the adsorption of a chemical.'
1.2 The target substance for this study is presented in Table 1.1
Table 1.1 Target Substance Target Substance
Perfluorooctanesulfonate
PFOS CeFi7SO3'
I
3M Environmental Laboratory identification Number
TCR-00017-46
2.0 Regulatory Compliance
2.1 By complying with the requirements of OECDIOCDE Guideline 106, the data will meet the testing requirements of the European Community and Canada. The data will also be used to meet the testing requirements of the Federal Insecticide, Fungicide, and Rodenticide Act (FIFRA) and the Toxic Substances Control Act (TSCA) in the United States.
2.2 This study will be conducted in accordance with the United States Environmental Protection Agency TSCA Good Laboratory Practice (GLP) Standards 40CFR Part 792.
1According to OECD Guideline 106
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3.0 Test Substance
' 3.1 Identification: Perfluorooctanesulfonate,CsF17S03- (PFOS;)
3.2 Source: 3M Specialty Materials Division 3.3 Description: white powder 3.4 3M Environmental Laboratory ID#: TCR-00017-46 3.5 Storage Conditions:PFOS should be stored at ambient temperature or lower. 3.6 Purity: 97.3% 3.7 Expiration Date: 2010 3.8 Retention Sample: A retention sample of the test substance (0.34 g) has been
taken and stored frozen at -20C doc.The sample will be archived for at least
the period as required by the EPA GLPs, Section 792.195. 3.9 Safety Precautions:
3.9.1 Wear appropriate laboratory attire. 3.9.2 An MSDS sheet is available on this substance and is accessible using the
3M Environmental Laboratory Lotus Notes TCR database.
4.0 Control Substances
4.1 There are no control substances in this study.
5.0 Reference Substances
5.1 THPFOS
5.1.1 Zdentaficution: 1H, 1H, 2H, 2H-Perfluorooctane Sulphonic Acid,
C~HsF1303S(THPFOS) 5.1.2 Source: SynQuest Labs 5.1.3 Description: Fluffy, white crystals 5.1.4 3M Environmental Laboratory ID#: TCR-00017-047 5.1.5 Storage Conditions: THPFOS should be stored at ambient temperature or
lower 5.1.6 Expiration Date: 2010 5.1.7 Retention Sample: A retention sample of 0.27 g of THPFOS has been
taken and stored frozen at -2OoC+_5"CT. he compound will be archived for
at least the period as required by the EPA GLPs, Section 792.195. 5.1.8 Safety Precautions:
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5.1.8.1 Wear appropriate laboratory attire.
5.1.8.2 An MSDS sheet is available on this substance and is accessible
1
using the 3M Environmental Lotus Notes TCR database.
5.2 PFOS
5.2.1 Identification: Perfluorooctanesulfonate,CsF17S03(-PFOS) 5.2.2 Source: 3M Specialty Materials Division 5.2.3 Description: White powder 5.2.4 3M Environmental Zdzboratory ID#: TCR-00017-46 5.2.5 Storage Conditions: PFOS should be stored at ambient temperature or
lower
5.2.6 Purity: 97.3%
5.2.7 Expiration Date: 2010
5.2.8 Retention Sample: A retention sample of 0.34 g PFOS has been taken and stored frozen at -20C G"C. The compound will be archived for at least the period as required by'the EPA G u s , Section 792.195.
5.2.9 Safety Precautions: 5.2.9.1 Wear appropriate laboratory attire.
5.2.9.2
An MSDS sheet is available on this substance and is accessible using the 3M Environmental Lotus Notes TCR database.
6.0 Test System
6.1 The test system consists of three soil types, one sediment and one dried sludge in contact with a 0.01 M CaC12 aqueous solution.
6.2 The criteria for selection of the soils are based on Table 1 of the OECD
Guidelines 106.
6.3 The soils used in this study were characterized using GLP guidelines. 6.4 Although not specified in OECD Guideline 106, one sediment was also selected
as part of the test system.
6.5 Although not specified in OECD Guideline 106, one dried sludge was also selected as part of the test system.
7.0 Analytical Scheme and Control of Bias
7.1 OECD Guideline 106 is aimed at estimating the adsorptioddesorption behavior of a substance on soils. The goal is to obtain a sorption value that can be used to predict partitioning under a variety of environmental conditions. Therefore, equilibrium adsorption coefficients for a chemical onto various soils are determined as a function of soil characteristics. Different soi 1 types must be used
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in order to cover as widely as possible the interactions of a @veri substance with
naturally occurring soils. The soil parameters that are believed most important for
t
adsorption are pH, organic carbon content, clay content and soil texture. The
procedures outlined in the guideline are designed to evaluate the adsorption of a
chemical on different soil types that have a varying range of pH, organic carbon
content, clay content and soil texture. The guideline is comprised of three tiers:
7.1.1 Tier I: The Preliminary Study 7.1.1.1 The preliminary study is designed to determine:
a)
a suitable analytical method
b)
the adsorption of the test substance onto the surfaces of the test
vesse1s
c)
the equilibration time for adsorption and the amount of test
substance adsorbed at equilibrium
d)
a suitable desorption solvent
e)
the soi1:aqueous solution ratio
f) 7.1.1.2
the stability of the test substance during the study period
The preparatory methodology for Tier I is described in the 3M Environmental Laboratory Method ETS-8- 159: Preparation of Soil Samplesfor Preliminary (Tier I ) Sorption Studiesfor Fluorochemicals as the Test Substance (based on OECD Guideline 106).
7.1.2 Tier 11: Screening Study:
7.1.2.1
The screening study is designed to study the adsorption of the test substance in three different soil systems, one sediment and one dried sludge by means of:
a)
adsorption kinetics at a single concentration
b)
determination of distribution coefficients & and GC
7.1.2.2
The preparatory methodology for Tier II is described in the 3M Environmental Laboratory Method ETS-8- 160: Preparation of Soil Samplesfor Screening (Tier II) and Advanced (Tier III) Sorption Studiesfor Fluorochemicalsas the Test Substance (based on OECD Guideline 106).
7.1.3 Tier 111: Adsorption Isotherms and Desorption Kinetics/Desorption Isotherms
7.1.3.1 The advanced study is designed to:
a)
determine the Freundlich adsorption isotherms that, in turn,
determine the influence of concentration on the extent of
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adsorption onto the soils, sediment and sludge.
b)
study desorption by means of determining desorption
i
kineticsFreundlich desorption isotherms
7.1.3.2
The preparatory methodology for Tier III is described in the 3M Environmental Laboratory Method ETS-8- 160: Preparation of Soil
Samplesfor Screening (TierII) and Advanced (Tier III) Sorption
Studiesfor Fluorochemicalsas the Test Substance (based on OECD Guideline 106).
7.2 The adsorptioddesorption studies will be conducted according to a modified version of the OECD Guideline for the Testing of Chemicals 106 "AdsorptionDesorption Using a Batch Equilibrium Method."
7.3 The preliminary section of OECD Guideline 106 (Tier I) refers to performancebased criteria. This document outlines minimally acceptable criteria to be met before actually beginning Tiers I1 and 111.The study plan outlined for Tier I is an attempt to meet these criteria. The procedures used in the 3M Environmental Laboratory for Tier 11and Tier 111will follow as closely as practical the procedures outlined in Guideline 106. However, fluorochemicals have unique properties that may prohibit the criteria being precisely met. In these instances, modifications to the criteria may be necessary. Where this is the case, the reason for the modification will be stated and documented.
7.4 Sufficient controls and blanks will be incorporated as part of this study to ensure control of bias. These controls and blanks are described in more detail within this protocol.
8.0 Preparatory Methods
8.1 The study sample numbering scheme will be as follows:
8.1.1 Each study sample, each control sample, each control blank and all of their aliquots throughout the course of the study will have a unique identifier.
8.1.2 When the initial study samples are set up, each will be given a number beginning with the designator "E00-1311"which is the Laboratory Study Identification Number for this Study Protocol. These initial study samples will then be numbered sequentially for each section by the addition of a four digit number.
8.1.3 Each section will have its own unique section number (e.g. 1000, 2000, etc.) unless that section does not generate any "new"study samples, but continues use of the study samples from a previous section.
8.1.4 If more than one aliquot is taken from a study sample during the course of a section, a designator of S 1, S2, S3, etc. will be included to uniquely identify that aliquot.
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8.1.5 A study sample that is used in a following section will maintain its
original unique identifier, but will continue with the appropriate addition
1
of the S1, S2, S3 designators as described above.
8.1.6 Each spike sample will include all of the above designators as well as the additional designator of "-MS" added to it to identify is as a Matrix Spike.
8.1.7 Example Numbering Scheme: See Attachment A Section A: Tier I, Preliminary Study
This section details the general methodology used to determinethe range-finding and method development aspects of OECD Guideline 106.
8.2 Suitable Analytical Method:
8.2.1 Previous work with the test substance in a variety of matrices have
strongly indicated that the analysis of PFOS in the aqueous/soil matrix
described in OECD Guideline 106 can be accomplished by dilution of a portion of the centrifuged aqueous portion with methanol in a 1:l ratio. The resulting aliquot can then be analyzed using HPLC/MS/MS.
8.2.2 Refer to 3M Environmental Laboratory Method ETS-8-159 for the preparation of the study samples to be used. Refer to 3M Environmental Laboratory Method ETS-8-110for the analytical methodology.
8.2.3 Acceptable analytical method performance criteria is identified in 3M EnvironmentalLaboratory Document ETS-8-005. Data generated from Section 8.2 will be evaluated using the criteria in the referenced document. If the analytical method meets these criteria, the method will be determined to be appropriate for this study.
8.2.4 If it is determined that a preparatory cleanup step is necessary, solid phase
extraction may be used as described in 3M EnvironmentalLaboratory
Method ETS-8-154.
8.3 Suitable Container:
8.3.1 A minimally adsorbing container for the test substance is desirable for Tiers 11and 111of the Adsorption/Desorption study in order to generate the most useful information possible. However, due to the unique properties of fluorochemicals, significant adsorption of the test substance to the container walls is possible. Therefore, it may only be possible to determine which container from a variety of those tested will demonstrate the least adsorption of the test substance to it. This study will generate documentation that the container material used for Tiers 11and 111is the most suitable container of those tested.
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8.3.2 Test a reasonable variety of materialskontainers. They may include, but
are not limited to, the following: Teflon@centrifuge tubes, Pyrex@glass
1
centrifuge tubes, polypropylene centrifuge tubes, polystyrene centrifuge
tubes, and styrene butadiene centrifuge tubes. (Use 15-mL centrifuge
tubes whenever possible.)
8.3.3 Two concentrations of the test substance will be used (0.1 mg/L and 1 mgL).
8.3.4 Equilibrate 12.5 mL of a 0.01 M CaC12 aqueous solution containing the test substance (at concentrationsof 0.1 m g L and 1 m&) for approximately 24 hours with the container. After that time, dilute a portion of the aqueous solution with methanol and analyze using HPLCMSMS to determine the amount of adsorption by the container. In addition, extract the walls of the container with methanol and analyze the methanol for the test substance.
8.3.5 Refer to Method ETS-8-159 for more details of this procedure.
8.3.6 Calculate the amount of test substance adsorbed onto each container.
8.3.7 The most appropriate container (based on minimal adsorptivity, convenience and cost) will be selected for use in Tiers 11and III.
8.4 Suitable Desorption Solvent:
8.4.1 Previous work with the test substance has indicated that methanol will be a suitable solvent for the desorption steps described in OECD Guideline 106. This assumption will be further investigated and confirmed.
8.4.2 Dose the test substance (at 2 pg and 20 pg) onto 2.5 grams of a strongly adsorbing (high clay content) soil.
8.4.3 Extract the soils with three 2.5-mL portions of methanol to desorb the test substance back off the soil.
8.4.4 Refer to Method ETS-8-159 for more details of this procedure.
8.4.5 If this process cannot recover 80% or more of the test substance, investigate a minimum of three other solvents. (These alternative solvents will be chosen based on the experience and knowledge of the analytical team leader.)
8.4.6 Choose the most suitable solvent (based on maximum desorption, convenience and cost) of those tested.
8.5 Selection of Optimal Soi1:Aqueous Solution Ratio, Determination of Equilibration Time, and Stability of the Test Substance under Conditions of the Study
8.5.1 Use two soil types and three soi1:solution ratios (six experiments). One soil type should have a high organic carbon and low clay content, and the other soil should have a low organic carbon and high clay content. Prepare the following ratios of soil and test substance:
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8.5.1.1
Equal parts (w:v) of soil to aqueous solution containing test substance
8.5.1.2
A 1:5 ratio (w:v) of soil to aqueous solution containing test substance
8.5.1.3
A 1:25 ratio (w:v> of soil to aqueous solution containin-g test substance
8.5.2 Dose the test substance such that the final concentration of test substance in solution is approximately 1 mgL.
8.5.3 Prepare control samples containing only the test substance in 0.01 M CaC12 solution (no soil) in order to check the stability of the test substance in the 0.01M CaClz solution.
8.5.4 Prepare background control samples containing soil and aqueous 0.01M CaClz (no test substance) using the same soi1:solution ratios as part of the study.
8.5.5 Prepare and analyze all study samples and controls in triplicate. In addition, spike a portion of one replicate from each triplicate set with additionaltest substancein order to determine spike recoveries.
8.5.6 Prepare a sufficient number of individual containers of each series such that a (triplicate) set of vials can be removed according to the following approximate time intervals: 0 hr, 2 hr, 4 hr, 8 hr, 16 hr, 24 hr, 36 hr and 48
hr .
8.5.7 Refer to Method ETS-8-159 for further details of this procedure.
8.5.8 The data generated from these study samples allow the estimation of the
equilibrium plateau. Calculate the & value at equilibrium. Based on this & value, select appropriate soi1:solution ratios such that the percentage adsorption is between 20% and 80%.
8.5.9 Based on the data generated from this section, determine the stability of the test substance under the conditions of the study.
Section B: Tier ZZ Screening Study
8.6 Adsorption Kinetics at One Concentration of the Test Substance:
8.6.1 Prepare control samples containing only the test substance in 0.01 M CaC12 solution (no soil) in order to check the stability of the test substance in 0.01M CaC12solution.
8.6.2 Include background control samples containing soil and aqueous 0.01M CaC12 (no test substance) in the same soiksolution ratios.
8.6.3 Set up and analyze all study samples and controls in triplicate. In addition, spike a portion of one of each triplicate with additional test substance in order to determine spike recoveries.
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8.6.4 Select three soil types using the guidance given in Table I of OECD method 106, one sediment and one dried sludge.
1
8.6.5 Prepare a sufficient number of individual containers of each series such
that a (triplicate) set of vials can be removed according to the following
approximate intervals: 0 hr, 2 hr, 4 hr, 8 hr, 16 hr, 24 hr,36 hr and 48 hr.
8.6.6 Refer to Method ETS-8-160 for further details of this procedure.
8.6.7 Calculate the percentage adsorption of the test substance onto the soil at each time point and/or time interval and plot % adsorption versus time. Calculate the distribution coefficient at equilibrium.
8.6.8 Calculate the organic carbon normalized adsorption coefficient.
Section C: TierI l l
8.7 Desorption Kinetics-Serial Method:
8.7.1 Using the last set of sample vials (hour 48) from the Tier II Adsorption
Kinetics study, centrifuge the vials and remove as much of the aqueous layer as possible.
8.7.2 Replace the volume of solution with an equal volume of fresh 0.01 M CaC12 solution containing no test substance.
8.7.3 Agitate the new mixture until the desorption equilibrium is reached (as determined in Section 8.5.
8.7.4 Throughout this time, at defined time intervals, prepare study sample aliquots for analysis.
8.7.5 Proposed time periods are: 2 hr, 4 hr, 8 hr, 16 hr, 24 hr, 36 hr and 48 hr.
8.7.6 Refer to Method ETS-8-160 for further details of this procedure.
8.7.7 Calculate the percentages of desorption at each time point and/or time interval and plot percentage desorption versus time.
8.7.8 Calculate the desorption coefficient at equilibrium.
8.8 Adsorption Isotherms:
8.8.1 Prepare control samples containing only the test substance at the same concentrations as the study samples in 0.01 M CaCh solution (no soil).
8.8.2 Prepare background control samples containing soil and aqueous 0.01M CaC12(no test substance) in the same soi1:solution ratios as part of the study.
8.8.3 Prepare and analyze all study samples and controls in triplicate. In addition, spike a portion of one of each triplicate with additional test substance in order to determine spike recoveries.
8.8.4 For the adsorption isotherm determination, prepare five sample sets with initial concentrations of approximately 0.05,0.2,0.5, 1.0,and 5.0 mgL for each of the selected three soil types, sediment and sludge. Use the
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same soi1:solution ratio as that used in the Tier II study. (Iftheamount of
adsolption of the test substance onto the soils will produce concentrations in the adsorption solvent which would border on,or be below, the quantflcation limits of the test substance, the concentration levels may need to be increased. The criteria that should be met are that the concentration range should span two orders of magnitude.)
8.8.5 Samples are placed in an orbital shaker until equilibrium time is established (or for a maximum of 48 hours).
8.8.6 Refer to Method ETS-8-160 for further details of this procedure.
8.8.7 Analyze the aqueous portion to (indirectly) determine the amount of test substance adsorbed onto the soil.
8.8.8 Plot the adsorbed mass of test substance per unit mass of soil as a function of the equilibrium concentration of the test substance.
8.9 Desorption Isotherms:
8.9.1 Determine Freundlich desorption isotherms on the soils used in the adsorption isotherms study.
8.9.2 Using the last set of study samples generated from the Adsorption Isotherm Study (Section 8.8), perform the desorption test using 0.01M CaClz solution as described in the "Desorption Kinetics" section (exception: the aqueous phases will be analyzed only once, at desorption equilibrium.)
8.9.3 Refer to Method ETS-8-160 for further details of this procedure.
8.9.4 Calculate the amount of the test substance desorbed.
8.9.5 Plot the content of test substance remaining adsorbed on the soil at desorption equilibrium as a function of the equilibrium concentration of the test substance in solution.
8.9.6 In addition, determine a mass balance by finding the concentration of the substance desorbed using an organic solvent (methanol) from the soil for one concentration.
8.9.7 Refer to Method ETS-8-160 for further details of this procedure.
9.0 Analytical Methods
9.1 ETS-8-110. Analysis of Perfluorooctanesulfonateor Other Fluorochemicalsin Water Extracts Using HPLC-ElectrosprayMassSpectrometryMass Spectrometry
9.2 Additional methods may be developed at a later time and will be listed as protocol amendments.
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10.0 Data Quality Objectives
t
10.1 Tier Z only-Although the statistical data will be generated from the Tier study,
the primary purposes of Tier I are to determine an appropriate container,
analytical method, desorption solution, and soi1:solution ratio. Tier I is also for
range-finding in order to successfully proceed to Tiers II and III of the
adsorptioddesorption study.
10.2 Linearify-The measure of fit of the calibration curve, as measured by the coefficient of determination (r2)will be 0.980 or greater. The curve may include the origin, but should not be "forced" through the origin.
10.3 Limits of Detection/Quuntitatn-The LOQ is estimated at 5 pg/L at the instrument level. This would result in a Limit of Quantitation of 10 pg/L for the sample (1 :1 dilution in the preparation procedure). However, during the study, the LOQ will be equal to the lowest calibration standard used in the calibration curve and that is greater than two times the background "noise".
10.4 Matrix Spike Frequency-An aliquot of one replicate from each triplicate set will be spiked with a known amount of substance, except as noted in the referenced methods.
10.5 Acceptable Recoveries-Upon completion of the analytical method validation portion of the study, an amendment to the protocol will be written defining acceptable criteria based on the validation results.
10.6 Use of Reference Materials-
10.6.1
THPFOS-The reference material THPFOS will be used to determine gross instrument failure when using HPLC/MS/MS. Gross instrument failure is defined by a G O % deviation in standards and calibration checks.
THPFOS is not used for quantitative purposes because the magnitude of
response may not be consistent between standards and samples, although
the response among a single group is expected to be consistent. THPFOS
will be added to samples as the last step of the preparatory procedure. An
equivalent concentration of the reference material will also be added to the
calibration standards.
10.6.2 PFOS (TCR-00017-46)will be used to make the calibration standards, as well as being used as the test substance. Since commercial standards of known purity are unavailable for each isomer and since the isomer ratios of PFOS very from lot to lot, using the same lot number for the calibration standards provides the most accurate measure of the concentration of PFOS in the analyzed samples.
10.7 Use of Confirmatory Methods-No confirmatory methods will be used. The analytical method uses a very selective detector (mass spectrometer) with a chromatographicseparation method.
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10.8 Demonstration of Specificity-
10.8.1 HPLC/MS/MS-Unique and characteristic product ions are monitored for
1
each analyte. In addition, a chromatographic separation method is
employed.
10.9 Precision-
10.9.1 Precision will be measured by determining the relative Standard Deviation of triplicate samples.
10.9.2 Upon completion of the analytical method validation portion of the study,
an amendment to the protocol will be written defining acceptable criteria , based on the validation results.
10.10 Quality Control Blanks-The area count of the peak of the test substance will be no more than half the area count of the average of the area counts (from the opening and closing curves) of the test substance in the lowest standard used in making the calibration standards.
10.1 1
Laboratory Controls-Laboratory control samples will be used throughout the study to ensure reliable results are achieved. Laboratory control data will be collected and compared to the data collected from the study samples. The report will include appropriate calculations based on the differences between the controls and the study samples. The final report will also include any appropriate tables, information or observations pertaining to the control samples.
11.O Subcontracted Analysis 11.1 Not Applicable.
12.0 Statistical Methods and Calculations
12.1 Statistical methods for the analytical results will be limited to the calculations of
means, standard deviations, relative standard deviations, and percent recoveries
(as appropriate).
12.2 Percent recoveries will be calculated using the following equation:
[(A-B)/C] * 100
where:
A = analyzed concentration of the spiked replicate sample B = analyzed concentration of the replicate sample (without spike) C = true concentration of the spike
12.3 Calculations will be made using the appropriate equations from the OECD Guideline 106 (pages 14-18).
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12.4 Report
~ A report of the results of the study will be prepared by 3M Environmental Laboratory. The report will include, but not be limited to, the following, when applicable:
12.4.1 Name and address of the facilities performingthe study,
12.4.2 Dates upon which the study was initiated and completed.
12.4.3 A statement of compliance by the Study Director addressing any exceptions to Good Laboratory Practice Standards.
12.4.4 A copy of the protocol, and any amendments and deviations. 12.4.5 The identification of the test substance (PFOS) and the results of
composition analyses. 12.4.6 A description of the methods used to conduct the test(s). The report will
contain updated methods incorporating any changes or improvements.
12.4.7 A description of the test system. 12.4.8 A description of any circumstances that may have affected the quality or
the integrity of the data.
12.4.9 The name of the Study Director and the names of other scientists, professionals, and supervisory personnel involved in the study.
2.4. OA description of the transformations, calculations, or operations performed on the data, a summary and analysis of the analytical chemistry data, and a statement of the conclusions drawn from the analyses.
2.4. lstatistical methods used to evaluate the data, if applicable. 2.4. 2The signed and dated reports of each of the individual scientists or other
professionals involved in the study, if applicable.
12.4.13The location where raw data and the final report are to be stored. 12.4.14A statement prepared by the quality assurance unit listing the dates that
study inspections and audits were made and the dates of any findings reported to the Study Director and Management. 12.5 If it is necessary to make corrections or additions to a final report after it has been accepted, the changes will be made in the form of an amendment issued by the Study Director. The amendment will clearly identify the part of the final report that is being amended, provide the reasons for the amendment, and will be signed by the Study Director.
13.0 Quality Assurance
13.1 The 3M EnvironmentalLaboratory Quality Assurance Unit will audit this protocol, the study conduct, and the final report in accordancewith GLP regulations and 3M Environmental Laboratory standard operating procedures.
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14.0 Location of Raw Data, Records, and Final Report
1
14.1 Original data or copies thereof, will be available at 3M Environmental
Laboratory. When the final report is completed (Tiers 11and III), all original
paper data, including those items listed below, will be retained in the archives of
3M EnvironmentalLaboratory following signing of the final report.
14.2 The following raw data and records will be retained in the study folder in the archives according to 3M Environmental Laboratory SOPs.
14.2.1 Approved protocol and amendments
14.2.2 Study correspondence
14.2.3 Shipping records
14.2.4 Raw data 14.2.5 Approved final report (original signed copy)
14.2.6 Electronic copies of data
14.3 The following supporting records will be retained separately from the study folder in the archives according to 3M Environmental Laboratory SOPs:
14.3.1 Training records
14.3.2 Calibration records
14.3.3 Instrument maintenance logs for LCMS
14.3.4 Standard operating procedures, equipment procedures, and methods
15.0 Sample Retention
15.1 A portion of the test substance used in the study will be retained in the laboratory for a period of not less than 2 years after a report is issued.
15.2 Tier I is used for preliminary purposes only. The study samples generated from this portion of the study will be retained for a minimum of two weeks after the Tier I data has been reviewed by the Quality Assurance unit and the issuance of a QA audit report.
15.3 Tier I1 and Tier 111study samples will be maintained in the laboratory for a period of time as specified by regulation or as long as the quality of the preparation affords evaluation. However, samples will not be maintained more than 10 years after the effective date of the final test rule (if applicable). 3M Environmental Laboratory standard operating procedures also apply to sample retention times.
15.4 Tier I1 and Tier III study samples of the prepared HPLC/MS/MS sample vials will
be retained and refrigerated for a period of not less than six months from the time of analysis.
-
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16.0 Protocol Amendments and Deviations
1
16.1 Amendments and deviations to the protocol will be in the form of written
amendments signed by the Study Director and the Sponsor Representative.
Amendments will be considered as part of the protocol and will be attached to the
final protocol. All changes to the protocol will be indicated in the final report.
Any other changes will be in the form of written deviations, signed by the Study
Director and filed with the raw data.
17.0 References
17.1 Organization of Economic Cooperation and Development. OECD Guideline for the Testing of Chemicals. "Adsorption-DesorptionUsing a Batch Equilibrium Method," OECD Guideline 106 Adopted 21 January 2000
17.2 United States Environmental Protection Agency. OPPTS 835.1220 Sediment and Soil AdsorptionDesorption Isotherm. Prevention, Pesticides and Toxic Substances: Fate, Transport and Transformation Test Guidelines. EPA 712-C-98048.1998
17.3 United States Environmental Protection Agency. OPPTS 835.1110Activated Sludge Sorption Isotherm. Prevention, Pesticides and Toxic Substances: Fate, Transport and Transformation Test Guidelines. EPA 7 12-C-98-298. January 1998
17.4 3M Environmental Laboratory Method ETS-8- 159: Preparation of Soil Samples for Preliminary (Tier I) Sorption Studies for Fluorochemicals as the Test Substance
17.5 3M Environmental Laboratory Method ETS-8- 160: Preparation of Soil Samples for Screening and Advanced (Tier 11and Tier 111)Sorption Studies for Fluorochemicals as the Test Substance
17.6 3M Environmental Laboratory Method ETS-8-110: Analysis of Perfluorooctanesulfonateor Other Fluorochemicalsin Water Extracts Using HPLC-Electrosprayblass Spectrometryblass Spectrometry
17.7 3M Environmental Laboratory Method ETS-8- 154: Determination of Perfluorooctane sulfonate (PFOS), Perfluorooctane Sulfonylamide (PFOSA), and Perfluorooctanoate (POAA) in Water by Liquid-Solid Extraction and HighPerformance Liquid Chromatographymandem Mass Spectrometry (HPLC/MS/MS)
18.0 Attachments 18.1 Attachment A : Eample Numbering Scheme
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Laboratory Request Number (LRN)-E00-1311 I
Attachment A: Example Numbering Scheme
Matrix Solutions
1
E00-13 11-0001
E00-13 11-0002
E00-1311-0003
Analytical Samples made from Matrix Solutions
EOO- 13 11-0004
E00-13 11-0005
EOO- 1 3 11 -0006
Suitable Container
E00-1311-1016 --- S1 S2 E00-1311-1017 --- S1 S2 E00-1311-1018 --- S1 S2
E00-1311-1018 MS S1 S2
Suitable Desorption Solvent
E00-1311-2010 --- S1 E00-1311-2011 --- S1 E00-1311-2012 --- S I
E00-1311-2012 MS S1
Optimal Ratio
E00-1311-3094 --- SI E00-1311-3095 --- S1 E00-1311-3096 --- S1
E00-1311-3096 MS S1
Optimal Ratio-Mass Balance
E00-1311-3094 --- S2
EOO-1311-3095 --- s 2
E00-1311-3096 --- S2
E00-1311-3096 MS S2
Adsorption Kinetics-OneConcentration
E00-1311-4031 --- S1 E00-1311-4032 --- S1 E00-1311-4033 --- S1
E00-1311-4033 MS S1
Desorption Kinetics-One Concentration
--- E00-13114031 ---
S2
S3
S4
S5
S6
S7
S8
E O - 1311-4032
S2 S3 S4 S5 S6 S7 S8
E00-1311-4033 ---
S2
S3
S4 S5
S6
SI
S8
E00-1311-4033 MS S2 S3 S4 S5 S6 S7 S8
Adsorption Isotherms-Multipleconcentrations
E00-1311-5058 --- S1 E00-1311-5059 --- S1 E00-1311-5060 --- s1
E00-1311-5060 MS S1 Desorption Isotherms-Multiple concentrations
E00-1311-5058 --- S2 S3 E00-1311-5059 --- S2 S3 E00-1311-5060 --- s 2 s 3
E00-1311-5060 MS S2 S3
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Attachment A: Example NumberingScheme
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Study Title :, Soil AdsorptiodDesorption Study of Perfluorooctanesulfonate(PFOS) - Test Control Reference
#TCR-00017-46
PROTOCOL AMENDMENT NO. I
Amendment Date: October 30,2000
Performing Laboratory 3M Environmental Laboratory
Building 2-3E-09 935 Bush Avenue St. Paul, MN 55144-1000
Laboratory Project Identification 3M EnvironmentalLaboratory Study LIMS #E00-1311
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Protocol #E00-I31 I
Amendment I
T h i s amendment modifies the following portion(s) of the protocol:
`:,
1. PROTOCORLEADS: SECTION 8.2.1: Previous work with the test substance in a variety of matrices have strongly indicated that the analysis of PFOS in the aqueous/soil matrix described in OECD Guideline 106 can be
accomplished by a dilution of a portion of the centrifuged aqueous portion with methanol in a 1:1 ratio.
AMENDTO READ: Previous work with the test substance in a variety of matrices has strongly indicated that the analysis of PFOS in the aqueous/soil matrix described in OECD Guideline 106 can be accomplished by a dilution of a portion of the centrifuged aqueous portion with methanol in at least a 1:l ratio.
REASON:Some of the samples in this study were diluted at a level other than 1:1.
2. PROTOCORLEADS: SECT~ON8.2.1:The resulting aliquot can then be analyzed using HPLC/MS/MS.
AMENDTO,READ: The resulting aliquot can then be analyzed using HPLC/MS.
REASON:Samples in this study were analyzed by single and triple quadrupole instruments, as well as MSD's. The
'!
term "LC/MS" encompasses all these instruments.
3. PROTOCOL READS:SECTION 8.4.2: Dose the test substance (at 2ug and 20ug) onto 2.5 grams of a strongly adsorbing (high clay content) soil.
AMENDTO READ: Dose the test substance (at 0.75ug and 7.5ug) onto 2.5 grams of a strongly adsorbing (high clay content) soil.
REASONT: he test substance concentrations were modified to more closely resemble the concentrations used in the rest of the study.
4. PROTOCORLEADS:SECTIO8N.4.5 If this process cannot recover 80% or more of the test substance, investigate a minimum of three other solvents.
AMENDTO READ: If this process cannot recover 80% or more of the test substance up to three other solvents may be investigated. However, the test substance in question may be so strongly bound to the soil that no solvent will
yield ideal recoveries. If one or more of the ratios tested in the "Optimal Soi1:Solution Ratio" portion of the experiment shows greater that 80% adsorption onto the high clay content soil at equilibrium this may be assumed to be the case. In this case no further solvent testing will be needed.
REASON:The test substance demonstrated a very strong adsorption onto the high clay content soils. Based on previous experience it was reasoned that alternative solvents were unlikely to yield acceptable recoveries.
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Protocol #EOO-13I I Amendment 1
5. PROTOCOL READS: SECTION 8.5.2 Dose the test substance such that the final concentration of test substance is approximately 1mg/L.
C AMEND TO READ:Dose the test substance such that the fmal concentration of test substance is approximately 5mg/L. REASONT: he test substance showed strong adsorption in earlier portions of the study, and it was necessary to increase the concentration.
6. PROTOCORLEADS:SECTIO9N.2 Additional methods may be developed at a later time and will be listed as protocol amendments. AMENDTO READ:ETS-S- 155. Analysis of Potassium Perfluorooctanesulfonateor Other Fluorochemicals in Wastestream or Water Extracts Using HPLC-ElectrosprayMass Spectrometry. REASON:This method was also used in the analysis of the study samples.
7. PROTOCORLEADS:SECTIO1N0.5 Upon completion of the analytical method validation portion of the study, an amendment to the protocol will be written defining acceptable criteria based on the validation results. AMEND TO READ: Matrix spikes and laboratory control sample recoveries will be acceptable if at least 80% of them are within f30% of the theoretical value. REASONA: cceptable criteria were decided upon after the signing of the protocol.
8. PROTOCOL READS: SECTION 10.8.1 HPLC/MS/MS AMENDTO READ: HPLC/MS.
REASON:Samples in this study were analyzed by single and triple quadrupole instruments, as well as MSD's. The
term "LCIMS" encompasses ail these instruments.
9. PROTOCOL READS:SECTIO1N0.9.2Upon completion of the analytical method validation portion of the study, an amendment to the protocol will be written defining acceptable criteria based on the validation standards.
AMENDTO READ:The Relative Standard Deviations of triplicate samples will be acceptable if at least 80% of them are less than or equal to 30%. In addition, a Q-test may be used to exclude outliers in data sets.
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REASONA: cceptable criteria were decided upon affer the signing of the protocol.
Protocol #OO- 7377 Amendment 7
` 10. PROTOCORLEADS:SECTION12.2 Percent recoveries will be calculated using the following equation: [(A-
B)/C]* 100 where: A = analyzed concentration of the spiked replicate sample B = analyzed concentration of the replicate sample (without spike) C = true concentration of the spike
AMENDTO READ:Percent recoveries will be calculated using the following equation: [(A-B)/C]* 100 where: , A = analyzed concentration of the spiked replicate sample B = analyzed concentration of the replicate sample (without spike)** C = theoretical concentration of the spike **If the replicate sample is below the LOQ it will not be subtracted from the concentration of the spikes replicate sample.
REASONC: larification of the term "true" concentration, and explanation of the formula. Since nothing can be said about a sample that is below the LOQ it should not be used in any calculations.
11. PROTOCOL READS: SECTION 15.4 HPLC/MS/MS AMENDTOREAD: HPLC/MS.
REASON:Samples in this study were analyzed by single and triple quadrupole instruments, as well as MSD's. The term "LCMS" encompasses all these instruments,
12. PROTOCOLREADS: SECTION 17.8 N/A (there was no previous section 17.8)
AMENDTO READ:3M Environmental Laboratory Method ETS-8- 155: Analysis of Potassium Perfluorooctanesulfonateor Other Fluorochemicals in Wastestream or Water Extracts Using HPLCElectrospraylMass Spectrometry.
REASONT: his method was not referenced in the protocol, but was used in the analysis of the study samples.
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Amendment Approval
Protocol #E00-131I
Amendment I
William K. Reagen, Sponsor Representative
---
o s - / 7 / ,c3/
Date
.<I7// v .
' Date
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1`
Appendix B: Analytical Methods
This amendix mesents the analvtical methods used in the mesent studv:
ETS-8-159 "Preparation of Soil Samples for Prelimmiry (Tier I) Sorption Studies for Fluorochemicals as the Test Substance" ETS-8-160 "Preparation of Soil Samples for Screening (Tier II) and Advanced (Tier III) Sorption Studies for Fluorochemicals as the Test Substance" OECD 106 "Adsorption - Desorption Using a Batch Equilibrium Method" ETS-8-155 "Analysis of Potassium Perfluorooctanesulfonate or Other Fluorochemicals in Waste Stream of Water Extracts Using WLC-Electrospray/Mass Spectrometryyy ETS-8-110 "Analysis of Potassium Perfluorooctanesulfonateor Other Fluorochemicals in Water Extracts Using HPLC-ElectrospmyMass Spectrometry/Mass Spectrometry"
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3M ENVIRONMENTLAALBORATORY
METHOD
PREPARATION OF SOIL SAMPLES FOR PRELIMINARY (TIERI) SORPTION STUDIES FOR FLUOROCHEMICAASLTSJ3E TESTSUBSTANCE (BASEDON OECD GUIDELINE106)
Method Number: ETS-8-159.0
Author: Linda Goodspeed, Cindy Car...Jn, Mark Elrefson Approved By:
Laboratory Manager
I
Adoption Date: Revision Date:
Date
Techical Reviewer
Date
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ETS-8-159.0 Tier I Sorption Studies
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1.o SCOPE AND APPLICATION
1.1 By complyingwith the requirements of the OECD Guideline 106. "Adsomtion-
Desorption Using A Batch Equilibrium Method", the data will meet the te'sting
$i
1.2
requirements of the European Community and Canada.
This method complieswith OPPTS 835.1220 "Sediment and Soil Adsorbhlesorb
Isotherm" and is also intended to meet testing requirements of the Federal Insecticide,
Fungicide, and Rodenticide Act (FIFRA) and the Toxic Substances Control Act (TSCA)
for the United States.
1.3 This method describes the procedures used to prepare method development study
samples and subsequently analyze them in order to demonstrate applicability. This
method precedes testing methods for the screening (Tier I) and the advanced (Tier 111)
portions of the Sorption Studies.
1.4 This method is based on the "Preliminary" subsection of OECD Guideline 106:
"Adsorption - DesorptionUsing A Batch Equilibrium Method".
1.5 The "Preliminary" portion of OECD Guideline 106 requires pre-testing done (method
development) in order to insure applicability of the subsequent tiers of the Guideline (the
"Screening" portion and the "Advanced" portion). The required pre-testing is designed to
determine:
1.5.1 a suitable analytical method
1.5.2 the adsorption of the test substance on the surfaces of the test vessels
1.5.3 the equilibration time for adsorption and the amount of test substance adsorbed at
equilibrium
1.5.4 a suitable desorption solvent
1.5.5 the soi1:aqueous ratio
1.5.6 the stability of the test substance during the study period
1.6 In addition, this internal 3M method (ETS-8-159) will address determination of an
approximationof the statistical variance of precision and accuracy data that may be
expected fiom the continuation of the procedure to the screening and advanced tiers of
OECD Guideline 106.
1.7 This method is applicable to the testing of fluorochemical substances manufacturedor
distributed by 3M.
I
1.8 An approximate solubility concentration of the test substance in water should be
established prior to the commencement of this method, so that appropriate concentrations
of the test substance in the study samples are used throughout.
2.0 SUMMARY OF METHOD
2.1 Suitable Analytical Method: 2.1.1 A soil of high adsorbability (high organic carbon and clay content) is agitated with an appropriate volume of 0.01 M CaC12 solution at cz 1:5 (w:v) ratio for a minimum of 4 hours. The mixture is centrifuged and the aqueous phase filtered, if necessary. A certain volume of the test substance stock solution is added to the latter to reach a nominal concentration within the concentration range that is likely to occur during the test. This "study sample" is then prepared for later analysis using HPLCMS. After the study sample has been analyzed, a determination is made as to whether HPLC/MS is a suitable analytical method for the test substance.
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2.2
i
2.3
2.4
2.5 3.0 3.1 3.2 3.3
Suitable Desorption Solvent: 2.2.1 Methanol is investigated as the first choice for a suitable desorption solvent for
the test substance. A high clay content soil is dosed with the test substance at two levels (1 pg, 10 pg). The test substance is then extracted from the study samples three times with methanol. The combined methanol extracts are then prepared for analysis by HpLCiMS.
2.2.2 If the extraction results in a total of 280% desorption, no further testing of solvents is necessary. Otherwise, up to three other solvents will be investigated in
a similar manner until the criteria (280% desorption) are met. 2.2.3 If the criteria are not met, the most suitable solvent among those tested will be
chosen. Suitable (Minimally Adsorbing) Container 2.3.1 Up to five containers comprising a variety of materials are exposed to a 0.01 M
CalClz aqueous solution dosed with the test substance for a minimum of 24 hours. The resulting solution is analyzed for the test substance using HPLC/MS. In addition, an extraction of the walls of the container with methanol is made. This extract is analyzed as well. Any container that adsorbs less than 10%of the test substance onto its walls is considered suitable for use as a study container. Alternatively, the container demonstrating the least amount of test substance absorption is chosen from those tested. Selection of Optimal Soil: Aqueous Solution Ratio, Determination of Equilibration Time, and Stability of the Test Substance under Conditions of the Study 2.4.1 The optimal soil: aqueous ratio is determined by using two types of soils and three soil: solution ratios. The test substance is dosed into an aqueous solution in contact with the soil. Sufficient tubes are prepared such that tubes can be removed after a period of time (spanning 0 to 48 hr) and the aqueous portion analyzed. Equilibrium is determined by plotting the adsorption of the test substance over time. The optimal soil: solution ratio is determined by a comparison of the amount of adsorption of the test substance at equilibrium for the various soil: solution ratio study samples. Acceptable values are soil: solution ratios that give a depletion of the test chemical above 20% and preferably above 50% at equilibrium. Stability is determined by a mass balance determination. The mass balance determination is conducted on both soils and on the one soi1:solution ratio per soil that gives a depletion of the test chemical above 20% and preferably above 50% at equilibrium. In all cases, adequate quality assurance samples are prepared and analyzed.
DEFINITIONS
Test Substance: Any substance (mixture or controlled compound) added or administered to the test system for the purpose of biological or chemical measurements. Target Analyte: In the analytical phase of a study, the chemical(s) singled out in the analyses is the target analyte. The target analyte may be identical to the test substance used in the in-life phase of the study, or a by-product of that chemical. Reference Substance: A material or substance, one or more properties or constituents of which are sufficiently well established for it to be used for the calibration of an apparatus, the assessment of a measurement method, or for assigning values to materials.
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3.4 .:<, 3.5
3.6
3.7
3.8
4.0 4.1
4.2
5.0 5.1 6.0 6.1 6.2 6.3 6.4
Test system: Any animal, plant, microorganism, chemical, or physical matrix (including soil or water) or any subpart thereof, to which the test, control, or reference substance is administered or added for study. Study sample: A sample containing the test substance in contact with the test system, or any of the subsequent samples generated from the initial set up. Control Sample: A sample containing the test substance, but which does not include the entire test system or any subsequent samples generated from the initial set up. In most, but not all cases, control samples go through all of the same processes as the study samples. Matrix Blank: A sample that has not been exposed to the test substance and/or target analyte. Matrix blanks may or may not include the entire test system. The term matrix blank also includes any subsequent samples generated from the initial matrix blank set up. In most, but not all cases, matrix blanks go through all of the same processes as the study samples. Solvent Blank: Aqueous or organic solvent that has not been exposed to the test substance and/or target analyte, and is analyzed to demonstrate the absence of target analytes in the solvent.
WARNINGASND CAUTIONS Health and Safety Warnings: 4.1.1 Many of the fluorochemicals used in the laboratory are not completely
characterized for toxicity and other health hazards. They should be treated as potential health hazards. Proper equipment such as gloves and safety glasses should be worn when working with these chemicals or any solvents. Skin contact and inhalation should be avoided. Preparation of the stock standards should be done under a hood. All spills should be wiped up immediately. Cautions: 4.2.1 Contaminationof glassware and equipment by the compounds of interest are an on-going issue within laboratories. Care must be taken to rinse any reusable glassware with appropriate solvents before and after the glassware is used. Triple rinsing with methanol or acetone is recommended to remove fluorochemicals from the glassware. Clean all spills immediately to avoid present or hture
contamination.
4.2.2 Use disposable glassware whenever possible.
INTERFERENCES Any compound that co-elutes with the test substance or the reference material during the HPLC/MS analysis can interfere with quantification.
EQUIPMENT Balance capable of weighing to 0.1 mg, such as OHAUS Brand Model GA200 Centrifuge capable of maintaining 4,000 f 200 rpm, such as Jouan Brand Model C412 Orbital shaker capable of a gentle rotation and temperature controlled capable of maintaining 23 f 3 C, such as Lab-Line Model Environ-Shaker Vacuum Pump, such as Gast #DOA-P104-AA (Optional)
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7.0 SUPPLIES AND MATERIALS
7.1 15-mL polypropylene centrifuge tubes, such as VWRbrandQ Centrifuge Tubes, catalog
number 21008-089
7.2 15-mL polystyrene centrifuge tubes such as VWRbrandQ Centrihge Tubes, catalog
number 21008-202
7.3 15-mL styrene butadiene centrifuge tubes such as VWRbrandm Centrihge Tubes,
catalog number 21008-226
7.4 15-mL glass centrifuge tubes
7.5 30-mL Teflon centrifuge tubes
7.6 50-mL plastic centrifuge tubes, such as VWRbrandcE 20171
7.7 Syringes, 10 uL, 25 uL, 1000UL
7.8 Volumetric flasks, 10-mL, lOO-mL, 1-L, 5-L, NalgeneB and/or glass
7.9 Automatic or manual dispenser, capable of dispensing liquid with *O. 1mL accuracy
7.10 250-1000 uL manual pipettor(s) and plastic pipette tips, or equivalent
7.11 Autosamplervials, 1.5 to 2 mL GC/HPLC, such as Kimble # 60820-1232 or equivalent
7.12 Autosamplervial caps, such as Wheaton # 224211-01
7.13 GC/HPLC autovial crimper(s) and decrimper(s)
7.14 Appropriately sized storage containers with tight-fitting caps for solutions
i
7.15 Glassware, miscellaneous
7.16 150-mL NalgeneB bottles or equivalent
7.17 pH paper capable of distinguishing pH to k0.5 units.
8.0 REAGENTS, SOLUTIONS AND STANDARDS
8.1 Reagents 8.1.1 Methanol, HPLC grade, such as J.T. Baker #9093. 8.1.2 ASTM Type I water, 18.0 Mi2 or better. 8.1.3 CaC12, Anhydrous, to meet ACS specifications (>96% pure),'such as J.T. Baker #1311. 8.1.4 Soils: Appropriate soil types selected from Table 1 below. (Soils should be airdried at ambient temperature and sieved to a particle size 12 mm.)
Table 1
Sandlloamy sand
NOTE: It may not be possible to obtain soils that match all criteria. Soils will be used that match as closely as possible the parameters as listed. Exceptionswill be noted.
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t
8.2
8.1.5 Sediment: NOTE: Sediment may be used in addition to the soil types listed, but is not required as part of this method.
8.1.6 Sludge: In addition to soil andor sediment, sludge may be used as appropriate to achieve the goals of the study in question. The use of sludge is not required by this method.
8.1.7 Test Substance: Characterized by HPLCNS 8.1.8 Reference Material: THPFOS, lH, lH, 2H, 2H- perfluorooctanesulfonic Acid Solutions and Standards: NOTE: Different quantities of any of the solutions may be prepared, as long as solutions are documented as to how they were made. 8.2.1 Solution A: 0.01 M CaCl2 Solution
5.55k0.02 grams of CaC12 dissolved in 5.0 L of ASTM Type I water. This solution is may be stored for up to 100 days at room temperature, 8.2.2 Solution B: -50 mg/L test substance in 0.01 M CaC12 Solution Dissolve 0.050 f0.005 grams of test substance in 1.0 liter of 0.01 M CaC12. Use volumetric flask and record weight. Immediately transfer into a NalgeneB container(s). This solution is may be stored for up to 35 days at room temperature. However, it is good practice to take an aliquot of this solution and prepare it to
run along with samples prepared at the same time to monitor for any possible
degradation andor adsorption to the container.
9.0 SAMPLEHANDLING
9.1 All study samples generated and prepared for analysis by HPLC/MS may be left at room temperature for a maximum of 15 days, or refkigerated for a maximum of six months.
9.2 The autovial study samples may be reanalyzed at any time throughout the study. However, autovials whose caps have been pierced should have the caps replaced within 3 days.
10.0 QUALITYCONTROL
10.1 Matrix Blanks consisting of the following types will be prepared for the study:
10.1.1 0.01 M CaClz in contact with each of the selected soil types
10.2 Matrix Spikes (MS): One matrix spike will be prepared for each sample set, except as
noted in the method 10.3 Solvent Blanks will be prepared for the study:
10.3.1 0.01 M CaC12 and No Soil 10.3.2 Methanol and No Soil (in some sections) 10.4 Control Samples: Control Samples per following type will be prepared for the study: 10.4.1 Test substance in 0.01 M CaCl2 only 10.4.2 Test substance in Methanol only (in some sections) 10.5 Sample Replicates: Sample sets will consist of a "sample," "duplicate," and "triplicate," except as noted in the method 10.6 Surrogate(s): No surrogate will be used in this study. 10.7 Reference Material: THPFOS will be used as the reference material.
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11.0 CALIBRATIOANND STANDARDIZATION 11.1 This section is outside the application of this method.
12.0 PROCEDURES
12.1 Labeling of Samples (Centrifuge Tubes) and Autovials-Centrifuge tubes and
autovials should be prelabeled, according to the following scheme:
12.1.1 The study project should be given a unique Lab request number from 3M's
EnvironmentalLaboratory Sample Control Numbering system.
12.1.2 Study Samples,Labeling of Centrifuge Tubes: Each individual sample and QC
sample that is set up in the Suitable Analytical Work section will have a unique
identifier.
12.1.3 If necessary, aliquots taken from the study samples will be uniquely identified by
using the initial study sample ID and then adding an additional designator for
each aliquot removed from the study sample.
12.1.4 All autovials will clearly identify any "extra" dilution made of its contents.
12.1.5 All Matrix Spike samples will contain all of the above information, as well as the
designator "MS."
12.2 Suitable Analytical Work
i
12.2.1 Each soil used in this study must be tested for the suitability of the proposed
analytical work. Cany each soil to be used through the analysis described in this
section.
12.2.2 Weigh 20 grams of soil into a vessel and record the weight. (Do this in triplicate.)
12.2.3 Add 100 mL of 0.01 M CaC12 solution.
12.2.4 Place the soil: aqueous solution in an orbital shaker with gentle rotation at
ambient temperature for a minimum of four hours.
12.2.5 Centrifuge the contents until the aqueous portion is clear (transfer into smaller
centrifuge tubes if necessary).
12.2.6 Transfer this solution into a clean container, label as "Matrix Solution" and give a
unique ID number to it. Store under refrigeration.
12.2.7 Matrix Blanks:
12.2.7.1 Prepare by aliquotting 1.00mL of the Matrix Solution directly into an
autovial. Prepare one Matrix Blank for each Matrix Solution.
12.2.8 Study Samples:
12.2.8.1 Add 100 pL of stock test substance solution (Solution B) to a 10 mL
volumetric flask. (Volume of stock solution added may be adjusted. Final
concentration should be approximately 0.500 mg/L). Dilute each flask to
the mark with the Matrix Solution. Do this in triplicate for each Matrix
Solution (a total of nine flasks).
12.2.8.2 Label with unique ID number.
12.2.8.3 Continue by withdrawing 1.0 mL of the study sample and dispensing into
the same prelabeled autovial.
12.2.9 Add THPFOS internal standard prior to analysis.
12.2.10Analyze autovials using appropriate methodology to determine concentration of
test substance.
12.2.11Calculate percent test substance of theoretical as described in the Calculations
section.
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12.3 Suitable Container 12.3.1 Select the typedmaterials of centrifuge tubes to use in the study from the Supplies and Materials section of the method (up to 5). 12.3.2 Prepare 100mL of each of the following solutions: 12.3.2.1 0.0 mg/L of test substance in 0.01 M CaC12 (i.e., Solution A). 12.3.2.2 -0.05 mg/L of test substance in 0.01 M CaC12. (Dilute 100 ULof Solution B to 100 mL with Solution A in a NalgeneB volumetric flask.) 12.3.2.3 -0.50 mg/L of test substance in 0.01 M CaC12. (Dilute 1000 ULof Solution B to 100 mL with Solution A in a NalgeneB volumetric flask.) 12.3.3 Prepare Time "0 hr" samples: 12.3.3.1 Dispense 1.OOmL of each of the three solutions listed in section 12.3.2 directly into labeled autovials. Do this four times for each solution (triplicate samples and one matrix spike). 12.3.3.2 Spiking: Refer to section 12.6. 12.3.4 Prepare Time "24 hr" samples: 12.3.4.1 Aliquot lOmL of solution into each centrifuge tube, according to the following Study Sample grid (Table 2):
Table 2
Conc. Test Substance,
mglL
0.0
-0.05
-0.50 I
No. of tubes
Solution
Cent. Tube,
Type 1
12.3.2.1
3
12.3.2.2
3
12.3.2.3 I 3
No. of tubes
Cent. Tube,
Type 2
3
3
3
No. of tubes
Cent. Tube, Type 3
3
3
3
No. of tubes
Cent. Tube, Type 4
3
3
3
No. of tubes
Cent. Tube, Type 5
3
3
3
12.3.4.2 Equilibrate the tubes for 24 hours at room temperature in an orbital shaker set to gently rotate. Record start and stop times on the appropriate data
form.
12.3.4.3 Transfer 1.OOmL of the study sample into a labeled autovial.
12.3.4.4 Spiking: Refer to section 12.6 for spiking. 12.3.4.5 Empty contents of the tubes. (Contents may be discarded.) 12.3.4.6 Add 2.0 mL of Methanol to the empty tube. 12.3.4.7 After recapping the tube, thoroughly rinse the sides and cap of the
centrihge tube. 12.3.4.8 Transfer 1.0mL of the rinse solution from 12.3.4.6 to an autovial and cap
tightly. 12.3.4.9 Spiking: Refer to section 12.6 for spiking. 12.3.5 Add THPFOS internal standard prior to analysis. 12.3.6 Analyze all autovials using appropriate methodology to determine concentration
of test substance. 12.3.7 Calculate percent test substance of theoretical as described in the Calculations
section.
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12.4
t
12.3.8 Choose the most appropriate container based on minimal adsorption as well as convenienceand cost.
Suitable Desorption Solvent 12.4.1 Two amounts (1 ug and 10 ug total) of test substance will be used, as well as a
blank control. 12.4.2 Select a soil with high clay content from the list of soil types in section 8.1.4 for
use in this study. 12.4.3 Use the centrifuge tubes determined from section 12.3 of this method. 12.4.4 Using the following Study Sample grid (Table 3), prepare the following
(replicate) sample sets:
Table 3
Total pg of Test Substance 0.0
-1 PS
-10 P9
Matrix
Soil only Soil only Soil only
VLof Stock Test Substance 0.0
20
200
Amount of Soil (grams) 2.50 k 0.05
2.50 f 0.05
2.50 k 0.05
# of Tubes with Soil
3
w#iOthfTNuobSeosil I
3 31
3
3
12.4.5 Weigh soil amounts as indicated and record weights on the appropriate data form. 12.4.6 Add the test substance onto the soil as indicated in Table 3. 12.4.7 Mix the soil contents thoroughly and then allow the tubes to sit for a minimum of
10 minutes to insure adsorption of the test substance onto the soil. 12.4.8 Add 2.5 mL of methanol to each tube and cap tightly. 12.4.9 Vortex for 1 minute. (Alternatively, place tubes horizontally on a shaker and mix
for 10 minutes.) 12.4.10Centrifuge the tubes and remove as much of the solvent layer as possible, without
disturbing the solids layer.
12.4.11Place the solvent layer into a second prelabeled centrifuge tube.
12.4.12Repeat steps 12.4.8 through 12.4.12 twice more, adding the solvent portion to the
same tube each time. 12.4.13Withdraw 1.00mL of the study sample and dispense into a prelabeled autovial. 12.4.14Spiking: Refer to section 12.6 for spiking. 12.4.15Add THPFOS internal standard prior to analysis. 12.4.16Analyze autovials using appropriate methodology to determine concentration of
test substance. 12.4.17Calculate percent test substance of theoretical as described in the Calculations
section.
12.4.18If the total test substance recovery from the soil is S O % , no further testing of solvent is necessary.
12.4.19If the test substance recovery from the soil is <SO%, investigate other solvents, using the same procedural steps.
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12.5
i t
Selection of Optimal Soil: Solution Ratios 12.5.1 Select two soils from the soils listed in section 8.1.4.
12.5.1.1 One soil type with high organic carbon and low clay content. 12.5.1.2 One soil type with low organic carbon and high clay content. 12.5.2 Using the centrifuge tube type determined for use from section 12.3, set up the
following study sample grid (Table 4). Control blanks are set up for only two time points (0 hr and 48 hour). All other samples are set up for eight time points,
Table 4
12.5.3 12.5.4
12.5.5 12.5.6 12.5.7
Document the pH of the stock test substance solution, using pH paper. Record to
k0.5 pH units. The study samples are equilibrated with the 0.01 M CaC12 solution for a minimum of 12 hours by placing the tubes on an orbital shaker at 23 f3 O C using a gentle rotation. Record start and stop timeddates on appropriate data forms. Remove the tubes after the 12 hours and add the Stock Test Substance Solution (Solution B) in the amounts as specified in Table 4 (grayed section). For Time "0 hr" study samples only, gently mix and proceed directly to 12.5.10. The rest of the study samples are then placed back on the orbital shaker 23 +_ 3 "C using a gentle rotation. Record start timeddates on appropriate data forms.
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12.5.8 Remove (replicate) sample sets at the following time points and record the date(s)/time(s) of removal.
2 hr 4 hr 8 hr 16 hr
24 hr 36 hr 48 hr
12.5.9 For the Time "48 hr" study samples only, weigh the tube + Contents and
record on the appropriate data forms. 12.5.10Centrifuge until the aqueous layer appears clear.
12.5.11Document the pH for one of each sample set per time point. Record to k0.5 pH units.
12.5.12Withdraw 1.OOmL of the study sample and dispense into a prelabeled autovial. 12.5.13Spiking: Refer to section 12.6 for spiking. 12.5.14Continue to pull the (replicate) timed study sample sets at the designated time
points and repeat steps 12.5.10 through 12.5.13, as appropriate. 12.5.15Continue with the procedure using the "Time 48 hr" set of tubes only. 12.5.16Remove as much of the aqueous layer as possible without removing any of the
solids layer (discard the aqueous layer).
12.5.17Weigh the tube + contents and record on the appropriate data form.
12.5.18Methanol addition 12.5.18.1 Add 2.0 mL of methanol to tubes containing 3 or less grams of soils (this include all blank controls). 12.5.18.2 Add 3.0 mL of methanol to tubes containing more than 3 grams of soil.
12.5.19Vortex for 1 minute. (Alternatively, place tubes horizontally on a shaker and mix for 10 minutes.)
12.5.20Centrifuge the tubes and remove as much of the solvent layer as possible. 12.5.21Place the solvent layer into a second prelabeled centrifuge tube. 12.5.22Repeat steps 12.5.18 through 12.5.21 twice more, adding the solvent portion to
the same tube each time. 12.5.23After all three portions of methanol extract have been added to the centrifuge
tube, centrifuge the solution until it is clear. 12.5.24Transfer 1.OOmL of the study sample solution into the sane autovial. 12.5.25Spiking: Refer to section 12.6 for spiking. 12.5.26After all study samples have been pulled, prepped, and the internal standard
added, analyze autovials using appropriate methodology to determine concentration of test substance. 12.5.27Make appropriate calculations as defined in the Calculations section. 12.5.28Determine the optimal soiksolution ratio based the following two factors: 12.5.28.1 Adsorption of the test substance should be between 20% and 80% onto the
soil. 12.5.28.2 If possible, a soil: solution ratio that enables the use of 15-mL centrifuge
tubes is highly preferred. (The weight of the soil can be adjusted down to
a minimum of 1.0 k 0.05 grams. The aqueous ratio would be adjusted accordingly.)
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12.6
t
Spiking 12.6.1 Only one replicate per study sample set will be spiked with a known amount of
the test substance. 12.6.2 Spiking will be done whenever any aliquoted study sample is generated. 12.6.3 Dilute samples to the appropriate level for analysis (if necessary) with methanol. 12.6.4 Add an appropriate amount of spiking solution to provide a spike concentration of
approximately 200ppb (or as deemed appropriate).
13.0 DATAANALYSIS AND CALCULATIONS 13.1 Data analysis and calculations should be done using the templates provided from OECD
Guideline 106.
14.0 METHODPERFORMANCE There are no previously defined method performance criteria for this method. However, this method will generate statistical data that may be used as a guideline for monitoring performance for Method ETS-8-160.
14.1 Accuracy 14.1.1 Matrix Spikes (MS): One matrix spike per study sample set will be generated. The matrix spikes will be calculated by using the following equation:
(MS conc. analytical - Sample conc. analytical) x 100 (MS Spike conc. theoretical)
14.2 Precision 14.2.1 Replicates: Triplicate study samples will be generated using this method. Relative Standard Deviations (RSD) will be calculated from the triplicate samples. In the cases, where there are only two replicates, the Relative Percent Difference (RPD) will be calculated.
15.0 POLLUTION PREVENTION AND WASTE MANAGEMENT
15.1 Dispose of sample waste by placing in high or low BTU containers as appropriate.
15.2 Use broken glass containers to dispose of any empty glass containers, pipettes, etc.
16.0 RECORDS 16.1 Laboratory data forms will be generated and filled out during the course of this study.
These data forms will be archived according to standard laboratory protocols.
17.0 ATTACHMENTS
17.1 Example data forms: 17.1.1 Suitable Analytical Method Data Form 17.1.2 Suitable Container Data Form 17.1.3 Suitable Desorption Solvent Data Form 17.1.4 Soil: Aqueous Optimal Ratio Data Form
18.0 REFERENCES
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18.1
c 18.2
Organization of Economic Cooperation and Development, OECD Guideline for the Testing of chemicals. "Adsorption-Desorption Using a Batch Equilibrium Method: OECD Guideline 106 Adopted 21 January 2000. EPA Fate, Transport and Transformation Test Guidelines: OPPTS 835.1220 Sediment and Soil Adsorptiodllesorption Isotherm, EPA 712-C-98-048, January 1998.
19.0 AFFECTEDOCUMENTS
19.1 ETS-8-160.0 Preparation of Soil Samples for Screening (Tier 11) and Advanced (Tier 111) Sorption Studies for Fluorochemicals as the Test Substance (Based on OECD Guideline 106).
20.0 REVISIONS
Revision Number.
Reason For Revision
Revision
- Date
3M EnvironmentalLaboratory
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Suitable Analytical
c,G
5 - 0
0 P
i 1
-0
g0 .sz
5.- I %
09
2
EOO-W-OOOI E00-~-0002 EW-W-WO~ ,
ETS-8-159 Section 12.2
&m
.sooe!
3
A
.?m
wr
4
5
6
Test Substance:
-u)
5 E
5
0
7
I
0
E00-~-0004
E00-aca-0001
1
EOO-xca4001
1
EOO-XXX-OW~
1
E00-xm-0002
1
E00-m-0003
1
EOO-XXX-OOO~
1
E00-aca-0003
1
Col. 4
Test Substance =
TlDll
ID #:
-/-I -
Col. 5 Col. 6
Matrix Solution ID #:
--- TIDll --- TIDll
I
I
I
I
Internal Standard ID Number
GLP Study Number:
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Suitable Analytical
ETS-8-159 Section 12.2
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Test Substance:
Col. 2 Col. 3 Col. 4 Col. 5
Col. 6
Soil ID #:
Balance ID
TIDII
-1-1-
0.01 M CaC12 Soln ID #:
TIDll Inc. ID Start TIDII Stop TIDll
TIDII
1-
-I-/ -I-I -
1-
Col. 4
Test Substance =
ID #:
TIDII
-I-1-
Col. 5
Matrix Solution ID #:
TIDII
Col. 6
TIDII
Internal Standard ID Number
-I-1 -I -1 -
TIDll
1-
GLP Study Number:
3M Environmental Laboratory
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Suitable Container
!a2
CT-1
CTd
CT-2
CTJ
CTJ
ETS-8-159Section 12.3
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Test Substance:
-. I
I-IS2I
I
I
I
I
GLP Study Number:
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Desorption Solvent
C o l 4 Soil ID 1 Soil ID 2
C o l 6 Batanem ID
Tmn--/-/-
CoI 7 Test Subst Soh 10#
T/D/l
/ I
Co1.8 MeOH ID #
rnIl--/-/-
ETS-8-159 Section 12.4
C~ O~l 9~.
TIDII C o l 10 M e O H ID #
TID/I COl11
T/DA C o l 1 2 MeOH ID#
T/D/l
/
I
/ /
I
I
I
I
Test Substance
COl I 3
T/D/l
/
Col 15 Study Sample
Tmn--/-/Col 16 Spike soh ID #
TimelDate/lnitials Internal Standard ID #
TimelDatellnitials
I
II I /
GLP Study Number:
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Optimal Ratio t
ETS-8-159 Section 12.5
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Test Substance
GLP Study Number:
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lof5
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Optimal Ratio
ETS-8-159 Section 12.5
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Test Substance
GLP Study Number:
3M Environmental Laboratory
Zof 5
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Optimal Ratio
ETS-8-159 Section 12.5
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Test Substance
GLP Study Number
3M Environmental Laboratory
30f 5
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Optimal Ratio
ETS-8-159 Section 12.5
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Test Substance
GLP Study Number:
3M Environmental Laboratory
40f 5
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Optimal Ratio
ETS-8-159 Section 12.5
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Test Substance
GLP Study Number:
3M Environmental Laboratory
50f 5
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Optimal RatitiolMarsBalsncn
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ETS-8.159 Section 12 5 (cont)
Test Substance:
. I , ,
GLP Study Number:
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3M ENVIRONMENTLAALBORATORY
t
METHOD
PREPARATION OF SOIL SAMPLES FOR SCREENING(TIER11) AND ADVANCED (TIER111) SORPTION STUDIES FOR FLUOROCHEMICALSAS THE TESTSUBSTANCE
(BASEDON OECD GUIDELIN1E06)
Method Number: ETS-8-160.1
Author: Cindy Carlson, Mark Elrefson Approved By:
W- Ld-
Laboratory Manager
Adoption Date: I I 3 i IOu
Revision Date: s / ,7 / 0
Date
ETS-8- 160.1 Tiers I1 and 111 Sorption Studies
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1.0 1.1
`d 1.2
1.3 1.4 1.5 2.0 2.1
2.2
2.3
- SCOPE AND APPLICATION
By complying with the requirements of the OECD Guideline 106, "Adsorption Desorption Using A Batch Equilibrium Method",the data will meet the testing requirements of the European Community and Canada. This method complies with OPPTS 835.1220 "Sediment and Soil Adsorbmesorb Isotherm" and is also intended to meet testing requirements of both the Federal Insecticide, Fungicide, and Rodenticide Act (FIFRA) and the Toxic Substances Control Act (TSCA) for the United States. This method is applicable to test systems using soils, sediments or similar matrices as the adsorptive material. This method is applicable to the testing of fluorochemical substances manufactured or distributed by 3M. An approximate solubility concentration of the test substance in water should be established prior to the commencement of this method, so that appropriate concentrations of the test substance in the study samples are used throughout.
SUMMARY OF METHOD
Tier 11: Adsorption Kinetics (One concentration): 2.1.1 Appropriate soils andor sediments andor sludges are selected for the study.
Replicate study samples containing the soils (or sediments or sludges) are equilibrated by shaking for at least 12 hours at room temperature with 0.01 M CaC12. These study samples are then dosed with the test substance and placed back on an orbital shaker. Aliquots of these study samples are removed at designated time points throughout a 48-hour time period. These study samples are then prepared and analyzed for the target analyte. The adsorption kinetics are then determined using this data. After the last aliquot is taken (48 hour time point) the study samples are saved and used for the desorption kinetics portion of the method. Tier 111: Desorption Kinetics (One concentration): 2.2.1 After the adsorption kinetics experiment, the study samples are centrifuged and the aqueous phase removed. The volume of solution removed is replaced by an equal volume of 0.01 M CaCl2 without test substance. The new mixture is agitated until the desorption equilibrium is reached. During a 48-hour period, at defined time intervals, aliquots of the aqueous phase are removed and analyzed for the target analyte. The experiment then continues with the original mixture. The desorption kinetics are determined using this data. Tier 111: AdsorptionIsotherms (Five concentrations): 2.3.1 Five test substance concentrations are used covering two orders of magnitude (if the solubility of the test substance permits). Study samples containing soil (or sediments or sludges) in contact with 0.01 M CaC12 are equilibrated for a minimum of 12 hours. After this, the study samples are dosed with test substance. The samples are then gently agitated until adsorption equilibrium is reached. Sample sets are removed from the orbital shaker at designated time intervals. The study samples are then prepared and analyzed for the target analyte. The adsorption isotherms are calculated using this data. The study samples fiom the last time interval are saved for the desorption isotherm study.
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2.4
i
2.5
2.6 3.0 3.1 3.2 3.3 3.4 3.5 3.6 3.7
3.8
Tier 111: Desorption Isotherms: 2.4.1 The study samples from the adsorption isotherm study are used for the desorption
isotherm study. These samples are centrifuged and the iiqueous layer removed. An equal volume of fresh 0.01 M CaCl2 solution containing no test substance is added to each sample. The samples are placed back in the orbital shaker and equilibrated for 48 hours. These new study samples are then prepared and analyzed for the target analyte. (These study samples are saved and used to determine mass balance.) The desorption isotherms are determined using this data. Tier 111: Mass Balance: 2.5.1 The study samples from the desorption isotherm study are used for the mass balance study. The study samples are centrifuged and the aqueous layer removed. Three portions of methanol are added to the study samples. With each addition of methanol, the study samples are agitated, centrifuged, and the methanol removed and placed in a second container. These subsequent (methanol) study samples are then prepared and analyzed for the target analyte. Mass balance is determined using this data. In all cases, adequate quality assurance samples are prepared and analyzed.
DEFINITIONS Test Substance: Any substance (mixture or controlled compound) added or administered to the test system for the purpose of biological or chemical measurements. Target Analyte: In the analytical phase of a study, the chemical(s) singled out in analyses is the target analyte. The target analyte may be identical to the test substance used in the in-life phase of the study, or a by-product of that chemical. Reference Substance: A material or substance, one or more properties or constituents of which are sufficiently well established for it to be used for the calibration of an apparatus, the assessment of a measurement method, or for assigning values to materials. Test system: Any animal, plant, microorganism, chemical, or physical matrix (including soil or water) or any subpart thereof, to which the test, control, or reference substance is administered or added for study. Study sample: A sample containing the test substance in contact with the test system, or any of the subsequent samples generated from the initial set up. Control Sample:A sample containing the test substance, but which does not include the entire test system or any subsequent samples generated from the initial set up. In most, but not all cases, control samples go through all of the same processes as the study samples. Matrix Blank: A sample that has not been exposed to the test substance and/or target analyte. Matrix blanks may or may not include the entire test system. The term matrix blank also includes any subsequent samples generated from the initial matrix blank set up. In most, but not all cases, matrix blanks go through all of the same processes as the study samples. Solvent Blank: Aqueous or organic solvent that has not been exposed to the test substance and/or target analyte, and is analyzed to demonstrate the absence of target analytes in the solvent.
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4.0 4.1
i. t
4.2
WARNINGASND CAUTIONS
Health and Safety Warnings: 4.1.1 Many of the test substances used in the laboratory are not completely
characterized for toxicity and other health hazards. They should be treated as potential health hazards. Proper equipment such as gloves and safety glasses , should be worn when working with these chemicals or any solvents. Skin contact and inhalation should be avoided. Preparation of the stock standards should be done under a hood. All spills should be wiped up immediately. Cautions: 4.2.1 Contamination of glassware and equipment by the compounds of interest are an on-going issue within laboratories. Care must be taken to rinse any reusable glassware with appropriate solvents before and after the glassware is used. Triple rinsing with methanol or acetone is recommended to remove background contamination fiom the glassware. Clean all spills immediately to avoid present or future contamination. 4.2.2 Use disposable glassware whenever possible.
5.0 INTERFERENCES 5.1 Any compound that co-elutes with the target analyte(s) or the re.ference material during
the HPLCMS analysis can interfere with quantification.
6.0 EQUIPMENT
6.1 Balance capable of weighing to 0.1 mg, such as OHAUS Brand Model GA200 6.2 Centrifuge capable of maintaining 4,000 f 200 rpm, such as Jouan Brand Model C412 6.3 Orbital shaker capable of a gentle rotation and temperature controlled capable of
maintaining 23 f 3"C, such as Lab-Line Model Environ-Shaker 6.4 Vacuum Pump, such as Gast #DOA-P104-AA (Optional)
7.0 SUPPLIES AND MATERIALS
7.1 15-mL polypropylene centrifuge tubes, such as VWRbrandB Centrifuge Tubes, catalog number 2 1008-089
7.2 15-mL polystyrene centrifuge tubes, such as VWRbrandB Centrifuge Tubes, catalog number 21008-202
7.3 15-mL styrene butadiene centrifuge tubes, such as VWRbrandB Centrifuge Tubes, catalog number 21008-226
7.4 15-mL glass centrifuge tubes 7.5 30-mL Teflon centrifuge tubes 7.6 50-mL plastic centrifuge tubes, such as VWRbrandB 20171 7.7 Syringes, 10-pL, 25-pL, 1000-pL
7.8 Volumetric flasks, 10-mL, 100-mL, I-L, 5-L, NalgeneB and/or glass 7.9 Automatic or manual dispenser, capable of dispensing liquid with h0.1 mL accuracy 7.10 250-pL 1000-pL manual pipettor(s) and plastic pipette tips, or equivalent 7.11 Autosampler vials, 1.5 to 2 mL GC/HPLC, such as Kimble # 60820-1232 or equivalent 7.12 Autosampler vial caps, such as Wheaton # 22421 1-01 7.13 GC/HPLC autovial crimper(s) and decrimper(s) 7.14 Appropriately sized storage containers with tight-fitting caps for solutions
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7.15 Glassware, miscellaneous 7.16 150-mL NalgeneB bottles or equivalent 7.17 pH paper capable of distinguishing pH to k0.5units
t
8.0 8.1
REAGENTS, SOLUTIOANNSD STANDARDS
Reagents 8.1.1 Methanol, HPLC grade, such as J.T. Baker #9093.
8.1.2 ASTM Type I water, 18.0 M a or greater. 8.1.3 CaC12, Anhydrous, to meet ACS specifications (>96% pure), such as J.T. Baker
#1311. 8.1.4 Soils: Appropriate soil types selected from Table 1 below. (Soils should be air-
dried at ambient temperature and sieved to a particle size 52 mm.)
Table 1
2
>7.5
3.5-5.0
20-40
Clay loam
3
5.5-7.0
1.5-3.0
15-25
Silt loam
4
4.0-5.5
3.0-4.0
15-30
Loam
5
<4.0-6.0
<0.5-1.5
<10-15
6
>7.0
<0.5-1.O
40-65
Clay loamlclay
NOTE: It may not be possible to obtain soils that match all criteria. Soils will be used that match as closely as possible the parameters as listed. Exceptionswill be noted.
8.1.5 Sediment: Sediment may be used in addition to the soil types listed, but is not required as part of this method.
8.1.6 Sludge: In addition to soil and/or sediment, sludge may be used as appropriate to achieve the goals of the study in question. The use of sludge is not required by this method.
8.1.7 Test Substance: Characterized by appropriate analytical technique 8.1.8 Reference Material: THPFOS, lH, lH, 2H, 2H-perfluorooctanesulfonic Acid,
and/or PFBS, Potassium Peduorobutanesulfonate. 8.2 Solutions and Standards:
NOTE: Different quantities of any of the solutions may be prepared, as long as solutions are documented as to how they were made. 8.2.1 Solution A: 0.01 M CaC12 Solution:
5.55k0.02 grams of CaC12 dissolved in 5.0 L of ASTM Type I water (or as appropriate for other volumes). This solution may be stored for up to 6 months at room temperature. 8.2.2 Solution B: An appropriate concentration of stock test substance in 0.01 M CaC12 Solution: Prepare an appropriate concentration of test substance in 0.01 M CaC12 in sufficient quantity to be used through out the study. Use volumetric flask and
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record weight. Immediately transfer into a NalgeneB container(s). This solution may be stored for up to 6 months at room temperature. However, it is good practice to take an aliquot of this solution and prepare it to run along with samples prepared at the same time to monitor for any possible degradation and/or adsorption to the container. 8.2.2.1 NOTE: If there is concern about the solubility of'the test substance in
aqueous solutions the stock solution may be made in an appropriate solvent.
9.0 SAMPLHEANDLING 9.1 All study samples generated and prepared for analysis by HPLCYMS (in tightly capped
vials) may be left at room temperature for a maximum of 15 days, or refrigerated for a maximum of six months. 9.2 The autovial study samples may be reanalyzed at any time throughout the study. However, autovials whose caps have been pierced should have the caps replaced within 3 days.
10.0 QUALITYCONTROL 10.1 Matrix Blanks consisting of the following types will be prepared for the study:
10.1.1 0.01 M CaC12 in contact with each ofthe selected soil types 10.2 Matrix Spikes (MS): One matrix spike will be prepared for each sample set, except as
noted in the method. 10.3 Solvent Blanks will be prepared for the study:
10.3.1 0.01 M CaC12 and no soil 10.3.2 Methanol and no soil (in some sections) 10.4 Control Samples: Control Samples per following type will be prepared for the study: 10.4.1 Test substance in 0.01 M CaC12 only 10.4.2 Test substance in methanol only (in some sections) 10.5 Sample Replicates: Sample sets will consist of a "sample," "duplicate," and "triplicate," except as noted in the method 10.6 Surrogate(s): No surrogate will be used in this study. 10.7 Reference Substance: THPFOS and/or PFBS will be used as the reference substance.
11.0 CALIBRATION AND STANDARDIZATION 11.1 This section is outside the application of this method.
12.0 PROCEDURES 12.1 Labeling of Samples (Centrifuge Tubes) and Autovials-Centrifuge tubes and
autovials should be prelabeled, according to the following scheme: 12.1.1 The study project should be given a unique Lab request number from 3Ms
Environmental Laboratory Sample Control Numbering system. 12.1.2 Study Samples, Labeling of Centrifuge Tubes: Each individual sample and QC
sample that is set up will have a unique identifier. 12.1.3 If necessary, aliquots taken from the study samples will be uniquely identified by
using the initial study sample ID and then adding an additional designator for each aliquot removed from the study sample.
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12.1.4 All autovials will clearly identify any "extra" dilution made of its contents. 12.1.5 All Matrix Spike samples will contain all of the above information, as well as the
designator "MS."
'i 12.2
Adsomtion Kinetics at One Concentration of the Test Substance 12.2.1 Select appropriate soils and/or sediments and/or sludges using the
soils/sediments/sludges listed in section 8.1. Use the centrifuge tube materialhype determined for use from Method ETS-8- 159.
12.2.2 Prepare a sufficient number of individual containers of each series such that a (triplicate) set of tubes can be removed according to the following approximate time intervals: 0 hr, 2 hr, 4 hr, 8 hr, 16 hr, 24 hr, 36 hr and 48 hr.
12.2.2.1 NOTE: I f the soi1:solution ratio permits one set of (triplicate) tubes may be prepared for each soil, and aliquots taken out at each time point rather than preparing a separate set of tubes for each time point (serial method). The volume of the aliquot must not exceed 2.5% of the total volume in the test vessel. In this case matrix spikes will only be performed for two time points rather than all of them.
12.2.3 Using the soil: solution ratio determined from Method ETS-8-159, set up the appropriate study sample grid using Table 2.
Table 2
E h Onlyneed one from this set
one from
this set.
12.2.4 Weigh the soil and record on the appropriate data form.
12.2.5 Add the appropriate volume of 0.01 M CaC12 solution (Solution A) to each tube and record the volume on the appropriate data form.
12.2.6 Document the pH of the stock test substance solution, using pH paper. Record to f0.5pH units.
12.2.7 The study samples are equilibrated for a minimum of 12 hours by placing the
tubes on an orbital shaker at 23 +3 "C using a gentle rotation. Record start and stop timeddates on appropriate data forms. 12.2.8 Remove the tubes after the 12 hours. Add the stock test substance solution. 12.2.8.1 NOTE: The test substance concentrations specified in Table 2 (grayed
section) are meant as a guide only. The final concentration of the test substance can be changed to better accommodate the analytical objectives of the study.
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12.2.9 All but the "0 hr" study samples are then placed back on the orbital shaker for
designated time intervals at 23 rt3 "C using a gentle rotation. The "0hr"study
samplesproceed directly to 12.2.12.
12.2.9.1 NOTE: If using the serial method centrifuge the tubes after the addition of
t
the test substance and take the 0 hour aliquot, then place the tubes on the
shaker.
12.2.10Remove study sample sets at the following approximate time points and record
the datehime.
2hr 16hr 48hr
4hr 24hr
8hr 36hr
12.2.10.1 Note: If using the serial method remove the sample tubes at each time
point, follow steps 12.2.11 through 12.2.15. Add an amount of fresh
CaClz equal to the amount taken out as an aliquot. Then vortex and return
the tube to the shaker.
12.2.11For the "48 hr" study samples only, weigh the container + contents and record -
on the proper data form. Document the pH for one of each sample set. Record to
50.5 pH units.
12.2.12.Centrifuge until the aqueous layer appears clear
12.2.13Withdraw an aliquot of the study sample and dispense into a prelabeled autovial.
Dilute as needed.
12.2.14Spiking: Refer to section 12.7 for spiking.
12.2.15Continue to pull the timed study sample sets at the designated time points and
repeat steps 12.2.11 through 12.2.15, as appropriate.
12.2.16Do not discard the "48 hr" study sample tubes.
12.2.17Add THPFOS and/or PFBS internal standard prior to analysis.
12.2.18After all the study samples have been pulled and prepared, analyze autovials
using appropriate methodology to determine concentration of target analyte.
12.2.19Make the appropriate calculations as defined in the calculations section.
12.2.20Determine the Adsorption Kinetics.
12.3 Desorption KineticsCerial Method
12.3.1 Desorption Kinetics Study Samples will be generated according to the following
grid (Table 3).
Table 3
12.3.2 This section uses the last set of sample tubes ("48 hr") from Method ETS-8160.0 Section 12.2 (Adsorption Kinetics Study).
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12.3.3 Centrifuge the tubes until the aqueous layer appears clear. Remove as much of the
aqueous layer as possible, taking care not to remove any of the solids.
12.3.4 Replace the volume of solution removed with an equal volume of fresh 0.01 M
CaC12 solution containing no test substance. This is done by refilling with fresh
t
Solution A until the weight of the container + contents is equal to the weight (+O. 1
g) recorded in step 12.2.11. Record this new weight on the appropriate data form.
12.3.5 Place the study samples back into the orbital shaker and continue the gentle
agitation for a total of 48 hours, during which aliquots of the aqueous phase will
be taken at the following approximate times: 2 hr, 4 hr, 8 hr, 16 hr, 24 hr, 32 hr
and 48 hour. (Times may be varied depending on results from Section 12.1.)
Record the actual times on the appropriate data forms. Prepare each aliquot by
following the steps given in 12.3.6 through 12.3.7.
NOTE:Maximum sample volume removal is limited to approximately 1% - 2% per time
point, thus limiting sample volume removal.
12.3.6 Draw two aliquots of the study sample from the 24-hour and 48-hour time points
(for matrix spike); draw only one aliquot of the study sample for the other time
points. Transfer the contents into a prelabeled autovial and cap.
12.3.6.1 Spiking: Important! Only two time points will be spiked for this
series of study samples: 24 hr and 48 hr due to limited volume
I
removal constraints. See section 12.7 for spiking.
12.3.7 Replacement of 0.01 M CaClz solution to study samples: Add an equal amount of
fresh 0.01 M CaC12 solution (Solution A) to the centrifuge tubes after the
withdrawal of the sample aliquots.
12.3.8 At each time point, follow steps 12.3.5 through 12.3.8 until the last time point has
been sampled. Note: step 12.3.8 is not repeated for the final time point.
12.3.9 Add THPFOS and/or PFBS internal standard prior to analysis.
12.3.10After all the study samples have been pulled and prepared, analyze autovials
using appropriate methodology to determine concentration of target analyte.
12.3.1 1Make the appropriate calculations as defined in the calculations section.
12.3.12Determine the Desorption Kinetics.
12.4 Determination of Freundlich Adsorption Isotherms 12.4.1 Select appropriate soils and/or sediments and/or sludges using the soils/sediments/sludges listed in section 8.1. Use the centrifuge tube materialhype
and soi1:solution ratio determined for use from Method E;TS-8-159.
12.4.2 Prepare a sufficient number of individual containers of each series such that a (triplicate) set of tubes exists for each soil/concentrationcombination
12.4.3 Set up the study sample grid, according to Table 4. Remember that only one of these ratios will be selected for use in this part of the study!
Table 4
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Only need one from this set
1.1
5.00 f 0 05
5 0 f 0.1
2
NA
3 (X5)
o.oo*
1 :5
2.50 f0.05 12.5 k 0.1
2
NA
3 (x 5)
0.00'
125
1.OO f 0 05 25.0 f 0.2
2
NA
3 (x 5)
0.00'
one from this set.
one from this set
this set.
* To be added in afterthe study samples have equilibrated for 12 hours.
12.4.4 Weigh the soil and record on the appropriate data form. 12.4.5 Add the appropriate volume of 0.01 M CaC12 solution (Solution A) to each tube
and record the volume on the appropriate data form. 12.4.6 Document the pH of the stock test substance solution, using pH paper. Record to
+ _ O SpH units.
12.4.7 The study samples are equilibrated with 0.01 M CaC12 for a minimum of 12 hours
by placing the tubes on an orbital shaker at 23 +3 "C using a gentle rotation. Record start and stop timeddates on appropriate data forms. 12.4.8 Remove the tubes after the 12 hours and add the stock test substance solution. 12.4.8.1 NOTE: The test substance concentrations specified in Table 4 (grayed
section) are meant as a guide only. The final concentration of the test substance can be changed to better accommodate the analytical objectives of the study. Fewer concentrations may be used if there is a solubility limitation as long as the reasons for doing so are documented in the final report. 12.4.9 Steps for "0 hr" study samples: 12.4.9.1 Gently shake to mix the contents of the test vessels. 12.4.9.2 Centrifuge until the aqueous layer appears clear. 12.4.9.3 Document the pH for one of each sample set per time point.
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12.4.9.4 Withdraw an aliquot from the test vessel and dispense into a prelabeled autovial. Replace the amount aliquotted G t h fresh 0.01M CaC12 solution. Dilute as needed.
12.4.9.5 Spiking: Refer to Section 12.7 for spiking. 12.4.10Steps for "48 hour" study samples:
12.4.10.1 The test vessels are placed back on the orbital shaker for 48 hours at 23 +.3 "C using a gentle rotation. Record start and stop fimeddateson appropriate data forms.
12.4.10.2 Remove sample sets after 48 hours and record the datehime.
12.4.10.3 Weigh each container + contents and record on the appropriate data form.
12.4.10.4 Centrifuge until the aqueous layer appears clear. 12.4.10.5 Document the pH for one of each sample set. 12.4.10.6 Withdraw an aliquot of the study sample and dispense into a prelabeled
autovial. Dilute as needed. 12.4.10.7 Spiking: Refer to Section 12.7 for spiking. 12.4.11Do not discard the "48 hr" set of study samples. These will be used in
Section 12.5. 12.4.12Add THPFOS and/or PFBS internal standard prior to analysis. 12.4.13After all study samples have been pulled and prepared, analyze autovials using
appropriate methodology to determine concentration of target analyte. 12.4.14Make appropriate calculations as defined in the Calculations section. 12.4.15Determine the Freundlich Adsorption Isotherms
12.5 Desorption Isotherms 12.5.1 Use the test vessels generated from ETS-8-160 Section 12.4, Adsorption Isotherms. (Refer to Table 5)
Table 5
12.5.2 12.5.3
12.5.4 12.5.5
Centrifuge the tubes until the aqueous layer appears clear. Remove as much of the aqueous layer as possible, taking care not to remove any of the solid layer. Replace the volume of solution removed with an equal volume of fresh 0.01 M CaC12 solution containing no test substance. This is done by refilling with the
aqueous solution until the weight of the container + contents is equal to (+O. 1 g)
what it was in step 12.4.10.3 (before removal of the aqueous portion). Record this new weight on the appropriate data form.
Place the tubes back in the orbital shaker and gently rotate at 23 +3 OC for 48 hours. Record datehime on the appropriate data form. Remove the tubes from the shaker after 48 hours and record datehime.
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12.5.6 Centrifuge until the aqueous layer appears clear.
12.5.7 Withdraw an aliquot of the study sample and dispense into a prelabeled autovial.
Dilute as needed.
i.
12.5.8 Spiking: Refer to Section 12.7 for spiking.
i
12.5.9 Do not discard the "48 hr" set of study samples. These will be used in
Section 12.6
12.5.10Add THPFOS andor PFBS internal standard prior to analysis.
12.5.11After all study samples have been pulled and prepared, analyze autovials using
appropriate methodology to determine concentration of target analyte.
12.6 Mass Balance Determination 12.6.1 Continue using the test vessels from Section 12.5, Desorption Isotherms 12.6.2 Centrifuge the tubes until the aqueous layer appears clear. 12.6.3 Remove as much of the aqueous layer as possible, taking care not to remove any of the solids layer (the aqueous layer may be discarded). 12.6.4 Add the amount of methanol appropriate to the amount of soil in each tube by referring to the following table:
Table 6
12.6.5 Vortex the tubes for -1 minute. (Alternatively,tubes may be placed horizontally in a shaker and shaken for -5 minutes.)
12.6.6 Centrifuge until the solvent layer appears clear. Remove as much of the solvent (methanol) layer as possible without removing the solids layer.
12.6.7 Place the solvent in a second prelabeled centrifuge tube. 12.6.8 Repeat steps 12.6.4 through 12.6.7, using the same prelabeled centrifuge tube for
each extraction. 12.6.9 Mix the contents of the second centrifuge tube after the last extraction volume is
added. Centrihge the solvent to remove particulates if needed. 12.6.10If it is anticipated that the concentration of the test substance will be near or
below the limit of quantification, a concentration step should be performed prior to continuing with step 12.6.11.
12.6.11Withdraw an aliquot ofthe study sample from step 12.6.LO and dispense into a
prelabeled autovial. Dilute as needed. 12.6.12Spiking: Refer to Section 12.7 for spiking. 12.6.13Add THPFOS and/or PFBS internal standard prior to analysis. 12.6.14After all study samples have been pulled and prepared, analyze autovials using
appropriate methodology to determine concentration of target analyte. 12.6.15Make appropriate calculations as defined in the Calculations section. 12.6.16Determine mass balance.
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12.7
1
Spiking 12.7.1 Only one replicate per study sample set will be spiked with a known amount of
the test substance. 12.7.2 Spiking will be done whenever any aliquoted study sample is generated. 12.7.3 Dilute samples to the appropriate level for analysis (if necessary) with methanol. 12.7.4 Add an appropriate amount of spiking solution to provide a spike concentration of
approximately 200ppb (or as deemed appropriate).
13.0 DATAANALYSIASND CALCULATIONS 13.1 Data analysis and calculations should be done using the templates provided from OECD
Guideline 106.
14.0 METHODPERFORMANCE
There are no previously defined method performance criteria for this method. However, this method will generate statistical data that may be used as a guideline for monitoring performance for Method ETS-8-160.
i 14.1 Accuracy 14.1.1 Matrix Spikes (MS): One matrix spike per study sample set will be generated. The matrix spikes will be calculated by using the following equation:
(MS conc. analytical - Sample conc. analytical) x 100 (MS Spike conc. theoretical)
14.2 Precision 14.2.1 Replicates: Triplicate study samples will be generated using this method. Relative Standard Deviations (RSD) will be calculated from the triplicate samples. In the cases, where there are only two replicates, the Relative Percent Difference (RPD) will be calculated.
15.0 POLLUTION PREVENTION AND WASTE MANAGEMENT 15.1 Dispose of sample waste by placing in high or low BTU containers as appropriate. 15.2 Use broken glass containers to dispose of any empty glass containers, pipettes, etc.
16.0 RECORDS 16.1 Laboratory data forms will be generated and filled out during the course of this study.
These data forms will be archived according to standard laboratory protocols.
17.0 ATTACHMENTS
17.1 Example data forms: 17.1.1 Suitable Analytical Method Data Form 17.1.2 Suitable Container Data Form 17.1.3 Suitable Desorption Solvent Data Form 17.1.4 Soi1:Aqueous Optimal Ratio Data Form
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18.0 REFERENCES
18.1 Organization of Economic Cooperation and Development, OECD Guideline for the
Testing of chemicals. "Adsorption-Desorption Using a Batch Equilibrium Method:
;c.
OECD Guideline 106 Adopted 21 January 2000.
18.2 EPA Fate, Transport and Transformation Test Guidelines: OPPTS 835.1220 Sediment
and Soil AdsorptiodDesorption Isotherm, EPA 712-C-98-048, January 1998.
19.0 AFFECTEDDOCUMENTS
19.1 ETS-8-159 Preparation of Soil Samples for Preliminary (Tier I) Sorption Studies for Fluorochemicalsas the Test Substance (Based on OECD Guideline 106)
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20.0 REVISIONS
Revision
% Number.
Reason For Revision
160.1
Requirements for specific test substance concentrations were taken out to accommodate less soluble species
and matrix effects. The I .OO mL sample size was eliminated to accommodate dilutions of the original
sample. The 1 5 ratio sample size was adjusted to be consistent with the ETS-8-19.0 sample size. The
adsorption kinetics section was revised to accommodate a serial sample preparation rather than just the
parallel method.
Revision
- Date
ETS-8- 160.1 Tiers I1 and 111 Sorption Studies
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Adopted : 2 1I' January 2000
OECD GUIDELINE FOR THE TESTING OF CHEMICALS
Adsorption - DesorDtion Usiw a Batch EauilibEium Method
INTRODUCTION
1.
This Guideline is based on the proposal submitted by the European Commission in 1993 and takes
into account the comments on that proposal submitted by the Member countries. Several activities
undertaken in the European Union bore on the development of an adsorption test. These included an
extensive investigation due to the collaboration of the German UmweltbundesamtW A ) , the University of
Gel, and the European Commission and its Joint Research Centre at Ispra, Italy (1)(2). In 1988 UBA
organised a ring-test in which 27 laboratories in EU Member Statesparticipated(3). An OECD Workshop on
Soil Selection was held at Belgirate, Italy, in 1995 (4). The Woikshop agreed on the main elements of the
updated Test Guideline 106 for an adsorptioddesorption test and, in particular, on the characterisation and
selection of the soil types for use in the test.
2.
Other guidelines concerning adsorptioddesorption exist only at national level and are mainly
focused on pesticides testing (5)(6)(7)(8)(9)( lo)( 11). These documents as well as an extensive relevant
literature were considered when developingthis Guideline.
SIGNIFICANCE AND USE
3.
Adsorptioddesorption studies are useful for generating essential information on the mobility of
chemicals and their distribution in the soil, water and air compartments of our biosphere
(12)(13)(14)(15)(16)(17)(18)(19)(20)(21). They can be used in the prediction or estimation,for example, of
the availability of a chemical for degradation (22)(23), transformation and uptake by organisms (24); leaching
through the soil profile (16)(18)(19)(21)(25)(26)(27)(28); volatility from soil (21)(29)(30); and run-off from
land surfaces into natural waters (18)(31)(32). Adsorption data can also be used for comparative and
modelling purposes (19)(33)(34)(35).
4.
The distributionof a chemical between soil and aqueous phases is a comple_xprocess depending on
a number of different factors: the chemical nature of the substance (12)(36)(37)(38)(39)(40), the
characteristics of the soil (4)( 12)(13)(14)(41)(42)(43)(44)(45)(46)(47)(48)(49), and climatic factors such as
rainfall, temperature, sunlight and wind. Thus, the numerous phenomena and mechanisms involved in the
process of adsorption of a chemical by soil cannot be completely defined by a simplified laboratory model
such as the present Guideline. However, even if this attempt cannot cover all the environmentally possible
cases, it provides valuable information on the environmental relevance of the adsorptionof a chemical.
SCOPE
5.
This Guideline is aimed at estimating the adsorptioddesorption behaviour of a substance on soils.
The goal is to obtain a sorption value which can be used to predict partitioning under a variety of
environmental conditions; to this end, equilibrium adsorption coefficients for a chemical on various soils are
determined as a fbnction of soil characteristics (e.g. organic carbon content, clay content, soil texture, and
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pH). Different soil types have to be used in order to cover as widely as possible the interactions of a given
i
substance with naturally occurring soils.
6.
In this Guideline,adsorptionrepresents the process of the binding of a chemical to surfaces ofsoils;
it does not distinguish between different adsorption processes (physical and chemical adsorption) and such
processes as surface catalysed degradation,bulk adsorption or chemical reaction. Adsorption that will occur
on colloids particles(diameter < 0.2 pn)generatedby the soils is not fklly-taken into account.
7.
The soil parameters that are believed most important for adsorption are: organic carbon content
(3)(4)( 12)(13)(14)(41)(43)(44)(45)(46)(47)(48); clay content and soil texture (3)(4)(41)(42)(43)(44)(45)(46)
(47)(48); and pH for ionisable compounds (3)(4)(42). Other soil parameters which may have an impact on
the adsorptioddesorption of a particular substance are the effective cation exchange capacity (ECEC), the content of amorphous iron and aluminium oxides, particularly for volcanic and tropical soils (4), as well as
the specific surface -(49).
8.
The test is designed to evaluate the adsorption of a chemical on different soil types with a varying
range of organic carbon content, clay contentand soil texture, and pH. It comprisesthree tiers:
- Tierl: Preliminarv study in order to determine:
- the soillsolution ratio; - the equilibration time for adsorption and the amount of test substance adsorbed at
equilibrium;
- the adsorption of the test substance on the surfaces of the test vessels and the stability of the
test substance during the test period.
Tier2: Screeninv test: the adsorption is studied in five different soil types by means of adsorption kinetics at a single concentration and determination of distribution coefficients K, and K,.
Tier 3:
Determination of Freundlich adsomtion isotherms to determine the influence of concentration on the extent of adsorption on soils. Study of desomtion by means of desomtion kineticflreundlich desomtion isotherms (Annex 1).
DEFINITIONS AND UNITS
9.
Definitions and units are set out in the Data and Reporting section and Annex 2. The weight of soil
samples as mentioned in the equations of the Guideline refer to the oven dry weight.
PRINCIPLEOF THE METHOD
-
10.
Known volumes of solutions of the test substance, non-labelled or radiolabelled, at known
concentrations in 0.01 M CaC1, are added to soil samples of known dry weight which have been pre-
equilibrated in 0.01 M CaCI,. The mixture is agitated for an appropriate time. The soil suspensions are then
separated by centrihgation and, if so wished, filtration and the aqueous phase is analysed. The amount of
test substance adsorbed on the soil sample is calculated as the difference between the amount of test
substance initially present in solution and the amount remaining at the end of the experiment (indirect
method).
11. As an option, the amount of the test substance adsorbed can also be directly determined by analysis of soil (direct method). Although this makes the analytical procedure more tedious, involving stepwise soil extraction with an appropriate solvent, it is recommended in cases where the difference in the solution concentration of the substance cannot be accurately determined. Examples of such cases are: adsorption of
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the test substance on surfaces of the test vessels, instability of the test substance in the time scale of the experiment, weak adsorption giving only small concentration change in the solution; and strong adsorption yielding low concentration which cannot be accurately determined. If radiolabelled substance is used, the soil extraction may be avoided by analysis of the soil phase by combustion and liquid scintillationcounting. However, liquid scintillationcounting is an unspecific technique which Cannot differentiate between the test chemical and its transformation products; thereforeit should be used onlyif the test chemical is stable for the
duration of the study.
INFORMATIONON THE TEST SUBSTANCE
12.
Chemical reagents should be of analytical grade. The use of non-labelled test substances with
known composition and preferably at least 95% purity or of radiolabelled test substances with known
co be
mpositio applied.
n
a
n
d
- radio-purity,
is recommended.
In the case of
short half-life
tracers,
decay
corrections should
13.
Before carrying out a test for adsorption-desorption, the following information on the test substance
should be available:
(a)
solubility in water [OECD Guideline 1051;
(b)
vapour pressure [OECD Guideline 1041orland fienry's law constant;
(c)
abiotic hydrolysis as a function of pH [OECD Guideline 1111;
(d)
n-octanol/waterpartition coefficient [OECD Guidelines 107 and 1171;
(e)
ready biodegradability [OECD Guideline 3011 or aerobic and anaerobictransformation in soil;
(0
pKa of ionisable substances;
(g)
direct photolysis in water (Le. UV-Vis absorptionspectruminwater, quantum yield) and
photodegradationon soil.
APPLlCABlLlTY OF THE TEST
14.
The test is applicable to chemical substances for which an analytical method with sufficient
accurancy is available. An important parameter that can influence the reliability of the results, especially
when the indirect method is followed (see paragraph lo), is the stability of the test substance in the time scale
of the test. Thus, it is a prerequisite to check the stability in a preliminruy study; if a transformation in the
time scale of the test is observed, it is recommen&d that the main study be performed by analysing both soil
and aqueous phases.
15.
Difficulties m a y arise in conducting this test for test substances with low water solubility (Sw -=IO4 8
1-I), as well as for highly charged substances, due to the fact that the concentration in the aqueous phase
cannot be measured analytically with sufficient accuracy. In these cases, additional steps have to be taken.
Guidance on how to deal with these problems is given in the relevant sections of this Guideline.
16. When testing volatile substances, care should be taken to avoid losses during the study.
DESCRIPTION OF THE METHOD
Apparatus and chemical reapents
17.
Standard laboratory equipment, especially the following:
(a)
Tubes or vessels to conduct the experiments. It is important that these tubes or vessels:
- fit directly in the centrifuge apparatus in order to minimise handling and transfer errors;
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- be made of an inert material, which minimises adsorption of the test substance on its surface.
(b)
Agitation device: overhead shaker or equivalent equipment; the agitation device should keep the
soil in suspension during shaking.
(c)
Centrifuge: preferably high-speed, e.g. centrifugation forces > 3000g, temperature controlled,
capable of removing particles with a diameter greater than 0.2 p n from aqueous solution. The containersihould be capped during agitationand centrifugationio avoid volatility and water losses.
To minimise adsorptionon them, deactivated caps such as PTFE (Teflon? lined screw caps should
be used.
(d)
Optional: filtration device; filters of 0.2 pn porosity, sterile, single use. Special care should be
taken in the choice of the filter material, to avoid any losses of the test substance on it; for poorly
soluble test substances, organic filter material is not recommended.
(e)
Analytical -instrumentation,suitable for measuring the concentration of the test chemical.
(0
Laboratory oven, capable of maintaining a temperature of 103 O to 110 O C .
Characterisationand selectionof soils
18. The soils should be characterised by three paraineters considered to be largely responsible for the adsorptive capacity: organic carbon, clay content and soil texture, and pH. As already mentioned in paragraph 7, other physico-chemical properties of the soil may have an impact on the adsorptioddesorption of a particular substance and should be considered in such cases.
19.
The methods used for soil characterisation are very important and can have a significant influence
on the results. Therefore, it is recommended that soil pH should be measured in a solution of 0.01 M CaCl,
(that is the solution used in adsorptioddesorption testing) according to the correspondingIS0 method (IS0
10390-1). It is also recommended that the other relevant soil properties be determined according to standard
methods (for example IS0 "Handbook of Soil Analysis"); this permits the analyses of sorption data to be
based on globally standardised soil parameters. Some guidance for existing standard methods of soil analysis
and characterisation is given in references 50-52. For calibration of soil test methods, the use of reference
soils might be considered.
20.
Guidance for selection of soils for adsorptioddesorption experiments is given in Table 1. The
seven selected soils cover soil types typically encountered in temperate geographical zones. For ionisable test
substances, the selected soils should cover a wide range of pH, in order to evaluate the adsorption of the
substance in its ionised and unionised forms. Guidance on how many different soils to use at the various
stages of the test is given under the heading "Performanceofthe test".
*
21.
Other soil types may sometimes be necessary to represent cooler, temperate and tropical regions
within the OECD Countries. Therefore, if other soil types are preferred, they should be characterisedby the
same parameters and should have similar variations in properties to those described in Table 1, even if they
do not match the criteria exactly.
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Table 1: Guidance for selection of soil samples for adsorption-desorption
t
I Organic carbon content 1 Clay content 1 Soil texture*
1
/II II 4.5-5.5' I > 7.5 5.5-7.0
4
4.0-5.5
5
< 4.0-6.0'
6
> 7.0
7
< 4.5
I 1.0-2.0
1 3.5-5.0
I 1.5-3.0
3.0-4.0
< 0.5-1.5'' < 0.5-1.0'' > 10
1I 1 65-80-
I 20-40
1 15-25
I clay -
1 clay loam
1 silt loam
15-30
loam
< 10-158
loamy sand
40-65
clay loadclay
< 10
sandloamy sand
Collection and storage of soil samoles
Collection
22. No specific soil sampling techniques or tools are recommended; the sampling technique depends on the purpose of the study (53)(54)(55)(56)(57)(58).
23.
The following should be considered
(a)
detailed information on the history of the field site is necessary; this includes location, vegetation
cover, treatments with pesticides and/or fertilisers, biological additions or accidental contamination.
Recommendations of the IS0 standard on soil sampling ( I S 0 10381-6) should be followed with
respect to the description of the sampling site;
@)
the sampling site has to be exactly defined by UTM (Universal Transversal Mercator-
ProjectionEuropean Horizontal Datum) or geographical co-ordinates; this could allow re-
collection o f a particular soil in the future or could help in defining soil under various classification
systems used in different countries. Also, only A horizon up to a maximum depth of 20 cm should
be collected. Especially for
included in the sampling.
the
soil
no.
7,
if
a
0,
horizon is
present
as
-part of
the
soil,
it
should
be
24.
The soil samples should be transported using containers and under temperature conditions which
guarantee that the initial soil properties are not significantly altered.
Storage
25.
The use of soils freshly taken from the field is preferred. Only if this is not possible soil can be
stored at ambient temperatures and should be kept air-dried. No limit on the storage time is recommended,
but soils stored for more than three years should be re-analysed prior to the use with respect to their organic
carbon content, pH and CEC.
Handling and Dreoaration of soil samoles for the test
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26.
The soils are air-dried at ambient temperature (preferably between 20-25 "C). Disaggregation
should be performed with minimal force, so that the original texture of the soil will be changed as little as
i
possible. The soils are sieved to a particle size 12 mm; recommendations of the IS0 standard on soil
sampling (IS0 10381- 6) should be followed with respect to the sieving process. Careful homogenisation is
recommended, as this enhances the reproducibility of the results.
27.
The moist3e content of each soil is determined on three aliquoswith heating at 105C until there
is no significant change in weight (approx. 12h). For all calculations the mass of soil refers to oven dry mass,
i.e. the weight of soil corrected for moisture content.
Preoaration of the test substance for amlication to soil
.28.
The test substance is dissolved in a 0.01 M solution of calcium chloride (CaClJ in distilled or de-
ionised water; the CaCl, solution is used as the aqueous solvent phase to improve centrifugation and
minimise cation exchange. The concentration of the stock solution should preferably be three orders of
magnitude higher than the detection limit of the analytical method used. This threshold safeguards accurate
measurements with respect to the methodology followed in this Guideline (paragraphs 52-58); additionally,
the stock solution concentration should be below water solubility of the test substance.
29.
The stock solution should preferably be prepareh just before application to soil samples and should
i
be kept closed in the dark at 4C. The storage time depends on the stability of the test substance and its
concentration in the solution.
30.
Only for poorly soluble substances ( S , < 10` g l'), an appropriate solubilising agent may be needed
when it is difficult to dissolve the test substance. This solubilising agent: (a) should be miscible with water
such as methanol or acetonitrile; (b) its concentration should not exceed 1% of the total volume of the stock
solution and should constitute less than that in the solution of the test substance which will come in contact
with the soil (preferably less than O.l"/o); and (c) should not be a surfactant or undergo solvolytic reactions
with the test chemical. The use of a solubilising agent should be stipulated and justified in the reporting of
the data.
31.
Another alternative for poorly soluble substances is to add the test substance to the test system by
spiking: the test substance is dissolved in an organic solvent, an aliquot of which is added to the system of
soil and 0.01 M solution of CaCZ in distilled or .de-ionised water. The content of organic solvent in the
aqueous phase should be kept as low as possible, normally not exceeding 0.1%. However, the experimenter
should have in mind that spiking from an organic solution may suffer from volume unreproducibility.
Consequently, an additional error may be introduced as +e test substance and co-solvent concentration would
not be exactly the same in all tests.
-
PREREOUISITES FOR PERFORMING THE ADSORPTIONlDESORPTION TEST
The analytical method
32.
The key parameters that can influence the accurancy of sorption measurements include the
accuracy of the analytical method in analysis of both the solution and adsorbed phases, the stability and purity
of the test substance, the attainment of sorption equilibrium, the magnitude of the solution concentration
change, the soil/solution ratio and changes in the soil structure during the equilibration process (35, 59-62).
Some examples bearing upon the accuracy issues are given in Annex 3.33.
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The reliability of the analytical method used must be checked at the concentration range which is likely to occur during the test. The experimenter should feel free to develop an appropriate method with appropriate accuracy, precision, reproducibility, detection limits and recovery. Some guidance on how to perform such a test is given by the experiment below.
34.
An approppate volume of 0.01 M CaCl,, e.g. 100 cm', is agitated during 4 h with a weight of soil,
e.g. 20 g, of high adsorbability, i.e. with high organic carbon and clay content; these weights and volumes
may vary depending on analytical needs, but a soiholution ratio of 1:s is a convenient starting point. The
mixture is centrifuged and the aqueous phase may be filtrated. A certain volume of the test substance stock
solution is added to the latter to reach a nominal concentration within the concentration range which is likely
to occur during the test. This volume should not exceed 10% of the final volume of the aqueous phase, in
order to change as little as possible the nature of the pre-equilibrationsolution. The solution is analysed.
35. One blank F n consisting of the system soil + CaCl, solution (without test substance) must be included, in order to check for artifacts in the analy!kal method and for matrix effects caused by the soil.
36.
The analytical methods which can be used for sorption measurements include gas-liquid
chromatography (GLC), high-performance liquid chromatography (HPLC), spectrometry (e.g. GC/mass
spectrometry, HPLC/mass spectrometry) and liquid scintillation counting (for radiolabelled substances).
Independent of the analytical method used, it is considered suitable if the recoveries are between 90% and
110% of the nominal value. In order to allow for detection and evaluation after partitioning has taken place,
the detection limits of the analytical method should be at least two orders of magnitude below the nominal
concentration.
37.
The characteristics and detection limits of the analytical method available for c a v i n g out
adsorption studies play an important role in defining the test conditions and the whole experimental
performance of the test. This Guideline follows a general experimental path and provides recommendations
and guidance for alternative solutions where the analytical method and laboratory facilities may impose
limitations.
The selection of optimal soiUsolution ratios
38.
Selection of appropriate soil to solution ratios for sorption studies depends on the distribution
coefficient K,and the relative degree of adsorption.desired. The change of the substance concentration in the
solution determines the statistical accuracy of the measurement based on the form of adsorption equation and
the limit of the analytical methodology, in detecting the concentration of the chemical in solution. Therefore, in general practice it is useful to settle on a few fixed ratios, for which the percentage adsorbed is above 20%,
and preferably >50% (62), while care should be taken to keep the test substance concentration in the aqueous
phase high enough to be measured accurately. This is particularly important in the case of high adsorption
percentages.
39.
With respect to the above remarks, a convenient approach to selecting the appropriate soil/water
ratios, is based on an estimate. of the K, value either by preliminary studies or by established estimation
techniques (Annex 4). Selection of an appropriate ratio can then be made based on a plot of soil/solution
ratio versus K,, for fixed percentages of adsorption (Fig.1). In this plot it is assumed that the adsorption
equation is linear'. The applicable relationship is obtained by rearranging equation (4) of the K,in the form
ofequation (1):
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- mnds(eq)
or in its logarithmic form assuming that R = m J V oand Ag%/IOO =
:
m0
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Distribution coefficient Kd (cm3 g-1) Fig. 1 Relationship between soil to solution ratios and K,at various percentages of adsorbed test substance
40.
Fig. 1 shows soiVsolutionratios required as a b c t i o n of K, for different levels of adsorption. For
example, with a soiVsolution ratio of 1:5 and a K, of 20, approximately 80% adsorption would occur. To
obtain 50% adsorption for the same K,, a 1:25ratio must be used. This approach to selecting the appropriate
soiVsolutionratios gives the investigator the flexibilityto meet experimentalneeds.
41.
Areas which are more difficult to deal with are those where the chemical is very slightly or highly
adsorbed. Where low adsorption occurs, a 1:l soil/solution ratio is recommended, although for some very
organic soil types smaller ratios may be necessary to obtain a sluny. In any case, care must be taken with the
analytical methodology to measure small changes in solution concentration; otherwise the adsorption
measurement will be inaccurate. On the other hand, at very high distribution coefficients K,, one can go up to
a 1:100 soiVsolutionratio in order to leave a significant amount of chemical in solution. However, care must
be taken to ensure good mixing, and adequate time must be allowed for the system to equilibrate. An
alternative approach to deal with these extreme cases when adequate analytical methodology is missing, is to
predict the K, value applying estimation techniques based, for example, on Pa,,values (Annex 4). This could
be useful especially for low adsorbedpolar chemicals with Pa,,< 20 and for lipaphilichighly sorptive
chemicals with Pew> 10'.
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PERFORMANCE OF THE TEST
t
Test conditions
42.
All experiments are done at laboratory ambient temperature and, if possible, at a constant
temperature betweea20 "C and 25 "C.
43.
Centrifugation conditions should allow the removal of particles larger than 0.2 pm from the
solution. This value triggers the smallest sized particle that is considered as a solid particle, and is the limit
between solid and colloid particles. Guidance on how to determine the centrifigation conditions is given in
Annex 5.
44.
If the centrifugation facilities cannot guarantee the removal of particles larger than 0.2 w, a
combination of centrifugation and filtrationwith 0.2 p n filters could be used. These filters should be made
of a suitable inert material to avoid any losses of the test substance on them. In any case, it should be proven
that no losses of the test substance occur during filtration.
Tier 1- Preliminary study
45.
The purpose of conducting a preliminary study has already been given in paragraph 8 in the Scope
section. Guidance for setting up such a test is given with the experiment suggested below.
Selection of optimal soiVsolution ratios
46.
Two soil types and three soil/solution ratios (six experiments) are used. One soil type has high
organic carbon and low clay content, and the other low organic carbon and high clay content. The following
soil to solution ratios are suggested. However, the absolute mass of soil and volume of aqueous solution
correspondingto these ratios can be different with respect to laboratory facilities:
-- SO g soil and 50 cm' aqueous solution of the test substance (ratio l/l); 10 g soil and 50 cm' aqueous solution of the test substance (ratio 1/5);
- 2 g soil and 50 cm' aqueous solution of the test substance (ratio 1/25).
47.
The minimum amount of soil on which tile experiment can be carried out depends on the laboratory
facilities and the performance of analytical method used. However, it is recommended to use at least 1 g, and
preferably 2 g, in order to obtain reliable results from the test.
48. One control sample with only the test substance in 0.01 M CaC1, solution (no soil) is subjected to precisely the same steps as the test systems, in order to check the stability of the +est substance in CaC4 solution and its possible adsorption on the surfaces of the test vessels. '
49.
A blank run per soil with the same amount of soil and total volume of SO cm' 0.01 M CaC1, solution
(without test substance) is subjected to the same test procedure. This serves as a background control during
the analysis to detect interfering compounds or contaminated soils.
50.
All the experiments, including controls and blanks, should be performed at least in duplicate. The
total number of the samples which should be prepared for the study can be calculated with respect to the
methodology which will be followed (paragraphs 57-58).
51.
Methods for the preliminary study and the main study are generally the same, exceptions are
mentioned where relevant.
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52. The air-dried soil samples are equilibrated by shaking with a minimum volume of 45 cm' of 0.01M
CaC1, overnight (12 h) before the day of the experiment. Afterwards, a certain volume of the stock solution
t
of the test substance is added in order to adjust the final volume to 50 cm'. This volume of the stock solution
added: (a) should not exceed 10% of the final 50 cm' volume of the aqueous phase in order to change as little
as possible the nature of the pre-equilibration solution; and @) should preferably result in an initial
concentration of the test substance being in contact with the soil (CJ at least two orders of magnitude higher
than the detection l i s t of the analytical method; this threshold safegudrds the ability to perform accurate
measurements even when strong adsorption occurs (> 90%) and to determine later the adsorption isotherms.
It is also recommended, if possible, that the initial substance concentration (CJ not exceed half of its
solubility limit.
53. An example of how to calculate the concentration of the stock solution (CJ is given below. A detection limit of 0.01 pg cmJ and 90% adsorption are assumed; thus, the initial concentration of the test substance in contact with the soil should preferably be 1 pg cm" (two orders of magnitude higher than the detection limit). Suppbing that the maximum recommended volume of the stock solution is added, i.e. 5 to
45 cm' 0.01 M CaCl, equilibration solution (= 10% of the stock solution to 50 cm' total volume of aqueous
phase), the concentration of the stock solution should be 10 pg cm"; this is three orders of magnitude higher than the detection limit of the analytical method.
54. The pH of the aqueous phase should be measured before and after contact with the soil since it plays an important role in the whole adsorption process, especially for ionisable substances.
55. The mixture is shaken until adsorption equilibrium is reached. The equilibrium time in soils is highly variable, depending on the chemical and the soil; a period of 24 h is generally sufficient (77). In the preliminary study, samples may be collected sequentially over a 48 h period of mixing (for example at 4,8, 24,48h). However, times of analysis should be considered with flexibilitywith respect to the work schedule
of the laboratory.
56. There are two options for the analysis of the test substance in the aqueous solution: (a) the parallel method and (b) the serial method. It should be stressed that, although the parallel method is experimentally more tedious, the mathematical treatment of the results is simpler (Annex 6). However, the choice of the methodology to be followed, is left to the experimenter who will need to consider the available laboratory facilities and resources.
57. fa) Parallel method Samples with the same soUsolution ratio are prepared, as many as the time
intervals at which it is desired to study the adsorption kinetics. After centrifugation and if so wished ' filtration, the aqueous phase of the first tube is recovered as completelyas possible and is measured after, for example, 4 h, that of the second tube after 8 h, that of the third after 24 h, etc.
58. QJ)Serial method: Only a duplicate sample is prepared for each soil/solution ratio. At defined time intervals the mixture is centrifuged to separate the phases. A small aliquot of the aqueous phase is immediately analysed for the test substance; then the experiment continues with the original mixture. If filtration is applied after centrifugation, the laboratory should have facilities to handle filtration of small aqueous aliquots. It is recommended that the total volume of the aliquots taken not exceed 1% of the total volume of the solution, in order not to change significantly the soil/solution ratio and to decrease the mass of solute available for adsorption during the test.
59. The percentage adsorption A , is calculated at each time point (t,) on the basis of the nominal
initial concentration and the measured concentration at the sampling time((), corrected for the value of the blank. Plots of the Ati versus time (Fig. 1, Annex 6) are generated in order to estimate the achievement of
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equilibrium plateau'. The K, value at equilibrium is also calculated. Based on this K, value, appropriate
E
soil/solution ratios are selected from Fig.1, so that the percentage adsorption reaches above 20% and
i
preferably >50% (61). All the applicable equations and principles of plotting are given in the Data and
Reporting section and in Annex 6.
Determination of adsorption equilibration time and of the amount of test substance adsorbed at equilibrium
60.
As already mentioned in paragraph 59, plots of At, or C z t versus time permit estimation of the
achievement of the adsorption equilibrium and the amount of test substance adsorbed at equilibrium. Figs. 1 and 2 in Annex 6 show examples of such plots. Equilibration time is the time the system needs to reach a plateau.
6 1.
If, with a particular soil, no plateau but a steady increase is found, this may be due to complicating
factors such as biodegradation or slow diffusion. Biodegradation can be shown by repeating the experiment
with a sterilised sample of the soil. Ifno plateau is achieved even in this case, the experimenter should search
for other phenomena that could be involved in his specific studies; this could be done with appropriate
modifications of the experiment conditions (temperature,.shaking times, soil/solution ratios). It is left to the
experimenter to decide whether to continue the test procedure in spite of a possible failure to achieve an
equilibrium.
Adsorption on the surface of the test vessel and stability of the test substance
62.
Some information on the adsorption of the test substance on the surface of test vessels, as well as its
stability, can be derived by analysing the control samples. If a depletion more than the standard error of the
analytical method is observed, abiotic degradation andor adsorption on the surface of the test vessel could be
involved. Distinction between these two phenomena could be achieved by thoroughly washing the walls of
the vessel with a known volume of an appropriate solvent and subjecting the wash solution to analysis for the
test substance. If no adsorption on the surface of the test vessels is observed, the depletion demonstrates
abiotic unstability of the test substance. If adsorption is found, changing the material of the test vessels is
necessary. However, data on the adsorption on the surface of the test vessels gained from this experiment
cannot be directly extrapolated to soillsolution experiment. The presence of soil will generally reduce this
adsorption.
63.
Additional information on the stability of the test substance can be derived by determination of the
parental mass balance over time. This means that the aqueous phase and extracts of the soil and test vessel walls are analysed for the test substance. The difference between the mass ofthe test chemical added and the
sum of the test chemical masses in the aqueous phase and extracts of the soil and test-vessel walls is equal to
the mass degraded and/or volatilized and/or not extracted. In order to perform a mass balance determination,
the adsorption equilibrium should have been reached within the time period of the experiment.
64. The mass balance is carried out on both soils and for one soil/solution ratio per soil that gives a depletion above 20% and preferably >50% at equilibrium. When the ratio-finding experiment is completed
with the analysis of the last sample of the aqueous phase after 48 h, the phases are separated by centrifugation and, if so wished, filtration. The aqueous phase is recovered as much as possible, and a suitable extraction solvent (extraction coefficient of at least 95%) is added to the soil to extract the test substance. At least two successive extractionsare recommended. The amount of test substance in the soil and test vessel extracts is determined and the mass balance is calculated (equation 10, Data and Reporting section). If it is less than
Plots of the concentration of the test substance in the aqueous phase ( C$ ) versus time could also be used to estimate the achievement of the equilibriumplateau (see Fig. 2 in Annex 6).
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90%, the test substance is considered to be unstable in the time scale of the test. However, studies could still
be continued, taking into account the unstability of the test substance; in this case it is recommended to
i
analyse both phases in the main study.
Tier 2 - Adsorption kinetics at one concentration of the test substance
- 65.
Five soils are used, selected using the guidance given in TCble 1. There is an advantage to
including some or all of the soils used in the preliminary study, if appropriate, among these five soils. In this
case, Tier 2 has not to be repeated for the soils used in preliminary study.
66.
The equilibration time, the soilkohtion ratio, the weight of the soil sample, the volume of the
aqueous phase in contact with the soil and the concentration of the test substance in the solution are chosen
based on the preliminary study results. Analysis should preferably be done approximately after 2, 4, 6, 8
(possibly also IO) and 24 h contact time; the agitation time may be extended to a maximum of 48 h in case a
chemical requires longer equilibration time with respect to ratio-finding results. However, times of analysis
could be considered with flexibility.
67.
Each experiment (one soil and one solution) is done at least in duplicate to allow estimation of the
variance of the results. In every experiment one blank. is run. It consists of the soil and 0.01 M CaCI,
solution, without test substance, and of weight and volume, respectively, identical to those of the experiment.
A control sample with only the test substance in 0.01 M CaCJ solution (without soil) is subjected to the same
test procedure, serving to safeguard against the unexpected. The test runs as described in paragraph 52-59.
68.
The percentage adsorption is calculated at each time point At,and/or time interval AAt,
(according to the needs of the study) and is plotted versus time. The distribution coefficient K, at
equilibrium, as well as the organic carbon normalized adsorption coefficient Knc(for non-polar organic chemicals), are also calculated.
Results and discussion of the adsomtion kinetics test
69.
The linear K, value is generally accurate to describe sorptive behaviour in soil (35)(78) and
represents an expression of inherent mobility of chemicals in soil. For example, in general chemicals with K,,
5 1 cin' g" are considered to be qualitatively mobile. Similarly, a mobility classification scheme based on K,
values has been developed by McCall et al. (16). Additionally, leaching classification schemes exist based
on a relationship between K, and DT-50' (32)(79).
70.
Also, according to error analysis studies (61), K, values below 0.3 cm' g ' cannot be estimated
accurately from a decrease in concentration in the aqueous phase, even when the mosrfavourable (from point
of view of accurancy) soiYsolution ratio is applied, Le. 1:l. In this case analysis of both phases, soil and
solution, is recommended.
71.
With respect to the above remarks, it is recommended that the study of the adsorptive behaviour of
a chemical in soil and its potential mobility be continued by determining Freundlich adsorption isotherms for
these systems, for which an accurate determination of K,, is possible with the experimental protocol followed
in this Guideline. Accurate determination is possible if the value which results by multiplying the K,,with the
soiVsolution ratio is > 0.3, when measurements are based on concentration decreasein the aqueous phase
(indirect method), or > 0.1, when both phases are analysed (direct method) (61).
Tier 3 - Adsorption isotherms and desorption kineticsldesoration isotherms
'DT-50:degradation time for 50% of the test substance.
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i.
Adsorption isotherms
t
72.
Five test substance concentrations are used, covering preferably two orders of magnitude; in the
choice of these concentrations the water solubility and the resulting aqueous equilibrium concentrations
should be taken intq account. The same soil/solution ratio per soil should be kept along the study. The
adsorption test is performed as described in paragraphs 47-58, with the only difference that the aqueous phase
is analysed only once at the time necessary to reach equilibrium as determined before in Tier 2. The
equilibrium concentrations in the solution are determined and the amount adsorbed is calculated from the
depletion of the test substance in the solution or with the direct method. The adsorbed mass per unit mass of
soil is plotted as a function of the equilibrium concenkation of the test substance (see Data and Reporting).
Results from the adsorption isotherms experiment
73.
Among the mathematical adsorption models proposed so far, the Freundlich isotherm is the one
most frequently used to describe adsorption processes. More detailed information on the interpretation and
importance of adsorption models is provided in the references (41)(45)(80)(81)(82).
- Note: It should be mentioned that a comparison of K,. (Freundlich adsorption coefficient) values for different
substances is only possible if these K , values are expressed in the same units (83).
Desorption kinetics
74.
The purpose of this experiment is to investigate whether a chemical is reversibly or irreversibly
adsorbed on a soil. This information is important, since the desorptionprocess also plays an important role in
the behaviour of a chemical in field soil. Moreover, desorption data are usehl inputs in the computer
modelling of leaching and dissolved run-off simulation. If a desorption study is desired, it is recommended
that the study described below be carried out on each system for which an accurate determination of K, in the
preceding adsorption kinetics experiment was possible.
75.
Likewise with the adsorption kinetics study, there are two options to proceed with the desorption
kinetics experiment: (a) the parallel method and (b) the serial method. The choice of the methodology to be
followed, is left to the experimenter who will need to consider the available laboratory facilities and
resourses, keeping in mind the remarks made in paragraph 56.
76. {a) Parallel method: For each soil which is chosen to proceed with the desorption study, samples with the same soWsolution ratio are prepared, as many as the time intervals at which it is desired to study the desorption kinetics. Preferably, the same time intervals as in the adsorption kinetics experiment should be used; however, the total time may be extended as appropriate in order the systzm to reach desorption equilibrium. In every experiment (one soil, one solution) one blank is run. It consists of the soil and 0.01 M
CaCl, solution, without test substance, and of weight and volume, respectively, identical to those of the experiment. As a control sample the test substance in 0.01 M CaCl, solution (without soil) is subjected to the same test procedure. All the mixtures of the soil with the solution is agitating until to reach adsorption equilibrium (as determined before in Tier 2). Then, the phases are separated by centrifugation and the
aqueous phases are removed as much as possible. The volume of solution removed is replaced by an equal volume of 0.01 M CaC1, without test substance and the new mixtures are agitated again. The aqueous phase
of the first tube is recovered as completely as possible and is measured after, for example, 2 h, that of the second tube after 4 h, that of the third after 6 h, etc until the desorption equilibrium is reached.
77. [bl Serial method: After the adsorption kinetics experiment, the mixture is centrifuged and the aqueous phase is removed as much as possible. The volume of solution removed is replaced by an equal volume of 0.01 M CaCI, without test substance. The new mixture is agitated until the desorption equilibrium
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is reached. During this time period, at defmed time intervals, the mixture is centrifuged to separate the
phases. A small aliquot of the aqueous phase is immediately analysed for the test substance; then, the
i
experiment continues with the original mixture. The volume of each individual aliquot should be less than
1% of the total volume. The same quantity of fresh 0.01 M CaCl, solution is added to the mixture to maintain
the soil to solution ratio, and the agitation continues until the next time interval.
78.
The percehage desorption is calculated at each time poinf D t j andor time interval DAt,
(according to the needs of the study) and is plotted versus time. The desorption coefficient of K, at
equilibrium is also calculated. All applicable equations are given in Data and Reporting Section and Annex 6.
Results from desomtion kinetics exueriment
79.
Common plqts of the percentage desorption Dtjand adsorption A , versus time, allow estimation
of the reversibility of the adsorption process. If the desorption equilibrium is attained even within twice the time of the adsorption equilibrium, and the total desorption is more than 75% of the amount adsorbed ,the adsorption is considered to be reversible.
Desorption isotherms
80.
Freundlich desorption isotherms are determined on the soils.used in the adsorption isotherms
experiment. The desorption test is performed as described in the section "Desorption kinetics" (paragraph 76
or 77), with the only difference that the aqueous phase is analysed only once, at desorption equilibrium. The
amount of the test substance desorbed is calculated. The content of test substance remaining adsorbed on soil
at desorption equilibrium is plotted as a function of the equilibrium concentration of the test substance in
solution (see Data and Reporting and Annex 6).
DATA AND REPORTING
81.
The analytical data are presented in tabular form (see Annex 7). Individual measurements and
averages calculated are given. Graphical representations of adsorption isotherms are provided. The
calculations are made as described in paragraphs 83-86.
82.
For the purpose of the test, it is considered that the weight of 1 cm'of aqueous solution is lg. The
soillsolution ratio may be expressed in units of w/w or who1 with the same figure.
Adsorotion
-
83.
The adsorption Atj is defined as the percentage of substance adsorbed on the soil related to the
quantity present at the beginning of the test, under the test conditions. If the test substance is stable and does not adsorb significantly to the container wall, Ati is calculated at each time point ti, according to the
equation:
m:d`(ti) ' 100
(3)
At, = mo ("A)
where:
A,
= adsorption percentage at the time point (%); ,
m:"' (ti)
"0
= mass of test substance adsorbed on the soil at the time ti (pg); = mass of test substance in the test tube, at the beginning of the test (pg).
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186
Detailed information how to calculatethe percentage of adsorption A, for the parallel and serial methods is
4 t
given in Annex 6.
84.
The distribution coefficient K,, is the ratio between the content of the substance in the soil phase and
the mass concentration of the substance in the aqueous solution, under the test conditions, when adsorption
equilibrium is reached.
where: C ; ~ J(eq) cz(eq)
my
m;: (eq) m.au V"
= content of the substanceadsorbed on the soil at adsorption equilibrium(pg g-I);
-= mass concentration of the substance in the aqueous phase at adsorption equilibrium (pgcm"); this concentration is analytically determined taking into account the values given by the blanks. = mass of the test substanceadsorbed on the soil at adsorption equilibrium(pg);
= mass of the test substancein the-solutionat adsorptionequilibrium(pg); = quantity of the soil phase, expressed in dry mass of soil (g); = initial volume of the aqueous phase in contact with the soil (cm').
85.
The relation between 4,and K, is given by:
- Kd = A,, 100 A,,
vo (cm' g')
mWi,
.where: Act!
= percentage of adsorption at adsorption equilibrium, %.
86.
The organic carbon normalized adsomtion coefficient K, relates the distribution coefficient K, to
the content of organic carbon of the soil sample:
where: %oc
= percentage of organic carbon in the soil sample (g g ' ) .
K, coefficient represents a single value which characterizes the partitioning mainly of non-polar organic
chemicals between the organic carbon in the soil or sediment and water. The adsorption of these compounds
is correlated with the organic content of the sorbing solid (7); thus, K, values depend on the specific
characteristics of the humic fractions which differ considerably in sorption capacity, due to differences in origin, genesis, etc.
Adsorption isotherms
87.
The Freundlich adsomtion isotherms equation relates the amount of the test Substance adsorbed to
the concentrationof the test substancein solutionat equilibrium (equation 8).
The data are treated as under "Adsorption"and, for each test tube, the content of the test substance adsorbed
on the soil after the adsorption test (CtdS(eq) , elsewhere denoted as d m ) is calculated. It is assumed that
equilibrium has been attained and that C y (eq) represents the equilibrium value:
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The Freundlich adsorption equation is shown in (8):
c:*(es> = K? .C::(eq)l'" (pgg.')
or in the linear form:
logCzd'(eq) = l o g K T + l/n .logC::(eq)
(9)
where:
KadS
F
n
= Freudlich adsorption coefficient; its dimension is cm' g' only if lln = 1; in all other
cases, the slope l/n is introduced in the dimension of K F (Fg I."" (cm')'" g.');
= regression constant; l/n generally ranges between 0.7-1.0, indicating that sorption data is frequently slightly nonlinear.
Equations (8) and (9) are plotted and the values of K P and I/n are calculated by regression analysis using
the equation 9. The correlation coefficient r2of the log equation is also calculated. An example of such plots is given in Fig.2.
Fig. 2 Freundlich Adsorption Plot, normal and linearized
Mass balance
88.
The mass balance (MB) is defined as,the percentage of substance which can be analytically
recovered after an adsorption test versus the nominal amount of substance at the beginning of the test.
89.
The treatment of data will differ if the solvent is completely miscible with water. In the case of
water-miscible solvent, the treatment of data described under "Desolption"may be applied to determine the
amount of substance recovered by solvent extraction. If the solvent is less miscible with water, the
determination of the amount recovered has to be made.
90.
The mass balance MB for the adsorption is calculated as follows; it is assumed that the term (ma
corresponds to the sum of the test chemical masses extracted from the soil and surface of the test vessel with
an organic solvent:
where: MB m..
CrJ
= mass balance (%); = total mass of test substance extracted from the soil and walls of the test vessel in two
steps (pg); = initial mass concentration of the test solution in contact with the soil (pg cm");
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Vre
= volume of the supernatant recovered after the adsorption equilibrium (cml).
i
t
Desorption
91.
The desomtion is defined as the percentage of the test substance which is desorbed, related to the
quantity of substancepreviously adsorbed,under the test conditions: '
where: Dti
= desorptionpercentage at a time point ti (YO);
m;y (ti = mass of the test substancedesorbed from soil at a time point ti,(pg);
m;ds (eq) =, mass of the test substance adsorbed on soil at adsorption equilibrium(pg).
Detailed information on how to calculatethe percentage of desorption Dtifor the parallel and serial methods
is given in Annex 6.
92.
The apuarent desorption coefficient (KdJ is, under the test conditions, the ratio between the content
of the substance remaining in the soil phase and the mass concentration of the desorbed substance in the
aqueous solution, when desorption equilibrium is reached:
where: K,
mg(eq
VT
= desorption coefficient (cm' g.'); = total mass of the test substance desorbed from soil at desorption kquilibrium (pg);
= total volume of the aqueous phase in contact with the soil during the desorption kinetics test (cm').
Guidance for calculatingthe m:;(eq) is given in Annex 6 under the heading "Desorption".
Remark
If the adsorption test which was preceded, was performed with the parallel method the volume V,
in the equation (12) is considered to be equal to V,.
Desorption isotherms
.
93.
The Freundlich desomtion isotherms equation relates the content of the test substance remaining
adsorbed on the soil to the concentrationof the test substance in solution at desorption equilibrium (equation
16).
94.
For each test tube, the content of the substance remaining adsorbed on the soil at desorption
equilibriumis calculated as follows:
m:r(eq) is defined as:
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where:
=
~,d-(~d
m$(eq> =
=
m,A,
m: (eq) =
content of the test substance remaining adsorbed on the soil at desorption equilibrium
(Pg g'>; mass of substance determined analytically in the aqueous phase at desorption equilibrium (pg); mass of the test substance left over from the adsorption equilibrium due to incomplete volume replacement (pg); mass of the substance in the solution at adsorption equilibrium (pg);
-= volume of the solution taken from the tube for the measurement of the test substance,
v: at desorption equilibrium (cm');
VR
- volume of the supernatant removed from the tube after the attainement of adsorption
equilibrium and replaced by the same volume of a 0.01 M CaCI, solution (cm');
The Freundlich desorption equation is shown in (16):
c,"l(e9> = K? . CZ(eq)''" (pg g')
or in the linear form:
l o g C r ( e q ) = I o g K P + I/n . logCtr(eq)
where: K;=
n
c:;(~~)
= Freundlich desorption coefficient;
= regression constant; = mass concentration of the substance in the aqueous phase at desorption equilibrium
(pg cm").
The equations (16) and (17) can be plotted and the value of K r and l/n are calculated by regression analysis using the equation 17.
Remark
If the Freundlich adsorption or desorption exponent l/n is equal to 1, the Freundlich adsorption or
desorption binding constant ( K F a n d K 2 ) will be equal to the adsorption ordesorption equilibrium constants (K,and &J respectively, and plots of C, vs C, will be linear. If the exponents are not equal to 1,
plots of C, vs C,q will be nonlinear and the adsorption and desorption constants will vary along the isotherms.
TEST REPORT
95.
The test report should include the following information:
- Complete identification of the soil samples used including:
- geographical reference of the site (latitude, longitude); - date of sampling; - use pattern (e.g. agricultural soil, forest, etc.);
- depth of sampling;
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sand/silt/clay content; pH values (in 0.01 M CaCl,); organic carbon content; organic matter content; nitrogen content; C y ratio; Cation Exchange Capacity (mmolkg); all information relating to the collectionand storage of soil samples;
where appropriate, all relevant information for the interpretation of the adsorption -
desorption of the test substance; reference of the methods used for the determination of each parameter.
information on the test substanceas appropriate; temperature of the experiments; centiifugation conditions; analyticalprocedure used to analyse the test substance; justificationfor any use of solubilizingagent for the preparation of the stock solution of the test substance; explanationsof correctionsmade in the Calculations,if relevant; data according to the form sheet (Annex 7) and graphical presentations; all information and observationshelpful for the interpretation of the test results.
LITERATURE
1. H. Kukowski and G. Briimmer, (1987), Investigations on the Adsorption and Desorption of Selected
Chemicals in Soils. UBA Report 106 02 045, Part II.
2. 0. F k l e , G. Kuhnt and L. Vetter, (1987), Selection of Representative Soils in the EC-Territory. UBA Report 10602 045, Part I.
3. G. Kuhnt and H. Muntau, (Eds.) EURO-Soils: Identification, Collection, Treatment, Characterisation. Special Publication no. 1.94.60, Joint Research Centre. European Commission, ISPRA, December 1994.
4. OECD Test Guidelines Programme, Final Report of the OECD Workshop on Selection of Soils/Sediments,Belgirate, Italy, 18-20 January 1995(June 1995).
- 5. US-Environment Protection Agency: Pesticide Assessment Guidelines, Subdivision N, Chemistry: Environmental Fate, Series 163-1, Leaching and AdsorptiodDesorption Studies, Addendum 6 on Data Reporting, 540/09-88-026, Date: 1/1988.
6.
US-Environment Protection Agency: Prevention, Pesticides and Toxic Substances, OPFTS
HarminizedTest Guidelines,Series 835-Fate,Transport and Transformation Test Guidelines,OPPTS
No: 835.1220 Sediment and Soil Adsorptiodllesorption Isotherm. EPA No: 712-C-96-048, April
1996.
7. ASTM Standards, E 1195-87, Standard Test Method for Determining a Sorption Constant (Koc) for an Organic Chemical in Soil and Sediments.
8. Agriculture Canada: Environmental Chemistry and Fate. Guidelines for registration of pesticides in Canada, 15 July 1987.
9. Netherlands Commission Registration Pesticides (1 995): Application for registration of a pesticide. Section G. Behaviour of the product and its metabolites in soil, water and air.
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10. Danish National Agency of Environmental Protection (October 1988): Criteria for registration of
i
pesticides as especially dangerousto health or especiallyharmful to the environment.
t
11. BBA (1990), Guidelines for the Official Testing of Plant Protection Products, Biological Research
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Jamet), INRA,Paris, (Review).
13. R. Calvet, (1980), "Adsorption-Desorption Phenomena" in Interactions between herbicides and the soil. (R.J. Hance ed.), Academic Press, London, pp. 83-122.
14. Hasset J.J., and Banwart W.L., (1989), "The sorption of nonpolar organics by soils and sediments" in Reactions and Movement of Organic Chemicalsin Soils. Soil Science Society of America (S.S.S.A),
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15. van GenuchtG M. Th., Davidson J.M., and Wierenga P.J., (1974), "An evaluation of kinetic and equilibrium equations for the prediction of pesticide movement through porous media". Soil Sci.
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25.
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37. Hance R.J., (1969), "An empirical relationship between chemical structure and the sorption of some herbicides by soils". I.Agri. Food Chem., 17,667-668.
38. Briggs G.G. (1969), "Molecular structure of herbicides and their sorption by soils". Nature, 223, 1288.
39. Briggs G.G. (198 1). "Theoretical and experimental relationships. between soil adsorption, octanolwater partition coefficients, water solubilities,bioconcentration factors, and the parachor". J. Agric. Food Chem., 29,1050-1059.
40. Sabljic A., (1984), "Predictions of the napre and strength of soil sorption of organic polutants by molecular topology". J. Agric. Food Chem., 32,243-246.
41. Bailey G.W., and White J.L., (1970), "Factors influencing the adsorption, desorption, and movement of pesticides in soil". Residue Rev., =,29-92.
42. Bailey G.W., J.L. White, and Y. Rothberg., (1968), "Adsorption of a g a n i c herbicides by montomorillonite: Role of pH and chemical character of adsorbate". Soil Sci. SOC.h e r . Proc., 32,
222-234,
43. Karickhoff S.W., (1981) "Semi-empirical estimation of sorption of hydrophobic pollutants on natural
sediments and soils". Chemosphere,lo,833-846.
44. Paya-Perez A., Ria M., and Larsen B., (1989), "Soil Sorption of 6 Chlorobenzenes and 20 PCB Congeners". Environ. Toxicol. Safety,2 l , 1-17.
45. Hamaker J.W., and Thompson J.M., (1972), "Adsorption in organic chtmicals" in Organic Chemicals in the Soil Environment (Goring C.A.I. and Hamaker J.W., eds), Vol I and 11, Marcel
Dekker, Inc., New York, NY,1972, pp. 49-143.
46. Deli J., and Warren G.F., (1971), "Adsorption, desorption and leaching of diphenamid in soils". Weed Sci., s , 6 7 - 6 9 .
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47. Chu-Huang Wu, N.Buehring, Davinson J.M., and Santelmann, (1979, "Napropamide Adsorption,
i
desorptionand Movement in soils". Weed Science, 23,454457.
t
48. Haues M.H.B., Stacey M., and Thompson J.M., (1968) "Adsorption of s-triazine herbicides by soil
organic preparations" in Isotopes and Radiation in Soil Organic Studies, p.75, International. Atomic
Energy Agency, Vienna.
49. Pionke H.B:, and Deangelis R.J., (1980), "Methods for distributing pesticide loss in field run-off between the solution and adsorbed phase", CREAMS, in A Field Scale Model for Chemicals, Runoff and Erosion from Agricultural Management Systems, Chapter 19, Vol. III: Supporting Documentantion,USDA Conservation Research report.
50. IS0 Standard Compendium Environment: Soil Quality - General aspects; chemical and physical
methods of analysis; biological methods of analysis. First Edition (1994).
51.
Scheffer F., 1lth edition.
-and
Schachtschabel
P.,
Lehrbuch
der
Bodenkunde,
F.
Enke
Verlag,
Stuttgart
(1982),
52. Black, Evans D.D., White J.L., Ensminger L.E., and Clark F.E., eds. "Methods of Soil Analysis", Vol 1 and 2, American Society of Agronomy, Madison, WI, 1982.
53. ISO/DIS 10381-1 Soil Quality -- Sampling -- Part 1: Guidance on the design of sampling
programmes.
54. ISOiDIS 10381-2 Soil Quality -- Sampling -- Part 2: Guidance on samplingtechniques.
55. ISOiDIS 10381-3 Soil Quality -- Sampling -- Part 3: Guidance on safety of sampling.
56. ISO/DIS 10381-4 Soil Quality - Sampling - Part 4: Guidance on the investigation of natural and
cultivated soils.
57. ISODIS 10381-5 Soil Quality -- Sampling -- Part 5 : Guidance on the investigation of soil
contamination of urban and industrial sites.
58. I S 0 10381-6, 1993: Soil Quality - Sampling - Part 6: Guidance on the collection, handling and
storage of soil for the assessment of aerobic microbial processes in the laboratory.
59. Green R.E., and Yamane V.K., (1970), "Precision in pesticide adsorption measurements". Soil Sci. Am. Proc., 34,353-354.
60. Grover R, and Hance R.J. (1970), "Effept of ratio of soil to water on adsorption of linuron and atrazine". Soil Sci., 109-138.
61. Boesten, J.J.T.1, (1990), "Influence of soilhiquid ratio on the experimental error of sorption coefficients in pesticiddsoil system". Pest. Sci., 30,3 1 4 1 .
62. Boesten, J.J.T.I. " Influence of soilkquid ratio on the experimental error ofsorption coefficients in relation to OECD guideline 106" Proceedings of 5th international workshop on environmental
behaviour of pesticides and regulatory aspects, Brussels, 26-29 April 1994.
a, 63. Bastide J., Cantier J.M., and Coste C., (1980), " Comportement de substancesherbicides dans le sol en fonction de leur structure chimique". Weed Res., 227-231.
64.
Brown D.S., sediments".
m, and Flagg E.W., (1981), "Empirical
J. Environ. Qual.,
382-386.
prediction
of
organic
pollutants
sorption
in
natural
65.
w, Chiou C.T., Porter P.E., and Schmedding D.W., (1983), "Partition equilibria of nonionic
compounds between soil organic matter and water". Environ. Sci. Technol.,
227-23 1.
organic
66.
w, Gerstl Z., and Mingelgrin U., (1984), "Sorption
Environm. Sci. Health,
297-312.
of
organic
substances by
soils
and
sediments".
J.
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106
67. Vowles P.D., and Mantoura R.F.C., (1987), "Sediment-water partition coefficient and HPLC retention factors of aromatic hydrocarbons". Chemosphere,M,JJ 103-116.
t
68. Lyman W.J., Reehl W.F., and RosenbIatt D.H., (1990), Handbook of Chemical Property Estimation Methods. Environmental Behaviour of Organic Compounds. American Chemical Society,
Washington DC.
69. Keniga E.E:, and Goring, C.A.I., (1980), "Relationship between water solubility, soil sorption, octanol-water partitioning and concentration of chemicals in the biota" in Aquatic Toxicology (e&
J.G. Eaton, et al.), pp. 78-1 15, ASTM STP 707, Philadelphia.
70. Chiou C.T., Peters L.J., and Freed V.H., (1979), "A physical concept of soil-water equilibria for nonionic organic compounds". Science, l&83 1-832.
71. Hassett J.J., Banwart W.I., Wood S.G., and Means J.C., (1981), "Sorption of /-Naphtol: implications concerning the limits of hydrophobic sorption". Soil Sci. SOCA. m. J., 45,3842.
72.
m, Karickhoff SYW., (1981), "Semi-empirical estimation of sorption
natural sediments and soils". Chemosphere,
833-846.
of
hydrophobic
pollutants
on
73.
- m, Moreale A., van Blade1 R., (1981), "Adsorption de 13 herbicides
solubilitC reactivitk. Revue de l'Agric.,
319-322.
et
insecticides
par
le
sol.
Relation
74. M. Muller, W. KGrdel, (1996), "Comparison of screening methods for the detenninatiodestimation
of adsorption coefficientson soil". Chemosphere,32112`),2493-2504.
75.
W. Kordel, G. Kotthoff, M. Muller, (1995), "HPLC
adsorption coefficient on soil - results of a ring test".
m, - screening method for the determination
Chemosphere
1373-1384.
of
the
76.
m, W. Kordel, J. Stutte, G. Kotthoff, (1993), "HPLC - screening method for the determination of the
adsorption coefficient on soil - comparison of different stationary phases. Chemosphere,
2341-2352.
77. Hance, R.J., (1967), "The speed of Attainment of Sorption Equflibria in Some Systems Involving
Herbicides". Weed Research, 2, pp. 29-36.
78. Koskinen W.C., and Harper S.S., (1990), "The retention processes: mechanisms" in Pesticides in the Soil Environment: Processes, Impacts and Modelling (ed. H.H. Cheng). Soil Sci. SOC.Am. Book Series, No. 2, Madison, Wisconsin.
79. Cohen S.Z., Creeger S.M., Carsel R.F., and Enfield C.G., (1984), "Potential pesticide contamination
of groundwater from agricultural uses", in Treatment and Disposal of Pesticide Wastes, pp.297-325,
ACS Symp. Ser., 259, American Chemical Society,Washington,DC.
80. Giles C.H., (1970), "Interpretation and use of sorption isotherms" in Sorption and Transport
Processes in Soils. S.C.I. Monograph No. 37, 14-32.
*
81. Giles C.H., McEwan J.H., Nakhwa S.N., and Smith D., (1960), "Studies in adsorption: XI. A system of classification of solution adsorption isotherms and its use in the diagnosis of adsorption mechanisms and in measurements of pesticides surface areas of soils". J. Chem. SOC.3, 973-93.
82. Calvet R., Terc6 M., and Arvien J.C., (1980), "Adsorption des pesticides par les sols et leurs constituants: 3. CaractCristiques gtnCrales de l'adsorption". Ann. Agron., 31,239-25 1.
83. Bedbur E., (1996), "Anomalies in the Freundlich equation", Proc. COST 66 Workshop, Pesticides in soil and the environment, 13-15 May 1996, Stratford-upon-Avon, U.K.
84. Guth, J.A., (1989, "Adsorptioddesorption", in Joint International Symposium, Physicochemical Properties and their Role in Environmental Hazard Assessment, July 1-3, Canterbury, UK.
85. Soil Texture Classification (US and FA0 systems): Weed Science, 3,Suppl. 1 (1985) and Soil Sci.
SOCA. mer. Proc., 26,305 (1962).
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ANNEX 1
TESTING SCHEME
- I,.Set up,ofa'suitable analytical method
I
+ Available?
@ 8*No hrther test
[2] 4
.(
W CI
vessel surface
Check of the stability by means of parental
mass balance
Equilibrium plateau is achieved?
+@1 5 soils. I
t
/
If mass balance < 90 %, test substance is unstable in the time scale of the test. The test can continue by analysing both phases
if: Kd*(mm)V,>) 0.3 (indirect method: measurement of solutio K,*(m,/v,J > 0.1 (direct method measurement ofboth phases)
m
1
as appropriate
F,V
D
e
s
o
r
p
t
i
1
on
kinetics.
-
-
I
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1 Svmbol
A
I m?(t,)
m: (4
m,
C
CO
c$(ti>
c:d"es) C$ (e4
"0
V. A
11 K .
K,
K"
Kiidr
F
I
1In Dt:
%t$
, K,
ANNEX 2
DEFINITIONS AND UNITS
I Definition
Units
I
adsorption percentage at the time point t,
%
1 I
I
adsomtion uercentaw at adsomtion eauilibrium mass of the test substance adsorbed on the soil at the
time t,
%
I
mass of the test substance adsorbed on the soil during the time interval At
mass of the substance adsorbed on the soil at adsorption
emilihrium
mass of the test substance in the test tube, at the beginning of the adsomtion test
(rg1
mass of the substance measured in-an aliquot ( v,-" ) at the
time point t,
mass of the substance in the solution at adsorption equilibrium
quantityof the soil phase,expressedin dry mass of soil mass concentrationof the stocksolutionof the substance
initial mass concentration of the test solution in contact with the soil
mass concentration of the substancein the aqueousphase at the time 6 that the analysis is performed
content of the test substance adsorbed on soil at adsorption equilibrium an equilibrium
mass concentration of the substance in the aqueous phase at
adsorption equilibrium
.
initial volume of the aqueous phase in contact with the soil during the adsorption test
volume of the aliquot in which the test substance is measured
g
pg cm" pg cm'] pg cm"
Pg g.' pg cm" cm' cm'
I distributioncoefficientfor adsomtion
cm' i `
U
organic carbon normalized adsorption coefficient
organic matter normalized distribution coefficient
Freundlich adsorption coefficient
Freundlich exponent desorption percentage at a point time t,
desorptionpercentage correspondingto a time interval At, apparent desorption coefficient
%,
LIE4 cm' g.'
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1 t
Symbol
der
I Definition
1 Freundlich desorption coefficient
m z(ti)
mass of the test substance desorbed from soil at the time t,
m z (At i1
mF(eq) mf (eq
mass of the test substance desorbed from soil during the time
At
mass of substance determined analytically in the aqueous phase
I
at desomtion equilibrium total mass of test substance desorbed at
desorption equilibrium
m,d- (At i )
mass of the substance remaining adsorbed on the soil after the time interval At,
mass of the test substance left over from the adsorption equilibrium due to incomplete volume replacement
content of the test substance remaining adsorbed on the soil at desomtion equilibrium
c: (4
mass concentration of the substance in the aqueous phase at desorption equilibrium
total volume of the aqueous phase in contact with the soil
VT
during the desorption kinetics experiment performed with the
serial method
volume of the supematant removed from the tube after the
&+----- attainement of adsorption equilibrium and replaced by the same volume of a 0.01 M CaCl solution
volume of the aliquot sampled for analytical purpose from the tume (i), during the desorption kinetics experiment performed with the serial method
volume of the solution taken from the tube (i) for the measurement of the test substance, in desorption kinetics
experiment (parallel method) .
volume of the solution taken from the tube for the measurement of the test substance, at desorption equilibrium
MB
mass balance
I ms
total mass of test substance extracted from the soil and walls of
the test vessel in two steps
v,
volume of the supernatant recovered after the adsorption
equilibrium
p,
octanovwater partition coefficient
I PKa
dissociation constant
sw
water solubility
w
I
cm' cm' cm' cm' cm'
%
"
1
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106
AMVEX 3
Influence of Accuracy of Analytical Method and Concentration Change on Accuracy of Adsorption Results
From the foJlowing table (part of ref. 84) it becomes obvious that when the difference between the initial
mass (m,= 1I O pg) and equilibrium concentration (m:t(eq)= 100 pg) of the test substance in the solution is very
small, an error of 5 % in the measurement of equilibrium concentration results in an error of 5 0 % in the calculation of
the mass of the substance adsorbed in soil (mr(eq))and of 52.4%in the calculation of the K,.
Amount of soil Volume of solution
ma1
= log
vo
= 100 cm'
m$(eq) 'Cg(eq) R
(!%I
cm.7
mZd(seq)*
(PP)
c:"'(eq) R'
*(!% S')
K,*
R'
1.oo
0.90 0.50
0.10
truevalue 10%
50%
90%
1 0.89 1
0.476 0.092
10.9%
52.4% 90.8%
truevalue 60.0 0.01111 1%
6.00
5.95 5.75 5.50
true value
0.8%
4.0% 8.3%
12.00
11.78
10.95
1 10.00
I1
10.88 0.01%
1.8%
8.8%
16.7%
m?(eq)
m$(eq)
C?(e)
c$ (e@
R R'
= mass of the test substancein the soil phase at equilibrium,pg; = mass of the test substancein the aqueousphase at equilibrium,pg;
= content of the test substancein the soil phase at equilibrium,pg g.'; * = mass concentrationof the test substancein the aqueousphase at equilibrium,pg cm" = analytical error in the determination of the m.,d,s(eq) ; = calculated error due to the analytical error R.
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AMYEX 4
$4
t
Estimation techniques for K,
1.
Estimation techniques permit prediction of K, based on correlations with, for example, p_ values
(12,39,63-68), water solubility data (12, 19,21,39,68-73), or polarity data derived by application of HPLC
on reversed phase' (7'4-76). As shown in Tables 1 and 2, is the K, o r X m that are calculated from these
equations and then, indirectly,the K,fiom the equations:
2.
The concept of these correlations is based on two assumptions: (1) It is the organic matter of the
soil that mainly influences the adsorption of a substance; and (2) The interactions involved are mainly non-
polar. As a result, these correlations: (1) are not, or are only to some extent, applicable to polar substances,
and (2) are not applicablein cases where the organicmatter content of the soil is very small (12). In addition,
although satisfactory correlationshave been found between Pmand adsorption (19), the same cannot be said
for the relationship between water solubility and extent of adsorption (19, 21); so far the studies are very
contradictory.
3.
Some examples of correlations between the adsorption coefficient and the octanol-water partition
coefficient,as well as water solubilityare given in Tables 1 and 2, respectively.
Table 1. Examples of correlations between the adsorption distribution coefficient and the octanol-water partition coefficient; for further examples see refs. 12 and 68.
Various pesticides
log K,, = 4.4 + 0.72 log P_
Authors Bnggs(1981) (Ref. 39) Chiou et al. (1983) (Ref. 65)
Gerstl and Mingelgnn (1984) (Ref. 66) Vowles and Mantoura (1987) (Ref. 67)
Table 2. Examples of correlations between the adsorption distribution coefficient and water solubility; for further examples see refs. 68 and 69.
"ompounds
Various pesticides
Aliphatic, aromatic chlorinated substances
a-naphtol
Cyclic,
aliphatic
aromatic substances
Various compounds
Correlations
- log Km=3.8 0.561 log S, - K = (4.040 +/- 0.038)
(0.557 +/- 0.012) log Sw
- lOgK_ = 4.273 0.686 log Sw - logK = - 1.405 0.921 log S - 0.00953 (mp-25) - K, = 2.75 0.45 log S ,
Authors
Gerstl and Mingdgdn (1984) (Ref. 66) Chiou et aI.(1979) (Ref. 70)
Hasset et al. (1981) (Ref. 71) Karickhoff (1981) (Ref. 72)
Moreale van Blade (1982) (Ref. 73)
DraR OECD Test Guideline "Estimation of Adsorption Coefficient (Koc) on Soil and on Sewage Sludge using High Performance Liquid Chromatography (HPLC) " , July 1997.
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106
ANNEX 5 Calculations for Defining the Centrifugation Conditions
1.
The centrfigation time is given by the following formula, assuming spherical particles:
For simplificationpurposes, all parameters are described in non-SI units (8, an),
where:
w=
rpm =
q= rp =
2P. :=
%= %-R, =
-rotational speed (=2 TC rpm/60), rad s"; revolutions per minute;
viscosity of solution, g s-'cm"; particle radius, cm;
soil density, g cmJ; solution density, g cm"; distance from the centre of centrifuge rotor to top of solution in centrifuge tube, cm; distance from the centre of centrifuge rotor to bottom in centrifuge tube, cm; length of the soilholution mixture in the centrifuge tube, cm.
In general practice, double the calculated times is used to ensure complete separation.
2.
The equation (1) can be simplified further if we consider the Viscosity (q) and the density (p ) of
the solution as equal to the viscosity and density of water at 25 "C; thus, q = 8.95 x IO-'g s.'cm.'qand
p, = 1.O g cm".
Then, the centrifugation time is given by the equation (2):
3.
From the equation (2) it becomes apparent that two parameters are important in defining the
Centrifugation condition, Le. time (t) and speed (rpm), in order to achieve separation of particles with a
specific size (in our case 0.1 prn radius): (1) the density of the soil and (2) the length of the mixture in the
centrifuge tube (k-R,)L,e. the distance which a soil particle covers from the top of the solution to the
bottom of the tube; obviously, for a fixed volume the length of the mixture in the tube will depend on the
square of the radius of the tube.
4.
Fig. 1 presents variations in the centrifugation time (t) versus centrifugation speed (rpm) for
different soil densities (p,) (Fig. la) and different lengths of the mixture in the centrifuge tubes (Fig. 2a).
From Fig. l a the influence of the soil density appears obvious; for example, for a classical centrifugation
of 3000 rpm the centrifugation time is approx. 240 min for 1.2 g cm' soil density, while it is only 50 min
for 2.0 g cm'. Similarly, from Fig lb, for a classical centrifugation of 3000 rpm the centrifugation time is
approx. 50 rnin for a length of the mixture of 10 cm and only 7 min for a length of 1 cm. However, it is
important to find an optimal relation between centrifugation which requires the less length possible and
easy handling for the experimenter in separating the phases after centrifugation.
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5.
Moreover, when defining the experimental conditions for the separation of soiVsolution phases, it is
important to consider the possible existence of a third "pseudo-phase", the colloids. These particles, with a
i
size less than 0.2 p,can have an important impact on the whole adsorption mechanism of a substance in a
soil suspension. When centrifugation is pedormed as descrbided above, colloids remain in the aqueous phase
and are subjected to analysis together with the aqueous phase. Thus, the information about their impact is
lost. If the conducting laboratory has ultracentrifugation or ultrafiltration facilities, the adsorptioddesorption
of a substance in sbil could be studied more in depth, including information on the adsorption of the
substance on the colloids. In this case, an ultracentrifugation at 60,000 .rpm or an ultrafiltration with filter
porosity of 100,000 Daltons should be applied in order to separate the three phases soil, colloids, solution.
The test protocol described in the following paragraphs should be also be modified accordingly, in order all
three phases to be subjected to substance analysis.
h 1000
.z-3Y
+a
100
!
.-0 E
. I
5 M 10
+
E
U
1 1000
10000
Centrifugation speed (rpm)
Fig. l a Variations of centrifugation time (t) versus centrifugation speed (rpm) for different soil densities
(p). R, = 10 cm, & -R, = 10 cm, q = 8.95 x 10'g s"cm" and p,= 1.0 g cm" at 25C.
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1000
OECD/OCDE
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106
mo
iooa
ioaoo
Centrifugation speed (rpm)
Fig. l b Variations of centrifugation time (t) versus centrifugationspeed (rpm)for different lengths of the mixture in the centrifuge tube (Rb -Rt) = L; R, = 10cm, q = 8.95 x 10'g s"cm",p, = 1.0 g cm" at 25C and p, = 2.0 g cm".
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OECDIOCDE
ANNEX 6
CALCULATION OF ADSORPTION A (YOa)nd DESORPTJON D(%)
1.
The time scheme of the procedure is:
rn to
tl
----------------- Atn-, At, I I
t2
fn-2
tn-I
t"
b
Time t
2.
For all the calculations it is assumed that the test substance is stable and does not adsorb
significantlyto the container walk.
ADSORPTION A(%>
a) Parallel method
3.
The percentage adsorption is calculated for each test tube (i) at each time point (tJ, according to the
equation:
Ati = m:ds(ti> . IO0 (%I
(1)$
mo
The terms of this equation may be calculated as follows:
r n o = Co . V, (pg)
rn:"'(ti>= mo - c : t ( t i > * VO (pg)
where: A ti
= adsorption percentage (YO)at the time point ti;
rn:d'(t, ) = mass of test substance on soil at the time t, that the analysis is performed (pg);
mo
=
Cc"c(tl)==
v,
=
mass of test substance in the test tube, at the beginning of the test (pg);
initial mass concentration of the test solution in contact with the soil (pg cm");
mass concentration of the substance in the aqueous phase at the time t that the analysis is
performed (pg cm-'); this concentration is analytically determined taking into account the
values given by the blanks.
initial volume of the test solution in contact with the soil (cm').
-
The values of the adsorption percentage Atior C$(t,) are plotted versus time and the time after which the
sorption equilibrium is attained is determined. Examples of such plots are given in Fig. 1 and Fig. 2 respectively.
Equations applicableto both direct and indirect methods . All the other equations are applicable only to indirect method.
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10s
Equilibration time ti (h) Fig. 1 Adsorption Equilibrium Plot
100 90
M
J
0
5
10 15 20
25
30
35
40
45
50
Equilibration time ti (h)
-
Fig. 2 Mass concentration of the test substance in the aqueous phase (C-) versus time
b) Serial method
4.
The following equations take into account that the adsorption procedure is carried out by
measurements of the test substance in small aliquots of the aqueous phase at specific time intervals.
During each time interval the amount of the substance adsorbed on thesoil is calculaied as follows:
- for the first time interval At, = t, - to
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- for the second time interval A5 = 5 - t,
- for the third time interval At, = f - $
- for the n" &e interval Atn= tn- t,,
a
The percentage of adsorption at each time interval,AAt,iis calculated using the followingequation:
mF(Ati)
=
.loo (%)
(8)
m0
2mF while the percentage of adsorption (A'i ) at a time point is given by the equation:
(j) (9)
A = j=At,
.loo (%)
ti
m
I
The values of the adsorption At, or
(with respect to the needs of the study) are plotted versus time
and the time after which the sorptionequilibrium is attained is determined.
At the equilibrationtime t,:
- the mass of the test substanceadsorbed on the soil is:
- the mass of the test substance in the solution is:
m:$(eq) = mo - xm:"(Ati)
Ati=l
- and the percentageof adsorption at equilibriumis:
* Equations applicable to both direct and indirect methods. All the other equations are applicable only to indirect method.
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m:ds ( e 4
i
A,, =-.
100 (%)
t
m0
The parameters used above are defined as :
mass of the substance adsorbed on the soil during the time
intervals At,, At2,...,Atn respectively (pg);
mass of the substance measured in an aliquot (.," ) at the
time points t,, 5,...,tnrespectively (pg);
mass of the substance adsorbed on the soil at adsorption equilibrium (pg);
mass of the substance in the solution at adsorption equilibrium (pg);
volume of the aliquot in which the test substance is measured (cm'); percentage of adsorption corresponding at a time interval
At, ("/.I;
percentage of adsorption at adsorption equilibrium (%).
5.
The time 6 that the desorption kinetics experiment begins, is considered as the moment that the
maximal: recovered volume of the test substance solution (after that the adsorption equilibrium is attained) is
replaced by an equal volume of 0.01 M CaCI, solution.
a) Parallel method
6.
At a time point t, ,the mass of the test substance is measured in the aqueous phase taken from the
tube i (V;' ), and the mass desorbed is calculated according to the equation:
At desorption equilibrium t, = t, and therefore mf'(t ,) = mg(es).
The mass of the test substance desorbed during a time interval (At,) is given by the equ'ation:
i-l
mtT(Ati) = m ~ ~ ( t i ) - ~ m ~ ( i )
j= I
7.
The percentage of desorption is calculated:
at a time point ti from the equation:
and during a time interval (At3 from the equation:
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OECD/OCDE
m::(Ati)
it.
DAli
=
.loo
mtdr(4
(%)
where:
D ti
= desorption percentage at a time point t,(%);
DAti
= desorptionpercentage corresponding to a time interval A\(%);
m: (ti) mty(Ati) mF(ti>
m:
= mass of the test substance desorbed at a time point ti (pg);
= mass of the test substance desorbed during a time intervals Ati (pg);
= mass of the test substance analytically measured at a time ti in a solution volume V;`,
which is taken for the analysis (pg); = mais of the test substance left over from the adsorption equilibrium due to incomplete
volume replacement (Fg);
mt: (eq) = mass of the test substance in the solution at adsorption equilibrium (pg);
v, = volume of the supematant removed from the tube after the attainement of adsorption
equilibriumand replaced by the same volume of a 0.01 M CaCl, solution (cm');
V;`
= volume of the solution taken from the tube (i) for the measurement of the test substance,
in desorption kinetics experiment (cm').
The values of the desorption Dti or Dbt, (accordingto the needs of the study) are plotted versus time and
the time after which the desorption equilibriumis attained is determined.
b) Serial method:
vt 8.
The following equations take into account that the adsorption pkocedure, which was preceded, was
carried out by measurementsof the test substance in small aliquots ( ) of the aqueous phase (serial method,
paragraph 58). It is assumed that: a) the v o l b e of the supernatant removed from the tube after the
adsorption kinetics experiment was replaced by the same volume of 0.01 M CaCl, solution (V, ) and b) the
total volume of the aqueous phase in contact with the soil (V,) during the desorption kinetics experiment remains constant and is given by the.equation:
9.
At a time aoint ;t
the mass of the test substance is measured in a small aliquot ( v r ) and the mass desorbed is calculated, according to the equation:
At desorption equilibrium ti= tcqand therefore rn; ( t i )= m;(eq) The percentage of desorption Dl, is calculated, from the following equation:
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OECD/OCDE
106
10. At a time interval ( A t . During each tim(interva1 the amount of the substance desorbed is calcdated as follows:
- for the first time interval At, = t, - to m:y(At,)= m p ( t l ) . D - m t and m F ( t , ) = m:q(eq)-mt7(At,) (21).
- (3 - for the second time interval At, =t, - t,
mF(t,) =m:" ( e q ) - [ m t ~ ( A t , ) + m ~ ~ ( A t 2 ) ] - for the nIhtime interval Atn= tn- tWi
and m F ( t , ) = m:ds(eq) - ~ m ~ ( A t i )
i=l.n#l
Finally, the percentage of desorption at each time interval,DAti, is calculated using the following
equation:
while the percentage of desorption D,,at a time point tiis given by the equation:
At.
where the above used parameters are defined as :
m:"'(At,), mF(At2) ,... ,msJ"(Att.) m::(At,), mz(At,) ,... ,m:T(Att.)
md,"(t,), m?(t,) ,... ,md,"(tn)
= mass of the substance remaining adsorbed on the soil after the
time intervals Ati, At2,...,Atnrespectively (gg);
= mass of the test substance desorbed during the time intervals
At,, At2,..., Atmrespectively (pg);
= mass of the substance measured in an aliquot (v,") at tilne
points t,, t,,...,tn,respectively (pg);
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106
i 1
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OECD/OCDE
= total volume of the aqueous phase in contact with the soil during the desorption kinetics experiment performed with theserial method (cm');
= mass of the test substance left over from the adsorption equilibrium due to incomplete volume replacement (Fg);
= volume of the supernatant removed from the tube after the
attainement of adsorption equilibrium and replaced by the same
volume of a 0.01 M CaCI, solution (cm');
= volume of the aliquot sampled for analytical purpose from the
tube (i), during the desorption kinetics experiment performed
with the serial method (cm');
v." 5 0.02.. v,
(27)
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OECD/OCDE
106
ANNEX 7
ADSORPTION-DESORPTIONIN SOILS: DATA REPORTmG SHEETS
Substance tested: -
Soil tested
Dry mass content ofthe soil (105"C, 12 h): ........................................................................................................................... % Temperature: ......................................................................................................................................................................... c
Suitability ofihe analytical method
Analytical conc. final sol. Principle of the analyticalmethodused
Calibrationof the analyticalmethod
~~
~
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106
OECDlOCDE
Substance tested
0 n Soiltested
i Dry mass content of the soil (105"C, 12 h): ............................................................................. ..............................................
Temperature: ..............................................................,............................................,................"C
Analytical methodology followed Indirect
Parallel
Serial
Direct 0
Adsorption test: test samples
Adsorption coefficient 1 K,
Means
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OECDIOCDE
106
d
Substance tested:
i
Soil tested
Dry mass contentofthe soil (105"C, 12 h):........................................................................................................................... %
Temperature: .......................................................................................................................... .."C
Adsorption test: blanks and control
Water amount in weighed soil
ncentrahon in aqueous Remark: Add columns if necessary
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106
OECDIOCDE
Substance tested
Soil tested
i <
Dry mass content of the soil (I05"C, 12h): ........................................................................................................................... %
Temperature: ................................................................................................................................................................. "c
Mass balance
I
I Svmbol I units I
1 TubeNo.
U
Weighed soil
I I I
B
Soil: drymass
ms,,
g
Water volume in weighed soil V,
ml
(calculated)
Vol. 0.01 M CaCt sol.70 equilibratesoil
ml
1 Volume of stock solution
I
1 I Total vol. of aq. phase in contactwith soil V,
1 Initial concentration Test solution
co
I cm' I
I
I I I cm' I I-pgcm.'
Eauilibration time
I I 1 ~
I
I
II
I
I
I
I n i
: eCqounilci.brteiusmt sbulbasnt.kacqo.rrpehcatisoenaint caldusdoerdption c ( 4
pg cm"
I Removed volume aq. phase
1 Added volume of solvent
I1 Signal analyzer in solvent
I s.,
1 Conc. test substance in solvent
I c,
II( Mass subst. extracted from soil &vesselwalls I m.,
1 Removed volume of solvent
1 Added volume of solvent
I I 1 Signal analyzer solvent phase
s.,
\ Conc. test subst. in solvent
I c.,
Mass subst.extractedfrom soil & vessel walls
m,
Total mass test subst. extracted in two m, steps
Mass balance
MB
I cm' ] I cm' I
I var. I
I I wgcm''
I ue I
I cm' I I cm' I
I uecmJ I
Pg P!3 %
I
I I
I
I
II
1- 7 I I
I I
I
1
I
I
I
I
I
I I
I
I
I
I
I
I
1
I
I
1 I
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OECD/OCDE
Substance tested: Soil tested:
Dry mass content of the sol1 (105"C, 12 h): ............................... Temperature: .........................................................
Adsorption isotherms
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106
............................... % ......................... ."C
!
Regression analysis:
value of K? :
-
value of Wn: regression coefficient?:
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106
OECD/OCDE
Substance tested:
Soil tested
t
Dry mass content ofthe soil (105"C, 12 h): ........................................................................................................................ %
Temperature: ............................................................................................................................. "C
Analytical methodology followed: Indirect 0Parallel 0Serial [I
Desorption test
Symbol Units
Tube No. coming - from adsorption step
Time interval
Time interval
Time interval
Time interval
Mass of substance adsorbed on soil at adsorption equilibrium
Removed volume aq. phase, replaced by 0.01 M CaC1,
phase
in contact with soil
Mass test subst. left over the adsorption equilibrium due to incomplete volume replacement
Desorption kinetics '0.t '' '-'.
Measured mass of substance desorbed from soil at time f
Volume of solution taken from the tube (i) for
the measurement of the test substance
Mass of substance desorbed from soil at timet, (calculated)
Mass of substance desorbed from soil during time interval At, (calculated)
.L
Desorption percentage
. 3 :,. ; ..,.(. ,
Desorption at time T
Desorption at time interval A\
ADDarent desomtion coefficient K, 'M:Parallel method SM: Sc al method
.. - ...t:.'
.
..
. ' . . . . :J . ; , . . ,
.
I
.
..
.
.. *
-
" ..: . ';*-
:_'. . . . . . . : " (:L,
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3M ENVIRONMENTLAALBORATORY
i
METHOD
ANALYSIS OF POTASSIUM PERnUOROOCTANESULFONATE OR OTHER
FLUOROCHEMICIANLWSASTE STREAM OR WATER EXTRACTUSSING HPLC-ELECTROSPRAYDIASS SPECTROMETRY
Method Number: ETS-8455.0
Author: Mark L. Anderson, Mark E. Ellefson Approved By: Laboratory Manager
Adoption Date: /(/fO/m Revision Date:
/!!/d,/i c)
Date
Word 97
ETS-8- 155.0
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Analysis of Potassium Perfluorooctanesulfonate or Other Fluorochemicals in Waste Stream or Water Extracts
Using HPLC-ElectrosprayMass Spectrometry
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1.0 SCOPE AND APPLICATION t 1.1 Scope: This method describes the analysis of waste stream or water extracts using HPLC-
electrospray/mass spectrometry.
1.2 Applicable Compounds: Fluorochemicals or other electrospray ionizable compounds.
1.3 Matrices: Tap water, ground water, wastewater and other aqueous solutions.
2.0 SUMMARY OF METHOD
2.1 This method describes the analysis of fluorochemicals or other electrospray ionizable compounds extracted from water, using HPLC-electrospray mass spectrometry (HPLCES/MS). The analysis is performed by the mass selection of a single ion characteristic of a particular compound, such as the perfluorooctanesulfonate(PFOS) anion, m/z = 499 or perfluorooctanoate (PFOA), m/z = 4 13.
3.0 DEFINITIONS
3.1 Atmospheric Pressure Ionization (MI): The Micromass Platform LCZ singlequadrupole system and other commercially available LCMS systems allow for various methods of ionization by utilizing a variety of sources, probes, and interfaces. These include but are not limited to: Electrospray Ionization (ESI), Atmospheric Pressure chemical Ionization (ApcI), Thermospray, etc. The ionization in these processes occurs at atmospheric pressure (i.e., not under a vacuum).
3.2 Electrospray Ionization (ES, ESI): A method of ionization performed at atmospheric pressure, whereby ions in solution are transferred to the gas phase via tiny charged droplets. These droplets are produced by the application of a strong electrical field.
3.3 Mass Spectrometer (MS): The Platform LCZ and other commercially manufactured ES/MS systems are equipped with a single quadrupole mass selectivedetector. Ions are selectivelydiscriminated by mass to charge ratio ( d z ) and subsequently detected.
3.4 Conventional vs. Z-spray probe interface: The Micromass Platform LCZ system
utilizes a "Z-spray" conformation. The spray emitted from the probe is orthogonal to the
cone aperture. In the conventional conformation it is aimed directly at the cone aperture, after passing through a tortuous pathway in the counter electrode. Though the configuration is different, the methods of operation, cleaning, and maintenance are the same. However, Zspray components and conventional components are not compatible with one another, but only with similar systems (i.e., Z-spray components are compatible with some other Z-spray systems, etc.). Other commercially manufactured ES/MS systems may have similar features.
3.5 Mass Lynx Software: System software designed for the specific operation of Micromass LCZ Mass spectrometer. Currently MassLynx has Windows 95 and WindowsNT 4.0 versions. All versions are similar. For more details see the manual specific to the instrument (MassLynx NT User's Guide or Micromass Platform LCZ User's Guide).
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Analysis of Potassium Perfluorooctanesulfonateor Other Fluorochemicals in Waste Stream or Water Extracts
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4.0 WARNINGSAND CAUTIONS t 4.1 Health and Safety Warnings:
4.1.1 Use caution with the voltage cables for the probe. When engaged, the probe employs a voltage of approximately 5000 Volts.
4.1.2 When handling samples or solvents wear appropriate protective clothing, gloves, and eyewear.
4.2 Cautions:
4.2.1 Operate solvent pumps below a backpressure of 400 bar (5800 psi). If the backpressure exceeds 400 bar, the HPl 100 will initiate automatic shutdown.
4.2.2 Do not run solvent pumps to dryness.
5.0 Interferences 5.1 To minimize interferences when analyzing samples, Teflon should not be used for sample
storage or any part of instrumentation that comes in contact with the sample or extract.
6.0 EQUIPMENT 6.1 Equipment listed below may be modified in order to optimize the system. Document any
modifications in the raw data as method deviations.
6.1.1 Micromass Platform LCZ Mass Spectrometer equipped with an electrospray ionization source.
6.1.2 I-IPl 100 low pulse solvent pumping system, solvent degasser, column compartment, and autosampler.
7.0 SUPPLIESAND MATERIALS 7.1 Supplies
7.1.1 High purity grade nitrogen gas regulated to approximately 100 psi (or house air
system.).
7.1.2 HPLC analyticalcolumn, such as a Betasil C18 column (5Ox2mm, 5 pm particle size) or equivalent.
7.1.3 Capped autovials or capped 15 mL centrihge tubes.
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Analysis of Potassium Perfluorooctanesulfonateor Other Fluorochemicals in Waste Stream or Water Extracts
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8.0 REAGENTS AND STANDARDS ii 8.1 Reagents
8.1.1 Methanol, HPLC grade or equivalent.
8.1.2 Milli-QTMwater (ASTM type I), all water used in this method should be Milli-QTM water or equivalent, and may be provided by a Milli-Q TOC Plus system or other vendor.
8.1.3 Ammonium acetate, reagent grade or equivalent.
8.1.3.1 When preparing different amounts than those listed, adjust accordingly.
8.1.3.2
2.0 mM ammonium acetate solution: Weigh approximately0.300 g ammonium acetate. Pour into a 2000 L volumetric flask, add the
appropriate volume of Milli-Q water, mix until all solids are dissolved. Store at room temperature.
8.2 Calibration Standards
8.2.1 Typically two method blanks (Milli-Q water), two matrix blanks, and solvent standards are prepared during the sample extraction procedure.
9.0 SAMPLHEANDLING
9.1 Standards and sample extracts are stored in capped autovials or capped 15 mL centrifbge tubes until analysis.
9.2 If analysis will be delayed, standards and sample extracts may be refkigerated at approximately 4" C until analyses can be performed.
10.0 QUALITY CONTROL 10.1 Solvent Blanks, Method Blanks and Matrix Blanks
10.1.1 Solvent blanks, method blanks, and matrix blanks are prepared and analyzed with each sample set to determine contamination or carryover.
10.1.2 Analyze a method blank and a matrix blank prior to each calibration curve.
10.2 Matrix Spikes
10.2.1 Matrix spikes are prepared for each sample set and analyzed to determine the matrix effect on the recovery efficiency.
10.2.2 Matrix spike duplicates are prepared periodicallyto measure the precision associated with the analysis.
10.2.3 Analyze the matrix spike and matrix spike duplicate (if prepared) in the same run as the original sample.
10.2.4 Matrix spike and matrix spike duplicateconcentrationsshould fall in the mid-range of the initial calibration curve or should be prepared at 1.5-4 times the endogenous
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Analysis of Potassium Perfluorooctanesulfonateor Other Fluorochernicalsin Waste Stream or Water Extracts
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concentration of the analyte. Spike concentrations should fall in the low-range of the initial calibration curve if extremely low levels are expected.
10.3 Continuing Calibration Verifications
10.3.1 Continuingcalibration verifications(CCV) are analyzedto veri@the continued accuracy of the calibration curve.
10.3.2 Analyze a mid-range calibration standard after every tenth sample, with a minimum of one per sample set.
10.4 Internal StandardSurrogate Standard
10.4.1 An internal standard (IS) may be used to quanti@the target analytes by establishing a relationship between the ratio of analyte response to IS response and a known concentration of the analyte of interest. The IS should be spiked at an amount that will fall within the mid-range of the calibration curve. The IS should be added after the extraction process and before analysis.
10.4.2 A surrogate standard may be used for quality control. The surrogate is used to quantitatively evaluate the entire analytical procedure including sample preparation and analysis. The surrogate should be spiked to fill within the low to mid-range of the calibration curve.
11.0 CALIBRATION AND STANDARDIZATION
11.1 Analyze the standard curves prior to and following each set of extracts. The average of two
standard curves may be plotted by linear regression (y = mx + b) weighted l/x, or quadratic
fit (y = ax2+ bx + c) using MassLynx or other suitable software. The calibration curves
should not be forced through zero.
11.2 If the calibration curve does not meet acceptance criteria perform routine maintenance or prepare a new standard curve (if necessary) and reanalyze.
11.3 For purposes of accuracy when quantitating low levels of analyte, it may be necessary to use the low end of the calibration curve rather than the full range. Example: when attempting to quantitate approximately 10 ppb of analyte, generate a calibration curve consisting of the standards from 5 ppb to 100 ppb rather than the fir11 range of the curve (5
ppb to 1000ppb). This will reduce inaccuracy attributed to linear regression weighting of
high concentration standards.
12.0 PROCEDURES
12.1 Acquisition Set up
12.1.1 Set up the sample list.
12.1.1.1 Assign a sample list filename using the first letter of the name of the instrument (T for Tucker), the year (00 for 2000), the month (04 for April), and the day (TO01012 for October 12,2000). If more than one list is made on the same day, use increasing letters of the alphabet starting with A at the end of the list.
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Analysis of Potassium Perfluorooctanesulfonateor Other Fluorochemicals in Waste Stream or Water Extracts
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12.1.1.2 Assign a method (MS) file.
E
12.1.1.3 Assign an HPLC program (Inlet file).
t
12.1.1.4 Type in sample descriptions and vial position numbers.
12.1.2 To create a method, click on method in the Acquisition control panel then mass spectrometer headings and select SIR. Set ionization mode as appropriate and mass to 499 or other appropriate masses. A full scan is usually collected in addition to the SIRS. Save acquisition method. See the Micromass MassLynx GUIDE TO
DATA ACQUISITION for additional information.
12.1.3 Typically the analytical batch run sequence begins and ends with a set of solvent
Standards.
12.1.4 Samples are analyzed with a continuing calibration verification (CCV) injected after every tenth sample. Solvent blanks should be analyzed periodically to monitor for possible analyte carryover.
12.2 Using the Autosampler/Column Heater
12.2.1 Place sample vials into the sample tray according to the sample list prepared in Section 12.1.1.
12.2.2 Attach the proper analytical column in the column heater compartment. If using the switching valve, make sure that the tubing is run to the appropriate ports.
12.3 Using the Inlet Editor
12.1.1 Set-up the H P l l O O using the following conditions or at conditionsthe analyst considers appropriate for optimal response. Record actual conditions in the
instrument logbook:
12.1.1.1 Sample size = 10 pL injection
12.1.1.2 Flow rate = 300 pL/min.
12.1.1.3 Cycle time = 10.0 minutes
12.1.1.4 Mobile phase components:
Solvent A: 2.0 mM Ammonium Acetate
Solvent B: Methanol (MeOH) Solvent Gradient: Time (min.)
0.00
1 .oo
4.50
8.00
8.50
10.0
- Yo B
5.00 Yo 5.00 % 95.0 ?h 95.0 ?h 5.00 !h stop
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Analysis of Potassium Perfluorooctanesulfonateor Other Fluorochemicals in Waste Stream or Water Extracts
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12.4 Instrument Set-up
12.4.1 Refer to the Platform LCZ User's Guide, the MassLynx NT User's Guide or ETS-
1 t
9-36, "Operation and Maintenance of the Micromass Platform LCZ
Electrospray/Mass Spectrometer".
12.4.2 Check the solvent level in reservoirs and refill if necessary.
12.4.3 Check the tip of the stainless steel capillary at the end of the probe with an eyepiece. The tip should be flat with no jagged edges. If the tip is found to be unsatishctory, disassemble the probe and replace the stainless steel capillary.
12.4.4 Turn on the nebulizing gas.
12.4.5 Open the tune page. Click on `Operate' to initiate &e desoivation heaters.
12.4.6 Open the Inlet Editor.
12.4.5.1 Set HPLC pump to "On".
12.4.5.2 Set the solvent flow to the desired flow rate.
12.4.5.3 Observe droplets coming out of the tip of the probe. A fine mist should be
expelled with no nebulizing gas leaking around the tip of the probe.
i
Readjust the tip of the probe if no mist is observed.
12.4.5.4 Allow to equilibrate for at least 10 minutes.
12.4.6 The instrument uses these parameters at the following settings. These settings may change in order to optimize the response:
12.4.6.1 Drying gas 250-425 literdhour 12.4.6.2 ESI nebulizing gas 10-15 literdhow
12.4.6.3 HPLC constant flow mode, flow rate 10 - 500 pUmin 12.4.6.4 Pressure <400 bar (This parameter is not set, it is a guide to ensure the
HPLC is operating correctly.)
12.4.6.5 Source Block temperature 150'.
12.4.6.6 Desolvation temperature 250".
12.4.7 Print the tune page with its parameters, the Inlet page, sample list, mass spec information, and all other applicable information and store it.in the study binder with copies taped into the instrument run logbook.
12.4.7.1 All copies must be initialed and dated.
12.4.8 Click on start button on the MassLynx toolbar. Ensure start and end sample numbers include all samples to be analyzed.
13.0 DATAANALYSA~NSD CALCULATIONS 13.1 Calculations:
13.1.1 Calculate matrix spike percent recoveries using the following equation:
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Analysis of Potassium Perfluorooctanesulfonateor Other Fluorochemicals in Waste Stream or Water Extracts
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% Recovery =
Observed Result - Backmound Result x 100
Expected Result
i i
13.1.2 Calculate percent difference using the following equation:
% Difference = Expected Conc. - Calculated Conc. x 100
Expected Conc.
13.1.3 Calculate actual concentration of analyte in matrix (pg/mL):
On-Column Concentration (pg/mL) x Dilution Factors = Calculated Concentration
14.0 METHODPERFORMANCE
14.1 The Limit of Quantitation (LOQ) is method, analyte, and matrix specific. For many analytes, the LOQ concentration is selected as the lowest acceptable non-zero standard in the calibration curve.
14.2 Solvent and method blank values must be < 'h that of the lowest standard used in the calibration curve.
14.3 The coefficient of determination (rz)value for the calibration curve must be greater than or I equal to 0.980.
14.4 Continuing Calibration Verification (CCV) percent recoveries must be k 30% of the standard concentration.
14.5 Internal Standard recoveries should be within k 50% of the spiked concentration.
14.6 If criteria listed in this method performance section are not met, maintenance may be performed on the system and samples reanalyzed or other actions as determined by the analyst. Document all actions in the raw data.
14.7 If data is to be reported when performancecriteria have not been met, the data must be footnoted on tables and discussed in the text of the report.
15.0 POLLUTION PREVENTION AND WASTE MANAGEMENT
15.1 Sample extract waste and flammable solvent is disposed in high BTU containers, and glass
pipette waste is disposed in broken glass containerslocated in the laboratory.
16.0 RECORDS
16.1 Each page generated for a study must have the following information included either in the header or hand written on the page: study or project number, acquisition method, integration method, sample name, extraction date, dilution factor (if applicable), and analyst.
16.2 Print the tune page, sample list, and acquisition method fiom MassLynx and other applicable information to include in the appropriate study folder. Copy these pages and tape into the instrument runlog.
16.3 Plot the calibration curve then print these graphs and store in the study folder.
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Analysis of Potassium Perfluorooctanesulfonateor Other Fluorochemicalsin Waste Stream or Water Extracts
Using HF'LC-ElectrosprayMass Spectrometry
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16.4 Print data integration summary, integration method, and chromatograms, fiom MassLynx, and store in the study folder.
16.5 Summarize data using suitable software and store in the study folder.
16.6 Back up electronic data to appropriatemedium. Record in study notebook the file name and location of backup electronic data.
17.0 ATTACHMENTS 17.1 None
18.0 REFERENCES
18.1 Platform LCZ User's Guide, Micromass UK Limited, Tudor Road, Altrincham, WA14
5RZ;or Floats Road, Wythenshawe M23 9LZ; United Kingdom.
18.2 MassLynx NT User's Guide, Micromass UK Limited, Tudor Road, Altrincham, WA14 5RZ;or Floats Road, Wythenshawe M23 9LZ; United Kingdom.
18.3 MassLynx NT Guide To Data Acquisition, MicromassUK Limited, Tudor Road, Altrincham, WA14 5RZ;or Floats Road, Wythenshawe M23 9LZ; United Kingdom.
18.4 ETS-9-36.0, "Operation and Maintenance of the Micromass Platform LCZ Electrospray/Mass Sprectrometer".
19.0 AFFECTED DOCUMENTS 19.1 None
20.0 REVISIONS
Revision Number.
Reason For Revision
Revision
Date
ETS-8-155.0
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Analysis of Potassium Perfluorooctanesulfonateor Other Fluorochemicalsin Waste Stream or Water Extracts
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3M ENVIRONMENTALLABORATORY
METHOD
ANALYSIOSF POTASSIUPMERFLUOROOCTANESULFONAOTREOTHER FLUOROCHEMICAINLWS ATEREXTRACTUSSING
HPLC-ELECTROSPRAY~S~PAESCSTROMETRYB~SAPESSCTROMETRY
Method Number: ETS-8-110.0
Author: Kris Hansen, Lisa Clemen
Approved By:
Adoption Date: b9\O'dah
Revision Date:
Group Leader
CLe
Technical Reviewer
c,--
9/8/54
Date
9 (Eky
Date
1.0 SCOPE AND APPLICATION 1.1 Scope: This method describes the analysis of water extracts for fluorochemicals using
HPLC-electrospray/mass spectrometry/mass spectrometry.
1.2 Applicable Compounds: Fluorochemicals or other fluorinated compounds, or other ionizable compounds.
1.3 Matrices: Tap water, ground water, and wastewaters
Word 6/95
ETS-8-110.0 Analysis of Water Extract Using HPLC-ES/MS/MS
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2.0 SUMMARY OF METHOD
, 2.1
*;
This method describes the analysis of fluorochemicals extracted from water, using HPLCelectrospray tandem mass spectrometry (HPLC-ESMSMS). The analysis is performed by following mass selection of a single ion characteristic of a particular fluorochemical, such as the perfluorooctanesulfonate (PFOS) anion, m / ~ 4=99 or perfluorooctanoate (POAA), m/z = 413; a compound specific product ion is created through high-energy collisions, and
+ + creation of the product ion is monitored quantitatively. For example, the transition from
499 80 (characteristic of SO3-) is monitored for PFOS and the 413 119 (characteristic of C2F5-) transition is monitored for POAA. This selectivity afforded by this technique reduces background interferences and enhances analytical sensitivity.
. __
3.0 DEFINITIONS
3.1 Atmospheric Pressure Ionization (API): The Micromass Quattro II triple quadrupole
systems and other commerciallyavailable LCMS and LC/MS/MS systems allow for various methods of ionization by utilizing various sources, probes, and interfaces. These include but are not limited to: Electrospray Ionization (ESI), Atmospheric Pressure chemical Ionization (APcI), Thermospray, etc. The ionization process in these techniques occurs at atmospheric pressure (i.e., not under a vacuum).
3.2 Electrospray Ionization ( E S , ESI): a method of ionization performed at atmospheric
-- pressure, whereby ions in solution are transferred to the gas phase via tiny charged droplets.
__ --Thesecharged droplets are produced-by-tkeapplicatiorrof a strong electrical field. --- -- .
- - --
3.3 Mass Spectrometry, Mass Spectrometer ( M S ) , Tandem Mass Spectrometer( M S / M S ) : The API Quattro I1 triple quadrupole systems and other commerciallymanufactured ES/MS/MS systems that are equipped with quadrupole mass selective detectors. Ions are selectively discriminated by mass to charge ratio ( d z ) and subsequently detected. A single MS may be employed for ion detection or a series (MS/MS) for more specific fiagmentation
information.
3.4 Conventional vs. 2-spray probe interface: The latest models of Micromass Quattro 11 triple quadrupole systems (post 1998) utilize a "Z-spray" conformation. The spray emitted from a probe is orthogonal to the cone aperture. In the conventional conformation it is aimed
directly at the cone aperture, after passing through a tortuous pathway in the counter electrode. Though the configuration is different, the methods of operation, cleaning, and maintenance are the same. However, Z-spray components and conventional components are not compatible with one another, but only with similar systems (ie., Z-spray components are compatible with some other Z-spray systems, etc.). Other commercially manufactured ES/MS/MS systems may have similar features.
3.5 Mass Lynx Software: System s o h a r e designed for the specific operation of the Quattro I1 triple quadrupole systems. Currently MassLynx has Windows 95 and WindowsNT 4.0 versions. All versions are similar. For more details see the manual specific to the instrument (Micromass Quattro I1 triple quadrupole MassLynx or MassLynx PJT User's Guide).
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4.0 WARNINGANSD CAUTIONS 4.1 Health and Safety Warnings:
4.1.1 Use caution with the voltage cables for the probe. When engaged, the probe
t.
employs a voltage of approximately 5000 Volts.
4.1.2 When handling samples or solvents wear appropriate protective gloves, eyewear, and clothing.
4.2 Cautions:
4.2.1 Operate solvent pumps below a back pressure of 400 bar (5800 psi). If the back pressure exceeds 400 bar, the HP1100 will initiate automatic shutdown.
4.2.2 Do not run solvent pumps to dryness.
5.0 INTERFERENCES
5.1 To minimize interferences when analyzing samples, Teflon should not be used for sample storage or any part of instrumentation that comes in contact with the sample or extract.
I
6.0 EOUIPMENT
6.1 Equipment listed below may be modified in order to optimize the system. Document any
modificat_io_ ns in the ra-w_d_at_a as method deviations.
-
^ I _ _ ~
6.1.1 Micromass Quattro I1 triple quadrupole Mass Spectrometer equipped with an electrospray ionization source
6.1.2 HPl 100 low pulse solvent pumping system, solvent degasser, column compartment, and autosampler
7.0 SUPPLIES AND MATERIALS
7.1 Supplies
7.1.1
7.1.2
- High purity grade nitrogen gas regulated to approximately 100psi (House air
system)
High purity grade argon regulated to approximately 6 psi.
7.1.3 HPLC analytical column, such as a Betasil C18 column (SOx2mm, 5 pm particle)
7.1.4 Capped autovials or capped 15 mL centrifuge tubes
8.0 REAGENTS AND STANDARDS 8.1 Reagents
8.1.1 Methanol, HPLC grade or equivalent
8.1.2 Milli-QTMwater (ASTM type I), all water used in this method should be Milli-QTM water or equivalent, and may be provided by a Milli-Q TOC Plus system or other vendor
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8.1.3 Ammonium acetate, reagent grade or equivalent
8.1.3.1 When preparing different amounts than those listed, adjust accordingly.
8.1.3.2
2.0 mM ammonium acetate solution: Weigh approximately 0.300 g ammonium acetate. Pour into a 2000 L volumetric flask containing 2000 mL Milli-Q water, mix until all solids are dissolved. Store at room
temperature.
8.2 Standards
8.2.1 Typically two method (Milli-Q water) blanks, two matrix (tap water) blanks, and eighteen solvent standards are prepared during the extraction procedure.
9.0 SAMPLHEANDLING
9.1 Standards and sample extracts are stored in capped autovials or capped 15mL centrifige tubes until analysis.
9.2 If analysis will be delayed, standards and sample extracts may be refrigerated at approximately 4"C, or at room temperature, until analysis can be performed.
1
10.0 QUALITY CONTROL
10.1 Solvent Blanks, Method Blanks and Matrix Blanks
--
7 U X I - S d v e n t l Z a r i E s , method E i E i X s d - m i t i i i sare prepared aiil ahalyiZd-wiii----
each batch to determine contamination or carryover.
10.1.2 Analyze a method blank and a matrix blank prior to each calibration curve.
10.2 Matrix Spikes
10.2.1 Matrix spikes are prepared for each sample and analyzed to determine the matrix effect on the recovery efficiency.
- 10.2.2 Matrix spike duplicates are prepared periodically to measure the precision associated with the analysis.
10.2.3 Analyze a matrix spike and matrix spike duplicate (if prepared) in the same run as the original sample.
10.2.4 Matrix spike and matrix spike duplicate concentrations should fall in the mid-range of the initial calibration curve or should be prepared at 1.5-5 times the endogenous concentration of the analyte. Spike concentrations should fall in the low-range of the initial calibration curve, if extremely low-levels are expected
10.3 Continuing Calibration Verifications
10.3.1 Continuing calibration verifications are analyzed to verify the continued accuracy of the calibration curve.
10.3.2 Analyze a mid-range calibration standard after every tenth sample, with a minimum of one per batch.
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11.0 CALIBRATION AND STANDARDIZATION
11.1 Analyze the standards prior to and following each set of extracts. The average of two
standard curves will be plotted by linear regression (y = my + b), weighted l/x, not forced
t:
through zero, using MassLynx or other suitable s o h a r e .
11.2 If the curve does not meet requirements perform routine maintenance or prepare a new standard curve (if necessary) and reanalyze.
11.3 For purposes of accuracy when quantitating low levels of analyte, it may be necessary to use the low end of the calibration curve rather than the full range of the standard curve. Example: when attempting to quantitate approximately 10 ppb of analyte, generate a calibration curve consisting of the standards from 5 ppb to 100 ppb rather than the full range of the curve (5 ppb to 1000 ppb). This will reduce inaccuracy attributed to linear
regression weighting of high concentration standards.
12.0 PROCEDURES 12.1 Acquisition Set up
12.1.1 Set up the sample list.
12.1.1.1 Assign a sample list filename using MO-DAY-last two digits of year-
increasing letter of the alphabet starting with A
-
12.1.1.2 Assign a method ( M S )--f-i-le - -__------
-__
- - - - _.__-
-
12.1.1.3 Assign an I@LC program (Inlet file)
12.1.1.4 Type in sample descriptions and vial position numbers
12.1.2
To create a method click on method in the Acquisition control panel then mass spectrometer headings and select SIR (Single Ion Recording) or MRM (Multiple Reaction Monitoring). Set Ionization Mode as appropriate and mass to 499 or other
appropriate masses. A full scan is usually collected along with the SIRS. Save acquisition method. If MSMS instruments are employed, additional product ion fragmentation information may be collected. See Micromass MassLynx GUIDE
TO DATA ACQUISITION for additional information and MRM.
12.1.3 Typically the-analytical batch run sequence begins and ends with a set of solvent
standards.
12.1.4 Samples are analyzed with a continuing calibration check injected after every tenth sample. Solvent blanks should be analyzed periodically to monitor possible analyte carryover and are not considered samples but may be included as such.
12.2 Using the Autosampler
12.2.1 Set up sample tray according to the sample list prepared in Section 12.1.1.
12.2.2 Set-up the HP1 lOO/autosampler at the following conditions or at conditions the analyst considers appropriate for optimal response. Record actual conditions in the instrument logbook:
12.2.2.1 Sample size = 10 pL injection
12.2.2.2 Inject/sample = 1
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12.2.2.3 Cycle time = 9.0 minutes
12.2.2.4 Solvent ramp =
4
Time
MeOH
2.0 mM
Ammonium acetate
0.00 min.
40%
60%
1.OO min.
40%
60%
4.50 min.
95%
5%
6.50 min.
95%
5%
7.00 min.
40%
60%
9.00 min.
40%
60?4
12.2.2.5 Press the "Start" button.
12.3 Instrument Set-up
12.3.1 Refer to ETS-9-24, "Operation and Maintenance of the Micromass Quattro I1 Triple Quadrupole Mass Spectrometer Fitted with an AtmosphericPressure Ionization Source," for more details.
12.3.2 Check the solvent level in reservoirs and refill if necessary.
12.3.3 Check the stainless steel capillary at the end of the probe. Use an eyepiece to check -- tuhnestaipt.isfTah~eotripy,s-h~oiusladsbseemfla~tew-tithhpnrooajbangeT-gfeid1Sedcgeetsh.eIsfttahienlteipssisXfeo1ucnadptiollabrey. - --
12.3.4 Turn on the nitrogen
12.3.5 Open the tune page. Click on operate to initiate source block and desolvation heaters.
12.3.6 Open the Inlet Editor.
12.3.6.1 Set HPLC pump to "On". 12.3.6.2 Set the flow to 10 - 500 uWmin or as appropriate. 12.3.6.3 Observe droplets coming out of the tip of the probe. A fine m i s t should be
expelled with no nitrogen leaking around the tip of the probe. Readjust
the tip of the probe if no mist is observed. 12.3.6.4 Allow to equilibrate for approximately 10 minutes.
12.3.7 The instrument uses these parameters at the following settings. These settings may change in order to optimize the response:
12.3.7.1 Drying gas 250-400 litershour 12.3.7.2 ESI nebulizing gas 10-15 litershour 12.3.7.3 HPLC constant flow mode, flow rate 10 - 500 pL/min 12.3.7.4 Pressure <400 bar (This parameter is not set, it is a guide to ensure the
HPLC is operating correctly.)
12.3.7.5 Source Block temperature 150"
12.3.7.6 Desolvation temperature 250"
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12.3.8 Print the tune page, with its parameters, and store it in the study binder with a COPY taped into the instrument log.
12.3.9 Using the cross-flow counter electrode in the ESMS source is recommended for
a:
the analysis of biological matrices.
12.3.10Click on start button in the Acquisition Control Panel (this may vary among
MassLynx versions, see appropriate MassLynx USER'S GUIDE). Ensure start and
end sample number includes all samples to be analyzed.
13.0 DATAANALYSIASND CALCULATIONS
13.1 Calculations:
13.1.4 Calculate matrix spike percent recoveries using the following equation:
% Recovery =
Observed Result - Backmound Result x 100
Expected Result
13.1.5 Calculate percent difference using the following equation:
% Difference = Exuected Conc. - Calculated Conc. x 100
Expected Conc.
13.1.6 Calculate actual concentration of PFOS, or other fluorochemical, in matrix
__
(C__l_d_m- L)-: - ~
I____
-
- - ._. - __
[ng of PFOS calc. from std. Curve x 0.8 Dilution Factor)
[Initial Volume of matrix (mL) + mL of Surrogate Standard)
Final Volume (mL)
x 1000 ng
14.0 METHODPERFORMANCE 14.1 Method Detection Limit (MDL) and Limit of Quantitation (LOQ) are method, analyte, and
matrix specific. Please see applicable extraction method for a listing of current MDL and LOQ values. 14.2 Solvent Blanks, MetJhod Blanks, and Matrix Blanks
14.2.1 Solvent blanks, method blanks, and calibration blanks values must be below the lowest standard in the calibration curve
14.3 Calibration Curves
14.3.1 The i!value for the calibration curve must be 0.980 or better.
14.4 Matrix Spikes
14.4.1 Matrix spike percent recoveries must be within k 30% of the spiked concentration.
14.5 Continuing Calibration Verifications
14.5.1 Continuing calibration verification percent recoveries must be k 30% of the spiked concentration.
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14.6 If criteria listed in this method performance section is not met, maintenance may be performed on the system and samples reanalyzed or other actions as determined by the analyst. Document all actions in the appropriate logbook.
`. 14.7 If data are to be reported when performance criteria have not been met, the data must be footnoted on tables and discussed in the text of the report.
15.0 POLLUTION PREVENTION AND WASTE MANAGEMENT 15.1 Sample extract waste and flammable solvent is disposed in high BTU containers, and glass
pipette waste is disposed in broken glass containers located in the laboratory.
16.0 RECORDS 16.1 Each page generated for a study must have the following information included either in the
header or hand written on the page: study or project number, acquisition method, integration method, sample name, extraction date, dilution factor (if applicable), and analyst. 16.2 Print the tune page, sample list, and acquisition method from MassLynx to include in the appropriate study folder. Copy these pages and tape into the instrument runlog. 16.3 Plot the calibration curve by linear regression, weighted l/x, then print these graphs and store in the study folder. --______164- Printdataintegration summary,-htegratiormethod,mdchromatograms,from MassLyx, ----- -- and store in the study folder. 16.5 Summarize data using suitable software (Excel 7.0) and store in the study folder,
16.6 Back up electronic data to appropriate medium. Record in study notebook the file name and location of backup electronic data.
17.0 TABLESD,IAGRAMFS,LOWCHARATNSD, VALIDATIONDATA 17.1 None
18.0 REFERENCES 18.1 ETS-9-24.0,"Operation and Maintenance of the Micromass Atmospheric Pressure
Ionizationbfass SpectrometerQuattro I1 Triple Quadrupole Systems"
19.0 AFFECTEDOCUMENTS None
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20.0 REVISIONS
i Revision
' Number.
Reason For Revision
Revision
- Date
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Appendix C: Sample Preparation Sheets
This appendix includes log sheets from the sample preparation portion of the method.
"Suitable Analytical" "Suitable Container" "Optimal Ratio" "Optimal RatioMass Balance" "Desorption Solvent" "Adsorption Kinetics" "Desorption Kinetics, Serial Method" "Adsorption Isotherms, Multiple Concentrations" "Desorption Isotherms, Multiple Concentrations"
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Suitable Analytical
ETS-8-159 Section 12.2
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Test Substance: PFOS
i
i
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Suitable Analytical
1
ETS-8-159 Section 12.2
Test Substance: PFOS
I '
i
I
1
E00-1311-0016
I E00-1311-0018
I E00-1311-0019 E00-1311-0020
I E00-1311-0022
E00-1311-0023
E00-1311-0025
II E00-1311-0027 E00-1311-0028 E00-1311-0029
II E00-1311-0031 E00-1311-0032 E00-1311-0033
E00-1311-0001 I
E00-1311-0001
E00-1311-0001 I
-00-1311-0002 I
I E00-1311-0035 1 -00-1311-0002
E00-1311-0036 -00-131 1-0002 ,
-00-1311-0003
E00-1311-0038
I E00-1311-0041
I E00-1311-0042 E00-1311-0043 E00-1311-0044
E00-1311-0046
-00-1311-0003
I -00-1311-0003 1
100-1311-0004
1 I ZOO-1311-0004
I 100-1311-0004 I I -00-1311-0005
I -00-1311-0005
E00-1311-0005
ZOO-1311-0006 I
100-1311-0006 I
EOO-1311-0006 I
1 -
T I ! !I1
1
r'III 1
,W lI l l
Y
2
iv
Y
1
X I I I It
PI I I II
PI I I II /rIIlII 1 1.11 I I I
rIIIII
V I I I II tIIIII I
5t=1 5t.1
5t=2
I1S T = l
5t=1
ST= 1
5t=1 5t.1 5t=1
IST=l
1
ST=l
5t=1 5t=2 5t=2 5t=2 5t=2 5t=2
5t=2
-
d
LPu
x>
5t=3
3M Environmental Laboratory
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3M Environmental Laboratory
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Suitable Container
ETS-8-159 Section 12.3
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Test Substance:
3
2
3M Environmental Laboratory
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Optimal Ratio
ETS-8-159 Section 12.5
5 -
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TFOS
Test Substance
Optimal Ratio
ETS-8-158 Section 12.5
BACK TO MAIN
Test Substance
Optimal Ratio
ETS-8-159 Section 12.5
BACK TO MAIN
Test Substance
Optimal Ratio
BACK TO MAIN
GLP Study Number:
3M Environmental Laboratory
Page 159 of 703
Optimal Ratio
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3M Environmental Laboratory
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Optimal Ratio
ETS-8-156 Section 12.5
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If=s Test Substance
GLP Study Number: E00-1311
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3M Environmental Laboratory
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Optimal RatidMass Balance
ETS-8-159 Section 12.5 (ant.)
BACK TO MAIN P F 0 . S Test Substance:
GLP Study N u m b e r
--'311
3M Environmental Laboratory
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DesorDtion Solvent
ETS-E-159 Section 12.4
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Test Substance
GLP Study Number
3M Environmental Laboratory
Page 164 of 703
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ETS-ElM)
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Test Substance:PFOS
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Test Substance:PFOS
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2012
Adsorption Isotherms.Multiple Concentrations
ETS-8-160
BACK TO MAIN
Test Substance:PFOS
*-..
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0
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ETS-5160
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Test Substance: PFOS
*-..
4/6 Col9 BalanceID
C o l i 1 Inc ID A
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p ~ ; ~ s ~ ; ; ~ a a~mo- i
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1- Col9 BalanceID - c Col10 0.01 M CaC12 soln ID #pool W - @
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4 of 12
AdsorptionIsotherms, MultipleConcentrations
ETS-8-160
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Test Substance: PFOS
*%.
q/(O Col 9 BalanceID Time/Date/lnitials
/ O w I I20 141 (&., c
Col 10 0.01 M CaC12 soln ID # o m ! -.7cr-/t
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5 of 12
Adsorption Isotherms. Multiple Concentrations
ETS-8-160
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Test Substance: PFOS
&!; Col 9 Balance ID
Time/Date/lnitials
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1-.W-l .
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1 EquilStart T i D 1~ I ~ a ; I L h I Q L c1m
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SS' da TimelDate/lnitiald:3b!~a
I o / c*tC
Col12 Test Subst.ID #pinh I- b 3 - O 7
Test Substance conc.:-500ug/rnl T i m e l D a t e / l n i t i a l s S ! 4 ~ ~ r 3113-10-
Co113 I n c I w
Co116 T/Dlllo:3.47n d / i S / b I UJIC
Equil S~tarl TlD/lg!'i5&n 2 ~/&I-
Col 17 T/Dn -&/=UV\C
%?? EquilStop TIDII
& J d l w L Col18 Spike soh ID#-
Col14 BalanceID
Test Substance conc.:+w\
TirnelDate4nitials q:aSL& I ~ I T~imelDatCe/lnitials '
'3- 14 7
l&?d01 m c
a n t e r n a t Standard-DI
Col15 T/Dn q:as-Al/5-i 01 cm t lntemalSTDmnc.&'pa
-01
13:SA Ad&&--
GLP Study Number: EM-1311
60f12
Adsorption Isotherms. Multiple Concentrations
ETS-8-160
BACK TO MAIN
Test Substance: PFOS
+-...
m
0
b
a,
cm n
a
GLP Study Number:00-1311
7of12
Adsorption Isotherms, Multiple Concentrations
ETS4-160
BACK TO MAIN
Test Substance: PFOS
,.-.
c3
0
b
Co19 BalancelD qlL(
TimeIDatellnitials Il!%l
Colll l n c I D 3 - / 2
/3t I O I t m c EquilStart T/D/l&!.'/L+
b I&lnLyr\
A/@ Col10 0.01 M CaC12 soh ID#pooOl -.My-/> EquilStop TID/17!cO&
/&Iwc
Tirne/Date/lnitial$ tDpm
pH of Test Soh. 5;
lo/ C bc CollZ TestSubst.ID#olOD1- 03-07
TirneIDatellnitiald: 33pd I (2101 clhc
Test Substanceconc.:-500ug/ml TimeIDatellnitials~ ! ~ , S , & l & I O ) C
GLP Study Number:E00-1311
80f12
Adsorption Isotherms, Multiple Concentrations
1
ETSS160
BACK TO MAIN
Test Substance: PFOS +'-
GLP Study N u m b e r : E00-1311
90f12
Adsorption Isotherms,Multiple Concentrations
BACK TO MAIN
,-
ETS-8-160
Test Substance: PFOS
c-.
m
0
a,
a0m)
GLP Study Number: E00-1311
10of 12
Adsorption Isotherms. MultipleConcentrations
',
ETS-8-160
BACK TO MAIN
Test Substance: PFOS m 0
h
GLP Study Number: EOO-1311
1 1 of 12
Adsorption Isotherms, Multiple Concentrations
ETS-8-160
BACK TO MAIN
Test Substance: PFOS
GLP Study Number: EW-1311
12 of 12
Desorption Isotherms. Multiple Concentrations
ETS-8-160
BACK TO MAIN
Test Substance: -5
1 of6
BACK TO MAIN
----
[e 7 ha
Tr,
EE ea i e pe a jo CRETE
HI
i
[Sle
= es i HHH
gL
ERT
il e ERSe EE RA aH ie --ee)
a ------
iB io Ei rasp e
Hi mnie fe
a
i- Lif
ok mor e h [aL ]fellsf
i
i
i
Hae
E E mm EiE nhi n lFEET
Ly =
3i
Ei Fo
Teees wringer.
SET Tt.
o) Shasta aris
BB aurive
on Tar"
CEH Ea
RE Bdom
Desorption Isotherms. Multiple concentrations
ETS4-160
BACK TO MAIN
Test Substance: ?FO\
Col8T/D/l7!3oAm
2 I / ' ? 101 a*c Col14 InternalStan'dardl D # o i ~ lQ- s - O l Col 19 Centrifuge R Transfer
a a3 Col23 Centrifuge 8 Transfer T/D/I~~.zo~~
IO\ M
.I
3of6
Desorption Isotherms. Multiple Concentrations
ETS-8-160
BACK TO MAIN
Test >h> substance:
Col8 l/O/I&z~em
d / / 4 /Of&C
Col13 l/!JllG
Col 14 Internal Standard ID#pi001-a~-01 Col 19 Centrifuge 8 Transfer
C o l 2 3 Centrifuge& Transfer
T/DIlfi'.30*
2 /&luc
DesorptionIsotherms. MultipleConcentrations
ETS-8-160
BACK TO MAIN
Test E Substance' 0 5
GLP StudyNumber: E o a- 1 31 /
&-- e
'1
'
Col23 Centrifuge& Transfer
50f6
Desorption Isotherms, Multiple Concentrations
ETSB-160
BACK TO MAIN
Test Substance:PfO5
+t------
- i
6of6
BACK TO MAIN
Appendix D: Individual Sample Data
This appendix includes processed individual sample data from the present study.
Tier I:
"Suitable Analytical Work" "Suitable Container" "Optimal Soil: Solution Ratios" "Adsorption Kinetics, One Concentration" "Mass Balance Calculations" "Suitable Desorb Solvent" Tier 11: "Tier 11: "Adsorption Kinetics, One Concentration" Tier 111: "Tier 111: "Desorption Kinetics, One Concentration" "Tier 111: "AdsorptionAlesorptionIsotherms" "Tier I11 "Mass Balance Calculations"
3M Environmental Laboratory
Page 191 of 703
BACK TO MAIN
Study E001311
Sunable Analylical
PFOS AdsorbIDesorb
9s.
Tier I "Suitable AnalvticalWork"
0'3 TheoretlcaiTest Measured Observed Solution % RSDof Recoveries
Orlglnal Matrix
Substance
Dilution Concentratlon,uglL Concentratlon,uglL
Average (Avergedover entire
2 3
Sample File Name
Sample Description
Solution
Concentratlon,ugA Factor (frominstrument) [measuredx dilutlonfactor) Recovely,% Recovery, %
soil type)
mioizsowo
101: EW-13114016
EW-1311MxH
0
10
40.0
4w
NIA
? 1010125-041
l o x EO0-131l-Wl7
EW-1311MxIz
0
10
40.0
-4w
NIA
1010125-042
lox E00-1311-0018
EW-lJll-WO3
0
10
<40.0
~400
NIA
1010125-043
lox EW-1311-0019
EW-l31lMI(U
0
10
<40.0
c4w
WA
1010125-044
lox E00-1311CQ20
EW-1311MKIS
0
10
<40.0
4w
NIA
miom(y8
lox EW-131l-CQ21
EW-1311-WOS
0
10
e40.0
<400
NIA
m10i2s-w9
lox EW-13114022
ECU1311MX17
0
10
40.0
c4w
NIA
Canlml Blanks
H110125-OM mioizs_o5i
. lox EW-13ll-W23 lOxE@C-l3lldM4
EW1311-0008 EW-1311Mx)o
0
10
0
10
c40.0 <40.0
<4m
NIA
4W
NIA
lalO125-052
lox EW-1311-CQ25
EW-1311CQlO
0
10
c40.0
<4w
NIA
mioizs-056
lox EW-lJll-WZ8
EW-1311-Wll
0
10
40.0
<400
NIA
mioizs-057
1Ox EW-1311-W27
EWlIll-0012
0
10
40.0
4400
NIA
mio125-osa
lox Em13110028
EW-1311-0013
0
10
c40.0
<400
NIA
1010125-059
i o x ~00-13ii-w29
EW-1311-Wl4
0
10
<40.0
c40a
NIA
mioi2s-OBO
101 EW-131l-W30
E00-1311-0015
0
10
<40.0
r400
NIA
10101250W4
lOIEW-131lMIJl
EDI).lJll4001
5000
10
615.66
61566
123.1
mroins-ces
lOlOl25-E4
lox EW-13114032 1Ox E00-1311Mn3
E00-1311-W01 EW-1311MIOl
5wo
10
swo
10
534.11 623.15
5341.1 8231.5
106 8 124.6
1010125-067
1Ox EW-l311-W34
E00-1311-W02
5WO
10
511.02
51102
102.2
mioizs-ffi8
lox EW-1311-W35
E00-13ll-W02
SOW
10
599.06
5990.8
119.8
115.2 Bsmes LoomSam Loam
1010125-072
lox EW-13114036
EW-1311MX12
5004
10
539.37
5393.7
107.9
1010125-073
lox EW-1311M137
EW-1311-0333
5000
10
602.7
6027.0
120.5
72
(010125-074
10xEW-Wl4038
EOO-lJll-WDJ
5000
10
543.28
5432 8
108.7
1010125_075
10xEW.13114039
EW-l311-W03
SOW
10
615.46
61548
123.1
lO10125-078
lox EW-1311-0040
~oai~iid~w
5oM)
10
566.96
5669.8
1134
1010125-080
lox E00-1311-OLl41
EW-1311MX14
5000
10
561.3
56130
112.3
1010125-081
10xE00-1311-OW2
EW-13114CC4
5033
10
582.06
5820.6
116.4
010125-082
lox EW-1311-W43
EW-1311-W05
5000
10
560.81
5608.1
112.2
mioi25-083
10xEW-1311M144
EOQ1311-WOS
SOW
10
629.91
8299.1
126 0
115.2 clay Loam(Carl Bmann)
lolOl25-084
10xEW-l3ll-W45
EW-1311W05
5WO
10
548.47
5484.7
1W.7
m i 01zs-oss
lox EMI-1311m46
EW-1311MMg
Hx)O
10
570.84
5708.4
114.2
4.1
lOlO125-089
lox EW-13114047
EW-1311.WOB
5wo
10
814.54
8145.4
122 9
miom-ow
lOxEW-13ll-CQ48
EW-13114006
5000
10
549.94
5499 4
1100
Page 1 of 2
BACK TO MAIN
Study E001311
Suitable Analytical
PFOS Adsorb/Desorb
Sample FHe Name
Sample Descrlptlon
lOlOl25-091 1010125-092 miorzs-096 1010125~097 mioiz5-ose mioiz5-ow 1010125~lW 1010125-104 1010125-105 1010125-108 KHO17.5-107 1010125~108 1010125~112 mioi25-1i3
mioins-iir
1010125-115 ~10125~118 1010125~120
miaizs-izi
1010125-122 1010125~123 1010125-124 1010125~128 1010125-129 l010125~130 mt0125-131 miom-132
1OxEW-1311.0348 1oX EW-13114050 1oX EW-1311-W51 lox E00-1311-W52 10%EW-1311-W53 1oX EW-1311-0054 101:EW-13110055 lox E00-13ll-W53
IlOx EW-131lM158 lox EW-1311-W59 10%E00-1311-Mx10 lDxEW-13I1M)Gl 1OxEW-13114052 1Ox EW-1311-Mx13 lox E00-1311-0064 lox EW-1311-0065 10xEO~13114066 irn~ o a i ~ i i - 0 0 6 7 10xE00-1311-0068 lox EOC-1311-WS9 lox ~00-i3ii.w70 irn~oai31i-oo7i lox E00-131l-W72 lox ~oai3ii-0073 lox EW-1311-W74 lox EW-13ll-W75
Orlglnal Matrlx Solution
EW-1311-WO7 EW13114007 EW-1311-WO7 EW.lIll-MM8 EODI~~I-WOI EW-1311-WO8 E001311M109 E00.1311MX)O EW-1311-MH19 EW-13114010 E0013114010 EW1311-WlO EW-1311-Wll EW-1311-W11 EW-1311-Wl1 EW-1311-Wl2 EW-1311-Wl2 EW-13114012 EW-1311-Wl3 EW-lJllM113 EW-1311-Wl3 E00-13114014 EW-13114014 EW-13114014 EW-1311-WI5 EW-13114015 EW1311-Wl5
Theoretical Test Substance
Concentratlon, ugR
5030
MM)
5wO 5wo 5wil 5WO 5WO 5MM 5wo
MW 5wa 5wo 5wo 5000 5wo
swo
50W 5wa 5wo 5wo 5wo 5WO 5wo 5wo 5wo 5m 5MM
Measured
Observed Solution
Dilution Concentration,ugR Concentration,ugn
Average
Factor (from instrument) (measuredx dilutionfactor) Recovery,% Recovery,%
% RSD of Recoveries (Avergedover entire
roll type)
10
635.II
10
539.81
10
402.35
10
417.47
10
359.31
10
360.97
10
609.1
10
603.9
10
540.32
10
680.88
10
543.97
10
617.2
10
549.02
10
605.04
10
529.29
10
613.74
10
535.27
io
547.43
10
326.1
10
457.52
10
586.47
10
412.39
10
473.07
10
399.6
10
428.08
10
471.39
10
418.75
6357.7
127.2
5388.1
108 0
4023.5
m15
4174.7
83.5
3593.1
71.9
99.8 Clay
3809.7
762
6091.0
121 8
21
6039.0
120.8
5403.2
108.1
BBo8.8
136.2
5439.7
108.8
6172.0
123.4
5490.2
109.8
6050.4
121 0
116.0 Sediment
5292.9
105.9
0137.4
122.7
8.
5352.7
107.1
5474.3
109.5
3261.0
65.2
4575.2
91.5
5864.7
117.3
4125.9
82.5
4730.7
94.6
88.3 Sludge
3996.0
79.9
4280.8
85 6
15'
4713.9
94.3
4187.5
83 8
2
W w
Page 2 of2
BACK TO MAIN
Study EW-1311
Suitable Container
Tier I "SuitableContainer"
Theoretical Test
sOO120-036
EW-1311-1W2 Ohr
none
0
2
sW120-037
EW-1311-1003 Ohr
IlOI-lS
0
2
s00120-038
E00-131I d 0 0 4 Ohr
none
100
2
~00120-039
EW-1311-1W5 Ohr
none
100
2
~00120-043
EW-1311-1W6 Ohr
none
100
2
cW120-044
E00-1311-1007Chi
none
IO00
2
sW120_045
EW-1311-1WB Ohr
none
1WO
2
~001201046
EW-1311-1W9 Ohr
none
loo0
2
~ 0 0 1 2 0047
EW-1311-101024hour, OmglL. S I , C-1
POC~OPY~ne
0
2
~00120~051
EW-1311-101124 hour, OmglL. SI. C-1
Polypropylene
0
2
~00120-052
EW-1311-101224hr. OmglL. S I , C-1
Polypropylene
0
2
~00120-054
EW-1311-101324hour,0 10mglL. SI. C-1
Polypropylene
100
2
~00120-055
EOO-1311-101424 hwr. 0 10mglL. SI. C-I
Polypropylene
IW
2
sW120-059
EW-1311-101524hour,O.lOmglL, S I , C-1
Polypropylene
1w
2
sW120-061
EW-1311-101624hour. l.0mgA. S1, C-I
Polypropylene
1WO
2
s00120_062
EW-1311-101724hour. l.0mglL. SI. C-I
Polypropylene
1WO
2
sW120 063
EW-1311-101824hour, l.OmgR, S l . C-I
Polypropylene
1WO
2
~00120-068
EW-1311-101024hour, Om@, 52. C-I
Polypropylene
NIA
2
~00120-069
EW-1311-1011 24 hour, OmglL. S2. C-I
Polypropylene
NIA
2
~00120-070
EW-1311-101224 hour, Oman,S2. C-I
Polypropylene
NIA
2
~00120-075
EW-1311-101324hour, O.lOmglL, S2. C-I
Polypropylene
NIA
2
~00120~076
EOO-1311-101424 hour. O.lOmglL, S2.C-I
Polypropylene
NIA
2
~00120-077
EW-1311-101524hour, O.lOmglL, S2, C-I
Polypropylene
NIA
2
~00120-079
EW-1311-101624h w r , 1 Om@. 52, C-1
Polypropylene
NIA
2
sW120-083
E00-1311-101724 hour, 1.OmglL. 52. C-I
Polypropylene
NIA
2
so0120 084
E00-1311-101824 hour, l.OmglL, S2. C-I
Polypropylene
NIA
2
~00120-103
EW-1311-101924hour. 0mglL.SI. C-2
Polystyrene
0
2
~00120-104
E00-1311-102024hour.OmgN, S1. C-2
Polystyrene
0
2
~00120-105
EW-1311-102124hour. OmglL, S1, C-2
Polystyrene
0
2
~00120~110
EW-1311-1022 24 hour, 0 IOmUL, S1. C-2
Polystyrene
100
2
sW120~111
EW-1311-102324hour. 0.lOmglL. S1. C-2
Polystyrene
100
2
~00120~112
E00-1311-102424 hour, O.lOmg/L. S I , C-2
Polystyrene
100
2
~00120-114
EM)-1311-102524hour. l.Omg/L. S I . C-2
Polystyrene
low
2
~ 0 0 1 2 0 ~ 1 1 8 E00-1311-102624 hour, 1 GmgR. S1, C-2
Polystyrene
1000
2
~ 0 0 1 2 0119
EW-1311-102724hour. l.GmgR, S1, C-2
Polyst rene
sOQl22a-035
EW-1311-101924hour, OmgIL, 52. C-2
Polystyrene
NIA
2
sOO122a-036
EW-1311-1020 24 hour, OmglL. 52. C-2
Polystyrene
NIA
2
sOO122a-037
EW-1311-1021 24 hour. OmglL. S2. C-2
Polystyrene
NIA
2
sW122a-042
EW-1311-102224hour, O.lOmg/L. S2. C-2
Polystyrene
NIA
2
soO122a-043
EW-1311-1023 24 hour, 0.lDmglL. SZ. C-2
Polystyrene
NIA
2
sOO122a-044
EW-1311-1024 24 hour, 0 10mglL. S2. C-2
Polystyrene
NIA
2
soO122a-046
EOO-1311-102524hour, I.OmgR, S2. C-2
Polystyrene
NIA
2
sW122a-050
EW-1311-1026 24 hour, l.0mglL. S2. C-2
Polystyrene
NIA
2
s00122a 051
EW-1311-102724hour, l.Omg/L. S2. C-2
Polystyrene
NIA
2
<24 75 <24 75 <24 75 c24 75 s24 75 486 97
523 02 544 09 25 86
c24.75 C24.75 44.75 c24.75 424.75 462.08 475.12 505.67 r24.75 c24.75 <24.75 c24 75 c24.75 <24 75 11087 118.37 137.3 <24.75 c24.75 <24.75 <24.75 c24.75 c24.75 457.51 475 62 484.59
44.75 <24.75 c24.75 c24.75 ~24.75 g24.75 71.39 99.23 88.02
Observed Solution
Concentration, ug/L (measured x dilution
factor)
<49 5 c49 5 4 95
496
c49 5 4 95 973 94
.. 10.4.6M1088 18 Point thrown out 4 95 <49 5 <49.5 49.5 c49.5 924.16 950 24 1011.34 4 95 <49.5 49.5 c49 5 49.5 <49 5 221.74 236.14 274.6 <49.5 <49.5 <49.5 49.5 <49.5 c49.5 915.02 951.24 969.18
<49.5 c49.5
4 95
4 95 49.5 49.5 142.78 198.46 176.04
ReCOVeN. %
c49 5% <49 5% c49 5% 97 394 1MR M 108 818
49.5% <49.5% <49.5% 92.416 95.024 101.134-
NIA NIA NIA NIA NIA NIA NIA NIA NIA
4 9 5% -=49.5% c49 5% 91.502 95.124 96.918
NIA NIA NIA WA NIA NIA NIA NIA NIA
extractions. ua/L
96.19 244.:
94 51 172 1
Pagelof2
al
BP)
BACK TO MAIN
Study EMF1311
Suilable Container
PFOS AdsorbiDesorb
*-..
m
0
b
TheoreticalTest
Measured
Observed Solution
Substance
Concentration, Concentration, ugN
Average
Average
Sample Data
Centrifute Concentration, Dilution ug/L (from
(measuredx dilution
Recovery, Concentrationof
a,
I I I I 1 1 I 1 rn Sample Description
TubeType
UglL
Factor
Instrument)
factor)
Recovery. X
W
extractions, uglL
am SW120-122
EW-1311102924how.Omgll. S1.C-3
glass glass
0
2
29 19
0
c24 75
58 38 <49 5
sw120-126
EW-1311-103024 hour, OmglL. S I . C-3
glass
0
c24 75
4 95
SW120-128
ECC-1311-1031 24 hour, 0.lOmglL. SI. C-3
glass
100
<24 75
c49 5
4 9 5%
sW120-129
EW-1311-1032 24 hour, O.lOmg/L. SI, C-3
glass
1W
<24 75
4 95
c49 5%
500120-130
E001311-103324hour, 0 1Omgil.. SI. C 3
glass
1W
Q4 75
<49 5
4 9 5%
~00120~135
EW-1311103424hour, l.Om@L. S1. C 3
glass
1CCU
465 89
931 78
93 178
sw120-136 ~00120137
EW-1311-103524hour, l.Omgll, SI, C-3 EW-1311-103624hour. l.OmglL, Sl.C-3
glass glass
IWO
Im
490 88 494 39
981 76 308 78
98 176 98 878
96 74
03-1311-102824 hour, OmglL, S2,C-3
glass
NIA
<24 75
4 95
NIA
EW-1311-1029 24 hour. OmglL, S2. C-3
glass
NIA
c24 75
c49 5
NIA
sW122a-058
EW-1311-103024hour, Om&. S2. C 3
glass
NIA
c24 75
<49 5
NIA
001311-103124hour, O.lOm@L SZ.C-3
glass
NIA
4 4 75
c49 5
NIA
sOO122a-061
001311-1032 24 hour, 0.lOmglL. SZ,C-3
glass
NIA
e24 75
4 95
NIA
sW122a-062
03-1311-103324 hour, 0.lOmgll. SZ, C 3
glass
NIA
C24 75
c49 5
NIA
E00-1311-103424 hour, 1.OmglL. S2,C-3
glass
NIA
261 99
523 90
NIA
sLU3122a~068
EM)-1311-1035 24 hour. 1 OmgIL. S2,C-3
glass
NIA
2
201 55
. - sW122a-069
EW-1311-103624hour 1 OmglL S2 C 3
glass
NIA
2
133 08
sW120 142
00-1311-103724hour Omok S I C-4
Teflon
0
2
442 75
~00120~143
00-1311-103824 hour, Omg/L. S I , C-4
Teflon
0
2
28.04
sW120-144
E001311-103924 hour, OmglL, S I . C-4
Teflon
0
2
c24.75
403 1
N/A
266 16
NIA
885 5
56.08
449 5
397 75
~00120~148
EW-1311-104024hour, O.lOmglL, SI,C 4
Teflon
1W
2
c24.75
c49.5
49.5%
sW120-150
EW-1311-104124hour, O.lOmg/L,S I . C 4
Teflon
1W
2
<24.75
019 5
e49 5%
~00120~151 ~00120-153
EW-1311104224hour, O.lOm&, S1, C-4 E00-1311-104324 hour, 1 OmglL. SI. C-4
Teflon Teflon
100 1000
2
C24.75
2
417.07
<49.5 835 74
C49.5%
,
83 574
~00120-154 s00120~158
EW-1311-104424 hour, I.OmglL, SI. C-4 EW-1311-104524 hour, 1 OmglL. SI. C-4
Teflon Teflon
1000 1000
2
455 03
2
469.4
910 06 938 6
91 w6 93 88
89.49
sOO122a-074
EW-1311-1037 24 hour, OmglL. 52.C-4
Teflon
NIA
2
c24.75
<49.5
NIA
sW122a-075
E00-1311-103824hour, Omg/L. 52. C 4
Teflon
NIA
2
C24 75
c49 5
NIA
sOO122a-076
EW-1311-103924hour, O m g L S2. C-4
T8flMl
NIA
2
c24.75
c49.5
NIA
sW122a-078
EOO-1311-104024hour, 0.lOmglL. S2. C 4
Teflon
NIA
2
c24.75
e49.5
NIA
sW122a-082
EW-1311-1041 24 hour. O.lOmg/L. 52, C-4
Teflon
NIA
2
44.75
c49.5
NIA
sOO122a-083
EW-1311-ID4224 hour, 0 IOmgn, SZ, C-4
Teflon
NIA
2
c24.75
c49.5
NIA
sOO122a-085
EW-1311-1043 24 hour, l.OmglL, S2. C-4
Teflon
NIA
2
25.99
51.98
NIA
sW122a-086
EW-1311-1044 24 hour, 1.OmglL. S2,C 4
Teflon
NIA
2
84.89
169.78
NIA
94
sW122a-090
E001311-104524 hour, l.OmgiL. S2. C-4
Teflon
NIA
2
30 68
61.36
NIA
Note: Inall of the 0.lOmgiL test vessels lhe test substance was undetected. This IS due to the natureof the relationshipof the test subslance to the test vessel. some amount of adsorptionwas expected In this particular case the amount of test substance initiallypresent in the test vessels was relativelysmall. and the amlytical method was unable to delea the lest substam intha samples. For the remainder of the study the amount d test substanca administered to the test vessels was at least 5 times higher than the undetected0.lOmglL level.
Page 2 of 2
BACK TO MAIN
Study E00-1311
Optimal Ratios
PFOS AdsorbIDesorb
Tier I "Optimal Soil:Solution Ratios"
Sample Data
File
Sample Description
5001207-037 ~001207-038 S001207-040 ~001207-044 5001207-045 1001215-037 l001215-0%8 twi2i5-039 1001215~041 1001215-045 1001215-046 1001207~047 ~001207-048 ~001207-052 ~001207-054 sM11207-055 ~001207-056 ~001207-061 ~001207-062 ~001207-063 1001211-038 ~001211-037 ~001211-038 S001211~040 ~001211-044 ~001211-045 soai21i-047 r001211-048 ~001211-052
~w~zor-oae
~001207-089 ~w1207_070 ~oa1207-072 ~001207-076 ~001207-077 ~ooiza7-a79 SW 1207-080 ~001207-084
lox ECU1311-3002-Sl.O.orn@!L, Ohr. No soil, 12M71w lox EW-1311-3009S1,0.0mpll. Ohr, No soil, 1M7m0 lox E00-1311-3WkS15OmglL. Ohr, No soil, 121c71w
lox E00-1311-3005SI. S.Om&. Ohr, No soil, 1M7m0 1Dx EM)-1311-3WgSl.5 am&. Ohr. No soil. 12M71w
lox E051311-3W7-SI.O.OmgR, 48hr. No Soil. 12/071w lox EW-1311-300BS1.0.0mglL. 48hr. No Soil. IZR7m0
l o x E W - 1 3 1 1 - 3 ~ S I0..0m&. 48hr. NOSoil. 12/071w
10xEW-1311-3010S1,5.0m@, 48hr. No Soil. 12~97100 lox E00-1311.3011-S1.5 O W . 48hr. No Soil, 12/07100 l o x EW-13113012-S1.5 OmgA. 48hr. No S d . 121071M) lox E00-1311.3013.Sl. o.ompll. Ohr, 1.lday. 12/07/00 1Ox E00-1311-3014-S1,O.OmgR.Ohr. 1:lday. 12m71W 10xEW-1311-3015S1O, OmglL Ohr. 1.lday. 12107Mo lox E00-1311-3015S1, O.orn&. Ohr. 1:5clay. 12/07/00 1OxE00-1311-3017-S1.OOmglL Ohr. 1:Way. 12/071w
lax E00-1311-3018-S1.o.omWl.,Ohr, 1:Sday. 121071w
l o x E00-1311-3019-S1.O.Omg/L.Ohr. 1.25day. 12/071w l o x EO51311.302bS1,0 Om&. Ohr. 1'25clay.1M7RO lox E051311-3021S1,0 om&, Ohr. 1:Zblay. 1M7IW l o x EOD-1311-3022-S1,O.Ornp/L.48hr. 1:lClay. 12/07/00
~ O X E C U ~ ~ ~ I J O ~ ~ SaI..mg&48hr. l:lC\ay. 12107100
lox E00-1311.3024S1, a.OmgR. 48hr. 1:lClay. 12/07100 lox E00-1311-3026S10OmSn.48hr. 1.5 Clay. 12D7100 lox E00-1311-3025S10.OmglL4. 8h, 1'5 Clay, 12107Mo lox E00-1311-3027-S1o.om&. 48hr 1:5 Clay, 12/07hX lox EOO-1311-302BS10mo@- 48hr. 1.25Clay. 12/07/W lox EM)-1311-302&S10.0mglL. 4% 1.25Clay. 12m71M) l o x E00-1311.3030-S1 o.omp/L. 48hr. 1:25 Clay. 12107lW ?OX EM)-i311-3MI-S1,5am@. Ohr. 1:lclay. 12m7100 lox E00-1311-3032-S1,5.0m~M, lr. l'ldey. 12/O7/M) lox ~~.1311.3033-~1,5.0mpO/h~r,,1:lday. 12/07/00 lox E00-1311-3o34-Sl,5.omglL.Ohr, l:5day, 12m7xx) 10%00-1311-3035S1.5om@!L.Ohr. 1Iday, 12m7mO lox E00-1311.303aS1.5.0mglL.Ohr.1.Way. lM7IO0
lox E~1-1311-303781,5[hnp/L.Ohr. 1.25day. 121071w
lox EW-1311.303BS1,5.OmgIl.Ohr1. :tWay. 12/O7X)O 10%00-1311.3039-S1.5.0m~L,Ohr1. .25day. 12/O7/W
Theoretical Test Time Substance SoilSoluti Point, Concentration,
Soil Type on Ratio Hours u g l l
Dilution Factor
Measured Concentration,
uglL (from Instrument)
Observed Solution Concentration, ugR (measured x dilution
factor)
Amount o Substance Adsorbed
%
No soil
none
0
No soil
none
0
No soil
none
0
No soil
none
0
No soil
none
0
No soil
none
48
No soil
none
48
No soil
none
48
No soil
none
48
No soil
none
48
No soil
none
48
Clay
1:1
0
Clay
1:l
0
Clay
1:1
0
Clay
1:5
0
Clay
1:5
0
Clay
1:5
0
Clay
1:25
0
Clay
1:25
0
Clay
1:25
0
Clay
1:1
48
Clay
1:1
48
Clay
1:1
48
Clay
1:5
48
Clay
15
48
Clay
1:5
48
Clay
1:25
48
Clay
1:25
48
Clay
1:25
48
Clay
1:1
0
Clay
1:1
0
Clay
1:1
0
Clay
1:5
0
Clay
1:5
0
Clay
1:5
0
Clay
1:25
0
Clay
1:25
0
Clay
1:25
0
0.0
10
0.0
10
5000.0
10
5000.0
10
5000.0
10
0.0
10
0.0
10
0.0
10
5000.0
10
5000.0
10
5000.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
0 0 0
a
c25.0 -25 0 45.0 s25.0 <25.0 e5.a 0 50 c25.a C25.0 c25.0 <25.0 c25.0 398.29 449.17 <25.0 e250 <25 0 <25.0 e25.0 c25.0 s25.0 <25.0 <25.0
e25 a
26.41 47.72 74.95
386 389.48 390.3 427.38 401.2 450.84
0.00 0.00 0.00 0 00 0.00 <250
~250 C250
<250 <250 e250 C250
<250 <250 <250
c250 c250
3982 90 4491.70
c250
c250
c250 ~250 C250 ~250 <250 ~250 c250 e250 284.10 477.20 749.50 3660.00 3894.80 3903.00 4273.80 4012.00 4508.40
1w.c 1w.c 1w.c
>95' ,951 ,95'
947 90.4 85.0 26.8 22.1 21.9 14.5 19 7 98
Page 1of 5
2.G,
L
rn
5
2 5
5
?
73 n,
cn
(D
BACK TO MAIN
Study 00-1311
Optimal R a t i s
PFOS AdsorblDesorb
Sample Data
File
Sample Description
~001207-105 SOOl207~106 ~001207-111 ~001207-112 ~001207-113 SOOl207-118 ~001207-119 S001207-120 ~001207-122 ~001207~126 ~001207-127 ~001207-129 ~001207-130 ~001207-134 s001207-13e ~001207-137 ~001207-138 rw1211-054 ~001211-055 swlzll-056 s001211-081 rwl211-062 ~001211-063 rCQ1211-068 soOl2ll-039 ~001211-070 sOol207-143 5001207-144 r001207-145 ~001207-I50 ~001207-151 s001?0?-15? ~001207-154 ~001207-158 sCQ1207-159 HBlO037.D HiIMO3B.D Hill0039 0 H~IIOO~I.D H1110045.D HtllOO46.0 HdIM)48.0 HillW49.0 H110053.D
1Ox E001311-3041-S1.5.0m~,2hr.1:lclay. 12/07/00 lox E001311-3042-Sl.5.6n~2hr.1.lday. 12/07/00 lox EoO1311-3043-S1.5.0rng5.2~I:,5day. 12/07/00 lox E001311-3044-S1,5 OmglL2hr. 1:Way. 12/07/M) l o x EoO1311-3~s-Sl.5.om~2hl.r5.day. 12/07/00 1Ox EW-1311-3045S1.5 omgR.2hr. 1:25day, 12/07/00 lox E001311-3047-S1.5OmgR.2hr. 1:25day, 12/07/00 lox 00-1311-304BS1.5.mglL,2hr,l.ZXlay, 12/07/00 lox E001311-3049S1.5.0mgR.4hr.1:lday. 12/07/00 lox E001311-3050-S1,5.omg/L.4hr. 1:1day. 12/07/00 lox E001311-3051-S1.5OmgR.4hr. l.lday. 12/07/00 1Ox EO0-1311-3052-Sl.5.0mg5.4hr. l:5day. 12/07/00 lox E0a1311-3053S1.5.6ng11.4hr.1.Sclay. 12107l00 l o x E00-1311-30WS1.5OmgL4hr. 1'5day. 12/07100 lox E001311-305SSl.5.OmgR.4hr.1:25day. 12/07/00 lox E001311-M56S1,5.0mgR.4hr.125day. 12/071w l o x E001311-3057-51.5OmgA.4hr. 1'25day. 12/07/00
lox EM)-1311-M5Ml. 5 m.8hr. IIClay, 12/07/00
l o x E001311-305kS1.5.OmglL. 6hr. l:lClay, 12/07/00 lox E o o - 1 3 1 1 - 3 0 6 o s 1 . 5 . ~8. hr. 1:lClay. 12/07/00 lox E00-1311-3081-S1, 5.omg5. 8hr. 1.5Clay.12/07/00 lox E001311-3062-Sl.5.6nglL. Bhr. 1:SClay. 12/07/00 lox EW-1311-3063-Sl.5.omgfL. 8hr. 1:SClay. 12/07/00 ~ o x ~ 1 3 1 1 - 3 0 8 4 -s~.o1m.gR. 8hr. 1:25Clay. 12m71w 1% E00-1311-3066S1, 5.omgR. Bhr. 1.25Clay, 12/07/00 101E00-1311-306&Sl, 5.Omg5. 8hr. 1:25Clay. 12/07/00 lox E001311-3ffi7-Sl.5.0m~5.18hr.1.lday. 12/07/00 lox E00-1311-306BS1.5OmgR,IBhr,1:lday. 12/07/00 l o x EW1311-3069-S1,5Omg5.16hr. 1:lday. 12/07/00 lox 001311-307aS1.5OmgR.16hr. 1.5day. 12/07/00 lox E00-1311-3071-S1.5Omg5.18hr.l:5day. 12/07mO :QiE"". ,3,1.11-"~- v ~ 2 - 3 l , ~ . O m g i l .i:i5~dhary.. 12/07/00
l o x E00-1311-3073-S1.5.omglC.16hr1.:25day. 12/07/00 1oX E00-1311-3074-S1.5.0mg~.l6hr.1:25day. 12/07/00 1Ox EoO1311-307iS1.5 Om@L.l6hr. 1:ZMay. 12/07/00 1Ox E00.1311-307BS1.5.0m~.Z4hr.1:lday. 12107/00 lox EW-1311-3077-S1.5OmgR.24hr. 1:lday. 12107100 102 EW-1311-307SS1.5 OmgR.24hr. 1:lday. 12/07/00 lox E(M1311.3079-S1.5.0mg/L.24hr.1:5day. 12/07/00 lox E001311-3080-Sl.5.0mgR.24hr.1:5day. 12/07/00 l o x E001311-3081-Sl.5.6ngR.24hr.1:5day. 12/07/00 lox E001311-3082-S1,5OmgR.24hr. 1.25day. 1M7/00 lox E001311-3083-sl.5.hgR.24hr. 1:25clay. 12/07/00 1OxE001311-308eS1.5OmgR.24hr.1.25day.12/07/00
TheoreticalTest Time Substance Soi1:Soluti Point, Concentration,
Soil Type on Ratio Hours uglL
Dilution Factor
Measured Concentration,
uglL (from Instrument)
Observed Solution Concentration, ug/L (measuredx dilution
factor)
Amount of Substance Adsorbed,
%
Clay
1:1
2
Clay
1:1
2
Clay
1:5
2
Clay
1:5
2
Clay
1:5
2
Clay
1:25
2
Clay
1:25
2
Clay
1:25
2
Clay
1:1
4
Clay
1:1
4
Clay
1:1
4
Clay
1:5
4
Clay
1:5
4
Clay
1:5
4
Clay
1:25
4
Clay
1:25
4
Clay
1:25
4
Clay
1:1
8
Clay
1:1
8
Clay
1:1
8
Clay
1:5
8
Clay
1:5
8
Clay
15
8
Clay
1:25
8
Clay
1:25
8
Clay
1:25
8
Clay
1:1
16
Clay
1:1
16
Clay
1:1
16
Clay
15
16
Clay
15
18
Ciay
15
16
Clay
1:25
18
Clay
1:25
16
Clay
1:25
16
Clay
1:1
24
Clay
1:1
24
Clay
1:1
24
Clay
13
24
Clay
1:5
24
Clay
1.5
24
Clay
1:25
24
Clay
1:25
24
Clay
1:25
24
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
98.63 88.87 S25.0 155.7 140.92 317.1 318.56 326.3 113.88 86 39 92.13 126 4 113.16 136.92 326.15 328.21 319 46 1M.4 114.46 111.17 293.97 314.29 287.97 118.92 305.1 128.68 119.29 99.92 168.04 140.62 136 17 152.02 330.98 321.53 346.78 125.10 105.41 34 09 11870 11021 98 72 288 55 284.21 288.40
988.30 888.70
e250 1557.00 1409.20 3171.00 3185.60 3263.00 1138.80 883.90 921.30 1264.00 1131.60 1369.20 3281.50 3262.10 3 194.60 1304.00 1144.80 1 1 11.70 2939.70 3142.90 2879.70 1189.20 3051.00 1286.80 1192.90 999.20 1660.40 1406.20 ?36?.70 1520.20 3309.80 3215.30 3467.80 1251 .OO 1054.08 340.90 1166.96 1102.12 967.23 2885.54 2842.13 2884.61
80.27 88.23 .95% 68 86 71 82 35.58 38.29 34.74 77.22 82.32 81.57 74 72 77.37 72.62 34 77 34.76 36.11 73.92 77 10 77 77 41 21 37.14 42.41 76.22 38.98 74 26 76.14 80.02 66.79
-- -- 71.88
,L I ,
69.60 33.80 35.69 30.64 74.98 78.92 93.18 76.66 77.95 80.66 42 29 43.16 42 31
Page 2 of 5
BACK TO MAIN
m-0
(D
0
s 4
0 0
Study E00-1311
Optimal Ratios
PFOS AdsorbIDesorb
Sample Data
File
Sample Description
TheoreticalTest Time Substance SoikSoluti Point, Concentration,
Soil Type on Ratio Hours uglL
Dilution Factor
~wizir-07e
lox E00-1311-308BS1,5.0mgll.36hr. 1:lClay. 12/07100
clay
1:t
36
~001211-077
lox E00.1311-3087-S1. 5 OmplL, 36hr. 1:lClay. 12/07/00
Clay
1:l
36
sW1211-079
lox E001311-3088-Sl.5.OmglL.3ehr. 1:SClay. 12/07/00
Clay
15
36
SM)1211~080
lox ED01311-3089-S1.5 Omgll. 36hr. 1:SClay. 12/07/00
Clay
15
36
rw1211-084
lox EM).I~~I-~OWS~, 5.0mg/L 38hr. 1:SClay. 1m7mo
Clay
1:5
36
mizii-oee
10xE00-1311-3091-S1,5.0mpn. 36hr. 1:25Clay. 12/07100
Clay
1:25
36
sW1211-087
101E00.1311-3092-Sl.5.Om~.36hr. 1:25Clay. 12107100
Clay
1:25
36
sw1211-088
lox E00-1311-3093-Sl.5.0mplL. 36hr. 1'2SClay. 12/07mO
Clay
1:25
36
~001211-093
lox EM1311-3096Sl. 5 OrngR,48hr. 1:lClay. 12/07/00
Clay
1:1
46
~001211~094 1OxE00.1311-3w5S1.5.hdL 48hr. 1:lClay. 12/071W
Clay
1:1
48
~001211~095 lox E001311-309gSI. 5 OmglL 48hr. 1:lClay. 12/07/00
Clay
1:1
46
sM11211-1w
lox EW-1311-309751. 5.OmgR. 48hr. I:5Clay, 12/07/w
Clay
1:5
48
SW1211~101
lox E00-1311-309aSl.5.hplL. 48hr. 1:sClay. 12107/00
Clay
1:5
46
r001211-102
lox E00-1311-3099-S1. 5 OmgIL. 48hr. 1:SClay. 12/07/00
Clay
1:5
48
rW1211~1M
lox E0Ll1311-3100-S1,5.0mglL. 48hr. 1.25Clay.12/071w
Clay
1:25
48
SW1211~108
lox E00.1311-3101-S1.5.OmglL. 488. 1:25clay, 121071W
Clay
1:25
46
SWlZll-IO9
lox E00-1311-3102-S1.5om& 48hr. l:25Clay. 12/07/00
Clay
1:25
46
H1W55.D
lox EW1311-3105S1. 5.0mglL. Ohr. 1:lSedimenl. 12/07/00 Sediment 1:l
0
HrlKK158.D
10xEWl3173104S7, Somfl. Ohr. 1:ISedimsnt. I M 7 / 0 0 Sediment 1:l
0
H1110057.D
lox E00.1311-3105-S1,5.0m(yL.Ohr. 1:lSediment.12/07/00 Sediment 1:l
0
HilK)062.D
lox ELH3.1311-31OBSl. S.Dm(yL, Oh,. 1.5SedimenL 12/07/00 Sediment 1:5
0
HiliW63.D
lox E001311-3107-S1.5.OmgR. Ohr. 1.5Sedlment.12/07/00 Sediment 1:5
0
Hill0064 D
lox E001311.310BS1,5.OrnglL,Ohr. 1.5SedimenL 12107100 Sediment 1:5
0
H1i0069.D
lox E001311-3109Sl. 5 Omsk. OW. 1.25Sedmm 12107iW Sediment 1:25
0
Hil10070.D
lox E00.1311-3110-SI.5.OmglL. Oh, 1'25Sediment.12107/00 Sediment 1:25
0
Htli0071D
lox E00.1311-3111-S1,5OmpR, Oh., 1'25Sedment. 12m7mO Sediment 1:25
0
H1110073.D
lox EW1311-3112-S1.5.0mgiL,2hr. I'lSediment, 12/07100 Sediment 1:l
2
HdlM177.D
lox E0~1311-3115S1.5 OmglL, 2hr. 1'1Sediment.1M7RO
Sediment 1:l
2
H)llW78.D
t0xE001311-3t14-S1, 5 0 W L . 2hr. 1:tSedimSnt. 12/07/00 Sediment 1 3
2
HilIM18O.D
lox EW-1311-3115-S1,5 OmglL. 2hr. 1:5Sediment,121071W Sediment 1 5
2
HillOOBl 0
lox E00.1311-3116S1.5OmglL. Zhr, 1'5Sediment12x17X)O Sediment 1:5
2
HiiiaiOi .D
lox EoO-1311-3117-S1,5OmVL,2hr. l:5Sedhent 12107100 Sediment 1:5
2
Hili0103 0
1Ox E00-1311-311&S1,5 OmglL, 2hr. 1:25 Sedtment. 12107/00 Sediment 1:25
2
H!110104.D
lox E001311-3119.S1.5.OmglL. Zhr. 1:25 Sediment 12R7/M1 Sediment 1:25
2
HillOlO5.D
lox E001311-3120-S1.5OrngiL. Zhr, 1-25Sediment. 12/07iW Sediment 1:25
2
Hi110110.D
1oxE001311-3121-S1,5.0mpn. 4hr. 1:l Sediment. 12107lW Sediment 1:l
4
Hill0111.D
lox E00-1311-3122-Sl.5.OmgR.4hr. 1:l Sediment, 12/07/00 Sediment 1 : l
4
HIIIO112.D
10xE00.1311-3125S1,5Gmfl. 4hr. 1:l SedimeN 12x1703 Sediment 1:l
4
HXJll7.D
lox E00.1311-3124-S1.5Om&. 4hr. 1 5 Sediment 12x17/00 Sediment 1:5
4
HiIIO118.D
10xE00-1311-312681.5h p n . 4hr. 1:5Sedlment 1M7lW Sediment 1 5
4
Hill0119.0
lox ED01311-312SSl.5 OmgIL, 4hr. 15Sediment. 12x1703 Sediment 1:5
4
H1ilO121.D
lox E00.1311-3127-S1.5Omp/L. 4hr. 1.25 Sediment. 1z/o7xx) Sediment 1:25
4
~111012D5
(OX ~ ~ ) - i 3 1 1 . 3 1 2 ~50~m1.,ai~.4hr. 1:25Ssdimenl.12107100 Sediment 1'25
4
HdIO12B.D
lox ~00-1311-3129-s1,5OmUL,48.1'25 sediment. 121071~ Sediment 1:25
4
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000 0
10
5000.0
10
5000 0
10
5000.0
10
5000.0
10
5000 0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000 0
10
5000.0
10
Measured Concentration,
uglL (from Instrument)
Observed Solution Concentration, uglL (measured x dilution
factor)
Amount of Substance Adsorbed,
%
138.13 44 59 103.26 119.9 129.42 299.09 313.39 289.84 59.14 62.48 69 48 92 9 IO7 09 95.8 301.58 331.37 381.05 118.32 121 89 87.39 451.55 442.99 447.e9 402.85 428.58 425 08 78 07 85.88 59.32 247 50
:em
331.41 365.63 e25.0 q25.0 c25.0 80.43 63.71 242.88 24e.91 245.14 380.34 374 21 38.9.7.3
1381.30 445.90
1032.60 1199.00 1294.20 2990.90 3133.90
2698.4 0
591.40 624.60 694.60 929.00 1070.90 956.00 3015 60 3313.70 3610.50 1163.16 1218.86 873.67 4515.51 4429.87 4476.92 4028.50 4265.82 4250.83 760.65 858.62 593.21 2475.02 2867.00 3314.09 3656.30
c250 <250 c250
804.32 637.06 2426.62 2469.09 2451.42 3803.38 3742.10 3687.56
73 61 72 37 91 08 79 35 78 02 74 12 40 18 37 32 42 03 88 17 87 51 88 10 81 42 78 58 80 88 39 e9 33 73
n 79
7e 34 75 e2 82 52 9 e9 11 40 10 46 1943 14 28 14 98 84 39 82 e3 88 14 50 50 46 26 33 72 26 87 >95% >95% >95% 83 91 87 26 51 43 50 e2 50 97 23 93 25 16 28 25
Page 3 of 5
-0
P)
(P
(D
BACK TO MAIN
Study E00-1311
Optimal Ratios
PFOS Adsorb/Desorb
Sample Data
File
Sample Description
t001215-049 tOQl215-053 1001215~055 mo1215-oss 1001215-057 1001215-062 rnoizi5-oe3 1w1215-064 1001215-C89 1001215-070 1001215-073 100121 5-077 1001215-078
looinis-oso
tOQ1215-081 rnoi215_085 tO01215-087 M01215-088 tWlZl5-009 Kx)1215-094 KH)1215-095 t00?215-0?0 1001215-116 LW1215-I17 1001215-118 1001215_120 1001215-124 tOO1215-125 ~01215_127 tWl215-I28 l00lZl5-132 1001215-134 rnoizi5-135 Kx)1215-136 1001215~141 M01215-142 KKJ1215-143 1001215-148 tW1215-149 KK)1215-1M 1001215-152 Kx)I215-1W 1001215-357
1(wEW-1311-3131-S1.5~fLB. hr. 1.1Sedimnt 121071w
10%EW-1311-3132-SI.5.OmpR. 8hr. 1:l Sediment 12/07/M)
10%E~1311.3130S1.5.Omg~8.hr. 1:s Sediment, 12/07/00
lox E00-1311-3134-S1,5 OmgiL. 8hr. 15 Sediment. 12/07/M)
l o x EW-1311-3135-SI.5.OmgR. Bhr, 1.5Sediment 12/07/00
10%EW-1311-313i-S1,5 om& 8hr. 1.25Sediment 12/07/00
lox EX?-1311-313751.5.0mgR,Bhr, 1'25 Sediment 12/07/W lox EW-1311-313ES1.5ompn. 8hr. 1:25 Sediment 12/07100
10xEW-1311-3139-S1,5.omplL 18hr. 1:l Sediment. 12/07Mo
lox EX?-1311-314BS1.5OmgIL. 18hr. 1:l Sediment. 12/07/00
lox EX?-1311-3142-S1,5omw. 16hr. 1 5 Sediment. 12/07/00 lox EX?-1311-3145S1.5om@. 18hr. 15 Sediment. l2/0i100
lox EW-I311-3144-S1.5.OmglL.16hr. 1:s Sediment 12/071w
lox EW-1311-3145-S1, 5OmgA. 16hr. 1:25 Sediment, 12/07M)
lox E ~ 1 3 1 1 - 3 i 4 E S 5I .ompR. 16hr. 1.25 Sediment 1M7M)
lox EX?-1311-3147-S1.5.OmglL 16hr. 1:25 Sediment. 12/071w
lox EW-1311-314ES1.5.OmgR. 24hr. 1.1 Sediment. 12/07/00
lox EM)-1311-314OSl,5.OmplL.24hr. 13 Sediment. 12/07/00
lox E~1311-3150-S1.5.0mglL.24hr. 1:1Sediment 12/07/00
lox EX?-1311-3151-S1,5.0mpll.24hr. 1:5 Sediment 12/07/00
lox EX?-1311-3152-S1,5Omglc. 24hr. 15 -ent
IuO7100
lox EW-1311-3153-S1,5.0mgiL2. 4h. 1.5Sediment. 12107100
lox EW-1311-3154S1.5OmgR. 24hr. 1.25Sediment. 12/07/00
lox EX?-1311-3155S15. .0mgiL 24hr. 1% Sediment 121071w
lox E00-1311-315&S1, 5.0mglL. 24hr. 125 Sediment 12/07/00
lox EW-1311-3157-S1.5.Omgll36hr. 1.1 Sediment. 12/07/00
10xE001311-315ES1.5.OmQlL.36hr. 1:1Sediment 12/07/00
lox EX?-1311-3159S1.5Om& 36hr. 1.1Sediment. 12/07/W
lox EW-1311-316BS1.5.Omgll36hr. 1:5 Sediment 12/07/00
lox EW-1311-3161-S1.5.0mg~3,6hr. 1 5 Sediment 12/07/00
lox EW-1311-3162-SI.5.OmgR. 36hr. 1.5 Sediment. 1uO7IW
i O x Cmi311-3163-Si. 5.OmglL. 38hr. 1.25 Sediment. 12107100
lox EW-1311-316451. 5.OmglL. 38hr. 1.25 Sediment. 12/07/00
lox EOC-1311-3165-Sl. 5.OmglL. 36hr. 1'25 Sediment 12/07iW
lox EW-1311-3165S1,5.OmglL. 48hr. 1:l Sediment. 12/07/00
lox ECO-1311-3167-S1.5.0mpR. 48hr. 1'1 Sediment 12/07/W
lox E00-1311-316ES1.5.OmgA. 48hr. 1:l Sediment, 12/07/W
lox ECO-1311-3169-S1.5 OmglL. 48hr, 1.5 Sediment. 12/07RO
lox E00-1311-3170-S1,5OmglL 48hr. 1:5 Sediment 12/07RO
1oxEW-1311-3171-Sl.50mgA. 48hr. 1.5 Sediment. 12/07RO
10xE00-1311-3172-S1,5.0m~. 48hr. 1:25SedimenL 12107/00
lox E001311-3173-S1,5 OmQIL.48hr. 1:25 SedimenL 12m7xM
1oxEDDl311-3176S1,5.Omgll 48hr. 1:25Sediment. 12/07/00
TheoreticalTest Time Substance SoikSoluti Point, Concentration,
Soil Type on Ratio Hours uglL
Dilution Factor
6
Sediment 1:1
8
Sediment 1:1
8
Sediment 1:5
8
Sediment 1:5
8
Sediment 1:5
6
Sediment 1:25
8
Sediment 1:25
8
Sediment 1:25
6
Sediment 1:1
16
Sediment 1:1
16
Sediment 1:5
16
Sediment 1:5
16
Sediment 1:5
16
Sediment 1:25
16
Sediment 1:25
16
Sediment 1:25
16
Sediment 1:1
24
Sediment 1:1
24
Sediment 1:1
24
Sediment 1:5
24
Sediment 1:5
24
Sediment 1:5
24
Sediment 1:25
24
Sediment 1:25
24
Sediment 1:25
24
Sediment 1:1
36
Sediment 1:1
36
Sediment 1:1
36
Sediment 1:5
36
Sediment 1:5
36
Sediment 1:5
36
Sediment 1:25
36
Sediment 1:25
36
Sediment 1:25
36
Sediment 1:1
48
Sediment 1:1
48
Sediment 1:1
48
Sediment 1:5
48
Sediment 13
48
Sediment 1:5
48
Sediment 1:25
48
Sediment 1:25
48
Sediment 1:25
48
5000 0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
5000.0
10
Measured Concentration,
uglL (from Instrument)
gees 92 97 87.04 396.95 233.83 271.00 322 07 341.64 340.94 65 07 80.84 248.78 247.05 268.5 355.44 338 22 355.34 71.71 57.44 38.51 229.84 237.34 220.8 355.21 320.83 304.11 83.87 00.37 50.58 208.79 212.87 253.48 319.84 318.04 371.72 68.84 60.37 30.48 198.79 237.42 196.59 304.44 368.92 346.68
Observed Solution Concentration,uglL (measured x dilution
factor)
Amount of Substance Adsorbed,
%
986 60 929.70 870.40 3969.50 2338.30 2710.80 3220.70 3416.40 3409.40 650.70 808.40 2467.80 2470.50 2685.00 3554.40 3382.20 3 55 3.4 0 717.10 574.40 365.10 2298.40 2 373.4 0 2206.00 3552.10 3208.30 3041.10 838.70 803.70 505.80 2087.90 2128.70 2534.80 3198.40 3180.40 3717.20 686.40 603.70 304.80 1987.90 2374.20 1965.90 3044.40 3689.20 3466.80
80 27 81.41 82 59 2061 53.23 45.78 35.59 31.67 31.81 86.99 83.83 50.24 50.59 46.30 28.91 32 36 28 93 85 e5 88.51 92.70 54.03 52.53 55.88 28 96 35.83 39.18 83 23 83.93 89.88 58.24 57 43 49.30 38.03 36.39 25.66 86.27 87.93 93.90 60.24 52 52 80 68 39.11 28 22 30.66
... 4
Page 4 of 5
BACK TO MAIN
Study E00-1311
Optimal Ratios
PFOS Adsorb/Desorb
I 1 Sample Data
File
Isample Description
Hi10129 0 Hill0133 D HilKH35.D Hi110138 D HIID137 D Hi110142 0 HWJ143 D Hi110144.D
1W1215-163
1001215-16E 001215-170 KM1215-171 1001215-173 lWl215-174
lox E00-1311-3175S1.0.OmgiL.Ohr. 1:l Sediment 17/07/00 10xECU1311-3177-SlO. .Om&. Ohr. 1:l Sediment. 17/07/00 lox EW-1311-317BSl.0.OmpR. Ohr. 1:s Sediment. 12/07Iw lox EW-1311-3179-W.0.0mgR. Ohr, 1:s Sediment. 12107/00 lox EM)-1311-318W4.O.C~YJA.Ohr. 1:s Sedinwnl. 17/07/00 l o x EM)-1311-3181-S1.0Om&. ohr. 1.25 Sediment. 12/07/00 10%EM)-1311-3182-S1.0.O~.hr. 1% Sediment 17JQ71w 1Ox ECQ-1311-3183-Sl,O.h&. Oh., 1'25 Sediment, 12/071w lox E~1311-31B4-SOi..Om&.48hr. 1:l Sediment 17/07/00 l o x EM)-1311-3185Sl.O.Om&. 48hr. 1'1 Sediment 17/07/00 lox EM1311-31sSSI. O.Om#L 48hr. 1.1 Sediment. 12/07/00 10%EW-1311-3187-S1.0Om&, 48hr. 1:s Sediment. 12/07EQ lox EM)-1311-3188-S1,O.~giL.48hr. 1 5 Sediment 12/07/00 lox EO0-1311-3189-Sl,O.OmgA.48hr. 1.5 Sediment 12/07/00 l o x E00-1311-319&Sl.0 OmplL, 48hr. 1'25 Sediment 12/07/00 1OxEW-1311-3191-S1.OOmgiL4.8hr. 1.25 Sediment 12/07nO l o x EW-1311-3192-S1.0Omst,48hr. 1'25Sediment. 12/07/00
I I lTheoreticaJ_t Time Substance Soil:Soluti Point, Concentration, ]SoilTypeIon Ratio IHours lugR
I I I Measured
Observed Solution
Concentration, Concentration,uglL
I Dilution
IFactor
u g l l (from Instrument)
1
(measured x dilution
.
factor)
Amount ( Substanc Adsorbec
%
Sediment 1:1
0
Sediment 1:1
0
Sediment 1 5
0
Sediment 1:5
0
Sediment 1 5
0
Sediment 1:25
0
Sediment 1:25
0
Sediment 1:25
0
Sediment 1:1
48
Sediment 1:1
48
Sediment 1:1
48
Sediment 1:5
48
Sediment 1 5
48
Sediment 1:5
48
Sediment 1:25
48
Sediment 1:25
48
Sediment 1:25
48
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
0.0
10
_. .
e250 e250 e250
e250 <250 e250 <250 <250 e250 e250 e250 <250 <250 e250 c250 C250 e250
Note: The control samples that did not w n t a i n soil (3004-3006,3010-3012)there was no recovery of the test substance. This was because the test vessels were mistakenly not dosed with the test substance.
N 0
0
0,
-4
0 w
Page 5 of 5
BACK TO MAIN
Study Em-1311
Adsorptlon % Cham
PFOS Adsomesolb
Adsorption
Kinetics. One Concentration
4
- E EF.
0 0 2 2 2 4 4 4 8 8 8 16 16 16 24 24 24 36 36
35
48 48 48
Calcdabon of& (adsombon% at bine t) to be nloffedYS bine
Calwlabon ofdlrtnbutlon Coeffluent &
V.
C.
- H -
E _s
E
"1 E
8 . f
2 i
!i 5' 2
3
I
3
; i
9
8
s
*%
1 El
I
a:
I $9
E I
,*
f.;
$ IB 50 i g g 3 -I
a<
E-
50
25
0.477
As - AverageAm,
K.
-
2.
7 r:
i
:, ! ?- 3 I 4E ;3 1
c 1"
IT
If
:
i !i %I I1'
6
:E
I f e a
Q-. o I7
rs
ai 1;; it,
22.61 9 0 4 6 9006
1 B I; 5
E
1
I i
1
B E
g
0
4 9875
9 502
12 5
5 0 62 5 3.895 13.82 22 10 23 61
2 4953
1421
25 0
50
125
4.012
24.70
1976
14 71
1 OW8 6 152
50
50
25 0.986 20.07 80 27 79 21
4 9841 4 082
12 5
5 0 62 5 1.557 43.04 68 86 70 34
2 4988 11 062
25 0
50
I25 3.186 45.36 36 29 35 a7
10012 14 222
50
50
25 0 884 20.58 82 32 80 37
5 W85 4 a 9
12 5
5 0 62 5 1.132 48.36 77 37 74 90
2 5105 17 021
25 0
50
125 3.262 43.45 34 76 3 5 2 1
10241 13005
50
50
25
1.145
19.28
77 10
76 26
4 9889 3 375
12 5
5 0 62 5 3 143 23.21 37 14 40 25
2 5122 2 940
25 0
50
125 3.051 48.73 38 98 63 15
1 0084 15837
50
50
25 0.999 2 0 . w 80 02 74 32
5 w35 4 001
12 5
5 0 62 5 1.362 45.48 72 77 71 41
2 4966 13377
25 0
50
125 3.215 44.62 35 69 33 38
0 9964 13 927
50
50
25
1.054
19.73
7 8 92
82 36
4 9953 3 746
12 5
5 0 62 5 1.102 48.72 77 96 78 42
2 5080 17627
25 0
50
125
2.842
53.95
43 16
42 58
1 w g g 18 795
50
50
25
1.381
18.09
72 37
79 02
4 9910 2 625
0
12 5
5 0 62 5 1.199 47.51 76 02 76 49
2 5308 15658
25 0
50
125 3.134 46.65 37 32 3 9 85
0 9940 14 976
50
50
25 0.625 21.88 87 51 87 26
4 9699
7 019
12 5
5 0 62 5 1.071 49.11 78 58 80 29
2 5174 18218
25 0
50
125 3.314 42.16 33 73 33 73
0 9859 12 934
Adsorption EquilibriumPlot -__
10 20 30 40 50 4 Equi(lDr(urnT h e . h m
Study E00-1311
Sample Data Flle n w mn
HllWS3 D HlilWlO D H1K1077 0 HdI0081 D HIKIIM D HlllO111D n1011ll D HdlD12.5 D W17.15~049 l001213-CW moi2ts-o~~ 1001215_070 1001215-077 lCOl213-081 1001215-MM 1001215_095 1001215-117 1001215-124 lCO1215-128 1001215-135 1W1215-142 iC"J1215-149 I001215_1%
h)
0 N
0 w
Adsorption % Charts
BACK TO MAIN
4
1
0 125 0 250 2 50 2 125 2 250 4 50 4 125 4 250 8 50 8 125 8 250 16 50 16 125 16 250 24 50 24 125 24 250 36 50 36 125 36 250 48 50 48 125 48 250
f
f =i -r 1
:I
i I X
bj
$3
i$ ;; -BvE
rt
5-
E rae;g;
%E, ;$ 6 ; :
iif
2;.
1219
0..
E$
;E
I_ P J i
51
IEP
18.91
50 62.5 4430 7 13
5.0 125 4286 1785
5.0 25 0 859 20 71 8283 8512
5.0 62.5 2 687 28 91 4626 4349
5.0 125 < 250 >59 30 ,95% 2687
5.0 25 0 804 20 98 8391 8559
5 0 625 2469 31 54 5062 51 01
5 0 125 3742 31 45 2516 2511
5 0 25 0 930 2035 8141 8142
5 0 625 2 338 3327 5323 3988
50 125 3416 39 59 3167 3302
50 25 0808 2096 8383 7369
50 625 2 685 2894 4630 4773
50 125 3382 4045 3236 5007
5 0 25 0574 22 13 8851 8896
50 625 2373 3283 5253 5415
5 0 125 3208 4479 3583 3466
50
25 0804 2098 8393 8568
50 62.5 2 129 35 89 5743 5499
5.0 125 3 180 45 49 3839 3269
50 25 0604 21 98 8793 8937
50 625 2374 3282 5252 5781
5.0 125 3 689 32 77 2622 3200
1.0199 4.9805 2.5095 1.0170 5.0081 2.5012 1.0434 4.9924 2.5067 1.0303 4.9916 2.5048 1.0168 4.9096 2.4987 1.0196 4.9766 2.4922 1.0315 5.W37 2.4954 1.032
4.085 4.842 4.288 m236 5.208 5.123 8.054 4385 5.676 11.247 5.194 4.303 11.761 7.721 5.536 13.693 5.246 6.765 13.866 7.277 5540 8.556
1w00
z 9000 g 8000
4000
3000
r'
20 00
tow
t OW
-low
__
Adsorption Equilibrium Plot
+1 5 Ratlo (sedtment)
EqulllbriumTlme, h o u n
Paw 2 Of 2
BACK TO MAIN
Study E00-1311
Mass Balance Calculation
PFOS AdsorblDesorb
Tier I "Mass Balance Calculations"
Sample Data Fi Sample Description
~001211-093
lox E00-1311-3094-S1.5.0mg/L.48hr. 1:lClay. 12/07/w
sW~l2ll-094
l o x EW-13113095Sl. 5.OmgiL.48hr. 1:lClay. 12X71W
~001211-095
10xE00-13113096~1.5.0mgA48hr. 1:lClay. 12/07/w
sW1211~100 lox E00-1311-3097S1,5Om~A..48hr,1'5Clay. 12/07Mo
~001211~101 l o x EW-13113098-S1,50mgll, 4&r, l:5Clay. 12/07/00
~001211~102
sW1211-104 ~001211~108
lox E00-1311-3099S1.5.0mgA. 48hr, l:5Clay. 12/07/w
10xE00-1311-3100-S1,50mgiL.48hr. 1'25Clay. 12/07/00 lox E00-13113101-S1,5.0mgA4, &r, 1:ZSClay. 12107nO
~001211~109
t001215~141 1001215-142 1001215~143 001215-148 1001215-149
lox E00-1311-3102S1.5.Omgll.48hr.1:ZXlay. 12R7xx)
l o x EW-13113168~1.5.0mgll.48hr1. : l Sediment. 12/07/00 lox E00-1311-3167S1.5.omgll.48hr. 1:l Sediment. 12/07/w 10xEW-13113168-S1,50mgll. 48hr. 1'1 Sedimenl, 12/07/00 lox EW-1311-3169Sl. 50mph. 48hr. 1:s Sediment 12/07/w l o x Em-13113170.S1.5 OmgA.48hr. 1'5 Sedimenl. 1ZD7/00
1001215-150
1001215~152 001215-156
lox E00-1311-3171S1,5.0mg5,46hr, 1:SSedimenl 12/07/w
lox EW-13113172Sl. 5 Om@. 48hr. 125 Sediment 12/07100 lox E00-13113173Sl. 5.0mgR.48hr. 1:25Sediment.12/07/00
t001215-157
lox EW-1311-3174-Sl.5.0mgll.48hr. 1:25 Sediment. 12/07/00
Soil Type
Clay clay Clay Clay Clay
Clay Clay Clay
Clay
Sedimenl Sediment Sedimenl Sediment Sedlmenl
Sediment Sed~ment Sediment
Sediment
SoikSolu tion Ratio I:<
1:1 1:l 15 13
1:s 1:25 1:25
1:25
1:l 1:l 1:l 1:s 1:5
1:s 1:25 125
1:25
Observed Solution Concentration, ug/L Final Volume of
(measured x dilution Solvent added,
factor)
ml
591.40
9.0
624.60
9.0
694.80
9.0
929 M
6.0
1070.90
6.0
956.00
6.0
3015 60
6.0
3313.70
60
3610.50
6.0
686.40
9.0
603.70
9.0
304.80
9.0
1987.90
6.0
2374.20
6.0
1965.90
60
3044.40
6.0
3689.20
6.0
3468 80
6.0
Dilution Factor
Measured
Concentration,
ug!L (from
Instrument)
10
95 26
10
112.93
10
159.53
10
163.56
10
147.93
10 'Tube Bmke
10
476.98
10
520 09
10
501.18
10
83.19
10
100.14
10
51.56
10
166.19
10
324.9
10
21045
10
265.72
10
282 72
10
285.76
Solution Concentration, uglL (measured x dilution factor)
Volume Of CaCI, Solution, L
953.6 1129.3 1595 3 16356 1479.3
O.W.50 0.0050 0.00% 0.01250 001250
4769.8 5200.9 5011.8
0.01250 0 0250 0 0250 0.0250
831.9 1001.4 515.6 1861.9
3249 2104.5 2657.2 2827.2 2857.6
0 0050 0.0050 0 0050 0.012% 0.01250 0.012% 0.0250 0.0250 0.0250
Volume of
Total Test Substance
Methanol Solution, L
Recovery, %
0.m0
46.16
0.0090 0 ow0
53.15 71.33
o.offi0 O.Oo60
0o m
O.Oo60
34.28 35.62
83 21
00530 0 offio
91 24 86.27
0.0090
43.68
0 0090
48.12
0.m
24.66
0 0060 0.0060 0.w60 0.0060
57.63 78 67 59.52 73.64
0.0060 0.0060
87.35 83.05
N
w 0
Page 1 of 1
Study EW-1311
Desorb Soken!
BACK TO MAIN
Page 1 of 1
s3mI-
b 0
.)
BACK TO MAIN
Study EM)-t311
Adxlrpbon Kfnebu
Tier II: "AdsorptionKinetics,One Concentration"
m e 1) to be ploned YI *me
ltalculationof dbrtribulm CoemloentK,
r(010222 H010222 H010222 H010222 H010222 H010222 H010222 H010222 H010222 H010222 H010222 HO10222 H010222 H010222 H010222 H010222 H010222 H010222 H010222 H010222 H010222 H010222 do10222 H010222
n L L 0 0 4 7 1311.4007-51
HILLWE D
13114008-SI
HILL0051 D
1311-4004s1
HILL0053 D
1311-401DS1
HILL0054 D
1311-4011-S1
HILL0055 D
1311-4012-SI
HILLW57 D
13114013-S1
HILL0058 D
13114014-51
HILLW59 D
1311-4015S1
HlLLW65 D
1311-401641
HILL0088 D
1311-4017-S1
HILL0087 D
1311-4015S1
HILLW69D
13114019-Sl
HILL0070 D
1311-402DS1
HILL0071D
1311-4021-51
HILL0073 D
1311-4022-Sl
HI-74 D
1311-4023-S1
HILL0079 D
1311-4024-81
HILL0081D
13114025-51
HILL0082D
1311-402&SI
HILL0083 D
1311-4027.Sl
HILL0065 0
1311-4025Sl
HILLWWD
1311-4D20Sl
HILL0067 D
1311-4030-SI
0
00125
625
512
10
0
00125
625
552
10 551.79408
NIA
NIA
0
0 0125 500.0
6.25
880
10 660.1895
NIA
NIA
2
00125 M O O
6.25
52.8
10 527.68578
NIA
NIA
2
0 0125 M O O
025
52.4
10 524 20804
NIA
NIA
2
00125 5000 6 2 5
50.9
10 508.900oB
NIA
NIA
4
0 0125 5000 6 2 5
51.1
10 511.32918
NIA
NIA
4
0 0125 5000
625
52.4
I O 523 53991
NIA
NIA
4
0 0125 M O O
025
52.6
10 525.56529 NIA
NIA
8
00125 5000
625
51.9
10 51862455
NIA
NIA
a
00125 5000 625
50.2
10 501 60536
NIA
NIA
8
00125 5000
625
51.4
10 514.16988
NIA
NIA
16 00125 M O O
625
49.0
10 490.01757
NIA
NIA
16 00125 5.300
625
50.7
10 507 11023 NIA
NIA
16 00125 M O O
625
50.2
10 502.12373
NIA
NIA
24
00125 5000
625
55.8
10 557.78725
NIA
NIA
24 00125 5000
625
49.3
10 492.73887
NIA
NIA
24
00125 5000
625
52.2
10 521.8MM2
NIA
NIA
36 00125 M O O 6 2 5
52.0
10 519 77988
NIA
NIA
36 00125 5000 6 2 5
497
10 498.81929
NIA
NIA
38 00125 M O O 625
522
10 522.22917
NIA
NIA
48 00125 5000 625
505
10 505 05482
NIA
NIA
40 00125 5000 625
53.4
10 53439476
NIA
NIA
48
00125 5000
825
510
10 509.70915
NIA
NIA
NIA
Nons
NIA
None
NIA
None
NIA
NIA
None
NIA
None
NIA
None
NIA
NIA
NMe
NIA
None
NIA
NMB
NIA
NIA
NOM
NIA
None
NIA
Nons
NIA
NIA
Nons
NIA
None
NIA
None
NIA
NIA
None
NIA
None
NIA
None
NIA
NIA
None
NIA
None
NIA
Nom
MIA
NIA
None
MIA
None
NIA
PFOS AdroIbDexllb
- K,
:
2
/14
1
f-%e a i;
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
Page 1 of 7
BACK TO MAIN
Study 00-1311
Adrorpbon ffinetus
PFOS AdSoMDerorb
H010222 HILL0102 D
13114038-51
0
H010222 HILL0107D
1311403SS1
0
H010222 HILL0109 D
13114040-51
2
H010222 HILL0110D
13114041Sl
2
H010222 HILL0111 D
1311404241
2
H010222 HILL0113 D
13114043.51
4
H010222 HILL0114 D
13114046S1
4
H010222 HILLO115D
1311-4045-51
4
H010222 HILL0121D
13114045S1
8
H010222 HILL0122 D
13114047-Si
8
H010222 HILL0123 D
1311404&51
8
HO10222 HILL0125 D
13114049-Sl
16
H010222 HILL0126 D
13114050.S1
16
H010222 HILL0127 D
13114051-Sl
16
R010222 RUSH0037 D
13114052Sl
24
R010222 RUSH0038 D
1311405341
24
R010222 RUSHW39 D
1311454-51
24
R010222 RUSHOM1 D
1311-4055S1
36
R010222 RUSH0042D
1311405ES1
36
RO10222 RUSHOM3D 311-4057-S1(Pointlhmrm our 36
R010222 RUSH0045 D
1311-4055S1
48
R010222 RUSH0048 D
13114M9Si
40
R010222 RUSH0051 D
1311-406081
48
-V.
- C.
I
2
r P
i
ii f
i
i 1E
E
j
i
: 8
j t
c 1 LIL.
00125 5000 6 2 5
0 0125 500 0 6 25
0 0125 SWO 6 25
00125 m o o 6 25
0 0125 M o o 6 25
0 0125 Moo 6 25
0 0125 M o o 6 25
0 0125 500 0 6 25
0.0125 500 0 6 25
0.0125 5WO 6 25
0.0125 5030 6 25
0 0125 5W 0 6 25
0 0125 MO 0 6 25
0 0125 5WO 6 25
0 0125 Moo 6 25
0 0125 5WO
6 25
0 0125 Moo 6 25
00125 500 0 6 25
0 0125 500 0 6 25
0 0125 500 0 6 25
0 0125 5000 6 25
0 0125 S W O
6 25
0 0125 5W 0 6 25
0 0125 500 0 8 25
ICalculation of dlstnbuUOn Coemoent. K.
366 33.0 28.9 11 7 10.4 11.3 11.5 9.9 10.2 13.6 11.2 12.9 9.5 87 10 4
11 3 10 1
1I 3
89
(18
o*
113
10.4
105
10 36577631 1677786125 2684474
10 33010608 2122924 33.96678
34.36
10 288.72178 2.64097775 42.25584
10 117.05089 4.766863875 76.58982
10 104.31161 4.948104875 79 13768
7772
10 112.87498 4.83406275 77.425
10 114.51078 4.81861525 77.09784
10 9828349 5.014206375 60.2273
79.W
10 101 64917 4.979385375 79.67017
10 135.62296 4.554713 72.87541
10 111.91357 4 851080375 ~1.61729 7486
10 129.49094 4.63136325 74.10181
10 9480544 5.064932 81.03891
10 86.89825 5.163771875 82.62035 8098
10 103 55901 4.955512375 79.2882
10 112.90206 4.83872425 77 41959
10 100.99263 4.987592125 79.80147 7817
10 113.48309 4.831461375 77 30338
10 89.29487 5.133814125 82.14103
10 87.70241 5.153719675 82.45952 8230
2Q a a 3 a 3 w a ~ o u D z D B
10 113.11806 483604925 77.37679
10 104 46575 4.944178125 79.10885
78.51
10 104.74724 4.9406595 79.05055
24919 24894 2.5035 2 4842 2.4873 2.5199 2 4914 2.4945 2.4971 2.4871 24893 2 4899 2 4967 24909 2 4868 2 4938 25087 2 4894 2 5097 25090 14914
24057 2 5228 24930
0 W2582898 0 00365374 0016462273 0 019063494 0017012975 0016890108 0020332124 0019617152 0013503133 0017413196 0 014364402 002139804 0023656115 0019243973 0017187085 0 019685775 0017102227 0 022908245 0 023421172
aJace%w
0017199516 0 018761883 0018919953
w e s t ounier 0 016293737
2 60% 2 60% 2 60% 2 60% 2 60% 2 60% 2 60% 2 60% 2 60% 2 60% 2 60% 2 60% 2 60% 2 60% 2 60%
2 60% 2.60% 2.60% 2.60% a.6~ 2 60%
2.60% 2.60%
9 9342243 14 052845 63 316435 73321131 65434519 64 961953 78 200479 75 450586 51 935128 66 97383 55 247701 82 300155 91 75429 74 015262 66 104172 7571452 65 777797 88 108635 90 08143
66 152214
72.769051(
Page 2 of 7
BACK TO MAIN
Sluudy Em1311
Adsorption Kinetics
PFOS AdsorblDasmb
5WO
625
500 0 625
R010222 RUSH0069D
1311407C-S1
2
0 0125 5000
625
R010222 RUSH0070D
13114071-51
2
0 0125 500 0 6 2 5
R010222 RUSH0071D
1311-4072.51
2
0 0125 5000
825
RO10222 RUSH0073D
1311-407%51
4
0 0125 5000
625
R010222 RUSH0074 D
1311-4074-51
4
0 0125 5000 6 2 5
R010222 RUSH0079D
1311407651
4
0 0125 5000 6 2 5
R010222 RUSH0081D
1311407551
8
0 0125 5000 6 2 5
R010222 RUSH0082D
13114077-Sl
8
0 0125 5000 6 2 5
R010222 RUSH0063D
1311-407as1
8
0 0125 5WO 825
R010222 RUSH0065D
1311407851
16 0 0125 500 0 6 2 5
R010222 RUSH0086D
13114080S1
16 0 0125 5000 6 2 5
R010222 RUSH0087D 114061-51(Point T h M out. 16 0 0125 500 0 625
R010222 RUSH0093D
1311-4082-51
24 00125 500 0 625
R010222 RUSH0094D
13114085S1
24
0 0125 5 W O
625
R010222 RUSHW95 D
13114084-Sl
24 0 0125 MO 0 625
R010222 RUSH0097D
13114086S1
36 0 0125 5000 6 2 5
R010222 RUSn0098D
13114086Sl
36 00125 500 0 625
ROl0222 RJSH0099D 11-4087-S1(Pant Thmwn O W . 36 0 0125 500 0 625
R010222 RUShOlOl D
1311408851
48 00125 5W 0 625
R010222 RUSHO1M.D
13114WS-Sl
48
00125 5W0
625
R010222 RUSH0107D
13114090-S1
48
00125 5000
625
K,
L_
f
2
i 1 P
g !e
1
1E L L A;$ A 25058
10
0001351513
k 198126
408
10 408 06493 1 149186375 16 3870'
26 91
24904 0 0 0 1 1 ~ 1 8
2 60% 1349301
2-55
10 26488843 2938894625 470223
2 5288 0 00436774
2 60% 16 87592
103
10 19279449 3840068875 614411
2 4966 0 007978026
2 60% 30 68471.
222
10 22239068 34701165 5552188
58 05
2 5099 0 00621688
260% 2391W91
21 I
10 21399507 3 57M81625 5720099
25022 0006676637
260% 2567937
101
10 200 94518 373818525 59 81096
2 4999 0 007441502
260% 2862116
208
10 20636687 3670414125 58 72683
59 63
2 4878 0 007149238
260% 2749706
1s5
10 195 19751 3810031125 eom05
2 5214 0 007741275
260% 2977413'
21s
10 21944298 3 50696275 56 1114
2 4999 0 006392737
26096 2458744'
213
10 21305622 358879725 5738876
58 74
24952 0008746948
260% 2594979
218
10 216 3487 3 54564125 56 73028
24921 00065782
2 60% 25 293071
181
10 180 50238 3 99372025 63 89952
24932 0008874371
260% 3413219
161
10 160 62727 3 989659125 83 a3455
63 87
25087 om794743
260% 3382593
y1
S4 u d J x 4 ' u ~ l L 1 p o u
aa36"""1O""I'c
a.ew.aAaa4Sl
1SS
10 19945437 3 756820375 60 10913
2 5006 0 007532387
260% 2897072
178
10 177 74809 4 026148875 E4 45038
62 92
2 5269 0 CO6968%9
260% 3449365
170
10 17900609 4 012423675 64 19878
2 5061 0 008944161
260% 34400691
155
10 15509654 431126825 6898029
25242 0011012187
2 60% 42 35456!
163
10 152 77563 4 215304625 67 44487
08 21
24981 0010386443
260% 3967095
8a.a
19 336.u6u-126Uz3
w a . w u a % w -Q-tesIder
260% 3U6Z97Z13S4l!
171
10 171 14436 4 1106955 65 77113
2 4967 0 00961255
171
10 17050029 4 118748375 6589994
65 01
25038 OW9848DB7
0 009716499
2 60% 37 107941
188
10 16824527 4 146924125 6535095
2 4910 0 W989488
2 60% 38 05723;
d
0 w
Page 3 of 7
BACK TO MAIN
Study EW-1311
PFOS AdSOlb/DBMrb
R010222 R010222 R010222 R010222 R010222 R010222 H010309 H010309 H010309 H010309 H010309 H010309 H010309 H010309 H010309 H010309 H010309 no10309 H0103W H010309 Ho10309 H010309 H010309 H010309
RUSH0121 D RUSH0122 D RUSH0123 D RUSH0125 D RUSH0126 D RUSH0127 D HILL0038 D HILLW37 D HILL0038 D HILL0040 D HILL0041 D
HILL0042 D
HILLW44 D HlLLW45 D HILL0050 D HILL0052 D HILL0053 D HILL0054 D
HILL0056 D
HILL0057 D
HILL0058 D
HILL0064 D HILL0065 D HILL0066 D
1311 4097 S1 1311 4098 S1 13114099-S1 1311-4100.Sl 13114101 S1 1311 4102-51 E0013114101Sl E00.13114104S1 EO013114105-S1 E00.131141CSSl E00-1311-4107-Sl E0013114108-S1 EW-13114109-Sl E001311-4110S1 E0013114111-S1 E00.13114112-S1 E00-13114113-Sl E0013114114-S1 EO0-1311-4115-Sl Em13114116-S1 EW-1311-411741 EW-13114118S1 E00.1311411BSl EW-13114120S I
a
L.
0
00125 5W 0
0
00125 500 0 625
112
10
0
00125 5W 0 625
313
10 313.08584 2.338427 37.38283
2
00125 5000
625
1 4 ~ 10 14754934 440563325 7049013
2
00125 5000
625
155
10 155 3989 4 30751375 68 92022
2
00125 5000
8 25
14 0
10 14039852 449-185 719203
4
00125 500 0 6 25 8 012285 10 8012285 52484b4375 8397543
4
00125 500 0 6 25
8 1696
10
81 696
54780 876806
4
00125 500 0 6 25 8 375534 10 83 75534 5 20305825 83 24893
8
00125 500 0 6 25 11 534113 10 11534113 4808235875 7893177
8
00125 5W 0 6 25 11512441 10 11512441 4810944875 76 97512
8
00125 5000 8 25 10 789985 10 10769985 4901251875 7642003
16 00125 500 0 6 25 5 573715 10 5573715 5553285625 8885257
18 00125 M O O 8 25 5 956354 10 5956354 550545575 8808729
18 00125 M O O 6 25 5468121 10 54 88121 5 566484875 89 03376
24 00125 5W0 6 25 5 848499 10 5848499 5543937625 88703
24 00125 500 0 6 25 5 788465 10 5788465 5526441875 8842307
24 00125 BO 0 6 25 7 103971 10 71M971 5362003625 8579208
36 00125 500 0 6 25 5 890369 10 5890369 5513703875 8821926
36 00125 M O O 6 25 6 081278 10 8081276 54898405 8783745
36 00125 5W 0 6 25 5 518164 10 5516184 55604795 8896767
48 00125 M O O 625 6353969 10 8353969 5455753875 8729208
48
00125 5 W O
625
6139254 10 61 39234 548259575 6772153
48 00125 M O O 625 6088331 10 6068331 5491458625 8780334
51 25 7044 8496 7744 8867 87.54 88.34 8783
c
P
i
25x2 24849 2.4887 2 4927 24999 2 4857 24917 24963 2 5085 2 4875 24927 2 4906 2 5083 25139 2 4928 2 4966 2.5180 2.4911 2.5065 2.5096 2 4936 25084 25358 2 4820
0 007119182 0 os839883 0 0029985e-l 0011978482 0 011080073 001268013 0 026289368 0035573915 0 024784404 0 016758628 0 01678459 0018238209 0039721512 0 036787557 0 040840432 000339739163304151
0 030299451 0 037345068 0035971662 0 040424838 0034230472 003521738 0 036460001
- %cc
- - Kr
s
d
5
I I
i
- i; eF jl 2 80%
2 80%
2 80%
280%
280%
280%
280%
2 80%
2 80%
2 80%
2 80%
2 80%
28wb
2 80%
2 80%
2 80%
2 80%
2 80%
2 80%
2 80%
2.80%
2 80%
0035302818
280%
260%
:
2
ii!
'5 42564! 4 428541 0 70922: 4278022 3S60026; 46WO4C 9304059: 127 0497 88 51572; 59 85224: 59 67353; 65 13646: 141 8623 131 3127 145 8586: 140 40361 135.4155; 108.2123: 133.37522 128.4702: 144 37442 122 2516s 1257763C 13021425
Page 4 of 7
Study EW-1311
LG,
Adsorption Kineuw Icablauon of Aa (adrophon % at m e I)to be proned ys bme
E.
f3
BACK TO MAIN
atculation of dishbution I
=F==
-Run R010314
13114127-S1
0
R010314 wsnc&wa 3ii-4128-Sl pantthmwnout"' 0
R010314 RUSH0045 D
1311-4129-51
0
R010314 RUSH0047.D
13114130-S1
2
R010314 RUSHW48.D
13114131-S1
2
R010314 RUSH0049.D
13114132-S1
2
R010314 RUSHW51.D
1311-4133-Sl
4
RO10314 RUSHW52.D
13114134-S1
4
R010314 RUSHW53.D
1311-4135-Sl
4
R010314
11-4138-51Pointthrownour" 8
R010314 RUSH0060D
13114137-51
8
R010314 RUSH0061 D
1311-4138-51
8
R010314 RUSHOW3 D
13114139-S1
16
R010314 R U S H W D
13114140-Sl
16
R010314 RUSH0065 D
13114141-51
18
R010314 RUSH0067 D
13114142-51
24
R010314 RUSH0068 D
1311-4143-51
24
R010314 RUSH0073 D
1311-4144-S1
24
R010314 RUSH0075 D
1311-4145.51
36
R010314 RUSHW76.D
1311-414681
36
R010314 RUSHW77.D
13114147-51
36
R010314 RUSH0079 D
1311-4148-51
48
R010314 RUSHW8O D
13114149-Sl
48
R010314 RUSH0081.D
13114150-Sl
48
00125 5000 825
00125 5 0 0 0
625
00125 5000 625
00125 5000 625
00125 M O O
625
00125 5000 6 2 5
00125 5W 0 625
00125 5000
625
00125 Moo 625
00125 500.0 6.25
0 0125 5 W . O
6.25
0 0125 500.0 6.25
0 0125 5w.o 6.25 0 0125 5wo 8.25
0 0125 5w.o 6 2 5
0 0125 500.0 8.25
0 0125 5w.o 6.25
0 0125 m.0 6 2 5
0 0125 5w.o 8.25
0 0125 5w.o 825
0 0125 500.0 6 2 5
0 0125 Mo.0 625
0.0125 5W.0 6.25
0.0125 Mo.0
6.25
370 4&a 273 243 21 9 250 225 233 237 4 22.8 23.2 20.7 20.4 21.0 204 21.3 20.7 195 192 190 201 20.0 20.2
10
10
-ZA80?4
10 27304294 283696325 4539141
10 243429 32071375 513142
10 21925888 3509264 5814822
10 24969091 3128863625 5006182
10 2248773 343903375 5502454
10 23320361 3334954875 5335928
10 23739043 3282519625 5252031
10
NIA
NIA
NIA
10 226.30806 3.39617425 54.33879
10 232.11374 3 34857825 53.57725
10 208.68992 3.668376 58.68202
10 203.85975 3.701753125 59.22805
10 209.76708 3 6279115 58.04858
10 204.22624 3.697172 59.15475
10 212.60589 3.592428875 57 47886
10 207.00305 3.682461875 58.59939
10 194.89952 3 813756 61 0201
10 19210652 38486685 61 5787
10 18995595 3875550625 8200681
10 201 23399 3 734575125 59 7532
10 2W.41683 3.744789325 5991663
10 201.72713 3.728410875 59.65457
3571 5251 5363 53.90 58.65 58.41 61.54 59.77
2526 25013 2 5058 25186 2 5W5 25058 25178 2 4991 2.5063 2.503 2.5161 2.5031 2.502 2.5051 2.5093 2.5228 2.4993 2.5021 25W7 2.5137 2.5048 2.5018 2.5064
0004153909 0 005258157 0006359818 0005011377 0006108378 000587958 0 W5532811
NIA 0.005943081 0.005733657 0.W7006628 0.007257527 O.OW903097 0 037214488 O.OW697774 0.007079099 0 007820553 0.00601137 0 008116468 0.W7409123 0.W7468825 0.W7374101
-No internalstandad 0.W7417263
1 30% 130% 130% 1 30% 130% 1 30% 1 30% 1 30% 1 30% 130% 13wb 130% 1 30% 130%
1 30% 130% 130% 1 30% 130% 1.30%
48 92167, 3854905 4698752 43 889071 42560081
NIA 45 71601 44 10505: 54 5125oj 55 82713' 53 106891 55 49606: 51 521333 54 454601 60 158101 81 62592t 62 434361 56 9932% 57.450961 56.723652
N 0 W
Page 5 of 7
Study E001311
Adsorpbon ffinebcd
t 7 - )CalculabonofA. (adrorptlon% a1bmeI) to be platfed vs f!m
BACK TO MAIN
ICaluJlabonof dislnbutlon Coement K.
PFOS AdroWCerort,
+ ablation of
I H010404exl HILL0040 D I H010404exl HILL0045.D
H010404exl hlLL0047D H0104040xl HlLL0048 D
I H010404s.4hlLL0049D H010404ext HILL0051.D
I HO10404exl HILL0052.D HO10404ext nlLLCQ53 0 h010404exl HILLOOSS D
Iti010404ext H1LL0060D H010404exl HILLWB1.D IH010404exl HILL0063.D
h010404exlHIL-0064 D 1HO104Men HILL0065 D
I H010404exlHILL0073D H010404exI HlLLW75D H010404exl HlLL0076.D IH010404exl HlLL0077.D H010404exl HlLLW79D H010404exlHILLWBO 0 HO1MC4exl HILL0081D
1311415as1 1311-4159-51 1311415051 13114161.Sl 13114162.51 1311-4163-S1 13114164-51 1311416551 13114168Sl 13114167 S1 i311-416asi 13114168-51 13114170-51 13114171-SI
13114174-51 13114175-S1 1311417ES1 13114177-S1 1311-4i7e-si 1311417951 1311-418051
a c
-1E+ . 00L 12i 5
0
00125
0
00125 5000
2
00125 5000
2
00125 5000
2
00125 5 w O
4
00125 5000
4
0 0125 5000
4
0 0125 5WO
8
0 0125 5000
8
0.0125 5 w O
8
0 0125 5000
16 0.0125 5000
16 0 0125 5000
16 0 0125 5000
24 0 0125 5WO
24 0.0125 5000
24 0.0125 5000
36 0.0125 5WO
36 0.0125 5000
36 0.0125 $030
48 00125 so00
48 00125 5000
48 00125 so00
6.25 625 625 625 625 625 625 625 625 625 625 625 625 625 625 625 625 625 625 625 625 625 625
40.0 <loo 400 400 <100 400 eo0 400 <loo 400 <to0 400 <IO0 <IO0 400 400 400 <IO0 400 -100 <I00 <loo <loo
2
-20
2
-20
2
e20
2
<20
2
c20
2
<20
2
c20
2
<20
2
<20
2
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2
r20
2
<20
2
c20
2
c20
2
<20
2
<20
2
<20
2
-20
2
<20
2
<20
2
<20
2
<20
2
`20
.= 86%
96% >86% > 96% ,86% ,9696 > 96% > 96% >86% > 86% ,>869%6%
96% > 96% ~96%
96% ,86% ~96% > 86% ,89665%
= 96%
>86% r90% ,8696 r86%
rm%
r86% .96%
2.4959 2.5021 2.5007 2.5137 2.4773 25149 2.4958 2.495 2.4831 2.4775 2.5107914
2.5165 2 5w7 2502 2.4099 2.4893 2.5139 2.4771 2.45603271
2.5205
c0.120 <0.120 40.120 4 120 a120 4.120 <0.120 co.120 c0.120 a120 <0.120 <00.120 ~0.120 s0.120 <0.120 4.120 4 120 <0.120 <0.120 c0.120 c0.120 a.120
<0.120
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
N/A
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA
Page 6 of 1
Study EW-1311
0
10 20
30 40 50
Tlme, hours
BACK TO MAIN
ICalwtatmnof disvibbon CoBffaenl. K.
PFOS AdrorWDerold
P
f
L
Page 7 of 7
EO^-1311
Tier 111: "Desorption Kinetics, One Concentration"
BACK TO MAIN
HOlOJO9 HOlOM9 ROlO309 R010309 R010309 H010311 H010309 H010309 H010309 ROlOM9 ROlD309 ROlO309 HOlOJll
H010309 H010309 R010M9 R0103W R010309 R010309 H010311 ti01033 H010309 R0103W R010309 ROlD309 HOlOJll rioio311 H010309 H0103W
R0103W R010309 H010311 HO10311
HiLL0106D HILL01360 RUSHW57D RUSHW93 D RUSH0135.D HILL0058D HILL0072.D HILL0107.D HlLL0137.D RUSHW58 D RUSHW94.D RUSHOl36.D HlLLW59.D
HlLL0080.D HiLLOl1O.D RUSHW36.D RUSHODBB D RUSHO1W.D RUSH01400 HILLO069.D HILLW81.0 HILLOlll.0 RUSHDM7.0 RUSHW7.D RUSHOlO1.0 HILL0036.D nlLLW7o.D HILLW82D HtLLO112.D hrbs h k s RUSHW8.D RUSHOl06.D HILL0037.D HILL0071.D
EW-13114028-53 EOLF13114028S4
1311402855 13114028% 13114028-57 EOC-1311-402bSa E00-1311403C-S2 EW-1311403C43 E00-13114030-S4 1311403C-S5 13114030-S6 13ii-403as7 E00-1311403C-S8
00-1311405852 EW-1311405853
1311405854 13114058S5 1311-405asg i3ii405as7 EW-13114058S8 EO~l3114059S2 E00-13114059-S3 1311405P54 1311405945 1311405PS6 EW-l311-4059-S7 EW1311405%S8 EW13114060-S2 EOC-131140-S3 13114060-54 1311.406OS5 1311406C-% EW1311406C-S7 EOC-lJll-4060-S8
4
00125 5WO
625 50505482 10
6
00125 MOO 625 50505482 10
8
00125 M O O
625 50505482 10
24 00125 5WO 625 50505482 10
32 0.0125 500.0 6.25 50.505482 10
48 0.0125 5 w O
6.25
50.5Oy182 10 505.05482 NIA
NIA
2
0.0125 MO.0
6.25 50.970915 10 509.70915 NIA
NIA
4
00125 5000 6.25 50970915 10 509.70915 NIA
NIA
6
00125 5W.O
6.25
50.970915 10 509.70915 NIA
NIA
8
0.0125 500.0
6.25 50.970915 10 509.70915 NIA
NIA
24 0.0125 W.0 8.25 50.970915 10 50970915 NIA
NIA
32 0.0125 . 5W.O 6.25 50.970915 10 509.30915 NIA
NIA
48 0.0125 500.0
6.25
50.970915
10 509.70915 NIA
NIA
2
0.0125 M0.0
6.25
11.311606 10 113.11606 48360493 77.37679
4
0.0125 5W.O
6.25
11.311606 10 113.11606 48360493 77.37679
6
0.0125 5W.O
6.25
11.311608 10 113.11MIB 4.8JgM93 77.37679
8
00125 M0.0 6.25
11.311606 10 113.11606 4.8360483 77.37679
24 0.0125 5W.O 6.25 11.311606 10 113.11606 4.8360493 77.37679
32 0.0125 M O O 625 11.311606 10 113.11606 4.8360493 77.37679
48 0.0125 SW.0 6.25 11.311606 10 113.11606 4.8360493 77,37679
2
0.0125 500.0 6.25
10.446575 10 104.4575 4.9441781 78.10685
4 0.0125 M0.0 6.25. 10.446575 10 104.46575 4.9441781 79.10685
6 0.0125 M O O 625 10M575 10 104.16575 4.9441781 79.1DM15
8
0.0125 M0.0
6.25
10446575 10 104.4575 4.9441781 79.10685
24 0.0125 500.0 6.25 10.446575 10 104.46575 49441781 79.10685
32 0.0125 5W.O 6.25 10446575 10 104.46575 4.9441781 79.10685
48 0.0125 5W.O 6.25 10.446575 10 104.46575 4 9441781 79.10685
2
00125 5W.O
6.25
10474724 10 104.74724 4.9406595 7905055
4 0.0125 561.0 6.25 10.474724 10 104.74724 4.9406595 79.05055
6
0.0125 5W.O
6.25
10.474724 10 104.74724 49406545 79.05055
8
0.0125 5W.O 6.25
10.474724 10 104.74724 4.9406595 79.05055
24 0.0125 500.0 6.25 10.474724 10 104.74724 49406595 79.05055
32 0.0125 5W.O 6.25 10.474724 10 104.74724 4.9406595 79.05055
48 0.0125 5000 6.25 10.474724 10 104.74724 4.9406595 79.05055
Page 1 or6
00-1311
Tier 111: "DesorDtion Kinetics, One C
BACK TO MAIN
9
ca
H010309 HILL01ffi.D
EOC-I~I-~OZCSJ
NIA 10390455 2
HOlO309 HILLO136.D
~ ~ 1 3 1 1 4 0 2 a ~ 4 NIA 12302109 2
R010309 RUSHM57.D
1311-4028-S5
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103
2
R010309 RUSH0093D
1311-402856
NIA
99
2
R010309 RUSH0135 D
1311402ES7
NIA
99
2
H010311 HILL0053.D
EW-1311-4028-SB
NIA
123
2
H010309
HILL0072.0
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HOlO309 HILLOlO7.D
EW-13114030.53
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HOl03W
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R010309 RUSHW58.D
1311403O-S5
NIA
62
2
ROlO309 RUSH0094.D
1311-403as6
NIA
94
2
R010309 RUSH0136.D
1311-403CJ.87
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104
2
no10311
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2
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1311-4058-S4
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96
2
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1311405ES5
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2
R010309 RUSH0100 D
1311405ES6
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R010309 RUSH0140D
1311-4058S7
2 4857
27 7
2
H010311 HlLLWB9 D
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2
HOlO309 HILL0081D
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H010309
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E00-1311-4059.S3 2.5226 5.345841
2
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13114059.54
2.5226
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1311-4059-55
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2
R010309 RUSH0101 D
13114059-56
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E00-13114059-S7 2.5226
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2
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13114ffias5
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2.4930
27.2
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H010311 HlLLM37D
EW-13lt4DMI-Sl 24930
245
2
H010311 HILL0071D
EW-1311-40WS8
249%
257
2
20.781 24.606 20.673 19.813 19.770 24 563 21.511 20 164 16.602 12.m 18.W 20 827 20863
i9m
7457 19178
54 lss
59.170 55.331 59.581 21.766 10.692 19.297
54.145 55.953 $2.481 22.987 27 162 22.873
NIA 65.707 54 492 48993 51495
0 0125 OOt25 0 0125 0 0125 0.0125 00125 0.0125 0 0125 0.0125 0.0125 0.0125 00125 0 0125
0.0125 0.0125 0.0125 0.0125 00125 0.0125 0.0125 0.0125
0 0125 0.0125 0.0125 00125 0.0125 0.0125 0.0125 0 0125 0.0125 0.0125 0.0125 0.0125 0.0125
026 031 028 025 025 031 027 025 021 018 024 028 028
024
009 024 068 074 069 074 027 013 024 066 070 063 029 034 029 NIA 082 068 061 OM
NIA NlA NIA NIA NIA NIA NIA NIA NIA WA NIA NlA NIA
490 193 496 1401 1529 1430 1540 550 210 488 1389 1415 1276 581 687 579 NIA 1662 1378 1240 1303
NIA NIA NIA NIA NIA NIA MA NIA NIA NIA NIA NIA NIA
009596u5 0255888272 0096417966 003086741 0027851852 0030133047 0027624789 0085092813 01783M1505 0096614882 0031242717 0030073337 003%im 00803C6522 006794W86 0081629271
NIA 0025147447 0031354873 0035436552 0033471788
NIA
5.18 3 47 4.92 14.77 14.41 13.15 11.41
0.047134
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1311-4089.S6
24
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0.0125 00125 0.0125 0 0125 0.0125 0.0125 0.0125 00125 0.0125 0.0125 0.0125 0 0125 0.0125 0.0125 0.0125 0 0125 0.0125 0 0125 0.0125 0.0125
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paonsh
- - C.
1
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$ 3c
BOO
M O O 6.25
r o o 6.25
NO 0 6.25
SWO
6.25
SWO
6.25
5wO
6.25
MOO
6.25
5wO
6.25
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6.25
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6.25
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6.25
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6.25
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6.25
500 0 6.25
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6.25
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5 W O 6.25
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6.25
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6.25
MOO
6.25
500 0 6.25
ma 6.25
5wo
6.25
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6.25
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6.25
Moo 6.25
MOO 6.25
MOO 625
MOO 6.25
MOO 6.25
MOO 6.25
5wO 6.25
50011 6.25
- MOO 6.25
5w 0 6.25
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6.25
17.1144436 17.1144436 17.114436 17.114436 17.114436 17.114436 17.050029 11.050029 17.050029 17.05W29 17.050029 17.0Mo29 17.050029 16.824527 16.824527 16.824527 16 a24527 16.824527 16.824527 16.024527
6.353969 6 353969 6.353969 6353969 6 3.53969 6.353969 6.353969 6.139234 8.139234 6 139m 6.139234 6.139234 6.139234 6.139234 6.068331 8.068331
6.068331 6.068331 6.068331 6.088331 8.068331
10 171.14436 10 171.14436 10 171,144436 10 171.14436 10 171.14436 10 171 14438 10 1705W29 10 170.Mo29 10 17050029 10 17050029 10 170.Mo29 10 170.50028 10 170.50029 10 16824527 10 16824527 10 16824527
i o 16.8 24527
10 168.24527
-10 16824527 10 168.24527
10 63.53969 10 63.53969
10 63.53969 10 63.53969 10 63.53969 10 63.53969 10 63.53869 10 61.39234 to 61.39234 10 61.39134 10 61 39234 10 61.39234 10 61.39234 10 61.39234 10 60.68331 10 60 60331 10 60.68331
10 60.68331 10 60.68331
-10 80.68331 10 60.68331
4.1106955 65.77113 4.11069~6~ s n i i 3 4.1106955 65.77113 4.1106955 65.77113 4.1106955 65.17113 4.1106955 65.77113 4.1187464 65.89994 4.1187464 6589994 4,1187464 65.89994 4.1187464 65.89994 4.1787464 65.89994 4 1187464 65 89994 4.1187464 65.89994 4 1469341 66.55095 4.1469341 66.35095 4.1469341 66.35095 4.1469341 ffi.mss 4.1469341 66.55095 4.1469341 66.35095 4 14669341 66 35095
5 4557539 87 29206 5 4557539 87 29206 5 4557539 87 29206 5 4551539 87 29206 5.4551539 87.292MT 5.4551539 87.29206
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BACK TO MAIN
Page 3 Of 6
BACK TO MAIN
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EW-1311
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Page 6 of 8
Study EW-1311
Tier 111: "AdsorptionlDssorption Isotherms"
I
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Page 1 01 16
Adsorptbn
Adsorption Isotherms
BACK TO MAIN
R010329a R010329s R010329a R010329s R010329a R010329. R010329a R010329a R010329a R010329a R010329a R010329a R010329a
R010329a R010329a R010329b R010329b R010329b R010329b R010329b R010329b RO10329b R010329b R010329b
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2
NIA
10 1837.31918
10 1882.52521
10 1565.51161
10 3595.21967
10
NIA
10 35165502
100 21170.5882
1 w 25342.8747
20741.2664
63.66312
68 302058
2 65 5635
2 270.25587
2 262 215634
2 285.940358
10 831.7632
10 778.17175
10 779.50456
10 1795.32634
10 1871.04255
10 171879339
1W 10122.5113
- 1 w 10329.5wB 1 w 10926.5554
2 29%781( 2.28422522
2.06556833
2 96471148 2.7-14
NIA 3.2M18461 3.22076824 3.19465629 3.55572543
NIA 3.54611682 4.32573292 4.40385588 431683527
1.80388792 1.83443379 1.81679459 2.43177514 2.45058107 2.45627548 2.92W1014 2.89107546 2.89161866 3.2541434 3.27208366 3.23471803 4.00528827 4.01407933 4.03848327
1.8183721 2 44621055 2.9W%809 3.253&4837 4.01928362
2.492 0.0125 1.542893 0.186336
2.4698 0.0125 1.926378 0284741
2 . 5 W 0.0125 5.380307 0.730807
2.5154 0.0125 6699682 0.838828
25162 0.0125 NIA
NIA
2.4949 0 0125 15.84573 1.199912
2.5008 0.0125 16.68204 1.222249
2 521 0.0125 17.0294 1231199
2.4853 0.0125 32.21332 1.508035
2.5132 0.0125 NIA
NIA
2.4976 0.0125 32.4484 1.511193
2.5007 0.0125 144.1067 2.158684
---- 2 5287 2.5065 2.4926
0.0125 ~~
00125 0.0125
121.8864 2.065955 1459143 2.164098
2.187284 0.339905
2.4897 0.0125 2.184972 0.339446 0 338176
2.5098 0.0125 2.163801 0.335177
2517 0.0125 8.590307 0.934W9
2.5023 0.0125 8.581027 0 933539 0,934025
2.4912 0.0125 8.6W572 0.934527
2.462 0.0125 20.99223 1.322059
2.5173 0.0125 20.96407 1.321476 1.322114
2.5088 0.0125 21 02846 1.322807
2.5042 0.0125 40.95458 1,612302
2.4816 0.0125 40.94615 1612213 1.614521
2.4892 0.0125 41.59573 1.619049
2 4672 0.0125 2W.4126 2.301927
---- 2.5011 0.0125 198.2653 2 297247 2.296913 2 4959 0.0125 lS1.6862 2.291585
Page 2 of 16
Study EOC-1311
N N 0
BACK TO MAIN
0.3015M 0.889584 1.248259 1.558925 2.211593
S l u gEm1311
tG,
Adsorption Irolhemu
BACK TO MAIN
IROl0312 R010312 R010312 R010312 R010312 ROlO312 RD10312 R010312 H01M05mt HOlM051nl H010405ml ROlM12 R01M12
R010412 RO10412 ROlM12 R010412 R01M12 R01M12 ROlM12 R010412 ROlM12 ROlMl2 R010412 ROlM12 R010412 R010412
RUSH0075.D RUSHW78D RUSHW78 D RUSH0079 D RUSH0080D R U S H WD RUSHDOB7D RUSHWE8 D HILL0059 D HlLLDOMl D HlLLOOBl D RUSH0032 D RUSH0033 D RUSHO0U.D
RUSHW4O.D RUSHOM1 D RUSHOo46.D RUSHOM8 D
RUSHOC(9.D RUSHW5O.D RUSH0052 D RUSHOD53.D RUSH0054 D RUSHW6C.D RUSH0ffil.D RUSHOffi2.D RUSHOOB4.D RUSHOffi5.D RUSH006B.D
1311-5113 1311-5114 1311-5115 1311-5116 1311-5117 1311-5118 1311-5119 1311-5120 1311-5121 1311-5122 1311-5123 1311-5124 1311-5125 1311-5126 1311-5130 1311-5131 1311-5132 1311-5133 1311-5134 1311-5135 1311-5136 1311-5137 1311-5138 1311-5139 1311-5140 1311-5141 1311-5142 1311-5143 1311-5144
1 0
124 789652 2 OS310896
f 3
A
5W
61 1
2 122.284228 208737065
2522 00125 1872104 027233
5W
66.1
2 132.259912 2.12142823
2 5138 0.0125 1.828607 0.26212
2wo
324.3
2 648 68341 2.81203279
2 5025 00125 6 749633 0.829293
2wo
337.1
2 674 288876 2 828846
2 4887 0.0125 6.858653 0.823386
2wo
303.4
2 806.715152 2 782984M
2 4952 0.0125 6.919826 0.843WS
5wo
2N.5
10 2005 16531 3 30215018
2 4949 0.0125 1500478 1.17623
5wo
177.7
10 1777,00509 3.24968867
2 4973 0.0125 16.1324 1 207699
5ow
1woo
2046 437.953211
10 2M6.33186 3.31097802 10 4379.53237 3.64142774
2 4971 0 0125 14.78549 1.169836 2 5098 0.0125 27.99261 1.447043
1WW 503.530248 10 5035 30248 3 10202556
2 5067 0.0125 24.75714 1.3937
l o w 0 423.310937 10 4233.70937 3.62672104
2 4949 0.0125 28 89039 1.460753
5WW 235.149545 100 23514 9548 437131414
2 4978 0.0125 132.5419 2.122353
- 5WW 5wW 5w
235.642534 230 BMY8
2 1 842783
-1W 23564.2534 4.37225368 1W 23080.4348 4.363243% 2 49685526 1.89622989
2 4892 2507 2.4862
0.0125 0.0125 0.0125
132.7522 2.123242 ~~ 134222 2 127824 2.26407 0.35469
5w
18.05711 2 36114276 1.55187891 1,65237912 25069 0.0125 2.313045 0.3M184 0.35713
5w
25.248348 2 50.4926% 1.70322856
2.4965 0.0125 2.250687 0352315
2wo 112.2340% 2 224.468112 2.35115485
2 4891 0.0125 8.916536 0.950196
Mw
133.554484 2 267.108968 2 42668847 2.40381289 2.4995 0.0125 8.6SS188 0.937828 0.940441
2000 135.817446 2 271.634892 2.43398556
2.5191 0.0125 8.578303 0.9333
5003 85.165w2 10 851.85002 2.93038314
2 . 4 9 ~ 1 0.0125 20.75985 1.317224
5wo 76.528101 10 785.28101 2.88382094 2.89787562 2.5107 0.0125 21.08336 132394 1.322587
5wo 75.760492 10 757.60492 2.87944279
2.4999 0.0125 21.21282 1.328598
(WOO 157.011945 10 1570.41946 3.1oM11567
2.5018 0.0125 42.12095 1.624498
10033 155.224502 10 155224502 3.19096028 3.19196961 25128 0.0125 4202361 1.623493 1.824959 '
lOOW 1Y5015M 10 1545.01564 3.18693288
2.4954 0.0125 42.35285 1626883
SOW0 109 207528 1W 10920.7528 4.03625258
24892 0.0125 195.244 2.2927%
sow0 99.477125 1W 9947.7125 3.99772323 4.w6738 2.4837 0.0125 2015757 23M438 2300469
MWD 86.43578 1W W3.578 3.9842382
2.5M1 00125 201 4517 2304171
N
!2
Page 4 of 16
BACK TO MAIN
Sludy EW-1311
R010412 R010412 R01M12 R010412 R010412 R010412 I7010412 RO10412 H010405ml H010405ml H010405ml H010329 H010329 H010329
HOIO329 H010329 H010329 H010329 H010329 H010329 H010329 H010329 H010329 H010329 H010329 H010329 H010329
RUSH0077 D RUSH0078D RUSHW84 D RUSH0085 D RUSH0088 D RUSH0086 D RUSH0089 D RUSH00900 HILLW63 D HILL0064 D HILLW65 D HILLOlMD HIL~~~ L01.0.5D~ HILLQI06.D HILLO116.D HILL0117.D HILLO118.D HILL0120.D HILLOl21.D HILL0122.D HILLO124.D HlU0129.D HILL0130.D HILL0132D HILL0133 D HILLO134.D HILLO136.D HILLO14I.D HlLL0142.D
1311-5149 1311-5150 1311-5151 1311-5152 1311-5153 1311.5154 1311-5155 1311-5156 1311-5157 1311-5158 1311-5159 1311-5160 1311-5161 1311.5162
1311-5166 13114167 1311-5168 13114169 1311-5170 1311-5171
1311-5172 1311-5173 1311-5174 1311-5175 1311-5176
1311-5177 1311-5176 13114179 1311-5180
'1I?dTnz 104604
500 500 2m 2000 20w
5w0 5000 50W
1o m lorn 1 om
50000 50w0 5ww
500
m
530 2w0 2000
2w0 50w 50W 5w0 10000 10w0 10w0 50000
50000 5w00
90.0833% 2 180.166796
152.507688 2 305.015776
470.275971 2 940.551942
481.768175 2 483.53635
461.55zms 2 923 10557
259.294489 10 2592.94489
273.244W 10 2732.44648
260.405148 10 2804.05118
58.237271 100 5623.7274
86 08401 1 w 8606.401
87 843583 1W 8784 3553
269.0021M 1W 28900.2164
- 258.39539
268.033394 79696386
100 25839.539 1W 28603.3394
2 159.392730
93 228986 2 186.457972
94.%0207 2 189.920414
344862671 2 680 725348
340.759668 2 681.519332
365.047259 2 730.094518
203 797939 10 2037.97939
ia7.7001~ 10 1877.001U
194.510278 10 1945.10276
371.3231% 10 3713231%
371.I74203 10 3711.74203
389 7 0 8 m 10 3897.08738
183.256858 100 16326.6656
178.291848 1 w 17629.1848
179.600507 100 17960.0507
2.25561470 2.4843223 2 97338278 2.9838681 2.96525142 3.41379329 3.43655166 3 41584857 3.75002428 3.93492249 3.94370994 4.46090109 4.41228478 442493616 2.20246853 2.270580% 227857165 2.83867619 2.83347818 2.88337909 3.30919979 327346481 3.28894255
3 56975208
3.56957778
3.59074014 4.26308346
4.25113149 4.25430756
2.2505403a 2.845ina 3.29053565
3.57889 4.25617417
2.4762 2.5142 2,4733 2.4861
2.5369 2.49% 2.468 2.4932 2.4859 2.4762 2.4615 2.4851 2.4832 2 5025
2.4857 2.4859 2.483 2.5149 2.5171 2.M98 2.~183 2.5071 2.481 2.4972
2.4623
2.m 2.479 2.483 2.4772
0 0125 161453
0 0125 0 96841
00125 5 35442
0 0125 5 20710
00125 530197
0 0125 12 0574
0 0125 113924
0 0125 12 0124
0 0125 22 W M
00125 701920
0 0125 8 12353
0 0125 106086
-- 0 0125 0.0125 0.0125
121619 116866
171283
0.0125 157660
0.0125 156101
00125 6 51255
0.0125 6 54761
0.0125 6 32473
0.0125 14 7024
0.0125 15 5707
0.0125 153914
0.0125 314690
0.0125 31 86%
0.0125 30 5MI
0 0125 159 708
0.0125 161955
0.0125 161674
206046
101349 728713 718596 724438 081256 056617 07483 342531 816268 787002 025659
085004 06769
233715 197722 1934Mi 813752 816063 601042 167391 19231 18726 497804 500585 464568 203327 209395 20e641
0208261 0610292 1182327 1494279 2 207121
N N N
Page 5 of 16
BACK TO MAIN
StUdy EW-1311
m 3
5s. ---+--- CD
3
? I h010412 I, do10412 h010412 do10412 I A010.41.2
HLL0032 D
AlLL0033D hir-0035D dlLLW36 D klL. L.O.O.l7 D.
1311-5185
1311-5186 1311.5187-
1311-5188 1.311-5189
~~
500
<loo
2
NIA
5w
9100
2
NIA
2wo
<loo
2
N..I.A.
2ow
<loo
2
N~IA.
NIA
zwo
~~
< i.o~n
2
NIA
NIA
...
.. .
NIA
2.5291 0.0125 NIA
NIA
24698 0.0125 NIA
NIA
7 5 9 m nor75 N...I.A.
NIA
- - 2.4888 0.0125 NIA
NIA
21117 o m x . .N..IA N.-U..
H01M12 H010412 H01M12 H010329 H010329 H010329 H010329 H010329 H010329
H01M12
HILL0039 D HILL0240 D HILL0045 D HILL0184 D
HILL0185 D HILL0170 D HILL0172 D HILL0173 D
HILL0174 D
HILLOM7 0 HILL0048 D HILL0049 D HILL0051 D HILL0052 D HILL0053.D
1311-5190 1311-5191 1311-5192 1311-5193 1311-5194 1311-5195 1311-5196 1311-5197 1311-5198
1311-5202 1311-5203 1311-5204 1311-5205 1311-5206
1311-5207
5000
11.327739 10 11327739 205414323
5000
14.7M513 10 147 04513 2 16745065
5wo
< 10.0
10
WA
NA
10000 587.353982 10 5873 53982 3 78889992
1ooW 375.628338 10 3756 28336 3 57475835
lOwD 624.651539 10 624651539 379563781
50000 2 5 4 0 m 100 2540 0564 3 40484338
MMO 50000
5w
- 16.569279
20475802 < 10.0
100 16589278 321982751 1 w 20475802 3 31124092
NIA
NIA
5w
<loo
2
NA
NIA
NIA
5w
< 10.0
2
NIA
MA
2wo
<loo
2
NIA
hlA
2000
<loo
2
WA
NIA
NIA
2000
< 10.0
2
NIA
NIA
2.4922 0.0125 2451008 1.389345
2 4678 2.4617
0.0125 24.58138 1.390806
0.0125 . N..IA
N..IA.
2.5128 00125 20 5272 1.31233
2 4925 0.0125 31.31252 1.495718
2.5288 0.0125 18.55515 1.268465
2.-
0.0125 2381062 2 373806
- 2.5187
2.4766 2 5318
0 0125 0.0125
0.0125
240.1015 2.380395
242 0275 2.383865
NIA
NIA
2.4881 0.0125 NIA
NIA
NIA
2.5256 0 0125 NIA
NIA
2.5299 0 0125 NIA
NIA
2.5129 0.0125 NIA
NIA
NIA
2.5416 0.0125 NIA
NIA
HILLGO59 D HILL0OW.D
1311-5208 1311-5209
5000 5wO
14126747 11.42MKIl
10 14126747 2.15w4217
2.507 0.0125 2422583 1.384279
10 11420901 205770037 210587127 2.5432 00125 24.01399 1.3804M 1.382372
HILL0061D
1311-5210
5wo
<10.0
10
NIA
NIA
2.5407 0.0125 NIA
NIA
HlLL0063.D HILLWM D
1311-5211 1311-5212
10000 low0
14879531 23895092
10 148.79531 2.17258924
2.5184 00125 48.89615 1.689275
10 238.95092 2.37830871 2.31312921 24757 0.0125 49,28429 1.692708 1889476
HILL0065.D
1311-5213
10000 21461872 10 24461872 2.38848969
2.5102 0.0125 48.57871 1.688446
H010329 HILL0204 D
1311-5214
5OwO 8468139 100 846.8139 2.92778788
2.537 0.0125 242.1818 2.384141
H010329 HILL0205.D
1311-5215
50000 7.309995 100 730.4965 2 86391708 2.89288055 24996 0.0125 246.3844 2.391613 2306901
H010329 HILL0206 D
1311-5216
50004
7707909 100 770.7909 2888938%
2.5362 0 0125 242 6327 2 384949
N
hw )
Paga60ll6
Slvdy EW-1311
LG,
r
Adsom1
Adsorption Isotherms, Clay
BACK TO MAIN
~i T . 1 b B
5
0
1
2
3
4
5
Loo cm
Adsorptionbothsms, Sandy Loam
0
1
2
1
.
5
L4-q
N N P
0
,
2
1
4
1
LW-3
I
S W E00-13H
BACK TO MAIN
day loam rmdyloam sediment sludge
-1.3762 -1 0368 -2.0261
0 04205329 008185441 0.00941673 0.05675448
0.8407 0.8288 0.8885 1.2581
1.189485 1.206564 1.01 1634 0.794849
P a p 8 of 16
BACK TO MAIN
PFOS AdolrM)srolb e"-
EW-1311-5005
--" _--- EW1311-5006 ._.I L"VIIII-*MI
E00-1311-5W8
E00-1311-5009
EW-1311-5010
E00-1311-5011
EW-1311-5012
E00-1311-5013
EOO-1311-5O14
E00-1311.5015
1311-5016
1311-5017
_ _ 1311-5018
E00-1311-5022
.. .._ .- ..
. -
E00-1311-5023
R010312
RUSHW95.D
10.7
2
21 351226
NIA
EW-1311-5024
R010312
RUSHO1OO.D
12.0
2
23.972482
NIA
1311.5025
R010312
RUSHO102.D
277
2
55.333452
NIA
1311-5026
R010312
RUSHO103.D
28.9
2
57.871888
NIA
1311-5027
R010312
RUSH0104 D
23.3
2
466785%
NIA
1311-5028
R010312
RUSHOlffiD
56.0
2 111.971874
NIA
1311-5029
R010312
RUSH0107 D
31.7
2
63.459182
NIA
1311-5030
R010312
RUSHOtO8D
57.8
2 115.682498
NIA
1311-5031
ROlOJlZ
RUSH0114 D
657
2 131.442794
NIA
1311-5032
R010312
RUSHOHSD
66.9
2
133.71168
NIA
1311-5033
RO10312
RUSH0116.D
71.2
2 142.402456
NIA
1311.5034
R010312
RUSHOll8D
144.7
2 289416628
NIA
1311-5035
ROl(I112
RUSH0119D
235 1
2 470.189975
NIA
1311-5036
R010312
RUSH0120 D
189.2
2 378.41WW
Page 9 of 16
SludyEW-1311
d
3
3
CD 3
B
h
-. .-. . . .
BACK TO MAIN
PFOS AdorrMkscd
*e,.
1311-5059 1311-5060 1311-5061 1311-5062 1311-5063 1311-5oM 1311-5065 1311-5066 1311-5067 1311-5068 1311-5069 1311-5070 1311.5071 1311-5072
1 I R010312
H010313 HO10313 H010313
H010313 H010313 H010313 H010313 H010313 ROlM02a R010402a R010402a
RUSH013l.D RUSH0132.D RUSHO13I.D
HILL0031 D HILL0032.D HILL0034 0
HILLW35.D HILL0036 D HlLL0038.D HILLW39.D HILL0040 D RUSH0041.D RUSHW42.D RUSHW43.D
11.9 29.0
~
114.7 120.2 1882 438.9 417.8 333.4 450.789701 305.703229 339.490963
1I 2
23 898% 1.37@379002 1.493715829 5.27526343 0.72224415 0.72042173
2
57922146 1.762044644
5.14172636 0.71110898
133.222922 2.18204053738397535 2.111184944 20.8076080072426 11.3.1381290552344 1.31921W-4
106.891336 2.028942505
20.8894009 1.31992599
229.32978 2.360460454
5 0 . ~ n 4 5 4 1.70712497
240.421642 2.380973559 2.439N4249 51.5790063 1.71247297 170871815
376.338572 2.575578733
50.8811005 1.7065565
877.85928 2.943421904
98 176486 1.99200748
835 577968 2.migffi98 2 . 8 9 6 4 5 ~ 9~7.403101 1.98857278 1.99m-w
666.72403 2.823946108
1W.191999 2.W833M
10 4507.89701 3.653973985
475 813128 2 6774W2
10 3057.03229 3 4853W026 3.556700752 480.602804 2.6817863 2.67754225
10 3394.90983 3.550828244
471.415624 2 67340397
Paps 10of 16
S l u e Mo-1311
tG,
Adsomtion Irolhsmu
BACK TO MAIN
1311-5095 1311.50% 1311-5097 1311-5096 1311-5099 1311-51W 1311-5101 1311-5102 1311-5103 1311-51M 1311-5105 13115106 1311-5107 1311-5108
H010313 H010313 H010313 H010313 H010313 H010313 H010313 H010313 R010402a R01M02a RO1M02r ROlM02s R01M02a ROlM02a
HILL0059 D HILLW60 D HILL0062 D HILLOM3 D HlLLW64 D HILL0066 D HILLW67 D HILL0066 D RUSHW53D RUSH0054 D RUSHW55 D RUSH0057 D RUSH0062 0 RUSH0063 D
35.2 34.6 127.1 126.1 135.5 334 7 327.4 342.0 121.844173 127.233095 133.630265 67 611262 62.727351 64.309464
2
70.3406M
2
69.266062
2
254.199%
2
252.13575
2 271.063566
2 669.374634
2
654.76009
2
664.0591
10 1216.44173
10 1272.33095
10 1356.30265
1W 67ai.1262
- 100 6272.7361
1W 64M.9464
1.847206W3 1.868763026 4 52E40225
l.MOM5678
4.74854221
2.405175476
16.9354277
2.401634428 2.4132936% 17.4863271
2.433071163
17.6696256
2 82566938
39.9532215
2.616095465 2.62561949 41 6449404
2.835W5625
41.8259395
3 0656M765
76.7442264
3.104M1W92 3 105435562 60.2732144
3.12590463
60.115345
3831301827
165 079747
3.797457017 3.651545057 373.362359
3
- 925676326
369
866401
0.65575315
0.6765w3 1.27729005 1.2426988 1.24722735 1.6015516 161956225 1.6214457 189621673 1.9M57065 190371571 2.5635757 2.57213053 2.566M488
0.66527269 1.25574133 1.61416658 1.8015017 2.56791704
Paps 11Of 16
S W EO01311
tG,
h
BACK TO MAIN
1311-5131 1311-5132 1311-5133 1311-5134 1311-5135 1311-5136 1311-5137 1311-5138 1311-5139 1311-5140 1311-5141 1311-5142 1311-5143 1311-5144
lubeb m b R010402s ROlMOZs R010402a R010402a R010402a R010402a R010402a R010402s R010402a R010402a ROlMOZa RO10402s ROlMZa
RUSHW7O.D RUSH0076 D RUSHW77.D RUSHW78.D RUSH0080 D RUSHOO8l.D RUSHOO82.D RUSHOO64.D RUSHW8S.D RUSHW9O.D RUSH0092.D RUSH0093.D RUSHOW4.D
26.89W3 107.113316 111.287815 108.223884 289.673014 249.672867 276.014812 105377362 114.123143 103.239784 491 927102 509 061312 513 WlM5
0
NIA 1.727265272 NIA
NIA 0.72885081
53.38wS 1727379058
5.35156682 0.72848095
214.226632 2 33087346
21 1183248 1.32465947
2 m i w 2.3474n6ii 2.3moicai 20.~80371iai27703( 1.31674988
212.447768 2.327252173
20.550379 1312819M
579 746028 2.76mn82
48.9%4753 1.68975691
2 499 345734 2.698401344 2.734533837 50.4478992 1.70284309 1 69796871
2 552 029624 2.741862364
50.26968 1.70130612
10 1053.77362 3.022741322
100.104259 2.WM5255
10 1141.23143 3057373724 3031322711 99.9198468 1.99965176 2.W077455
10 1032.39784 3.013847087
100 5158 2.00223433
10 4919.27102 3.69190075
463.787518 2.66831908
10 5090.61312 3.708T1W92 3.70293156 475.033485 2 67672422 2.87441332
10 5130.07645 3.710123837
478 846891 2.68019667
Page 12 of 16
StUdv EW-1311
LG,
BACK TO MAIN
1311-5180
R010402b
RUSH0142 D
1091215
100 7091 215 3850720653
254 718956 2 56195595
N 0 0
Page 13of 16
StWEW-1311
BACK TO MAIN
PFOS Adosl.blOarorb c=-
1311-5203 1311-5204 1311-5205 1311-5206 1311-5207 1311-5208 1311-5209 1311-5210 1311-5211 1311-5212 1311-5213 1311-5214 1311-5215 1311-5216
ROlMOZb R010402b R010402b ROlMOZb
H010402s HO10402s HOlMO2a HOlMOZa H010402a HOlMOZa H010402a
H010402a H010402a H010402a
RUSH0153 D RUSH0154.D RUSH0158.D RUSH0157.D HIlL0032.D HILL00340 HIlLOO35.D HIU00J6.D HILLW38.D HlLLW39D HlLLW4O D HILLOM8.0
HIlLMY7.D HlLLMHB D
C 10.0 C10.0 G 10.0 elO.0 G 5.0 9070038 9.85038
7.3ggS84 16.467401 20.404358 19.025032 105 301943 92.717039 02.480199
2
NIA
NJA
NJA
NIA
NIA
NJA
2
NIA
NIA
NIA
NIA
2
NIA
NIA
NIA
NIA
2
NIA
NIA
< 1.0
NIA
NIA
NIA
2
< 10
c 1.0
NIA
NIA
2
18.140072 1.258639W
80 6437095 1 70278576
2
10.93W76 1 2771523511 1.235344845 60.9793446 1.78518275 1.703904Zl
2
14.799380 1.170243169
NIA
NIA
2
32.934002 1.517855057
122.976586 2.08982244
2
40800712 1.610752008 1575556454 121807067 208567249 20869810
2
39651sM 1.596261417
121744813 2.08545011
2 210.603886 2.32340030
613 377164 2 7877276
2 185434070 2.26810954 2.269679595 614935101 2 78082934 2.7083718l
2 164.961598 2.217382055
614 552079 2.70855069
Page14of 16
Sludv EW-I311
tG,
h
BACK TO MAIN
I
Desorption1soth.m. Smdy Loam
m73
(P (D
PagslSoll6
Slue EW-1311
BACK TO MAIN
___ .
Desorption Isotherms, Sludge
li f'
0
0
0.5
1
15
2
2.5
LOOcaq
rrndylom~ sedtmnl
Log Kder
-0.0811 -1 4088 14693
0.104447969 003901216 2946456271
1.012 1.01M 0.3272
0988142292 0.98386462 3056224719
Paw 16 of 16
Study EW-I311
Tier 111 "Mass Balance Calculations"
BACK TO MAIN
PFOS AdsorbiDesorb
*-..
R""
HO10318 noio~i~
noi0~18
no10316 tlD10318
H010316
no10318 no10318 notom R010320
R010320
R010320
R010320
R01032O
R010320 H010316 H010316 H010316 H010316 H010316 H010316 H010316 H010316 R010320
R010320 ROW320 R010320
ROlMM ROW405
R010405
15anpk Data F k HILL- D HILL0065 D HILL0066 D HILL0095 D HlLLW96 D HILL0101 D HILL0131 D HILL0132 D HILL0133 D
RUSHOO55 D RUSHW56 D RUSHM)Gl D RUSH0083 D RUSH0084 D RUSH0389 D HILL0068 D HILLW73 D HILL0074 D HILL0103 D HILL0104 0 MlLLCIlO5 D HILL0135 D HILL0136 D RUSHW33 D RUSH0063 D RUSH0064 D RUSHW65 D RUSHW32 D RUSH0033 D RUSHW34 D
-502233 -5023.53 -5024-S3 -502553 -5M6-S3 -502783 -5028.53 -502953 -503053 1311-5031-S3 1311-503283 1311-503343 1311-5O34-53 1311-5035-53 1311-5O3653 -505853 -5059-53 -5060.s3 -506153 -5062-S3 -5063-53 -5064-53 -506553 13113-506653 1311-506753 1311 - M 6 8 5 3 1311-5069-53 1311-507083 1311-507143 1311-5072-S3
00125 0 0125
00125
00125
0 0125
00125
0 0125 0 0125
00125
00125
0 0125 0 0125 00125 0 0125 00125 00125 00125 00125 00125
00125
00125
00125 ODlX oom 00125 00125
00125
00125 o 0125
50000 500 W 2OWW
?WOW
2WOW 5wo W 5wo W 5500 W
lWOOW 1WWW IWOO w 50000 W
50000W SOW0 W
Mo 5W Mo 2wo 2W0 Mw 5wD 5WO 5wD IWW lWW 1WW 54CW 5WW MOW
386188014 4W 811808
1589 3353
152915115
14264531 3913 70145
23W M144
3873 38636 6281 3209 85108m9 ea31 8359 IC454 01 41418 3251 133818854 6366312 68302054 655835 21025581 28221SE.4 285010358 8317832 71817115 11950450
1195328% 1871M255 171179338 101225113
103295oM 108265554
4 827350115
5 0011m 19 99189125 19 tl446438 17 W8oBB38 48szim813 28 761843 48 4113295
103 5165113
106 3851883 300 4 1 2 w
En5 886315 517 7MoB34 5424136825
n ?%?as 0 853715125 0 81879315
3 378198375 3 527885425 3 574254475
I O 38129
9 7271d6815 8 743807
22 44151825 23 38en3188 21 45991134 ims3mi3 119 1181515 138 5810125
21 381228
23 912482 55 333452 57 811888
4n 6111568
111 971874 83458182
115 W 4 9 8
131 442794
133 111m 142 60345B 289 1 l W 8 410 188916 3781 1 m 21 87378 23 898% 5192214s 151 3611% 133 222922
to8 891334 229 32918 240 121M2 318 338512
811 e a r n
835 511088
658 12403
4 M 1 89701
3051 03229
3384 80983
omioisas
0 299856025
0 891C6815
0 12339ea o 58%8m15 1309848425 0 193238715 1448031225 1 843034825
1811471
17EW432 3 81770785 5 8113717 4 1301258 0 27342225 0 298131 o 724026825 1 88209895 1 8852B525 13361417 lee62225 3 COS210525
4 10(23215
10 013241
10444?2u, 8 334M315
E63481IXI3 38 21290363 42 43631288
00120 + 5 0
ooim c 5 0
00120 s 5 0
ooim 4 5 0
00120 ' 5 0
00120
56
ooim '50
00120
60
00120 6217634
ooim 5939702
00120 7871924
oofm 2265781
00120 1695932
ooim 4622885
ooim 426
ooim 489
ooim 570
ooim 1598
00120 2032
ooim 1808
O O ~ M 461 1
ooilo 2855
oo1m 3465266
o o ~ m 2981447
ooim 3605895
oo1m 337662
00120 4169038
oo1m 3516084
o oim 68.33123
zoo
2w 2w
zw zw
2w
2w
2w 2w 2w zoo 2w 2m 2w 2w 2w 2w 2w 2w 2w
200
2 w 2w
2w
2w 2m lwoo 1ww
too w
<10
'012
<IO
'012
<lo
<012
10 < 10
11 182708
eo12
<012 0 1338525
<IO 12051E4 124352611 11 87-
r012
0 1UBlW7 o 11muz 0 14255285
15143848 0 18882618
45 31%12 0 54318734
33 S l W 2 04070231
92 457108 85 10211 97 702138 113911118
1 E34825 102123242 1 1?2432@3 1387WBll
319525044 4oB 39942
38Y3Ms3
4 81878301
361644534 4 3 3 4 1 Y 1
oz? 14921 11 0851905
570908
em72
693 05sm 8 ~ I B B I U O
5 9 ~ 2 8 ~ p t l7 ISY~IO~
12111w 8 65414848
615 323M 8 10388128
4189 0375 35180M
50 02845
42103&24
6833 1228 81 99741%
z
P
I
1 t!
ii I 193%
815%
84 ox
821% 794%
74ox
801%
47 3% 80 m
642%
ea 6%
820% 81 6?& 83 8% 81 1% 33 4% 312% 4E 8% 36 4%
40 3%
31 0%
38 e%
31 3%
38 4% 325% 34m 30 3%
31 3% 33 5% 41 8%
Page 1 of 3
BACK TO MAIN
Study EOG13H
9s.
a3?(D
5 I-
M i i s 8.b-
~ 57tox
I S m P k Data Fl!d HILL0076.D HILL0077 D
nlLLWf8 u
HILL0107 D HILL0108 D HILL0109 D RUSH0035 D RUSH0026 D RUSH0037 D RUSHW40 D RUSH0041 D RUSHW46 D RUSH0048 D RUSH0049 D RUSH0050 D HILL0080 D
TuM broke HILL0081 D HILL0115 D
HILL0116 D HILL0117D RUSH0052 D RUSH0053 D RUSHMI54 D RUSH0060 D RUSH0061 D RUSH0062 D RUSH0064 D RUSH0065 D RUSHW66 D
509453 -509553 -5096S3 sw7-s3 5098-S3 5099-53
i a iI-~IW-S~
1311-5101S3 1311+10253 1311-510383 1311-5104-53 13114105-53 1311-5106S3 1311-510753 1311-5108-S3 -513053 Em-1311-5131 -5132.53 5133-53 -513463 -513553 1311-5136-53 1311-513 7 5 3 7311-5138-53 1311-513943 1311-514063 1311-5141-53 1311-514253 1311-5143-53 1311-514453
00125 00125 00125 00125 00125 00125 00125 00125 00125 00125 00125 00125 00125 00125
nom
00125 00125 00125 00125 00125 00125 00125 0015 00125 00125 00125 00125 00125 00125
5W 5W 2WU 2wO 2wO YKW 5w0 SWP lOwD 10000 lOwD MOW MOW Mwo 500 5W 5W 2wO ZWO 2OW 5WO YXiD 5x0 IWW IWW IWW 5woO XWU Mwo
1W888412 92307848 382488934 4oB850758 478255482 ,53757868
1400054(u llM)49807 320984698 3US792472 30544701 18011 5457 17Bm8055 17018 8OM 4955551 35114278 9492696 224488112 2671089BB 271834882 851 85002 76528101 75iBMPZ 151041W 1552245U2 1545075M 108207528 99117125 W1578
137110515 11~53 4 781228875 8 248134475 5 378103525 192197335 17 80068538 17 256?Zm 40 i 2 ~ 8 7 n 35 349059 38 1 8 ~ 2 5 2251443213 220 013188 212 758355 0621WW75 045142845 0 6311587 2 8058511 3 3388821 3 39543515
1064812525 9 566012625 i 4100815 19 83024325 19 40306275 19 3126956
135 50341
124 ME4063 120 5447%
70 YauY 89 2254 ,0986 252 13575 271 m3585 869 374834 654 78000 4e4 0531 l21844173 1272 33095 1335 M265 671111 B 2 6272 7381
8434 IWI 53 3SZORI
0 53 311ooB 214226652 2.w. 57553 212 447788 579 748028 499 345134 n 2 028624
1053n m
1141 23143 10?2397M 4819 27102 M9081312 5130 07U5
n *m127G2
n woi5775
3 1774% 3 151896875
3380Bb85 8357185425 8 184751125 855013875 15 23052183 15W1188 lS70378313 M 7~0~15 78 40920125 105m 3 06889012
0 066725015 2 677e329 2 782195375 28555871 7 24682535 8 241821875 8m 7 m 1317217025 14 ZB533288 12 9MW3 81 49W8775 63 83x64 84 12595563
0 orm o oim
0 0120 0 0120 0 0120
o oim
00120 0 0120 00120 00120 00120 0 0120 0 0120 0 0120 0 0120 0 0120 OOl20 0 0120 DO120
OOIW 0 0120 00120 0 0120 0 01m 0 0120 00120
o oim
00120
57.9 161.9 173.0 194.7 467.7061 371.418 485.0679
25 C 25 c 25 50.04657 61.22W1 65.68839 111.6
98.8 393.7 375.2 261.3 182.5579 190.9566 242.2879 < 25 < 25 < 25 < 25 c 25 c 25
2w 200
2w zw 2W
2w 2w
1WW
1W w
IWW IW W 1ww IWM
zw
2W
2W 2 00 2w 2w low
low 10 w
lwOW
low w
lwoW
1wO w 1wo w
l0WW
115 756962 323 876812 345 931234 389 4 2 m 2 33541224 742818078 970 13-24
QYX)
Q5W 52.24 6587 6122 W1 65BLI 83W 223 252154
0 1975801M 787 427278 754 306384 7225131k8 1625 87883 1- 58sLu 2422 87857
< 2MW 25000
<2Moo e 25000
mo
25000
1 38820378 38865197 4 15117481 41173142d2 11 n 4 w 9 891405544 11 8416288
e24 e24 <24 Bo OW8M 734e4012 78 W0728 2 87wz585
0 2 37wBf23 844912734 9 M367M1 8 67015778 21 W148 229147800 28 0745428
<Mo < 3W < 300
3M <Mo <Mo
IJ Em 54 5% 47 4% 542%
sa 2%
82 1% 55 5%
58 nu
44 3% 43 4m
43 ox
59 2% 59 5% 83 5% 63 5% NIA 58 7% 59 7%
ea 5% 58 ox
83 1%
82 m
72 7%
1(1m
%ox
25 8% 31 7% BO 1% 29 5%
PFOS A d t o r b m s o r b
*'.
Page 2 of 3
Study EW-1311
BACK TO MAIN
- Mmss &!am
PFOS Adsarbmesorb
,.'-
.... - HILL0088.D
,
^---
I1,LL""III.Y
HILL0119.D
HILL0120 D
HlLLOlZl D
RUSHW47.D
RUSH0046 D
RUSH0049 D
RUSHGO68 D
RUSHW59 D
RUSH0074 D
RUSH0076 D
RUSHOO77 D
RUSH0078 D
H1LL0091 D
HILL0092 D
HILL0093 D
HILL0123 D
HILL0124 D
HILL0129 D
RUSH0051 D
RUSH0052 D
RUSHW53 D
RUSHW79 D
RUSH0080 D
RUSHW81 D
RUSH0080 D
RUSH0081 D
RUSH0082 D
-516753 -5,6&S3 -516953 -517053 -517153 1311517253 1311 5 1 7 3 5 3 1311-517453 1311-517553 1311-517653 1311-517753 1311-517853 13115179S3 1311-518053 -5202-53 -5203s3 -5204-53 -520553 -5206S3 -5207-S3 1311-520853 1311-5209-S3 1311-521Ds3 1311-521153 1311-521253 1311-521353 1311-521453 1311-521553 1311-5216-S3
00125 00125 00125 00125 00125 00125 00125 00125 00125 00125 00125 00125 00125 00125 OM25 00125 00125 00125 00125 00125 00125 00125 01125 00125 00125 00125 00125 00125 00125
5m 500 2000 ZWO ZWO 50W 5,xQ SOW IWM 1wW IWM MMO 5mW 5wW 500 5W 500
zow
?wo 2OW
YMI 5DM
5Mx) 1wW
1WW 1wW 5WW 5wW MMO
iea 457972 lP920114 ea9 n534a 681 519332 730 094518 2037 97939 1871 00144 1915 10276
3713 23106 3711 74203 3897 08738 18328 86% 17828 1948 17980 O W
WA WA WA NIA WA WA 141 28747 11420901 WA 1411 79531 23885w? 24481872 WE8139 730 -5
no 7908
1 9924oe2 2 33072-5 2 374W5175 862158685 8 51899185 9 126181475 25 47474238 23 -518 24 3137M5
a 4153005
4e 39877538 48 71359238 Pe 0833Z5
m ea481
224 W 3 3 8 WA WA WA WA NIA WA
1765M3375 1427812825
NI* 1 859941375
zgMB&55 3 057724 1058517375 9 13749375 9 6346rn5
88241506 85 243574 321 -78 298 140168 331 481791 761 3284 149 778958 758 575324 174s92474 163325491 1743 45547 7408 8281 7944 (u88 7091 215
WA WA WA WA WA < 10 18 1 4 W n 18 93w78 14 798W 32 934602 40 m i 1 2 39 8 5 1 W 210 503888 185 434078 184 PB1588
107331095 1 07801995 1 w55u675 4 01676085 3 7267521 4 1435n425 85188055 9 37223695 948219155 21 87419125 2041583638 21 79318338 02 60786375 99 M80825 88 401875
NIA WA WA WA WA WA 0 2Z7508
"0 23662595 1YY921 0 411885025 05101lW 0 49sM58 2 632548575 2 317925975
zoomism
0 0170
0 0120 0 0120 OOIZO 00120 00120 0 0120 00120
00120 00120
nom ooim
00120 00120 00120
ooim
0 0120 00120 001m
ootm
00120 00120
00120 00120 0 0120 00120 0 0120 00120
0o m
a9 1
65 7 298 3 267 4 327 9 .501 491 43 496 1706 c 25 < 25 < 25 < 25 < 25 < 25 363 25 2 301 97 6 127 8 98 9 332 321 244 5963 251 8495 490 2051 494 7347 ,501 47 25497 57 65922 66 77067
Irn
200 200 100 2W ZW 2W ZW
low w
lwoW 1WD W 1000 00 1000 W 1000 W
2W 200 2w
zw
ZW 2w ZW ZW ZW 200 ZW 200 IWW 1WW IW W
*e* ?(2???
131 385836 588 55581 534 1 2 m 655 794326
7 1032 983 2a5956 892 Y12d
< 25oM <2 m <2 m < 2MW
25wo < 25WO 72 685522 50 441822 W 17112 195243738 255 648826 187 725208 WMlM
as 192588
503 Bgew 98041Dm4 909 189372
WA 4725 4BB6 5765 s p 4
w n 067
I
d
I
3.'
f31038%
ii 8r 80 3m 79 zy 74 om M 6% 56Du 71 4% 73 1% YW 53 4m 56 4% s i 5m 51 5m
50 i m
WA NIA NIA
NIA WA WA 15w 12 1%
WA 11 24 12 3% NIA 112% 12 Q n 14 7%
Page 3 of 3
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Appendix E: Quality Control Sample Data
This appendix includes processed matrix spike, control, and replicate sample data from the present study. The runs summarized are the following:
so01 120a sOOl12Ob s001122a to10122 ~001211 to01215 so01207 H001214a&b to10123 to10124 to10125 R010320 H010405ext H010405int H010404ext R010404ext R010405 R010402a&b H010329 H010319a R010312 R010329aLkb H010402a&b H010222 R010222 H010309 R010309 H010315 H010313 R010314 H010311 H010316 H010412 R010412 Crossed out data was not used.
3M Environmental Laboratory
Page 237 of 703
BACK TO MAIN
Quality Control Sample Data
I
Sample Description
IR U S H 0 0 3 3 . D
RUSH0034.D RUSH0035.D RUSHO036.D RUSH0037.D RUSH0038.D RUSHO039.D RUSHO040.D R U S H 0 0 4 1. D RUSH0046.D RUSH0047.D RUSHO048.D RUSHO049.D RUSHO050.D RUSH0051.D RUSH0052.D RUSH0053.D RUSH0054.D RUSH0055.D RUSH0060.D RUSH0061.D RUSHO062.D RUSHO063.D
IR U S H 0 0 6 4 . D RUSHO065.D RUSHOO66.D RUSHO067.D RUSH0068.D RUSHO069.D RUSH0074. D RUSH0075.D RUSHO076.D RUSH0077.D RUSH0078.D RUSHO079.D RUSH0080.D RUSH0081.D RUSHO082.D RUSHO083.D
1311-5071-S3 131 1-5072-S3 1311-5072MS-S3 131 1-5091-53 1311-5092-53 131 1-5093-53 1311-5093MS-S3 131 1-5103-S3 1 3 11-510 4 4 3 1311-5105-S3 131 1-5105MS-53 13 11-510 6 4 3 131 1-5107-S3 1311-5108-S3 1311-5108MS-S3 1311-5136-S3 1311-5137-53 1311-5138-S3 1311-5138MS-S3 1311-5139-S3 131 1-5140-S3 1311-5141-53 1311-5141MS-S3 1311-5142-S3 131 1-5143-S3
13 11-51 4 4 4 3
131 1-5144MS-S3 1311417543 1311-517643 1311-5 17 7 - 5 3 1311-5177MS-S3 1 3 1 1 - 5 17 8 - S 3 1311-5179-53 1311 - 5 1 8 0 4 3 1311-5180MS-S3 1311-521443 1311-521553 131 1-5216-S3 1311-5216MS-S3
Analytical Run Information*:
Acceptable Quant Range: 25 ~ 1OOZnglml
CalibrationCurve ?: 0.9880787
Target Analyte: PFOS
InternalStandard: THPFOS
Instrument: Rush
- Run ID: R~ 010405
Measured Concentration,
uglL
41.690375 35.16084
68.331228 268.971058 25
25.536054
c 25
226.293398 :2 5
.< 25 .< 25
2 2 1 . 0 7 5 6 17 50.046567
61.22001 65.688394 266.885789 182.567883 190.956582 242.287857 422.825169
*: 25
e: 25
*' 25
197.948699
25
e 25 < 25
199.992825 < 25
25 25
187.321981
< 25 < 25 < 25
191S 6 6 5 6 5 47.254966 57.659224
66.77067 243.807595
Theoretical Matrix Spike Concentration,
uglL
Replicate Sample % R S D
36 31 200
NIA 200
NIA
-.
200
Ir
.zoo
.
2W
13.66
15.75
NIA 200
NIA ZOO
NIA
200 NIA
m
17.06 200
Matrix Spiki Recovery, 7
100.32
113.15 11054 100.60 90.27 98.97 100.00 93 66 95.78 88 52
Dilution Factor,
Nx
10 1W 100 1W
2 2 2 2 100 100 100 100 100 1W
100 100
10 10 10 10 1000 1000 1000 1000 1000 1000 1000 1000 1000 1000 1000 1000 1000 1000 1000 1000 100 100 100 100
1 ?
3M Environmental Laboratory
Page 238 of 703
BACK TO MAIN
Qualitv Control Sample Data
Instrument: Hillary -Run ID: H0~10319a -
Sample Data File
HILL0032.D HILL0033.D HILL0034.D HILL0035.D
HILL0036.D HILL0037.D HILL0038.D
H I L L 0 0 3 9 .D
HILL0040.D
H I L L 0 0 4 1.D
HILL0046.D
HILL0047.D HILL0048.D HILL0049.D HILL0050.D HILL0051.D
t=iu
HILL0053.D HILL0054.D HILL0059.D HILL0060.D HILL0061.D HILL0062.D
I HILL0063.D HILL0064.D HILL0065.D HILL0066 D HILL0067.D HILL0068 D HILL0073 D HILL0074 D HILL0075 D HILL0076 D HILL0077 D
I HILL0078 D HILL0079.D HILL0080.D HILL0085.D
HILL0086.D
HILL0087.D
Sample Description 1311-4124-52 1311-4125-S2 1311-4 126-52 1311-4148-SZ
1311-4149-52 1 3 11 - 4 150-S2 1311-4124-53 1 3 11-412 5 4 3 1311-4126-S3 1311-4148-S3 1311-4149-S3
1311-4150-S3 1311-4124-S4 1311-4125-S4 1311-4148-S4 1311-4149-S4
asav
1311-412445 1 3 11-4125-S5 1311-4126-55 1 3 11 - 4 1 4 8 4 5 1311-4149-S5 1 3 11 - 4 150-55 1311-4124-S6 1311-4125-56 1311-4126-S6 1311-4126MS-56 1311-4148-S6 1311-4149-S6 1311-4150-S6 1311-4150MS-S6 1311-4124-S7 1311-4125-57
1311-4126-S7 1311-4148-57 1311-4149-S7 1311-4150-S7 1311-4124-S8
1 3 11 - 4 125-S8
1311-4126-S8
HILL0090.D HILL0091.D HILL0092.D
1311-4149-S8 1311-415QS8 1 3 11 - 4 150MS-S8
Measured Concentratlon,
uglL
< 2.5 < 2.5 < 2.5
30.5
32.4 30.4
< 2.5 < 2.5 < 2.5
39.1 38.5
43.7
< 2.5
4.9
131.4 78.0
zu.6
< 2.5 < 2.5 < 2.5
72.9
63.0 79.4
< 2.5 2.5
< 2.5
235 6 59 1 646
64 2
298 1
<25 <25
45 60 4 63.2 71.4
2.5
2.5 < 2.5 238.3
58.6 62.8 36.4 296.8
Matrix Spike Concentration,
uglL
Replicate
Sample %RSD
NIA
3 48 NIA
7.12
NIA 48 20
NIA
11.52
NIA 200
4 90 200
NIA
886
NIA ZM)
26 90 207
Matrix Spikl
R e c o v e r y , OA
11778 11688 118 13 125.82
Dilution
Factor,
Nx
2
2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2
2 2
2 2 2
2
- Analvtical Run Information":
Acceptable Quant Range: 2.5 1002nglml
Calibration Curve 8:0.9999964
Target Analyte: PFOS
Internal Standard: THPFOS
'Point thrown out. Compared to the values obtained from other fdiquots of the same sample during this run (30.4.43.7, 79.4, 64.2, 71.4. and 36.4)
the value obtained for the -S4 sample (212.6) is about three time; higher. May be a bad injection.
?.
3M Environmental Laboratory
Page 239 of 703
BACK TO MAIN
Qualitv Control Sample Data
Sample Data File Huw3a.D
-Sample Description
Instrument: Hillary
- Run ID: - H010329
Measured Ccmcentratlon.
uglL 3Waas66
Spike Concentration.
UglL
ReDliCate Sample %RSD
Matrix SDlki
Recovery, 7
100
&uw66s i4ucU6a HuoaSZa
tduuwaa
blNaw.D
Hu4W4.D u4Luwa2 uuQW3.D
h4uocua u4uWa.Q &ilusaQ
44uWw.Q &d&mwLD bluacwa &4uwa&D 4AuLcaW
uuwWaD
t.kuwoa
buuQmaa
b4uowaa
l4uawaa
b4uuoMa kNuowbD l4uwQ6a k!uw%D
bluowa&
l.luwaa
HILL0104.D
HILL0105.D
HILLO106.D
HILLO107.D
HILL0108.D
HILL0109.D
HILLO1lO.D
H I L L 0 115.D
HILL0116.D
HILLO117.D
HILL0118.D
HILL0119.D
aaw&Maw
- 4 w 4 4 4 a s
s%l44aw
-- 4 a M 4 M u 3
4w4&A6s .w44wGX
-4 a 4 4 4 G a
4a44aaS
-aua#w-w
43wAsLS s.Ua&-s
-- 4 a 4 4 a - s -+%l&W%s
- 4s%u6La
%%uaasa
--1311-516041
1311-516141 1311-5162-51 1311-5162MSS1 1311-5163-S1 1311-5164-S1 1311-5165-51 1311-5165MS-SI 1311-5166-S1 1311-5167-S1 1311-5168-S1 1311-5168MS-SI
S?nfOC1'1 suU367. 3zao3cG
-wu3awa aaaw.aa
$i34iUa 2n3.sxa
A35aaa
4,c
Ls1
aJaus4a .4aawbw waaaQ3 a.aw4Qa a?.bsaw 46&auMs
4zwaazQ uZaua83 F6aaaaw
aua43sw
a6aSu26
sMQQ6a4 a4au43a
.aaw666
- .
- 4
.!89.002164
258.39539
266.033394
480.91678
36.247649
6.963474 C 5.0
:!13.508112
79.696368
93.228986
94.960207
321.371684
aca 100
cue
100 eye.
100
a6.w
100 2a9
200 Lzo
100
1oD 5.88
2w 95.84
200 9.38
200
-.ue4.i
.laa&n
S4a4 14Lso
as0a-Q
aE4.a 107.44 106.75 113.21
Dilution Factor,
Nx
10 10 10 10
1w
100 100 100
2 2 2 2 2 2 2 2 2 2 2 2 10 10 10 10 10 10 10 10 100 100 100 100 2 2 2 2 2 2 2 2 2 2 2 2 10 10 10 10 10 10 10 10 100 100 100 100 2 2 2
2 2 2
3M Environmental Laboratory
Page 240 of 703
BACK TO MAIN
HILL0120.D
1311-516941
344.862674
2
HILL0121.D
1311 - 5 1 7 0 4 1
340.759666
3.71
2
HILL0122.D
1311-5171-51
365.047259
2
HILL0123.D
131 1-5171MS-S1
636.371356
200
135 66
2
H I LLO124. D
1311-5172-51
203.797939
10
HILL0129.D
1311-5173-51
187.700144
4.14
10
HILL0130.D
1311-517441
194.510276
10
HILLOl31.D
1311-5174MS-S1
422.244664
200
11387
10
HILL0132.D
1311-5175-51
371.3231 96
10
HILL0133.D
1311-5176-S1
371.174203
2.82
10
HILL0134.D
1311-5177-S1
389.708739
10
HILL0135.D
1311 - 5 1 7 7 M S S l
645.346514
200
127.82
10
HlLL0136.D
1311-5178-51
183.266658
100
HILL0141.D
1311-5179-51
178.291848
1.43
100
HILL0142.D ' HILL0143.D
1311-5180-51 1311-5180MSS1
179,600507
387.145146
200
100
103.77
100
Huau4.S
suA.#s4
44a3a69
2
kluuk%a
.Kw&ws4
60
(up.
2
kluW46s
4suHs%m
60
2
- blua4Ao
wUal4m
4a4&a&&
60 40
aoo
(up.
2
2
- kxuw4.m
60
(up.
2
l=&ws&D
=M&w6-%
&a
2
-- J.uux&D
aa%uaa4
an0
63a1
2
J.uux&D
6.65ix4
2
kluc4ao
.cW&aa%
4.4
14s1
2
l4LuUao
Kw44aUx
sa04644
2
- b l u a s & D
hLLw6Qs
aauuaGs
-lQsaa6
a90
6Q.aa
2
za6ww
10
- i4uaa.Q
7-zu4a
10
- t 4 u a s a a
a%Lua&S
-3
10
klu&wao
46uaa4a
aoo
w
10
HILL0164.D
1311-5193-51
5a7.3m82
10
HILL0165.D
1311 - 5 1 9 4 4 1
375.628336
25 38
10
HILL0170.D
1311-5195-51
624.651539
10
HILL0171.D
1311-5195MS-S1
947.574722
2w
161 4 6
10
H I L L 0 172.D
1311-519651
25.400564
100
HILL0173.D
1311-519741
16.589279
21.21
100
HILL0174.D
1311-5198-51
20.475802
100
HILL0175.D
1311-5198MS-S1
236.975437
200
108 25
100
- kaLw?&D
LAC
2
wua%ua
-- nLLauaa
niuoxKm
-uu4ao&
LAC
(up.
2
LAE
2
83maW.s
a90
4199
2
nkKU&Q
w-MaGx%
LFCO
2
uua%%#B
%M44xe4
a
(up.
2
44uwasa
- Huula7a
su4uu44
LAO
a
2
aoo,
(up.
2
buuUaQ
4au&uSw
44
2
huuwaaa
%w4a&44
Gwa
(up.
2
- buLuawa
.su&wLS
JdumaaD
.sn
- .
2
2
10
10
10
an0
ZOdD
10
kiU4axm
%w&w-s
wob66
10
b4uum.a
J4uoxaB ylllnsn?n
HILL0204.D
xw4a#sa &u4va-S
u44aa&&
1311-521441
-uaaz6%
3040
10
-.4636a6a
10
an0
ZaOK
10
8.468139
100
HILL0205 D
1311-5215-S1
7.309995
7 52
100
HILL0206.D HILL0207.D
1311-5216-S1 1311-5216MS-S1
7.707909
100
:!01 156105
200
98 72
100
Analvtical Run Information*: Acceptable Ouant Range: 5 - 1002nghl
Calibration Cuwe 3:0.9925463
Target Analyte: PFOS
Internal Standard: THPFOS
3M Environmental Laboratory
Page 241 of 703
BACK TO MAIN
Quality Control SamDle Data
RUSHOMO.D RUSH0041.D RUSHOM2.D
1311-5018MS-S1 1311-507O-SZ 1311-5071-52
ausuw%o-
64Lwwaa-
GusuoaD-
RUSHW53.D
1311-5103-52
RUSH0054D
1311-51WS2
RUSHW55.D
1311-5105-S2
RUSH0056.D
1311-5105MS-SZ
RUSH0057.D
(":"":"
RUSHW64.D
:::;1311-510652
1311-5108MS-SZ
RUSH0065.D
1311-5127-SZ
RUSHOffi6.D
1311-512842
RUSHW67.D
1311-5129-62
RUSHOffi8.D
1311-5129MS-S2
RUSHW69.D RUSHO070.D
1311-5130-52 1311-5132-SZ
RUSH0071.D
1311-5132MS-S2
RUSHW78.D
1311-513552
RUSH0077.D
1311-5134-52
RUSHW78.D
1311-513542
RUSHW79.D
1311-5135MS-52
RUSHW80.D
1311-513582
RUSHWE1.D
1311-513 7 4 2
RUSHW82.D
1311-5138-52
RUSHW63.D
1311-5138MS-SZ
RUSH0084.D
1311-5139-52
RUSHOO65.D RUSHOOD0.D
1311-5140-S2 1311-5141-SZ
RUSH0091.D
1311-5141MS-S2
RUSHOO92.D
1311-5142-52
RUSHOO93.D RUSHO094.D
1311-5143-52 1311-514442
RUSHW95.D
1311-5144MS-SZ
RUSHOO96.D
1311-516342
RUSH0097.D
1311-51&cSZ
RUSH0088.D RUSHO099.D
1311-5185-52 1311-5165MS-SZ
A n a l v t i c a l Run Information': AcceptableQuanlRange: 5 . 1 W2nglml
Calibration Curve 8:0.9997640
Target Analyte: PFOS Internal Standard: THPFOS
_Ins_tru_me_nt:_Rush Run ID: R010402 (A)
23E.736167 45C.789701 305.703229 339 490983 528 022186
19ala-
121 844173 127 233095 133 630265 315491169
67.811262 62.727361 84,309464 273.509217 < 5.0 < 5.0 < 5.0. 21 1.lM9083 26.1376048
25.69003 246.!136174 107." 13316 111.:!87615 106.:!23884 361.d.46659 289.873014 249.f.72867 276.C14812 580.C20253 105.2 77362 114.123143 103,239784 293.385505 491.927102 509.061312 513.037645 715.922726 < 5.0 < 5.0 c 5.0 204.8.24182
204 20 78
86 21
'1 1 403
200
BO 93
2W
,
81,80
I 2W
105 52
200
110.12
200 7.51
2w 5.38
m
2.22 m0
NIA zw
127.81 152.W 95.07 101.48
102.1
Dilution Factor,
NX
1000
1000
1000 1w0
10
10
10 10 2 Contaminated 2 U)"lrnl 2 Manb 2
10 10
10
10
$03 100
100
1w
2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 10 10 10 10 10 10 10 10 2 2 2
3M Environmental Laboratory
Page 242 of 703
BACK TO MAIN
Quality Control SamDle Data
RUSH0141.D RUSHO142.D
1311-5179-S2 1311-5180-SZ
- Analytical Run Information*:
Acceptable Quant Range: 10 1002nglml
CalibrationCurve ?: 0.9989973
Target Analyte: PFOS Internal Standard:THPFOS
Instrument: Rush
Run ID: R010402 (b)
Measured 42.932438
Matrix Spike Concentration,
uglL
,Replicate Sample %RSD
0.59
Matrix Spikc Recovery, %
276.700865 160.750438 149.070084 185.740897 443.490256 380.66422 374.889478
2w 5.40
2w 0.80
117.04 138.87
2w
171.28
3.84
2w
93.24
70.91215
5.77 2w
91.92
NIA
2w
85.50
*: 10.0
NIA
2w
NIA
100.12
Dilution Factor,
Nx
2
2 2 2 2 2 2 2 2 2
2 2 10 10 10 10
1w
1W 100 100
2 2 2 2 2 2 2 2 2 2'
3M Environmental Laboratory
Page 243 of 703
BACK TO MAIN
Quality Control Sample Data
Instrument: HiJar~
Run ID: H010405, external standard auant
I 1 Theoretical Matrix
Measured
Solke
Concentration, Concentration,
Replicate
Matrix Spike
Dilution Factor,
ug/L
ugll
Sample %RSD Recovety, %
Nx
&u&uw4
10
55411107'1
aani
10
u345W.u
a6zaaa5
100
4aAaaa5
10
a320
10
Quanted using
1w
Ua4a33
d.ua
internal
1M)
ilas66U
aQad&sa awsa30 aaa&W&u
a22ouu
100 S-iS
standard. mls
100
1M31 data not used
1W
10
10
10
100
4a4.bz
10
100
100
1w
1w
I 2
A2.t.m
2
2
2
10
10
- l4LKUUa
l=luUxm t4lww3m
su&lsaa . -
10
10
1w
aa75ia
aL54
1CQ
a&ua&iz
1w
aM&sss4
am
ULiO
100
HILLOO67.D
1311-5181-S1
27.424377
2
HILL0072.D
1311-518 2 4 1
< 10.0
tmvmi
2
HILL0073.D
1311-5183-51
c10.0
2
HILL0074.D
1311-5183MS-S1
144.847675
200
72.42
2
HILL0075.D
1311-5199-SI
c10.0
2
HILL0076.D
1311-5200-Si
<10.0
NIA
2
HILL0077.D
1311-5201-S1
40.0
2
HILL0078.D
1311-520lMS-SI
131.864428
200
65.93
2
- Analytical Run Information*:
Acceptable Quant Range: 10 1002ng/ml CalibrationCurve ?: 0 . 8 9 7 9 3 3 5 Target Analyte: PFOS
internal Standard:NONE
3M Environmental Laboratory
Page 244 of 703
BACK TO MAIN
Qualitv Control Sample Data
I=----- Sample DataFile RUSH0032.D RUSH0033.D
Sample Description
131 1-4154-S2 1311 - 4 1 5 5 4 2
RUSH0034.D
131 1-4156-SZ
RUSH0035.D
1311-4178-S2
lRUSHOO36.D
RUSH0037 D
131 1-4179-SZ 1311-4180-S2
RUSH0038 D
1311-4154-53
IRUSH0039.D
1311-4155-53
RUSH0040.D
R U S H 0 0 4 1.D
131 1-4156-53 1 3 11-4178-S3
RUSH0046.D
131 1-4179-S3
RUSH0047.D
1311-4180-53
RUSH0048.D
13114154-54
1311-4155-54
RUSH0050.D
R U S H 0 0 5 1.D
131 1-4156-54 1 3 11-417 8 4 4
(RUSH0052.D
1311-4179-S4
RUSH0053.D
1311-4154-S5
RUSH0054.D
131 1-415 5 4 5
IRUSH0055.D
RUSH0060.D
1311-415645 131 1-4178-S5
RUSH0061.D
RUSH0062 D RUSH0063 D
1311-4179-S5 1311-4180-S5 13114154-56
RUSH0064.D
RUSH0065 D
1311-4155-56 1311-4156-S6
RUSHOW6.D
131 1-4156MS-S6
RUSHO067.D
1311-417846
RUSHO068.D
1311-4179-S6
IRUSH0069.D
131 1-4180-56
RUSH0074.D
1311-4180MS-S6
RUSH0075.D
1311 - 4 1 5 4 4 7
IRUSH0076.D
1311415547
RUSH0077.D
1311 - 4 1 5 6 4 7
RUSH0078.D
131 14178-57
lRUSHOO79.D
1311-4179-57
USHO080.D
1311-4180-S7
USHO081.D
1311-4154-S8
USHO082.D
1311-4155-58
1311 4 156MS-S8
RUSH0090.D RUSH0091.D RUSH0092.D
1311-4179-S8 131 1-418O-SB 13114180MS-SB
- Analvtical Run Information*:
Acceptable Quant Range: 10 1002nglrnl
Calibration C u r v e ?: 0.9913280
Target Analyte: PFOS
Internal Standard: NONE
Instrument: Rush
Run ID: R010404. external standard quant
Measured Concentration,
uglL
c 10.0 10.0
< 10.0 < 10.0 c 10.0 < 100 e100 < 10.0 < 10.0 < 10.0
10.0 < 10.0 < 10.0
10.0
10.0
c 10.0
10.0
c 10.0 c 10.0 < 10.0
10.0
c 100
e100 < 100 e100
c 100
184.766805
10.0 10.0 I: 10.0
256.265166
c 10.0
:. 10.0 :10.0
.: 10.0 .: 10.0
.: 10.0 .: 10.0
': 10.0 4 10.0
198.880502
.:.:10.0. 10.0
': 10.0
155.579696
Matrix Spike Concentration,
uglL
Replicate Sample %RSD
NIA
NIA
NIA
NIA
NIA
NIA
NIA
NIA NIA 200 NIA 200 NIA
NIA
NIA ZW
NIA 200
Matrix Spike
Recovery, X
92.39 128 13
99.44 77.79
Dilution Factor,
Nx
2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2
2
2 2 2 2 2
3M Environmental Laboratory
Page 245 of 703
BACK TO MAIN
Qualitv Control Sample Data
Instrument: Hiilary -Ru_n _ ID:_H010404,external standard quant
S a m p l e Data File
Sample Description
Measured
Concentration,
UglL
Theoretical Matrix Spike Concentration,
ugk
Replicate Sample %RSD
Matrix Spikc
Recovely, %
Dilution
Factor,
Nx
IH I L L 0 0 3 1 . D
1311-4151-S1
c10.0
2
HILL0032.D
131 1-4152-S1
40.0
NIA
2
HILL0033.D
1311-4153-51
c10.0
2
HILL0034.D
131 1-4153MS-S1
168 305282
200
84 15
2
IH I L L 0 0 3 5 . D
1311-415 4 - 5 1
<10 0
2
HILL0036.D
1311-4155-51
<10.0
NIA
2
HILL0037.D
1311-4156-51
c10.0
2
HILL003B.D
131 1-4156MS-S1
157.148327
200
78.57
2
HILL0039.D
1311-4157-S1
c10.0
2
I HILL0040.D
1311-4158-51
40.0
NIA
2
HILL0045.D
1311-4159-S1
dO.0
2
H ILL0046. D
131 1-4159MS-S1
173.055241
200
86.53
2
I HILL0047.D
131 1-4160-S1
c10.0
2
HILL0048.D
1311-4161-S1
40.0
NIA
2
HILL0049.D
131 1-4162-S1
c10.0
2
HILL0050.D
131 1-4162MS-S1
165.193594
200
82.60
2
IH I L L 0 0 5 1.D
1311-4163-S1
dO.0
2
HILL0052.D
1311-4164-S1
:10.0
NIA
2
HILL0053.D
1311-4165-51
.:10.0
2
HILL0054.D
1311-4165MS-S1
166.210776
2w
83 11
2
HILL0059.D
131 1-4166-S1
.:10.0
2
HILL0060.D
1311-4167-S1
.:10.0
NIA
2
JHILLOWI.D
1311-4168-S1
.:10.0
2
HILL0062.D
1311-4168MS-S1
164.639012
2w
82.32
2
I HILL0063.D
1311-4169-S1
*:10.0
2
HILLOO64.D
1311-4170-S1
*:10.0
NIA
2
HILL0065.D
131 1-4171-S1
.:10.0
2
HILL0066.D
1311-4171-MS-S1
164.253095
200
82 13
2
HILL0067.D
1311-4172-S1
*'10.0
2
HILLO068.D
1311-4173-S1
10.0
NIA
2
HILL0073.D
131 1 - 4 1 7 4 4 1
10.0
2
HILL0074.D
1311-4174MS-S1
165.168607
200
82.58
2
HILL0075.D
131 1-417 5 4 1
c10.0
2
HILL0076.D HILL0077.D HILL0078.D HILL0079.D HILL0080.D HILL0081.D
H I LLOO82. D
1311-4176-S1 131 1- 4 1 7 7 - S l 131 1-4177MS-Si 1 3 1 1 - 4 17 8 - S 1 1311-4179-S1 1311-4160-S1 1311-4180MS-Sl
<10.0 e10.0
162.310247 <10.0 <10.0 e10 0
153 354131
NIA 200
NIA 200
81 16 76 68
2
i
2
2
2
2
2
2
- Analvtical Run Information*:
Acceptable Quanl Range: 10 1002nglml
Calibration Curve I+ 0.9979335
Target Analyte: PFOS Internal Standard: NONE
3M Environmental Laboratory
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-Sample Data File
HILL0031.D HILL0032.D HILL0033.D HILL0034.D
HILL0035.D HILL0036.D HILL0037.D HILL0038.D HlLL0039.D HILL0040.D HlLL0045.D HILL0046.D HILL0047.D HILL0048.D HILL0049.D HILL0050.D HILL0051.D HILL0052.D HILL0053.D HILLOO54.D
HILL0059.D HILL0060.D HILL0061.D HILL0062.D HILL0063.D HILL0064.D
HILL0065.D HILL0066.D k!uuwAB
Y111nn71n &4luaw2 l.luwWa lduaaba 8duaw6a MuawZ,D
4=uuawa
Sample Description
131 1-5043-S1 131 1 - 5 0 4 4 - 51 1311-5045-51 1311-5045MS-S1
1311-5049-51 1311 - 5 0 5 0 4 1 1311-5051-51 1311-5051MS-S1 13 11 - 5 0 7 9 4 1 1311-5080-S1 1311-5081-51 1311-5081MS-S1 1311-5085-S1 131 1-5086-51 1311-5087-51 1311-5087MSS1
13 11-5091-S1
1311-5092-51 13 11 - 5 0 9 3 - 5 1 1311-5093MSS1 1311-512141 1311-512241 1311-5123-51 1311-5123MS-51 1311-5157-S1 1311-5158-S1
-1311-515 9 4 1
1311-5159MS-S1 4aMA#GS
4%uaa&s %wsa3&a
4su&%Gs
dauswxa
434&w-u
sa&umss
- Analytical Run Information*:
Acceptable Quant Range: 5 1002ng/ml
Calibration Curve +: 0.9998940 Target Analyte: PFOS Internal Standard: THPFOS
Measured Concentration.
uglL
Theoretical Matrix Splke
Concentratlon, UglL
Replicate Sample %RSD
91.891635 56.765171 102.487507 326.622579
28.59 200
41.747357 51.741309
18.18
38.024002 234.690722
96.606457 121.213214
91.012507 305.185315
52.079333 51.355299 51.676981 256.670403 40.692073 12,250295
7.04131 228.112564
200 15.61
200 0.70
2w 90.58
200
437.953237 503.530248 423.370937
746.07087 56.237274
86.08401
9.39 200
23.15
87.843563
305.646245
a.%l&Sw
6aZ3.60 4
406Sw64 LAC 44
44 rFC0
2w Za.30
wa
blA4
wa
Matrix Splke Recovery, %
163 31
117.35
152 59
128.34
114.06
313.04
152.82
62.a blA4
sludge samples willbe quanted without
the IS
Dilution Factor,
Nx
10 10 10 10 100 100 100 1w 10 10 10 10 100 1w i 00 1w 2 2 2
2 10 10 10 10 100 100 100 100 2 2 2 2
2 2 2 2
3M Environmental Laboratory
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QualityControlSample Data
Sample Data File
Sample Description
k4ucaaD
l4Wu3.D
44uwxaB
MiWxe.0 kiuoB%D i4uLwsD
&uucw6s
HILL0067.D HILL0072.D HILL0073.D
HILL0074.D HILL0075.D
HILL0076.D HILL0077.D
HILL0078.D
--- a3u&aza
m
dauAsu4 43ua5as
131 1-5181-51 131I-5182-S1 1311-5183-51 1311-5183MS-S1 1311-519961 131 1-5200-S1 1311-5201-S1 1311-5201MS-S1
- Analvtical Run Information*:
AcceptableQuanl Range: 10 1002ng/ml
Calibration Curve ?: 0.9979335
Target Analyte: PFOS
Internal Standard: NONE
Instrument: Hillan/
Run ID: H010405, external standard quant
Theoretical Matrix
Measured
Spike
Concentratlon, Concentration,
UglL
ug/L
aauuD34
55d44au
awsCla8
Replicate Sample %RSD
looI
Matrix Spik Recoveiy, 01
1011.17Co 4oUw44a
CIPIPlfi")
C511nf?l
cbwzzu
asu4zsz
asas364 27.424377
c 10.0 C'10.0
144.847675 e' 0.0
e' 0.0 e.o.0
131.884428
M6
ana
1554 2.w
#DIVrni 2w
NIA 2w
.wu!a ULID
72.42 65 93
uanted using lernal andard. this ?tanot used
Dilution Factor,
Nx
10 10 10 10
1W
100 100 1w
10 10 10 IO 1w 1W 100 1W 2 2 2 2 10 10 10 10 100
1W 1W
1w
2 2 2 2 2 2 2 2
3M Environmental Laboratory
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Qualitv Control Sample Data
Sample Data File
RUSH0032.D RUSH0033.D RUSH0034.D RUSHOO35.D RUSHO036.D RUSH0037.D RUSH0038.D RUSH0039.D RUSH0040.D RUSH0041.D RUSHO046.D RUSH0047.D
IRUSH0048.D
RUSHOO49.D RUSH0050.D
RUSHOO5l.D RUSH0052.D RUSH0053.D RUSH0054.D RUSH0055.D RUSH0060.D RUSH0061.D RUSHOO62.D RUSHOO63.D RUSHO064.D RUSHOO65.D RUSH0066.D RUSH0067.D RUSHOO66.D RUSH0069.D RUSH0074.D
RUSH0075.D
IRUSH0076.D
RUSH0077.D RUSH0078.D RUSHO079.D RUSH0084.D RUSH0085.D RUSHOO86.D RUSH0087.D RUSHOO88.D RUSH0089.D RUSH0090.D RUSH0091.D
Sample Description
1311-5124-S1 1311-5125-3 1311-5126-S1 1311-5126MS-S1 1311-5127-S1 1311-512 8 - 3 1311-5129-S1 1311-5129MS-SI 1311-5130-S1 1311-5131-S1 1311-513241 1311-5132MS-S1 1311-5133-51 1311-513431 1311-5135-S1
1311-5135MS-S1 1311-5136-51 1311-513731 1311-5138-S1 1311-5138MS-S1 1311-513 9 41 1311-5140-81 1311-514141 1311-5141MS-S1 1311-5142-S1 1311-514 3 4 1 1311-514441 1311-5144MS-SI 1311-514541 1311-5146-Si 1311-514741
1311-5147MS-SI 1311-5148-S1 1311-5149-S1 131I-5150-SI 1311-5150MS-SI 1311-5151-SI 1311-515 2 4 1 1311-5153-S1 1311-5153MS-S1 1311-515441 1311-515SS1 1311-5156-S1 1311-5156MS-S1
R010412
Instrument: Rush
-Run ID: _ R01_04_ 12
Measured Concentration,
uglL
235.149546 235.642534 230.804348 493.847976
21,144501
40.0
-40.0 221.257013 24.842763 18.057138 25.246348 254.141 1 1 12.234056 133.554484 135.817446
386.683935 85.185002 76.528101 75.760492 321.006503 157.041946 155.224502 154.501564 424.195113 109.207528 99.477125
96.43578 343.24391 1 c10.0 40.0 <10.0
220.445044 123.282427 90.083398
152.507888
423.934455 470.275971 481.768175 461.552835 867.494012 259.294489 273.244648 260.405148
559.64233
IneoreIicai Matrix Spike Concentration,
uglL
Replicate Sample %RSD
1.14
200
N/A
200 17.78
200 10.23
200 6.61
200 0.84
200
6.56 200
NIA
200 25.61
200
2.15 200
2.93 200
Matrix Spike Recovery, %
131.52 110.63 114.45 125 43 122.62 134.85 123.40 110.22 135.71 202.97 149.62
Analytical Run Information':
Acceptable Quant Range: 10 - 1002ng/ml
Calibration Curve ?: 0.9999132
Target Analyte: PFOS
InternalStandard: THPFOS
3M Environmental Laboratory
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Qualitv Control Sample Data
Sample Data File
IHILL0031.D
HILL0032.D HILL0033.D HILL0034.D HILL0035.D HILL0036.D HiLL0037.D HILL0038.D HILL0039.D HILL0040.D HILL0045.D HILL0046.D HILL0047.D HILL0048.D HILL0049.D
HILL0052.D HILL0053.D HILL0054.D HILL0059.D HILL0060.D HILL0061.D HILL0062.D
IHILL0063.D
HILL0064.D HILL0065.D HILL0066.D
Sample Description
1311-518431 1311-5185-SI 1311-518641 1311-5186MS-S1 1311-5187-41 1311-5188-S1 1311-5189-S1 1311-5189MS-S1 1311-5190-S1
1311-5191-S1
1311-5192-S1 1311-5192MS-S1 1311-520241 1311-5203-S1 1311-52O4-Sl 1311-5204MS-S1 1311-5205-S1 1311-5206-S1 1311-520731 1311-5207MS-S1 1311-5208-S 1 1311-5209-S1 1311-5210 4 1 1311-521OMS-S1 1311-5211-S1 1311-5212-S1 1311-5213-SI 1311-5213MS-S1
Analytical Run Information*:
Acceptable Quant Range: 10 - 400.8nglml Calibration Curve ?: 0.9913025
Target Analyte: PFOS
Internal Standard: THPFOS
H010412
Instrument: Hillary _ Ru_ n ID_: _ H0_ 10_ 412
Measured Concentration,
uglL
< 10.0 < 10.0 < 10.0
124.150116 < 10.0 < 10.0 < 10.0
125.816424 11.327739 14.704513
< 10.0 204.597109
< 10.0 < 10.0
10.0 110.900636
< 10.0 < 10.0 < 10.0
118.227093 14.126747 11.420901
10.0 194.375995 14.879531 23.895092 24.461872 215.92261 1
Matrix Spike Concentration,
uglL
Replicate Sample %RSD
NIA 200
NIA 200
18.34 200
NIA 200
NIA 200
14.98 200
25.51 200
Matrix SDikf Recove&, ?4
62.08 62.91 102.30 55.45 59.11 97.19 95.73
3M Environmental Laboratory
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BACK TO MAIN
Qualltv Control Sample Data
HlLLW33 D HILLW34.D
HILLW35.D HILLOO36.D HILLW37.D HlLLW38.D
HILLO039.D H1LLOMO.D
HILLW45.D HILLW48.D HILLW47.D HILLOM8.D HILLW49.D
HILLW50.D HILLW51.D HlLLW52.D HiLL0053.D HILLW54.D
HlLLW59.D HILLO06O.D HILLW61.D tilLLW62.D HILLWB3.D HILLCOS4.D HILLW65.O H1LLWBB.D HILLW67.D HILLW68.D HILLW73.D HILLW74.D
HILLW75.D HILLW76.D HILLO077.D HILLOO78.D HlLLW79.D HILLW8O.D HILLW8l.D HlLLW82 D HILL0087.D
HILLW88.D HILLW89.D HlLL009O.D HILLW9l.D HILLW92.D HILLCW3.D
HILLOCB4.D HlLLW95.D HILL0WS.D HILLO1Ol.D HILL0102.D HlLL0103.D HILLO1M.D HlLL0105.D
HILLO1DS.D HILLOl07.D HILLD1OB.D
WLLO(C+D
HILLO1lO.D
HlLLO115.D HILLOll6.D HILL0117.D HILLO118.D HILLO119.D HILLO~ZO.D HILL012l.D HILLO12Z.D HlLLOl23.D HILLO124.D HILLOIZB.D HILL0130.D HILLO~~I.D HILL0132 D HILL0133 D HILL0134 D HILL0135 D HlLLOlM D
-5020-53 -5021-53
-5021MS-53 -5055-53 -5056S3 -5057.53
-5057MS-53 -5091-53
-5092-53 -5093-53 -5O93MS-53 -5127-53 -5128-53
-5129-S3 -5129M-3 -5163-53 -5164-53 -516553 -5165MSS3 -5189-55 -52-3 -5201-53 -5201MS-53
-5022-53 -5023-53 -502443 -5024MS-53 -5058-53 -505&53 -5060-53
-5ffiOMS-53 -5094.53 -509553 6-53 -5W6MS-53 -5130-53 -5132-53 -5132MS-53 -5166-53
-5167S3 -516553 -515BMSS3 -5202-53 -520553 -5204.55 -52MMS-53 -5025-53 -502653 -5027-53 -5027MS-53 -506143 -5062-53 -506553
-5063MS-53 -5097-53 -5008S3 509953
-5woMS53
6133-53 -5134-53 -5135-53 -5135MSS3 -5169-53 -5i70-s~ -5171-53 -5171MS-53 -520553 -52M.53 .uo7-sa -52071553 -5028-53 -5029.53 -5030-53 -5030MS-53 -5oBcS3 -506553
Analvtical Run Information':
AmpUMe Quint R a w : 5.1WZndd CallbnWmC u m 8:0.9978856 Taw1 AnWe: PFOS InternalStsndaW THPFOS
-- Instrument: Nilllry Run ID: H010316
C 5.0
c 5.0
193.2
XI)
5.0
c 5.0
NIA
< 5.0
198.3
2m
10.9
27 8
81.5
r50
187.3
2m
< 5.0
< 5.0
Nm
< 5.0
207.2
am
< 5.0
c 5.0
NIA
< 5.0
199.1
W
c5.0
< 5.0
MIA
c 5.0
172.7
W
<so
c 5.0
Nm
< 5.0
190.5
2m
42 0
48.9
4463
57.0
261 8
203
56.4
45 9
1221
57.9
268.0
W
111.6
8-
98.8
333.9
2m
142.0
99.1
37%
65.7
281.1
83
33.3
25.2
11124
30.1
205.7
205
~50
< 5.0
NIA
< 5.0
193.0
W
159.8
203.2
11W
i7,4E180.8
4164 161.9 173.0 184 7 557.2 393 7 375.2 331.3
298.3 857.1 327.9
2m
D1s
m
,~ ~
598.5
97.6
127.8
98.9
301.6
5.6.
c50
5 42
60
2W 4
2m
461 1
285 5
86 11t gs 14 8367 ,ma 989
us%
sn
lm 44
1m5
,4757
w.n
87W
mu) 11763 181IJ
117 93 ,3532 101 55
87 47
Dllulion Level. Nx
2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2
2 2 2 2 2 2 2 2
2
2
2
2
2
2
2
2 2 2 2 2 2 2 2 2
2 2 2 2 2 2
2 2
2
2
2
2
2
2
2
2
L winternalstsndard n6pmse
2
2
2
2
l o w lnbrnal rlanderd n 6 p n 8 s
2
2
2
2
Low Internalslandard nsponse
2
2
2
2
2
2
2 2 2 2 2
3M Environmental Laboratory
Page 251 of 703
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QualiW Control Sample Data
Instrument: Hillary
_ Run_ID:-H010311
Sample Dab File
HILLW38.D HILLO037.D HILLW38 D HILLW39.D HILLOM0.D HlLLOMl D HILLOM2.D HILLOM3.D HILLOO44.D HILL0045.D HILLO050.D HiLLoai.~ HILLW52.D HILLW53.D HILL0054.D
HILL0055.D HILLW58.D HILL0057.D HILLOO58.D HILL0059.D HILL0064.D HILLOffi5.D H1LLW.D HILLOffi7.D HILLW8.D HILL0069.D HILL0070.D HILL0071.D HILLOO72.D HILLW73.D HILLW78.D HlLLW79.D HILLWB0.D HILLOO81.D HILLW82.D HILLCO33.D HILLW84.D HILLW85.D HILLW86.D HILL0087.D HILLW92.D HILLOOB3.D HILL0094.D HlLLW95.D H1LLWSS.D HILLW97.D HILLW98.D HILLWg9.D HILL01W.D HILLOlO1.D HILLO1ffi.D HILLOlO7.D HILLO1DB.D HILLOlO9.D HILLO11O.D HILL0111.0 HILL0112.D
HILLOf<J.D
HILLOl34.D
HILLOl15.D WLKuaUD
HILL0121.D HILLO122.D HILL0123.D HILL01240
uuwl6.0 uuLca&o
YlLLOuLD
YlLLDIlPp HILLO133.D HILLOl34.D HILL0135.D HILLOl36.D HILL0137.D HILLOl38.D HILLO139.D HILL0140.D
Sample h c l i p l l o n
E00-1311-4059-S7 EW-l311-4060-S7 ~00-13i1.4064-s7 EW-1311-4ffi5S7 EW-1311.408gS7 EW-1311-4088-S7 EW-13114089S7 00-1311-4090-S7 EW-13114094-57 EW-13114085S7 EW-l3114O%S7 EW-1311-411E-S7 EW-13114118-S7 E00-1311-4120-S7 EW-13114004S8
EW-1311-4W5-SE EW-13114W6S8 EW-lJt140ffiMS-S8 EOC1311-4028-S8 EW-13114030-58 EO0-13114030MSSE EW-1311-4034-S8 EW-13114035S8 EW-13114036-SE E00-13134038MS-SB EW-1311-4058-S8 EW-1311-4059-S8 EW-13114060-S8 EOO-1311-4060MSS8 EW-131140MS8 00-1311406558 E00-1311-4066-S8 EW-1311-4068MS-SO E061311408E-S8 00-13114089-58 EW-1311-4090-S8 EW-1311.409OMS-SB EW-1311-4094-58 EW-13114085-S8 EDLL1371-4096.S8 EO0-1311-4098MSS6 E00-131441lE-SB EW-1311-4118-S8 E00-13114120-S8 E00-1311-4120MSSB EW-1311-5Wl-Sl EW-1311.5W2-Sl EW-1311-5W9-Sl EW-1311-5003MSSl E00-1311-50M-Sl EW-1311-5005S1 E00-1311-5wB-Sl EW-131l-S0ffiMSSl E00-1311-5W7-Sl E00-1311-5W8-Sl EW-1311-5009Sl EW-1311-5009MS-Sl
EW-,JI,-SOIDSI
EW-1311-5011-S1
ECC-1311-5012-S1
- E061311-501351 EW-1311-501CSl EW.1311.5015-Sl EW-1311-5015MS-Sl
- - - EW-1311S019-Sl EW-1311-5020-Sl EW-1311.5021-SI E00-1311-5021MS-Sl
EW-1311-5022-51 EW-1311-502381 EW.1311-5024-Sl EW-t31 1-5024MS-S1
I"C0rnnE.l Ma."*
Maarund
Spike
COnoCnlnlion, Qmsenlnllon,
25 2
24.5
C 5.0
C 5.0
C 5.0
37.7
42.6
38 4
d50
c 5.0
C 5.0
29.5
28.8
28 9
C 5.0
c 5.0
r5O
205.4
100
12 3
10.4
214.9
W
c50
< 5.0
< 5.0
205.9
W
29.8
11 5
25.7
241.8
80
< 5.0
c 5.0
C 5.0
213.8
W
40.2
41 4
37.5
256.5
W
<50
< 5.0
5.0
1984
80
< 5.0
29.7
25.6
246.5
W
14.1
< 5.0
< 5.0
221.8
W
188.1
197.5
196.5
428.8
W
253.2
183.8
169.5
415.6
80
435.7
403.3
406.6
M
nl
102.7
110.0
102.9
311.8
W
605.a
OlLO
6s.s
ml.6
W
15.6
5.0
< 5.0
207.9
W
188.8
193.1
203.3
437.0
W
Repllcih
NII 8 e7 WA ,e2 WA I 1 52 NIA
43m
WA
5m
Nm 10 s
WA 0 e1 2212 4.33 IS4 463 WA 149
Malrlx Spike
rm 69 ,m2* 1m 83
lWG2
106 m
417901071
10951
ISd30%
DBW
41045
4,082
145 I.
3nm
w > 501n#d
101 1 > 5oln#d >mlndd > 501n#d
mu >5Oln#rd
m3sl
IIBS
NI
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2 2 2 2 2
2 2 2 2 2 2 1
1 2 2
2
2
2
2 2
2
2
2
2
2
2
2
2
2 2 2 2 2 2 2 2 10 10 10
10
10 10 10 10 1W 1w 1w 1w 100 100 1W 100 2 2 2
2 2 2 2 2
Analvtkal Run Information.:
AcceptableOuanlRsnps 5 - 501n#mI
t
3M Environmental Laboratory
Page 252 of 703
BACK TO MAIN
Qualitv Control Samale Data
RUSHW33 D RUSH0034 D
I RUSH0035 D RUSHOO36D RUSHW37 D RUSH0038 D
RUSHWBD D
nuwowaa
RUSH0045 D RUSH0046 D
RUSH0047 D
RUSH0048 D RUSH0049 D RUSHWSO D
RUSHW51 D RUSHW52 D RUSH0053 D RUSH0054 D
luwo&aD
RUSHOOM) D RUSH0061 D RUSH0062 D RUSH0063 D RUSHW64 D RUSH0065 D RUSH0066 D
RUSH0067 D RUSHW68 D
RUSHW73.D
I RUSHW74.D RUSHW75.D
RUSHW76D RUSH0077 D RUSHW78.D RUSH0079.D RUSHWBO D RUSH0081.D RUSHW82.D
13114123-S1 13114123MS-S1
13114124-S1
13114125-S1 13114126-S1 13114126MS-S1 13114127-Sl
13114129-Sl 13114129MS-SI
13114130 SI 13114131-S1 13114132-Sl 13114132MS-SI 13114133-Sl 13114134-SI 13114135 SI 13114135MS-SI
xW44aua
13114137-S1 13114138-S1 13114138MS-Si 13114139-S1 13114140-S1 13114141-S1 13114141MS-S1 1311414281 13114143-S1 13114144-51 13114144MS-S1 13114145-SI 1311-4146-51 13114147-S1 131t4147MS-SI 13114148-S1 13114149-S1 13114150-51 1311 4 15OMS-SI
Analvtical Run Information*: Acceptable Quanl Range: 2.5 -ZSO.Sn@!rnl
Calibration Curve r? 0.9982281
Target Anawe:PFOS
Internal Standard: THPFOS
_ins_tru_me_nt:_Ru_sh _ Run_ID:-R010314
Mearurej Concentrat on,
Theoretical Matrix Splke Concentration.
Replicate Matrix Spike I
e25 197 9 <25
<25 c25 1994
37 0 45Wl 27 3 231 6 24 3 21 9 25 0 232 9
225 23 3 23 7 225 7 GM 22 8 23 2 228 1 20 7 20 4 21 0 228 2
20 4 21 3 20.7
224.5 19.5 192 190 223.2 20.1 20.0 20.2 224.3
zw
NIA 200
21 30
m
6 71 200
2 75 200 "NO Mernal StandardDelsded
I17 200
143 2w
2 05 2W
200 0.29
2W
98 95
1
99 68 10217 10395 10096 10242 10362 101.88 102.09 IO204
Calculation (N
0.923233823
'Ptid neaviy 4128
."mmrm out. 0 ".I".
0.M. andh e mabir IC abvlom Outlier
was spike
passed.
Dilution Factor,
NX
10 10 10 10 10 10 10 10 IO 10 IO 10 IO 10 IO 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10
3M Environmental Laboratory
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Qualitv Control Sample Data
i n s t r u m e n t Hillary
- R u n ID: - HOT0313
HILLW32.D HILLW33.D HILLW34.D HILLW35.D
HILLW36.D HILLW37.D HILLOO38.D HILLW39.D HILLW0.D MLLcaLD i4uow6a kbuuw&D &4uaMaD n&UMaD HILLW5O.D HILLW51.D HILL0052.D
u4ucsaa
HILLW54.D HILLW59.D H1LLWGO.D HILL0061.D HILL0062.D HILL0063.D HILLD064.D HlLL0065.D HILLW66.D HILL0067.D
E00-1311-5063-S2 E00-1311-5063MS-S2
00-1311-50M-S2 .
E00-1311-5065-S2 00-1311-5066-S2 EW-1311-5066MS-S2 E00-1311-5067-S2 E00-1311-5C68-S2 E00-1311-5069-S2
- - - '
- E00-1311-5091-S2 EW-1311-5092-S2 EW-1311-5093-S2
- 00-1311-5094-S2 EW-1311-5095-S2 EW-1311-5W6-SZ EM-1311-5096MS-S2
EW-1311-5097-S2 EW-1311-5098-S2 EW-I3115099-S2 EW-1311-5WSMS-S2 EW-1311-5100-S2 EW-1311-510l-S2
53.1 252 7 1147 120 2 188 2 415 8 438.9 417.8 333.4
ea
lozls u67.6 44aJ2 11404 137 3
49.1. 33.t 13Lb 41.7 35.2 34.E 250.2 127 126.' 135.!i 353.c; 334 i' 327.6
200 29.03
200 14.08
100 16 17
100 75.71
100 1012
2w 4.01
2QQ 2.19
99.62
Calculation
(N= 3)
113.82
+LZ10 laCUn
,501 nUmL ,501 ngmL ,501 nglrnL ,501 WmL ,501 "gmL
30WQ I S T k 7 W
Q.844821802
107 79
laem
- A n a l V t i c a l R u n Information':
AcceptablePuanl Range 5 501nglml
Calibrationcurve rZ: 0.9961319
Target Analyte: PFOS Internal Standard: THPFOS
Dilution Factor,
Nx
2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2
3M Environmental Laboratory
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Quality Control Sample Data
-- Instrument: Rush
Run I D R010309
I hsontied Melrlx
Measured
Spike
Concenldion. Concentration.
Rwilisate
M m x Spike
RUSH0470 D RUSH0071D RUSH0472 D RUSH0073 D RUSH0476 D RUSHW79D RUSHWB0.D RUSHW81.0 RUSHWB2.D RUSHW83.D RUSHWBI D RUSHOO65.D F4USHOOBB.D RUSH0067.D RUSH0W.D RUSH0093.D RUSHWO4.D RUSHWg5.D RUSHW98.D RUSHOOg7.D RUSHW98.D
RUSH0DgB.D RUSHO1OO.D RUSHO1Ol.D RUSH0106.D
RUSHO107.D RUSHOlO6.D RUSHOlO9.D
RUSHO1lO.D RUSHO1Il.D RUSH0112.D RUSH0113 D RUSHO114.D RUSHO11S.D RUSHOl2O.D
RUSH0121.D RUSH0122.D RUSH0123D RUSH0124.D
RUSH0125.D RUSHO126.D RUSH0127.D RUSH0128.D RUSH0129.D RUSHO134.D RUSHO135.D RUSHO1JS.D RUSH0137.D RUSHOl38.D RUSHOl39.D RUSHOl4O.D
1311406555 1311-406855 13114066-55 1311-4069-S5 13i1-409as5 1311409CSS 1311-409555 13114096-55 1311-4115S5 1311-4llsS5 i311-412as5 1311-4004S6 1311-400556 13114wB-% 13114006MS-56 13114025% 1311-403a56 13114OMMSSB 1311-403CS6 1311-4036S6 1311403656 1311-4026MSSB 1311-405as6 13114059.56 1311-406056
13114ffiOMS-56 1311~oBcS6 1311-4065sB
1311-406646 1311-4066MS%
1311-408a~6 13,140L)B-SB 13114CSUS6 1311409OMSSB 13114OgcS6
1311-4095SB 1311-4w6-S6 1311-409sMS-SB 13114iia~g
1311-4119-S6 1311-4120-sB 1311412OMSS6 13114WCS7 1311-4W5S7 1311-4006-S7 13114025S7 1311-4030-S7 1311-403cS7 1311403587 1311-4036-57 13114OSBS7
- Analvtical Run Infonnatlon':
AccepUMs Quanl R a w : 5 250.5n!dml Calibbsn CUM ?. 09926833 Targelhalfla: PFOS
lnlernd Standard:THPFOS
40 3 43 6 45 4 <5 0 4.0
L5.0 16.9 24 1 26.3
4.0
c5.0 -50 217.8 9.9 9.4 241.4 <5.0 <5.0 4.0 226.5 29 6 26.0 27.2 208.2 rs.0 c5.0
4.0 220.6
36.5 40.5 36.7 260.5 s5.0
<S.O 4.0 211.0 29.6
28.5 2b 9 262.6 <5 0 ~5.0 4 0 9.9 10.1 e.0
6.9 -5.0 27.7
WA
((I 31
WA 2m
3.W
Nm 2m
4W 2m
WA 2m
I a2
zm
WA
m
6 IB 205
HIA
Ifa WA
ICs 8 ,160 ll3.3 900 (@a3 1102 103 4 (155
Dilution Factor.
NK
2 2 2 1 2 2 2 2 2 2 2 2 2 2 2 2 2 1 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2
a
2 2 2 2 2 2 2 2 2 2
1 2 2 2 2 2
2 2 1 2 2 1 2 2 2 2 2 2 2 7 2 7 1 2 2 2
3M Environmental Laboratory
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Qualitv Control Sample Data
Instrument: Hillaly Run ID: H010309
HILL0125.D
EW-1311-4085-S3
HILLll126.D
E00-1311-41i8S3
8.254569
HILL0127.D
EW-1311-4118-S3
< 5.0
HILL0128.D
EW-1311-4120-S3
45.097179
HiLL0133.D
EW-1311-40W&4
< 5.0
HiLL0134.D
EW-1311-4W544
5.0
HILLO135.D
EW-1311-4006-S4
5.0
HILL0136.D
EW-131I-4028S4
12.302809
HILL0137.D
EW-13i1-4030-S4
8.300846
n 47
HILLO1JB.D
EW-1311-4024-S4
< 5.0
HILL0139.D
EW-131I-4035S4
5.0
WA
HILLOi4O.D
EOO-13I1-4OMS4
<50
Analvtlcal Run Information':
Auepmbla QwnlRings: 5.400.8nglrnl
CaliLrabonCurva ?: 0.9924853
T a w 1Analytc: PFOS internalStmd.rd. THPFOS
Dllution Factor,
NX 10 10 IO 0 10 10 IO 10 10 10 10 10 90 10 IO 10 10 10 10 10 10 10 10
IO 2 2 2 2 2 2 2 2 2 2
2 2 2 2 2 2 2 2 2 2 2 2 2
2 2 2 2 2 2 2 2 i 2 2 1 2 2 2 2 2 2 2 1
3M Environmental Laboratory
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Qualltv Control SarnDle Data
-- _ Instr_ume_nt:-Rush Run ID: mi0222
131140M-S
1I 0
13114WBsl
31.3
Analvtical Run Information':
Acceptable Quant Range: 5.0ppb-500.lppb
Calibration Curve ?: 0.9999393
Target Analyie: PFOS Internal Standard: THPFOS
'For mom run info. See the Data Review Form includedin lhe Raw Data
e 46 127 4.57
NIA NIA ?2 18 7 27 2 78 1.48 0.13
e 57 3 42
1w 89 101 24
24 rn
504
1w35 1w.w 90 38
00883
0.9976 0.9577
10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 IO 10 10 10 10 10 10 10 10 10 10 10 10 10 IO 10 10 10 10
10 10
10 High internalstandard response 10 10
10 10 IO 10 10 10 10 10 10
IO 10
IO 10 IO 10
10
10
10 10 10 10 10 10 10 10 10
3M Environmental Laboratory
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Qualitv Control Samole Data
-;ample Data File HILL0037.D
HILLW38.D HILLW39.D HILLW40.D HILLW41.D
HlLL0042.D HILLW43.D
HILLOW4.D HILLW45.D HILL0046.D HILLO051.D HILLW52.D HILL0053.D H1LLWM.D HILL0055 D
HILLW56.D HILLW57.D HILLW5B.D HILLW59.D HILLW6O.D HILLOC65.D HILLW66.D HILL0067.D HILLW68.D HILL0069 D HILLW70.D HILL0071 D HILLW72.D HlLLW73.D HILLW74.D HILLW79.D HILL0080 D HILLW8f.D HlLLOOd2.D HILL0083.D HILL0084 D HlLL0085.D HILLW86.D HILLW87.D HILLW88.D HILLW93.D HILLW94.D HILLW95.D HILLW96.D HILLW97.D HILLW98.D HILLW99.D HILL0100.D
HILLOIOI.D HILL0102.D HILL0107.D HILLO1W.D
HILL0109.D HILLO1lO.D HILL01l l . D
HILLO11Z.D HILLO113.D HILL0114.D HILLOI15.D HILL0116.D HILLOl21.D HILL0122.D HILL0123.D HILL0124.D HILL0125.D HILL0126.D HILL0127.D HILL0128.D
Sample Description
13114001-S1
13114002-SI 1311 4 W 3 - S l 13114003MS-S1 1311 4 W 4 - S l 13114W5-Sl 13114006-Sl
13114W6MS-Sl 13114W791 13114WB-SI 13114009-Sl
13114W9MS-SI 13114010-S1 13114011-S1 13114012-SI
13114012MS-S1 13114013-S1 13114014-S1 1311 4 0 15-S1
13114015MS-S1 13114016Sl 13114017-SI 13114018-S1
1311 4 0 18MSS1 13114019-S1 1311402oS1 1311-4021-SI
13114021MS-SI f311-4022-S1 13114023-S1 13114024-Sl
13114024MS-S1 131f-4025-Sl f31f-4026-Sl 13114027-S1
13114027MS-51 fJfi-4028-Sf 13114029-S1 13114030-SI
13114030MS-S1 13114031-S1 13114032-S1 13114033-SI
13114033MS-S1 1311403491 1311 4 0 3 S S 1 13114036-S1
13114036MS-S1 13114037-51 13114038-SI 13114039-S1
1311-4039MS-S1 13114040-S1 1311-4041-51 13114042-Sl
13114042MS-S1 13114043-S1 1311-4044-SI 13114O45-Sl
13114045MS-SI 13114046-S1 13114047-SI 13114048-Sl
13114048MS-S1 13114049-SI 131l-lO50-Sl 1311405151
13114051MS-SI
5.0 <50 204.7
5.0 c 5.0
5.0 204.3 51 2 55.2 86.0 256.1 52.8 52.4 50.9 247.2 51.1 52.4 52.6 251.1 51.9 50.2 51.4 245.8 49.0 50.7 50.2 247.5 55.8 49.3 52.2 247.3 52.0 49.7 52.2 249.1 50.5 53 4 51.0 248.3 c 5.0 < 5.0 < 5.0 200.9 c50 c 5.0
36.6 33 0
224.8
10.4 1.1. 3. 210 8 11.5 9.9 10.2 209.8 13.6 11.2 12.9 211 8 9.5 8.7 10.4 209.5
Analytical Run Information': Acceptable auant Range 5 Oppb-250 5ppb Calibralion Curve? 0 9983566
Target Analyts PFOS Internal Standard THPFOS
T o r more run info See the Data ReviewForm includedin the Raw Data
Instrument:
_ Run_ID:-H010222
ThForeticdl-
NIA 2w
NIA 2w
29.70 2w
1.92 2w
1.411 2w
1.71 2w
1.76 ZOO
622 200
2.71 200
199 2w
NlA
m
NIA
11.75
2w 7.95
200 9 79
204 11.76
200
102.15 102.15 115.05 98.17 99.29 87.19 98.67 97.54 9812 98.65 100.45
99.75 99.81 99 41 98.59
Dilution
10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10
IO
10 10 10 10 10 10 10 10 10 10 10 10
10 10 10 10 10
3M Environmental Laboratory
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Quality Control Sample Data
1311-4153-51
- Analvtical Run Information':
Acceptable Quant Range: 2.5 1002nglrnl CalibrationCurve r! 0.9987251 Target Analyte: PFOS Internal Standard: THPFOS
Instrument: Hillary Run ID: H010402 fA)
.:2.5
IS> 130% IS, 130% IS> 130% IS> 130% IS, 130% IS> 130% IS> 130% IS, 130% IS> 130% IS> 130%
Dilution Factor,
Nx
2 2 10 10 10 10 10 10 10 10 100 100 100 1CQ 2 2 2 2 2 2 2 2 2 2
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Quality Control Sample Data
I RUSHO038.D
RUSHO039.D RUSH0040.D RUSH0041.D RUSH0042.D IRUSH0043.D RUSHO048.D RUSH0049.D RUSHOO5O.D RUSH0051.D
131 1-5026-S1 1311-5027-51 1311-5027MS-SI 131 1-5028-S1 131 1-5029-S1 1311-5030-S1 1311-5030MS-S1 1311-5031-51 1311-5032-51 1311-5033-51
RUSHO054.D RUSHOO55.D RUSHO056.D RUSH0057.D RUSH0062.D RUSHO063.D RUSH0064.D RUSH0065.D RUSH0066.D RUSH0067.D RUSHO068.D RUSHO069.D RUSH0070.D RUSH0071.D RUSH0076.D RUSH0077.D RUSH0078.D RUSHO079.D RUSHO080.D R U S H 0 0 8 1.D RUSHO082.D RUSH0083.D RUSHO084.D RUSHO085.D RUSH0090.D RUSH0091.D RUSH0092.D RUSHOO93.D RUSH0094.D RUSHO095.D RUSHO096.D RUSHO097.D RUSHOOS8.D RUSHO099.D
1311-5035-51 1311-5036-SI 131 1-5036MS-S1 1311 - 5 0 3 7 6 1 1311-5038-1s 1311 - 5 0 3 9 4 1 131 1-5039MS-S1 1311-5040-51 131 1 - 5 0 4 14 1 131 1-5042-S1 1311-5042MS-St 1311-5043-81 131 1-5044S1 1311-5045-S1 1311-5045MS-S1 1311-5046-51 1311 - 5 0 4 7 4 1 1311-5048-51 131 1-5048MS-S1 1311 - 5 0 4 9 4 1 131I-5050-1s 1311-5051-SI 1311-5051MS-S1 1311-5052-S1 1311-5053-S1 1311-5054-51 1 3 11- 5 0 5 4 M S - S 1 1311-5055-SI 131 1 - 5 0 5 6 4 1 1311-5057-SI 1311-5057MS-S1 1311-5058-Si 1311 - 5 0 5 9 4 1 1311-5060-Si
Analvtical Run Information": Acceptable Cluant Range: 5 - 5Olng/ml
Calibration C u r v e ?: 0.9997025
Target Analyle: PFOS
Internal Standard: THPFOS
Instrument: Rush
-Ru_n ID_: R_010329a
Measured Concentration,
ugn
159.93 152.92 143.26 415.70 391.37 230.09 387.34 > 501 82.81 85.11 80.38 329.29 404.55 414.16 433.98
> 501
13.57
5.0 5.0
205.86 99.69 96.20 58.15 306.23 460.98 305.78
> 501 > 501
183.73 166.25 156.55 423.27 359.52
> 501
351.66
> 501
211.71 253.43 207.41 499.47 41.77 10.29
5.71 227.32 31.83 34.15 32.79
Matrix Spike
Concentration,
wn-
Replicate Sample %RSD
Matrix Spike
Recovery, X
5.50
200
136.22
27.35 201
286
. NIA
202
123 2 2
3 59
203
NIA
NIA
204
NIA
27.21
205
121.02
28.62
206
NIA
8 16
207
128 85
1.56
208
NIA
11.34
209
138 74
101.93
210
105.53
3.54
Dilution Factor,
NX
10 10 10 10 10 10 10 10 1w
1w
100 100 100 100 100 100
2 2 2 2 2 2 2 2 2 2 2 2 10 10 10 10 10 10 10 10 100 100 100 100 2
2
2 2 2
2
2
3M Environmental Laboratory
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Qualitv Control Sample Data
Sample Data File
RUSHO120.D RUSH0121.D RUSH0122.D RUSH0123.D RUSH0124.D RUSH0125.D RUSH0126.D RUSH0127.D RUSH0128.D RUSH0129.D RUSH0134.D RUSH0135.D RUSH0136.D
IRUSH0137.D RUSH0138.D RUSH0139.D RUSH0140.D RUSH0141.D RUSH0142.D IRUSH0143.D
RUSH0148.D RUSH0149.D RUSH0150.D
R U S H 0 151.D
RUSH0152.D RUSH0153.D RUSH0154.D RUSH0155.D RUSH0156.D RUSH0157.D RUSH0162.D RUSH0163.D RUSH0164.D RUSH0165.D RUSH0166.D RUSH0167.D RUSH0168.D RUSH0169.D RUSH0170.D RUSH0171.D RUSH0176.D RUSH0177.D RUSH0178.D RUSH0179.D
Sample Description
1311-5060MS-S1 131 1-5061-S1 1311-5062-51 1311-5063-S1 131 1-5063MS-S1 131 1-5064-S1 1311 - 5 0 6 5 4 1 1311-5066-51 1311-5066MS-S1 1311 - 5 0 6 7 4 1 1311-506841 131 1-5069-S1 1311-5069MS-S1 131I-5070-SI 1311-507141 131 1 - 5 0 7 2 4 1 1311-5072MS-S1 1311-5073-51 1311-507441 1311-507541 1311-5075MS-S1 1311-5076-S1 1311-507761 1 3 11- 5 0 7 8 - S 1 131 1-5078MS-S1 131 1-5079-S1 131 1-5080-S1 1311-5081-S1 1311-5081MS-S1 131 1-5082-S1 1311-5083-S1 131 1 - 5 0 8 4 4 1 1311-5084MS-S1 131 1-5085-S1 1311-5086-51 1311 - 5 0 8 7 4 1 1311-5087MS-SI 1311-5088-51 1311-5089-Si 1311-5090-S1 1311-5091-S1 131 1-5092-S1 1311-5093-SI 1311-5093MS-SI
- Analytical Run Information*:
Acceptable Quant Range: 5.0 5Olnglml
CalibrationCurve ?: 0,9998900
Target Analyte: PFOS
Internal Standard: THPFOS
Instrument: &&I Run ID: R010329b
Measured Concentration,
ug/L
.:5.0 g. 5.0
5.0
> 501 > 501 > 501
> 501
5 501
> 501 > 501 > 501
c 5.0
254.22 135.13 141.11 142.97 427.65
83.18 77.82 77.95 329.52 179.53 187.10 171.68 465.00 101.23 103.30 109.27 359.43
207.59 75.82 75.66 95.65
324.00 486.79
238.27 236.36 226.44
303.36 279.64 283.95
29.08
5.29
221.42
Matrix Spike Concentration,
UglL
Replicate Sample %RSD
2.93 2w
3.84 200
4.30 200
200 NIA
2w
13.95 200
NIA 2w
2.72 2w
NIA 2w
4.37
97.90
2w
Matrix Spike
Recovety, %
142.34 125.78 146.66 125.08
I
103 80 114 18
NIA NIA NIA
110.71
Dilution Factor,
Nx
2 2 2 2 2 10 10 10 10 10 10 10 10
1w
100 1W 100
2 2 2 2 2 2 2 2 2 2 2 2 10 10 10 10
10
10
10 10
100 100 100
2 2 2 2
3M Environmental Laboratory
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Qualltv Control Sample Data
-- Instrument: Rush Run ID: R010312
Dllution Factor,
NI
tm Im im tm
2 2 2 2 2 2 2 2 2 2 2 2 10 10 10 IO 10 10 10 10
im IW tm tm
2 2 2 2 2 2
2 2 2 2 2 2 10 10 10 10 2 2 2 2 2 2 2 2 2 2 2 2
2 2
2 2 2 2 1 2 2
2 2
2
2
3M Environmental Laboratory
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Quality Control Sample Data
Instrument: Soup
_ Run ID: s0011_ 20a
~
500120-078 SOI120-079
00-1311-1533 ohr E00-1311-10W h r
EW-1311-1w 5 h r
00-1311-1006 h r 00-1311-1007 h r
E00-1311-101524hour, O.lOrngll, SI. C-I
00-1311-101524 hour 0 l0mgh. S2.C.1. MS EW.1311-101624 hwr. 1Omm. S2 Gl EW-1311-101724 hwr, i.Om&. 52. C-I EOD1311-101824hwr. l.Orng/L.S2. GI ECO-1311-101824hwr, 1 Orngh. 52. GI. MS
Measured Concentration,
Splke Concentration,
UgL
c24.75
g24.75
44.75
g24.75
<24.75
c24.75
488.97
523.02
544.09
25.86 **~omnmt mwn out
64.75
<24.75
217.61
2w
~24.75
<24.75
<24 75
253.23
200
462 08
475.12
505 67
71903
2W
<24.75
c24.75
<24.75
248.01
200
84.75
c24.75
44.75
254 5
2w
11087
118.37
137.3
344 75
200
Replicate Sample XRSD
NIA NIA 5.58 NIA
NIA
4.65
NIA
NIA
11.15
Matrlx Splk, Recovery, ?
108.81 126.62 106.68 124.01 127 25 103 73
Q-Test Calculation
(N = 3)
Analvtical Run Information*:
Acceptable Ouant Range: 24.75ppb-991.78ppb
Calibration Curve ?:0.996939 Target Analyte: PFOS
, Internal Standard:THPFOS 'For more run info. See the Data Review Form included in the Raw Data
3M Environmental Laboratory
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Quality Control Sample Data
Instrument: Soup Run ID: so01120b
Sample Data File
~00120-103 ~00120-104 so01 20-105 so0120-1 06 s00120~110 so0120-1 11 l S 0 O 1 2-0 ~ 1 1 2 ~00120-113 ~00120-114 soolzo-118 S00120~119 s00120~120 so01 20-121
so0120-1 22
sOO120-126 ~00120-127 S00120~128
so0120-1 29
~00120~130
so0120-1 34
~00120-135 sOO120-136 ~00120-137 so01 20-138
so0120-1 42
so0120-143 so0120-1 44 so01 20-145 so0120-1 46 SOOl20-150 SOO120~151 ~00120-152 SOO120~153
S00120~154
so01 20-158 SOOlZO 159
Sample Description
E00-1311-101924 hour, Omg/L. S1, C-2 E00-1311-102024 hour, OmglL. S1, C-2 E00-1311-1021 24 hour, Omg/L. S1. C-2 E00-1311-102124 hour, Om@, S1. C-2. MS E00-1311-102224 hour, O.lOmglL, S1. '2.2 E00-1311-102324hour.O.lOmgR. Sl.C.2 EM)-1311-102424 hour, O.lOm@L. S1. C.2 E00-1311-1024 24 hour, 0.lOmgR. S1, C.2. MS E00-1311-102524 hour, l.Omgll. S1, C-2 EW-1311-102624 hour, l.OmgR. S1. C-2 E00-1311-102724 hour, 1.OmgiL. S1, C-2 EW-1311-102724 h w r , l.Omg/L. S1, C-2. MS E00-1311-1028 24 hour, O m g l l , S1, C 3 EW-1311-102924 hour, Omg/L. S1. C-3 E00-1311-103024 hour, Om@, S1. C 3 E00-1311-103024 h w r , OmgR, S1. C-3klS E00-1311-1031 24 hour, O.lOmg/L. S1, C-3 EM)-1311-103224h w r , O.lOmglL, S1. C-3 E00-1311-103324 hour, 0.lOmgR. S1, C-3 EW-1311-103324 hour, O.lOmgR, S1. C-:3 MS E00-1311-1034 24 h w r , l.Omg/L. S1. C-3 E00-1311-103524 hour, 1.0mgiL. S1.C-3 E00-1311-103624 hour. l.OmgR. S1. C-3 E00-1311-103824 hour, l.Omg/L. S1. C-3 MS 00-1311-103724 hour, Omg/L. S1. C-4 E00-1311-1038 24 hour, OmgR. S1. C4 EW-1311-103924hour,Omg/L.S1. C-4 E00-1311-1039 24 hour, OmgR. S1. C-4 MS EW-1311-104024hour, 0.lOmgR. S1. C-d. E00-1311-1041 24 hour, O.lOmg/L. S1. C-r E00-1311-104224 hour, 0.lOmgL. S1, C-r E00-1311-1042 24 hour, O.lCmg/L. S1. C-4 MS
EW-1311-104324 hour, l.Omg/L. S1. C-4
E00-1311-104424 hour, l.OmgR, S1, C-4
EW-1311-104524 hour, l.0mgA. S1, C4 E00-1311-1045 24 hour. l.Omo/L. S1. C-4 Ids
Measured Concentration,
uglL
c24.75 c24.75 c24.75 340.34 -24.75 c24.75 ~24.75 374.07 457.51 475.62 484.59 790.19
29.19 ~24.75 c24.75
366.46 c24.75 c24.75
c24.75 391.81 465.89 490.86 494.39 824.37 442.75
28.04 <24.75 376.04
c24.75 c24.75 c24.75
389 417.87
455.03
469.4 466.25
Spike Concentration,
uglL
200 200 200 200 200 200 200 200
200
Replicate Sample %RSD
N/A NIA 2.92 N/A NIA 3.21 124.58 NIA
5.94
Matrix Spikt Recovery, ?4
170.17 187.04 152.80 183.23 195.91 164.99 188.02 194.50
-1.57
Analytical Run Information*: Acceptable Quant Range: 24.75ppb-991.78ppb
Calibration Curve ?:0.982880 Target Analyte: PFOS
Internal Standard: THPFOS 'For more run info. See the Data Review Form incli ded in the Raw' Data
3
3M EnvironmentalLaboratory
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Quality Control Samde Data
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Instrument: Soup _ Run_ID_ : s0_ 011_22a
Q-Test
1 IsW122a-059
sOOl22a~060 sW122a 061 lsoo122a&sz sWi22a-068 sm122a 067 sOOi22a-ffi8 soo122a-ffi9 sW122a 070 ~001228-074 sW122a-075 sOO122a-078 ~001228077 s00122a-078 soO122a-082
smi2 2 a ~ ~
s4LIl22a-084 s00122a_o85
rOO122a-086
soO122a_090
sm122a-Wl
00-1311-103024 hour. OmWL, S2. C-3
E00-1311-103024 hour, om,; 52. c-3 MS
EW-1311-io31 24 hour, o.iomen. sz.c-3
EW-1311-103224 hour. O.IOm@L. S2. C 3 EW.1311-103324 hour, 0.IOmgA. S2. C-3 EW-1311-103324 hour, O.lOmg/L. S2. C-3 MS EW-1311-103424hour. 1.Omoll. 52. C-3 Em-1311103524 hour, l.omgA. 52. C-3
- EW-1311-103624hour, l.Omg/L.S2.C-3
E00-1311-103624 hour, l.omg/L. 52. c-3 MS
EW-1311-103724 hour, om@. S2. C 4
Em-1311-103824 hour. Om& 52. C 4
EW-1311-103924hour. om@, 52. c 4
EM)-1311-103924 hour, O m . S2. C-4 MS EW-1311-104024hour. O.lOmg/L. S2. C 4 E00-1311-104124 hour, o.lOmwL. 52. C4 EW-1311-104224hour.O.lOmg/L. ~ 2 . ~ 4 Em-1311-104224 hour. o.lOmg/L. 52. C 4 MS
EW-1311-i04324 hour, l.omg/L. s2. c 4
EW-1311-104424 hour, I.Omg/L. 52. C 4
EW-1311104524 hour, l.Omgh, S2. C4
EW-1311-104524hour. I.OmgfL,S2.C4MS
-24.75 439 66 ~24.75 <24 75 q24.75 459 97 261.99
`ii<24.75
g24.75 <24.75 449.6 c24.75 c24.75 44.75 439.78 25.99
84.89
30.68 496.84
3i 1 200 NIA 2M)
2W
21983
1
229.99
246.21
200
224.80
200 69.38
2W
219.89 233.08
0 531145761 0.920373514
I
3M Environmental Laboratory
?
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Quality Control Sample Data
- Instrum- ent: - Tucker
-Ru-n_ ID:_ to1_ 0122
Sample Data File
1010122-040
m i01zz-041
to10122-042 1010122-043 1010122-044 1010122-048 1010122-049 1010122-050 1010122-051 to10122-052
m i0122-056 m i0122-057
1010122-058 mioi2z-059 1010122-060 to1 01 22-064 1010122-085 1010122-066 1010122-067 rnioizz-o68 1010122-072 1010122-073 1010122-074 1010122-075 0 10122-076 1010122-080
m io i22-081
to10122-082 1010122-083 1010122-084 lolOl22-088 to10122-089
m i o i22-090
1010122~091
1010122-092
1010122-096
Sample Description
EOO-1311-2001. Oug PFOS. conlro1.1122101 CMC 00-1311-2002, Oug PFOS.wntrol,lR2/01 CMC E00-1311-2003. Oug PFOS. wnlro1.1/22/01 CMC EOO-1311-2003ms.Oug PFOS.contml.112Zhl1 CMC E00-1311-2004.0.75ug PFOS.conlro1.1122111 CMC E001311-2005.0.75ug PFOS.mntro1.1/22/11CMC E00-1311-2006.0.75ug PFOS.conlrol.1122/1)1 CMC E00.1311-2W8ms. 0.75ug PFOS. contml.lmm1 CMC E00-1311-2007.7.5ug PFOS. control.1122X)I CMC E00-1311-2008.7.5ug PFOS. control.lRZM I CMC E m 1 3 11-2009.7.5~9PFOS, mnlrol.112Z~CI MC E00-1311-2009ms. 7.5ug PFOS. wnlrol,li2:'/01 CMC E00.1311-2010, Oug PFOS. Clay.lnZM1 ChlC E00.1311-2011. Oug PFOS.Clay,lR2/01 CLlC E001311-2012. Oug PFOS. Clay,1/2ZM1 CklC E00.1311-2012mt. Oug PFOS.Clay.l/ZZMl CMC E00.1311-2013.0.75ug PFOS.Clay.l/2Z/01 CMC EW-1311-2014.0.75ug PFOS,Clay,l/Z2/01 CMC ~ 0 0 - i 3 i i - ~ o i 5 , 0 . 7 5P~F0OS. ciay.inziui CMC E00-1311-2015ms. 0.75ug PFOS,Clay.1122111 CMC E00-1311-2016.7.5ug PFOS. Clay.l/22/01 CMC E00-1311-2017.7.5ugPFOS. Clay.lR2nl CMC EOC-1311-2018.7.5ug PFOS. Clay.lR2C4 CMC E00-1311-2018ms. 7.5ug PFOS. Clay.l/22/0 I CMC EW-1311-2019. Oug PFOS. Sediment.112ZO1 CMC E00.1311-2020. Dug PFOS. Sedimen1,lRZX)I CMC E00-1311-2021. Oug PFOS,Sedimenl,li22/01 CMC E00-1311-2021ms. Oug PFOS. Sedimen1.112:!1 CMC EM)-1311-2022.0.75ug PFOS.Sedimen1,lR:YOl CMC E00-1311-2023.0.75ug PFOS.Sediment.lR:'/Ol CMC EOC-1311-2024.0.75ug PFOS. Sediment.lR:/Ol CMC E00-1311-2024ms. 0.75ug PFOS, Sediment,l122/01CMC EGG1311-2025.7.5ug PFOS. Sedimen1.11221~I1CMC
E00-1311-2026.7.5ug PFOS. Sediment,l/Z2/111 CMC
E00-1311-2027.7.5ug PFOS. Sediment,l/ZZAM CMC
E00131t2027ms. 7.5ug PFOS, Sediment,lL!2/01 CMC
Measured Concentration,
uglL
<25.0 <25.0 c25.0 194.28 95.92 96.85 95.39 331.94 802.01 567.71 671.3 757.91 C25.0 e25.0 g25.0 174.47 63.71 75.13 74.74 275.64 627.98 682.43 461.56 897.56 C25.0 <25.0 -25.0 192.1 109.78 89.72 88.54 250.93 568.24 608.75
625.2
930.32
Matrix Spike Concentration,
uglL
Replicate Sample %RSD
N/A
200
0.77 200
15.72 200
N/A 200
9.11 200
19.48 200
N/A
200 12.43
2w 4.68
200
Matrix Spike Recovery, %
97.14 118.26 43.31 87.24 100.45 218.00 96.05 81.20 152.56
3M Environmental Laboratory
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Quality Control Sample Data
Instrument: Soup Run ID: sOOlZll
1001211-037 ~001211-038
a01211 x44 roo1211-M5 r001211-046
I -~001211M 7
s001211-M8 rw1211-052 ~001211~053 rw1211-0% 5001211~055
so0121l b s s
*w1211_m rw1211-061 raOl21l-ffi2 s001211_ffi3
sWl2ll-069 ~001211-070 sw1211-071 ~001211072 rwl211-076 1~001211477 sWl2ll-078 ~001211-079 r001211~080 sw1211-084 ~001211-085
Iroo121l_OW
~001211-087 sw1211-088 r001211-082 rW1211-093
~001211~095
rW1211-103 rOO1211-1M s001211~108 r001211-108 s001211_110
lox EW-1311-3023-S1,O.Om+L. 48hr. 1:lClay. lM7/W lox EO0-1311-3024S1.0Om@-, 48hr. 1:lClay. 1 M 7 W
lox E00-1311-3026S1O.OmwL. 48hr. 1 3Clay. l M 7 m 1OxEm1311-3027-Sl o OmWL,48w. 1:6 Clay. 12x17100 lox EW-1311-3027ms-SIO.Omgll, 48hr. 1:s Clay. 1M7fi10
fox ~ ~ 1 3 i i - 3 0o.2om~gl~l. a1hr. I:~~CI.Y. i 2 m m
(Ox EW-1311-3029-S1O.Om&. 48hr. 1.25Clay. lM7XK lox EW-1311-3030-SI O.Chn@-, 48hr. 1:25 Clay. 12m7AX 1Ox EW-1311-3030mr-Sl 0.0mgll. 48hr. 125CI9.12107rW lox EW-1311-305841,O.Sm#L. 48hr. 1:lCIay. 12m7Xx) 101 E0&1311-3058-S1.0.5m#L. 48hr, l:lClay, 121071w 10xEW-131lJffi~Sl.0.5mpn.48nr. 1:lClsy. 12m71w 10%EW-1311-3ffiOmcS1,0.5nWL. 48hr, 1:lClay. 12x17ilx) lox EW-1311-3ffil-Sl. 0.5m#L. 48hr. 1:SCI.y. 1M71W i o x ~ m i 3 i i - m z ~ i . o . ~ m4g.ml.l ,I:~CIPY. i m 7 m lox EW-13113063.Sl. OSm+L,48hr, 1:Xlay. 1 M 7 m 1OxE00-1311-3063m-Sl.O.Smg(L.48hr. 1:5CIay, 1M7KO lox E00-1311-30&CSl,O.Smp(L. 48hr. 1:25Clay. 12107/w lox EW-1311i)ffi5-S1,0.5m#L, 48hr. 1:25Clay. 1 M 7 m lOxEW-1311-3056S1.0.5m#L. 48hr. 1:25Ciay. 12107100 lox E00-1311-3086msSlo. .smwL,48hr. 1:2Xlay. 12iU71W 1 0 x ~ ~ - 1 3 i i - 3 0 8 9 - ~.1 . 0 . 5-n nJlBLh. r. i:icIav izm7mo ~ O EXW-1311-3086Sl. O.Sm#L. Mhr. 1:lClay. 1M7/IXI lox EW-1311-3087-S1, 0 5mg(LRM. hr. 1:lCIay. lM71W
lox EW-1311-3087ms-SI.osmgll. am,i:ici.y, 1~17101
lox EW-1311-3088Sl. 0.5wL. Whr, 1:5Cl.y. 1207MO lOxEW-1311-3M18-S1,0.5~M.hr. 1 : X l s ~l.m 7 m lox E00-1311-3090Sl.0.5m& 36hr. 1:5CI9. 1M71W (Ox EW-1311-3090ms-S10. .5m+L. Whr. 1:SCI.y. 12x171011 lox E00-1311-3091-Sl.Odmgrl. 36hr. 1:25Clay. 12107/M) lOxEW-13ll-3092-S1.O.5mpllL,Mhr. 1:25U.y. 12x17100 1OXEW-1311-3093-S1. o.5m* Whr. 1:25CIay. 1 m 7 m lox EW-1311-3093mr-Sl. 0 . 5 ~~ .h r1.:25~1ayiz.m711m lOxEW-1311-30'34.S1,O.5mprL.48hr. l:lCl.y, 12x17m lox EW-1311.3095-Sl. 0.5mgll. k8hr. 1:lCI.y. l M 7 m lox EW-1311.3096Sl. 0.5mpll. 18hr.1:lcI.y. i ~ 7 r n o
lox EW-1311-309&S1. 0 . 5 m 48hr. 1:5Clay, 1M71w lOxEW-1311-309BSl.O.5mgll. 48hr. 1:K)I.y. 1 M 7 m 101EW-13113099m-S1,0.5m9L. 48hr. 1:5Clay, 121071w 1Ox EW-1311-3100-SI. 0.5mpll. 48hr. 1:25CIpy. 1M7XIO lOxEW-1311i)101-S1.0.5m+L,48hr, 1:ZSClay. 12/07Ro lox E00-1311-3102-SI.0.5m#L. 48hr. 1:25CI.y, 1M71W 1Ox EW-1311-3102msSl.O.h#L. 48hr. 1:25CIay. 12x17101
Measured Concentration,
uglL
eoreticai Matrix Splke
Concentralon, uglL
<40.0
~40.0
e40.0
lgS.55
2w
c40.0
<40.0
<40.0
185.82
2w
440.0
~40.0
c40.0
399.71
2w
130.4
114.48
111.17
306.74
200
293.97
314.29
287.97 655.18 118.92
305.1 'PoinlThmwn
200 0141
128.68 2w
131.97 138.13
44.59
433.65
200
103.26
119.9
129.42
3Y.95
zw
298.09
313.39
288.84
497.01
200
59.14
82.46
69.48
M5.73
2w
92.9
107.W
95.6
286.04
200
301.56
331.37
361.05
555.88
2w
Replicate Sample %RSD
NIA NIA NIA 8.56 4 62 5.57 49.88 11.27 3.94
8.29
7 85
8.98
Matrlx Splki Recovery, 'I
98.28 92.91 199.86 97.79 183.80 80.61 194.53 102.77 103.69 138.13 95.22 97 42
Analvtical Run Information':
Acceptable Quant Range:40.0ppb1001.7ppb
Calibration Curve 8:0.992493 TargetAnalyte: PFOS internalStandard:THPFOS
'For more tun info.See the Data ReviewFormIncluded inthe Rau Data
Q-Test Calculation
(N = 3)
0.947577613 -0.93414582
3M Environmental Laboratory
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Qualitv Control Sample Data
_ Inst_ rum_ ent:-Tucker _ Run_I D _ 1001_215
BACK TO MAIN
Analvtlcal Run Information.:
AccepIaMeOuant Ranga: 25 0wb.l~l.lwb
haw: Calibn(ronCurve ?0.9%117
Target
PFOS
Internal Slandard: THPFOS
*For mom mn info. See lhe Dall Rsnw Form includedin lhe Rsw Dall
3M Environmental Laboratory
0405391721 4 78328092
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Qualitv Control Sample Data
I n s t r u m e n t : soul,
-- Run ID: ~001207
~001207-071 s001207_072 sw1207-078 ~001207-077 ~001207~078 ~001207-079 ~001207-080 ~001207-OM ~001207-085 rW1207-lM ~001207-105 rM11207-108 ~001207-110 r001207-111 ~001207-112 rW1207-113 ~001207-114 ~091207-118 sGUl207-119 ~001207-120 swlm7-121 1001207-122 tW1207-1X sWl207-127 ~001207-128 awirn7-12~ rW1207-1M ~001207-134 ~001207-135 smirn7-i~ ~001207-137 sWl207-lZd W01207-142 ~001207-143 r001207-144 sWl207-145 ~001207-148 sWlZO7-1M sWl207-151
~001207~153
SWl207-158
~001207-159 1W1207-1MI
10xEW-1311-3033msS1.0.5mslL. Mlr. 1:lday. 1M71O0 OXI E O ~ - ~ ~ ~ ~ - ~ O Y S I .i:O5u.ay~, ~i m~ ~7 m, O ~ ~ ,
lox EW-1311.M35S1.0.5mglL,Ohr. 1:5dsy, 1 ~ 7 1 ~ lox EW1311-30MS1.O.VnplL.Ohr. 1:Way. lM7100 lox E00-1311-30JBmrS1,0.5mpll,0hr.1:5day,12107m lox ~~-i3ti-3037-si.0.5mgl~.oh1r:z. sd.y. 12107100 lox E W - ~ ~ H J O S L I S I . O . S ~ ~ ~ ,i:O25~d~a, y. 121071~ lox E~l311-3038~1.0.5mglL.Ohr1.:25d.y. 12107100 lox E~1311-3039mrSl.O.5mpR.Ohr1. :25diy. l M 7 m 1OxEW-1311-3MDSl.O5mglL.21w.1:lday. l M 7 m
lox EW-1311-3Ml-S1,0.5mslL,2nr. 1:l-y. lW7100
101 EW-1311JM2Sl.O.SmglL.2hr. 1:ld.y. 1M71W
lox EM1311-30(2~1.(1.5mpR.2hr. 1:lday. lM7100
10xEW-1311-3M3S1.05mph.Zhr. 1:W.y. l M 7 m
lox E~1311-301CS1.0.5mglL.2hr1. :5d.y. l M 7 m
10xEW-1311-3MW1.0 5mpA.Zhr. 1:5day. 1 M 7 m
lox ~ ~ - i 3 i i - ~ ~ ~ m s ~ i . o . ~ mi:wg sl y~..12~h7r1. 0 0
lOxEW-1111-304&Sl.O5mph.2hr. 1:25dsy. 1M7100
101EW-1311-3M7~Sl.0.5mpll2hr.1'25d.y. 12107100
lOxEW-1311-3M&Sl.0.5mpn.2hr.1:25day,1 M 7 m
lox E00~1311-3M8m-S1,0.5mglL.2h1r:.25dey. lM7RO
lox EW-1311-3M8S1.0.5mglL.4hr.t'lday. 1u07m
lox EW-1311-3050-Sl.0.5mglL.4hrl.:ld.y, IM71W
lox EW-1311-3051-S1.0.5~.4hr,l'ldey. 1M7100
1OxEW-1311-3051mr-S1.0.5nwL,4hr., 1:lday. 12107100
lox EW-1311-9052-Sl.0.5mglL.4hr. 1:W.y. lM71W
10%EW-1311-305~S1.0.5mplL4hr.15d.y~12107mO
lOxEW-l311-3W-S1.0 5mglL.4hr. 1:Sohy. lM7100
lox EW-1311.M54n~-Sl.O.5mph4hr, 1:Wy. 12107100
lDxE~'13,,-9055-51.0*-..nL
,:2W.y. ,M,Pm
lox EW-1311-305bS1.0.5mglL,4hr,1:ZSd.y. lM7100
1OXE~l311-505?S1.0.5~.4h1:r2.5&y. 1u17Mo l o r EW-13lI-3OS7mr-Sl.0.5mglL.4hr 1:25day, 1M7mo
l o x EW-1311.3067.S1.0.~.18hr. l:lday, im?mo
1 0 x E ~ 1 3 1 1 J 0 8 8 S 1 . 0 . 5 ~ 1 8 n1r :.lday. l M 7 m
lox EW-1311-3068S1.0.5rrmL.18hr.1:ld.r. 1M7)00
lox EW-1311-308BmsSl.0.5nwL.18hr.1:lday. 1M7100
lox EW-1311~307O-Sl.O.VnplL,18h1r:5,day. 1 M 7 m
1OxE0D1311~3071-51.O.~.15h1r:5.clsy. 1 M 7 m
lox EW-1311-3072~51.O.5mglL.18h1r.:W.y. lM71W
lox EW-1311-3072nu-SI.OSmphlOhr,1:Sd.y. lZID7Ew
lox EW-13ll~M71-51.0.5mph.lMr.1:25day. 12107mo
lox EWl3ll-M7CSl.O.5mglL,l8h~1:,25d.y. 12m71C-I
lox ~ ~ - i ~ i i . 5 0 7 5 - s i . o . ~ m p ~i :.zi ~~ler .y1, ~ 7 1 0 0 lox EW-1311-M75mss1.0.5~.18hr.l:2~aimy.7100
Theoretical Matrix
Measured
Spike
ConcentraUon. ConcentnUon.
ug/L
ug/L
~ 2 05
<25.0
c25.0
243.94
2w
<25.0
U5.0
<25.0
341.05
200
<25.0
<25.0
-25.0
483.23
2w
~ 2 05
-25.0
U5.0
151.28
2w
398.29 449.17
~25.0
287.37
200
26.41
47 72
74 95
547.85
200
366
389.48
390.3
554.07
2w
427.38
401.2
450.84
447.03
2w
144.29
98.83
88.87
2M.89
2w
<25.0
155.7
140.B2
351.48
200
317.1
318.S
328.3
515.02
2w
113.M
88.39
92.13
431.57
200
126.4
113.18
138.92
333 48
20 1
326.1s
3X.21
319.4E
525.54
202
118.29
99.92
1W.M
438 97
203
140.82
138.17
Repllcate Sample %RSD
NIA NIA NIA NIA 8.49 48.86 3.81 582 38.55 7.05 1.54 14.03 9.49 1.20 26.47 5.72
Matrix Splke Recovery. K
121.97 170.53 231.62 75.84 133.89 238.45 81.89 .I45 91.01 105.28 94.3 18B.R
07.70
102.02 13445
346.78 518.38
Analvtical Run Information.:
Acceptable Quant Rnnge: 25.0ppb1001.7ppb CalibrationCurve ?:0.996026 Target Analyte: PFOS Internal Standard: THPFOS
*For mwB run info. See the Data Review Form included in UW Raw Data
Q-Test Calculation (N
0.560980835
3M Environmental Laboratory
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Quality Control Sample Data
Instrument: Run ID: H001214a Bb
Hi110109.D Hi110110.0 Hill0111.D
I Hi110112.D Hi110113.D HillOll7.D
I HiIIO118.D HillOl19.D
I Hilh3120.D Hi110121.D Hi110125.D Hi110128.D
I H1110127D H~110128D HillOl29.D Hi110133 D Hi110134.D
I Hi110135.D Hilh3138.D HllD137.D Hi110141.D Hi110142.D Hi110143.D HiiI0144.D Hi110145.D
E1311-3120MSS1 El311-3121-S1 E1311-3122-S1 E1311-3123.51 E1311-3125MSSl E1311-3124-51 1311-3125-51 11311-312551
E1311-3128-MSS1 E1311-312761 E1311-312BS1 El311-31ZSSl
E1311-3129-MS-S1 E1311-317551 E1311-317~Sl E1311-3177-Sl E1311-3177-MSS1 E1311-317851 E1311-3179-SI E1311-3180-S1 E1311-3180-MSSl E1311-3181-S1 E1311-3182.S1 E1311-3183.S1 E1311-3183.M.S-S1
Measured Concentration,
ug/L
125.100 105.408 34.090 275.722 118.696 110.212 98.723 280.717 288.554 284.213 288.461 471.683 118.318 121.886 87.387 284.087 451.551 442.987 447.892 847.955 402.850 428.582 425.083 811.G97 78.085 85.862 59.321 289.180 247.502 288.700 331.41 448 22 385.83 65.0
e25.0 183 42 C25.0
80.43 83.71
2w.01 242.88 248 91 245.14
424 19 380.34 374 21
988 76
541 70
<25 0
Q5.0 -25.0 241.98 C25.0
45.0 65.0 184.71
c25.0 e25.0 e25.0 188.81
Theoretical Matrix Spike Concentration,
uglL
Replicate Sample %RSD
54.29 200
9.45
2w
0 86
2w
17.37 2w
0.98 200
3.33
2w
18.33 2w
15.44 2w
NIA
2w
2w
200 2w
201
202 WA
203
Matrix Spike Recovery, %
120.82 8z.w 91.60 98.34 1CU.13 93.01 104.82 58.40 91.71 72.85 89.53 e5 47 120.38 01.44 93.01
Analvtical Run Information'':
Acceptable Puant Range: 25.0ppb-1001.7ppb(aand b)
Calibration Curve ?:0.9998(a), 0.9998(b)
Target Analyte: PFOS Internal Standard: THPFOS
'For more run info. See the Data Review Form includedin the Raw Data
3M Environmental Laboratory
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Qualitv Control Sample Data
Sample Data File
1010123_W2
Sample Descrfptlon
lox ~ ~ - 11-30017.s2. OWL P F O S . ~SO~II. 48h.irn3m1I lox EW-l311-3WB-S2.O n W PF0S.m soil. 48h.1103101M:I C lox EW-1311-3009-S2,Om#L PF0S.mmI,48h.llOM1 4M: C
1010123~010 1010123-01 1
lox EW-1311-3011-S2,5mpll PF0S.m soil. 48h,11031011M: C 10x EW-1311-3012-S2,O mPFOS.no soil,48h.llOM1 1M: C
1010123-018 miotz3-019 1010123_020 1010123~021 11010123I022
Ml0123-026 1010123-027
mi0123-028
1010123-029 mror23_o30 miom-0% 1010123-035 miom-03s 1010123-037 1010123-038
m10123-w~ mioi23-~3 1010123-044
Imioi~3_ws 1010123-046 mioiz3-050 lO10123_051 mi01231052
m1ni23-0~3
mioi23-OY
1Ox EW-13113025S2. Om& PFOS.1:l dsv. 48h.1103101 CMC
10x E00-1311-3024-S2,0&L PFOS.1:'I day, 48h.110M1 CMC
?OxEW-1311-3024ms-S2.OmpnPFOS.1:l day. 48h.1103,01 CMC lox EW-1311-J025-S2,O W L PFOS.1:I day. 48h.llOYOl CMC 10aEMl311-302BS2 OmphPFOS.1 5d.y 48h 1103101 CYC lox EW-I~~~-~OZ~.OSWZ,L PFOS 1 5 day. 4 ~ h . i m m iCHC
IOxEW-131l-Jo27rnsS2,~P~FOS,1:5day. 4Bh.lm3131 CMC lox EW-1311-3028-S2,O W L PFOS,1:25 day. 48h.1103iW CMC 1Ox EW-1311-3029-S. O M PFOS.!:25 day. 48h.1103m CMC 10%EW-1311-3030-sz.Om#L PFOS,1:25 day. 48h.1103/0' cMC 1Ox EOC1311JOMms-52.0mpll PFOS.1:25 day,48h,110:101 CMC lox EW-1311-3094-S2.5 W L PFOS.1:l day. 48h.llOM1 :MC lox EW-1311-~85S2W. L PFOS.1:I day, 48h.1IOm1M:, C 10xEW-1311-30QS-S2.5m&PFOS,4:1 day.48h.llOM1 M:I C lox EW-131130ffim-S2,5~ PFOS.1:l day,48h.11031111CMC 1oX E00-1311-M97-S2, 5m#L PFOS.15 day. 48h.llOM1 CMC
lox EW-l311-3098-S2,6mpll PFOS.1:5 day, 48h.1103101 1M: C 11% EW-1311-3098mrS2.5rn~PFoS,1.5 day, 48h.im3n11CMC 10xE00-1311-31W-S2,5WL PFOS.1:25day.~8h.110~1cMC
lox EW-1311-310142.5nX.lR PFOS.1:25 daw 48h.lXIMl CMC
1Ox E00.13113102-S2,5nW PFOS.1:25 day. 48h.llOM1 CMC 101EW-1311-3102rnsS2,5 n W PFoS.125 day. 48h.110~01CMC
101EW-1311-3166S2..5 W. L PFOS.1:l Sed. 48h.1103101 (:MC
1Ox EW-1311-31658-S2,5nW PFOS.1:l Sed. 4Bn.110M1CMC
1Ox EW-1311-3168-Y,Irn#L PFOS.1:I Sed. 48h.1103101c MC
10xEW-1311-3168ms-S2,5m&PFOS.1:1 Sed.48h.lDM1 CMC
Analytical Run Information.:
Acceptable Quant Range: 25.Oppb-IMHlppb Calibration Curve f:0.997776 Target Analfl8: PFOS internalStandard:WPFOS
'For InareN n info. Seethe Data ReviewForm includedinthe R m Data
-- Instrument:Tucker Run ID: t010123
Theoretlcai Matrlx
Measured
Spike
Concentratlon, Concentntlon,
Repilcate
Q5.0 45.0 174.31 c25.0
c25.0 45.0 194.29 c25.0 e~~ 5 0~
C25.0 170.06 Q5.0 <25.0 45.0 129.49 c25.0
C25.0 <25.0 154.79 95.36 112.83 159.53 377.94 163.56 174.93 408.33 476.98
520 L)8 501.18 886.63
8~3~1..9 1W.14
51.56
242.84
2w NIA
2w N...IA.
2w
2w NIA
2w 27.05
200 4.75
200 1 I,
2w 31.49
2w
1 Matrlx Spike
87.16 97.15 85.03 64.75 77.40 109.21 116.70
1
197.73
95.64
P-Test Calculation
(N = 3)
-0.651090964
3M Environmental Laboratory
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Qualitv Control Sample Data
_- Instrument: Tucker
Run ID: to10124 I__
I SampleData File
1010124~003 1010124-W4 1010124-W5 tO10124-006 1010124-007 1010124-011 t010124~012 1010124-013 1010124-014 1010124~015 1010124-019 1010124~020 1010124-021 tO10124-022 1010124-023 t010124_027 1010124-028 toioiz4-029 1010124-030 1010124-031
Sample Description
1Dx EW-1311-3169-S2.0.5rngILPFOS.1:5 Sed. 48h 1/03/01 CMC l o x EW-1311-3170-S2,0 5mgL PFOS,1:5 Sed, 48h 1/03/01CMC 1Ox EW-1311-3171-S2,0.5mgR PFOS,1:5 Sed. 48h 1/03/01CMC l o x EW-1311-3171ms-S2,0.5mslL PFOS.1:5 Sed, 48h.1/03/01 CMC
l o x EW-13113172-S2.0.5mgR PFOS.1:25 Sed, 4811.1/03/01 CMC l o x EW-1311-3173-S2.OSmgIL PFOS.1:25 Sed, 481i.1103/01 CMC 1Ox EW-1311-3174-S2,0 5mgL PFOS,1:25 Sed, 4811,1/03101 CMC l o x EW-1311-3174ms-S2,0.5m&il. PFOS.l:25 Sed. 48h.1/03/01 CMC l o x EW-1311-3184-S2,0m&il. PFOS.1:l Sea, 48h.1/33/01 CMC l o x EW-1311-3185-S2,OmUL PFOS.1:I Sed, 48h,l/J3/01 CMC 1Ox EW-1311-3186-S2.DmgR PFOS.1:l Sed. 48h.l113/01 CMC l o x EW-l311-3186ms-S2,Omg/L PFOS.I:~ Sed. 48k.im3m1 CMC l o x EW-1311-3187-S2,Omg/LPFOS.1:S Sed, 48h,lbl3/01 CMC IOx EW-1311-3188S2.0m& PFOS,l:5 Sed. 48h.lflWUl CMC 1Ox EW-1311-3189-SZ.OmslL PFOS.1:5 Sed. 48h,l/l13/01CMC l o x EW-1311-3189ms-S2,Omg/LPFOS.l 5 Sed, 48h,1/03101 CMC l o x EW-1311-319o-S2,Oman. PFOS.l 25 Sed. 48h.1103101 CMC
i ~ ~ x~ - 1 3 1 i - 3 1 9 1 - ~o2m@. PFOS.I 25 sed. 48h.irnmi CMC
1Ox EW-1311-3192-S2,0m& PFOS.125 Sed, 48h.1!03/01 CMC l o x EW-13113192ms-S2. Omgk PFOS.125 Sed. 48i,1/03/01 CMC
Measured Concentration,
uglL
Spike Concentration,
UglL
186.19
324.9
210 45
469.73
200
265.72
282.72
285.76
407.27
200
`40 0
e40.0
e40.0
161.33
200
~40.0
~40.0
~40.0
186 26
ZW
c40 0
<40 0
440 0
188 01
200
ReDliCate Sample KRSD
30.80
3.88
N/A
NIA
NIA
Matrix SDlkt Recovery, .A
129'.64 60.76
80.67 93 13 94 01
Analvtical Run Information*:
Acceptable Quant Range: 40.0ppb-1000ppb Calibration Curve ?:0.997388 Target Analyte: PFOS Internal Standard: THPFOS
`For more run info. See the Data Review Form included in the Raw Data
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Qualitv Control Sample Data
Instrument: Tucker
- Run ID: - tOlOlZ5
Sample Data File
1010125-040 miom-041
1010125-042 1010125-043
mioi~s-w
mioi2s-048 mioizs-049 1010125-050
miom-osi
1010125-052 mior2s-oss
1010125-057 toioi2s-058 mio12s-os9
mioi2s-oso mioi25-OM 1010125-065
mioins-osa
1010125-067 1010125-068
mioi2s-072 miom-073 mioi2s-074
lOlOl25-075 mioiz5-076 mioi2s-oso
Sample Description l o x EW-1311-0016
lox E00.1311-0017 lox E00-1311-0018 1Ox E00.1311-0019 lox E00.1311-W20
1OX E00-1311.0021 lox E00.1311-0022 <OX EO0.1311M)Z3
1OX EW13114Q24 1OX E00-1311-0025 lox EM)-1311-0026
iOx EW-1311-0327 1OX EW-1311-0028 1Ox E00.1311-0029
lox EW-1311-0030 lox E00.1311-0031 1OX EW-1311-0032
lox E00.1311-0033 l o x E00.1311-W34
1OX EW-13114035 lox EW-l311M)36 1OX EW-13114037 lox EW-1311-0038
1OX EW-1311-0039 1OX E00-1311.0040 1OX EW-1311-0041 1Ox E00-13114042
Measured Concentration,
Theoretical Matrix Spike Concentration,
Replicate Matrix Spike
UglL
UglL
Sample%RSD Recovery,%
2
<40 0
NIA
-0 0
<40.0
<40 0
NIA
<40 0
n Cd" --.1
e40.0
NIA
c40.0
c40.0
e40 0
NIA
c40.0
<40.0
<40 0
NIA
c40.0
815.66
534.11 623.15 511.02
8.36
599.06
8.17
539.37
002.7
543.28 615.48
m86
8.58
1010125-084
mioi2s-oss l010125~wO mioi25-wi 1010125-~2
1010125~oeS mioizs-w7 mioi25-oa8
mioizs-wg mioi2s-ioo mioizs-io4
miom-io5
mioizs-ioa
11010125-107 mioizs-10s mioizs-ii2 010125-113 mioizs-114
lOlOl25-115 lOlOl25-116 rnioi25-i20 1010125-121 1010125-122 miom-123 mioins-i24 mioizs-i2s mioi2~-129 1010125-130 1010125-131
mioizs-i32
1OX EW-1311-0044 lox EW-1311-0045
l O x E00-1311-0047 1OX EW-1311-0048 1OX EM13110049 lox EW-1311-0050 lox EW-1311-0351 lox EW-1311-0052 1Ox EM1311-0053
lox EDa1311-0054 1OX EW-1311-0055 1OXEW-1311-0058
1OX EW-1311-MW7 lox EW-1311.0058
10x EW-1311-0058 1OX EW-13114080 lox EW-1311-0081 1OXECC-1311-w82
1OX E001311-w83
1oX E M 1 3 1 1 - ~ 1Ox EW-l311MY)5 1OX EW-1311-WgB lox EW-1311-CC67 1OX E00.13114088
1OX EW-1311-WB9 1OX EW-13114070 1OX EW-1311-0071
1OX EM)-1311-0072 1OX E00.1311-0073 101: E00.1311-0074 101 EW-1311-M75
629.91
".
614.54 549.94 035.77 539.81 402.35 417.47 359 31 380.97 609.1 603.9 540.32 6Bo.88 543.97
~~
817.2
y5.02
805.04 529.29 613.74 535.27 547.43 326.1
457.52 588.47 412.39 473.07
399.6 428.08 471.39 418.75
Analytical Run Information":
Acceptable Quant Range 40ppb1000ppb
Calibrabon Curve ? 0 998087
Target Analyte PFOS internal Standard THPFOS
'For more run info See the Data Revlew Form included in the F aw Data
7.57 5.70 22.31
7 62
6.55
.- 1.'1..,e
1
7.00
7.47
28.51
9.18
6.38
3M Environmental Laboratory
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Appendix F: Notes to File aind Deviation forms
This appendix includes all notes to file and deviation forms generated in this study.
3M Environmental Laboratory
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3M ENVIRONMENTLAALBORATORY
Note to File
- P.r_o_ject or Study.Nu-mber: PFOS Ads-orb/Deso-rb- I _ _ -EOO- 13 1 1
Associated Study Number:
- _--_
In the "Suitable Container" section of this study the spiking concentration differs fkom the method but is stated correctly in the protocol. In this case the protocol takes precedence over the method.
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3M ENVIRONMENTLAALBORATORY
Note to File
P-ro-ject__or- S-tudy Num-b-er: PFOS AdsorbDesorb
I
I
E00-13 11
In method ETS-8-159.0 the specified shelf life for the test solutions was different from that recorded in the standard logbook when the solutions were actually made. The shelf life of the solutions in the method were chosen arbitrarily and do not reflect accepted lab practices, namely that solutions have a 6-month shelf life (except in rare cases of highly unstable compounds). The method will be revised to reflect actual practices prior to the start of the next study.
1 Recorded By:
3M Environmental Laboratory
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Record of Deviation
I, Identification
Study / Project No.
t
PFOS Adsorbmesorb/ E00-1311
.-
(Check one)
0 Protocol 0 Other:
Docknent Number: ETS-8-110.0
-_ .
i Date(s)of occurrence: 11 Dec 00 to12 Mar 01
I
I
II. Description:
Required Procedure/process: ETS-8-110.0 section11.lstates, "the average of two standard
C_u-rves
will
bep_ l_ot_te_d-
b- y~
l~in_e-ar-
r- e-g-r-ession
(y
= mx+b),
weighted
I/x,
not
forced
throughzero-"__I
....
...
...............
. ...
..........
..................
.... .^._ ................ ._............ .-
.................................... .
Actual Procedure/process: Run s001;!17 was quantified using three curves. In addition, none of the runs in thissiudy were quantified using a linear or a weighted curve. A quadratic. unweinhted curve wasused instead.
....... . . . . . . . . . .....................................
.. ....................................................................................................
Jll. Actions Taken: (such as amendment issued, SOP revision, etc.)
__I___-
No additional action will be needed.
................
...............................................
............................
........................................................
- ._
- - __.
-_____-
~_________
-- -
Recorded By:
PwkJ
IV. Impact on Study/ Project
Date:
f/q/o /
This deviation does not adversely affect the quality of the da-t-a_. -
--________I_~____~_______
I
_________I
I
3M EnvironmentaILaboratory 3M Environmental Laborafory
Deviation No.
(assigned by Study Director or Prqject Lead at the end of study or project)
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Rocord of Deviation
1. Identification
Study f Project No.
E
- - -PF-OS Adsorb/Desorb/ E00-1311
Deviation Type:
PSOP
U Method dEquipment %%edure-----
(Check one)
0 Protocol 0 Other:
.__
Document Number: ETS-8-110.0
- ._ _ -_
-- -
Date(s) of occurrence: -11 Dec 00 to12 Mar 01
i
11. Description:
Required Procedurelprocess: ETS-8-110.0 section10.2.1 states, " Matrix spikes are prepared for each sample set and analyzed todeterhine%e matrix effect on t-h-e-re-covery efficiency." - --
~
Section 10.2.3 states, "analyze the matrix spike &d the matrix spike duplicate ( ifprepared) in the same run as the original samule."
Actual Procedure/process: Matrix spjkes were not prepared for some sample sections, therefore, they were not analyzed. These matriK spikes were not required by method ETS-8-159 or ETS8-160.
.-
1VI. Actions Taken:
(such as amendment issued, SOP revision, etc.) -.
A protocol amendmentwas drafied to address thi-s iss-ue. - -
_- -
Recorded By:
-. -
--
Date:
s'/?/d /
IV. lnrpact on Study/ Project
_ _ ..
Thisdeviatio-n do~es n~ot a_dver_sely-affe-ct t-he quality of the data. Sufficient matrix spikes -
Were prepared to gauge the quality of the data.
3M Environmental Laboratoty
Date:
1 ofj*$h,
/
/
Deviation No.
(assigned by Study Director or Prplect Lead at the end of study or project)
3M Environmental Laboratory
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Record of Deviation
1. Identification
_.
b d y / Project No.
. _.
.-
PFOS Adsorb/Desorb/ E00-1311 -
- - _ _ I _ _ _ _ - _ _ _ -
---- -- --
-- . - - -
leviation Type:
ljq SOP
0 Method 0 Equipment Procedure
(Check one)
0 Protocol 0 Other:
locument Number: ETS%155.0
Date(s) of occurrence: 11 Dec 00 to12 Mar 01
I
II. Description:
lequired Procedure/proc-ess:- -E.T.-S--8-155.0 se-ct-ion. l0._ 2.1 states, " Matrix spikes are prepared 'or each s%npie s&and analyzed to determine the matrix effect on the recovery efficiency." ;ection 10.2TstatesY"analyze the matrix spike and the matrix spike duplicate ( if prepared) in he same run& the original samule."
Ictual Procedure/process: Matrix spikes were not prepared for some sample sections, therefore, hey were not analyzed. These matrix spikes were not required by method ETS-8-159 or ETSi-160.
fll. Actions Taken: (such as amendment issued, SOP revision, etc.) ZTS-8-155 mefiod has beenrevised !iothat matrix spikes may be preuared atthe discretion
Recorded Bv:
- _.-.
.- -
4+/ __ Date:
IV. Impact on Study/ Project
This
deviation
does
not
adversely
affcct
the
quality
of
the
dat~ a: -Sufficient
matrix
spikes _ _ _ _ - _ - - .
-
_
~
_
~
_
_
_
_
I
~
_
_
_
_
-
-
_
_
I
_
_
_
_
~
Were prepared to gauge the quality of`the data.
3M Environmental Laboratory 3M Environmental Laboratory
Deviation No.
(assigned by Study Director or Project Lead at the end of study or project)
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Record of Deviation
1. Identification
-
Study / Project No.
__ - - __
P-FOS Ad-s_o_ r-b-me-so--rb__/ E_0_0--~1311
-I
-__I
_ - I
~
Deviation Type:
fit SOP
0 Method 0 Equipment Procedure
(Check one)
0 Protocol 0 Other:
Document Number: ETS-8-155.0
Date(s) of occurrence: 11 Dec 00 to12 Mar 01
11. Description:
Required Procedure/process: ETS-8-155.0 section11.Mates, "the average of two standard
Curves will be plotted by linearregression (y= mx+b)~, w-eighted l/x, not forced through zero"
__I_--
Actual Procedure/process: Run t001215 was quantified using three.cu-rves.
111. Actions Taken:
(s_u_c_h
as
am-en_d-m- .en_t_i-ss~u-e-dI,
SOP revision, etc.)
- . - - .-._.-_-___I__-
~
~
No additional action will be needed.
I-I.--
-
Recorded By:
_. - - .
IV. Impact on Study/ Project
_T_his_ de_ via.tion does not a_d_v_e_rs_el~y -affcct the_ _q_u-al-i_ty of the data. _l____l__
Date:
qh/O/
- - _I --
3M EnvironmentalLaboratory
3M Environmental Laboratory
Deviation No.
(assigned by Study Director or Project Lead at the end of study or project)
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Record of Deviation
1. Identification
Study / Project No.
i t
PFOS Adsorb/Desorb/ E00-1311
Deviation Type:
&-SOP
Method 0 Equipment Procedure
(Check one)
0 Protocol 0 Other:
Document Number: ETS-8-155.0
Daie(s) of occurrence: 11 Dec 00 to12 Mar 01
11. Description:
Required Procedure/process: ETS-!I- 155.0 section11.2states, "If the calibration curve does Not meet acceptance criteria perform routine maintenance or prepare a new standard curve (if necessarv) and reanalvze"
..... . . .. ......
,,..... .. ... .. .. . .....
. - .....
..., ..
... . . ~ ...
Actual Procedure/process: Some analytical runs contained one low curve point that failed
acceptance criteria but was intentiondly left in the calibration curve. The elimination of this
Point
would have .-__
r_e_ sulted
in-successive
failure-s
o- f
e-ac-h
n-e_xt
highest
point -
in
the
curve.
These
-
-I-__
I-
___-__I_
Low points serve to anchor the quadratic curve and are needed to achieve an acceptable ._
Calibration of the instrument.
Ill. Actions Taken: (such as amendment issued, SOP revision, etc.)
b+&w Recorded By:
IV. Impact on Study/ Project
Th-is deviation does not-adversely aff :ct ._
the
quality
of
the
-
data.
__
Date: 5/Y/d
- -- -~ __ - - - ---
3M Environmental Laboratory 3M Environmental Laboratory
Deviation No.
(assigned by Study Director or Project Lead at the end of study or project)
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Record of Deviation
1. Identification
Study / Project No.
i. i
--- __ --- -~ PF__O__S Adsorb/Desorb/ E00-1311
Deviation Type:
0 SOP- -KMethod 0 Equipment Procedure
(Check one)
0 Protocol 0 Other:
Document Number: ETS-8-155.0
Date(s) of occurrence: 11Dec 00 to12 Mar 01
11. Description:
Required Procedure/process: ETS-8-155.0 section16.4 states, "Print the integration summary,
-In-tegration me- thod,- and- - c_ h;I o- m- - ato--grams..rand store in th-e - sIt- u_ dI_ y fo_l-de.r-.-
- - I
I
Actual Procedure/process: Each acquisition sequence is set up similarly in that they begin with
- Solvent bla&s). and one set of standards Drior to &e samdes bracketed bv calibration curves.
\ ,I -
-.- I
-T~ hese
samples -
serve
to
condition
the
c__o_l-wk-a-nd-
warh
up' the
ins_tr_u_ment-._'
These -
samples
were
__l__ I_ _ I _ - _ _ I - _ - - l _ _ I -____
Not orocesied along; with the study samoles and no chromatograms were printed out. This was
Because they do not relate to the study in any way.
111. Actions Taken:
(such. as amtwdment_ -i_ss-u- e-d,-SOP revision-_, et_c_ .) - __ _
I
_-_I_
No additional action will be needed.
....... ..
Recorded By:
...
^...
-
.. . . ......
..
,. . . .. .
Date:
xknt
on Study/ Project
T-h-i-s de_v_iation_ d-o- _es_n-ot_a_d_v_e_r_se_ly__a__f_-f_x__t th_e_quality of th-e data.
3M Environmental Laboratory 3M Environmental Laboratory
Deviation No.
(assigned by Study Director or Project Lead at the end of study or project)
Page 282 of 703
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Record of Deviation
~
1. Identification
Study / Project No.
i
___PFOS Adsorb/Desorb/ E00-1311
Deviation-Type:
OSOP - KMehod d EquipmentPGcedure
(Check one)
0 Protocol 0 Other:
Document Number! ETS-8-155.0
Date(s) of occurrence: 4/4jO1,4/2/01,
4112/001
11. Description:
_-Requ-ir_ ed Pro_ cedure_ /pr_o--cl- e-_ sl_ s_:^-l_E--T- _ ~S-l--- 8l-l_ 1-5_ --5I-.0 seI ctio- n 1_ 4.4 sta_ tes, "C- onti- nuin- g__C_a_l_ib--- r-ation Verification (CCV) percent recoverilx must be f30% of t_he_ -standard concentration"
.-
- Actual Procedure/Drocess: In runs R010404. R010402(b). R010405. H010404. and R010412
The 5ndml CCV was outside the acceDtable calibration rang-e and was outside the +30%
Criteria. Since these points were outside the calibration range they were not accurately
Quantifiable, and the 250.5ng/ml points were used as the acceptable CCV's. These points
__ _W__e_re used to demonstratethe continued acceptability_o_f_t_he calibration and the 5ng/-m-l - __-_.
_._^__I_-__-__-____
_ I _ _ _ ^
___-lllll_
-__I_Ic
Points
~~
~
were
iga nored.
Ill. Actions Taken:
(such as amendment issued, SOP revision, etc.)
No action is needed.
Recorded B y
//
IV. Impact on Study/ Project
W
This deviation does not adversely affxt the quality of the data.
Date:
J
I
3M EnvironmentalLaboratory
3M Environmental Laboratory
Deviation No.
(assigned by Study Director or Project Lead at the end of study or project)
Page 283 of 703
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Record of Deviation
I. Identification
Study / Project No.
Deviation Type:
(Check one)
PFOS Adsorb/Desorb/ E00-1311
0SOP
fl Method Equipment Procedure
0 Protocol 0 Other:
Document Number: ETS-8-155.0
, Date(s) of occurrence: 11 Dec 00 to12 Mar 01
II. Description:
Required Procedure/process: ETS-8-155.0 section 14.2 states, "Solvent and method blanks
must-be~l-ess
than
one
half
-.
of
the_lo_w_es_t s_ta_n_d._a_rd_used
in
the
calibration_ cu.r_ v.e_ _ ." _ _ ---
__
I_
Actual Procedure/process: Run rO10329b the area counts of the solvent blanks averaged 56%
Of the area count of the lowest standind used in the curve. This amount of contamination is
Not
expecte-d-to
h-a_ve_a__s_ignifican_t-
ef_fe--c_t_o_n-_
the -
s- a. m-p-le-qu-an-t-ita-t~io--n- .
- __ .--
I
--I_-
-__I_
(SIL Actions Taken:
-
(such as amendment issued, SOP revisio-n,_et_c._)- _
_--_I_-_
_I
I
_
~
_
__
No additional action will be needed.
Recorded By:
b L c k Cccr;
IV. Impact on Study/ Project
Date:
51 / C / O /
This d- e-v-ia- ti.on does not-a-d. v_ ersely__a_ffcct th- e qu-ality__of the -d-ata.- - - - _I
3M Environmental Laboratory 3M Environmental Laboratory
Deviation No.
(assigned by Study Director or Pro.ject Lead at the end of study or project)
Page 284 of 703
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Record of Deviation
=
1. Identification
Study / Project No.
i
PFOS Adsorb/Desorb/ E00-1311
Deviation Type:
-0SOP
YMethod 0 Equipment Procedure
(Check one)
0 Protocol 0 Other:
Document Number: ETS-8-155.0
Date(s) of occurrence: 11 Dec 00 to12 Mar 01
II. Description:
Reauired Procedure/r>rocess: ETS-$1-155.0section 11.2 states. "If the calibration curve does Not meet acceptance cri-teria-perform routine maintenance or p-rIe_p_are a new stan~ dard-cur_v_ e- I (if necessary) and reanalyze."
Actual Procedure/mocess: High/low level standards were eliminated from curves to better fit Y
The ranges appropriate to the data. Additionally calibration points that did not meet acceptance Criteria were thrown out of the curve.
,111. Actions Taken:
- _ _ ___ - _____(_such a_s__ame-n-dm~ent issued, SOP rev-i-sion, e-tc-.)- _- -
-
___^
I____
_I I
_ I
The SOP will be revised to reflect these changes in the method.
Recorded By-
IV. Impact on Study / Project
Thi_s_d_e-v_ia_ti_o_ n
does
n_o_t_
adversely
affc
ct
t-he-
qua.l_ i-t-y
of
.
the
d-at_a_._
_I.
Date: .--
I 6!
3M EnvironmentalLaboratory
3M Environmental Laboratory
Deviation No.
(assigned by Study Director or Prqject Lead at the end of study or project)
Page 285 of 703
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Rctcord of Deviation
I. Identification
Study / Project No.
Deviation Type:
(Check one)
Document Number:
I! PFOS Adsorb/Desorb/ E00-1311
b SOP
Method 0 Equipment Procedure
0 Protocol Other:
ETS-8-155.0
._ -
Date(s) of occurrence:-11 Dec 00 to12 Mar 01
II. Description:
Required Procedure/process: ETS-8-155.0 section 10.1.2 states, ''Analvze a method blank and
A matrix blank Drior to each calibrat.on curve''
. __~
.......
................
......................
........................
Actual Procedure/process: There were several runs that did not analyze these blanks prior to the
Calibration curve. These blanks wen: run alongside the samples being analyzed instead. Since
The matrix &d method blanks are to measure the co-ntamination in--the sample prep procedure_s_
~
l__l_
-----I_--
__--I
--_-l_l__.__
&d in the matrix solutions this is not expected to affect the results of the studv.
...............................................
.............................
....
(Ill. Actions Taken:
.
....
(such as amendment issued, SOP revision, etc.) ...~.._-I^_.___l.l_~__
No additional action will be needed.
____l._ "__I________.
.....................................................
..............................................................................................
_______I
.........................
Rec0rded.By :
-. . . . . . . . . . .
- ~
: ............ ."............................ Date:
bck W L W (. i
5l IS 101
IV. Impact on Study/ Project
5-1IS/c\ I
This
..
deviation .
does
.n..o.. t
adversely
affect
the
q-ualit-y
of
the
data._.
.. _ - ..
3M Environmental Laboratov
3M Environmental Laboratory
Deviation No.
(assigned by Study Director or Prqject Lead at the end of study or project)
Page 286 of 703
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3M ENVIRONMENTLAALBORATORY
Note to File
'i
E00-1311
Instances where a sample needed a different dilution factor than what was originally made: The analyst went back to the original sample aliquot and started over. The latest date of dilution on each of the spreadsheets corresponds to the dilution factor that was acceptable.
Date
I
3M Environmental Laboratory
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3M ENVIRONMENTLA,ALBORATORY
Note to File
I __P_r_o_j_e_c_t-o-r Stu-d-y-N-u-_m_ ber: -PFOS Adsorbmesorb
-- - __-- - -
Some of the standards prepared in this study did not record a balance number in the logbook. In all cases this balance ID was #914.
I Recorded By:
3M Environmental Laboratory
Page 288 of 703
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3M ENVIRONMENTLAALBORATORY
Note to File
Each acquisition sequence is set up similarly in that they begin with.solvent blank(s), 2 high standards, solvent blank@),and one set of standards prior to the samples bracketed by calibration curves. The purpose of injecting the initial series of blanks and standards in each sequence is solely to ensure the column is sufficiently conditioned, the mass spec. is "warmed up," and the instrument is suitable prior to analysis of samples. Therefore, the appropriate standards are labeled "system suitability" on the data summary sheets. These injections are for qualitative purposes only, and are not to be used to quantify the data or be scrutinized for meeting quality control standards.
3M Environmental Laboratory
Page 289 of 703
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3M ENVIRONMENTALALBORATORY
~~
Note to File
i
Project or Study Number: PFOS Adsorbmesorb
Some acquisition sequences in this study were run with two CCV concentrations. This was done so that if the need arose the calibration range could be extremely narrow. In some cases the lowest, Sng/mL, was outside of the calibration range. This does not mean that the samples are bracketed by failing CCV's, rather that one CCV concentration was outside the calibration range. In these cases the higher concentration CCV was able to demonstrate the continued acceptability of the calibration. The data is in compliance with the method and does not need to be flagged.
3M Environmental Laboratory
Page 290 of 703
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3M ENVIRONMENTLAALBORATORY
Note to File
-
Pr-o-ject o-r S_tu_dy-N-u-mb- er:
PFOS Adsorbmesorb -
Eoo-i 3 i 1
Associated Studv Numlber:
- _- I - - -
Many of the samples analyzed in this study were diluted prior to analysis. The prep sheets note the samples that were diluted with a mechanical diluter. In these cases an appropriate amount of the original study sample was withdrawn from its vessel, and the diluted sample was dispensed into a new pre-labeled vial. This allowed for the retention of an und luted sample and provided a consistent final sample volume of 1.OO mL. The diluters were calibrated to dispense a final volume of 1.OOmL for every dilution level used in this study.
In the case of the Desorption Kinetics samples there was insufficient sample volume to use a mechanical diluter, In this case the dilution was 1: 1 accomplished by hand with a syringe, and the final sample volume was 200uL. In the cases of Sam Aes that were not diluted the fmal sample volume was 1.OmL in all cases.
3M EnvironmentalLaborafory
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3M ENVIRONMENTLAALBORATORY
Note to File
Project or S_t_udy-Nu-mber:
PFOS AdsorbDesorb
-
_-
- ___
E00-13 11
There were a number of steps in the preparation of study samples that were described in the analytical method but not specifically recorded on the prep sheets. The method was followed in all cases, these steps were just not recorded. These implied but unrecorded steps were:
ETS-8-160.1: Section 12.2.12 - "centrihge until the aqueous layer appears clear"
ETS-8-160.1: Section 12.3.7 -"add an (:qual amount of fresh CaC12solution to the tubes after the withdrawal of the sample aliquots"
ETS-8-160.1: Section 12.4.9.2 -"Centrifuge until the aqueous layer appears clear"
3M Environmental Laboratory
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3M ENVIRONMENTIAlALBORATORY
Note to File
Project or Study Number: PFOS AdsorbDesorb E00-1311
There was no documentation of the pH strips used in this study. In all cases they were the EM Science product called "colorpHast", pH 5- 10, Lot number 60179026.
3M Environmental Laboratory
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3M ENVIRONMENTALLABORATORY
Note to File
_ _ - -P_r_oject or Study Number: PFOS AdsorbDesorb E00-1311
There was no documentation of the specific centrifuge listed in the prep sheets for this study. The centrifuge in all cases was #415835, which was located in the prep lab.
3M Environmental Laboratory
Page 294 of 703
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3M ENVIRONMENT]AJALBORATORY
Note to File
i
t
Project or Study Number: PFOS AdsorbDesorb
I
~-_^-I_______._____.
E00-1311
Associated Study
~--. _-
The 00002-104 calibration standards used in this study had a recorded THPFOS concentration of 250ppb, but the actual concentration was 249.3 Ippb. Since the internal standard THPFOS is used to monitor
instrument performance this is not a significant difference. Additionally this small difference in concentration is not independently distinguishable given the resolution capabilities of the instrument. No additional documentation or requantitation is needed.
3M Environmental Laboratory
Page 295 of 703
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3M ENVIRONMENTA]JLABORATORY
Note to File
Project or Study Number: Associated Study Number:
PFOS Ads-or-bDesorb _I__-_
E00-13i
- - I-
- -~-
Two analytical methods were used in the analysis of samples in this study. The LC/MS/MS instrument (Soup) was run according to method E1'S-8-110.0 and all others were run according to method ETS-8-
155.0.
Recorded By:
Date
I
3M Environmental Laboratory
Page 296 of 703
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3M ENVIRONMENTLAALBORATORY
Note to File
i -
Project or Study: -
PFOS A--dsorblDesorb I__.-
_-__ _ _ __
I
--_--__I
~
-__
I
ition regarding significant figures: _ As a result of using two different software programs (HP ChemStation and Excel) to
acquire, process and report analyical data, data containing three different amounts of
1the data packets. The.ch-rom. atograms, batch report,
-an~d d-at~a im- p-or-ted- in-to Excel are cach unique. The imported data (i.e. area counts a~nd-
concentrations)
in
.Excel
a.lw_a_ ys-ha_s_the.highes.t
number -
_ of
.significant
figures.
The
electronic da~ta s_yst_em_sca_rry_mo_re s_ignificant figures than- a~re-di_sp_lay_ed-. U_n_for~tun_at_ely-, _
mot be adjusted to display a consistent number of
nificant
figures.
However,
by
reporting
all
final
concentrations -
with
three-s- ig-n-ifi-c_ant
~
I
~
_
~
I
I
_
`s of significant figures displayed in any of the raw data
- p-rintout-s
is negated. __.
I_
___-I_
___ __ .I_-
I - -- --
- -I_--___
U
Recorded By:
Date
3M Environmental Laboratory
Page 297 of 703
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3M ENVIRONMENTALALBORATORY
Note to File
~ o o - t
.. -Pro-ject-or _S_t_u-d-y-N-u-m-b--e-r:- -P-F-OS Adsor-b-De_s_ or-b - -
i7i i
- - I
Associated Study Number:
The Q-test is a simple statistical test to determine if a data point that appears to be very different from the rest of the data points in a set may be discarded. Only one data point in a set may be rejected using the Qtest. The test uses the following formula:
Q = J suspected outlier - closest value I
1 maximum value -minimum value 1
The value of Q is compared to a critical value, Q,.
Table of Q Critical values (80% confidence)
N
Qc
3
.781
4
.560
5
.451
6
.386
7
.344
If Q is larger than Q, the outlier can be c iscarded with an 80% confidence.
' Date
I
3M Environmental Laboratory
Page 298 of 703
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3M Environmental Laboratory
Page 299 of 703
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3M Environmental Laboratory
Page 300 of 703
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3M Environmental Laboratory
Page 301 of 703
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Appendix G : Chromatograins
A representative set of chromatograms from the present study is included in this appendix. The complete set of chromatograms is archived in the 3M Environmental Laboratory database and
may be reviewed upon request.
3M Environmental Laboratory
Page 302 of 703
Data File: D:\chem\Hillary.i\EIOlO222.b\HILLOO93.D Report Date: 20-Mar-200116:l'r
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Data file : D:\chem\Hillary.i\,H010222.b\HILL0093.D
Lab Smp Id:
Inj Date : 23-'FEB-200110:02
Operator : KLT
Inst ID: hil1ary.i
Smp Info : 1311-4031-S1
Misc Info :
Comment :
Method
: D:\chem\Hillary.i~~HOlO222.b\HOlO222t.m
Meth Date : 13-Mar-200116:Ol terrell Quant Type: ISTD
Cal Date : 22-FEB-200122:42
Cal File: HILL0032.D
Als bottle: 54
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * LIF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
427 499
3M Environmental Laboratory
Page 303 of 703
BACK TO MAIN -.
Data File: D:\chem\Hillary.i\HOlO222.b\HILLOO93.~
Page 2
D:\chem\Hillary.i\HOlO222,b\HILLOO93,D
2.77 (D
2,6;
0 LL
a
2.5;
1 I-
2.4:
;2,3j
'2.2:
2.1;
2.0::
1.9;
1.8;
1.7;
1.6;
1.5;
1,4{
1.3;
5 1.2;
- l*lj
Lo;
0.9:
0.8;
0,7;
0.6:
0,s:
0,4;
0.3;
0.2:
0.1;
. . .w . , . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
0.5 1,0 1.5 2.0 2,5 3,O 3:5 4.0 I
d. . . . . . . . . . . . . . . . .1. .1 . . . . . . . . . . . . . .
4.5 !
5+5 6+0 6+5 7+0 7.5 8.0
Min
I . . . . I . . . . , . . . 1.
8,5 9.0 9,s
r!1THPFOS I on
2,41 24 1.81
@ 1.5-
4 1.2-
Y
~ 0.9-
I \ 0.6:
0.3:
, . . . , . . I. ,I. \. . , . 1. . , . . .
4.0
4.4
4.8 5.2
5.6
Min
2 PFOS (Undetected)
I on 2.8: 2.6.3: 2.4:
2.2:
2.0j
,-. 1.8: <m 1.6; '0 ;1 1.4; " 1.23:
1.0:
0+8j 0.6:
0.44 . . , . . . , . . . , . . . , . . . , . 4 4 4.8 5.2 3M En\lHlmrnenta?~~bo&&
Page 304 of 703
Data File: D:\chem\Hillary.i\:HOlO222.b\HILLOO94.D Report Date: 20-Mar-200116:17
BACK TO MAIN Page 1
3M Knvironmental Laboratory
E00-1311 PFOS Adsorb/Desorb Data file : D:\chem\Hillary.i'\HOlO222.b\HILL0094.D
Lab Smp Id:
Inj Date : 23-FEB-200110:13
Operator : KLT Smp Info : 1311-4032-S1
Inst ID: hil1ary.i
Misc Info :
Comment :
Method : D:\chem\Hillary.i~,HOlO222.b\HOlO222t.m
Meth Date : 13-Mar-200116:Ol terrell Quant Type: ISTD
Cal Date : 22-FEB-200122:42 Als bottle: 55
Cal File: HILL0032.D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
3M Environmental Laboratory
Page 305 of 703
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Data File: D:\chem\Hillary.i\HO10222,b\HILL0094.D
Page 2
D:\ch~?m\Hillaryri\HOlO222.b\HILL0O94~D 2.97
2.8:
2.7;
2,6:
: 2.5:
'12.4;
2,3!
2.2:
2.1:
2,o;
1.9:
1.8:
1+7:
1.6;
i 1.5: i 1+4< i 1.3; . 1.2;
1.1:
1.6-i
0.9:
0.8;
0.7;
0,6:
0.5:
0.4;
0.3;
0.2:
.el. 0.1:
:. . . . . , . . . . , . . . . , . . . . , . . . . , . . . . , .- .
0.5 1.0 1.5 2,O 2.5 3.0 3.5 4.0
4.5 Mir
J. .I . . . . . . . . . . . . . . .I. I. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0 5+5 6.0 6.5 7.0 7,5 8,0 8.5 9.0 9,5
)t 1 THPFOS
2.71 2.4; 2.11 CI 1,8{
1,5{ xr( 1.21
V
> 0.9; 0.61 0.3;
h N d
II I
1
2 PFOS (Undetected)
Ion
1
Page 306 of 703
Data File: D:\chem\Hillary.i\HOlO222.b\HILLOO95.D Report Date: 20-Mar-200116:17
BACK TO MAIN Page 1
3M 3nvironmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Data file : D:\chern\Hillary.i1\HO1022.2b\HILL0095. D
Lab Smp Id:
In] Date : 23-FEB-2001 10:24
Operator : KLT
Inst ID: hil1ary.i
Smp Info : 1311-4033-S1
Misc Info :
Comment :
Method
: D:\chem\Hillary.i~,HOlO222.b\HOlO222t.m
Meth Date : 13-Mar-200116:Ol terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:42
Cal File: HILL0032.D
Als bottle: 56
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * ~ J F* CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
-_---_- _
427
499
RT BXP RT REL RT RESPONSE ==== ======== ======== ========
4.929 4.902 (1.000)
1055100
Compound Not Detected,
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL) ======= 249.300
( ug/L)
---_---_--
3M Environmental Laboratory
Page 307 of 703
BACK TO MAIN
Data File: D:\chern\Hillary,i\HO10222.b\HILLO~~95.D
Page 2
D:\ch~?m\Hillary.i\HOlO222~b\HILLOO95.D 2.6r
2,s:
2.4j
2.3;
F2.24 i. 2.1;
2.0; 1.9;
1.8;
1+7;
1.6; 1.5; I 1.4;
, 1.3;
!: 1.2;
. 1,1;
1.0;
0,s;
0.8; 0.7;
0.6;
0.5; 0.4:
0.3; 0.2;
0.1;
. . .w . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
0.5 1,0 1 + 5 2.0 2.5 3.0 3.5 4,O 4,5
Min
L.\.I . . , . . . . , . . . . . . . I. .I . . . . . . . . . . . . . . . . . . . . . . . . .
0 5.5 6.0 6 + 5 7.0 7.5 8,O 8.5 9.0
9:5..'
% 1 THPFOS
2 PFOS (Undetected)
I on
2.6; 2.4;
2.2; 2.0.
~ 1+8;
p 1.6;
0 rl
1+4;
.? 1.2;
Lo;
0.8;
0.6;
0.4; . . , . . . , . . . ' . . . , . . . , .
% Erl?Q&wr%~ntalsL'abbot%8n
Page 308 of 703
Data File: D:\chem\Hillary.i\HOlO222.b\HILLOlOl.D Report Date: 20-Mar-2001 16:17
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb D&a file : D:\chem\Hillary.i'jH010222.b\HILLO101.D
Lab Smp Id: Inj Date : 23-FEB-2001 11:31
Operator : KLT Smp Info : 1311-4037-S1
Inst ID: hi1lary.i
Misc Info :
Comment :
Met hod
: D:\chem\Hillary.i~,HOlO222.b\HOlO222t.m
Meth Date : 13-Mar-2001 16:Ol Cal Date : 22-FEB-200122:42 Als bottle: 62 Dil Factor: 1.00000 Integrator: Falcon Target Version: 4.10 Processing Host: W19401
terrell
Quant Type: ISTD Cal File: HILL0032.D
Compound Sublist: all sub
Concentration Formula: Amt * LIF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS
___-_ __ _
427
499
CONCENTRATIONS
ON-COLUMN FINAL
RT EXP RT REL RT RESPONSE
(ng/mL) ( ug/L)
---_-----_-----__--------_ ----_-_---___ _-___-_ -_ _____ ----___
4.922 4.902 (1.000)
995964 249.300
5.153 5.126 (1.047)
876072
36.5776
36.6
3M Environmental Laboratory
Page 309 of 703
BACK TO MAIN
2,4{ 24
(u (u
t ?d.
1.8-
1.5-
6d 1.2{
W
~ 0*9;
0.6; 0,3-
. , . . . , . . .1 ~ .. .r . , . 1. . , . . .
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.
. , . . . , .1 . . , . .1 . , . . . , . 3h E?&,,t%&ta~t%bot%&fBory
Page 310 of 703
Data File: D:\chem\Hillary.i\:3OlO222.b\HILLOlO2.D Report Date: 20-Mar-200116:1'7
BACK TO MAIN Page 1
3M 13nvironmental Laboratory
E00-1311 PFOS Adsorb/Desorb
D&a file : D:\chem\Hillary.i',HOlO222 .b\HILL0102.D
Lab Smp Id:
Inj Date : 23-FEB-2001 11:42
Operator : KLT
Inst ID: hil1ary.i
Smp Info : 1311-4038-S1
Misc Info :
Comment :
Method
: D:\chem\Hillary.i\,HOlO222.b\HOlO222t.m
Meth Date : 13-Mar-2001 16:Ol terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:42
Cal File: HILL0032.D
Als bottle: 6 3
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * ClF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS
_--_-_-_
427 499
RT EXP RT REL RT RESPONSE ==== ======== ======== ========
4.922 4.902 (1.000)
992751
5.153 5.126 (1.047)
788043
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL) =======
( ug/L) =======
249.300
33.0166
33.0
3M Environmental Laboratory
Page 31 1 of 703
BACK TO MAIN
Data File: D:\chem\Hillary.i\HOlO222.b\HILLOlO2.D
Page 2
2,4! 2.3;
2.2:
r,. 2*1.;
D:\ch~?m\Hillary,i\HOlO222.b\HILLOlO2.D
LV)
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1 , . . . . , . . . .
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2.42.24 2.0; 1.8: 1.6;
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=- 0.8;
0.6:'
0.4:
0.2:
CIU
JQ:
d
I I\
1
2 PFOS
Page 312 of 703
BACK TO MAIN
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Dita file : D:\chem\Hillary.i\HOlO222 .b\HILL0107.D
Lab Smp Id: In] Date : 23-FEB-2001 12:38
Operator : KLT Smp Info : 1311-4039-S1
Inst ID: hil1ary.i
Misc Info :
Comment :
Method
: D:\chem\Hillary.i\HOlO222.b\HOlO222t.m
Meth Date : 13-Mar-200116:Ol terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:42 Als bottle: 64
(la1 File: HILL0032 .D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
_---____
427 499
CONCENTRATIONS
ON-COLUMN
RT BXP RT REL RT RESPONSE
(ng/mL)
---- ---_------- -_-------------- -__--_-_____=======
4.917 4.902 (1.000)
985052 249.300
FINAL ( ug/L) =======
5.141 5.126 (1.046)
683545
28.8722
28.9
BACK TO MAIN
M 1 THPFOS
2.41
2.1:
1.8:
h
Ln
1.51
0 rl
1.2:
Y
>- 0,9{
0,61
0.3;
2 PFOS
*? + - A
I
I
BACK TO MAIN
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Ddta file : D:\chem\Hillary.i\HOlO222 .b\HILL0108.D
Lab Smp Id:
Inj Date : 23-FEB-200112:49
Operator : KLT
Inst ID: hi1lary.i
Smp Info : 1311-4039MS-S1
Misc Info :
Comment :
Method
: D:\chem\Hillary.i\HOlO222.b\HOlO222t~m
Meth Date : 13-Mar-200116:Ol terrell Quant Type: ISTD
Cal Date : 22-FEB-200122:42 Als bottle: 65
Cal File: HILL0032 .D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
----_
427
499
RT EXP RT IlEL RT
---- --_----_
4.914 4.902 (1 000) 5.138 5.126 (1,046)
CONCENTRATIONS
ON-COLUMN
RESPONSE
(ng/mL)
- -_--_________-=======
FINAL ( ug/L) =======
844071 249.300
4577937 224.827
225
BACK TO MAIN
9.3:' 9,OL
8.7; 8+41 'i8.1: 7.8{ 7.5; 7.2; 6.9: 6.6: 6.3f
6.0; 5.7; 5,4{ 5.1:'
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" 0,8:
2. 0.6;
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0,2;
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1
2 PFOS
BACK TO MAIN
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Daka file : D:\chem\Hillary.i\HOlO222.b\HILLOlO9.D
Lab Smp Id:
In] Date : 23-FEB-2001 13:OO
Operator : KLT
Inst ID: hil1ary.i
Smp Info : 1311-4040-S1
Misc Info :
Comment :
Method
D:\chem\Hillary.i\HOlO222.b\HOlO222t.m
Meth Date : 13-Mar-200116:Ol terrell Quant Type: ISTD
Cal Date : 22-FEB-200122:42 A l s bottle: 6 6
(la1 File: HILL0032 D
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
_-_____ -
427 499
RT EXP RT F.EL RT RESPONSE
==== ---_-_----_- ---------- -------_-_
4.909 4.902 (1.000)
990932
5.140 5.126 (1.047)
277725
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL)
( ug/L)
__ ___ ___ _-__ _ __-_ _ _ _ _ _
249.300
11.7051
11.7
BACK TO MAIN
Data File: D:\chem\Hillary,i\HO10222.b\HILLO109.D
Page 2
2.6; 2.5: 2,4: ,: 2.3: t2,2; 2,1; 2.0; 1.9; 1.8; 1.7; 1.6; 1.5;
, 1.4;
1Jj
-I 1.2; 1.1; 1.0: 0.9; 0.8; 0.7; 0.6; 0.5; 0.4; 0.3; 0.2j 0.1: . . . v. u. . . . . . . . . . . . . . . . . . . . . . . .
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Page 318 of 703
Data File: D:\chem\Hillary.i\HOlO222.b\HILLOllO.D Report Date: 20-Mar-2001 16:18
BACK TO MAIN Page 1
3M .Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Data file : D:\chem\Hillary.i'\H010222.b\HILLO110.D
Lab Smp Id:
Inj Date : 23-FEB-2001 13:12
Operator : KLT Smp Info : 1311-4041-S1
Inst ID: hil1ary.i
Misc Info :
Comment :
Method : D:\chem\Hillary.i',HOlO222.b\HOlO222t.m
Meth Date : 13-Mar-200116:Ol terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:42
Cal File: HILL0032.D
Als bottle: 67
Dil Factor: 1,00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: W19401
Concentration Formula: Amt * TIF * CpndVariable
Cpnd Variable
Local Compound Variable
3M Environmental Laboratory
Page 319 of 703
BACK TO MAIN
Data File: D:\chen\Hillary,i\HOlO222+b\HILLOllO.D
Page 2
D:\cham\Hillary.i\HOlO222.b\HILLOllO,D
2.6;
a0)
2,5: 1 LnL
I-
2.4:
,2.3;
't2.2;
2.1:
2,o;
1.9:
1.8:
1+7;
1.6;
1+5;
, 1.4; 1+3: 1.2;
1.5;
1.0;
0.9:
0,8;
1 0.7;
0.6; 0.5;
0.4;
0,3;
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. . . . . . . . . . . .I'. .c.l . . . . . . . . . . , . .I .t. , . ' . . , . . . . , . . . . , . . . . , . . . . , . . . .
0.5 1.0 1.5 2.0 2+5 3.0 3.5 4.0 4.5 5+0 5.5 6,O 6.5 7.0 7.5 8.0 8.5 9.0 9.5
2.42.11.81 1.51 1.2: 0.9: 0.6; 0.3:
2 PFOS
d
+ ?*
I.
1
Page 320 of 703
Data File: D:\chem\Hillary.i\l3OlO222.b\HILLOlll.D Report Date: 20-Mar-2001 16:1;3
BACK TO MAIN Page 1
3M 13nvironmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Data file : D:\chem\Hillary.i',HOlO222 .b\HILLOlll.D
Lab Smp Id:
Inj Date : 23-FEB-2001 13:23
Operator : KLT
Inst ID: hi1lary.i
Smp Info : 1311-4042-S1
Misc Info :
Comment :
Method : D:\chem\Hillary.i~,HOlO222.b\HOlO222t.m
Meth Date : 13-Mar-200116:Ol terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:42
Cal File: HILL0032.D
Als bottle: 68
D i l Factor: 1.00000 Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * CF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
----
427
499
_ _ _ _RT EXP RT REL RT RESPONSE
--_- ======== ======== =====E==
4.908 4.902 (1.000)
982392
5.139 5.126 (1.047)
265448
CONCE"R?iTIONS
ON-COLUMN FINAL
(ng/mL)
---------
( ug/L)
- - - - - - -
249.300
11.2875
11.3
3M Environmental Laboratory
Page 321 of 703
BACK TO MAIN
2.3;
*:
.
t2.2;
2.1:
2.0j
1.9:
1.8;
1.7;
1.6;
1.5;
2c; i.4; 1.3:
5 1.2:
>. 1.1;
Lo;
0.9;
0.8;
0.7;
0.6;
0.5;
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0.3;
0.2:
0.1;
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II
...................................
2.4: 2.11 1.8:
2 1.51
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X
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0,6: 0.3-
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1
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1.0: . . , . . . , . . . , . . . , . . , , .
4lh En%7hd&tal ??$bborabf&y
Page 322 of 703
Data File: D:\chem\Hillary.i\110lO222.b\HILLO112.D Report Date: 20-Mar-2001 16:113
BACK TO MAIN Page 1
3M Znvironmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Data file : D:\chem\Hillary.i\,HOlO222.b\HILL0112.D
Lab Smp Id:
Inj Date : 23-FEB-2001 13:34
Operator : KLT Smp Info : 1311-4042MS-S1
Inst ID: hil1ary.i
Misc Info :
Comment :
Method
: D:\chem\Hillary.i\HOlO222.b\HOlO222t.m
Meth Date : 13-Mar-2001 16:Ol terrell Quant Type: ISTD
Cal Date : 22-FEB-200122:42 Als bottle: 69
Cal File: HILL0032.D
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
3M Environmental Laboratory
Page 323 of 703
Data File: D:\chem\Hillary,i\HO10222+b\HILLOL12.D
D:\chem\Hillary,i\HO10222,b\HILL0112.D 9,0{
BACK TO MAIN
Page 2
2.11 1.81 1.5: 1.2{ 0.9:
M 1 THPFOS
2.0:' 1.8: h 1.4; Y0-j i.2;
" 1.0;
> 0.8; 0,6; 0.4; 0.2;
2 PFOS
n;
I I*
1 Page 324 of 703
Data File: D:\chem\Hillary.i\:3OlO222.b\HILLOll3.D Report Date: 20-Mar-2001 16:1'3
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb Data file : D:\chem\Hillary.i'~HOlO222.b\HILL0113.D
Lab Smp Id:
In? Date : 23-FEB-2001 13:45
Operator : KLT Smp Info : 1311-4043-S1
Inst ID: hil1ary.i
Mikc Info :
Comment :
Method
: D:\chem\Hillary.i~,HOlO222.b\HOlO222t.m
Meth Date : 13-Mar-2001 16:Ol terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:42 Als bottle: 70
Cal File: HILL0032.D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: W19401
Concentration Formula: Amt * IIF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
-_--____
427
499
CONCENTRATIONS
ON-COLUMN FINAL
RT EXP RT REL RT RESPONSE
(ng/mL)
( ug/L)
____- _---_-_--------_----_-____------__ ___________ __-_______
4.914 4.902 (1.000)
984852
249.300
5.145 5.126 (1.047)
269994
11.4511
11.4
3M Environmental Laboratory
Page 325 of 703
BACK TO MAIN
Data File: D:\chem\Hillary,i\HOlO222,b\HILLOtl3+D
Page 2
0)
2.6;
0
LL
2.5; I1 1 -
2.4;
,2*3:
'12.2:
24
2.0:
1.9;
1.8;
1.7;
1.6;
1.5:
; 1.4;
; 1+3;
I 1*2; - 1.1;
1.0;
0.9;
0.8;
1 0.7;
0.6;
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0.3;
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0*1;
. . .v.u, . . . . , . . . . , . . . . , . . . . , . . . . . . . . . . . . . . . . . . . . . . . . I.. . u./. ..I. . . .
0.5 1.0 1.5 2,O 2.5 3.0 3.5 4,O 4.5 5,O 5.5
. , . . . . , . .I. I. . . . . . . . . . . . . . . . . . . . . . . . 1. . I...'
6.0 6.5 7.0 7.5 8,O 8.5 9.0 9.5
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rl
2.4:
t ?0
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1.8i
1,s: 1.21
0.9:
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0.3-
, . . . , . . . I,. . . . , . .1 . , . . .
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7.01
6.0;
,-. 5.0:
p 4.0:
A 0.
:
"x 3,Oi
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1.0;
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?
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1
1
Page 326 of 703
Data File: D:\chem\Hillary.i\l3OlO222.b\HILLOll4.D Report Date: 20-Mar-2001 16:1;3
BACK TO MAIN Page 1
3M 13nvironmental Laboratory
E00-1311 PFOS Adsorb/Desorb
D&X file : D:\chem\Hillary.i',HOlO222.b\HILLOll4.D
Lab Smp Id:
Inj Date : 23-FEB-2001 13:56
Operator : KLT
Inst ID: hillary.i
Smp Info : 1311-4044-S1
Misc Info :
Comment :
Method
D:\chem\Hillary.i~,HOlO222.b\HOlO222t.m
Meth Date : 13-Mar-2001 16:Ol terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:42
Cal File: HILL0032.D
Als bottle: 71
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * EF * CpndVariable
Cpnd Variable
Local Compound Variable
compounds
- -. . . . . . . . . . . . . . . . . . . . . . . . . . * 1 THPFOS
2 PFOS
QUANT SIG MASS
____
427 499
CONCENTRATIONS
ON-COLUMN FINAL
RT EXP RT REL RT RESPONSE
(ng/mL) ( ug/L)
__ ___ _-___--______---_- ---___---_----_--_-- _---_____-- =E=====
4.925 4.902 (1.000)
999207 249.300
5.149 5.126 (1.046)
236262
9.88635
9.89
3M Environmental Laboratory
Page 327 of 703
BACK TO MAIN
Data File: D:\chem\Hillary,i\HOlO222~b\HILLOll4.D
Page 2
D:\ch~?m\Hillary,i\H010222.b\HILLO114+D
2.6;
2.5;
2.4j
,2+3;
5.2;
2.1:
2.0:
1.9;
1.8;
1,7;
1+6!
1.5;
; 1.4;
2 1.3;
5 -
i.2; 1.1;
1.0;
0.9;
0.8;
0.7;
0.6;
0.5;
0.4; 0.3; 0.2; 0.1;
:...?I
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . -/ - . . . . . . . . . . . . . . . . . . . . . . . . . .
0.5 1.0 1.5 2.0 2.5 3.0 3+5 4+0 4.5 5.0 5.5 6+0 6 + 5 7.0 7.5 8 + 0 8.5 9.0 9.5
Y 1 THPFOS
2.41
24
1.81
CI
yj i.5;
:: 1.21
V
3 0.9:
0.6;
0,3{
L-cu
?
d
I\
1
2 PFOS
Page 328 of 703
Data File: D:\chem\Hillary.i\l~010222.b\HILL0115.D Report Date: 20-Mar-2001 16:113
BACK TO MAIN Page 1
3M Hnvironmental Laboratory
E00--1311PFOS Adsorb/Desorb
Data file : D:\chem\Hillary.i~,HOlO222.b\HILLOll5.D
Lab Smp Id:
Inj Date : 23-FEB-2001 14:07
Operator : KLT
Inst ID: hil1ary.i
Smp Info : 1311-4045-Si
Misc Info :
Comment :
Method
: D:\chem\Hillary.i\,HOlO222.b\HOlO222t.m
Meth Date : 13-Mar-2001 16:Ol terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:42 Als bottle: 72
Cal File: H1LL0032.~
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
____
427 499
RT EXP RT REL RT RESPONSE
__-_-----_--------_------- -------_--
4.922 4.902 (1.000)
997394
5.146 5.126 (1.046)
242527
CONCENTRATIONS
ON-COLUMN FINAL
_(n_g/_mL-)-_____-_( __u__g_/__L_)__ _ _
249.300
10.1649
10.2
3M Environmental Laboratory
Page 329 of 703
BACK TO MAIN
Data File: D:\chern\Hillary,i\HO10222.b\HILLOL15,D
Page 2
D:\ch~~m\Hillary.i\H010222.b\HILLO115.D
2.6;
0
LL
a
2.5;
c 1
2.41
,! 2.3:
12.2:
2.1;
2.0; 1.9;
1.8;
1.7;
1+6{
1.5;
i; 1.4; 1.3;
: 1.2;
. 1.1:
1.0,
0,9!
0.8::
0.7;
0.6:
0.5;
0.4;
0.3;
0,2;
0.1:
. . . . . . . .v.u, . . . . , . . . . , . . . . , . . . . , . . ,
. . . , . . . 1 . .
I
J
II
..............................
. I . . . . , . . .. , . . . . , . . . . , . . . .
1 THPFOS
2.4: 2.11 1,8{ 1.51
1.21 0.9:
0.6; 0.3;
a: L T u d
1
t
1
2 PFOS
6+5? 6.0; 5.5:: 5.0: 4.5:
p~ 4.0;
3,5;
$; 3.0:
2 2.5;
> 2.0: 1.5; 1.0; 0.5:
[ $ Ion
Page 330 of 703
Data File: D:\chem\Hillary.i\:HOlO222.b\HILLOll6.D Report Date: 20-Mar-2001 16:19
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Data file : D:\chem\Hillary.i'iH010222.b\HILLO116.D
Lab Smp Id:
Inj Date : 23-FEB-2001 14:18
Operator : KLT
Inst ID: hil1ary.i
Smp Info : 1311-4045MS-S1
Misc Info :
Comment :
Method
: D:\chem\Hillary.i~,HOlO222.b\HOlO222t.m
Meth Date : 13-Mar-200116:Ol terrell Quant Type: ISTD
Cal Date : 22-FEB-200122:42
Cal File: HILL0032.D
Als bottle: 73
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * CF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
_-_____
427
499
CONCENTRATIONS
ON-COLUMN FINAL
RT EXP RT REL RT RBSPONSE
(ng/mL) ( ug/L)
_ _ _ _ _-_____-----__-_--_-------_-_--___--____-__--_______-_______
4.923 4.902 (1.000)
861434 249.300
5.154 5.126 (1.047) 4358791 209.780
210
3M Environmental Laboratory
Page 331 of 703
BACK TO MAIN
Data File: D:\chem\Hillary.i\HQlQ222.b\HILLQll6.D
Page 2
'. D:\ch~sm\Hillary.i\HQlQZ
b\HILLQ116+D
9,Q:
8.7:
8,4:
8.11
,7,8{
`17.51
7.2:
6,91
6.6:
6.3:
6.0;
5,7:
5.41
5.1:
; ,
4.8; 43:
- 4+2{ 3.9:
3.61
3.3;
3.0:
2.71
2.41
2,Lf
1,8{
1.5;
1.2;
Q.9;
0.6;
Q,31
II
0,5 1.0 1+5 2.0 2.5 3,O 3.5 4.0 4.5 5.0 5+5 6.0 6+5 7.0 7.5 8.0 8.5 9.0 9.5 Min
H 1 THPFOS
I\ 1.4;
r 1.2; 3" 10..08;;
4,Q 2 PFOS
... ,. ..
4.4 4+8 5.2
Min
., .. .
5,6
Page 332 of 703
Data File: D:\chem\Hillary.i\HOlO222.b\HILLOl2l.D Report Date: 20-Mar-2001 16:18
BACK TO MAIN Page 1
3M 3nvironmental Laboratory
E00-1311 PFOS Adsorb/Desorb Daka file : D:\chem\Hi11ary.i1~H010222.b\H1LL0121.D
Lab Smp Id:
Inj Date : 23-FEB-2001 15:14
Operator : KLT Smp Info : 1311-4046-S1
Inst ID: hil1ary.i
Misc Info :
Comment :
Method
: D:\chem\Hillary.i~,HOlO222.b\HOlO222t.m
Meth Date : 13-Mar-200116:Ol terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:42 Als bottle: 74
Cal File: HILL0032.D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: W19401
Concentration Formula: Amt * CIF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
-_-_--
427
499
RT BXP RT RBL RT RESPONSE
--_____-_____-_---__=-=_==-==== ========
4.923 4.902 (1.000) 1017804
5.147 5.126 (1.046)
330798
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL) ======= 249.300
( ug/L)
--__-__---__
13.5623
13.6
3M Environmental Laboratory
Page 333 of 703
Data File: D:\chem\Hillary.i\HOlO222+b\HILLOl2l.D
BACK TO MAIN
Page 2
% 1 THPFOS
Ion 2+2:
2.0;
1.8;
1.61
* 1.4{
y 1.2r
3 Lo;
X
0.8: > 0,s;
0.4;
0.2;
,
. . . ,
. I. .
, .
. .
I
I
..
.
I
..
.
4.0 4.4 4.8 5.2 5,6
2 PFOS 7.0;
* I on h -! m
>2.0;
Page 334 of 703
Data File: D:\chem\Rush.i\R013222.b\RUSHOO53.D Report Date: 09-Mar-20011 O : O l
BACK TO MAIN Page 1
3M Environmental Laboratory
DAta file : D:\chem\Rush.i\RO:L0222.b\RUSH0053.D
Lab Smp Id:
Inj Date : 23-FEB-2001 02:39
Operator : KLT/MLA Smp Info : 1311-4061-S1
Inst ID: Rush.i
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010222.b\ROlO222t.m
Meth Date : 09-Mar-2001 09:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:45 Als bottle: 26
Cal File: RUSH0032.D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: W19401
Concentration Formula: Amt * 1)F * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
---___
427 499
CONCENTRATIONS
ON-COLUMN FINAL
RT EXP RT REL RT RESPONSE
(ng/mL)
---- -------- _--_------_-- -_--_____ ___ ___ _ _ _=======
( ug/L) =======
5.555 5.512 (1.000)
713961 249.300
Compound Not Detected.
3M Environmental Laboratory
Page 335 of 703
Data File: D:\chem\Rush.i\RO10222,b\RUSHOO53.D
BACK TO MAIN
Page 2
1 THPFOS
1.8; 1.61 1.4i ~ 1.2:
6Ln 1.0;
rxl 0.8;
v
>- 0.6; 0.4;
2 PFOS tundetected)
2.8;
1
2.6j
2.4:
2.2;
2.0;
2 1.8;
Page 336 of 703
Data File: D:\chem\Rush.i\R013222.b\RUSHOO54.D Report Date: 09-Mar-20011 O : O l
BACK TO MAIN Page 1
3M jznvironmental Laboratory
Data file : D:\chem\Rush.i\R010222.b\RUSH0054.D
Lab Smp Id:
Inj Date : 23-FEB-2001 02:50
Operator : KLT/MLA
Inst ID: Rush.i
Smp Info : 1311-4062-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R0:-0222.b\ROlO222t.m
Meth Date : 09-Mar-2001 09:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:45
Cal File: RUSH0032.D
Als bottle: 27
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS
---_-_
427
499
RT EXP RT REL RT RESPONSE ==== ======== ======== _-_-_-==
5.559 5.512 (1.000)
722949
5.783 5.722 (1.040)
52969
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL) =======
249.300
( ug/L)
-__-_---__- _-
2.96660
2.97
3M Environmental Laboratory
Page 337 of 703
Data F i l e : D:\chen\Rush,i\RO10222,b\RUSHOO54.D
BACK TO MAIN
Page 2
H 1 THPFOS
2.0: 1.8; 1.6:
Y eb-i b-i
1.4:
A 1+2{
bIs) i.0;
d
,X 0.8:
>. 0,6{
0,4:
0.2:
. . , . . . , 1. . . ,\ . . . , 1. . . , .
2 PFOS
8.0; 7.0: 6,O:'
' 6 5.0;
<
4 4.0;
" > J+O{
2.0;
r ? Ion CD
b-i
1
Page 338 of 703
Data File: D:\chem\Rush.i\R013222.b\RUSHOO55.D Report Date: 09-Mar-20011 O : O L
BACK TO MAIN Page 1
3M Environmental Laboratory
Data file : D:\chem\Rush.i\RO:L0222.b\RUSH0055.D
Lab Smp Id:
Inj Date : 23-FEB-2001 03:Ol
Operator : KLT/MLA
Inst ID: Rush.i
Smp Info : 1311-4063-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\ROL0222.b\ROlO222t.m
Meth Date : 09-Mar-200109:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-200122:45
Cal File: RUSH0032.D
Als bottle: 28
D i l Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Locial Compound Variable
3M Environmental Laboratory
Page 339 of 703
Data File: D:\chem\Rush,i\R010222,b\RUSH0055,D
D:\chem\Rush.i\R010222,b\RUSHOO55.D
"22
1.9;
LL 1
1
I-
1.8;
,:1+7:
i: 1.6:
1.5;
1+4;
1,3;
1.21
1.1;
1.0:
I
i 0,s;
0.8;
0.7;
0.64
0+5{
0,4{
0.3:
0,2{
0.1;
. . .1J.-d, . . . . , . . . . . . . . . . . . . . . . . . . . . . . . . .
. . . . . . . . . . . . . . . . . . . .1 . L .l
1 THPFOS
tu,
1,8{
L?
UJ
1.61
1.4;
h 1*2{ Lio, i.0;
Ti
YX 0,8{
>- 0.6:
0,4;
0,2{
. . , . . . , .1. .. ,1 . . . ,1 . . . , .
2 PFOS (Undetected)
I
Ion
BACK TO MAIN
Page 2
Page 340 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOO65.D Report Date: 09-Mar-2001 1 O : O : L
BACK TO MAIN Page 1
3M Environmental Laboratory
Ddta file : D:\chem\Rush.i\ROI-0222.b\RUSH0065.D
Lab Smp Id:
Inj Date : 23-FEB-2001 04:53
Operator : KLT/MLA
Inst ID: Rush.i
Smp Info : 1311-4067-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\ROI.0222.b\RO10222t.m
Meth Date : 09-Mar-2001 09:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:45
Cal File: RUSH0032.D
Als bottle: 34
Dil Factor: 1.00000 Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * CF * CpndVariable
Cpnd Variable
Local Compound Variable
Compounds
* 1 THPFOS
2 PFOS
QUANT SIG MASS
-_ _-____
427 499
_ R_ T_ _
EXP RT REL RT
_ _ _ _ _ _=_=--=-_=====
RESPONSE ========
5.532 5.512 (1.000)
715149
5.750 5.722 (1.039)
708991
CONCENTRhTIONS ON-COLUMN FINAL
(ng/mL) ( ug/L)
=5=====
=====E=
249.300 39.3413
39.3
3M Environmental Laboratory
Page 341 of 703
BACK TO MAIN
Data File: D:\chem\Rush,i\R010222,b\RUSHOO65,D
Page 2
D:\chem\Rush.i\R010222,b\RUSHOO65.D
2.0:
1.9;
1.8:
!; 1.71
i.
1.6;
1.5:
1.4:
1+31
1.21
1.1:
, > 1.0{
+
:
5 0.9;
0.81
0.7:
0,61
0.5:
0.44 0,3{
0.24
0.1:
:..!+ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
. . . . . . .....,..... . . ,. . . . . .,.........,. . . . . ., . . . . , . . . . , . . . .
0.5 1,0 1,5 2.0 2.5 3,O 3.5 4.0 4,5 5.0 5 6.0 6+5 7.0 7,5 8.0 8.5 9,O 9,5
Min
1 THPFOS
2,o: 1,s: 1,6{ 1.4:
r\ 1.2:
P
3 1.0: '
vx 0.8' > 0.6:
0.4: 0,21
PU J
1
\
1
2 PFOS
h
Lo 0 4
"
>-
Page 342 of 703
Data File: D:\chem\Rush.i\R013222.b\RUSHOO66.D Report Date: 09-Mar-2001 1 O : O L
BACK TO MAIN Page 1
3M Environmental Laboratory
Data file : D:\chem\Rush.i\RO:LO222.b\RUSH0066.D
Lab Smp Id:
Inj Date : 23-FEB-2001 05:04
Operator : KLT/MLA Smp Info : 1311-4068-S1
Inst ID: Rush.i
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010222.b\R010222t.m
Meth Date : 09-Mar-2001 09:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:45 Als bottle: 35
Cal File: RUSH0032.D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: W19401
Concentration Formula: Amt * LIF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
--__
427
499
CONCENTRATIONS
ON-COLUMN
RT BXP RT RBL RT RBSPONSE
(ng/mL)
--_-_- --_-_--___-_----__-__--_-_--_--_--__________- _ _ _=======
5.525 5.512 (1.000)
718563
249.300
FINAL
( ug/~)
-----___
5.749 5.722 (1.041)
738565
40.8065
40.8
3M Environmental Laboratory
Page 343 of 703
BACK TO MAIN
Data File: D:\chem\Rush,i\R010222,b\RUSHOO66.D
Page E
D:\chem\Rush.i\R010222.b\RUSHO066.D
2.0; 1,9!
... 1.8; .
'1.7; 1,6; 1.5: 1.4: 1.3: 1.21
; 1,1:
: 1.0: 0.9; 0.81 0.7: 0.61 0.5; 0.4: 0.3; 0.2; 0.1; . . .IN . I . . . . , . . . , , . . . . , . . . . , . . . . , . . . . , . 0.5 1,O i.5 2.0 2,5 3.0 3.5 4.0 4,5 5.0 5
J. . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
6.0 6.5 7.0 7.5 8.0 8,5
.,....,.. .,
9.0 9.5
W 1 THPFOS
2.0:
1,8; 1.6{
1.41
6c. 1,2:
Lo
t.0;
d
Y 0,8{ >- 0.61
0.4;
0,2;
I-? N Iz)
I )l
1
2 PFOS
2.0; 1.8; 1,6: 1,4;
90 1.0;
d
5 0.8;
0+6: 0.4: 0.2:
Ion r $
1
\I
Page 344 of 703
Data File: D:\chem\Rush.i\R011~222.b\RUSHOO67.D Report Date: 09-Mar-2001 1 O : O : L
BACK TO MAIN Page 1
3M Environmental Laboratory
Daka file : D:\chem\Rush.i\RO:t0222 .b\RUSH0067.D
Lab Smp Id:
Inj Date : 23-FEB-2001 05:16
Operator : KLT/MLA
Inst ID: Rush.i
Smp Info : 1311-4069-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\ROI.0222.b\RO10222t.m
Meth Date : 09-Mar-2001 09:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:45
Cal File: RUSHO032.D
Als bottle: 36
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target: Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * ClF * CpndVariable
Cpnd Variable
Local Compound Variable
Compounds
QUANT SIG
MASS
CONCENTRATIONS
ON-COLUMN FINAL
RT EXP RT REL R T RBSPONSE
(ng/mL)
( ug/~)
3M Environmental Laboratory
Page 345 of 703
BACK TO MAIN
Data F i l e :
1.9; 1.8;
D:\chem\Rush,i\R010222.b\RUSHOO67..D
p D:\chem\Rush.i\R010222,b\RUSHOO67.D
i1.7: t. 1+6:
1.5;
1.4: 1.31
1.2;
1.1;
; 1.0{
-4:
5 0,s:
- 0.8;
0.7;
0.61
0.5;
0.4; 0.3:
0.21
o,1; . . .Id . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
0.5 1,0 1,5 2,O 2.5 3.0
,....,..,.............................................
3.5 4.0 4,5 5,O 5.5 6.0 6 + 5 7.0 7,5 8.0 8,5 Min
1 THPFOS
Page 2
.,. . . .,. . . .
9,O 9.5
Er. 1+2; 1.0;
d
vX 0 , 8 {
+ 0.6;
0.4{ 0.21
. . , . . . , I. . !. , . . . , 1. . . , .
4.8 5.2 5.6 6,O 6,4 Min
2 PFOS
Page 346 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOO68.D Report Date: 09-Mar-2001 1O:O:-
BACK TO MAIN Page 1
3M Environmental Laboratory
Data file : D:\chem\Rush.i\R010222.b\RUSH0068.D
Lab Smp Id:
Inj Date : 23-FEB-2001 05:27
Operator : KLT/MLA
Inst ID: Rush.i
Smp Info : 1311-4069MS-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010222.b\ROlO222t.m
Meth Date : 09-Mar-2001 09:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:45 Als bottle: 37
Cal File: RUSH0032.D
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS
----
427
499
RT BXP RT RBL RT RBSPONSB
_--- ----_-_--_- ----------_- ---------
5.539 5.512 (1.000)
626695
5.763 5.722 (1.040) 3383101
CONCBNTRATIONS
ON-COLUMN
FINAL
(ng/mL)
( ug/L)
- -_-_--__-__ _=======
249.300
228.263
228
3M Environmental Laboratory
Page 347 of 703
BACK TO MAIN
Data File: D:\chem\Rush,i\R010222+b\RUSH0068.,D
6.91 6.6: 6.31 6c 6,0{ 5,7{ 5,4{ 5.1-
4.81 4.51 4.21
3.91 3.61
2 3.3;
- 3.01
2.71 2.41 2.1; 1,81 1.5: 1.2: 0.91 0.61 0.31
. . .I-. .I. . . . . . . . . . . . . . . . . . . . . . . .
0,5 1-0 1.5 2,O 2.5
D:\chem\Rush.i\R010222.b\RUf
,....,....,.... , . ... ,....
3.0 3,5 4.0 4.5 5,O 5:; Hin
1 THPFOS
068. D
Page 2
6.0 6.5 7.0 7.5 8.0 8,5 9.0 9,5
2 PFOS
Page 348 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOO69.D Report Date: 09-Mar-2001 10:0:!
BACK TO MAIN Page 1
3M Environmental Laboratory
Data file : D:\chem\Rush.i\RO:.0222 .b\RUSH0069.D
Lab Smp Id:
Inj Date : 23-FEB-2001 05:38
Operator : KLT/MLA Smp Info : 1311-4070-S1
Inst ID: Rush.i
Misc Info :
Comment :
Method
: D:\chem\Rush.i\ROI.0222.b\ROlO222t.m
Meth Date : 09-Mar-2001 09:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:45 Als bottle: 38
Cal File: RUSH0032.D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
Compounds
____ _ _ _ _ _ _ _______-____ _ _ _ _ _ _ ____ * 1 THPFOS
2 PFOS
QUANT SIG MASS
- _ _ __
42 7 499
CONCENTRATIONS
ON-COLUMN
RT BXP RT RBL RT RESPONSE
(ng/mL)
_ _ _ _ -----______---__--_____-----___-_____=5=====
5.541 5.512 (1.000)
723074 249.300
FINAL
( ug/L)
-- -___-_______
5.758 5.722 (1.039)
353028
19.2794
19.3
3M Environmenfal Laboratory
Page 349 of 703
BACK TO MAIN
Data File: D:\chem\Rush,i\R010222,b\RUSH0069,D
Page 2
2.0;
1.91
1.81
,.
.;1,7{
D:\chem\Rush.i\R010222.b\RUSH0069.D
LCD
e9I-
1.61
1.51
1.41
1.31
1.21
, 1.11
1
> 1.01
!'
: 0.91
0.81
0,7+
0.61
0,5<
0.4;
0.3;
0.2:
0.11
. . .I . N, . . . . , . . . . , . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .1 . . . . .1 . . . . . . . .
0.5 1.0 1.5 2,O 2.5 3+0 3.5 4.0 4.5 5.0 5.5 6.0 6.5
, . , . . . . . . . . . . . . . . . . . . . . . . . . . . .
7+0 7.5 8,O 8.5 9,O
9,5
1 THPFOS
2 PFOS
IIIjl9+0i
8.0;
Ion a,
-Lo
'5
Lo
7.0;
r\ 6.0;
60 5.0;
txi 4.0:
Y
>. 3.0;
2.0::
- L o ;
I . . . , . . .I.1. .C. L. .-. . . . . .
Page 350 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOO7O.D Report Date: 09-Mar-200110:0:!
BACK TO MAIN Page 1
3M IZnvironmental Laboratory
Daka file : D:\chem\Rush.i\R0:!0222.b\RUSH0070 .D
Lab Smp Id:
Inj Date : 23-FEB-2001 05:49
Operator : KLT/MLA Smp Info : 1311-4071-S1
Inst ID: Rush.i
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010222.b\R010222t.m
Meth Date : 09-Mar-200109:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-200122:45 Als bottle: 39
Cal File: RUSH0032.D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all sub
Processing Host: W19401
Concentration Formula: Amt * CF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT S I G
MASS
__ __ -___
427 49 9
RT EXP RT REL RT RESPONSE
_____- __------_-____---------_------------
5.541 5.512 (1.000)
713569
5.758 5.722 (1.039)
401704
CONCENTRATIONS
ON-COLUMN FINAL
_-(n--g-/--m-_L_)____ __(__u_g_-/_L__)____
249.300
22.2391
22.2
3M Environmental Laboratory
Page 351 of 703
Data File: D:\chem\Rush,i\R010222,b\RUSHO07O,D
D:\ciem\Rush.i\R010222.b\ 1.9; 1,8{
iH, 0070,D to
D
t
E
BACK TO MAIN
Page 2
1.21
1.11
' LO{
i: 5 0.9;
0,3{
0,2{
0.1;
:. . !?. . . . , . . . . , . . . . , . . . . , . . . . , . . . . , -. .
0,5 1.0 1,5 2.0 2,s 3.0 3.5 4.0 4.5 5.0 5 Min
Y 1 THPFOS
1.8; 1+6;
- * Ion
t r*l
Y
Lo
1,4{
5 i.2;
Lo 1.0; x 0.81
W
> 0+6{
0.41
0t2ja 0,2{ . . , . . . , . 1 . . , . . . 1, . . . I .
1. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . , . . . . , . . . .
6.0 6.5 7.0 7.5 8,O 8.5 9.0 9,5
2 PFOS
Page 352 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOO7l.D Report Date: 09-Mar-200110:0;!
BACK TO MAIN Page 1
3M Ehvironmental Laboratory
Data file : D:\chem\Rush.i\R01.0222.b\RUSH0071.D
Lab Smp Id:
In] Date : 23-FEB-200106:OO
Operator : KLT/MLA
Inst ID: Rush.i
Smp Info : 1311-4072-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010222.b\ROlO222t.m
Meth Date : 09-Mar-2001 09:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:45
Cal File: RUSH0032.D
Als bottle: 40
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS
-_-_-__ -
42 7
499
CONCENTRATIONS
ON-COLUMN FINAL
RT EXP RT REL RT RESPONSE
(ny/mL)
( ug/L)
==== =E====== ======== ==== === ==== == I= = - - - - _ _
5.539 5.512 (1.000)
710887 249.300
5.756 5.722 (1.039)
385139
21.3995
21.4
3M Environmental Laboratory
Page 353 of 703
BACK TO MAIN
Data File: D:\chem\Rush,i\R010222,b\RUSHOO7l,D
Page 2
D:\c?em\Rush,i\R010222.b\RUSHOO7l.D 1.9:
1.8;
1,7{
*:1.6{
1.5;
1.41
1,3;
1.21
1,1{ ; 1.0;
I 0.9:
' 0.81
0.71
0.61
0.5:
0.4:
0.3;
0.21
.d O , l { . . .I . N, . . . . , . . . . , . . . . , . . . . , . . . . , . . . . , . 0.5 1.0 1.5 2+0 2.5 3.0 3.5 4.0
.,....
4.5 5+0 5 Min
.,....,.... I . . . . , . . . . , . . .
6+0 6.5 7+0 7.5 8.0
1 THPFOS
. ( . . . ., . . . . , . . . .
8,5 9.0 9.5
2 PFOS I on
Page 354 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOO72.D Report Date: 09-Mar-2001 10:0;!
BACK TO MAIN Page 1
3M E:nvironmenta1 Laboratory
Data file : D:\chem\Rush.i\R01.0222.b\RUSH0072.D
Lab Smp Id:
Inj Date : 23-FEB-2001 06:11
Operator : KLT/MLA Smp Info : 1311-4072MS-S1
Inst ID: Rush.i
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010222.b\ROlO222t.m
Meth Date : 09-Mar-2001 09:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:45 Als bottle: 41
Cal File: RuSH0032.~
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT S I G MASS
----
42 7
499
RT EXP RT RBL RT RESPONSE
--_-_- --------- -------- --------
5.539 5.512 (1.000)
626987
5.756 5.722 (1.039) 3324237
CONCENTRATIONS
ON-COLUMN
(ng/mL)
--======
FINAL ( ug/L) =======
249.300
223.877
224
3M Environmental Laboratory
Page 355 of 703
Data File: D:\ohem\Rush,i\R010222.b\RUSHOO72.,D
6.91 6.6: 6.31 16.01 1 5.71 5.41 5.11 4.81 4.51 4,2{
. 3.91
' 3.61
g 3.3:
e 3.01 2.71 2.41 24 1.81 1.5: 1.21 0,9{ 0.61 0.3:
. . .I.- .I. . . . . . . . . . . . . . . . . . . . . . . .
D:\chem\Rush,i\R010222.b\RUSHOO72+D I '. " I ' '
Y 1 THPFOS
1.2:
4c; 1.0; 0.8; X
0.61 >
0,4{ 0.2{
2 PFOS
BACK TO MAIN
Page 2
Page 356 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOO73.D Report Date: 09-Mar-200110:0:1
BACK TO MAIN Page 1
3M Environmental Laboratory
Data file : D:\chem\Rush.i\R0:!0222 .b\RUSH0073.D
Lab Smp Id:
In] Date : 23-FEB-2001 06:23
Operator : KLT/MLA Smp Info : 1311-4073-S1
Inst ID: Rush.i
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010222.b\ROlO222t.m
Meth Date : 09-Mar-200109:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:45 Als bottle: 42
Cal File: RUSH0032.D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: W19401
Concentration Formula: Amt * I3F * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
__--
427
499
RT EXP RT RBL RT RESPONSE
_ _ _ _ ________-_-_-___-__-___ ___-_ _ _ _ 3=======
5.546 5.512 (1.000)
719422
5.770 5.722 (1.040)
366061
CONCENTRATIONS
ON-COLUMN (ng/mL) ======= 249.300
FINAL ( ug/L) =======
20.0945
20.1
3M Environmental Laboratory
Page 357 of 703
BACK TO MAIN
Data File: D:\chem\Rush,i\R010222.b\RUSH0073,D
Page 2
1.9:
1.81
1.71
,.
'i1.6;
1.5:
1,4!
D:\cl1em\Rush.i\RO10222+b\RUSHOO73.D
Ev )
0 LL
[L
1.34
1.2;
1.11
; 1.Of
> 0.9;
2
+ 0.8:
0,71
0,6; 0.5; 0,41 0.3{
0.24 0.1;
1 . . !?. . , . , . . . . , . , . . , . . . . I . . . . , . . . .,, -. .
0.5 1.0 1,5 2,O 2.5 3.0 3.5 4.0
4.5 5,O
Min
.i.. , . . . . , . . .-., . . . . , . . . . ;. . . : , ::. . I " . ' , " "
5.5 6,O 6.5 7.0 7,5 8.0 8.5 9.0 9.5
H 1 THPFOS
1 -: 4.8 5.2 5.6 6.0 6.4
2 PFOS
Ion
9.0; 8.0; 7.0;
Page 358 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOO74.D Report Date: 09-Mar-200110:0;!
BACK TO MAIN Page 1
3M Etnvironmental Laboratory
Data file : D:\chem\Rush.i\R01.0222.b\RUSH0074.D
Lab Smp Id:
Inj Date : 23-FEB-200106:34
Operator : KLT/MLA
Inst ID: Rush.i
Smp Info : 1311-4074-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010222.b\ROlO222t.m
Meth Date : 09-Mar-2001 09:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-200122:45
Cal File: RUSH0032.D
Als bottle: 43
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
_- _-_ _
427 499
CONCENTRATIONS
ON-COLUMN
FINAL
R T EXP R T RBL RT RESPONSE
(ng/mL)
( ug/L)
____ ________ --__________-____---__--__-_ _ _ _ _ _ _ _
5.546 5,512 (1.000)
721925 249.300
5.770 5.722 (1.040)
377219
20.6367
20.6
3M Environmental Laboratory
Page 359 of 703
Data File: D:\chem\Rush,i\R010222.b\RUSHOO74..D
1.9; 1.8;
I,1*7.:
i. 1.6: 1.51 1.41 1.3; 1.2r
5H0074.D
'v)
0 LL Q 1 I-
BACK TO MAIN
Page 2
0.6: 0.5; 0,4{ 0.3; 0.2; 0.1;
:+ . . . . , . . . , , . . . . , . . . . , . . . . , . . . . , -. .
0.5 1,0 1,5 2,O 2.5 3.0 3,5 4.0 4+5 5.0 5
X 1 THPFOS
t. , . . . . , . . . . , . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
6,O 6.5 7,O 7 + 5 8+0 8.5 9.0 9.5
1.61
1.41
c. 1*2L
" . UJ
(
Lo:
4
X 0,8{
>- 0.64
0.41
0.2:
2 PFOS
1.0: 0.9: 0.8; 0.7;
;; 0.6;
6 0.5;
5d 0.4;
0.3; 0.2j 0.1;
11.
1
er.
'5
Lo
1
L I._
Page 360 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOO79.D Report Date: 09-Mar-200110:0;!
BACK TO MAIN Page 1
3M Environmental Laboratory
Data file : D:\chem\Rush.i\R010222.b\RUSHOO79.D
Lab Smp Id:
Inj Date : 23-FEB-2001 07:30
Operator : KLT/MLA
Inst ID: Rush.i
Smp Info : 1311-4075-S1
Misc Info :
Comment :
Method
D:\chem\Rush.i\R010222.b\ROlO222t.m
Meth Date : 09-Mar-2001 09:15 terrell Cal Date : 22-FEB-2001 22:45
Quant Type: ISTD Cal File: RUSH0032 .D
Als bottle: 44
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS
_-_____ _
427
499
RT EXP RT REL RT RESPONSE
-_____---------- -------- -_------
5.547 5.512 (1.000)
721016
5.779 5.722 (1.042)
356402
CONCENTRATIONS
ON-COLUMN FINAL
__(_n__g_/__m_L-_)_ _ _=( =u=g=/=L=)=
249.300
19.5198
19.5
3M Environmental Laboratory
Page 361 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOO79..D
BACK TO MAIN
Page 2
Y 1 THPFOS
1.8; 1.6; 1.4: A 1.2;
6Lo i.0;
" . rl
X 0.8; > 0,6{
0.4; 0,2;
2 PFOS
Y L b
m
lli
I
Page 362 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOO8O.D Report Date: 09-Mar-20011 0 : 0 : 1
BACK TO MAIN Page 1
3M IZnvironmental Laboratory
Data file : D:\chem\Rush.i\RO:L0222.b\RUSH0080.D
Lab Smp Id:
Inj Date : 23-FEB-200107:41
Operator : KLT/MLA Smp Info : 1311-4075MS-S1
Inst ID: Rush.i
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010222.b\R010222t.m
Meth Date : 09-Mar-2001 09:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-200122:45 Als bottle: 45
Cal File: RUSH0032.D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: W19401
Concentration Formula: Amt * I I F * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
---_
427
499
RT BXP RT REL RT RESPONSE ==== = = = = e = = = ======== ========
5.541 5.512 (1.000)
630748
5.772 5.722 (1.042) 3329105
CONCENTRATIONS
ON-COLUMN (ng/mL) =======
249.300
FINAL ( ug/L)
__----___ -_- _-
222.791
223
3M Environmental Laboratory
Page 363 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOO8O,D
I6.01 t 5.71 5.41 5.11 4.81 4.51 4.21 3,9{
A
L<n 3.61
0
4 "x 3.31
> 3.0: 2.71 2.41 2.11 1.81 l.5{ 1.21 0.9{
W 1 THPFOS
m
0
aLL
I/
I-
BACK TO MAIN
Page 2
2 PFOS
Page 364 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOO8l.D Report Date: 09-Mar-200110:02
BACK TO MAIN Page 1
3M Etnvironmental Laboratory
Data file : D:\chem\Rush.i\R01.0222.b\RUSH0081.D
Lab Smp Id:
In] Date : 23-FEB-2001 07:52
Operator : KLT/MLA
Inst ID: Rush.i
Smp Info : 1311-4076-S1
Misc Info :
Comment
Method
: D:\chem\Rush.i\R010222.b\ROlO222t.m
Meth Date : 09-Mar-2001 09:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-200122:45
Cal File: RUSH0032.D
Als bottle: 46
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
____
427 499
CONCENTRATIONS
ON-COLUMN
RT EXP RT REL RT RBSPONSE
(ng/mL)
_____ ___--_______- -_- _-_ _ _ - -_-__-______- _____-
E======
FINAL ( ug/L)
=====I=
5.553 5.512 (1.000)
721345
249.300
5.777 5.722 (1.040)
400719. 21.9443
21.9
3M Environmental Laboratory
Page 365 of 703
Data F i l e : D:\chem\Rush,i\R010222,b\RUSHO0814.D D:\c-1em\Rush,i\R010222,b\RUSHOO8l~D
*:. 1,7; .
`1.6;
1.5:
1.4;
1.3:
1.2:
. 1.1; 1.0:
''5
. :
0.9:
0.8;
0,4{
0.3:
0.2; 0.1{
.. .., ................................................
0+5 1.0 1.5 2.0 2.5 3.0 3.5 4,O 4,5 5,0 Min
W 1 THPFOS
BACK TO MAIN
Page 2
2 PFOS
0.7;
3$ 0.6: 0.5: v 0.4;
0.3; 0.2: 0.1;
, . . . , . . . 1 I . . . ,1. . . , . . .
`83M%virio5dhenfd La6d;atory
Page 366 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOlO7.D Report Date: 09-Mar-2001 10:03
BACK TO MAIN Page 1
3M Environmental Laboratory
Da%a file : D:\chem\Rush.i\R010222.b\RUSH0107.D
Lab Smp Id:
I n j Date : 23-FEB-2001 12:43
Operator : KLT/MLA
Inst ID: Rush.i
Smp Info : 1311-4090-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010222.b\ROlO222t.m
Meth Date : 09-Mar-2001 09:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:45
Cal File: RUSH0032.D
Als bottle: 64
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
3M Environmental Laboratory
Page 367 of 703
BACK TO MAIN
Data File: D:\chem\Rush.i\R010222.b\RUSH0107.D
Page 2
D:\chem\Rush,i\RO10222,b\RUSHQIQ7.D
1,8{
1.7;
d 1.6
t:
1.5{
1.4;
1.31 1.21
1.11
' 1.0;
i 0.9;
0.81
0,7{
0.6;
0.5; 0.41
0,3{
0.2;
0.1:
. . .I. .d. . . . . . . . . . . . . . . . . . . . . . . .
0,5 1.0 1.5 2 + 0 2.5
- , . . . . , . . . . , . . . . , . . . . , . . . .1 ,
-
................................
3.0 3.5 4.0 4.5 5.0 5, 6.0 6.5 7.0 7+5 8,O 8,5
Min
W 1 THPFOS
9. ,IQ. . . 9. :5"'
2 PFOS
Page 368 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOlO8.D Report Date: 09-Mar-200110:03
BACK TO MAIN Page 1
3M Environmental Laboratory
Data file : D:\chem\Rush.i\R010222.b\RUSH0108.D
Lab Smp Id: Inj Date : 23-FEB-2001 12:54
Operator : KLT/MLA Smp Info : 1311-4090MS-S1
Inst ID: Rush.i
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010222.b\ROlO222t.m
Meth Date : 09-Mar-200109:15 terrell Cal Date : 22-FEB-2001 22:45 Als bottle: 65 Dil Factor: 1.00000 Integrator: Falcon Target Version: 4.10 Processing Host: W19401
Quant Type: ISTD Cal File: RUSH0032.D
Compound Sublist: all.sub
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
----
427
499
RT BXP RT RBL RT RBSPONSB ==== ======== ======== ========
5.521 5.512 (1.000)
594782
5.745 5.722 (1.041) 3043722
CONCENTRATIONS
ON-COLUMN (ng/mL)
-------
249.300
FINAL
( ug/L)
-_------_--__
215.511
216
3M Environmental Laboratory
Page 369 of 703
Data File: D:\chem\Rushri\R010222.b\RUSHO108.D
BACK TO MAIN
Page 2
M 1 THPFOS
2 PFOS
5.0;
' 6 4.0:
' 6I S ) :
,-I 3.0;
\
"
> 2.0;
fl
1.0;
, . . . , . 1. . 1 , . .,. , . .r .A, . . .
*3M%6vi&henklPLa bbhtory
Page 370 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOlO9.D Report Date: 09-Mar-200110:03
BACK TO MAIN Page 1
3M Environmental Laboratory
DGta file : D:\chem\Rush.i\R010222.b\RUSH0109.D
Lab Smp Id:
Inj Date : 23-FEB-200113:05
Operator : KLT/MLA
Inst ID: Rush.i
Smp Info : 1311-4091-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010222.b\R010222t.m
Meth Date : 09-Mar-200109:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-200122:45
Cal File: RUSH0032.D
Als bottle: 66
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUpSSr SIG
MASS
_--_-
427
499
CONCENTRATIONS
ON-COLUMN FINAL
RT BXP RT RBL RT RESPONSE
(ng/mL)
_--_--- __- -_- -_____- -_---_---_--_--_ -_-___-_--_--_- - _ _=======
( ug/L) =======
5.520 5.512 (1.000)
696138 249.300
Compound Not Detected.
3M Environmental Laboratory
Page 371 of 703
Data File: D:\chem\Rush,i\R010222,b\RUSHOlO9.D
1.9; 1.8;
,?,1,7{.
'1.6; 1.5: 1.4: 1.3{ 1.2: 1.1;
;' 1.0; 0.9,: 0.81 0.7; 0.6; 0.5; 0,4; 0.31 0.24 0.q IM
M 1 THPFOS
1,8<
1.6;
1.4;
~ 1.2;
1.0; d x 0.8:
w
>- 0.6L
0.4;
0.2;
. . . . . , .
,. . I ' " 1
1
..'I.
4,8 5.2 5.6 6.0 6.4
Min
2 PFOS (Undetected)
I
Ion
1
2,4;
2.21
2.0;
8
1.8; 1.6;
1+4i
-4 1.2;
1.0;
0.8:
0.61:
0.4: , . . . , . . . , . . . , . . . , . . .
4*83M%fi~i&henfaf'La60?atory
BACK TO MAIN
Page 2 au)
0 LL 1
t
1.
Page 372 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOllO.D Report Date: 09-Mar-2001 10:03
BACK TO MAIN Page 1
3M Environmental Laboratory
Datta file : D:\chem\Rush.i\R010222.b\RUSHO110.D
Lab Smp Id:
Inj Date : 23-FEB-2001 13:16
Operator : KLT/MLA Smp Info : 1311-4092-S1
Inst ID: Rush.i
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010222.b\ROlO222t.m
Meth Date : 09-Mar-2001 09:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:45
Cal File: RUSH0032.D
Als bottle: 67
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
--_-_ _
427
499
RT EXP RT RBL RT RESPONSE
__ ___ ___-_ _ _ _ _ _ _ ------_--- ----_-_-_-_-_=
5.502 5.512 (1.000)
702240
Compound Not Detected.
CONCENTRATIONS
ON-COLUMN (ng/mL) =======
FINAL ( ug/~) =======
249.300
3M Environmental Laboratory
Page 373 of 703
Data File: D:\chem\Rush.i\R010222~b\RUSHOllO~D
D:\chem\Rush,i\R010222. 1.81 1,7{ 1,6;
ISHO11O.D -cn
0 LL Q
I
I-
BACK TO MAIN
Page 2
1.31 1.2{ 1.1; rr 1.0;
bLo
0,s; " > 0.81
0.7: 0.6; 0.51 0.41 0.31 0.2{ 0,1;
. . .I.N . . . . . . . . . . . . . . . . . . .
0.5 1,O 1.5 2.0
1 THPFOS
. , . . . . , . . .. , . . . . , . . . . ,.. .. ,. ..
2.5 3,O 3.5 4.0 4.5 5.0 Min
- .I.d. . , . . . . , . . . . , . . . . , . . . . , . . . . , . . . . , . . . . , . . . .
5 6*O 6*5 7+0 7.5 8+0 8.5 9,0 9,5
4.8 5.2 5.6 Min
2 PFOS <Undetected>
I on
1,s;
l,6:
1.41
h p 1.2;
0
v rxl 1.0:
l
6.0 6.4
O*4- , . . . , . . . , . . . , . . . , . . .
4+83M?5?wi&henktpLab$yf%tory
Page 374 of 703
Data File: D:\chem\Rush.i\R010222.b\RUSHOlll.D Report Date: 09-Mar-2001 10:03
BACK TO MAIN Page 1
3M Environmental Laboratory
Ddta file : D:\chem\Rush.i\R010222.b\RUSHOlll.D
Lab Smp Id:
Inj Date : 23-FEB-2001 13:27
Operator : KLT/MLA Smp Info : 1311-4093-S1
Inst ID: Rush.i
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010222.b\ROlO222t.m
Meth Date : 09-Mar-2001 09:15 terrell Quant Type: ISTD
Cal Date : 22-FEB-2001 22:45
Cal File: RUSH0032.D
Als bottle: 68
D i l Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS
---_-_
427 499
RT EXP RT RBL RT RESPONSE
==_= _-_-__---_--_-_--_-=-== ========
5 . 5 0 4 5.512 (1.000)
713216
Compound Not Detected.
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL)
=E=====
( ug/L) =======
249.300
3M Environmental Laboratory
Page 375 of 703
Data File: D:\chem\Rush,i\R010222~b\RUSHOl11.D
BACK TO MAIN
Page 2
1.9;
1.81
~
F
1.71 .
'1+6;
1*5{
1.4;
1,3;
1.2:
1.1;
' 1,o;
' 0.91
0,8{
0.7;
0.6{
0.5i
0.4;
0.31
0.2:
0.1;
. . .I.N. . . . . . . . . . . . . . . . . . . . . . . . .
0.5 1.0 1.5 2.0 2.5
,....,....,.... ,....,...
3.0 3.5 4,0 4.5 5,O Hin
Y 1 THPFOS
f
. . . , . . . . , . . . , . . . . , . . . . , . I . . , . . . . , . . .
.,....a
6.0 6.5 7.0 7.5 8.0 8,5 9,O 9.5
1.41
Err 1.2; 1.0; .x-I 0.8;
v
.
> 0+6{
0.41
0.21
I
1.81
1.6:
1.4:
1*21
0
1,0{
I,x
I
0.8:
II
1
Ion
b
Page 376 of 703
Data File: D:\Chem\Hillary\HO10309.b\HILLOO36.D Report Date: 28-Mar-200109:OO
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Diita file : D:\Chem\Hillary\HO10309.b\HILL0036.D
Lab Smp Id: 1311-4103-S1
In] Date : 09-MAR-2001 22:29
Operator : KLT
Inst ID: hil1ary.i
Smp Info : Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010309.b\H010312.m
Meth Date : 12-Mar-200111:lO anderson Quant Type: ISTD
Cal Date : 09-MAR-200121:32
Cal File: HILL0031.D
A1s bottle: 14
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
3M Environmental Laboratory
Page 377 of 703
BACK TO MAIN
Data File: D:\Chern\Hillary\HO10309.b\HILLOO36.D
Page 2
D:\Chem\Hillary\HO10309.b\HILL0036.D
v)
? i
2,2;
n.
i
2.14
c
2.0:
'il.9;
1.81
1.7;
1+6;
1.5;
1.4;
1.3:
;G 1.2; 1.1:
" 1.0; >
0.9;
0.8;
0.7;
0.6: 0.51 0,4;
0.3:'
0.22
0,1{ c
. . .I . N, . . . . , . . . . , . . . . , . . . . , . . . . , . . . . . . . . . . . . . . . . . . . .1. . . . . . . . . . . . . .
,. . . . ,. . . .
0,s 1.0 1 3 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5,s 6.0 6.5 7,O 7,5 8,O 8.5 9,o 9.5
2.21
2.0< 1.8:
1.6;
c. 1.42
y 5
1.2; id?;
V 0.8: 2- 0.61
0.4;
0.2;
? I - m Is)
I,\
1
Page 378 of 703
Data File: D:\Chem\Hillary\HO10309.b\HILL0037.D Report Date: 28-Mar-2001 09:OO
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
D&a file : D:\Chem\Hillary\HO10309.b\HILL0037.D
Lab Smp Id: 1311-4104-S1
Inj Date : 09-MAR-200122:40
Operator : KLT
Inst ID: hil1ary.i
Smp Info : Study Number E00-1311
Misc Info :
Comment
Met hod
: D:\Chem\Hi11ary\H010309.b\H010312.m
Meth Date : 12-Mar-2001 11:lO anderson Quant Type: ISTD
Cal Date : 09-MAR-200121:32
Cal File: HILL0031.D
Als bottle: 15
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: a l l sub
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
--_-
427
499
RT EXP RT REL RT RESPONSE ==== ======== ======== ======Ei=
5.037 5.009 (1.000) 1221819
5.268 5.233 (1.046)
215844
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL)
=E=====
(ug/mL) =======
254.000
6.16960
6.17
3M Environmental Laboratory
Page 379 of 703
Data File: D:\Chem\Hillary\H010309.b\HILL0037~D
BACK TO MAIN
Page 2
w 1 THPFOS
2.2: 2.0; 1.81 1.6; 1.4j
1.2: 1,o; 0.8; 0.61
4 c1.3 Lo
2 PFOS
Page 380 of 703
Data File: D:\Chem\Hillary\HO10309.b\HILL0038.D Report Date: 28-Mar-200109:OO
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Data f i l e : D:\Chem\Hillary\HO10309.b\HILL0038.D
Lab Smp Id: 1311-4105-S1
Inj Date : 09-MAR-200122:51
Operator : KLT Smp Info : Study Number E00-1311
Inst ID: hil1ary.i
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010309.b\H010312.m
Meth Date : 12-Mar-2001 11:lO anderson Quant Type: ISTD
Cal Date : 09-MAR-200121:32 Als bottle: 16
Cal File: HILL0031.D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
Compounds ..........................
* 1 THPFOS
2 PPOS
QUANT SIG
MASS
----
427
499
RT EXP RT ==== E=======
REL RT RESPONSE ======== ========
5.042 5.009 (1.000) 1028599
5.266 5.233 (1.044)
237536
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL) =======
(ug/mL) =------
254.000
8.37553
8.38
3M Environmental Laboratory
Page 381 of 703
BACK TO MAIN
Data File: D:\Chem\Hillary\HO10309~b\HILLO038,D
Page 2
2.2f 2.1;
.2.0; .
il.9:'
D:\Chem\Hillary\HO10309.b\HILLOO38~D
LV) 0
LL LL i I-
1.8:
1.7;
1.6;
1.5;
1.4;
. 1.3:
1.2;
; '
: 1.1:
1.0;
0.9:
0,s:
0.7:
0,6;
0.5:'
0.41
0.3:
0.2:
0.1:
. . .l/.L.l . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . I,. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
M 1 THPFOS
2 PFOS
c. . . . . .
Page 382 of 703
Data File: D:\Chem\Hillary\HO10309.b\HILLOO39.D Report Date: 28-Mar-200109:OO
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb Dkta file : D:\Chem\Hillary\HO10309.b\HILL0039.D
Lab Smp Id: 1311-4105MS-S1
Inj Date : 09-MAR-200123:03
Operator : KLT Smp Info : Study Number E00-1311
Inst ID: hi1lary.i
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010309.b\H010312.m
Meth Date : 12-Mar-200111:lO anderson Quant Type: ISTD
Cal Date : 09-MAR-200121:32 Als bottle: 17
Cal File: HILL0031.D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT S I G
MASS
-_-___
427
499
_R_T --__-E__X_P---R__T-_--__R-_E_L-_-R_T _-_R____B____S_P__O_- _N___SB__
5.029 5.009 (1.000)
874849
5.260 5.233 (1.046) 3963142
CONCENTR?iTIONS
ON-COLUMN
FINAL
(ng/mL) =======
(ug/mL) =======
254.000
190.967
191
3M Environmental Laboratory
Page 383 of 703
BACK TO MAIN
Data File: D:\Chem\Hillary\HO10309.b\HILL0039.D
Page 2
D:\Chem\Hillary\HO10309 \HILLOO39,D
6.9:
,
6.6;
6.3:
6.01
5.71
5.41
5.11
4,81
4.5:
4.21
3.9:
3.61
3.3-
3.0-
2.7; 2.41 2.11
1.81 1.5; 1.21 0.91 0+6: 0.3:
. . .I-. .I. . . . . . . . . . . . . . . . . . . . . . . . . . . . .
tfn
P 1 k-
1
. . . . . . . . . . . . . . . .1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
, . . . . ,1 . . .1 . , -.
1 THPFOS
11.8;
1.6: 1,4{ 1.21 1.0: 0.8: 0.61 0.4: 0.2;
I on1 cn
N
?
Lo
. . . , . . . ,I . J. .\ , . . .1 , . . . ,
4.4 4.8 5.2 5.6 6.0
2 PFOS
Page 384 of 703
Data File: D:\Chem\Hillary\HO10309.b\HILLO04O.D Report Date: 28-Mar-2001 09:OO
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Data file : D:\Chem\Hillary\HO10309.b\HILL0040.D
Lab Smp Id: 1311-4106-S1
Inj Date : 09-MAR-2001 23:14
Operator : KLT
Inst ID: hil1ary.i
Smp Info : Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010309.b\H010312.m
Meth Date : 12-Mar-200111:lO anderson Quant Type: ISTD
Cal Date : 09-MAR-2001 21:32
Cal File: HILL0031.D
Als bottle: 18
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
* 1 THPFOS
2 PFOS
427
5.036 5.009 (1.000)
1468017
254.000
499
5.260 5.233 (1.045)
452939 11.5341
11.5
3M Environmental Laboratory
Page 385 of 703
BACK TO MAIN
Data File: D:\Chem\Hillary\HO10309.b\HILLO04O+D
D:\Chem\Hillary\HO10: 3,b\HILL0040,D
3.2:
(D
0
LL
0
1
I-
Page 2
`i2.7;
2.6; 2.5; 2.4: 2.3:
2.2; 2.1: 2.0; 1.9: 1.8: A 1.7;
b 1+6{
`";1 1.5;
> 1.4: 1.3; 1.2; 1,li 1.0:
0,sj 0.8{ 0.7: 0.6: 0.5: 0.4; 0.3: 0.2j 0.1;
. . .IF.. ,I . . . . . . . . . . . . . . . . . . . . . . . .
0.5 1.0 1.5 2.0
1
, . . . . , . . . . , . . . . , . . . .1, . . . . . . . . . . . . . . . . .I .I . . . . . . . . . . . . . . . . . . . .
3.0 3.5 4.0 4.5 5.0 5.5 6.0 6.5 7.0 7+5 8,O 8.5
, . . .. ,....
9.0 9.5
1 THPFOS
3.0{ 2.7: 2.4: 2.1:
1.8:
: 1.51 1.2; > 0,sj
0.6:
0.35
4r9
tr-7 Lo
.
.
.
,
.
.
.
, 1.
.
.
,
.
.
1
.
(
.
.
`
I
1.0-
0.9; 0,s;
0.7r
A 0.6;
Lo
0 0.5:
Ti
" 0.4;
> 0,3;
0.2;
I on - m0
N.
Lo
Page 386 of 703
Data File: D:\Chem\Hillary\HO10309.b\HILLO04l.D Report Date: 28-Mar-2001 09:OO
BACK TO MAIN Page 1
3M Environmental Laboratory
Dits E00-1311 PFOS Adsorb/Desorb file : D:\Chem\Hillary\HO10309.b\HILL0041.D Lab Smp Id: 1311-4107-S1
Inj Date : 09-MAR-200123:25
Operator : KLT
Inst ID: hil1ary.i
Smp Info : Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010309.b\H010312.m
Meth Date : 12-Mar-2001 11:lO anderson Quant Type: ISTD
C a l Date : 09-MAR-200121:32
Cal File: HILL0031.D
Als bottle: 19
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
Compounds ..........................
* 1 THPFOS
2 PFOS
QUANT SIG
MASS
_-_---
427 499
RT EXP RT REL RT RESPONSE ==== ======== =====_== si=======
5.034 5.009 (1.000) 1055707
5.265 5.233 (1.046)
325164
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL)
(ug/rnL)
===E===
254.000 11.5124
11.5
3M Environmental Laboratory
Page 387 of 703
Data File: D:\Chem\Hillary\H414349.b\HILLOO4l.D
BACK TO MAIN
Page 2
2.1; F $2.4;.
t1,9; 1.8;
1.71. 1+6;
1.5; 1.4; 1.3;
; 1,2;
1.11:
1 1,o;
0.9;
4.8; 0.7;
0.6; 4.5;
0.41 4,3;
0.21 0*1;
. . .I.A,l. . . . , . . . . , . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .1 . . . .1. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
0.5 1.4 1.5 2+4 2.5 3.0 3.5 4.0 4.5 5.0 5 + 5 6.4 6.5 7 , O 7 + 5 8.4 8.5 9 + 0
, . . .I . -
9.5
H 1 THPFOS
2.21 2.0; 1.8; 1.6;
gcI 1+4j i.2:
g 1.4;
V 0.8;
>. 0.6; 0+4;
4.23:
m
f-? Lo
II
1
2 PFOS
7,O; 6.0{
Ion u u
'u.
m
5.4:
4,4:
4 : x 3.0f
V
Jl 2.0;
1.4;
. , . . . , . .I ./ .L. . I, . . . , . . 44 M P&h~n&nf8*EabMoty
Page 388 of 703
Data File: D:\Chem\Hillary\HO10309.b\HILL0042.D Report Date: 28-Mar-200109:OO
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
D&a file : D:\Chem\Hillary\HO10309.b\HILL0042 .D
Lab Smp Id: 1311-4108-S1
In] Date : 09-MAR-2001 23:37
Operator : KLT
Inst ID: hil1ary.i
Smp Info : Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010309.b\H010312.m
Meth Date : 12-Mar-200111:lO anderson Quant Type: ISTD
Cal Date : 09-MAR-2001 21:32
Cal File: HILL0031.D
Als bottle: 20
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
Compounds
..........................
* 1 THPFOS
2 PFOS
QUANT SIG MASS
--___--
427
499
RT EXP RT RBL RT RESPONSE ==== ======E= ======== = = = = = = a =
5.026 5.009 (1.000) 1050237
5.250 5.233 (1.045)
304848
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL) =======
(ug/mL)
254.000
10.7900
10.8
3M Environmental Laboratory
Page 389 of 703
Data File: D:\Chem\Hillary\HO10309+b\HILL0042.D
D:\Chem\Hillary\HO10309.b\HILL0042.D
2.2; 2.1;
c,2.0;.
t1.9; 1.8; 1.7; 1.6; 1.52 1,4; 1,3{
; 1.2;
i 1.1;
; 1.0; 0,s; 0.8; 0.7; 0.6: 0,s; 0.4; 0.3; 0.2; 0.1;
............................................
0.5 1.0 1.5 2,O 2,5 3.0 3.5 4,O
4:5" Mir
1 THPFOS
2.21 2.0; 1.8; 1.6;
:CI 1.41 L.2;
rl L o ;
X V 0.8:
>- 0.6: 0.4;
0.23:
Liu
?
Lo
. . . , . . . , I.. . . , . . 1.
6.01 5,Of
; 4.04
<
0$ 3,OC
k qLo
BACK TO MAIN
Page 2
Page 390 of 703
Data File: D:\Chem\Hillary\HO10309.b\HILL0043.D Report Date: 28-Mar-200109:OO
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Ddta file : D:\Chem\Hillary\H010309,b\HILL0043 .D
Lab Smp Id: 1311-4108MS-S1
In] Date : 09-MAR-200123:48
Operator : KLT
Inst ID: hil1ary.i
Smp Info : Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hillary\HO10309.b\HOlO3l2.m
Meth Date : 12-Mar-2001 11:lO anderson Quant Type: ISTD
Cal Date : 09-MAR-2001 21:32
Cal File: HILL0031.D
Als bottle: 21
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
Compounds
--_--- _ _ _ _ _ _ _ = =___-_--_-_==------= * 1 THPFOS
2 PFOS
QUANT SIG MASS
--_____
42 7 499
,
RT EXP RT RBL RT RESPONSB
==== ==------ ======== --------
5.028 5.009 (1.000)
865040
5.259 5.233 (1.046) 4001498
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL) =======
254.000
(ug/rnL)
_--_----_--_ - _
195.209
195
3M Environmental Laboratory
Page 391 of 703
BACK TO MAIN
Data File: D:\Chem\Hillary\HO10309.b\HILL0043.D
Page 2
1 6.9:
6.6: 6.31
; 6.0: `5.7:
5.41
5.11
4.8; 4.51
4.21
3.9:
i 3.61
:i 3.3; 3.0{
2 2.71
v)
2.4: a
2.11
1 I-
1 1.8:
1.5-
1.21
0.9:
0.6:
0.3:
. . .I-. .I. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . t.l . . . . . . . . ( . . . . , . . . . , . . . . , . . . . . . . . . . . . . . . . . . . . . . . .
0.5 1,O 1.5 2.0 2.5 3,O 3.5 4.0 4+5 5.0 5.5 6.0 6.5 7.0 7.5 8 , O 8.5 9.0 9.5
W 1 THPFOS
i,6{
L4{
1.21
yP-J. 1.0;
2 0 " 0.8;
0.6: 0,41
0.2:
I.
1
2 PFOS
;L + 2.0; 1.0;
.,. .. ,. .. ,..., .. .,. .
43h4E%d$q$r&nt&fabc%a?oty
Page 392 of 703
Data File: D:\Chem\Hillary\HO10309.b\HILL0044.D Report Date: 28-Mar-2001 09:OO
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Data file : D:\Chem\Hillary\HO10309.b\HILL0044.D
Lab Smp Id: 1311-4109-S1
In] Date : 09-MAR-200123:59
Operator : KLT Smp Info : Study Number E00-1311
Inst ID: hil1ary.i
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010309.b\H010312.m
Meth Date : 12-Mar-2001 11:lO anderson Quant Type: ISTD
Cal Date : 09-MAR-200121:32 Als bottle: 22
Cal File: HILL0031.D
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
-___
427
499
RT BXP RT REL RT RBSPONSE ==ii= ======== ======== ======== 5.027 5.009 (1.000) 1073533
5.258 5.233 (1.046)
173898
CONCENTRATIONS
ON-COLUMN (ng/mL) ======= 254.000
FINAL (ug/mL) =======
5.57372
5.57
3M Environmental Laboratory
Page 393 of 703
BACK TO MAIN
c 2.1; *! 2,o: t: 1.9: 1.8;
1.7;
1.6:
1.5: 1.4; 1.3;
1.2: 1.1: 1.0; 0.9;
0.8: 0.7; 0.6;
0,51
0.4: 1 0.3;
0.2:
0.1:
.
.
.I
.
N
,
.
.
.
.
,
.
.
.
.
I
.
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .I, . . . .U .........................
.,... .(....,....,....
2.2:: 2.0; 1.8; 1+6:
E.-. 1.4: 1.2:
2 1,o:
V
> 0.8; 0.6: 0.4; 0.21: - : 4.4
2 PFOS
fi
I n? - ( u
-4.8 5.2 5.6 6.0
Page 394 of 703
Data File: D:\Chem\Hillary\HO10309.b\HILL0045.D Report Date: 28-Mar-200109:OO
BACK TO MAIN Page 1
3M Environmental Laboratory
Dits
file
:
E00-1311 PFOS Adsorb/Desorb D:\Chem\Hillary\HO10309.b\HILL0045.D
Lab Smp Id: 1311-4110-S1
Inj Date : 10-MAR-20010O:ll
Operator : KLT Smp Info : Study Number E00-1311
Inst ID: hil1ary.i
Misc Info :
Comment :
Method
D:\Chem\Hillary\HO10309.b\HO10312.m
Meth Date : 12-Mar-200111:lO anderson Quant Type: ISTD
Cal Date : 09-MAR-2001 21:32 Als bottle: 23
Cal File: HILL0031.D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT S I G
MASS
---_--
427
499
CONCENTRATIONS
ON-COLUMN FINAL
_ _ _ _ _ _ _ _ RT EXP RT REL RT RBSPONSB
(ng/mL)
(ug/m~)
-_-_-_ _-__--__--_-__ ___-----_--_ _ _ - _ _=I==== ==== ====
5.031 5.009 (1.000)
1045079
254.000
5.262 5.233 (1.046)
179135 5.95635
5.96
3M Environmental Laboratory
Page 395 of 703
Data File: D:\Chem\Hillary\HO10309+b\HILL0045.D
BACK TO MAIN
Page 2
Y 1 THPFOS
2.2:'
2.0;
1+8r 1.6; 1.4: 1,2;
1.0;
0.8;
0.6; 0.41 0.2;
2 PFOS
3.6; 3.2; 2.8;
QLn
I>
I
I on
Page 396 of 703
Data File: D:\Chem\Hillary\HO10309.b\HILLO05O.D Report Date: 28-Mar-2001 09:OO
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
DAta file : D:\Chem\Hillary\HO10309.b\HILL0050.D
Lab Smp Id: 1311-4111-S1
In) Date : 10-MAR-200101:08
Operator : KLT
Inst ID: hil1ary.i
Smp Info : Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010309.b\H010312.m
Meth Date : 12-Mar-200111:lO anderson Quant Type: ISTD
Cal Date : 09-MAR-2001 21:32
Cal File: HILL0031.D
Als bottle: 24
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MMS
__-_--
427
499
RT BXP RT RBL RT RBSPONSB ==== ======== ======== ========
5.027 5.009 (1.000) 1036444
5.258 5.233 (1.046)
165195
CONCENTRATIONS
ON-COLUMN PIN-
(ng/mL) =======
(ug/mL) =======
254.000
5.46812
5.47
3M Environmental Laboratory
Page 397 of 703
BACK TO MAIN
Data File: D:\Chem\Hillary\HO10309+b\HILLO05O~D
Page 2
D:\Chem\Hillary\HO10309.b\HILLO05O.I1
2.2;
2.1;
2.0;
I ,?
. .
i1.F
1.8j
1.7;
1.64
1.5;
1.4;
1.3:
; 1.2;
: 1.1;
? 1.0;
0.9;
0,8r
0.7;
0.6;
0.51
0,4<
0.3;
0.2j
0+1;
. . .I. .N. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
0,5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .1. . . . . . .
0 5.5 6.0 6.5 7.0 7+5 8.0 8.5 9.0 9.5
w 1 THPFOS
2 PFOS
3.6; 3.31 3.0; 2.71 2.4; 2,11 1.8; 1.51 1.2: 0.9: 0.6;
Page 398 of 703
Data File: D:\Chem\Hillary\HO10309.b\HILLOO5l.D Report Date: 28-Mar-2001 09:OO
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Ddta file : D:\Chem\Hillary\H010309 .b\HILL0051.D
Lab Smp Id: 1311-4111MS-S1
Inj Date : 10-MAR-2001 01:19
Operator : KLT
Inst ID: hil1ary.i
Smp Info : Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hillary\HO10309.b\HOlO3l2.m
Meth Date : 12-Mar-200111:lO anderson Quant Type: ISTD
Cal Date : 09-MAR-200121:32
Cal File: HILL0031.D
Als bottle: 25
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT S I G MASS
__--_ RT BXP RT RBL RT RBSPONSB s = = = = = = ========= ========
5.028 5.009 (1.000)
869342
5.259 5.233 (1.046) 3920789
CONCBNTRATIONS
ON-COLUMN FINAL
(ng/mL)
=====E=
(ug/m~) =======
254.000
190.081
190
3M Environmental Laboratory
Page 399 of 703
BACK TO MAIN
Data File: D:\Chem\Hillary\HO10309.b\HILLOO51.D
Page 2
D:\Chem\Hillary\HO1030 b\HILL0051,D
6.61 6.3: 6.01 'i5.71 5.41
5,1{ 4,s: 4.51 4.21
3.91
; 3.61
1 3,31
' 3.0: 2.71 2,41 24
1.8: 1.51
1,2{
0.9: 0.6:
0.31
. . .I-. ,I . . . . , . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5:O Hin
1 THPFOS
1. .1. . . . . .I. . .I.I. . . . . . . . . . . . . . . . . . . . . . . . . . .I. . . -.1 . . .
5,5 6.0 6+5 7.0 7.5 8,O 8.5 9.0 9.5
1+81
1,61 1.41
1.2:
CI
b 1.0: "$ 0,s:
>- 0.6:
0,4{
0.2;
rcu
3
LD
I.
1
2 PFOS
Page 400 of 703
Data File: D:\Chem\Hillary\HOlO309.b\HILLOO52.D Report Date: 28-Mar-2001 09:OO
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Dsta file : D:\Chem\Hillary\HO10309.b\HILL0052.D
Lab Smp Id: 1311-4112-S1
Inj Date : 10-MAR-2001 01:30
Operator : KLT
Inst ID: hil1ary.i
Smp Info : Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hillary\HO10309.b\HOlO3l2.m
Meth Date : 12-Mar-200111:lO anderson Quant Type: ISTD
C a l Date : 09-MAR-200121:32 Als bottle: 26
Cal File: HILL0031.D
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
----
427
499
RT EXP RT RBL RT RESPONSE ==== = = = = = e = = ==E===== ========
5.034 5.009 (1.000) 1043258
5.265 5.233 (1.046)
170915
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL) =======
(ug/mL)
---_---_-___
254.000
5.64850
5.65
3M Environmental Laboratory
Page 401 of 703
Data File: D:\Chem\Hillary\HO10309.b\HILL0052.D
2.2; 2.11 2.0;
BACK TO MAIN
Page 2
0.4; 0.3; 0.2; 0.1;
IN
2.2: 2.0; 1,s; 1.6; cI 1.4;
!? 1.2;
'0 ;1 1.0: W > 0.8i
0.6,'
0,4;
0.2:
2 PFOS
*+ Lmo
?
ln
It
1
1 1 1
Page 402 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSHOO29.D Report Date: 20-Mar-2001 15:47
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Dkta file : D:\chem\Rush.i\R010314.b\RUSHOO29 .D
Lab Smp Id:
Inj Date : 14-MAR-2001 2 3 : 5 7
Operator : KLT
Inst ID: Rush.i
Smp Info : TN-A 4802 MeOH
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-2001 15:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-200123:28
Cal File: RUSH0027.D
Als bottle: 92
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
........................ Compounds
---------------_--------I=
* 1 THPFOS
3M Environmental Laboratory
Page 403 of 703
BACK TO MAIN
Data File: D:\chem\Rush+i\R010314,b\RUSH0029~D
Page 2
D:\chem\Rush.i\R010314.b\RUSH0029.D 6.41
6.2;
6.0; 5.8; ;5+6;
t5.4;
5.2; 5,O;
4.81
4.6; 4.4; 4,2;
4.0;
3.8;
E 3.6;
5 3.41 2 3.2;
>- 3.0;
2,s; 2.6; 2.4;
2.2: 2.04 1.8;
1.6;
1.4;
i 1+2;
1.0;
0.8;
0.61 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
i
i
2
i 6
t,
i
Min
M 1 THPFOS (Undetected)
I on 900-
850;
8001:
750:
700:
650:
600; >- 550;
500;
450:
4001
350,) 300:.
.. ,. .. ,.. .,.. ., .,',
4+8 5.2 5.6 6.0 6.4
Min
2 PFOS
.... .... .... .... ,,.,
i
io
il
i2
Page 404 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSHO03O.D Report Date: 20-Mar-2001 15:47
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Daka file : D:\chem\Rush.i\R010314.b\RUSHO03O.D
Lab Smp Id:
Inj Date : 15-MAR-20010O:ll
Operator : KLT
Inst ID: Rush.i
Smp Info : TN-A 4802 MeOH
Misc Info :
Comment
Method
: D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-2001 15:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-2001 23:28
Cal File: RUSH0027.D
A l s bottle: 92
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
Compounds
QUANT SIG
MASS
CONCENTRATIONS
ON-COLUMN FINAL
RT EXP RT REL RT RESPONSE
(ng/mL)
( ug/L)
3M Environmental Laboratory
Page 405 of 703
BACK TO MAIN
Data File: D:\chem\Rush,i\R010314.b\RUSHOO30.D
6.4: 6.2; 6-0; 5,8;
;% 5.6; 15.4;
5.2: 5.0: 4.8; 4.6; 4.4:' 4.2; 4.4:: 3.8;
; 3.6;
3,4;
5 3.21
. 3.0:
2,s; 2.6; 2.4; 2.2; 2,or 1.81 1.6; i+4; 1.2;
D:\chern\Rush.i\R414314.b\RUSH443O.D
Page 2
0.6:
1
2
3
4
n 1 THPFOS (Undetected)
Ion
680;
644L 600;
564;
520; >. 480;
4442
E
400;
360
320;
.
.
.
,
.
.
.
,
.
.
.
,
.
.
.
,
.
.
.
,
4.8 5.2 5.6 6.0 6+4
Hin
2 PFOS
.. .... .... .... .... .... .... ....
5
t,
i
i
i
io
il
i2
Hin
4,8+
Lo
4.4;
4.4:
3+6{
3.2<
4 2.8;
Y X 2.4;
>- 2.01
1,6:
1.2:
4+8;
.,..., ... ,. .. ,..., .. . 4+4M,!?&it&$rhent& tabbrdtory
Page 406 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSHOO3l.D Report Date: 20-Mar-2001 15:47
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Ddta file : D:\chem\Rush.i\R010314.b\RUSHO03l.D
Lab Smp Id: In] Date : 15-MAR-2001 00:26
Operator : KLT Smp Info : 1311-4121-S1
Inst ID: Rush.i
Misc Info : Comment :
Method
: D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-2001 15:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-2001 23:28 Als bottle: 14
Cal File: RUSH0027 . D
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS ====
427
499
RT BXP RT RBL RT RESPONSE ==== ===== ===I === == = ==== =====
5.467 5.462 (1.000)
1425324
Compound Not Detected.
CONCENTRATIONS
ON-COLUMN (ng/mL) =======
254.000
FINAL ( ug/L) =======
3M Environmental Laboratory
Page 407 of 703
Data File: D:\chem\Rush,i\R010314~b\RUSHOO31.D
3.81 3.61
,: 3.41.
'3,21 3.01 2.81 2.61 2.41 2.2: 2.0;
0
rxl 1.81
Y
1.6; 1,41 1.21 1.0; 0,81 0.6;
D:\chem\Ri
BACK TO MAIN
Page 2
1
1 H 1 THPFOS
- J. . . . . I.I . . . . . . . . . . . . . . . . . . . . . I. -.1
1
tu, i
1
6
1
io
il
12
Ill,,
3.3: 3,0{
2.7:
rr 2,4{
7 2.1;
$; L a ;
5 1.5:
> 1.21 0.91 0.6:
0.31
Is)
I Jx
1
2 PFOS
5,5r 5,O; 4.5; 4.0; CI 3,5<
&m 3,Oj
"rXl 2.5;
>. 2.0; 1.5, 1.0;
(Undetected) Ion
Page 408 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0032.D Report Date: 20-Mar-2001 15:47
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Daka file : D:\chem\Rush.i\R010314.b\RUSH0032.D
Lab Smp Id:
In] Date : 15-MAR-200100:40
Operator : KLT
Inst ID: Rush.i
Smp Info : 1311-4122-S1
Misc Info :
Comment :
Method
D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-2001 15:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-200123:28
Cal File: RUSH0027.D
Als bottle: 15
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT S I G
MASS
--____-
427
499
CONCENTRATIONS
ON-COLUMN
FINAL
RT BXP RT REL RT RESPONSE
(ng/mL)
( ug/L)
-_____--_----_---_--------_---_-_--_= _ -=I== ==== ==== = = =======
5.466 5.462 (1.000)
1078944
254.000
Compound N o t Detected.
3M Environmental Laboratory
Page 409 of 703
BACK TO MAIN
Data File: D:\chem\Rush,i\R010314.b\RUSH0032~D
Page 2
2.9: 2.8; 2.7; 2.6; 2.5; '2.4; 2.3i 2.2: 2.1; 2.0; 1.9; 1.8; 1.7; 1.6; I 1.5; 1.4; 1.3; 1.2; 1.1; 1.0; 0.9; 0+8; 0.7; 0.6; 0.54 0.4; 0.3;
0.2:
0.1;
. 1.. 4. . . . . . . . . . 1 1
. . ..
D:\chem\Rush,i\R010314.b\RUSH0032.D Lrn
0 LL
r 1
I-
. . . . . . y.\I. . . . . J.I . . . . . . .
. . . .
.. . .
. .. .
, . l.J - ,
2.7; 2.4: 2.11
CI 1.8: l,S{
r"xl 1.21
>- 0.9; 0.61 0,3{
t uu
4
Lo
I .\ 1
I on 5.2; 4,8+
Page 410 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0033.D Report Date: 20-Mar-20011 5 : 4 7
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Dkta file : D:\chem\Rush.i\R010314.b\RUSH0033 .D
Lab Smp Id:
Inj Date : 15-MAR-20010 0 : 5 4
Operator : KLT
Inst ID: Rush.i
Smp Info : 1311-4123-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-2001 15:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-200123:28
Cal File: RUSH0027.D
Als bottle: 16
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
- _- ____
427
499
CONCENTRATIONS
ON-COLUMN FINAL
RT EXP RT REL RT RESPONSE
(ng/mL)
( ug/L)
= _ = = ======= ====I === ==5= == = == =I====* =5=====
5.466 5.462 (1.000)
1090803
254.000
Compound Not Detected.
3M Environmental Laboratoty
Page 411 of 703
BACK TO MAIN
Page 2
D:\chern\Rush,i\R010314+b\RUSHOO33.D
2.9; 2.8:
2.7; 2.6; i2.5:
2.4: 2.3: 2.2:
2.1; 24 1.9:
1.8: 1.7:
&,-. 1.6:
Lo
1.5;
"1;: 1.4:
> 1.3: 1.2; 1.1; 1.0:
0.9; 0.8: 0.7:
0,65 0.5:
0.4:
0.3;
0.2:
0.1:
. l.A.l . . . . . . . . . . . . . . . . . .
1 5
5
4
6
1. . . . . . . . . . . . . . . . -. . . . . . . . . . . I. . L
t,
1 6
Hin
i
io
il
i2
Y 1 THPFOS
2.7: 2.4:
2.11
,-. 1,8{
Ls)
6 1.51
d
V 1.21 > 0.9:
0.6:
0.3:
4 L a Ls)
l,L
1
2 PFOS (Undetected)
I
I on
,-.
m
0 rl
"
>
Page 412 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSHO06O.D Report Date: 20-Mar-2001 15:48
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Dkta file : D:\chem\Rush.i\R010314.b\RUSH0060 .D
Lab Smp Id:
Inj Date : 15-MAR-200107:22
Operator : KLT
Inst ID: Rush.i
Smp Info : 1311-4137-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-2001 15:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-200123:28
Cal File: RUSH0027.D
Als bottle: 35
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SI0 MASS
--_____
427 499
RT BXP RT RBL RT RESPONSB ==== ======== e = = = = = = =========
5.477 5.462 (1.000) 1099389
5.687 5.679 (1.038)
757619
CONCBNTRATIONS
ON-COLUMN FINAL
(ng/mL)
( ug/L)
ii====== =======
254.000
22.8306
22.8
3 M Environmental Laboratory
Page 413 of 703
BACK TO MAIN
Data File: D:\chem\Rush,i\R010314.b\RUSH0060.D
Page 2
D:\chem\Rush,i\R010314.b\RUSHO06O.D
cn
0
2.9;
aLL
2.8;
c 1
2.7;
2.6:
si2.5:
2,41
2.3:
24
2.1;
2.0:
1.9;
1.8:
1.7;
.-. 1.6; 6D 1.5;
dx 1.4:
v
> 1.3;
1+2;
1.1;
1.0:
0.9;
0.8;
0.7;
0.6;
0,s:
0.4:
0.3;
0.2;
0.1:
. I. d. .
. . . . 1_1 . . . .
. . . .
. . ..
1 . . . .
. . . .
. . . .
. . . .
... .
. . . .
.. . .
. . . .
111 16
t,
1
1
i
io
il
i2
Min
1 THPFOS
2.71 2,4{ 24
fn 1.8; 1.5:
2d 1.2:
> 0.9; 0.6; 0.31
b -b
0,
D
1
1.
1
2 PFOS
Page 414 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSHOO6l.D Report Date: 20-Mar-200115:48
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Dkta file : D:\chem\Rush.i\R010314.b\RUSHO06l.D
Lab Smp Id:
Inj Date : 15-MAR-200107:36
Operator : KLT
Inst ID: Rush.i
Smp Info : 1311-4138-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-200115:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-200123:28
Cal File: RUSH0027.D
Als bottle: 36
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all I sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd,Variable
Local Compound Variable
3M Environmental Laboratory
Page 415 of 703
BACK TO MAIN
2+9<
2.8;
2.7; 2.6;
D:\chem\Rush,i\R010314+b\RUSH0061~D
(D 0
nL.L
1 t
,: 2.5;
`2,4:
2,3<
2.2;
2.1:
2.0;
1.9:
1,s;
1.7;
CI 1+6:
1,5{
3 1.4;
5 1.3;
i.2:
1,lj
1.0:
0.9;
0,s;
0.7;
0.6;
0.5;
0.4:
0.3:
0,2;
0.1,
rs . I. d. . . . . . . . . .
i
1
. . . . . . . . . I. . JI. . . . . . . . . . . . . . . . . . . . . . . . . . . . .
1 6
iM, in
j
6
1
io
il
12
H 1 THPFOS
2 PFOS
1,s; 1.6; 1,4{ 1.2: 1.0; 0.8{ 0.6;
Y Ion a co Lo
Page 416 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSHOO62.D Report Date: 20-Mar-2001 15:48
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
D&a file : D:\chem\Rush.i\R010314.b\RUSH0062.D
Lab Smp Id:
Inj Date : 15-MAR-2001 07:50
Operator : KLT
Inst ID: Rush.i
Smp Info : 1311-4138MS-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-2001 15:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-200123:28
Cal File: RUSH0027.D
Als bottle: 37
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS
_- _- _ _
427
499
RT EXP RT REL RT RESPONSE ==== ======== =====E== e = = = = = = =
5.470 5.462 (1.000)
947454
5.687 5.679 (1.040)
4939810
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL) =======
( ug/L) =-----_
254.000
228.058
228
3M Environmental Laboratory
Page 417 of 703
Data File: D:\chem\Rush,i\R010314.b\RUSH0062~D
BACK TO MAIN
Page 2
1 THPFOS
0
2.4;
b
4
2.2:
Ki
2.0:
1.8:
1.6;
1.4;
1.2;
5 1.0;
> 0.8;
0.6:
0+4j
0.23:
. . . , . . . ,I . .. . , . . . ,1 . . .
2 PFOS
Page 418 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0063.D Report Date: 20-Mar-2001 15:48
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb D&a file : D:\chem\Rush.i\R010314.b\RUSH0063 .D
Lab Smp Id:
Inj Date : 15-MAR-20010 8 : 0 5
Operator : KLT Smp Info : 1311-4139-S1
Inst ID: Rush,i
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-200115:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-200123:28 Als bottle: 3 8
Cal File: RUSH0027.D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS
-__-
427
499
RT EXP RT REL RT RESPONSE
--_--- --_-_-----_- _-_-_----------- --------
5.469 5.462 (1.000)
1086262
5.687 5.679 (1.040)
684895
CONCENTRATIONS
ON-COLUMN
(ng/mL)
------___
FINAL ( ug/L)
_______
254.000
20.6690
20.7
3M Environmental Laboratory
Page 419 of 703
BACK TO MAIN
Data File: D:\chem\Rush,i\R010314.b\RUSH0063.D
Page 2
D:\chem\Rush,i\R010314+b\RUSH0063.D
2.9;
2.8;
2.7:
2.6;
i2.5:
2.4;
2.3:
2.2;
2.1;
2.0;
1.9;
1+8:
1.7;
I&
1+5;
1.4;
' 1.3: - 1.2:
1.1:
1.0;
0.9;
0.8:
:L 0.7:
0.6: 0.5; 0.4: 0.3; 0.2; 0.1:
.... .. .. . . .. .. . . .... . .
1 1 1 1 6
. .... .... .... .... .... .... ....
tM, in 1
1
1 io
il
i2
i3
w 1 THPFOS
2.41
4 I on 0 I.Lo
,6 6.0 6+4
1.61
4
1.41
1.21
1.0;
0.8:
0.6:
Page 420 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0064.D Report Date: 20-Mar-2001 15:48
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Ddta file : D:\chem\Rush.i\R010314.b\RUSH0064 . D
Lab Smp Id:
Inj Date : 15-MAR-2001 08:19
Operator : KLT
Inst ID: Rush.i
Smp Info : 1311-4140-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-2001 15:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-200123:28
Cal File: RUSH0027.D
Als bottle: 39
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
3M Environmental Laboratory
Page 421 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0064.D
2.9j 2.8; 2,7{ 2+6+ i2.5: 2.4: 2+3j 2.2: 2.1; 2.0: 1.9;
D:\chem\Rush.i\R010314+b\RUSH0064.D
(0
0 LL
E[L
BACK TO MAIN
Page 2
2.4: 2.1: 1.81
gU J 1.51 "rxl 1,21
> 0.9i 0.61 0,31
2 PFOS
1.61 1,4{ 1.2{
LD
11.
I
I on
0.2:
JI
Page 422 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0065.D Report Date: 20-Mar-2001 15:48
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
DAta file : D:\chem\Rush.i\R010314.b\RUSH0065.D
Lab Smp Id:
Inj Date : 15-MAR-2001 08:34
Operator : KLT Smp Info : 1311-4141-S1
Inst ID: Rush.i
Misc Info :
Comment :
Met hod
D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-2001 15:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-2001 23:28
Cal File: RUSH0027.D
Als bottle: 40
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
_---__-_
427 499
CONCENTRATIONS
ON-COLUMN FINAL
RT BXP RT REL RT RESPONSE
(ng/mL)
----_ -_-__--__--__-_-_-__--_--_-_- __-_____-___=_======
( ug/L) =======
5.481 5.462 (1.000) 1075484 254.000
5.691 5.679 (1.038)
687097 20.9767
21.0
3M Environmental Laboratory
Page 423 of 703
BACK TO MAIN
Data File: D:\chem\Rush.i\R010314~b\RUSH0065.D
D:\chem\Rc
2.9:
2.8:
2.7;
2.6:
qi2.5:
2.4:
2.3;
2.2:
24
2.0:
1.9,
1.8:
1+7;
cI 1.6:
5
1.5; 1.4;
" 1.3: > 1.2:
1.1:
1.0:
0,Yi
0.8i
0.7:
0.6:
0.5;
0,4:
0,3!
0.2:
0,lj
. l.h l. . . . . . . . . . . . . . . . . . . 1.
1 5
1 16
1 THPFOS
*rl
0)
2.71
Lo
2.41
2.11
cI 1 3 1
Lbo 1.5: "rxl 1.21
>. 0.91
0.61
0,31
. . . , . . . ,I . .I. , . . .1 , . . . '
Page 2
! . . . . . . . . . . . . . . . . . . . . . . . . . . L.J-.
t,
1 6
1
io
il
12
Min
2 PFOS I on
1.6{
Page 424 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0066.D Report Date: 20-Mar-2001 15:48
BACK TO MAIN Page 1
3M Environmental Laboratory
i
E00-1311 PFOS Adsorb/Desorb
Ddta file : D:\chem\Rush.i\R010314.b\RUSH0066.D
Lab Smp Id:
Inj Date : 15-MAR-200108:48
Operator : KLT Smp Info : 1311-4141MS-S1
Inst ID: Rush.i
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mas-200115:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-200123:28 Als bottle: 41 Dil Factor: 1.00000 Integrator: Falcon Target Version: 4.10 Processing Host: W19401
C a l File: RUSH0027.D Compound Sublist: all.sub
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS ====
427 499
CONCENTRATIONS
ON-COLUMN
FINAL
RT EXP RT REL RT RESPONSE
(ng/mL)
_--__-----___---_--__--__--------_- ----___-______=======
( u~/L) =------
5.473 5.462 (1.000)
915669
254.000
5 . 6 8 4 5 . 6 7 9 (1.038)
4776931
228.225
22 8
3M Environmental Laboratory
Page 425 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0066.D
BACK TO MAIN
Page 2
8.7; B 8,4; i8*1;
7.8; 7,5: 7.2; 6.9; 6.61 6.3; 6.0; 5.7; 5.41
6 5.11 4.81
"rxl 4.5:
> 4.2: 3,s:
$ 3.61
(D
3.3:
0 LL
3.01
2.7:
2.41
2.1:
1.81
1.5:
1.21
0.9:
0.6:
0,3{
. I,
I .
. 1.
.
.
. 1.
.
.
. 1.
.
.
. 1.
.
.
.
ii
.
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2.
.
.
. 1.
.
.
. A
.
.
.
. . i
.
.
. . io
.
.
. .
il
. .
. .
i2
.
It
, ,
H 1 THPFOS
4.8 5.2 5,6 6.0 6.4 Min
2 PFOS
Page 426 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSHOO67.D Report Date: 20-Mar-200115:48
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Ddta file : D:\chem\Rush.i\R010314.b\RUSH0067.D
Lab Smp Id:
Inj Date : 15-MAR-2001 0 9 : 0 2
Operator : KLT
Inst ID: Rush.i
Smp Info : 1311-4142-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-2001 15:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-2001 23:28
Cal File: RUSH0027.D
Als bottle: 42
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
Compounds
. . . . . . . . . . . . . . . . . . . . . . . . . .
* 1 THPFOS
2 PFOS
QUANT SIG MASS ==== 42 7 499
CONCENTRATIONS
ON-COLUMN FINAL
RT U P RT REL RT RESPONSE
(ng/mL)
__--_-_-_-_-__________--_-____-______-___-__ ___=======
5.478 5.462 (1.000)
1079679
254.000
( ug/L)
-- ----_-_-_-s
5.695 5.679 (1.040)
673507 20.4226
20.4
3M Environmental Laboratory
Page 427 of 703
BACK TO MAIN
Data File: D:\chem\Rush,i\R010314.b\RUSH0067.D
Page 2
D:\chem\RL +i\R010314.b\RUSH0067,D
2.9:
'07
2.8;
0 IA
a
2.7;
1 I-
2.6;
i.2.5: t
2,4{
2.3:
2.2;
2.1;
2.0;
1.9;
1.8;
1.7;
P. 1+6{
'7 1+5:
4 1.4;
1+3; 1.2;
1.1;
1,oj
0.9;
0.8:
0.7;
0.6;
:I 0.5;
0.4;
0.3:
0.2;
0.1;
.... .... .... .... .... ..
1 ;1 4
6
. . . . l. l . . . . . . . . . . . . . . . . . . . . . L. L.
dM i I
1
6
1
10
il
12
11&11
M 1 THPFOS
2,7{ 2.41 2.11 1,sr
1.5;
1.21 0.9i 0.61 0,3{
. ..
t Ll-. Lo
I ,\ 1
2 PFOS
Page 428 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0068.D Report Date: 20-Mar-2001 15:49
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
DJta file : D:\chem\Rush.i\R010314.b\RUSHOO68.D
Lab Smp Id:
In] Date : 15-MAR-2001 09:17
Operator : KLT
Inst ID: Rush.i
Smp Info : 1311-4143-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-20011 5 : 0 2 terrell Quant Type: ISTD
Cal Date : 14-MAR-2001 23:28
Cal File: RUSH0027.D
Als bottle: 43
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS
--_____
42 7
499
RT EXP RT RBL RT RESPONSE
-_-----____----_------_ -_-_------------
5.470 5.462 (1.000) 1108514
5.687 5.679 (1.040)
716747
CONCBNTRATIONS
ON-COLUMN FINAL
(ng/mL)
( ug/L)
_- _-______=======
254.000
21.2606
21.3
3M Environmental Laboratory
Page 429 of 703
BACK TO MAIN
Data File: D:\chem\Rush.i\R010314~b\RUSH0068.D
Page 2
D:\chem\Rush.i\R010314~b\RUSH0068.D
3.0; 2.9; 2.8;
'v)
0 LL LL 1 I-
2.7;
.; 2+6; t 2.5;
2.4:
2.3:
2.2;
2.1;
2.0;
1,s:
1,8:
1+7;
1.6;
> 1.5;
1.4;
- 1*3;
1.2:
1.1:
1.0:
0,s:
0.8;
0.7;
0.6j
0.5:
0.4:
0.3;
0,2;
0.1;
. 1. 4. . . . . . . . . . . . . . . . . . . . 111 16
i.L . . . . . . . . . . . . . . . . . . . . . . . . . . . .
i,
i .A
i
io
il
i2
Min
1 THPFOS
I on 3+0: 2.71
2.4; 2.11
Fn 1.8; 1.51
,rxl 1,2;
>. 0.9: 0.61
0.3;
. . . , . . . , . . . , . . . ,1 . . . ,
4.8 5.2 5.6 6.0 6.4 Min
2 PFOS
Page 430 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0072.D Report Date: 20-Mar-2001 15:49
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb D$ta file : D:\chem\Rush.i\R010314.b\RUSH0072.D
Lab Smp Id:
Inj Date : 15-MAR-2001 10:14
Operator : KLT Smp Info : TN-A 4802 MeOH
Inst ID: Rush.i
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-200115:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-200123:28 Als bottle: 93
Cal File: RUSH0027 D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
3M Environmental Laboratory
Page 431 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0072.D
9.3:
9.Of
8.71
8.4;
8.11
7,81
7.5:
7.2{
6.91
6.61
6.31
6.0;
5*7{
, '
5.41 5.i:
4.81
4.5:
4,2{
3*9f
3.61
3,3:
3.01
2.7:
D: \chem\Rush \R010314,b\RUSH0072,D
y 1 THPFOS (Undetected)
680{
640;
600r
Ion n
...,. .. ,..., .. .,...
4,s 5.2 5,6 6.0 6.4 Min
2 PFOS
BACK TO MAIN
Page 2
Page 432 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0073.D Report Date: 20-Mar-200115:49
BACK TO MAIN Page 1
3M Environmental Laboratory
Dits
file
:
E00-1311 PFOS Adsorb/Desorb D:\chem\Rush.i\R010314.b\RUSH0073 .D
Lab Smp Id:
Inj Date : 15-MAR-200110:29
Operator : KLT
Inst ID: Rush.i
Smp Info : 1311-4144-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-2001 15:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-200123:28
Cal File: RUSH0027.D
A l s bottle: 44
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
Compounds
QUANT SIG MASS
CONCENTRATIONS
ON-COLUMN
RT EXP RT RBL RT RESPONSB
(ng/mL)
FINAL ( ug/L)
3M Environmental Laboratory
Page 433 of 703
BACK TO MAIN
Data File: D:\chem\Rush,i\R010314+b\RUSH0073+D
Page 2
D:\chem\Rush.i\R010314.b\RUSH0073.D
2.9: 2.8;
2.7; 2.6; `i2.5;
2.4; 2.3;
2.2: 2.1: 2.0;
1.9;
1+8:
1,7+
, '
1.6; 1.5;
1.4;
-` 1.3; 1.2:
i.1;
LO!
0.9:
0.8; 0,7;
0.6;
0.5; 0.4;
0,3;
0.2:
0.1:
. .. . . ... ,.. . . .. . .. .. .
1 h
2
4
6
1
k . . . . 1. . . . A . . . . 6 . . . . i o . . . . il . . . . i2. . . ,
Hin
M 1 THPFOS
2.71 2.41
2.11
CI 1.8;
Lo
b 1.5;
rl 1.2:
U
> 0.9: 0.6:
0.31
LCO
b,
Lo
It`
I
2 PFOS
1.8: 1.61 1.4; 1.21
;; 1.0;
0
rl 0,8{
"x .
>- 0.6; 0.4: 0.2;
b 0 Lo
1
\
Page 434 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0074.D Report Date: 20-Mar-2001 15:49
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
DJta file : D:\chem\Rush.i\R010314.b\RUSHOO74.D
Lab Smp Id:
In] Date : 15-MAR-2001 10:43
Operator : KLT
Inst ID: Rush.i
Smp Info : 1311-4144MS-S1
Misc Info :
Comment :
Method
: D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-2001 15:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-2001 23:28
Cal File: RUSH0027.D
Als bottle: 45
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
--_-_
427
499
RT EXP RT REL RT ==== ======== =====E== 5.462 5.462 (1.000) 5.686 5.679 (1.041)
RESPONSE
====e===
895662 4609795
CONCENTRATIONS
ON-COLUMN
FINAL
(ng/mL)
( ug/L)
==I====
254.000 224.468
224
3M Environmental Laboratory
Page 435 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0074+D
\R010314,b\RUSH0074.D
BACK TO MAIN
Page 2
2,7{ 2,41
2.1; 1,8{ 1.5; 1,2{ 0.9; 0,6{ 0,3{
. I.. .I .
.. ..
1 THPFOS
2.2;
3
Lo
2.0;
1+8;
1+6;
1.4;
s?! 1.2;
x 1.0:
v
>- 0.8;
0.6;
0.4;
0.2::
. . . , . . . ,I . I. .C, . . I . , . . ` 1
2 PFOS
c
1
1
... 1
. . . . . . . . . . . . . . . . . . . . . . . . . . 1. 1 .
iM, i n
1
1
1
io
il
12
I,
Page 436 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0075.D Report Date: 20-Mar-200115:49
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Data file : D:\chem\Rush.i\R010314.b\RUSH0075.D
Lab Smp Id:
Inj Date : 15-MAR-2001 10:57
Operator : KLT
Inst ID: Rush.i
Smp Info : 1311-4145-S1
Misc Info :
Comment :
Method
D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-20011 5 : 0 2 terrell Quant Type: ISTD
Cal D a t e : 14-MAR-200123:28
Cal F i l e : RUSH0027 D
Als bottle: 4 6
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
Compounds
. . . . . . . . . . . . . . . . . . . . . . . . . .
* 1 THPFOS
2 PFOS
QUANT SIG MASS ====
427 499
RT BXP RT RBL RT RBSPONSB ==== ======== ======== ========
5 . 4 6 7 5 . 4 6 2 (1.000)
1070260
5.684 5.679 (1.040)
640428
CONCENTRATIONS
ON-COLUMN (ng/mL)
FINAL ( ug/L) =======
254.000 19.4900
19.5
3M Environmental Laboratory
Page 437 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0075.D
D:\chem\Rush.i\R010314.b\RUSH0075.D 2.9: 2.8; 2.7; 2.6: : 2.5: (2.4; 2.3-j 2.2; 2.1: 2.0: 1.9, 1.8; 1.7: 1,6{ 1,s;
2 1.4;
1.3: + 1.2:
1.1; LO{ 0.9; 0.8: 0.7; 0.6; 0.5; 0.4; 0,3: 0,2; 0.1;
. 1.a.1. . 1. . . . 1 . . . . 2 . . . . 1. . . . 6 .
H 1 THPFOS
2,4{ 2.1{ 1.81 1.5; 1.2-
0.9r
0.6:
0,3{
2 PFOS
11%
1
BACK TO MAIN
Page 2
Page 438 of 703
Data File: D:\chem\Rush.i\R010314.b\RUSH0076,D Report Date: 20-Mar-2001 15:49
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Ddta file : D:\chem\Rush.i\R010314.b\RUSH0076.D
Lab Smp Id:
Inj Date : 15-MAR-200111:12
Operator : KLT
Inst ID: Rush.i
Smp Info : 1311-4146-S1
Misc Info :
Comment :
Met hod
: D:\chem\Rush.i\R010314.b\R010314t.m
Meth Date : 20-Mar-200115:02 terrell Quant Type: ISTD
Cal Date : 14-MAR-200123:28
Cal File: RUSH0027.D
Als bottle: 47
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: W19401
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
Compounds
...........................
* 1 THPFOS
2 PFOS
QUANT SIG MASS
----
427
499
RT BXP RT RBL RT RBSPONSB
-_--__--__ _-_-_-_-_-___ --_----_-__-_--_-===E====
5.459 5.462 (1.000) 1090781
5.676 5.679 (1.040)
644391
CONCENTRATIONS
ON-COLUMN
(ng/mL) =======
FINAL
( ug/L) =======
254.000
19.2107
19.2
3M Environmental Laboratory
Page 439 of 703
BACK TO MAIN
Data File: D:\chem\Rush.i\R010314.b\RUSH0076.D
Page 2
D:\chem\Rush,i\R010314+b\RUSH0076.D
I
2.9;
2.8;
2.7;
2,6:
'i2+5f
2.4;
2.3:
2.2;
2.1;
2.0;
1.9:
1.8;
1.7;
\ 1.6:
1.5;
2 1.4;
' 1.3;
1.2:
1.1;
1.0;
0.9:
0,8i
0.7;
0,6+
0.5;
0.4;
0.3;
0.2;
0.i:
. I. d. .
.. ..
.. . .
. . . .
.. .,
.
I
,
1 .i 1 i 6
.
. . . . I.I ._ . .
....
....
....
....
IL
....
d
i
6
4
io
il
i2
Min
M 1 THPFOS
2.7;
2.4; 2.11
1.8:
6m l.5{
rl
ux 1.2:
d. L L o Lo
2 PFOS Ion
1.6;
0.2;
. , . . . , . .I . f, .L. . I, . . . 4'??Ml!&i~f/hent& Pab8htory
Page 440 of 703
Data File: D:\Chem\Hillary\HOlO404.b\HILLO03l.D Report Date: 09-Apr-200113:05
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
DAta file : D:\Chem\Hillary\HO10404.b\HILLO03l.D
Lab Smp Id: 1311-4151-S1
Inj Date : 04-APR-2001 21:52
Operator : CMC
Inst ID: hi1lary.i
Smp Info : Omg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method
D:\Chem\Hillary\HO10404.b\HO10404.m
Meth Date : 09-Apr-2001 13 :02 carlson Quant Type: ESTD
Cal Date : 04-APR-200120:41
Cal File: HILL0026.D
Als bottle: 41
Dil Factor: 1.00000
Intesrator: Falcon
Compound Sublist: all.sub
Targgt Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS
----_
427 499
CONCENTRATIONS
ON-COLUMN FINAL
RT BXP RT DLT RT RBSPONSB
(ng/mL)
-_--__----_-_-----____-_------ --_-_-________ _=s=====
(ng/mL) =======
5.108 5.092 0.016
1562301
254.000
254
compound Not Detected.
3M Environmental Laboratory
Page 441 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILLOO31~D
I
D:\Chem\Hillary\HO10404.b\HILLOO31.D
BACK TO MAIN
Page 2
1 THPFOS
I
2.74
2,4{
n 2.11
< 7
0
1.8; 1.5:
V > 1.21 0.91
0.6:
0.31
I.
2 PFOS (Undetected)
~
I on
Page 442 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0032.D Report Date: 09-Apr-2001 13:05
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Daka file : D:\Chem\Hillary\H010404.b\HILLOO32 . D
Lab Smp Id: 1311-4152-S1
Inj Date : 04-APR-200122:07
Operator : CMC
Inst ID: hil1ary.i
Smp Info : Omg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010404.b\H010404.m
Meth Date : 09-Apr-2001 13:02 carlson Quant Type: ESTD
Cal Date : 04-APR-200120:41
Cal File: HILL0026 .D
Als bottle: 42
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
Compounds
..........................
1 THPFOS 2 PFOS
QUANT SIG MASS
_------_
427 499
CONCENTRATIONS
ON-COLUMN FINAL
_ _ _ _ _ _ _ _ _ _ _ _RT EXP RT DLT RT RESPONSE
(ng/mL)
(ng/mL)
-__-__---_----_-_--_--_--_--_--_--_- _--=ii=====E======
5.111 5.092 0.019
1575594
254.000
254
Compound Not Detected.
3M Environmental Laboratory
Page 443 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILLOO32.D
3.41
3.21
i3,Oi
2.81
2.61
2.41
2.2;
-. 2.01
1.8;
'5
:
1.6:
1.41
131
1.0;
0.81
0.61
D:\Chew\Hillary\HO10404.b\HILLOO32~D
.IJ.Q. I. .I_lJ-.-. . . . . . . . . . . . . . . .
11 1 16 Min
Ion rl
1
rl
3.3:
i Lto
3.01
- 2.7{ 2.4:
m 2,1{
& 1.81
4x 1.5: W 1.21
>-
0.9;
0.61
0,3{
- . . . . . . . . , , 1 .
1
I...I..'I
4.4 4.8 5.2 5.6 6.0
Min
2 PFOS (Undetected)
I on 3.3:
3,O;
BACK TO MAIN
Page 2
Page 444 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0033.D Report Date: 09-Apr-200113:05
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
D&a file : D:\Chem\Hillary\HO10404.b\HILL0033.D
Lab Smp Id: 1311-4153-S1
Inj Date : 04-APR-200122:21
Operator : CMC
Inst ID: hil1ary.i
Smp Info : Omg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method
D:\Chem\Hillary\HO10404.b\HO10404.m
Meth Date : 09-Apr-200113:02 carlson Quant Type: ESTD
Cal Date : 04-APR-200120:41 Als bottle: 43
Cal File: HILL0026.D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
--__
427
499
RT BXP RT DLT RT RESPONSE ==== ======== ======== ======== 5.106 5.092 0.014 . 1560062
Compound Not Detected.
CONCENTRATIONS
ON-COLUMN (ng/mL)
FINAL (ng/mL)
===E===
=_=====
254.000
254
3M Environmental Laboratory
Page 445 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0033.D
3.4: 3.21 ,; 3.0-
i:
2,81 2.61 2.41 2.2: 2.0: 1.81 1.6: 1.4: 1.21 1.0: 0.81 0.6:
0.41
0.21
. . . . i ' . . . 1. . . . 1
1 THPFOS
D:\Chem\Hillary\HO10404.b\HILL0033.D
1 6 Hin
BACK TO MAIN
Page 2
2 PFOS (Undetected)
I
I on
1
mCI
0 d
" >
Page 446 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0034.D Report Date: 09-Apr-200113:05
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Ddta file : D:\Chem\Hillary\H010404.b\HILL0034.D
Lab Smp Id: 1311-4153MS-S1
Inj Date : 04-APR-2001 22:36
Operator : CMC
Inst ID: hil1ary.i
Smp Info : Omg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010404.b\H010404.m
Meth Date : 09-Apr-200113:02 carlson Quant Type: ESTD
Cal Date : 04-APR-2001 20:41
Cal File: HILL0026.D
Als bottle: 44
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS
-_- _ _ _ E
42 7
499
RT EXP RT DLT RT RESPONSE
==== ======== ======== s = = = = = = =
5.105 5.092 0.013
1537278
5.315 5.309 0.006
3170996
CONCENTRATIONS
ON-COLUMN FINAL
(ng/rnL) =======
(ng/mL) =======
254.000
2 54
168.305
168
3M Environmental Laboratory
Page 447 of 703
BACK TO MAIN
Data File: D:\Chern\Hillary\HO10404.b\HILL0034.D
Page 2
D:\Chem\Hillary\HO10404.b\HILL0034,D 7.2:
6.51
6.61
6.3:
'i6.01
5.7;
5.41
5.1{
4.81
4,5{
4,2{
, 3,531
; 3.61 3.31
- 3.01
2.71
2.41 2.11
1.81
1.51
1.21
0.9r
0.6;
0.3;
. . . . 1. . . . 1. . . . 1.1 . . . 1. . . . t
. [.I . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
1 5
1 b
io
il i2
1 THPFOS
Ion
2 PFOS
Page 448 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0035.D Report Date: 09-Apr-200113:05
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Daka file : D:\Chem\Hillary\H010404.b\HILL0035.D
Lab Smp Id: 1311-4154-S1
Inj Date : 04-APR-200122:50
Operator : CMC
Inst ID: hil1ary.i
Smp Info : Omg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010404.b\H010404.m
Meth Date : 09-Apr-200113:02 carlson Quant Type: ESTD
Cal Date : 04-APR-200120:41
Cal File: HILL0026.D
Als bottle: 45
Dil Factor: 1,00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS
-_--
427 499
RT EXP RT DLT RT RESPONSE ==== ======== ======== ====E===
5.098 5.092 0.006
1599896
Compound Not Detected.
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL) =======
(ng/mL) =======
254.000
254
3M Environmental Laboratory
Page 449 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILLOO35.D
I
D:\Chem\Hillary\HO10404.b\HILL0035,I)
BACK TO MAIN
Page 2
1 THPFOS
I
3.6: 3.31 3,Oi 2.71 2.4:
;; 2.1: 6 1.81
dx 1,5{
V
~ i*2: 0,Sf 0.6: 0.3;
Cfn
9
Lo
If
1
2 PFOS (Undetected) I on
Page 450 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0036.D Report Date: 09-Apr-200113:05
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Ddta file : D:\Chem\Hillary\H010404.b\HILL0036.D
Lab Smp Id: 1311-4155-S1
In] Date : 04-APR-200123:04
Operator : CMC
Inst ID: hil1ary.i
Smp Info : Omg/L PFOS Study Number E00-1311
Misc I n f o :
Comment :
Method
: D:\Chem\Hi11ary\H010404.b\H010404.m
Meth Date : 09-Apr-200113:02 carlson Quant Type: ESTD
Cal Date : 04-APR-2001 20:41
Cal File: HILL0026.D
Als bottle: 46
Dil Factor: 1,00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all sub
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
3M Environmental Laboratory
Page 451 of 703
BACK TO MAIN
Data File: D:\Chem\Hillary\HO10404.b\HILLOO36.D
Page 2
D:\Chem\Hillary\HO10404.b\HILLOO36.D
3.61
3.41
,: 3.2; t' 3.0;
2.81
2.61
2.41
2.2;
7n 2.01 .
3 1.81
# x
.
1.61
1.4-
1.2;
1.0;
0,81
0.6:
0.4:
0.2;
. . . . . . . . . . . . . . . . . . . . . . .1 . . . . . . . . . . . , . . . . . . . . , , . . , . , . .
1 1116
tM, in 1
6
1
1'0
il
1'2
1 THPFOS
2 PFOS
3.6: 3.3r
(Undetected) I on
Page 452 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0037.D Report Date: 09-Apr-200113:05
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Ddta file : D:\Chem\Hillary\HO10404.b\HILL0037.D
Lab Smp Id: 1311-4156-S1
Inj Date : 04-APR-200123:19
Operator : CMC
Inst ID: hil1ary.i
Smp Info : Omg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010404.b\H010404.m
Meth Date : 09-Apr-2001 13:02 carlson Quant Type: ESTD
Cal Date : 04-APR-200120:41
Cal File: HILL0026.D
Als bottle: 47
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
--- ---E
427
499
CONCENTRATIONS
ON-COLUMN PINAL
RT
----
EXP RT DLT RT
_----_--_----_-________=-==
=
RESPONSE
-----_-_-____-_
_-(_ng_/m_-L_)___-_-_(-_-n-_g-_-/=_m_L)
5.093 5.092 0.001
1644662
254.000
254
Compound Not Detected.
3M Environmental Laboratory
Page 453 of 703
Data File: D:\Chem\Hillsry\HO10404~b\HILL0037.D
3+83.6: 3.41 *;3,21 3,O; 2.81 2.61 2.4; 2,21
; 2.01
2 1.8;
* 1.61 1.41 1.21 1.0;
0.81
0,61
0.4: 0.21
D:\Chem\Hillary\HO10404.b\HILL0037~D
n
1
1. I
1 THPFOS
Ion
3.6: 3,3: 3.0< 2.71
4 2,4;
c; 2.1:
1.8{
5 1.5:
> 1.21 0.94 0.6: 0,3{
. . . , . . . , . 1. . , . . . , . . .1 I
4.4 4.8 5.2 5.6 6.0 Hin
2 PFOS
5.2; 4.8; 4.4; 4.0:
(Undetected) Ion
BACK TO MAIN
Page 2
1.2; 0.8;
Page 454 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0039.D Report Date: 09-Apr-2001 13:05
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
D&ta file : D:\Chem\Hillary\HO10404.b\HILL0039.D
Lab Smp Id: 1311-4157-S1
Inj Date : 04-APR-200123:48
Operator : CMC
Inst ID: hil1ary.i
Smp Info : 5mg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010404.b\H010404.m
Meth Date : 09-Apr-200113:02 carlson Quant Type: ESTD
Cal Date : 04-APR-2001 20:41
Cal File: HILL0026.D
A l s bottle: 49
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all sub
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS
--_-_
427
499
CONCENTRATIONS
ON-COLUMN FINAL
RT EXP RT DLT RT RESPONSE
(ng/mL)
==== ======== === === ===== == i= = == = = = = E
(ng/mL) =======
5.098 5.092 0.006
1587389
254.000
254
Compound Not Detected.
I
3M Environmental Laboratory
Page 455 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILLOO39~D
3.64 3.4; ,3,2;
i:
3*0: 2.8; 2.6; 2.4; 2.2:
, 2.0;
- 1,s:
I
1+6: 1.4; 1.2; 1.0; 0.8; 0,6;
0,4; 0,2;
. ...
. . ..
... .
D:\Chem\Hillary\HO10404.b\HILL0039~D
n
. . h- . . . . . . .
1 THPFOS
BACK TO MAIN
Page 2
2 PFOS (Undetected)
~
1.31.2; l,l{ 1.0: 0,9{
6n 0,8+
d 0.7:
~
I on
0.2: 0.1;
Page 456 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILLOO4O.D Report Date: 09-Apr-200113:06
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Ddta file : D:\Chem\Hillary\HO10404.b\HILL0040.D
Lab Smp Id: 1311-4158-S1
In] Date : 05-APR-20010 0 : 0 2
Operator : CMC
Inst ID: hi1lary.i
Smp Info : 5mg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010404.b\H010404.m
Meth Date : 09-Apr-200113:02 carlson Quant Type: ESTD
Cal Date : 04-APR-200120:41
Cal File: HILL0026.D
Als bottle: 50
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SI0
MASS
--_-
427 499
RT
--__==
EXP RT
=E======
DLT RT
====E===
RESPONSE
===t====
5.098 5.092 0.006
1567309
Compound Not Detected.
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL)
(ng/mL)
=r-=====
5======
254.000
254
3M Environmental Laboratory
Page 457 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILLO04O~D
D:\Chem\Hillary\HO10404.b\HILLO04O.D 3.61
3.4-
3.21
9
.
(3.0:
2.8:
2.61
2,4{
2.2;
c, 2.01
Ki
62 1.8: .
V 1.6; >.
1,4{
1,2{
l,O{
0.81
0.61
0.41
0.2:
.m. . . . . . . . . . . . . . . . . . . 1 . . . . . . . . . . . .
1 1 1 1 1 d
1
Min
1 THPFOS
3.6: 3,3; 3.0:
2.7: 2.4:
4cj 2.1; 1,s;
x 1.5:
V
>- 1 * 2 { 0.9:
0.61
0.31
+m
9
Ki
2 PFOS
1.21 1.0-
(Undetected)
I on
1
>
,
4. M.
.,.. ., .. .,. ..
/!`n8v,.sn5&n2en&%Lab%itow
BACK TO MAIN
Page 2
Page 458 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILLO04l.D Report Date: 09-Apr-2001 13:06
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Ddta file : D:\Chem\Hillary\H010404.b\HILL0041.D
Lab Smp Id: 01003-07-03
Inj Date : 05-APR-200100:16
Operator : CMC Smp Info : 5 ng/mL PFOS in MeOH
Inst ID: hi1lary.i
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010404.b\H010404.m
Meth Date : 09-Apr-2001 13:02 carlson Quant Type: ESTD
Cal Date : 04-APR-200120:41 Als bottle: 3
Cal File: HILL0026.D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all sub
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
Compounds ..........................
1 THPFOS 2 PFOS
QUANT SIG
MASS
----
427
499
CONCENTRATIONS
ON-COLUMN
RT ==== 5.105
EXP RT
E=======
5.092
DLT RT RESPONSE
(ng/mL)
======= === == === ==i == I.==
0.013
1307817
254.000
5.315 5.309 0.006
101216
2.67325
FINAL (ng/mL) =======
254 2.67
3M Environmental Laboratory
Page 459 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILLOO41.D
2.01 1.91 1.81
,.
i1.71 1.61 1,51 1,41 1+31 1.21
,'; 11.*011L:
0.9; 0.81 0.7: 0.61 0.5; 0.41 0.31 0,2: 0.11
D:\Chem\Hillary\HO10404.b\HILLOO41.D
r
1 THPFOS
BACK TO MAIN
Page 2
2 PFOS
Page 460 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0045.D Report Date: 09-Apr-200113:06
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb Ddta file : D:\Chem\Hillary\H010404.b\HILL0045.D
Lab Smp Id: 1311-4159-S1
I n j Date : 05-APR-2001 01:14
Operator : CMC
Inst ID: hi1lary.i
Smp Info : 5mg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010404.b\H010404.m
Meth Date : 09-Apr-200113:02 carlson Quant Type: ESTD
Cal Date : 04-APR-2001 20:41 Als bottle: 51
Cal File: HILL0026.D
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
_ - _ MASS
--_a
427 499
CONCENTRATIONS
ON-COLUMN
--___-- RT EXP RT DLT RT RESPONSE
(ng/rnL)
= E = = = = = = ==I= ==== ==== == == =======
FINAL (ng/rnL) =======
5.098 5.092 0.006
1569488
254.000
254
5.315 5.309 0.006
202756
7.96638
7.97
3M Environmental Laboratory
Page 461 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0045.D
3.6:
3.41
3.21
I
.
i3.01
2.8:
2.6:
2.41
2.21
2.0:
' >
, 1.81
!. 1.6-
1.4:
1.2:
1.0:
0,s:
0,6{
D:\Chem\Hillary\HO10404.b\HILL0045.D
BACK TO MAIN
Page 2
1 THPFOS
3.6: 3.3{ 3.0{ 2.7: 2.41 2.1: $, i.8: d x 1.5;
W
~ 1.2; 0.9; 0.6; 0.3:
2 PFOS
4.8: 4.4; 4.0; 3.6; 3.2;
2 2.81 &, 2.4;
dW x 2.0; 1.6; 1*2; 0.8;
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .A-
3 16-1 Is)
IJ
1 ,+ d Is)
Page 462 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0046.D Report Date: 09-Apr-200113:06
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
DJta file : D:\Chem\Hillary\HO10404.b\HILL0046.D
Lab Smp Id: 1311-4159MS-S1Inj Date : 05-APR-200101:28
Operator : CMC
Inst ID: hil1ary.i
Smp Info : 5mg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method
D:\Chem\Hillary\HO10404.b\HO10404.m
Meth Date : 09-Apr-200113:02 carlson Quant Type: ESTD
Cal Date : 04-APR-200120:41
Cal File: HILL0026.D
Als bottle: 52
Dil Factor: 1.00000
Intesrator: Falcon
Compound Sublist: all.sub
TargGt Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT S I G MASS
=E==
427 499
RT EXP RT DLT RT RBSPONSE ==== ==e===== ======== ========
5.098 5.092 0.006
1521100
5.315 5.309 0.006
3255972
CONCBNTRATIONS
ON-COLUMN FINAL
(ng/mL) =======
(ng/mL) =======
254.000
2 54
173.055
173
3M Environmental Laboratory
Page 463 of 703
BACK TO MAIN
Data File: D:\Chem\Hillary\HO10404.b\HILL0046.D
D:\Chem\Hillary\HO10404~b\HILL0046.D
7.21
6.9:
6.61
36.3{
6.0:
5.7:
5.41
5.11
4,8{
4,5;
4,21
; 3.9: 3 3.6: 5 3.31
.. 3.0-
2.7:
2,4{
2.1;
1.8;
l,5{
1.2:
0.9:
0,6-
0.32
>". I . . . , .' .1 . . , . . . . , .I . . . I . . . .
1
2
3
4
6
7
8
1 THPFOS
3.3; 3.01
2.71 2.44
.P 2.11
n& 1.81 rxl 1.5;
Y
> 1.2; 0,9{ 0.61
0.34
8"Ion
IJ
I
2 PFOS
7.0; 6,Of 5.0;
CI
4,0{
I\ 0
d"x 3,oj'
2,o;
1.0-
Page 2
9
10
11
12
Page 464 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILLOO47.D Report Date: 09-Apr-200113:06
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Data file : D:\Chem\Hillary\H010404.b\HILL0047.D
Lab Smp Id: 1311-4160-Sl
Inj Date : 05-APR-2001 01:43
Operator : CMC
Inst ID: hil1ary.i
Smp Info : 5mg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010404.b\H010404.m
Meth Date : 09-Apr-2001 13:02 carlson Quant Type: ESTD
Cal Date : 04-APR-200120:41
Cal File: HILL0026.D
Als bottle: 53
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all sub
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
Compounds
QUANT SIG
MASS
CONCENTRATIONS
ON-COLUMN FINAL
RT EXP RT DLT RT RESPONSE
(ng/mL)
(ng/mL)
3M Environmental Laboratory
Page 465 of 703
Data File: D:\Chem\Hillary\HO10404+b\HILL0047+D
BACK TO MAIN
Page 2
1 THPFOS
3.0: 2,7{ 2.41
g 2.11 1.8: d x 1.51
V
> 1.21 0.9; 0.61 0.31
2 PFOS
Lo
I.
1
1.2;
pCI
1.0:
0
rxl 0 + 8 {
V
> 0.61
Page 466 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILLOO48.D Report Date: 09-Apr-200113:06
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Dita file : D:\Chem\Hillary\H010404.b\HILL0048.D
Lab Sny? Id: 1311-4161-S1
Inj Date : 05-APR-200101:57
Operator : CMC
Inst ID: hil1ary.i
Smp Info : 5mg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method : D:\Chem\Hillary\HO10404.b\HOlO4O4.m
Meth Date : 09-Apr-200113:02 carlson Quant Type: ESTD
Cal Date : 04-APR-2001 20:41
Cal File: HILL0026.D
Als bottle: 5 4
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT S I G MASS
----
427
499
CONCENTRATIONS
ON-COLUMN FINAL
RT BXP RT DLT RT RESPONSE
(ng/mL)
==E= ======== =I== === ==== =====
(ng/mL)
----------
5.098 5.092 0.006
1535494
254.000
254
Compound Not Detected.
3M Environmental Laboratory
Page 467 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0048.D
3.4; 3.21 ; 9 3.01 2.8: 2.61 2,41
2.2:
2.0:
t 1.8:
! : 1.61
1.41
1.21 1.0: 0.81
0.61
0.4:
o
D:\Cher
1
*1 2 2 3 i 4 i5
1 THPFOS
d +
Hin
BACK TO MAIN
Page 2
Q..'. . . . . . . . . . . . . . . . .
1 io 11 12
2 PFOS (Undetected)
Page 468 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0049.D Report Date: 09-Apr-200113:06
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Dita file : D:\Chem\Hillary\H010404.b\HILL0049.D
Lab Smp Id: 1311-4162-S1
Inj Date : 05-APR-200102:11
Operator : CMC
Inst ID: hil1ary.i
Smp Info : 5mg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hillary\HO10404.b\HOlO4O4.m
Meth Date : 09-Apr-200113:02 carlson Quant Type: ESTD
Cal Date : 04-APR-200120:41
Cal File: HILL0026.D
Als bottle: 55
Dil Factor: 1.00000
Integrator: Falcon Target Version: 4.10
Compound Sublist: all sub
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS
--_-
427 499
RT BXP RT DLT RT RBSPONSB ==== ======== ==== = ii== === === = I
5.093 5.092 0.001
1528194
Compound Not Detected.
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL) =======
(ng/mL) =======
254.000
254
3M Environmental Laboratory
Page 469 of 703
Data File: D:\Chen\Hillary\HO10404.b\HILL0049.D
BACK TO MAIN
Page 2
1 THPFOS
3.3: 3.0: 2,7{ 2.41 CI 2.1:
6Ui 1.8;
$ 1.5:
V
1.2;
pm
9
Lo
2 PFOS (Undetected)
I
Ion
Page 470 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILLOO5O.D Report Date: 09-Apr-200113:06
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Ddta file : D:\Chem\Hillary\HO10404.b\HILLO05O.D
Lab Smp Id: 1311-4162MS-S1
Inj Date : 05-APR-200102:26
Operator : CMC
Inst ID: hil1ary.i
Smp Info : 5mg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method
D:\Chem\Hillary\HO10404.b\HO10404.m
Meth Date : 09-Apr-200113:02 carlson Quant Type: ESTD
Cal Date : 04-APR-2001 20:41
Cal File: HILL0026.D
Als bottle: 56
Dil Factor: 1.00000
Intemator: Falcon
Compound Sublist: all.sub
Targgt Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
-__-_-
42 7
499
CONCENTRATIONS
ON-COLUMN
RT EXP RT DLT RT RESPONSE
(ny/mL)
==== ======== ===---_-----__------__------ =======
5.097 5.092 0.005
1514404
254.000
FINAL
(ng/mL)
-_-_---_____
254
5.315 5.309 0.006
3115242
165.194
165
3M Environmental Laboratory
Page 471 of 703
BACK TO MAIN
Data File: D:\Chem\Hillary\HO10404.b\HILLO05O.D
Page 2
D:\Chem\Hillary\HO10404.b\HILLO05O.D
6.91
6.6-
6.3;
`i 6.01
5.7:
5.41
5.11
4.81
4.51
4-21
~ 3.9:
D
, 3.6:
; 3.3; - 3.01
2.71 .
2.41
24
1.81
1.51
1.21
0,9{
0.61
0,3{
i
.
b.
l
.
1. 1 1
I
.
. J
.
. 5
.
.
.
. 2
.
.
.
.
4
.
.
.
.
6
.
. \.I . t
.
.
.
.
. .j
.
.
.
6
.
.
.
. . 1
.
.
. . io
.
.
. .
il
.
.
. . 12
.
.
.
Hin
1 THPFOS
3.3; 3.0{ 2.71
2.4:
A 2.1:
6Lo 1.8; 2 1,5:
W
>- 1.21 0.9;
F ?ar Ln
Page 472 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILLO05l.D Report Date: 09-Apr-200113:06
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
DAta file : D:\Chem\Hillary\H010404.b\HILL0051.D
Lab Smp Id: 1311-4163-S1
Inj Date : 05-APR-200102:40
Operator : CMC
Inst ID: hil1ary.i
Smp Info : 5mg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method
: D:\Chem\Hi11ary\H010404.b\H010404.m
Meth Date : 09-Apr-2001 13:02 carlson Quant Type: ESTD
Cal Date : 04-APR-2001 20:41 Als bottle: 57
Cal File: HILL0026.D
Dil Factor: 1.00000 Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
3M Environmental Laboratory
Page 473 of 703
Data File: D:\Chem\Hillary\HO10404+b\HILLOO51.D
3.4{ 3.21
"( 3.01 2.81
2.61 2.4{ 2.21 2.01 ' 1,8{
I
1.61 1.41 1.21 1.01 0.8: 0.61
0.4-
D:\Chem
n
1 THPFOS
4.4 4.8 5.2 5.6 6.0 Hin
2 PFOS
0.41
II
BACK TO MAIN
Page 2
Page 474 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILLOO52.D Report Date: 09-Apr-2001 13:06
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Dkta file : D:\Chem\Hillary\H010404.b\HILL0052.D
Lab Smp Id: 1311-4164-S1
In] Date : 05-APR-2001 02:55
Operator : CMC
Inst ID: hi1lary.i
Smp Info : 5mg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method : D:\Chem\Hillary\HO10404.b\HOlO4O4.m
Meth Date : 09-Apr-200113:02 carlson Quant Type: ESTD
Cal Date . : 04-APR-200120:41
Cal File: HILL0026.D
Als bottle: 58
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
3M Environmental Laboratory
Page 475 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0052,D
BACK TO MAIN
Page 2
1 THPFOS
2 PFOS
2.2: 2.01 1.8; 1.6;
; 1.4; 6 1.2;
;v1 1.0;
~ 0.8;
8 I on
M,
Lo
- 0.4;
0.2:- I . . . , . .-J. . . . . . 1. . . . . . .
Page 476 of 703
BACK TO MAIN
Appendix H: Raw Data Summaries
This appendix includes the raw data summary information from all the analyses conducted in the course.of this study.
3M Environmental Laboratoty
Page 483 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILLOO53.D Report Date: 09-Apr-2001 13:06
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
DAta file : D:\Chem\Hillary\H010404.b\HILL0053.D
Lab Smp Id: 1311-4165-S1
I n j Date : 05-APR-200103:09
Operator : CMC
Inst ID: hi1lary.i
Smp Info : 5mg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Met hod
: D:\Chem\Hi11ary\H010404.b\H010404.m
Meth Date .: 09-Apr-2001 13:02 carlson Quant Type: ESTD
Cal Date : 04-APR-200120:41
Cal File: HILL0026.D
Als bottle: 59
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: al1,sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG MASS
----
42 7
499
\
3M Environmental Laboratory
Page 477 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0053.D
I
D:\Chem\Hillary\HO10404.b\HILL0053.D
I
BACK TO MAIN
Page 2
1 THPFOS
3,3: 3.0; 2.71 2.4: 2.11
6Lo 1.81
TxI l + 5 {
W
> 1.21 0.91 0,6{ 0.3{
p ? Lo
I
I
2 PFOS
Page 478 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0054.D Report Date: 09-Apr-2001 13:06
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb
Dita file : D:\Chem\Hillary\H010404 .b\HILL0054.D
Lab Smp Id: 1311-4165MS-S1
Inj Date : 05-APR-2001 03:23
Operator : CMC
Inst ID: hil1ary.i
Smp Info : 5mg/L PFOS Study Number E00-1311
Misc Info :
Comment :
Method . : D:\Chem\Hi11ary\H010404.b\H010404.m
Meth Date : 09-Apr-2001 13:02 carlson Quant Type: ESTD
Cal Date : 04-APR-2001 20:41
Cal File: HILL0026.D
Als bottle: 60
Dil Factor: 1.00000
Integrator: Falcon
Compound Sublist: all.sub
Target Version: 4.10
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
QUANT SIG
MASS
===F
427 499
RT BXP RT DLT RT ==== ======== =====E== 5.098 5.092 0.006 5.308 5.309 -0.001
RBSPONSE ========
1500713 3133475
CONCENTRATIONS
ON-COLUMN FINAL
(ng/mL) =======
(ny/mL) =======
254.000
254
166.211
166
3M Environmental Laboratory
Page 479 of 703
BACK TO MAIN
Page 2
D:\Chem\Hillary\HO10404.b\HILL0054.D 7.26.91
6.6; 6.3:
d
t 6.01 5.71 5.41
5.1;
4.81
4.5:
4.21
6n 3+9{
Lo
3.61
r,xl 3,31
>- 3.0;
2.71
2.4:
2.1; 1.8:
1.5;
1.2; 0.9:
0.61
0.3;
. . . I I. . . . . . . . . . . . . . . . . . . . . 1..1 .I I . . . . .-..
i
i
i
i 6
i,
i
Hin
....................
6
i
io
il
i2
1 THPFOS
3.3:
I-rn
4
3.01
Lo
2.7:
2.41
cn 2.1: 1.81 4 x 1.5{
V 1.2;
>-
0.91
0.6;
0.31
. . . . . . . . . I.I . . . . . I
2 PFOS
7.0: 6.0; 5.01 4.0t 3,O:
F
? 0
Lo
Page 480 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0059.D Report Date: 09-Apr-200113:06
BACK TO MAIN Page 1
3M Environmental Laboratory
E00-1311 PFOS Adsorb/Desorb Data file : D:\Chem\Hillary\H010404.b\HILL0059.D
Lab Smp Id: 1311-4166-S1
Inj Date : 05-APR-2001 04:35
Operator : CMC
Inst ID: hil1ary.i
Smp Info : 5mg/L PFOS Study Number E00-1311
Misc Info :
Comment . :
Method
: D:\Chem\Hi11ary\H010404.b\H010404.m
Meth Date : 09-Apr-200113:02 carlson Quant Type: ESTD
Cal Date : 04-APR-200120:41 Als bottle: 61
Cal File: HILL0026 D
Dil Factor: 1.00000 Integrator: Falcon Target Version: 4.10
Compound Sublist: all.sub
Processing Host: WW19376
Concentration Formula: Amt * DF * CpndVariable
Cpnd Variable
Local Compound Variable
Compounds
............................
1 THPPOS 2 PFOS
QUANT SIG
MASS
-__-
427
499
RT
==E=
EXP RT ========
DLT RT
==E=====
RBSPONSB ========
5.098 5.308
5.092 5.309
0.006 -0.001
1687410 183857
CONCBNTRATIONS
ON-COLUMN (ng/mL) =======
FINAL (ng/mL) =======
254.000 6.98024
254 6.98
3M Environmental Laboratory
Page 481 of 703
Data File: D:\Chem\Hillary\HO10404.b\HILL0059.D
3.8: 3.61 3.41
i 3.21
3,OL 2.81 2.61 2.41 2,21
3 2.0;
j 1,s;
1.6; 1.41 1,21 1,or 0.81 0.61
1 THPFOS
3.6;
3.3;
3.01
2.,72:
5 2,4!
Gn L;: 2,1:
2s"t
1.81 1.5;
>. 1.2;
0,9{
I 00.66:1 0.3:
IS bQ, Lo
* IJ3 i1 4
4-4 4.8 5.2 5.6 6.0
2 PFOS
4.0; 3.6:' 3.2; 2.8; 2,4;
4 2.0;
.? 1.6:
1.2;
0.81
x Ion Q, -0 I\
BACK TO MAIN
Page 2
Page 482 of 703
BACK TO MAIN
~
~~~~
Appendix H: Raw Data Summaries
This appendix includes the raw data summary information from all the analyses conducted in the course of this study.
3M Environmental Laboratory
Page 483 of 703
BACK TO MAIN
Guantrfy Co-und summary Report PFOS Adsorb/D..rorb Study, LCAk9 Instrumsat: Tucker ( I M W
Sample list: Last m d z f i d : blethod: Last aodifid: Job Cod.:
c:~sLYNx\II~atur.m\s.npleDB\to1o123
Wed Jan 24 07:48:32 2001
C:\aMssLm\~atur.PROU&thDB\PFOS Wed an 24 06:43:49 2001
- RIPFOS
Printed:
Wed Jan 24 07:54:16 2001
M Nara
1 to10122 098
/2
t010122-099
3 t010122~100
f 4 to10122 101
5 t010122~102
6 t010122-103
7 t010122-104
I 8 t010122 105
9 t0101221106
\ 10 t010122-107
11 to10122 108
12 tOiOl22IlO9
13 tO10122-1x0
14 t010122-111
15 t010122-112
16 t010122-113
17 t010122-114
- 18 t010122 115 19 t010123IOOl 20 t010123-002
21 t010123-003
22 t010123-004
23 t010123-005
24 t010123-006
25 t010123-007
26 t010123-008
27 t010123-009
28 to10123 010
34 t010123-016 35 t010123I017 36 t010123-018 37 t010123-019 38 t010123-020 39 t010123-021 40 to10123 022 41 t010123I023 42 t010123-024 43 t010123-025 44 t010123 026 45 t010123I027 46 t010123-028 47 t010123-029 48 to10123 030 49 t010123I031 50 to10123 032
56 t0101231038 57 t010123-039 58 t010123-040 59 t010123-041 60 t010123-042 61 t010123-043 62 t010123-044 63 t010123-045 64 t010123-046 6 5 t010123-047 66 t010123-048 67 t010123-049 68 t010123-050 69 t010123-051 70 t010123-052 71 t010123-053 72 t010123-054 73 t010123-055 74 t010123-056 75 t010123 057
81 t010123I063 E2 t010123-064
Samplelist T u t
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
0 oob FC Nix 00002-104-01
2.5`ppb FC Mix 00002-104-02
5 ppb FC Mix 00002-104-03
10 ppb FC Mix 00002-104-04
25 bib FC Mix 00002-104-05
40 ppb FC Mix 00002-104-06
50 ppb FC Mix 00002-104-07
75 ppb FC Mix 00002-104-08
100 ppb FC Mix 00002-104-09
250 ppb FC Mix 00002-104-10
500 ppb FC Mix 00002-104-11
750 ppb FC Mix 00002-104-12
1000 ppb FC Mix 00002-104-13
MeOH Blank, TN-A-4740. Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank. TN-A-4740. Alia. 12/04/00
lox 800-1311-3007-52, O m g / i PFO5,no soil..
lox 600-1311-3008-52, Omg/L PFOS,no soil..
10% E00-1311-3009-S2, Omg/L PFOS,no soil..
10% E00-1311-3009m-S2, Omg/L PFO5,no SO..
lox E00-1311-3010-S2, 5mg/L PFOS,no soil..
250 ppb FC Hix 00002-104-10
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
lox EOO-1311-3011-52, 5 m g / L PFO5,no soil..
lox E00-1311-3012-S2, Omg/L PFO5,no soil..
lox E00-1311-30121~-52, Omg/L PFOS,no so..
lox E00-1311-3022-52. O m g l L PFOS.1:l cla..
lox 800-1311-3023-52, Omg/L PFO5,l:l cla..
250 ppb FC f i x 00002-104-10
MeOH Blank, TN-A-4140. Aliq. 12/04/00
MeOH Blank, TN-A-4740. Aliq. 12/04/00
lox E00-1311-3024-s2, Omg/L PFOS.1:l cla..
lox 600-1311-3024m-S2, Omg/L PFOS, 1:l c..
lox 600-1311-3025-52, Omg/L PFOS,1:5 cla..
lox E00-1311-3026-S2, OrnglL PFOS,1:5 cla..
lox E00-1311-3027-52, OmglL PFOS,1:5 cla..
250 ppb FC Mix 00002-104-10
MeOH Blank, TN-A-4740. Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
lox E00-1311-3027m-52, Omg/L PFOs,l:5 c . .
lox E00-1311-3028-s2, Omg/L PFOS,1:25 cl..
lox E00-1311-3029-52, Omg/L PFOS,1:25 cl..
lox lox
.. E00-1311-3030-52, OmglL PFOS,1:25 cl..
E00-1311-3030m-S2, Omg/L PFOS,1:25
250 ppb FC Mix 00002-104-10
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
lox E00-1311-3094-S2, 5 m g / L PFOS.1:l cla..
lox E00-1311-3095-S2, S m g / L PFOS.1:l cla..
1 O x E00-1311-3096-SZ, 5mg/l. PFOS.1:l cla..
lox E00-1311-3096~-S2, 5mg/L PFO5,I:I c.. 10x 600-1311-3097-S2, 5mglL PFOS,1:s c l a . .
250 ppb FC K i x 00002-104-10
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740. Aliq. 12/04/00
lox E00-1311-3098-S2, 5 m g / L PFOS,1:5 cla..
lox 600-1311-3098m-52. 5mg/L PFOS,1:5 c..
lox E00-1311-3100-S2, 5 m g l L PFOS,1:25 cl..
lox E00-1311-3101-s2, 5 m g / L PFOS,1:25 cl..
lox E00-1311-3102-52, 5 m g / L PFOS,1:25 cl..
250 ppb FC Mix 00002-104-10
MeOH Blank, TN-A-4740. Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00 lox E00-1311-31021~-SZ, Smg/L PFOS,1:25
..
lox E00-1311-3166-S2, 5 m g / L PFOS.1:l Sed..
lox E00-1311-31668-S2, 5 m g / L PFOS,l:l Sa..
lox E00-1311-3168-S2, 5 m g l L PFOS.1:l Sed..
lox E00-1311-3168ms-S2, Smg/L PFOS.1:l S..
2 5 0 ppb FC Mix 00002-104-10
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740. Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
0 ppb FC Mix 00002-104-01
2 . 5 ppb FC Mix 00002-104-02
5 ppb FC Mix 00002-104-03
10 ppb FC Mix OOOOZL104-04
25 ppb FC Mix 00002-104-05
40 ppb FC Mix 00002-104-06
RT 6.290 6.443 6.241 6.546 6.278 6.309 6.452 6.486 6.460 6.326 6.313 6.376 6.314 6.229 6.472 6.469 6.529 6.436 6.578 6.406 6.310 6.431 6.468 6.458 6.386 6.254 6.568 6.157 6.097 6.117 6.121 6.119 6.098 6.108 6.119 6.362 6.502 6.106 6.119 6.106 6.109 6.131 6.124 6.420 6.455 6.392 6.230
6.529 6.155 6.403 6.514 6.256 6.531 6.423 6.350 6.375 6.218 6.432 6.299 6.253 6.251 6.322 6.253 6.410 6.302 6.411 6.447 6.190 6.182 6.203 6.120 6.074 6.349 6.384 6.382 6.156 6.159 6.457 6.431 6.408 6.396 6.355
149480 155378 144563 164749 166221 181623 212615 292832 353867 139196 583060 690084 1303673 2036643 3108558 3415199 185076 151445 167484 153481 152060 157526 1093934 161601 1278160 144604 162354 147959 123999 1142929 167082 120568 1461557 120451 130250 158587 1212317 127365 139236 125310 1458323
95010 96165 967775 166690 166376 148831 1212415 1329455 154776 165352 919833 1105460
1302358
2227419 1351396 1295576
163488 155335 1338917 2190122 3728466 3779124 3814147 1341100 166983 166594 4547300 873810 1003813 582014 1618471 1337470 171733 174436 154736 107657 179721 196874 231081 314548 396613
-me 0.000 0.000 0.000
346.252 399.780 436.052 499.891 689.623 84 1.868 1162.333 1595.061 1977.399 451 9.670 8986.881 12406.422 17167.793
0.000 0.000 0.000 350.116 366.988 378.684 3271.735 382.904 4385.279 0.000 0.000 341.086 273.510 3615.037 311.722 255.127 4623.544 0.000 0.000 347.233 3198.718 260.600 292.171 251.422 4339.379 0.000 0.000 2502.035 376.511 382.084 335.207 2936.432 4518.724 0.000 0..000. 1916.324 2217.788
3017.893
6771.423
3087.088 4505.026
0.000
n...o.o..n
3282.293 7297.900 8481,570 9225.336 8899.134 4483.275
0.000 0.000 15741.143 1707.559 1998.291 1165.110 4449.399 3739.611 0.000 0.000 0.000 218.235 380.367 456.559 546.187 754.134 988.034
ppb 0.00 0.00 0.00 3.79 6.92 9.03 12.76 23.83 32.71 51.10 76.63 98.92 246.93 506.27 704.16 978.81 0.00 0.00 0.00 4.02 5.00 5.69 174.31 5.93 239.11 0.00 0.00 3.49 0.00 194.29 3.53 0.00 252.97 0.00 0.00 3.85 170.06 0.00 0.64 0.00 236.44 0.00 0.00 129.49 5.56 5.88 3.15 154.79 246.87 0.00
0.00 95.36 112.93 159.53 377.94 163.56 246.08
0.00 0.00 174.93 408.33 476.98 520.09 501.18 244.81 0.00 0.00 896.63 83.19 100.14 51.56 242.84 201.55 0.00 0.00 0.00 0..0.0 5.78 10.23 15.46 27.63 41.24
Flags bb bb bb bb bbX bbX bbX bb MM bb bb bb bb bb MM bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb' bb bb bb bb HH bb bb bb bb bb bb bb bb bb bb MM bb bb
bb bb bb bb bb bb bb bb
bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb
~
bbX bbX bbX bb bb
UDw
177 81 28 -5
-18 3 2
-1 -1
1 -6 -2
-4
1
-5
-1
-2
-2
-19
131 105
55 11
3
od Comment
3M Environmental Laboratory
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Quantify conpotmd summary &port PFOS Msorb/Dmsorb Study, L C M Instrutcant: Tuck- (IA052)
. s.rple l i s t : c : \ M A S S L Y N X \ ~ ~ a t u r . P a O \ S ~ l ~ ~ \ t 0 1 0 1 2 3
Iart mdified: Wed Jan 24 07:48:32 2001
- mthod:
c : ~ s L Y N X \ o s ~ ~ t ~ . ~ ~ T~W\POPS P o s
Last rodifid: Wed Jan 2 1 06:53:49 2001
Job Code:
Printd:
Wed Jan 24 07:54:16 2001
c..p&...l 1: PFoS(499)
I N83 t010123-065 84 t010123-066 85 t010123-067 86 t010123-068 87 t010123-069 88 tO10123-070 89 t010123-071 90 t010123-072 91 t010123-073
S-lelirt T e x t 50 ppb FC Mix 00002-104-07 75 ppb FC Hix 00002-104-08 100 ppb FC Mix 00002-104-09 250 ppb FC Mix 00002-104-10 500 ppb FC Hix 00002-104-11 750 ppb FC Mia 00002-104-12 1000 ppb FC Mix 00002-104-13 MeOH Blank, TN-A-4740. Aliq.
MeOH Blank, TN-A-4740. Aliq,
12/04/00 12/04/00
RT 6.303 6.374 6.300 6.340 6.150 6.163 6.156 6.164 6.141
rue. 463216 623373 740153 1392032 2222555 3363541 4161343 131404 141494
RmspoTue 1186.763 1561.132 1995.565
4451.828 9308.893 13449.481 18086.088
0.000 0.000
Dpb P1.91 52.83 bb 74.65 bb 99.98 bb
242.98 bb 524.93 bb 764.42 bb 1031.66 bb
0.00 bb 0.00 bb
whv 6
-0 -0
-3 5 2 3
od ComEnnt
Page 2
puantitated and Printad by QdC on 24 Jan 01 Study .I E00-1311
3M Environmental Laboratory
(jmc
, (94'
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Gumtify C m p a u n d Surmrary w o r t PFOS Adrorb/Desorb Study, LC/biS Inst-t:
Tuoker (IJLo52)
Sample List: Last H f i e d : lkthod: Last mdified:
Job Code:
C:MssLmx~ulatur.P\S~le~~\tOlOi23
- Wad Jan 24 07:48:32 2001
C : \ M R s S L ~ \ D s ~ ~ t u r . p R o ~ u l o B \ P F OTSHPFOS Wed Jan 24 06:53:49 2001
Printad:
Wed Jan 24 07:54:16 2001
C&
2: 1 . S . (TH-PMS) (427)
I N-
Samplelist Text
1 t010122-098 MeOH Blank, TN-A-4740, Aliq. 12/04/00
2 t010122-099 MeOH Blank, TN-A-4740, Aliq. 12/04/00
3 to10122 100 MeOH Blank, TN-A-4740. Aliq. 12/04/00
4 t010122~101 0 ppb FC Mix 00002-104-01
5 t010122~102 2.5 ppb FC Mix 00002-104-02
6 t~ 01~ 01~ 22 1. 03 _5 ppb FC Mix 00002-104-03 7 t010122~104 10 ppb FC Mix 00002-104-04
8 t010122-105
25 ppb FC Mix 00002-104-05
9 t010122-106 40 ppb FC Mix 00002-104-06
10 t010122-107 50 ppb FC Mix 00002-104-07
11 to10122 108 75 ppb PC Mix 00002-104-08
12 t0101221109
100 ppb FC Mix 00002-104-09
13 t010122-110 250 ppb FC Mix 00002-104-10
14 t010122 111 ~~~
500 ppb FC Mix 00002-104-11
15 t010122I112 750 ppb FC Mix 00002-104-12
16 t010122-113 1000 ppb FC Mix 00002-104-13
17 t010122-114 MeOH Blank, TN-A-4740, Aliq. 12/04/00
18 to10122 115 MeOH Blank, TN-A-4740. Aliq. 12/04/00
19 t010123I001 MeOH Blank, TN-A-4740, Aliq. 12/04/00
20 tOlOl23_002 lox E00-1311-3007-S2, O m g l L PFOS,no soil..
21 t010123-003 lox H00-1311-3008-S2, Omg/L PFOS,no aoil..
22 tO10123-004
10% E00-1311-3009-S2, Omg/L PFoS,no soil..
23 t010123-005 10% E00-1311-3009m-S2, Omg/L PFOS,no so..
24 t010123-006 10% 600-1311-3010-S2, 5mg/L PFOS,no soil..
25 t010123-007 250 ppb FC Mix 00002-104-10
26 t010123_OOB MeOH Blank, TN-A-4740, Aliq. 12/04/00
27 t010123_009 MeOH Blank, TN-A-4740. Aliq. 12/04/00
28 t010123 010 10% E00-1311-3011-S2, 5 m g / L PFOS,no soil..
29 t010123~Oll 10% HO0-1311-3012-S2, Omg/L PFOS,no soil..
30 t010123-012 10% EOO-1311-3012m-S2, Omg/L PFOS,no so..
31 tO10123-013
lox E00-1311-3022-S2, OmglL PFOS.1:l cla..
32 t010123_014
10% i300-1311-3023-S2, Omg/L PFOS.1:l cla..
33 to10123 015 250 ppb FC Mix 00002-104-10
34 t0101231016 MeOH Blank, TN-A-4740, Aliq. 12/04/00
35 t010123-017 MeOH Blank, TN-A-4740, Aliq. 12/04/00
36 t010123~018 101 E00-1311-3024-S2, Omg/L PFOS.1:l cla..
37 t010123-019
lox E00-1311-3024ms-S2, Omg/L PFOS,l:l c..
38 t010123-020
10% E00-1311-3025-52, Omg/L PFO5,l:S cla..
39 t010123-021 10% E00-1311-3026-S2, OmglL PFoS.1:5 cla..
40 t010123-022 lox E00-1311-3027-S2, Omg/L PFOS,1:5 cla..
41 tOlOl23-023 250 ppb FC Mix 00002-104-10
42 tO10123-024 MeOH Blank, TN-A-4740, Aliq. 12/04/00
43 t010123-025 MeOH Blank. TN-A-4740. Aliq. 12/04/00
44 t010123-026 10% 600-1311-3027ms-S2, Omg/L PEOS.1:) c . ,
45 t010123-027
lox H00-1311-3020-S2. Oma/L PFo5.1:25 cl..
46 `~ ~0~ 10~~~ 1230.28 lox E00-1311-3029-S2; Omg/L PF05,1:25 cl..
47 t010123I029 48 t010123-030 49 t010123-031
10% 10%
.. E00-1311-3030-S2, OmglL PFOS,1:25 cl..
E00-1311-3030ms-S2, Omg/L PFOS,1:25
250 ppb FC Mix 00002-104-10
50 to10123 032 MeOH Blank, TN-A-4740. Aliq. 12/04/00
51 t0101231033 MeOH Blank, TN-A-4740. Aliq. 12/04/00
52 t010123-034 10% E00-1311-3094-S2, 5 m g / L PFOS.1:l cla..
53 t010123-035 5 4 t010123_036 55 t010123-037
10s H00-1311-3095-SZ, Smg/L PFOS,l:l cla.. lox 800-1311-3096-S2, 5 m g l L PFOS,I:I cla..
lox E00-1311-3096ma-S2, 5mgll PFOS.1:l c..
56 t010123-038 5 7 t010123-039
lox EOO-1311-3097-52, 5rng/L PF05.1:5 cla.. 250 ppb FC MIX 00002-104-10
58 t010123-040 MeOH Blank. TN-A-4740. Alia. 12/04/00
59 t010123-041 MeOH Blank; TN-A-4740; Alii. 1;/04/00
60 t010123_042 10% E00-1311-3098-S2, 5 m g / L PFOS,1:5 cla..
61 t010123-043 lox E00-1311-3098ms-S2, 5mg/L PFOS,1:5 c..
62 t010123-04t lox E00-1311-3100-S2, 5 m g l L PFOS,1:25 cl..
63 t010123-045 10% E00-1311-3101-S2, 5 m g l L PFOS,1:25 cl..
64 t010123-046 10% E00-1311-3102-S2, 5mg/L PFOS,1:25 cl..
65 t010123-047 250 ppb FC Mix 00002-104-10
66 t010123-048 MeOH Blank, TN-A-4740. Aliq. 12/04/00
67 t010123-049 68 t010123-050 69 t010123-051
.. MeOH Blank, TN-A-4740, Aliq. 12/04/00
lox E00-1311-3102as-S2, 5 m g / L PFOS.1:ZS 10% E00-1311-3166-S2, 5mg/L PFOS,l:l Sed..
70 t010123-052 lox 600-1311-31668-52, 5 m g l L PFoS.1:l Se..
71 t010123-053
lox E00-1311-3168-S2, 5 m g / L PFOS.1:l Sed..
72 t010123-054
10% E00-1311-3168ms-S2, 5 m g / L PFOS,l:l S..
73 t010123_055 250 ppb FC Mix 00002-104-10
74 t010123-056 MeOH Blank, TN-A-4740, Aliq. 12/04/00
75 t010123-057 MeOH Blank, TN-A-4740, Aliq. 12/04/00
76 to10123 058 MeOH Blank, TN-A-4740. ALiq. 12/04/00
0 ppb FC Mix 00002-104-01
2 . 5 ppb FC Mix 00002-104-02
5 ppb FC Mix 00002-104-03
10 ppb FC Mix 00002-104-04
25 ppb FC Mix 00002-104-05
82 t010123I064 40 ppb FC Mix 00002-104-06
RT 6.242 6.383 6.192 6.389 6.217 6.249 6.367 6.390
6.232 6.266 6.253 6.316 6.266 6.181 6.231 6.385 6.240 6.363 6.988 6.334 6.250 6.346 6.383 6.374 6.326 6.193
6.097 6.037 6.069 6.061 6.047 6.049 6.048 6.059 6.146 6.393 6.046 6.046 6.046 6.037 6.046 6.040 6.191 6.371 6.308 6.170 6.336 6.119 6.175 6.418 6.112 6.290 6.351 6.289 6.303 6.169
7.166 6.205 6.202 6.262 6.204 6.338 6.254 6.350 6.387 6.142 6.086 6.095 6.060 6.025 6.156 6.312 6.322 6.095 6.063 6.179 6.346 6.335 6.324 6.294
Area 691 560 661
118951 103945 104129 106331 106157 105084
94464 91385 87246 72111 56656 62640 49733
95 1 553 548 109593 103586 103996 83590 105510 72867 675
0 108447 113341 79040 122235 118145 79028
1325 1759 114179 94750 122184 119139 124601 84017 1533 1451 96699 110681 108861 110999 103222 73553 1245
531 120000 124613 107886
82200
109439 71896
0 4534 101980 75026 109899 102412 107149 74784
661 520 72220 127941 125584 124884 90938 89412 677 595 2000 123326 118124 107803 105770 104192 100354
Rnsponse 690.849 560.268 660.914
118951.328 103945.063 104129.148 106330.531 106156.602 105083.742
94464.391 91385.258 87246.352 72111.070 56656.000 62640.102 49132.637
951.098 552.916 547.605 109593.180 103586.234 103995.594 83589.734 105510.461 72866.516 675.222
1.08..447.039 113340.656
79039.930 122235.211 118145.313 79027.961
1325.487 1758.722 114179.469 94750.258 122184.172 119139.492 124601.102 84016.813 1532.789 1451.493 96698.766 110680.852 108861.070 110999.161 103221.789 73552.547 1245.197
530.664 119999.648 124612.836 107886.336
82199.563 109439.414
71896.141
4533.709 101980.344 75025.750 109899.039 102411.563 107149.367 74783.500
661.374 520.055 72._ 719...969 12794 1.430 125583.922 124883.797 90937.609 89412.344 676.734 595.368 2000.157 123326.328 118123.727 107803.281 105770.016 104191.516 100354.180
ppb 1.95 1.58 1.87 336.00 293.61 294.13 300.35 299.85 296.82 266.83 258.13 246.44 203.69 160.03 176.94 140.48 2.69 1.56 1.55 309.56 292.59 293.75 236.11 298.03 205.82 1.91
nag. bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb
M bb bb bb bb bb bb bb M
306.32 bb 320.15 bb 223.26 bb 345.27 bb 333.72 bb 223.23 bb
3.74 bb 4.97 bb 322.52 bb 267.64 bb 345.13 bb 336.53 bb 351.95 bb 237.32 bb 4.33 bb 4.10 bb
273.14 bb 312.63 bb 307.49 bb 313.53 bb 291.57 bb
207.76 bb 3.52 bb 1.50 bb
338.96 bb 351.99 bb 304.71 bb 232.18 bb 309.13 bb 203.08 bb
12.81 bb 288.06 bb 211.92 bb 310.43 bb 289.28 bb 302.66 bb 211.24 bb
1.87 bb 1.47 bb 204.00 bb 361.39 bb 354.73 bb 352.75 bb 256.87 bb 252.56 bb 1.91 bb 1.68 bb 5.65 bb 348.35 bb 333.66 bb 304.51 bb 298.76 bb 294.30 bb 283.47 bb
brmv
34 17 18 20 20 19
7 3 -1 -19 -36 -29 -44
24 17 18 -6 19 -18
23 28 -11 38 33 -11
29 7
38 35 41 -5
9 25 23 25 17 -17
36 41 22 -7 24 -19
15 -15
24 16 21 -16
-18 45 42 41 3 1
39 33 22 20 18 13
Dags 3
Guantitated and Printed by a4C om 24 Jan 01 Study # E00-1311
3M Environmental Laboratory
i LJ-.i/c i
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Gvanbfy C e o u n d S - r y
mort
PFOS Add.orb/Wsorb Study, L C M Instrument: TUOkeL (-52)
S w l e Irst: C : \ l a R s s L n a t \ ~ a o a t u r . P R o \ s ~ l ~ \ t O l o l 2 3
- Last mdLf3e.d: Wed Jan 24 07:48:32 2001
tkthod:
C:\HnssLYNx\Dccatur.PRO~thDB\PFOS
THPWS
h s t aoclfmd: W e d Jan 2 4 06:53:49 2001
Job Code:
&=tad:
Wed Jan 2 4 07:54:16 2001
Coqdund 2: I.S. (TH-PEOS) (427)
I N83 t010123-065 84 t010123-066 85 t010123-067 86 to10123 068 87 t010123-069 88 t010123I070 89 t010123-071
90 t010123-072 91 t010123-073
S a a D l a l i s t Text 50 ipb FC Mix 00002-104-07 75 ppb FC Mix 00002-104-08 100 ppb FC Mix 00002-104-09 250 ppb FC Mix 00002-104-10 500 iib FC Mix 00002-104-11 750 ibb FC Mix 00002-104-12 1000 ppb FC Mix 00002-104-13
MeOH Blank, TN-A-I740. Aliq. MeOH Blank, TN-A-4740. Aliq.
12/04/00 12/04/00
RT 6.242 6.302 6.251 6.279 6.102 6.091 6.095
6.092 6.069
)ma 97580 99827 92725 78172 59689 62522 57521
1502 1802
Response 97579.789
99827.031 92724.766 78171.930 59689.027 62521.754 57521.328
1502.362 1801.890
ppb 275.63
281.98 261.91 220.81 168.60 176.60 162.18
4.24 5.09
Flags bb
bb bb bb bb bb bb
bb bb
6 D w ad 10
13 5
-1.2~ -2.3~ -29 -35
Cammt
Page 4
Quantitated and Printed by PIC on 24 Jan 01 Study 8 E00-1311
3M Environmental Laboratory
BACK TO MAIN
h w t a f y c w n u r d summary Repart PPOS Msorb/Dssorb Study, L.c/bfS Inrtruaant: T w k a r (LAO52)
Sample Last: Last -&fled:
Method: Last -&fled:
Job C&:
C:\saassL~~x\~eaatur.~~O\S~l~~\tOlOl24
- Wed Jan 24 08:lA:OS 2001
c : \ M A S S L Y N X \ D e e a t u r . P R O ~ ~ \ P P O S THPEOS Wed Jan 24 06:53:49 2001
Prmtui:
Thu Jan 25 07:47:21 2001
CDmpdnrd 1: PFoS(499)
3 t010123-059 4 t010123-060 5 t010123-061 6 t010123-062 7 t010123-063 8 t010123-064
10 t010123-066
11 tO10123-067
12 t010123-068
13 t010123-069
14 to10123 070
15 tOI01231071
16 t010123-072
17 t010123-073
18 t010124-001
19 tOlOl24 002
20 t0101241003
21 t010124 004
~
~
~~~
~
~
22 t010124I005
23 t010124-006
24 t010124 007
25 t010124-008
26 t0101241009
27 t010124~010
28 to10124 011
29 t0101241012
30 t010124-013
31 t010124-014
32 t010124-015
33 t010124-016
34 t010124-017
35 t010124~018
36 t010124-019
37 t010124-020
38 t010124~021
39 t010124-022
40 t010121-023
41 t010124-024
42 t010124-025
43 t010124-026
44 t010124 027
4 5 t010124I028
46 tOl0124-029
47 t010124-030
48 to10124 031
49 t010124I032
50 t010124 033
51 t0101241034
5 2 t010124-03.5 53 t010124-036 54 toioiza-037 55 t010124-038
56 t010124-039
57 t010124-040
58 t010124 041
59 t0101241042
60 t010124-043
61 t010124-044
62 tO10124-015
63 tOl0124-046
64 tO10124-047
65 t010124-048
66 t010124-049
67 t010124-050
S-lelist T e x t
MeOH Blank, TN-A-4140. Aliq. 12/04/00
MeOH Blank, TN-A-4140, Aliq. 12/04/00
0 ppb FC Mix 00002-104-01
2.5 ppb FC Mix 00002-104-02
5 ppb FC Mix 00002-104-03
10 ppb FC Mix 00002-104-04
25 ppb FC Mix 00002-104-05 4 0 ppb FC Mix 00002-104-06
50 ppb FC Mix 00002-104-07
75 ppb FC Mix 00002-104-08
100 ppb FC Mix 00002-104-09
250 ppb F C Mix 00002-104-10
. _ ~ 500 ppb FC Mix 00002-104-11
750 oob F- C- Mix 00002-1~ 04-1~ 2 .
1000 ppb FC Mix 00002-104-13
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740. Aliq. 12/04/00
MeOH Blank. TN-A-4740. Alia. 12/04/00
. lox EOO-1311-3169-S2, O.Smg/L PFOS,1:5 S..
lox ~~~~ E~ O0-1.3.11.-~ 31~ 70-S~ 2. 0 . 5- m- =d L PFOS.1:5 S . ~~
lox E00-1311-3171-S2, O.Smg/L PFOS;l:5 S..
lox lox
.. BOO-1311-3171rmr-SZ. 0.5mg/L PFOS,1:5..
E00-1311-3172-S2, 0.5mg/L PFOS,1:25
2 5 0 ppb FC Mix 00002-104-10
MeOH-Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740. Aliq. 12/04/00
.. lox 800-1311-3173-S2, 0.5mg/L PFOS,1:25
.. lox EOO-1311-3174-S2, 0.5mg/L PFOS,1:25
lox E00-1311-3174ms-S2, 0.5mg/L PFOS,1:2..
lox E00-1311-3184-S2, Omg/L PFOS,l:l Sed..
lox E00-1311-3185-S2, Omg/L PFOS, 1:l S e d . .
250 ppb FC Mix 00002-104-10
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
lox E00-1311-3186-S2, Omg/L PFOS.1:l Sed..
lox E00-1311-3186ms-S2, Omg/L PFOS,l:l S..
lox E00-1311-3187-S2, Omg/L PFOS,1:5 Sed..
lox E00-1311-3188-S2, OmglL PFOS,1:5 Sed..
lox EOO-1311-3189-52, Omg/L PFOS,1:5 Sed..
250 ppb FC Mix 00002-104-10
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740. Aliq. 12/04/00
lox E00-1311-3189ms-S2..~OmolL PFOS.1:5 S..
lox E00-1311-3190-S2, Omg/L PFOS,1:25 Se..
lox E00-1311-3191-S2, OmglL PFOS,1:25 Se..
lox lox
.. E00-1311-3192-S2, Omg/L PFOS,1:25 Se..
E00-1311-3192m-S2, Omg/L PFOS,1:25
250 ppb F C Mix 00002-104-16
MeOH Blank. TN-A-4740. Alia. 12/04/00
MeOH Blank; TN-A-4740. Alii. 12/04/00
MeOH Blank, TN-A-4740. Aliq. 12/04/00
0 ppb FC Nix 00002-104-01 2 . 5 ppb FC MIX 00002-101-02
5 ppb FC Mix 00002-104-03
10 ppb FC Mix 00002-104-04
25 ppb FC nix 00002-104-05
4 0 ppb FC Mix 00002-104-06
50 ppb FC Mix 00002-104-07
7 5 ppb FC Mix 00002-104-08
100 ppb F C Mix 00002-104-09
250 ppb FC Mix 00002-104-10
500 ppb FC Mix 00002-104-11
750 ppb FC Mix 00002-104-12
1000 ppb FC Mix 00002-104-13
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740. Aliq. 12/04/00
RT 6.382 6.156 6.159 6.457 6.431
6.408 6.396 6.355 6.303 6.374 6.300 6.340 6.150 6.163 6.156 6.164 6.141 6.622 6.174 6.555 6.124
~~
6.325 6.122 6.542 6.098 6.541 6.265 6.540 6.253 6.533 6.227 6.483 6.278 6.409 6.328 6.317 6.507 6.290 6.580 6,216 6.420 6.218 6.565 6.386 6.361 6.218 6.592 6.193 6.543 6.528 6.204 6.375 6.123
6.102
6.134
6.159 6.541 6.086 6.363 6.111 6.516 6.121 6.325 6.121 6.360 6.118 6.553
Area 174436 154736 107657 179721 196874 231081 314548 396613 463216 623373 740153 1392032 2222555 3363541 4161343 137404 141494 329160 148405 2008353 2978378 2091729 3089729 2749532 1690139 211382 186560 2974252 2~ 78~ 90.63~ 3375943 174753 183066 1492375 185832 192377 189635 1332791 1~9 0.6 0.4.. 202180 176278 1440653 166888 209975 1789138 201659 1.111.4.7202407 1351244 1589633 188064 173176 189146 107963
195139
170706
230314 325950 393053 426687 615435 678046 1475797 2194012 3224378 3953019 137693 185417
bspnSl,
0.000 0.000 218.235 380.367 456.559 546.187 754.734 988.034 1186.763 1561.132 1995.565 4451.828 9308.893 13449.481 18086.088 0.000 0.000 0.000 0.000 3510.085 6104.627 4018.001 8684.097 5030.908 4406.001 0.000 0.000 5340.462 5395.878 7580.041 331.804 351.811 4495.674 0.000 0.000 378.275 3109.357 369.223 369.266 344.860 4259.849 0.000 0.000 3571.515 408.113 343.872 372.116 3603.727 3743.216 0.000 0.000 0.000 223.595
442.196
359.205 504.877 684.561 91~ 3..309 1007.082 1636.708 1616.410 4437.320 9228.069 13956.302 16771.422
0.000 0.000
Ppb Flags 0.00 bb 0.00 bb 7.77 bb 16.28 bbX 20.28 bbX 24.99 bbX 35.96 bbX 4 8 . 2 7 bb 58.76 hb 78.59 bb 101.69 bb
234.06 bb 505.39 bb
748.03 bb 1034.13 bb
0.00 bb 0.00 bb
0.00 bb 0.00 bb 186.19 bb
324.90 bb 210.45 bb 469.73 bb 265.72 bb 231.56 bb
0.00 bb 0.00 bb 282.72 bb 285.76 hb 407.27 bb 13.73 bb
14.78 hb 236.45 bb
0.00 bb 0.00 bb 16.17 bb
161.33 bb 15.69 bb 15.70 bb
14.42 bb 223.60 bb
0.00 bb 0.00 bb 1~86~.~ 26.~b~~ b
17.74 bb 14.36 bb 15.85 bb 188.01 bb 195.55 hU
0.00 bb 0.00 bb 0 . 0 0 bb 8 . 0 5 bb 19.53 bbX
15.17 bbX 22.82 bbX 32.27 bbX
44.32 bb 49.27 bb 82.61 bb 81.53 bb 233.27 bb 500.77 bb 778.52 bb 951.32 bb
0.00 bb 0.00 bb
SDav od c0mm-k
551 306 150
44 21 18
5 2 -6 1 -0 3
-7
-5
-11
-22
b
681 203 128
29 11 -1 10 -18 -7
0 4 -5
Page 1
puantitated and Printed by cM2 on 25 Jan 01 study I E00-1311
3M Environmental Laboratory
Page 488 of 703
BACK TO MAIN
Quantify Compound Stxmury Report PPOS Msorb/Desorb Study, Ic/MS IMt-t:
T u o k e r (IAo52)
S-le LISt: C : \ a a a s S L Y N x \ D e ~ ~ t u r . P R O \ S ~ l s D B \ t 0 1 0 1 2 4
- Last modified: W e d Jan 24 08:14:06 2001
Wthod:
c:\aaasSLnat\Deoatur.pRo~ulne\PwS
last &fled:
Wed Jan 24 06:53:49 2001
THPPOS
Job Code:
Pr-ted:
Thu Jan 25 07:47:21 2001
C & u m d 2: 1 . 8 . (m-PFOS) (427)
1 t010123-057 2 t010123-058 3 t010123-059 4 t010123-060 5 to10123 061 6 t010123I062 7 t010123-063 8 t010123-064 9 t010123-065 10 t010123-066 11 t010123-067 12 t010123-068 13 t010123-069 14 t010123-070 15 to10123 071
21 t010124~004 22 t010124-005 23 t010124-006 24 t010124-007 25 t010124-008 26 t010124-009 27 tOlOl24-0l,O 28 t010124-011 29 tO10124-012 30 t010124-013 31 t010124-014 32 t010124-015 3 3 t010124-016 34 t010124-017 35 t010124-018 36 t010124-019 37 t010124-020 38 t010124-021 39 t010124-022 40 t010124 023
46 t010124I029 47 to10124 030 48 t0101241031 49 t010124-032 50 t010124-033 51 t010124-034 52 t010124 035 53 t010124-036 54 f010121~037 55 t010124-038 56 to10124 039 57 t010124I040 58 t010124-041 59 t010124 042 60 t0101241043 61 t0o10124-004444 62 t01100112244-~040545 63 t010124-046 64 t010124-047 65 t010124-048 66 t010124-049 67 tOlO124-050
S m p l d i s t Text
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
0 ppb FC Mix 00002-104-01
2 . 5 ppb FC Mix 00002-104-02
5 ppb FC Mix 00002-104-03
10 ppb FC Mix 00002-104-04
25 ppb FC Mix 00002-104-05
40 ppb FC Mix 00002-104-06
50 ppb FC Mix 00002-104-07
75 ppb FC Mix 00002-104-08
100 ppb FC Mix 00002-104-09
250 ppb FC Mix 00002-104-10
500 ppb FC Mix 00002-104-11
750 ppb FC Mix 00002-104-12
1000 ppb FC Mix 00002-104-13
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740. Aliq. 12/04/00
lox E00-1311-3169-S2, 0.5mg/L PFOS,1:5 S..
lox E00-1311-3170-S2, O.Smg/L PFOS,1:5 S..
lox E00-1311-3171-S2, 0.5mg/L PFOS.l:5 S..
lox lox
.. E00-1311-3171ms-S2, O.Smg/L PFOS,1:5..
E00-1311-3172-S2, 0.5mg/L PFOS,1:25
250 ppb FC Mix 00002-104-10
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
.. lox E00-1311-3173-S2, 0.5mg/L PFOS.1:25 .. lox E00-1311-3174-S2, 0.5mg/L PFOS,1:25
lox E00-1311-3174ma-S2. 0.5mg/L PFOS,l:2..
lox E00-1311-3184-S2, Omg/L PFOS,l:l Sed..
lox E00-1311-3185-S2, Omg/L PFOS,l:l Sed..
2 5 0 ppb FC Mix 00002-104-10
MeOH Blank, TN-A-4740. Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
lox E00-1311-3186-S2, Omg/L PFOS,1:1 Sed.. l o x E00-1311-3186ms-S2, OmqlL PFOS.1:l S..
10x E00-1311-3187-S2, Omg/L PFOS,1:5 Sed..
lox 600-1311-3188-52. Omg/L PFOS,l:5 Sed..
lox E00-1311-3189-92, Omg/L PFOS,1:5 Sed..
250 ppb FC Mix 00002-104-10
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
lox E00-1311-3189ms-S2, Omg/L PFOS,1:5 S..
lox E00-1311-319042. Omq/L PFOS,1:25 S e . .
lox E00-1311-319142. Omg/L PFOS,1:25 Se..
lox lox
.. E00-1311-319242. OmglL PFOS,1:25 Se..
E00-1311-3192ms-S2, Omg/L PFOS,1:25
250 ppb PC Mix 00002-104-10
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740. Aliq. 12/04/00
0 ppb FC Mix 00002-104-01 2.5 ppb BC Mix 00002-104-02
5 ppb FC Mix 00002-104-03
10 ppb FC Mix 00002-104-04
2 5 ppb FC M i x 00002-104-05
40 ppb FC Mix 00002-104-06
50 ppb FC Mix 00002-104-07
75 ppb FC nix 00002-104-08
100 ppb FC Mix 00002-104-09
250 ppb FC Nix 00002-104-10
500 ppb FC Mix 00002-104-11
750 ppb FC Nix 00002-104-12
1000 ppb FC M i x 00002-104-13
MeOH Blank, TN-A-4740, Aliq. 12/04/00
MeOH Blank, TN-A-4740. Aliq, 12/04/00
RT 6.322 6.095 6.063 6.179 6.346 6.335 6.324 6.294 6.242 6.302 6.251 6.279 6.102 6.091 6.095 6.092 6.069 6.067 6.102 6.338 6.075 6.144 6.073 6.301 6.038 6.420 6.157 6.396 6.145 6.280 6.131 6.206 6.230 6.192
6.161 6.387 6.145 6.351 6.120 6.347 6.122 6.408 6.192 6.277 6.122 6.315 6.121 6.338 6.239 6.131 6.315 6.039 6.329 6.074 6.051 6.323 6.037 6.170 6.074 6.275 6.048 6.264 6.049 6.167 6.046 6.252
Area 595
2000 123326 118124 107803 105770 104192 100354
97580 99827 92725 78172 59689 62522 57521
1502 1802
84 6 1760 140638 121972 130147 88948 136632 95900
566 1457 139232 129222 111343 131669 130088 82989
704 0
125329 107160 129058 136880 127790
84548 1735 722
125237 123531 129002 135984
93739 106168
913 1535
521 120713 110321 118808
114045 119036 107590 105922
94005 104869
83147 59439 57758 58925
1483 612
Rnapmur 595.368
2000.157 123326.328 118123.727 107803.281 105770.016 104191.516 100354.180
97579.789 99827.031 92724.766 78171.930 59689.027 62521.754 51521.328
1502.362 1801.890
846.302 175 9.64 9 140637.594 121972.141 130147.320
~~
88947.891 136631.984
95899.828 566.227
1456.896 139231.969 129221.938 111343.148 131668.844 130088.313
82989.492 703.963
125328.508 107159.664 129057.625 136879.719 127789.961
84548.352 1735.427 721.528
125236.625 123531.180 129002.477 135984.188
93739.367 106167.570
913.271 1535.103
521.492 120713.117 110323.898 118807.953 114044.594 119036.070 107590.352 105921.656
94005.047 104869.109
83146.836 59438.539 57758.453 58924.914
1482.589 612.205
ppb 1.61 5.41 333.59 319.52 291.60 286.10 281.83 271.45 263.95 270.03 250.82 211.45 161.46 169.12 155.59 1.06 4.87 2.29 4.76 380.42 329.93 352.04 240.60 369.58 259.41 1.53 3.94 376.62 349.54 301.18 356.16 351.08 224.48 1.90
Flag. bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb
* D w od C-t
33 28 17 14 13
9 6 8 0 -15 -35 -32 -38
52 32 41 -4 48
4
51 40 20 42 41 -10
339.01 bb
36
289.86 bb
16
349.10 bb
40
370.25 bb
48
345.67 bb
38
228.70 bb
-9
4.69 bb
1.95 bb
338.76 bb
36
334.15 bb
34
348.95 bb
40
367.83 bb
47
253.56 bb
1
287.18 bb
15
2.47 bb
4.15 bb
1.41 bb
326.52 bb
31
298.42 bb
19
321.37 bb
29
308.49 bb
23
321.99 bb
29
291.03 bb
16
206.51 bb
15
254.28 bb
2
283.67 bb
13
224.91 bb
-10
160.78 bb
-36
156.23 bb
-38
159.39 bb
-36
4.01 bb
1.66 bb
Page 2
puantitated and Printed by UE on 25 Jan 01 Study I E00-1311
3M Environmental Laboratory
BACK TO MAIN
Quantify colpound - r y
Repart
PFOS Adsorb/Desorb Study, Khls Instrunmnt: W k e z lLA052)
Sanple List: Last modified: Msthmi: L a s t modified: Job Code:
c:\sdnssLrx\Dao.tur.PRO\SanplY1B\t010125
- Thu Jan 25 10:45:39 2001
C:\sdnsSL~\Daoatul.PRO~uloB\PFOS THPFOS Wed Jan 31 07:38:20 2001
Printed:
Wed Jan 31 07:42:18 2001
c-smd
1: PFOS(499)
# N1 t010125-001 2 t010125-002 3 t010125-003 4 t010125-0Q4 5 t010125-005 6 t010125-006 1 t010125~007 8 t010125-008 9 t010125-009 10 t010125-010 11 t010125-011 12 t010125-012 13 to10125 013
19 t010125I019 20 to10125 020
26 t010125I026 21 to10125 021
34 to101251034 35 t010125-035 36 t010125-036 31 t010125 0 3 1
43 t010125I043 41 t010125-044 45 t010125-045 46 t010125-046 41 t010125-041 18 t010125-048 49 t010125-049 50 t010125-050 51 t010125-051 52 t010125-052 53 t010125-053 5 4 tO10125-054 55 t010125-055 56 t010125-056 51 t010125-057 58 t010125-058 59 t010125-059 60 t010125-060 61 t010125-061 62 t010125-062 63 t010125-063 64 tO10125-064 65 t010125-065 66 t010125-066 61 t010125-061 68 t010125 068 69 t0101251069 10 t010125-010 11 t010125-011 12 t010125 012 13 t0101251073 14 t010125-014 75 t010125-015 1 6 t010125-076 71 t010125~011 18 t010125-018 I9 tOl0125-079 80 t010125-080 81 t010125-081 02 t010125-082
S-ldlst TUt MeOH Blank, TN-A-4140, Aliq. MeOH Blank, TH-A-1110. Aliq. 1000 ppb FC Mix 00002-104-13 1000 ppb FC Mix 00002-104-13 MeOH Blank, TN-A-1140. Aliq. MeOH Blank, TN-A-4740. Aliq. 0 ppb FC Mix 00002-101-01 2.5 ppb FC Mix 00002-104-02
5 ppb FC Mix 00002-104-03 10 ppb FC Mix 00002-104-01 25 ppb FC Mix 00002-104-05 40 ppb FC Mix 00002-104-06 50 ppb FC Mix 00002-104-07 15 ppb FC Mix 00002-104-08 100 ppb F C Mix 00002-104-09
250 ppb FC Mix 00002-101-10 500 ppb FC Mix 00002-104-11 150 ppb k C Mix 00002-104-12 1000 ppb FC Mix 00002-101-13 MeOH Blank, TN-A-4140. Aliq. MeOH Blank, TN-A-4140. Aliq. MeOH Blank, TN-A-1140. Aliq. MeOH Blank. TN-A-1140. Aliq. 0 ppb FC Mix 00002-104-01 2.5 ppb FC Mix 00002-104-02 5 ppb FC Mix 00002-104-03 10 ppb FC Mix 00002-101-04 25 ppb FC Mix 00002-104-05 10 ppb FC Mix 00002-104-06 50 ppb FC Mix 00002-101-01 15 ppb FC Mix 00002-104-08 100 ppb FC Mix 00002-104-09 250 ppb FC Mix 00002-104-10 500 ppb FC Mix 00002-104-11 750 ppb FC Mix 00002-104-12 1000 ppb FC Mix 00002-104-13 MeOH Blank, TN-A-1140. Aliq. MeOH Blank, TN-A-4140. Aliq. MsOH Blank, TN-A-4140. Aliq. lox 600-1311-0016 lox E00-1311-0011 lox EOO-1311-0018 10% EOO-1311-0019 10% EOO-1311-0020 250 ppb F C Mix 00002-104-10 MeOH Blank, TN-A-4740. Aliq. MeOH Blank, TN-A-4140. Aliq. lox EOO-1311-0021 lox E00-1311-0022 10% EOO-1311-0023 lox EOO-1311-0024 lox EOO-1811-0025 250 ppb FC Mix 00002-104-10 HeOH Blank, TN-A-4740, Aliq. MeOH Blank, TN-A-4740, Aliq. 1Ox 800-1311-0026 1Ox EOO-1311-0021 lox EOO-1311-0028 lox E00-1311-0029 lox EOO-1311-0030 250 ppb FC Mix 00002-104-10 MeOH Blank, TN-A-4140. Aliq. MeOH Blank, TN-A-9140. Aliq. lox EOO-1311-0031 10% EOO-1311-0032 lox E00-1311-0033 lox E00-1311-0034 lox EOO-1311-0035 250 ppb FC Mix 00002-104-10 MeOH Blank, TN-A-4190. Aliq. MeOH Blank, TN-A-4740, Aliq. 10% 00-1311-0036 lox EOO-1311-0037 lox 600-1311-0038 10% E00-1311-0039 10x EOO-1311-0040 250 ppb FC Mix 00002-104-10 MeOH Blank, TN-A-4140. Aliq. MeOH Blank, TN-A-4710, Aliq. 10% E00-1311-0011 lox 600-1311-0042 lox EOO-1311-0043
12/04/00 12/04/00 12/04/00 12/01/00
12/04/00 12/04/00 12/04/00 12/04/00
12/04/00 12/04/00 12/04/00
12/04/00 12/01/00
12/04/00 12/04/00
12/04/00 12/04/00
12/04/00 12/01/00
12/04/00 12/04/00
RT 6.450 6.241 6.119 6.542 6.108 6.543 6.121 6.520 6.156 6.388 6.111 6.292 6.388 6.011 6.483 6.134 6.509 6.398 6.265 6.101 6.531 6.265 6.352 6.146 6.349 6.121 6.302 6.110 6.458 6.110 6.156 6.341 6.050 6.520 6.543 6.050 6.590 6.013 6.410 6.121 6.500 6.169 6.675 6.110 6.458 6.049 6.561 6.062 6.590 6.101 6.662 6.108 6.192
6.095
6.626 6.111 6.612 6.012 6.135 6.110 6.445 6.039 6.460 6.025 6.508 6.035 6.505 6.035 6.532 6.614 6.108 6.315 6.012 6.458 6.086 6.325 6.096 6.205 6.519 6.254 6.109 6.501
Area 831200 296113 5181701 5239132 251189 296161 190383 228013 209827 256016 321643 122644 508823 625655 696012 1601022 2411999 3324924 3625888 140546
175160 150113 160830 132405 181926 110151 223063 298612 400141 169182 601584 144115 1484003 2300138 3223153 3992950 178960 106658 168111
84682 162860 141596 188330 141421 1301101 125026 161718 104841 110430 138631 193349 134611 1353855 139866 198325 139108 198174 146148
55629 145556 1369261 122300 151469 2808141 2511874 2834724 2425654 2148880 1418330
59950 138121 2531391 2161946 2545826 2801459 2632713 1501011 148933 114595 2612098 2687648 2610315
Response 831200.000 296143.250 5181107.000 5239132.000 251188.984 296161.125 190383.219 228073.438 209821.018 256076.359 321642.656 422643.563 508823.188 625654.688 696012.313 1601021.750 2171998.150 3324921.000 3625888.250 140546.016
115459.922 150113.141 168829.969 132101.518 181925.563 110150.612 223063.438 298612.031 400141.438 469181.844 604584.250 144174.150 1484002.500 2300131.500 3223152.500 3992949.500 118960.315 106658.201 168116.119
84681.828 162860.281 141596.422 188329.828 141420.531 1301100.500 125026.102 161111.181 104841.234 170429.656 138631.112 193349.112 131610.134 1353855.250 139866.328 198324.119 139101.166 198113.656 146448.291
55628.688 145555.625 1369261.315 122300.242 151468.953 2808143.500 2511814.250 2834124.000 2425654.250 2148880.250 1418330.250
59950.008 138126.672 2531397.000 2161945.500 2545825.750 2807459.250 2632112.150 1501071.125 148933.156 114594.859 2612098.000 2681647.500 2610315.000
ppb Flagr 125.20 bb
9.40 bb 1495.43 bb 1521.41 bb
0.05 bb 9.40 bb 0.00 bb 0.00 bb 0.00 bb 0.95 bb 14.19 bb 36.21 bb 54.16 bb 80.04 bb 95.10 bb 304.22 bb 525.01 bb 161.38 bb 862.14 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bbX 0.00 bbX 0.00 bbX 9.92 bbX 31.41 bb 16.24 bb 75.46 bb 105.91 bb 214.84 bb 411.90 bb 136.43 bb 986.15 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 231.89 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 214.20 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 211.80 bb 0.00 bb 0.00 bb 615.66 bb 531.11 bb 623.15 bb 511.02 bb 599.06 bb 259.33 bb 0.00 bb 0.00 bb 539.31 bb 602.10 bb 543.28 bb 615.46 bb 566.96 bb 278.90 bb 0.00 bb 0.00 bb 561.30 bb 582.06 bb 560.81 bb
Wav
50 53
-100 -100
-91 -4 1
-9 10 1 -5 22 5 2 -I1
-100 -100 -100
-60 -21
-8 1 6
10 -4 -2 -1
-1
-2
-1
4
12
od c-t
Puantitated and Printed by CMC on 31 Jan 01 Study 0 EOO-1311
3M Environmental Laboratory
Page 490 of 703
BACK TO MAIN
lcm h w t i f y Compound Summary Rsport
PFOS Adsorb/Derorb Study,
Instrumm%t:T w k e r (LAo52)
S q l e List: c:~SLrx\Dsoatur.PRD\Ssrpla~~\tO10125
- Last mdzfied: Thu Jan 25 10:45:39 2001
bw:
C:\aaasSLnrX\~oatur.pRo\HsthDB\PFOS TWlOS
Last m d i f i e d : Wed Jan 31 07:38:20 2001
Job Code:
Printed:
Wed Jan 31 07:42:18 2001
(I Nama
S - l d i s t Text
RT
Area
IhSporuO
ppb F l a p tDar od t-C
03 t010125-003 lox EOO-1311-0014
6.073 2858584 2858584.250
629.91 bb
84 t010125-004
lox EOO-1311-0045
6.324
2564991 2564990.500
518.47 bb
85 t010125-085 250 ppb FC Mix 00002-104-10
6.047 1595213 1595213.250
301.30 bb
21
86 t010125-086
MeOH Blank, TN-A-4740. Aliq. 12/04/00
6.578
179270 179270.266
0.00 bb
87 t010125-007 MeOH Blank, TN-A-4740. Aliq. 12/04/00
6.036
113308 113300.227
0.00 bb
88 t0101251088
lox EOO-1311-0046
6.313 2646930 2646937.500
570.84 bb
89 t010125-089 lox EOO-1311-0047
6.119
2804164 2804164.000
614.54 bb
90 t010125-090 lox EOO-1311-0048
6.299 2570387 2570306.500
549.94 bb
91 t010125-091
lox EOO-1311-0049
6.098 2079210 2879210.250
635.77 bb
92 tO10125-092
lox EOO-1311-0050
6.170
2533023 2533023.250
539.81 bb
93 t010125-093 250 ppb FC Mix 00002-104-10
6.050 1333005 1333005.000
239.33 bb
-4
94 t010125 094 MeOH Blank, TN-A-4740, Aliq. 12/04/00
6.373
146205 146204.059
0.00 bb
MeOH Blank, TN-A-4740, Aliq. 12/04/00
6.059
70603 70603.414
0.00 bb
lox EOO-1311-0051
6.363
2005065 2005864.625
402.35 bb
lox EOO-1311-0052
6.099
2065654 2065653.500
417.47 bb
lox EOO-1311-0053
6.120
1833231 1833230.750
359.31 bb
lox 600-1311-0054
6.100 1920545 1920544.625
300.97 bb
100 t010125~100 lox E00-1311-0055
6.331
2704784 2704704.000
609.10 bb
101 t010125-101 250 ppb FC Mix 00002-104-10
6.046
1582417 1582416.750
298.31 bb
19
102 t010125-102 MeOH Blank, TN-A-4740, Aliq. 12/04/00
6.448
180976 100975.719
0.00 bb
103 t010125-103 MeOH Blank, TN-A-4740, Aliq. 12/04/00
6.051
126826 126826.359
0.00 bb
104 t010125-104
lox EOO-1311-0056
6.541 2766212 2766211.500
603.90 bb
105 t010125-105 lox E00-1311-0057
6.493
2534908 2534900.000
540.32 bb
106 t010125-106 lox EOO-1311-0058
6.040 3035705 3035785.000
680.00 bb
107 t010125~10.7 lox E00-1311-0059
6.348
2548403 2540402.500
543.97 bb
108 t010125-108
lox EOO-1311-0060
6.071 2013637 2013637.000
617.20 bb
109 t010125-109
250 ppb FC Mix 00002-104-10
6.460 1387797 1387796.500
252.15 bb
1
110 t010125~110 MeOH Blank, TN-A-4740. Aliq. 12/04/00
6.024
125005 125004.563
0.00 bb
111 t010125-111 MeOH Blank, TN-A-4740, Aliq. 12/04/00
6.552
174696 174695.734
0.00 bb
112 t010125-112
lox E00-1311-0061
6.322 2567028 2567027.750
549.02 bb
113 t010125-113 lox EOO-1311-0062
6.071
2770300 2770308.000
605.04 bb
114 t010125-114
lox EOO-1311-0063
6.507 2493961 24 93960.500
529.29 bb
115 t010125-115 lox E00-1311-0064
6.061 2801319 2801310.750
613.74 bb
116 t010125-116 lox EOO-1311-0065
6.535 2516190 2516190.000
535.27 bb
117 t010125-117
250 ppb FC Mix 00002-104-10
6.503
1357075 1357075.125
244.95 bb
-2
110 to10125 118 MeOH Blank. TN-A-4740, Alia. 12/04/00
6.050
103976 103975.977
0.00 bb
MeOH Blank; TN-A-4740; Aliq. 12/04/00
6.520
175921 175920.563
0.00 bb
lox EOO-1311-0066
6.385 2561146 2561146.000
547.43 bb
lox E00-1311-0067
6.033 1697580 1697500.000
326.10 bb
lox E00-1311-0060
6.160
2221049 222104 0.750
457.52 bb
lox EOO-1311-0069
6.050 2703500 2703579.500
586.47 bb
lox E00-1311-0070
6.436 2045503 2045503.000
412.39 bb
125 t0101251125 250 ppb FC Mix 00002-104-10
6.157
1373129 1373120.625
248.71 bb
-1
126 t010125-126 MeOH Blank, TN-A-4740, Aliq. 12/04/00
6.060
131690 131689.594
0.00 bb
127 t010125-127 MeOH Blank, TN-A-4740, Aliq. 12/04/00
6.662
209049 2~ 09.0~ 4 R. .59.4 ~ ~ .0..00 bb
128 t010125-120 lox EOO-1311-0071
6.026 2281647 2281647.250
473.07 bb
,
129 t010125-129 130 t010125-130
lox E00-1311-0072 lox 600-1311-0073
6.543 6.156
1994915 1994914.500 2107328 2107328.000
399.60 bb 420.08 bb
131 t010125-131 lox BOO-1311-0074
6.073
2275225 2275224.500
411.39 bb
132 t010125-132 10x EOO-1311-0075
6.263
2070615 2070675.125
418.75 bb
133 to10125 133 250 ppb PC Mix 00002-104-10
6.135
1410906 1410906.000
259.46 bb
4
134 i0101251134 MeOH Blank, TN-A-4740, Aliq. 12/04/00
6.576
189572 189572.422
0.00 bb
135 t010125-135 136 t010125 136
MeOH Blank, TN-A-4740. Aliq. 12/04/00 HeOH Blank, TN-A-4740, A l i q . 12/04/00
6.070 6.581
77009 77009.250 188258 188257.766
0.00 bb 0.00 bb
137 t0101251137 0 ppb FC Mix 00002-104-01
6.095
177973 177972.719
0.00 bb
138 t010125-138 139 t010125-139
2.5 ppb FC Mix 00002-104-02 5 ppb FC nix 00002-104-03
6.450 6.101
191704 191004
191704.063 191884.234
0.00 bbX 0.00 bbX
-100 -100
140 to10125 140 10 ppb FC Mix 00002-104-04
6.326
235222 235222.219
0.00 bbX -100
25 ppb FC Mix 00002-104-05
6.096
308328 300328.469
11.98 bbX
-52
40 ppb FC Mix 00002-104-06
6.312
387661 307661.406
20.81 bb
-28
50 ppb FC Mix 00002-104-07
6.240
479692 479691.563
48.49 bb
-3
75 ppb FC Mix 00002-101-08
6.530
578191 578191.375
69.74 bb
-7
100 ppb FC Mix 00002-104-09
6.109
700577 700576.875
114.00 bb
14
46 t010125-
250 ppb FC Mix 00002-104-10
6.424
1300449 1380448.075
250.42 bb
0
147 t010125-147 500 ppb FC Mix 00002-104-11
6.039 2466444 2466444.250
521.91 MM
4
a
140 t010125-140 750 ppb FC Mix 00002-104-12
6.528 3197643 3197642.500
728.76 bb
-3
149 t010125-149 1000 ppb FC Mix 00002-104-13
6.040
4125592 4125591.750
1034.37 bb
3
150 t010125-150 MeOH Blank, TN-A-4740, Aliq. 12/04/00
6.556
205462 205461.656
0.00 bb
151 t010125-151 MeOH Blank, TN-A-4740, Aliq. 12/04/00
6.674
71219 71219.266
0.00 bb
Quantitated and Printed by
on 31 Jan 01 Study * E00-1311
3M Environmental Laboratory
Page 491 of 703
BACK TO MAIN
huntify C c q a m d Sumary bport PFOS Msorb/Desorb Study, L C M Inrt-t:
W k e r (LA0521
sa@e List: c:\bUISSLW\Dt.atUr.m\S.qlsDB\t010125
- Last modified: Tim Jan 25 10-45:39 2001
Method:
C:\acasSLW\D.oatur.prto~ulo0\PFOS
THPFOS
Last uedifisd: Wed Jan 31 07:38:20 2001
Job Code:
Printed:
Wed Jan 31 07:42:18 2001
C&md 2: I.S. (TW-PPOS) (4271
a N1 to10125 001
7 t010125-007 8 t0101251008 9 t0o10112255-000099 10 t010125-010 11 t010125-011 12 t010125-012 13 t010125-013 I4 t010125-014 15 t010125-I015 16 to10125 016 17 t010125-017
23 t010125I023 24 t010125-024 25 t010125-025 26 t010125-026 27 tO10125-027 28 t010125-028 29 t010125-029 30 t010125-030 31 t010125-031 32 t010125-032 33 t010125-033 34 t010125-034 35 tO10125-035 36 t010125-036 37 t010125-037 38 t010125-038 39 t010125-039 40 t010125-040 41 t010125-041 42 t010125-042 13 t010125-043 44 t010125-044 45 t010125-045 46 t010125-096 47 t010125-047 48 t010125-048 49 tO10125-049 50 t010125-050 51 t010125-051 52 tO10125-052 53 t010125-053 54 t010125-054 55 t010125-055 56 tO10125-056 57 t010125-057 58 t010125-058 59 t010125-059 60 t010125-060 61 t010125-061 62 tO10125-062 63 t010125-063 61 t010125-064 65 tO10125-065 66 t010125-066 67 t010125-067 68 t010125-068 69 t010125-069 70 t010125-070 71 to10125 071 72 t010125-072
79 t010125y079 80 t010125-080 81 t010125-081 82 t010125-082
Samplelist Text
MeOH Blank, TN-A-4740, Aliq. MeOH Blank, TN-A-1740. Aliq. 1000 ppb FC Mix 00002-104-13 1000 ppb FC Mix 00002-104-13 MeOH Blank, TN-A-4740. Aliq. MeOH Blank, TN-A-4710, Aliq. 0 ppb FC Mix 00002-104-01 2.5 ppb FC Mix 00002-104-02 5 ppb FC Mix 00002-104-03 10 ppb FC Mix 00002-104-04 25 ppb FC Mix 00002-104-05 40 ppb FC Mix 00002-104-06 50 ppb FC Mix 00002-104-07 75 ppb FC Mix 00002-104-08 100 ppb FC Mix 00002-104-09 250 ppb FC Mix 00002-101-10 500 ppb FC Mix 00002-104-11 750 ppb FC Mix 00002-104-12 1000 ppb FC Mix 00002-101-13 MeOH Blank. TN-A-4740, Aliq.
MeOH Blank, TN-A-4740. Aliq. MeOH Blank, TN-A-4740, Aliq. MeOH Blank, TN-A-4740. Aliq. 0 ppb FC Mix 00002-104-01 2.5 ppb IC Mix 00002-101-02 5 ppb FC Mix 00002-104-03 10 ppb FC Mix 00002-104-01 25 ppb FC Mix 00002-104-05 40 ppb FC Mix 00002-104-06 50 ppb FC Mix 00002-104-07 75 ppb FC Mix 00002-104-08 100 ppb FC Mix 00002-101-09 250 ppb FC Mix 00002-104-10 500 ppb FC Mix 00002-104-11 750 ppb FC Mix 00002-104-12 1000 ppb F C Mix 00002-104-13 MeOH Blank, TN-A-4740, Aliq. MeOH Blank, TN-A-4740, Aliq.
MeOH Blank, TN-A-4740, Aliq. lox EOO-1311-0016
lox 800-1311-0017
12/01/00 12/04/00 1210000 12/04/00
12/04/00 12/01/00 12/04/00 12/04/00
12/04/00 12/04100 12/04/00
MeOH Blank. TN-A-4740, Aliu. MeOH Blank, TN-A-4740. Aliq. lox 800-1311-0021 lox E00-1311-0022
lox E00-1311-0023 lox E00-1311-0024 10x EOO-1311-0025 250 ppb FC Mix 00002-104-10 HeOa Blank, TN-A-4740, Aliq. MeOH Blank, TN-A-1740, Aliq.
lox BOO-1311-0026
lox EOO-1311-0021 lox EOO-1311-0028 lox EOO-1311-0029 lox E00-1311-0030 250 ppb FC Mix 00002-104-10 MeOH Blank, TN-A-4740. Aliq. MeOH Blank, TN-A-4740. Aliq. lox EOO-1311-0031 lox EOO-1311-0032 lox EOO-1311-0033
lox EOO-1311-0034 10n 500-1311-0035 250 ppb FC Mix 00002-104-10 MeOM Blank, TN-A-1740. Aliq. MeOH Blank, TN-A-4740, Aliq. lox E00-1311-0036 lox EOO-1311-0037 lox EOO-1311-0038 lox E00-1311-0039
lox E00-1311-0040 250 ppb FC Mix 00002-104-10 MeOM Blank, TN-A-4740, Aliq. MeOH Blank, TN-A-4740, Aliq. 108 E00-1311-0041 lox E00-1311-0042 lox E00-1311-0043
12/04/00 12/04/00
12/04/00
12/04/00
12/04/00 12/04/00
12/04/00 12/04/00
12/04/00 12/04/00
RT 6.209 7.132 6.071 6.325 6.048 6.012 6.061 6.231 6.096 6.159 6.063 6.135 6.328 6.026 6.230 6.073 6.400 6.193 6.217 6.046 6.410 6.120 6.292 6.086 6.145 6.061 6.109 6.061 6.206 6.062 6.035 6.280 5.990 6.399 6.362 5.990
6.000 6.169 6.025 6.380 6.108 6.072 6:110 6.157 5.952
5.990 6.265 6.047 6.121 6.048 6.179
6.035
6.145 6.084 6.082 6.012 5.978 6.109 6.144 5.966
5.977 6.207 5.963 6.204 5.975 6.303 6.000 6.048 6.050 5.952 6.133 6.037 6.085 5.987 6.157
6.037 6.049 6.206
..rA 5373 11729 70045 75600 2522
519 126675 117847 118679 112125 109100 107613
99745 102506
96942 82354 73659 62381 46986
1691 511
1019 503
118013 106158 109910 105112 101461
99250 91592 96662 84852 76758 76238 70176 53632
0 1428
603 118872 112733 110966 114288 109119
86705 1081 0
124529 122964 117237 117726 116042
92444 2050 712
113810 119108 252894 186886 185019 92634
1567 0
108803 119501 113016 119626 107200 103229
1198 1922 116019 108681 119125 108263 115063 89852
607 0
116893 106721 122748
Rsspponre 5372.521 11728.611 70045.336 75600.156 2522.483
519.195 126675.086 117846.625 118679.031 112125.469 109100.398 107613.313 99744.711 102505.703
96911.961 82353.539 73659.094 62380.656 46985.852
1690.943 514.222
1019.106 503.462
118013.289 106157.750 109909.656 105111.656 101460.953
99250.172 97591.688 96662.000 84852.133 76757.734 76237.547 70176.188 53631.707
1127.568 603.102
118872.305 112733.109 110965.875 114288.406 109118.742
86705.156 1080.741
121529.161 122964.258 117236.961
117725.922 116041.797
92414.066 2050.362 712.336
113810.109 119407.734
252894.094 186885.938 185019.078
92633.828 1567.286
108802.805
~
~~
119501.391
113015.695
119626.469
107199.844
103228.611
1198.204
1922.064
116048.961
108683.570
119124.578
108263.000
115063.258
89851.828
606.992
116893.242 106720.656 122748.484
ppb 14.48 31.62 188.83 203.80
6.80 1.40 341.49 317.69 319.93 302.27 294.11 290.10 268.89 276.33 261.33 222.01 198.57 168.16 126.66 4.56
1.39 2.75 1.36 318.14 286.18 296.29 283.36 273.52 267.56 263.09 260.58 228.74 206.92 205.52 189.18 144.58
Flags
bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb W bb bb bb bb bb bb bb bb bb bb bb bb bb bb bb
*Dm
-24 -18
37 27 28 21 18 16
8 11
5 -11 -21 -33 -49
27 14 19 13
9 7 5 4 -9 -17 -18 -24 -42
od t-C
3 . 8 5 bb
1.63 bb
320.45 bb
28
303.90 bb
22
299.14 bb
20
308.10 bb
23
291.16 bb
18
233.74 bb
-7
2 . 9 1 bb
335.70 bb
34
331.49 bb
33
316.05 bb
26
317.36 bb
27
312.82 bb
25
249.21 bb
-0
5 . 5 3 bb
1.92 bb
306.81 bb
23
321.90 bb
29
681.75 bb
173
5 0 3 . 8 0 bb
102
498.77 bb
100
249.72 bb
-0
4.23 bb
293.31 bb
17
322.15 bb
29
301.67 bb
22
322.19 bb
29
288.99 bb
16
278.28 bb
11
3 . 2 3 bb
5.18 bb
312.84 bb
25
292.99 bb
11
321.13 bb
28
291.85 bb
17
310.19 bb
24
242.22 bb
-3
1.61 bb
315.12 bb
26
287.70 bb
15
3 3 0 . 9 0 bb
32
Quantitated and Printed by cw2 on 31 Jan 01 study E00-1311
3M Environmental Laboratory
Page 3
BACK TO MAIN
Quantify conpound S u m m a q Paport P W S Adsorb/msorb Study, L C M Inst-t:
Tuoker (LAO521
S a z ~ l sList: last mdificd: Method: last a f i e d : Job Code:
C:\MnsSLYNX\Daoatur.PRO\SamplsDB\t010125
- Thu Jan 25 10:45:39 2001
C : \ M n s S L ~ \ D ~ . t u r . P R O ~ ~ B \ P P O S THPPOS Wed Jan 31 07:38:20 2001
Printad:
Wed Jan 31 07:42:1E 2001
& C
2: 1,s. (RI-PFOS)(427)
E.l- ~
RT
mu
Ppb Flags WDOVod comment
83 t010125-003
lox EOO-1311-0014
6.013
105324 10532i.10;
283.93 bb
14
84 t010125-084
l o x EOO-1311-0045
6.072
116901 116900.750
315.11 bb
26
85 t010125-OB5
250 ppb FC Mix 00002-104-10
5.999
83072 83072.023
223.94 bb
-10
86 to10125 086 MeOH Blank, TN-A-4710. Aliq. 12/04/00
0
87 t0101251087 MeOH Blank, TN-A-1140, Aliq. 12/04/00
5.976
1668
1668.148
4.50 bb
88 t010125-008
lox 800-1311-0046
6.253
106186 106186.273
286.26 bb
15
89 t010125-089
lox EOO-1311-0047
6.070
103150 103150.477
278.07 bb ~~
11
90 t010125-090
10% EOO-1311-0048
6.070
112295
112295.242
~
~
~
302.72 bb
21
91 t010125-091
6.049
96921 96921.016
261.28 bb
5
92 t010125-092
6.038
102624 102624.383
276.65 bb
11
93 t010125-093
5.986
71867 71867.242
193.74 bb
-23
94 t010125-094
12/04/00
0
95 t010125-095 MeOH Blank; TN-A-4740. Aliq. 12/04/00
5.975
1056
1055.913
2 . 8 5 bb
96 t010125-096 lox EOO-1311-0051
6.291
68517 60546.523
184.79 bb
-26
97 t010125-097
10% E00-1311-0052
6.039
62273 62273.418
167.88 bb
-33
98 t010125-098
10% E00-1311-0053
5.999
68098 68097.969
183.58 bb
-27
99 t010125-099
lox EOO-1311-0054
6.120
53704 53704.141
144.77 bb
-42
100 t010125-100
10% EOO-1311-0055
6.271
104842 104842.320
282.63 bb
13
101 t010125-101
250 ppb FC Mix 00002-101-10
5.998
81701 81701.250
220.25 bb
-12
102 t010125-102 MeOM Blank, TN-A-4740, Aliq. 12/04/00
6.376
695
695.141
1.87 bb
103 to10125 103 MeOH Blank, TN-A-4740, Aliq. 12/04/00
5.990
2071
2071.462
5.58 bb
10% EOO-1311-0056
6.361
123699 123699.145
333.47 bb
33
lox EOO-1311-0057
6.168
114165 114164.625
307.76 bb
23
108 EOO-1311-0058
5.988
101409 101408.508
273.38 bb
9
10% EOO-1311-0059
6.071
109000 109000.341
293.84 bb
18
10% EOO-1311-0060
6.011
98029 98029.047
264.27 bb
6
!
109 t010125I109 250 ppb FC Mix 00002-101-10
6.372
81428 81428.047
219.51 bb
-12
110 to10125 110 MeOH Blank, TN-A-4710, Aliq. 12/01/00
5.952
1436
1435.502
3.87 bb
MeOH Blank, TN-A-4740, Aliq. 12/04/00
0
lox EOO-1311-0061
6.262
99050 99049.680
267.02 bb
7
10% 600-1311-0062
6.023
96206 96205.742
259.35 bb
4
lox BOO-1311-0063
6.170
112143 112143.391
302.31 bb
21
10% EOO-1311-0064
6.001
97979 97978.953
264.13 bb
6
10% 600-1311-0065
6.245
115602 115601.617
311.64 bb
25
250 ppb FC Mix 00002-104-10
6,203
94374 94374.211
254.41 bb
2
MeOH Blank, TN-A-4740, Aliq. 12/04/00
5.986
1721
1720.759
4.64 bb
MeOH Blank, TN-A-4740, Aliq. 12/01/00
6,383
530
530.416
1.43 M
120 t0101251120
10% EOO-1311-0066
6.313
102207 102207.177
275.53 bb
10
121 t010125-121
10% EOO-1311-0067
5.985
207435 207135.231
559.20 bb
124
122 tO10125-122
10% EOO-1311-0068
5.999
209218 209218.359
564.01 bb
126
123 t010125-123
10% EOO-1311-0069
5.966
222164 222163.859
598.91 bb
140
124 t010125-124
10% EOO-1311-0070
6.351
131563 131562.906
354.67 bb
42
125 to10125 125 250 ppb FC Mix 00002-104-10
6.000
88381 88380.602
238.26 bb
-5
126 t0101251126 MeOM Blank, TN-A-4740, Aliq. 12/04/00
6.000
1806
1806.316
1.87 bb
127 to10125 127 MeOH Blank, TN-A-4740. Aliq. 12/04/00
6.084
1088
1088.456
2.93
~
b~b -
10% EOO-1311-0071
5.965
159566 159565.938
430.16 bb
72
lox EOO-1311-0072
6.267
128245 128214.859
345.72 bb
38
10% E00-1311-0073
5.999
173139 173139.297
466.75 bb
87
10% EOO-1311-0074
5.977
176159 176158.922
471.89 bb
90
10% E00-1311-0075
6.203
141018 141078.141
380.32 bb
52
133 t0101251133 250 ppb FC Mix 00002-104-10
6.086
77577 77576.617
209.13 bb
-16
134 t010125-131 MeOH Blank, TN-A-4700, Aliq. 12/01/00
0
135 t010125-135 MeOH Blank, TN-A-4740. Aliq. 12/04/00
5.962
1240
1240.172
3.34 bb
136 t010125-136
HsOH Blank, TN-A-4740, Aliq. 12/04/00
0
137 t010125-137 0 ppb FC Mix 00002-104-01
5.975
118927 118927.320
320.60 bb
28
138 tO10125-138 2.5 ppb PC Mix 00002-104-02
6.354
107193 107192.914
288.97 bb
16
139 t010125-139
5 ppb FC Mix 00002-104-03
6.121
110172 110171.938
297.00 bb
19
140 tO10125-140
10 ppb FC Mix 00002-104-01
6.085
113811 113810.570
306.81 bb
23
141 tO10125-141 25 ppb FC Mix 00002-104-05
6.048
115567 115567.383
311.54 bb
25
142 t010125-142 40 ppb FC Mix 00002-104-06
6.108
110021 110021.266
296.59 bb
19
143 t010125-143
50 ppb FC nix 00002-104-07
6.192
97363 97363.398
262.47 bb
5
144 tO10125-144
75 ppb FC Mix 00002-104-08
6.240
111681 111684.203
301.08 bb
20
145 t010125-145 100 ppb FC Mix 00002-104-09
6.061
94649 94649.477
255.15 bb
2
146 t010125-146 250 ppb FC Mix 00002-104-10
6.159
90408 90107.883
213.72 bb
-3
147 t010125-147 500 ppb FC Mix 00002-104-11
5.979
67716 67715.648
182.55 bb
-27
148 t010125-148 750 ppb FC Mix 00002-104-12
6.288
73108 73708.352
198.70 bb
-21
149 t010125-119
1000 ppb FC Mix 00002-104-13
5.979
55605 55605.203
149.90 bb
-40
150 t010125-150 MeOH Blank, TN-A-4740, Aliq. 12/04/00
5.953
578
578.391
1.56 bb
151 t010125-151 MeOH Blank, TN-A-4740, Aliq. 12/04/00
5.988
1101
1101.073
2.97 bb
Quantitated and Printed by (Mc on 31 Jan 01 Study b E00-1311
3M Environmental Laboratory
ch?c ( pI i C l
Page 493 of 703
BACK TO MAIN
Quantify C-und
Sumnary Report
PFOS AdsorblDssorb EOO-1311
comp.mnd 1: PFOS ( 4 9 9 > 9 9 ) , fYnE 1
I; N1 s00120~001
2 s00120~002
ntudY M samplelist Text E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
E00-1311 991.78 ppb PFOS 00002-86-13, aliq. 11-03-00 MLA
me Analyte
Analyte
S t d Con=
RT 7.141 7.117
Area 259
30961
llpb %L%vFlaps Wd co
0.00
bb
bbl
3 ~00120-003 E00-1311 991.78 ppb PFOS 00002-86-13, aliq. 11-03-00 MLA
Analyte
7.118
30002
4 ~00120-004 E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
Analyte
7.130
213
5 ~00120-005 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
Analyte
7.118
148
6 ~00120-006 EOO-1311 0 ppb PFOS 00002-86-01, Aliq. 11-03-00 MLA
Analyte
7.119
691
7 ~00120-007 E00-1311 2.47ppb PFOS 00002-86-02. Aliq. 11-03-00 MLA
Analyte
7.117
1222
8 s00120~008 E00-1311 4.95 ppb PFOS 00002-86-03, Aliq. 11-03-00 MLA
Analyte
7.131
1468
9 ~00120-009 E00-1311 9.9 ppb PFOS 00002-86-04, Aliq. 11-03-00 MLA
Analyte
7.131
1566
0.00 -100 bb
10 ~ 0 0 1 2 0 ~ 0 1 0 E00-1311 24.75 ppb PFOS 00002-86-05, Aliq. 11-03-00 MLA
Analyte
7.118
2745 17.72 -28 bb
11 s0012O~Oll 12 s00120~012
13 ~00120-013 14 ~00120-014
E00-1311 39.6 ppb PFOS 00002-86-06, Aliq. 11-03-00 MLA E00-1311 49.5 ppb PFOS 00002-86-07 Aliq. 11-03-00 MLA E00-1311 74.26 ppb PFOS 00002-86-08. Aliq. 11-03-00 MLA E00-1311 99.2 ppb PFOS 00002-86-09, Aliq. 11-03-00 MLA
Analyte Ana1yte Analyte Analyte
7.118 7.119 7.117 7.107
3508 3899 5352 6795
34.55 (3.26 76.26 110.02
-13 bb -13 bb
3 bb 11 bb
15 .500120~015 EOO-1311 247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA
Analyte
7.105
12561 257.10 4 bb
16 ~00120-016 E00-1311 495.9 ppb PFOS 00002-86-12 Alia. 11-03-00 MLA
Analyte
7.106
19155 460.85 -7 bb
17 ~00120-017 E00-1311 991.78 ppb PFOS 00002-86-13, aliq. 11-03-00 MLA
Ana1yte
7.107
28597 974.59 -2 bb
18 s00120~018 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
Ana1yte
7.119
144
0.00
bb
19 ~00120-019 E00-1311 MeOH Blank, TN-A-4715. Aliq. 11/16100
Blank
7.118
123
0.00
bb
20 *00120~020 E00-1311 MeOH Blank, TN-A-4715, Aliq, 11/16/00
Blank
7.129
124
0.00
bb
21 s00120~021 E00-1311 0 ppb PFOS 00002-86-01. Aliq. 11-03-00 MLA
Analyte
7.117
604
0.00
bb
22 s00120~022 E00-1311 2.47ppb PFOS 00002-86-02, Aliq. 11-03-00 MLA
Standard
2.47 7.106
1095
0.00 -100 bbX
2 3 ~00120-023 EOO-1311 4.95 ppb PFOS 00002-86-03, Alia. 11-03-00 MLA
Standard
4.95 7.118
1354
0.00 -100 bbX
2 4 900120-024 E00-1311 9.9 ppb PFOS 00002-86-04, Alia. 11-03-00 MLA
Standard
9.90 7.106
1454
0.00 -100 bbX
2 5 ~00120-025 E00-1311 24.75 ppb PFOS 00002-86-05, Aliq. 11-03-00 MLA
Standard
24.75 7.117
2683 16.35 -34 b b
26 ~00120-026 E00-1311 39.6 ppb PFOS 00002-86-06. Aliq. 11-03-00 MLA
Standard
39.60 7.107
3390 31.91 -19 bb
27 ~00120-027 E00-1311 49.5 ppb PFOS 00002-86-07 Aliq. 11-03-00 MLA
Standard
49.50 7.106
3889 43.05 -13 bb
28 s00120~028 E00-1311 74.26 ppb PFOS 00002-86-08. Aliq. 11-03-00 MLA
Standard
74.26 7.106
5282
14.65
1 bb
29 ~00120-029 EOO-1311 99.2 ppb PFOS 00002-86-09. Aliq. 11-03-00 MLA
Standard
99.20 7.106
6720 108.24 9 bb
30 ~00120-030 E00-1311 247.9 ppb PFOS 00002-86-10. Aliq. 11-03-00 M L A
Standard
247.90 7.106
12653 259.63 5 bb
31 ~00120-031 E00-1311 495.9 ppb PFOS 00002-86-12 Aliq. 11-03-00 MLA
Standard
495.90 7.106
19151 460.70 -7 bb
3 2 ~00120-032 E00-1311 991.78 ppb PFOS 00002-86-13, aliq. 11-03-00 nLA
Standard
991.78 7.107
28429 955.43 4 bb
3 3 ~00120-033 E00-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00
Analyte
7.130
207
0.00
bb
34 ~00120-034 E00-1311 MeOH Blaqk, TN-A-4715, Aliq. 11/16/00
Analyte
7.128
133
0.00
bb
3 5 ~00120-035 E00-1311 E00-1311-1001 Ohr
Analyte
7.131
110
0.00
bb
36 ~00120-036 E00-1311 EOO-1311-1002 Ohr
Analyte
7.142
161
0.00
bb
37 ~00120-037 EOO-1311 B00-1311-1003 Ohr
Ana1yte
7.132
119
0.00
bb
38 ~00120-038 E00-1311 EOO-1311-1004 Ohr
Analyte
7.133
2652 15.68
bb
39 ~00120-039 EOO-1311 EOO-1311-1005 Ohr
Analyte
7.138
2598 14.50
bb
4 0 ~00120-040 E00-1311 247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA
QC
247.90 7.131
12431 253.52 2 bb
41 ~00120-041 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
Analyte
7.143
119
0.00
bb
42 ~00120-042 E00-1311 MeOH Blank. TN-A-4715. Alio. 11/16/00
Analyte
7.144
90
0.00
bb
43 s00120_043 E00-1311 EOO-l~il-lO06 O h r - . ~~
ma1yte
7.131
2578 14.07
bb
44 S00120-044 E00-1311 E00-1311-1007 Ohr
Analyte
7.143
19884 486.97
bb
45 ~00120~045
Analyte
7.142
20845 523.02
bb
46 ~00120-046
Analyte
7.133
21384 544.09
bb
47 ~00120-047
Analyte
7.130
3116 25.86
bb
48 ~00120~048
QC
247.90 7.130
12536 256.40 3 bb
49 ~ 0 0 1 2 0 ~ 0 4 9
Analyte
7.142
100
0.00
bb
I
50 600120~050
Ana1yte
7.142
e1
0.00
bb
51 ~00120-051 EOO-1311 E00-1311-1011 24 hour, OmgiL, S1, C - l
Analyte
7.141
1084
0.00
bb
52 ~00120-052 E00-1311 E00-1311-1012 24 hour. OmgIL. S1. C-l
Analyte
7.143
540
0.00
bb
53 ~00120-053 E00-1311 E00-1311-1012 2 4 hour, OmglL, SI. C-1, MS
Analyte
7.131
11095 217.61
bb
54 ~00120-054 E00-1311 E00-1311-1013 24 hour, O.lOmg/L, S1, C-l
Ana1yte
7.143
2562 13.72
bb
55 s00120~055 E00-1311 E00-1311-1014 2 4 hour, O.lOmglL, S1. c-1
Analyte
7.142
2834 19.66
bb
56 ~00120-056 E00-1311 247.9 ppb PFOS 00002-86-10. Allq. 11-03-00 MLA
Q
247.90 7.131
12793 263.50 6 bb
57 ~00120-057 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
Analyte
7.130
133
0.00
hb
58 ~ooi20_058 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00 59 900120-059 E00-1311 EOO-l3ll-1015 * 4 hour, 0 10mg,L, 51. c-1
Analyte
illa1yte
7.138 7.141
143
0.00
bD
2667 16.01
bb
60 ~00120-060 E00-1311 E00-1311-1015 24 hour, O.lOmg/L, S1. C-1, MS
Ana1yte
7,141
12420 253.23
bD
61 ~00120-061 E00-1311 E00-1311-1016 2 4 hour, l.Oma/L. S1. C-l
Analyte
7.144
19190 462.08
bb
62 ~00120-062 E00-1311 E00-1311-1017 24 hour. 1 . 0 G l L . S1, C-l
Analyte
7.142
19557 475.12
bb
63 ~00120-063 E00-1311 E00-1311-1018 2 4 hour. l.Omg/L, S1, C - l
Analyte
7.140
20389 505.67
bb
64 ~00120-064 E00-1311 247.9 ppb PFOS 00002-86-10. Aliq. 11-03-00 MLA
Q
247.90 7.133
12905 266.61
bb
65 ~ 0 0 1 2 0 ~ 0 6 5 EOO-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00
Analyte
7.132
160
0.00
bb
66 ~00120-066 E00-1311 MeOH Blank. TN-A-4715. Alla. 11/16/00
Analyte
7.142
89
0.00
bb
67 ~00120-067 EOO-1311 E00-1311-1018 2 4 hour. l.O&/L, S1. C-1 MS
Analyte
7.131
25186 719.03
hb
68 sOO120-068 E00-1311 E00-1311-1010 2 4 hour, OmglL, S2. C-l
AnLna1yte
7.142
3 0 3 3 24.03
bb
69 ~00120-069 E00-1311 E00-1311-1011 2 4 hour, OmgIL. SZ, C - l
Analyte
7.141
1052
0.00
bb
70 ~00120-070 E00-1311 E00-1311-1012 2 4 hour, OmgIL. SZ. C-1
Analyte
7.142
438
0.00
bb
71 ~00120-071 E00-1311 E00-1311-1012 2 4 hour, OmglL. SZ, C-1, MS
Analyte
7.141
12229 248.01
bb
72 ~00120-072 EOO-1311 247.9 ppb PFOS 00002-86-10. Aliq. 11-03-00 MLA
QC
247.90 7.127
13639 287.25 I bb
73 ~00120-073 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
Analyte
7.154
106
0.00
bb
74 ~ 0 0 1 2 0 ~ 0 7 4 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
Analyte
7.141
91
0.00
bb
75 ~00120-075 EOO-1311 E00-1311-1013 2 4 hour. 0.lOmglL. S2. C-1
Analyte
7.143
1425
0.00
bb
76 ~00120-076 EOO-1311 EOO-l3ll-lOl4 24 hour, O.lOr&/L. 52,. C-1
Analyte
7.130
1186
0.00
bb
77 s00120_077 E00-1311 E00-1311-1015 2 4 hour, 0.lOmglL. S2. C-l
Analyte
7.131
1470
0.00
bb
78 ~00120-078 E00-1311 E00-1311-1015 2 4 hour, O.lOmg/L. S2. C-1. MS
Analyte
7.129
12466 254.50
bb
79 ~00120-079 E~ 00~ -1-3~11 E00-1~ 311.-.10.16 2 4 hour. l.Om/L. SZ. C-1
Analyte
7.133
6830 110.87
bb
80 .s00120~080 E00-1311 247.9 ppb PFOs~OOO62-i6-lO.~Aliq.11-03-00 MLA
QC
247.90 7.119
13880 294.14 19 bb
81 ~00120-081 EOO-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
Analyte
7.140
e1
0.00
bb
82 s00120~082 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
Analyte
7.128
79
0.00
bb
83 SOO120-083 E00-1311 E00-1311-1017 2 4 hour. l.Omg/L, S2, C-1
Analyte
7.130
7145 118.37
bb
8 4 ~00120-084 E00-1311 E00-1311-1018 24 hour, l.Omg/L. 52. C-1
Analyte
7.132
7928 137.30
bb
e5 sooi20-085 E00-1311 E00-1311-1018 2 4 hour, l.Omg/L, S2, C-1. MS
Analyte
7.130
15596 344.75
bb
86 s00120_086 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
Analyte
7.127
109
0.00
bb
87 s00120_087 E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
Analyte
7.142
81
0.00
bb
88 SOOIZO-088 E00-1311 0 ppb PFOS 00002-86-01, Aliq. 11-03-00 MLA
Analyte
7.120
625
0.00
bb
89 ~ooizo-089 E00-1311 2.47ppb PFOS 00002-86-02, Aliq. 11-03-00 MLA
Standard
2.47 7.115
1061
0.00 -100 bbX
SOUP 020199: wantitared and printad by CDc on 01/11/01
3M Environmental Laboratory
Page 494 of 703
BACK TO MAIN
Quantify compound SUmMrY neD0l-t PPOS M s o r b l m s o r b ~ 0 0 - 1 3 1 1
6-1- List: Last d i f i e d :
Method: Last modified: Job COde:
C:\Hn~~l~\~OUp~20199.D~O\S~lEDB\~00112Oa Tbu Jan 11 0 1 : 0 0 : 0 6 2001 C:\nasslynx\.ouD020199.pro\nathDB\.001120 Wad Nov 22 06:41:05 2000
Printad:
Thu J.n 11 0 7 : 0 3 : 2 1 2001
90 ~00120-090
91 ~00120-091 92 800120~092 9 3 s00120I093
94 ~00120-094 9s S O O I ~ O - 0 9 5 96 ~00120-096 97 sOO120-097 98 so0120 098 99 sOOl2OI099 100 ~00120-100 101 ~00120-101 102 ~00120-102
E00-1311 4.95 ppb PFOS 00002-86-03. Aliq. 11-03-00 MLA
E00-1311 9.9 ppb PFOS 00002-86-04, Aliq. 11-03-00 MLA
EOO-1311 24.75 DDb PFOS 00002-86-05. Alia. 11-03-00 MLA
E00-1311 39.6 pi& PFOS 00002-86-06. Aliq: 11-03-00 MLA
E00-1311 49.5 ppb PFOS 00002-86-07 Aliq. 11-03-00 MLA EOO-1311 74.26-ppb PFOS 00002-86-08. Aiiq. 11-03-00 MLA
EOO-1311 99.2 ppb PFOS 00002-86-09. Aliq. 11-03-00 EILA
E00-1311 247.9 ppb PFOS 00002-86-10. Aliq. 11-03-00 MLA
E00-1311 495.9 DDb PFOS 00002-86-12 Alia. 11-03- -00 MLA
~~~
~~
EOO-1311 991.78'ppb PFOS 00002-86-13. aliq. 11-03-00 M U
E00-1311 MeOX Blank, TN-A-4715, Aliq. 11/16/00
600-1311 MeOX Blank. 'I?-A-4115. Aliq. 11/16/00
BOO-1311 HeOn Blank. TN-A-4715. Aliq. 11/16/00
e**. 2
Standard
Standard Standard
Std Con0
4.95 9.90 24.75
Standard
39.60
Standard
49.50
Standard Standard
14.26 99.20
Standard
247.90
St~ and~ ard ~.49.5~.90
Standard
991.78
Analyte
Analyte
Analyte
RT
7.118 7.116 7.118 7.111
7.115 7.117 7.115 7.129 7 . 1- 1 '. 1 _ 7.118
7.125 7.126 7.142
1382 1491
3542 4013 5604 6903 13256
1- 9- R-o-4_
29264 137 87 92
0.00 -100 bbX 0.00 -100 bbX
35.30
45.81
~
~~
82.08 112.60 276.43 d- -a_d. "nI s 1080.65
0.00
0.00 0.00
-11 bb
-7 b_h_
11 bb 14 bb
-12 bb
_I) LL L" 9 bb
bb
bb bb
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Ouantify CampOund sullrrmry Report PFOS MsorblDssorb E00-1311
___-__
__
Slmpl. List: Laet mdified: Method: Last mdified: Job code:
C:\MaS~lynu\~ouD02019~.D~\S~~~DB\.001120~ Thu Jan 11 07:00:06 2001 C:\Ma~s~~\~OUDO20199.D~O\M~thDB\~001120 Wad Nov 22 06:41:05 2000
Printed:
Thu Jan 11 07:03:22 2001
#N m
study M S-1eli.t
Text
1 s00120~001 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
2 r00120~002 E00-1311 991.78 ppb PFOS 00002-86-13, aliq. 11-03-00 MLA
3 so012
E00-1311 991.78 ppb PFOS 00002-86-13. aliq. 11-03-00 MLA
E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
E00-1311 0 ppb PFOS 00002-86-01. Aliq. 11-03-00 MLA
EOO-1311 2.47ppb PFOS 00002-86-02. Aliq. 11-03-00 MLA
8 P00120I008 E00-1311 4.95 ppb PFOS 00002-86-03, Aliq. 11-03-00 MLA
9 s00120~009 E00-1311 9.9 ppb PFOS 00002-86-04, Aliq. 11-03-00 MLA
10 s00120~010 E00-1311 24.75 ppb PFOS 00002-86-05, Aliq. 11-03-00 MLA
11 s00120~011 E00-1311 39.6 ppb PFOS 00002-86-06, Aliq. 11-03-00 MLA
12 P00120~012 E00-1311 49.5 ppb PFOS 00002-86-07 Aliq. 11-03-00 MLA
13 ~00120-013 E00-1311 74.26 ppb PPOS 00002-86-08. Aliq. 11-03-00 M U
14 ~00120-014 E00-1311 99.2 ppb PFOS 00002-86-09, Aliq. 11-03-00 MLA
15 ~00120-015 E00-1311 247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA
16 ~00120-016 E00-1311 4 9 5 . 9 ppb PFOS 00002-86-12 Aliq. 11-03-00 MLA
17 ~00120-017 E00-1311 991.78 ppb PFOS 00002-86-13, aliq. 11-03-00 MLA
18 900120~018 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
19 ~00120-019 E00-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00
20 s00120~020 E00-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00
21 s00120~021 E00-1311 0 ppb PFOS 00002-86-01. Aliq. 11-03-00 MLA
22 s00120~022 E00-1311 2.47ppb PFOS 00002-86-02, Aliq. 11-03-00 MLA
23 ~00120-023 EOO-1311 4.95 ppb PPOS 00002-86-03. Aliq. 11-03-00 MLA
2 4 ~00120-024 E00-1311 9.9 ppb PFOS 00002-86-04. Aliq. 11-03-00 MLA
25 ~00120-025 EOO-1311 24.75 ppb PFOS 00002-86-05, Aliq. 11-03-00 MLA
26 ~00120-026 EOO-1311 39.6 ppb PFOS 00002-86-06. Aliq. 11-03-00 MLA
21 ~00120-027 E00-1311 4 9 . 5 ppb PFOS 00002-86-07 Aliq. 11-03-00 MLA
28 POO120~028 E00-1311 74.26 ppb PFOS 00002-86-08. Aliq. 11-03-00 MLA
29 ~00120-029 EOO-1311 99.2 ppb PFOS 00002-86-09, Aliq. 11-03-00 MLA
30 ~00120-030 E00-1311 247.9 ppb PFOS 00002-86-10. Aliq. 11-03-00 MLA
31 ~00120-031 E00-1311 495.9 ppb PFOS 00002-86-12 Aliq. 11-03-00 MLA
32 ~00120-032 E00-1311 991.78 ppb PFOS 00002-86-13, aliq. 11-03-00 MLA
33 ~00120-033 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
34 500120-034 E00-1311 MeOH Blank, TM-A-4715, Aliq. 11/16/00
35 ~00120-035 E00-1311 E00-1311-1001 Ohr
36 ~00120-036 E00-1311 E00-1311-1002 Ohr
37 S00120-037 E00-1311 E00-1311-1003 Ohr
38 ~00120-038 E00-1311 E00-1311-1004 Ohr
39 S00120-039 E00-1311 E00-1311-1005 Ohr
40 ~00120-040 E00-1311 247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA
41 ~00120-041 E00-1311 MeOM Blank. TN-A-4715. Aliq. 11/16/00
42 ~00120-042 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
43 ~00120-043 E00-1311 E00-1311-1006 Ohr
44 ~00120-044 E00-1311 E00-1311-1007 Ohr
45 ~00120-045 E00-1311 E00-1311-1008 Ohr
46 ~00120-046 E00-1311 E00-1311-1009 Ohr
47 ~00120-047 EOO-1311 E00-1311-1010 24 hour, OmglL, S1. C-l
48 ~00120-048 EO0 - 1311 247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA
4 9 ~00120-049 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
50 ~00120-050 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
51 ~ 0 0 1 2 0 ~ 0 5 1 EOO-1311 E00-1311-1011 24 hour, OmgIL, S1. c-l
52 SOO120-052 E00-1311 EOO-1311-1012 2 4 hour, OmglL. S1, C-l
53 ~00120-053 E00-1311 E00-1311-1012 24 hour. OmglL, S1, C-1, MS
54 ~00120-054 E00-1311 E00-1311-1013 2 4 hour, 0.10mglL. S1, C-1
55 ~00120-055 EOO-1311 E00-1311-1011 2 4 hour, 0.lOmglL. S1, C-1
56 ~00120-056 E00-1311 247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA
57 ~00120-057 EOO-1311
58 ~00120-058 E00-1311
59 s00120~059 E00-13ll
60 ~00120-060 EOO-1311
61 800120-061 E00-1311
62 ~00120-062 800-1311
63 ~00120-063 BOO-1311
64 ~00120-064 E00-1311
65 ~00120-065 BOO-1311
66 ~00120-066 E00-1311
67 ~00120-067 E00-1311
68 ~00120-068 E00-1311
69 ~00120-069 E00-1311
70 ~ 0 0 1 2 0 ~ 0 7 0 E00-1311 E00-1311-1012 24 hour, O&/L, SZ. C-1
71 ~00120-071 E00-1311 E00-1311-1012 2 4 hour. O G / L . 52. C-1, MS
72 ~00120-072 E00-1311 247.9 ppb PFOS 00002-86-10. Aliq. 11-03-00 MLA
73 SOO120-073 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
74 SOO120-074 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
75 S00120-075 76 ~00120-076 77 ~00120-077
E00-1311 E00-1311-1013 24 hour. 0.lOmolL. 52 C - l
E00-1311 EOO-1311-1014 24 hour: O.iO&/L: 52: C-i
E00-1311 EOO-1311-1015 2 4 hour. O.lO$/L, SZ. C-1
78 ~00120-078 E00-1311 EOO-1311-1015 2 4 hour. O.lOmg/L, 82. C-1, MS
79 ~00120-079 E00-1311 EOO-1311-1016 2 4 hour, l.Omg/L, SZ. C-l
80 s00120~080 E00-1311 247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA
81 900120~081 E00-1311 MeOH Blank. TN-A-4715. Alin. 11~ /~ 16/.n.O
82 s00120~082 E00-1311
L1/16/00
83 ~00120-083 E00-1311 EOO-1311-1017 24 hour. l:O&/l Ir 52 c-1
84 SOO120-084 E00-1311 E00-1311-1018 2 4 houz, l.O&/L: 52: C-1
8 5 s00120~085 E00-1311 E00-1311-1018 2 4 hour, l.Omg/L, 12, C-1, MS
86 ~00120-086 E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
87 500120-087 E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
88 s 0 0 1 2 0 ~ 0 8 8 EOO-1311 0 ppb PFOS 00002-86-01. Aliq. 11-03-00 MLA
89 *00120~089 E00-1311 2.47ppb PFOS 00002-86-02, Aliq. 11-03-00 MLA
SOUP 020199: (yumtitated and Drinted by CMC on 01/11/01
3M Environmental Laboratory
~ __
Page 3
TyDe Analyte Analyte Analyte Analyte Analyte Analyte Analyte Analyte Analyte Analyte Analyte Analyte
Analyte Analyte Analyte Analyte Analyte Analyte Blank Blank Ana1yte Standard Standard Standard Standard Standard Standard Standard Standard standard Standard Standard Analyte Analyte Analyte Analyte Analyte Analyte Analyte
Qc Analyte Analyte Analyte Anblyte Analyte Analyte Analyte
QC Analyte Analyte Anblyte Analyte Analyte Anslyte Analyte
Qc Analyte Allalyte Analyte Analyte Ana1yte Analyte Analyte
QC Analyte Analyte Analyte Analyte Analyte Analyte Analyte
QC Analyte Ana1yte Analyte Analyte Analyte Analyte Analyte
Qc Analyte
Analyte Analyte Analyte Analyte Analyte Analyte Analyte Standard
Std cone
RT
6.938 6.938
6.927 6.926 6.952 6.940 6.938 6.927 6.939 6.926 6.926 6.926 6.926 6.927
246.10 246.10 246.10 246.10 246.10 246.10 246.10 246.10 246.10 246.10 246.10
6.925 6.927
6.939 6.926 6.938 6.928 6.927 6.926 6.927 6.926 6.926 6.926
246.10
6.951 6.951 6.953 6.953 6.941 6.951
246.10
6.952 6.951 6.962 6.953 6.951 6.951
246.10
6.948 6.964 6.951 6.951 6.962 6.939
246.10
6.961 6.962 6.965 6.963 6.962 6.954
246.10
6.951 6.962 6.949 6.951 6.962 6.947
246.10
6.951 6.950 6.952 6.950 6.954 6.939
6.950 6.952 6.938
246.10
6.941 6.935
Are*
2930 2763
m b 8-v F l a g ~ lMod co
257.53 242.81
5 bb -1 bb
2812 3382
3449 3103 3256 2928 2648 2677 2711 2632 2501 2412
247.17 291.23 303.13 272.69 286.20 257.37 232.71 235.32 238.30 231.34 220.31 211.97
0 bb 21 bb 23 bb 11 bb 16 bb
5 bb -5 bb - 4 b~ b . -3 bb -6 bb -10 bb -14 bb
2702
3155 3245 2865 3119 2791 2618 2621 2590 2611 2488 2506
237.45 277.28 285.19 251.77 274.08 245.25 230.10 230.34 227.66 229.43 218.68 220.25
-4 bb 13 bb 16 bb
2 bb 11 bb -0 bb -7 bb -6 bb -7 bb -7 bb -11 bb -11 bb
3530 3521 3549 3518 3496 2489
310.26 309.43 311.94 309.20 307.26 218.76
2 4 bb 24 bb 25 bb 2 4 bb 2 3 bb -11bb
3489 3477 3270 3371 3432 2527
306.60 305.55 287.41 296.83 301.61 222.08
23 bb 22 bb 15 bb 19 bb 21 bb
-10 bh
3519 3536 3401 3448 3526 2535
309.27 310.79 298.93 303.03 309.91 222.78
2 4 bb 2 4 bb 20 bh 21 bb 24 bb -9 bb
3578 3434 3445 3409 3431 2461
314.44
301.76 302.81 299.65 301.57 216.30
26 bb
21 bb 21 bb 20 bb
21 bh -12 bb
3345 3773 7994 4614 4514 3079
294.00 331.60 702.58 405.48 396.76 270.57
18 bb 33 bb 181 bb 62 bb 59 bb 10 bb
4590 4334 4403 4276 4318 2941
403.42 380.88 386.94 375.79 379.46 258.51
61 bh 52 bb 55 bb 50 bb 5 2 bh
5 bb
4117 4161 3976
361.83 365.66 349.41
45 bb 46 bb 40 bb
2849 3166
250.36 278.28
2 bb 13 bb
cmc I / h / O (
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Quantify C m v o u n d S u m ~ r yReport Pros Msorb/rmrorb E00-1011
8-1.
List:
Last mxlified:
Method:
Last mdified:
Job code:
C:\~~s1~\~0~D020199.pr0\8~1~D8\9001120a Thu Jan 11 01:00:06 2001 C:\~lsl~\loup020199.p~O\M~t~B\.001120 wed NOV 22 06:41:05 2000
Printed:
Thu Jan 11 07:03:22 2001
I; uame 90 ~00120-090 91 000120-091 92 ~00120-092 93 ~00120-093 94 ~00120-094 95 s00120~095 96 ~00120-096 91 ~00120-091 98 s00120~098
99 ~00120-099 100 s00120~100 101 n00120-101 102 900120~102
study no
E00-1311 E00-1311
EOO-1311 EOO-1311 E00-1311
E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311
Samplelist Text
4.95 ppb PFOS 00002-86-03, Aliq. 11-03-00 HLA 9.9 ppb PPOS 00002-86-04, Aliq. 11-03-00 MLA
24.15 ppb PFOS 00002-86-05, Aliq. 11-03-00 M U 39.6 ppb PFOS 00002-86-06, Aliq. 11-03-00 MLA 49.5 ppb PFOS 00002-86-01 Aliq. 11-03-00 M U
74.26 ppb PFOS 00002-86-08, Aliq. 11-03-00 MLA 99.2 ppb PFOS 00002-86-09. Aliq. 11-03-00 MLA 241.9 ppb PFOS 00002-86-10. Aliq. 11-03-00 MLA 495.9 ppb PFOS 00002-86-12 Aliq. 11-03-00 MLA 991.78 ppb PFOS 00002-86-13, eliq. 11-03-00 MLA MeOH Blank, TN-A-4715, Aliq. 11/16/00
MeOH Blank, TN-A-4115. Aliq. 11/16/00 MeOH Blank. TN-A-4115. Aliq. 11/16/00
-0
standard Standard
Standard Standard Standard
Standard Standard Standard Standard Standard Analyte AKlLna1yte Analyte
std cone 246.10 246.10 246.10 246.10 246.10
246.10 246.10 246.10 246.10 246.10
RT 6.938 6.931 6.938 6.931 6.936
6.938 6.936 6.931 6.937 6.925
-ea 3315 2919 3231 2840 2615
2116 2669 2317 2568 2460
vvb %Dav Flags Mod Co 291.36 18 bb 261.80 6 bb 2 8 3 . 9 8 15 bb 249.60 1 bb
235.11 -4 bb 238.13 -3 bb 234.51 -5 bb 208.93 -15 bb 225.66 - 8 bb 216.11 -12 bb
SOUP 020199: mantitilted and printed by CMC On 01/11/01
3M Environmental Laboratory
C b 7 C ( / I ( /o(
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huntify c w o u n d sumnary Report PFOS Adsorb/Dasorb Study, L C W Inst-t:
Tuokar (LA052)
S a q l a List: c:\HnssLYNx\Daoatur.PRO\Saql&B\t010122
- L a s t r o d r f i e d : Man Jan 22 15:03:42 2001
kkulod:
C : \ H n s S L Y N x \ ~ ~ ~ t u r . ~ ~ ~ ~ \ WP FFOOS S
Last modxfied: Wad Jan 24 06:53:49 2001
Job Code:
hinted:
' W e d Jan 24 07:06:18 2001
co&
1: PMS(409)
I N-
S-ldist Text
RT
kea
Rnspons.
ppb F l a g s
1 t010122~OOl MeOH Blank, TN-A-4710, Aliq. 12/04/00
0
2 t010122~002 MeOH Blank, TN-A-4740, Aliq. 12/04/00.
6.471
1418177
0.000
0.00 b~b-
3 t010122-003
1000 ppb PFOS 00002-104-13
6.518 5443742 19342.259 1092.32 bb
9
4 t010122-004
1000 ppb PFOS 00002-104-13
6.494
4872953
17296.191
917.26 bb
-2
5 t010122-005 MeOH Blank, TN-A-1740. Aliq. 12/04/00
6.302
666738
0.000
0.00 bb
6 t010122-006 MeOH Blank, TN-A-1710, Aliq. 12/01/00
6.278
188374
0.000
0.00 bb
7 tO10122-007 MeOH Blank, TN-A-4710, Aliq. 12/04/00
6.304
163484
0.000
0.00 bb
8 t010122~008 0 ppb FC Mix 00002-104-01
6.278
117782
277.506
2 . 8 5 bb
9 t010122~009 2 . 5 ppb FC Mix 00002-101-02
6.351
135145
342.973
6.66 bb
167
10 t010122~010 5 ppb FC Mix 00002-104-03
6.529
161293
425.429
11.46 bb
129
11 t010122~011 10 ppb FC Mix 00002-104-04
6.603
196372
539.114
18.07 bb
81
12 t010122-012 25 ppb FC Mix 00002-101-05
6.467
266693
820.039
34.41 bb
38
13 t010122-013 40 ppb PC Mix 00002-101-06
6.565
338161
1459.014
71.53 bb
79
14 t010122-011 50 ppb FC Mix 00002-101-07
6.483
131898
1818.543
92.39 bb
85
15 t010122 015 75 ppb FC Mix 00002-101-08
6,423
513753
1730.299
87.27 bb
16
100 ppb FC Mix 00002-104-09
6.531
594588
1936.961
99.26 bb
-1
250 ppb FC Mix 00002-104-10
6.337
1275366
~~
1921.492
271.87 b-~b
9
500 ppb FC Mix 00002-104-11
6.277 2007741
9491.826
534.29 bb
7
750 ppb FC Mix 00002-104-12
6.457
2763803
13604.815
768.53 bb
2
1000 ppb FC Mix 00002-104-13
6.556
3645079 17205.562
972.14 bb
-3
21 t010122~021 MeOH Blank, TN-A-4740, Aliq. 12/01/00
6.423
131577
0.000
0.00 bb
22 to10122 022 MeOH Blank, TN-A-1740. Aliq. 12/04/00
6.507
129156
0.000
0.00 bb
23 t0101221023 MeOH Blank, TN-A-1740, Aliq. 12/04/00
6.217
112678
0.000
0.00 bb
24 t010122-021
0 ppb FC Mix 00002-104-01
6.266
107071
252.335
1.39 bb
25 t010122-025 2 . 5 ppb FC Mix 00002-104-02
6.242
127936
303.081
4.31 bbX
74
26 t010122-026 5 ppb FC Mix 00002-104-03
6.241
141180
344.029
6.72 bbX
34
27 t010122-027
10 ppb FC Mix 00002-104-01
6.212
174501
415.631
10.89 bbX
9
28 t010122-028 25 ppb FC Mix 00002-104-05
6.292
278888
692.659
27.00 MU
8
b
29 tOlOl22 029 1 0 ppb FC Mix 00002-104-06
6.278
388285
944.455
41.64 MU
4
b
30 t0101221030 50 ppb FC Mix 00002-104-07
6.253
146576
1120.035
51.84 hN
1
b
31 t010122-031 75 ppb FC Mix 00002-104-08
6.212
570014
1520.355
75.09 MU
O
b
32 t010122-032 100 ppb FC Mix 00002-104-09
6.228
744606
2028.656
104.58
5
b
3 3 t010122-033 2 5 0 ppb FC Mix 00002-104-10
6.195
1386363
4620.568
254.51 bb
2
31 t010122-034 500 ppb FC Mix 00002-104-11
6.269
500.86 bb
0
35 tOlOl22-035 750 ppb FC Mix 00002-101-12
6.252
789.27 bb
5
36 t010122-036 1000 ppb FC Mix 00002-101-13
6.242
1033.68 bb
3
37 t010122-037 MeOH Blank, TN-A-1740, Aliq. 12/01/00
6.289
0.00 bb
3 8 t010122-038 MeOH Blank, TN-A-4740. Aliq. 12/04/00
6.192
124131
0.000
0.00 bb
39 t010122-039 MeOH Blank, TN-A-4740. Aliq. 12/01/00
6.278
117983
0.000
0.00 bb
40 t010122-040 E00-1311-2001, Oug PFOS, control,l/22/01.. 6.240
118400
~~~
269.982
2 . 4 2 bb
41 t010122-041 EOO-1311-2002. Oug PFOS, contro1,1/22/01.. 6.241
120731
283.170
3.18 bb
42 tOlOl22-042 E00-1311-2003, Oug PFOS, control,l/22/01.. 6.241
120322
275.218
2.72 bb
43 t010122-043
E00-1311-2003ms, Oug PFOS, control,l/22/.. 6.204
1168835
3577.816
194.28 bb
44 t010122-014 EOO-1311-2004. 0.75ug PFOS, control,1/22.. 6.205
813735
1879.338
95.92 bb
45 t010122-045 250 ppb FC Mix 00002-101-10
6.336 1424150
4176.378
228.87 bb
-8
1 6 t010122 046 MeOH Blank, TN-A-4740, Aliq. 12/04/00
6.172
135069
0.000
0.00 bb
MeOH Blank, TN-A-4710, Aliq. 12/01/00
6.412
137576
0.000
0.00 bb
EOO-1311-2005. 0 . 7 5 ~ 9PFOS, control,l/22.. 6.459
813677
1895.496
96.85 bb
800-1311-2006. 0.75ug PFOS, control,l/22.. 6.542
893031
1870.228
95.39 bb
E00-1311-2006ms, 0.75~9 PFOS, control,l/.. 6.325
1715684
5961.233
331.91 bb
E00-1311-2007. 7.5ug PFOS, control,l/22/.. 6.338 5378311 11195.194
802.01 bb
E00-1311-2008, 7.5~9PFOS, control,l/22/.. 6.348 4162893 10426.933
587.71 bb
. . 2 5 0 ppb FC Mix 00002-104-10
MeON B l a n k , TN-A-4740. Aliq. 12/04/00
6.264
1217079
4483.933
2'16.63 bb
-1
6.386
136322
0.000
0 . 0 0 bb
MeOH Blank. TN-A-4710. Alia. 12/01'/00
6.433
139432
0.000
0.00 bb
E00-1311-2009. 7.5ug PFOS, control,l/22/.. 6.241 4515612 11893.660
671.30 bb
E00-1311--2009ms, 7.5ug PFOS, control.ll2..
6.508
4776306 13117.657
757.91 bb
EOO-1311-2010. Oug PFOS, Clay,1/22/01 M C 6.146
159367
358.722
7.58 bb
E00-1311-2011, Oug PFOS, Clay,1/22/01 M C 6.386
136483
291.362
3.66 bb
EOO-1311--2012. Oug PFOS, Clay, 1/22/01 M C 6.314
132405
278.898
2.93 bb
2 5 0 ppb FC Mix 00002-101-10
6.298 1319212
4478.412
216.31 bb
-1
62 t010122-062 MeOH Blank, TN-A-4740. Aliq. 12/04/00
6.410
136755
0.000
0.00 bb
63 t0101221063 64 t010122-064 65 L010122_065
_ . M~ s~ OH~~B~ ~ lan.~ k.. TN-A-1740., ~Al-i-o.> 12./04~/.00
E00-1311--2012ms, Oug PFOS, Clay,1/22/01 E00-1311-2013, 0 . 7 5 ~ 9PFOS, Clsy,1/22/01..
6.350 6.206 6.212
138103 1.2-29..867 708722
0.000 3235.341 1321.360
0.00 bb 174.17 bb
63.71 bb
66 tO10122-066 EOO-1311-2014. 0.75~9PFOS, Clay,1/22/01.. 6.253
808319
1521.178
75.13 bb
67 t010122 067 68 tO10122-068
. EOO-1311-2015. 0.75~9 PFOS, Clay,l/22/01..
~oo-i3ii-2oi5ms, o.75ug PFOS, ciay.i/22/.
6.254 6.231
814123 1813512
1514.113 4986.936
71.71 bb 275.64 bb
250 ppb FC nix 00002-101-10
6.336 1423318
1035.575
220.74 bb
-12
MeOH Blank, TN-A-4710, Aliq. 12/04/00
6.579
141495
0.000
0.00 bb
MeOH Blank, TN-A-4740, Aliq, 12/04/00
.. EOO-l311-2016. 7.5~9PFOS. Clay,1/22/01 .. EOO-1311-2017, 7.5ug PFOS, Clay,1/22/01 .. E00-1311-2018, 7.5ug PFOS, Clay,1/22/01
E00-1311-2018m. 7 . 5 ~ 9 PFOS, Clay,l/ZZ/O..
6.423 6.312 6.361 6.289 6.331
139217 4604516 5217586 3567801 5013902
0.000 11133.142 izoag.igo
8221.149 15883.856
0.00 bb 627.98 bb 682.43 bb 161.56 bb 897.56 bb
EOO-1311-2019. Oug PFOS, Sediment,l/22/0.. 6.403
167395
318.587
6.99 bb
77 t010122-077 2 5 0 ppb FC Mix 00002-104-10
6.251
1438106
4448.547
211.58 bb
-2
MeOH Blank, TN-A-4740, Aliq. 12/04/00
6.576
114134
0.000
0.00 bb
MeOH Blank, TN-A-1740, Aliq. 12/01/00
6.183
149923
0.000
0.00 bb
E00-1311-2020, Oug PFOS, sediment,1/22/0.. 6.568
173961
365.458
8.03 bb
E00-1311-2021. Oug PFOS, Sediment,l/ZZ/O.. 6.409
168116
374.703
8.51 bb
E00-1311-202lms. Oug PFOS, Sediment,l/22.. 6.388 1139314
3540.157
192.10 bb
Quantitated and P r i n t e d by Qx: on 24 Jan 0 1 Study I E00-1311
page 1
3M Environmental Laboratory
Page 498 of 703
BACK TO MAIN
PIlantify Corpouncl S - q
Wrt
PFOS Adsorb/Deaorb S t u d y , LC/bfS h - t :
T u c k e r (LA052)
Smple L i s t : C:\MlssLm\hatur.PRO\Smpl~B\t010122
- Last modified: k n Jan 22 15:03:42 2001
New:
c:\MlssLm\hatur.m~thDB\Pws
L a s t d f i s d : Wed Jan 24 06:53:49 2001
THPPOS
Job C&:
Printed:
W d Jan 24 07:06:18 2001
C
A 1: PFoS(499)
.I N-
Sanplelirt Text
83 t010122-083
600-1311-2022, 0.75~9 PFOS. Sediment,l/2..
84 t010122-084
600-1311-2023. 0.75~9 PFOS, Sedirnent.ll2..
85 t010122-085
250 ppb FC Mix 00002-104-10
86 t010122-086
MeOH Blank, TN-A-4740. Aliq. 12/04/00
87 t010122-087
MeOH Blank, TN-A-4740, Aliq. 12/04/00
88 t010122-088
BOO-1311-2024. 0.75119 PFOS, Sedirnent,l/L..
89 tO10122-089
E00-1311-2024ms. 0.75ug FFOS, Sediment.1..
90 t010122-090
E00-1311-2025, 7 . 5 ~ 9 PFOS, Sediment,l/22..
91 t010122-091
800-1311-2026. 7 . 5 ~ 9 PFOS, Sediment,l/ZZ..
92 t010122-092
E00-1311-2027, 7.5ug PFOS, Sedinent,l/22..
93 to10122 093 250 ppb FC Mix 00002-104-10
MeOH Blank, TN-A-4740. Aliq. 12/04/00
MeOH Blank, TN-A-4740, Aliq. 12/04/00
B00-1311-2027~, 7 . 5 ~ 9 FFOS, Sediment,l/..
250 ppb FC Mix 00002-104-10
MeOH Blank, TN-A-4740, Aliq. 12/04/00
99 t0101221099 MeOH Blank, TN-A-4740. Aliq. 12/04/00
100 t010122~100 MeOH Blank, TN-A-4740, Aliq. 12/04/00
101 to1.012~ 2 10~ 1 .~ 0 ppb FC Mix 00002-104-01
102 t010122~102 2 . 5 ppb FC Mix 00002-104-02
103 t010122-103
5 ppb FC Mix 00002-104-03
104 t010122-104
10 ppb FC Mix 00002-104-04
105 t010122~105 25 ppb PC Mix 00002-104-05
106 t010122 106 40 ppb FC Mix 00002-104-06
107 t010122~107 50 ppb FC Mix 00002-104-07
108 t010122-108
75 ppb FC nix 00002-104-08
109 t010122-109
100 ppb FC Mix 00002-104-09
110 t010122~110 250 ppb FC Mix 00002-104-10
111 t010122~111 500 ppb FC M i x 00002-104-11
112 t010122~112 1 5 0 ppb FC Mix 00002-104-12
113 t010122-113
1000 ppb FC Hix 00002-104-13
114 t010122-114 MeOH Blank, TN-A-4740. Aliq. 12/04/00
115 t010122-115
MeOH Blank, TN-A-4740, Aliq. 12/04/00
RT 6.252 6.315 6.396 6.577 6.326 6.216 6.326 6.542 6.291 6.362 6,241 6.434 6.518 6.372 6.543 6.290 6.443 6.241 6.546
6.278 6.309 6.452 6.186 6.460 6.326 6.313 6.376 6.314 6.229 6.472 6.469 6.529 6.436
Area 1026372
866060 1372822
150111 142252 813373 1607159 4488760 4178850 4349355 1303467 148641 152985 5663187 1365566 149480 155378 144563 164749 166221 181623 212615 292832 353915 439196 583060 690084 1303673 2036643 3110621 3415199 185076 151445
Resppons. 2118.433 1772.460 3983.564
0.000 0.000 1752.210 4550,4 69 10086.002 10795.713 11084.279 4587.499 0.000 0.000 16464.124 3642.34 0 0.000 0.000 0.000 346.252 399.780 436.052 499.891 689.623 84 1.984 11 62.333 1595.061 1977.399 4519.670 8986.881 12414.655 17167.793 0.000 0.000
ppb 109.78
89.72 217.73
0.00 0.00 88.54 250.93 568.24 608.75 625.20 252.60 0.00 0.00 930.32 198.01 0.00 0.00 0.00 6.85 9.97 12.08 15.79 26.82 35.68 54.30 79.42 101.61 248.69 505.41 700.94 970.01 0.00 0.00
Flags bb bb bb bb bb bb bb bb MM bb bb bb bb bb bb bb bb bb bb bbX bbX bbX bb MM bb bb bb bb bb MM bb bb bb
*De-, -13
1
299 142
58 7
-3
d Comment b
Guantitatsd and P r i n t e d by CXC on 2 4 Jan 01 S t u d y # E00-1311
3M Environmental Laboratory
BACK TO MAIN
Quantxfy Corpovnd Svmcary b p r t PFOS AdsorbIDesorb Study, Lclsas Instrmwnt: Tucker (LAO52)
s q 1 e L1St: Last d f z e d : . Mesthod: Last d f r e d : Job Code:
c:wsLYNx\D~atur.PRO\SanplaDB\tOl0122
- h b n Jam 22 15:03:42 2001
C:\MnSSL~\Dooatur.PRO~U1DB\PFOS
TWFOS
Wed Jan 24 06:53:49 2001
Prmtad:
W d Jan 24 07:06:18 2001
Conp'md 2: I.S. (TH-PFOS) (427)
I Name
1
to1.0~ 122
001 ~
2 t010122~002
3 t010122-003
4 t010122-004
5 t010122 005
6 t0101221006
7 t010122 007
12 t010122~012 13 t010122~013 14 tOlOl22 014 15 t0101221015 16 t010122-016 17 t010122-017 18 t010122~018 19 t010122-019 20 t010122~020 21 tOlOl2Z 021 22 t010122~022 23 t010122-023 24 t010122-024 25 t010122-025 26 t010122-026 27 t010122-027 28 t010122-028 29 t010122-029 30 t010122-030 31 t010122-031 32 t010122-032 33 t010122-033 31 t010122-034 35 t010122-035 36 t010122-036 37 tO10122-037 38 to10122 038
44 t0101221044 45 t010122-045 46 t0101222-0466 47 t010122I-047 48 t010122-048 49 t010122-049 50 t010122~050 51 t0o10122-051 52 t010112222-005522 53 t010122-053
59 t0101221059 60 tO10122-060 61 t010122-061 62 t010122-062 63 t010122-063 64 t010122-064 65 t010122-065 66 tO10122-066 67 t010122-067 68 t010122-058 69 t010122-069 70 t010122-070 71 t010122-071 72 t010122-072 73 t010122-073 74 t010122-074 75 t010122-075 76 t010122-076 77 t010122-077 78 t010122-078 19 t010122-079 80 t010122~080 81 t010122~081 82 t010122-082
Sanpldist Toit MeOH Blank, TN-A-4740, Aliq. 12/04/00 MeOH Blank, TN-A-4740, Aliq. 12/04/00 1000 ppb FFOS 00002-104-13 1000 ppb PFOS 00002-104-13 MeOH Blank, TN-A-4740. Aliq. 12/04/00 MeOH Blank, TN-A-4740, Aliq. 12/04/00 MeOH Blank, TN-A-4740. Aliq. 12/04/00 0 ppb FC Mix 00002-104-01 2.5 ppb FC Mix 00002-104-02 5 ppb FC Mix 00002-104-03 10 ppb FC Mix 00002-104-04 2 5 ppb FC Mix 00002-104-05 40 ppb FC Mix 00002-104-06 50 ppb FC Mix 00002-104-07
75 ppb FC Mix 00002-104-08 100 ppb FC Mix 00002-104-09 250 ppb FC Mix 00002-104-10 500 ppb FC Mix 00002-104-11 750 ppb FC Mix 00002-104-12 1000 ppb PC Mix 00002-104-13 MeOH Blank, TN-A-4740. Aliq. lZl04lOO MeOH Blank, TN-A-4740, Aliq. 12/04/00 MeOH Blank, TN-A-4740, Aliq. 12/04/00 0 ppb FC Mix 00002-104-01 2 . 5 ppb FC Mix 00002-104-02 5 ppb FC Mix 00002-104-03 10 ppb PC Mix 00002-104-04 25 ppb FC Mix 00002-104-05 40 ppb FC Mix 00002-104-06 50 ppb FC Mix 00002-104-07 75 ppb FC Mix 00002-104-08 100 ppb FC Mix 00002-104-09 250 ppb FC Mix 00002-104-10 500 ppb FC Mix 00002-104-11 750 ppb FC Mix 00002-104-12 1000 ppb FC Mix 00002-104-13 MeOH Blank, TN-A-4740, Aliq. 12/04/00 MeOH Blank. TN-A-1740, Aliq. 12/04/00 MeOH Blank, TN-A-4740. Aliq. 12/04/00 E00-1311-2001. Oug PFOS, control,ll22/01.. E00-1311-2002, OUg PFOS, control,l/22/0l.. E00-1311-2003, Oug PFOS. control,l/22/01.. 600-1311-2003ms. Oug PFOS, control,l/22/.. 600-1311-2004. 0.75ug PFOS, control.1122.. 250 ppb FC Mix 00002-104-10 MeOH Blank, TN-A-4740, Aliq. 12/04/00 MeOH Blank, TN-A-4740, Aliq. 12/04/00 E00-1311-2005, 0.75ug PFOS, control,1/22.. E00-1311-2006. 0.75~9 PFOS, control,l/22.. E00-1311-2006rrm, 0 . 7 5 ~ 9PFOS, control,l/.. 600-1311-2007. 7.519 PFOS, control,l/22/.. E00-1311-2008, 7 . 5 ~ 9 PFOS, control,l/22/.. 250 DDb FC Mix 00002-104-10 M e o H ' i l a n k , TN-A-4740, Aliq. 12/01/00 NeOH Blank, TN-A-4740. Aliq. 12/04/00 BOO-1311-2009. 7 . 5 ~PF~OS, control,l/22/.. 600-1311-2009rrm. 7 . 5 ~ 9 PFOS, control, 112..
600-1311-2010. Oug PFOS, Clay,1/22/01 M C E00-1311-2011, Oug PFOS, Clay,l/ZZ/Ol M C E00-1311-2012, Oug PFOS, Clay,l/22/01 M C 250 ppb FC Mix 00002-104-10 MeOH Blank, TN-A-4740, Aliq. 12/04/00
.. MeOH Blank. TN-A-4740, Aliq. 12/04/00
E00-1311-2012ms, Oug FFOS, Clay,l/22/01 E00-1311-2013, 0.75ug PFOS, Clay,l/22/01.. GOO-1311-2014, 0.75ug PFOS, Clay,l/22/01.. GOO-1311-2015, 0.75ug PFOS, Clay,1/22/01.. E00-1311--2015ma, 0.75~9 PFOS, Clay,1/22/.. 250 ppb FC Mix 00002-104-10 MeOH Blank, TN-A-4740. Aliq. 12/04/00 MeOH Blank, TN-A-4740, Aliq. 12/04/00
.. 800-1311-2016. 7 . 5 ~ 9 PFOS, Clay,1/22/01
.. GOO-1311-2017. 7 . 5 ~ 9 PFOS, Clay,1122/01 .. GOO-1311-2018, 7 . 5 ~ 9 PFOS, Clay,1/22/01
E00-1311-2018ms, 7.5ug FFOS, Clay,l/22/0.. GOO-1311-2019, Oug FFOS, Sediment,l/22/0.. 250 ppb FC Mix 00002-104-10 MeOH Blank, TN-A-4740. Aliq. 12/04/00 MeOH Blank, TN-A-4740, Aliq. 12/04/00 E00-1311-2020, Oug PFOS, Sediment,l/ZZ/O.. 600-1311-2021. Oug PFOS, Sediment.1/22/0.. B00-1311-2021ms, Oug PFOS, Sediment.l/ZL..
RT
6.386 6.361 6.386 6.158 6.170 6.208 6.181 6.206 6.289 6.374 6.395 6.360 6.411 6.255 6.313 6.289 6.229 6.397 6.423 6.351
6.157 6.169 6.158 6.169 6.151 6.183 6.182 6.181 6.193 6.168 6.147 6.185 6.180 6.182 6.193 6.132 6.182 6.155 6.169 6.169 6.156 6.145 6.216 6.255 6.243 6.255 6.421 6.277 6.277 6.276 6.215
6.372 6.181 6.292 6.373 6.314 6.242 6.250 6.350
6.134 6.170 6.180 6.170 6.159 6.204
6.252 6.301 6.241 6.274 6.319 6.202 6.311 6.399 6.291 6.325 6.327
*ea 0
3928 70361 70433
2936 1130 1051 106107 98510 94782 91062 81305 57943 59374 74229 76742 64786 52881 50787 52964 694
0 756 106080 105530 104773 104963 100658 102780 99679 93730 91761 75010 64556 55314 50107 727 1541 1224 109637 106589 109297 81672 108248 85250 811 744 107317 119375 71916 94721 99811 71203
0
530 94916 88993 111066 117108 118685 73643
613 0
95034 133786 132844 134396
92417 88175
0 0 103397 107898 108495 78915 120053 80836 623 547 118677 112367 80456
3928.481 70360.727 70432.680
2936.239 1130.456 1051.464 106107.367 98510.055 94782.305 91062.211 81304.906 57913.418 59374.168 74228.898 76742.336 64785.551 52880.7ai 50787.223 52963.672
694.074
755.682 106080.023 105529.836 104773.352 104963.086 100658.469 102780.266 99678.969 93730.359
91761.063 75010.414 64555.895 55314.195 50107.137
727.358 1544 .lSI
~~
1224.169 109637.445 106589.008 109296.547
81672.383 108247.570 85250.313
810.623 743.885 107317.102 119374.625 71915.523 94720.633 99811.055 71203.055
529.970 94916.367 a899z.914 111065.523 117107.781 118685.422 73642.852
612.897
95033.773 133785.656 132844.172 134395.797
92417.078 88175.039
103397.258 107897.750 108494.609 78915.063 120052.766 80835.727
623.047 547.122 118677.195 112366.523 80456.438
ppb Flags 6D.v od C-t
11.28 bb
202.11 bb
-19
202.32 bb
-19
8.43 bb
3.25 bb
3.02 bb
304.80 bb
22
282.97 hb
13
272.27 bb
9
261.58 bb
5
233.55 bb
-7
166.44 bb
-33
170.55 bb
-32
213.23 bb
-15
220.45 bb
-12
186.10 bb
-26
151.90 bb
-39
145.89 bb
-42
152.14 bb
-39
1.99 bb
2.17 bb
304.72 bb
22
303.14 bb
21
300.97 bb
20
301.51 bb
21
289.15 bb
16
295.24 bb
18
286.33 bb
15
269.24 bb
8
263.59 bb
5
215.47 bb
-14
185.44 bb
-26
158.89 bb
-36
143.93 bb
-42
2.09 bb
4...P.P. b-b
3.52 bb
314.94 bb
26
306.18 bb
22
313.96 bb
26
234.61 bb
-6
310.95 bb
24
244.88 bb
-2
2.33 bb
2.14 bb
308.27 bb
23
342.91 bb
37
206.58 bb
-17
272.09 bb
9
286.71 bb
15
204.53 bb
-18
1.52 bb
272.65 bb
9
255.64 bb
2
319.04 bb
28
336.40 bb
35
340.93 bb
36
211.54 bb
-15
1.76 bb
272.99 bb
9
384.30 bb
54
381.60 bb
53
386.06 bb
54
265.47 bb
6
253.29 bb
191
297.01 bb
309.94 bb
24
311.66 bb
25
226.69 bb
-9
344.86 bb
38
232.20 bb
-7
1.79 bb
1.57 bb
340.90 bb
36
322.78 bb
29
231.11 bb
-8
Quantitated and Printed by (1wc on 24 Jan 01 Study 0 E00-1311
Paga 3
3M Environmental Laboratory
Page 500 of 703
BACK TO MAIN
pllantafy Compound S - r y
&port
PFOS Adsorblossorb Study. L C W Inst-t:
Tucker (LA0521
Sample L i s t : bst m l f i s d : Method: Last nuolfred: Job Code:
C:\aansSLYNx\D~atur.~\Smpl~B\tOlOl22
Xon Jan 22 15:03:42 2001 C:\aanssLm\Dsoatur.PRO\WstMB\PFOS
-
RlpFos
Wed Jan 24 06:53:49 2001
Printed:
W a d Jan 24 07:06:16 2001
C&
2: I.S. (TH-PFOS)(427)
I N-
Samplelist T e x t
11l
Aeea
ppb Flags %DN od c m t
a3 ~ o i o m - 0 8 3 800-1311-2022, 0.75~9 PFOS, sediment,1/2.. 6.180
121124 12112'3.969
347.93 bb
39
84 t010122-084 EOO-1311-2023. 0 . 7 5 ~ 9 PFOS, Sedirnent,l/Z.. 6.182
122155 122155.006
350.90 bb
40
65 tOlO122-085 250 ppb FC Mix 00002-104-10
6.240
66155 86155.375
247.48 bb
-1
86 t010122 086 MeOH Blank, TN-A-4740. Aliq. 12104100
0
87 t0101221087 HeOH Blank, TN-A-4740. Aliq. 12/04/00
7.181
24442 24442,334
70.21 bb
88 to10122 088 EOO-1311-2024. 0 . 7 5 ~ 9PFOS, Sediment.ll2.. 6.168
116050 116049.539
3 3 3 . 3 6 bb
33
89 C010122~089 E00-1311-2024ms, 0.75~9 PFOS, Sediment.1..
6.193
88141 88141.375
253.19 bb
1
90 t010122-090 BOO-1311-2025, 7.519 PFOS, Sediment,l/22.. 6.325
111262 111262.109
319.60 bb
28
91 t010122-091
E00-1311-2026, 7.5ug PFOS, Sediment,1/22.. 6.230
96771 96771.055
277.90 bb
11
92 to10122 092 E00-1311-2027, 7 . 5 ~ 9 PFOS, Sediment.1122.. 6.302
98097 98097.375
281.79 bb
13
93 t010122I093 250 ppb FC Mix 00002-101-10
6.193
71034 71033.633
204.05 bb
-18
94 t010122 094 HeOH Blank, TN-A-4740, Aliq. 12/04/00
0
95 C010122I095 HeOH Blank, TN-A-4740, Aliq. 12/04/00
0
96 t010122-096 600-1311-2027ms. 7 . 5 ~ 9 PFOS. Sediment.l/.. 6.216
85993 85992.a36
241.02 bb
-1
97 t010122_097 250 ppb FC Mix 00002-104-10
6.386
93729 93728.602
269.24 bb
8
98 tO10122-098 MeOH Blank, TN-A-4740, Aliq. 12/04/00
6.242
691
690.849
1.99 bb
99 to10122 099 MeOH Blank, TN-A-4740, Aliq. 12/04/00
6.363
560
560.268
1.61 bb
100 t010122~100 HeOH Blank, TN-A-4740, Aliq. 12/04/00
6.192
661
660.914
1.90 bb
101 t010122~101 0 ppb FC Mix 00002-104-01
6.389
116951 116951.328
341.69 bb
37
102 t010122~102 2.5 ppb FC Mix 00002-104-02
6.217
103945 103945.063
298.59 bb
19
103 t010122-103 5 ppb PC Mix 00002-104-03
6.249
104129 101129.118
299.12 bb
20
104 t010122~104 10 ppb FC Mia 00002-104-04
6.367
106331 106330.531
305.44 bb
22
105 t010122-105 25 ppb FC Mia 00002-104-05
6.390
106157 106156.602
304.94 bb
22
106 t010122-106 40 ppb FC Mia 00002-104-06
6.232
105084 105083.742
301.86 bb
21
107 t010122-107 50 ppb PC Mix 00002-104-07
6.266
94464 94164.391
271.35 bb
9
I
108 t010122-108 109 t010122-109
75 ppb FC Mix 00002-104-08 100 ppb FC Mix 00002-104-09
6.253
91385 91385.258
262.51 bb
5
6.316
87206 87246.352
250.62 bb
0
110 t010122~110 250 ppb FC Mix 00002-104-10
6.266
72111 72111.070
207.11 bb
-17
111 t010122~111 500 ppb FC Mix 00002-104-11
6.181
56656 56656.000
162.75 bb
-35
112 to10122 112 ~~
750 ppb FC Mix 00002-104-12
6.231
62640 62640.102
179.94 bb
-28
113 t.010122~113 1000 ppb FC Mix 00002-104-13
6.385
49133 49732.637
142.66 bb
-43
111 t010122-114 MeOH Blank, TN-A-4740, Aliq. 12/04/00
6.240
951
951.098
2.73 bb
115 t010122_115 MeOH Blank, TN-A-4740, Aliq. 12/04/00
6.363
553
552.916
1.59 M
Page 4
G u m t i t a t e d and Printed by C-lC on 2 4 Jan 01 Study M' EOO-1311
3M Environmental Laboratory
c f i c ( /3q/Ol
Page 501 of 703
BACK TO MAIN
t N-
study M Samplelist Text
1 sOO12Za-001 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
2 s00122a 002 E00-1311 991.78 ppb PFOS 00002-86-13. aliq. 11-03-00 M L A
3
~ 0 0 - 1 3 1 1991.78 ppb PFOS 00002-86-13. aliq. 11-03-00 MLA
4 r00122a~004 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
5 soo122Poo5 EOO-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
6 a00122a-006 E00-1311 0 ppb PFOS 00002-86-01, Aliq. 11-03-00 M L A
7 s00122a-007
e soouza-ooe
9 900122a-009
E00-1311 2.47ppb PFOS 00002-86-02, Aliq. 11-03-00 MLA
E00-1311 4.95 ppb PFOS 00002-86-03, Aliq. 11-03-00 MLA EOO-1311 9.9 ppb PFOS 00002-86-04, Aliq. 11-03-00 MLA
10 s00122a~010 E00-1311 24.75 ppb PFOS 0 0 0 0 2 - 8 6 - 0 5 , Aliq. 11-03-00 MLA
112 s00l22a~0ll E00-1311 39.6 ppb PFOS 00002-86-06, Aliq. 11-03-00 MLA
so01229012 E00-1311 49.5 ppb PFOS 00002-86-07 Aliq. 11-03-00 MLA
13 ~ 0 0 1 2 2 ~ 0 1 3Eoo-1311 74.26 ppb PFOS 0 0 0 0 2 - 8 6 - 0 8 , Aliq. 11-03-00 MLA
14 s00122a~014 E00-1311 99.2 ppb PFOS 00002-86-09, Aliq. 11-03-00 M L A
156 sO0122a-015 E00-1311 247.9 ppb PFOS 00002-86-10. Alip. 11-03-00 MLA
s00122a-016 E00-1311 495.9 ppb PFOS 00002-86-12 Aliq. 11-03-00 HLA
1is7 s00122a~017 E00-1311 991.78 ppb PFOS 00002-86-13. aliq. 11-03-00 HLA sooiz2a-oie E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
19 sOOl22a-019 E00-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00
20 s00122a-020 E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
21 so0122a-021 E00-1311 0 ppb PFOS 00002-86-01. Aliq. 11-03-00 MLA
232 s00122a~022 E00-1311 2.47ppb PFOS 00002-86-02. Aliq. 11-03-00 MLA
a00122a-023 E00-1311 4.95 ppb PFOS 00002-86-03, Aliq. 11-03-00 MLA
2 4 s00122a-024 E00-1311 9.9 oob PFOS 00002-86-04. Alia. 11-03-00 MLA
2 5 sOO122a-025 EOO-1311 24.7j-ppb PFOS o o o o 2 - e ~ - o s ~ ~ A i iiqi.loi-00 MLA
26 s00122a-026 E00-1311 39.6 ppb PFOS 0 0 0 0 2 - 8 6 - 0 6 , Aliq. 11-03-00 MLA 27 r00122a-027 E00-1311 49.5 ppb PFOS 00002-86-07 Aliq. 11-03-00 MLA
298 sOO122a-028 E00-1311 74.26 ppb PFOS 00002-86-08, Aliq. 11-03-00 MLA
s00122a-029 E00-1311 99.2 ppb PFOS 00002-86-09. Aliq. 11-03-00 M I A 30 800122a-030 E00-1311 247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA
31 sOO122a-031 E00-1311 495.9 ppb PFOS 00002-86-12 Aliq. 11-03-00 MLA
32 sooi22a-a32 EOO-1311 991.78 ppb PFOS 00002-86-13, aliq. 11-03-00 MU
3 3 s00122a-033 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
354 sOOl2Za-034 s00122a-035
36 s00122a-036 37 s00122a-037
E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00 E00-1311 E00-1311-1019 24 hour, O m g i L , S2, C-2
. 800-1311 E00-1311-1020 24 hour, OmglL, S2. C-2
EOO-1311 E00-1~ 311.-~ 102~~ 1 2..4 h.o~ur~ .., O~~ mo_/.r-.. S2. C--2-
38 s00122a-038 E00-1311 E00-1311-1021 24 hour, OmglL, 92. C-2, MS 4309 sOO122a-039 E00-1311 247.9 ppb PFOS 00002-86-10. Aliq. 11-03-00 MLA
r00122a-040 EOO-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
41 s0012Za-041 E00-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00
4623 s00122a-062 E00-1311 E00-1311-1022 24 hour, O.lOmg/L, S Z . C-2
s00122a-043 E00-1311 E00-1311-1023 24 hour, O.lOmg/L. S2, C-2
4 4 s00122a-046 E00-1311 E00-1311-1024 24 hour. O.lOmg/L, S2, C-2
45 rOO122a-045
EOO-1311
EOO-l311-1024
24 ~~ h.o~ur.. 0.l~ O.m..a.l-.L..
52. C - 2
~~
MS
66 saoi22a-046 E00-1311 E00-1311-1025 24 hour, l.Omg/L, S2. C-2
487 sO0122a-047
SOo 122LO 4 e
49 s00122a-049
E00-1311 247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 HLA EOO-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00 600-1311 MeOH Blank, TN-A-4715, Alii. 11/16/00
50 s00122a-050 E00-1311 E00-1311.1026 24 hour. l.Omg/L, S 2 , C-2
51 s00122a-051 E00-1311 E00-1311.1027 24 hour, l.Omg/L. 6 2 , C-2 52 s00122a~052 EOO-1311 E00-1311-1027 2 6 hour. l.Omo/L. S2. C-2. MS
53 s00122a~053 Eoo-1311 ~ 0 0 - 1 3 i i - 1 0 ~284 hour. ami. 5 2 . c-3
54 r00122a-054 EOO-1311 E00-1311-1029 24 hour, OmilL, 5 2 . C-3 55 s00122a-055 E00-1311 247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA
56 s00122a-056 E00-1311 MeOH Blank, TN-A-47 15. Aliq. 11/18
57 s00122a-057 E00-1311 MeOH Blank, TN-A-4715.
58 so0122PO58 E00-1311 E00-1311-1030 24 hour. 59 r00122P059 E00-1311 EOO-l3ll-1030 2d hour. 60 a00122a~060 E00-1311 E00-1311-1031 24 hour.
61 s00122a~061 EOO-1311 E00-1311-1032 24 hour, O.lOG/L; S2: C - 3 632 s00122a-062 E00-1311 1100-1311.1033 24 hour. O.lOmg/L. S 2 , C-3
s00122a-063 E00-1311 ;!47.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA
64 sOo122a-064 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
65 a00122n-065 EOG-1311 MeOH Blank. TH-A-4715, Alii. 11/16/00
66 sOO122a-066 EOO-1311 E00-1311-1033 24 hour. O.lOmg/L, S Z . C-3 M S
67 s00122a-067 E00-1311 E00-1311-1034 24 hour. l.Omg/L. S2, C-3
68 7609
~ 0 0 1 2 2 ~ 0 6 eE00-1311 sOO122a-069 EOD-1311
E00-1311-1035 EoO-i3il-l036
24 24
hour. hi&:
li..DOmGo/;Li;.
52. s2:
C-3
c-i
s00122b-070 E00-1311 EOO-1311.1036 24 hour, l.Omg/L. 5 2 . C-3 MS
712 sOO122a-071 E00-1311 247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA
s00122a1_072 E00-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00 73 sO0122a-073 E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00 754 SOO122a-074 E00-1311 E00-1311-1037 24 hour, Omg/L, S Z . C-4
s00122a-075 E00-1311 E00-1311-1038 24 hour. O m / L 5 2 . C-4 76 ~ 0 0 1 2 2 ~ 0 7 6
77 s00122a1077 E00-1311 E00-1311-1039 26 hour, O&/L. S Z . C-4 MS
78 ~ooi22a-078 EOO-1311 E O O - L ~ ~ L - 2~4Oh~ouOr. o . i o m / L , s z . c-4
79 SOO122a-079 E00-1311 247.9 ppb PFOS 00002-86-10. Aliq. 11-03-00 MLA
80 s00122a-080 E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
- 81 s~ o01~ 22~ 1 0.81 EOO-1311 M ~ O HBlank. T N - A - ~ ~ ~AsI.~ O .11/16/00
oTiiwiL, e2 ~ 0 0 1 2 2 ~ 0 e 2EOO-1311 ~ o o - i S I i - 1 o ~2i4 hour;
sz, c-4
e 3 S O O ~ ~ Z L O~~o o~- i 3 i i~oo-i3ii-i04224 hour, o.iomg/~, s z . c-4
e4 soo12~a-oe4 ~00.1311 EOO-1311-1042 24 hour. o.iomg/~,sz, c-4 MS
85 s00122a-OB5 E00-1311 E00-1311-1043 24 hour. l.Omg/L, S2. C-4
86 s00122a-086 E00-1311 E30-1311-1044 24 hour. l.Omg/L, S 2 , C-4
e7 ~ o o i 2 ~ ~ 0 ~8007.1311 247.9 ppb PFOS 00002-86-io. Aliq. 11-03-00 MLA
88 sOO122a-088 E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
89 s00122a-089 E00-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00
soup 020199: puantitated and printed by CElC on 11/27/00
ma Analyte Analyte Analyte Analyte Analyte Ana1yte Analyte Analyte Analyte Analyte Analyte Analyte Analyte Analyte Analyte Analyte Analyte Analyte Blank Blank
Analyte Standard Standard Standard Standard Standard Standard Standard Standard Standard Standard Standard
Analyte Analyte Analyte Analyte Analyte Analyte
Qc AM1yte Analyte Ana1yte Analyte Analyte Analyte Analyte QC Analyte Analyte Analyte Analyte Analyte Analyte Ana1yte
QC Analyte Analyte
A~lyte
Analyte Analyte
Analyte Analyte
Qc Analyte Analyte Analyte Analyte Analyte Analyte Analyte
ac
Analyte Analyte Analyte Analyte Analyte Analyte Analyte QC Analyte Analyte AnLnalyte Analyte anaiyte Analyte Analyte
Qc Analyte Analyte
Std COILC
2.47 4.95 9.90 24.75 39.60 49.50 74.26 99.20 247.90 495.90 991.78
247.90
247.90
247.90
247.90
247.90
247.90
247.90
RT 7.156 7.118 7.117 7.130 7.130 7.117 7.118 7.118 7.116
7.117 7.115 7.117 7.116 7.115 7.117 7.115 7.117 7.130
7.128 7.129 7.117 7.103 7.115 7.117
7.106 7.104 7.106 7.115 7.103 7.105 7.103 7.103 7.128 7. lie 7.117 7.131 7.124 7.118 7.104
7.128 7.129 7.116 7.118 7.119 7.115 7.118 7.106 7.129 7.129 7.116 7.119 7.106 7.116 7.127 7.105 7.104 7.103
7.129
7.113
7.117 7.117 7.128
7. lie 7.127 7.141 7. lie 7.128 7.118 7.129 7.117 7.117 7.142 7.143 7,128 7.142 7.139 7.132 7.130 7.129 7.144 7.142 7.130 7.130 7.130 7.129 7.130 7.130 7.140 7.150
*.a 202
37418 36717
423 197 926 1416 1776 1900 3566 4431 4984 6826 8679 16310 24541 35819 263 198 186 e55 1461 1761 ieeo 3414 4497 5027 7129 e453 16335 23694
34689 201 161 237 156
159 19144 14927
154 128 728 601 859
19389 5002
14912 147 136
6414 5781 20890
198 146
15212 544 373
15.5
19173
124s 1124
883
15129 321 134
19397 12990 10723
7873 22076 14963
158 139 226 190 168 19233 783 15169 166 165 1328 1062 19629 2728 5894 15343 174 133
PDb %Cev ?lags Hod Co
0.00
bb
bbI
bb1
0.00
bb
0.00
bb
0.00
bb
0.00 -100 bb
1.57 -68 bb
3.32 -66 bb
27.40 11 bb
40.26 2 bb
68.62 -2 bb
77.36 4 bb
107.79 9 bb
~
256.64 4 bb
565.92 14 bb
bb1
0.00
bb
0.00
bb
0.00
bb
0.00
bb
0.00 -100 bbX
1.08 -78 bbx
3.03 -69 bbX
25.60 3 bb
41.26 4 bb
49.28 -0 bb
82.23 11 bb
104.00 5 bb
257.22 4 bb
502.61 1 bb
bbX1
0.00
bb
0.00
bb
0.00
bb
0.00
bb
0.00
bb
128.62
bb
225.85 -9 bb
0.00
bb
0.00
bb
0.00
bb
0.00
bb
0.00
bb
335.59
bb
48.91
bb
225.53 -9 bb
0.00
bb
0.00
bb
70.82
bb
60.90
bb
382.11
bb
0.00
bb
0.00
bb
232.03 -6 bb
0.00
bb
0.00
hb
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329.42
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0.00
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230.22 -7 bb
0.00
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335.81
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186.09
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143.63
bb
96.36
bb
425.37
bb
226.63 -9 bb
0.00
bb
0.00
bb
0.00
bb
0.00
bb
0.00
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331.12
bb
0.00
bb
231.09 -7 bb
0.00
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0.00
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0.00
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0.00
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362.57
bb
15.18
bb
62.65
bb
234.87 -5 bb
0.00
bb
0.00
bb
3M Environmental Laboratory
Page 502 of 703
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puantify C ~ u n Bdunmaw Report E00-1311 PPOS Add.orb/Desorb
8-1.
List:
Last Wdified:
Method:
Last Wdifiad:
Job Cod.:
C:\~~~1~\~aUPO20199.DrO\O~lsDB\~00112~a Wad NOV 22 07:23:55 2000 C:\~~~lyN(\~oUp020199.~~~\~t~B\~OO1122~ Man N W 27 07:42:34 2000
Printed:
Man nov 27 07:50:41 2000
( 4 9 9 > 9 9 ) , fupE 1
mtudy no Samplelist Text E00-1311 E00-1311-1045 24 hour, l.Omg/L, S2. C-4 E00-1311 EOO-1311-1015 24 hour. l.Omcr/L. S2. C-4 MS E00-13Il 247.9 PPb PFOS 00002-~6-10,-Al~q1.1-03-00 MLA 93 s00122az093 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00 94 sOO122a-094 EOO-1311 HeOH Blank, TN-A-4715, Aliq. 11/16/00 95 s00122a-095 E00-1311 HeOH Blank, m-A-4715. Aliq. 11/16/00 96 sOO122a-096 EOO-1311 0 ppb PFOS 00002-86-01, Aliq. 11-03-00 HLA 97 s001221)-097 E00-1311 2.47ppb PFOS 00002-86-02. Aliq. 11-03-00 MLA 98 ~ O o l 2 2 a ~ a 9 8E00-1311 4.95 ppb PFOS 00002-86-03, Aliq. 11-03-00 MLA 99 n00122a-099 EOO-1311 9.9 Doh PFOS 00002-86-04. Alio. 11-03-00 MLA 100 900122a-100 EOO-T3yy 24:75'~ppb PFOS OOOO2I86-05: Aiiq. 11103-00 M U 101 s00122a~lOl E00-1311 39.6 ppb PFOS 00002-86-06, Aliq. 11-03-00 HLA 102 s00122a-102 E00-1311 49.5 ppb PFOS 00002-86-07 Aliq. 11-03-00 MLA 103 sOO122a-103 E00-1311 74.26 ppb PFOS 00002-86-08, Aliq. 11-03-00 MLA 104 s00122a-104 E00-1311 99.2 ppb PFOS 00002-86-09. Aliq. 11-03-00 MLA 105 sOO122a-105 E00-1311 247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA 106 s00122a-106 EOO-1311 495.9 ppb PFOS 00002-86-12 Aliq. 11-03-00 HLA 107 a00122a-107 E00-1311 991.78 ppb PFOS 00002-86-13, aliq. 11-03-00 MLA 108 s00122a-108 E00-1311 MeOH Blank, Tt-A-4715, Aliq. 11/16/00 109 ~ 0 0 1 2 2 p 1 0 9 EOO-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00 110 s00122a-110 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
we Analyte Analyte
QC Analyte Analyte Analyte Analyte Standard Standard Standard Standard
Standard Standard Standard Standard Standard Standard Standard Analyte Analyte Analyte
Std Con0
247.90
2.47 4.95 9.90 24.75 39 60 49.50 74.26 99.20 247.90 495.90 991.78
RT 7.123 7.128 7.114 7.139 7.148 7.149 7.117 7.118 7.121 7.124 7.122 7.113 7.117 7.121 7.117 7.116 7.117 7.128 7.142 7.143 7.150
Araa 3002 20271 15179
140
~~
149 164 803 1332 1713 1795 3284 4210 4728 6565 8022 15354 23693 34251 241 189 150
19.14 362.03 231.29
0.00 0.00 0.00 0.00 0.00 0.67 1.84 23.25 36.96 44.74 73.21 96.81 235.13 491.10
0.00 0.00 0.00
-7
-100 -86 -81 -6 -7 -10 -1 -2 -5 -1
bb
bb bb
b_ b_
bb bb bb bbX bbX bbX bb
bb bb bb
bb bb bb bbX1 bb bb bb
SOUP 020199: wantitate6 and printed by CMC on 11/27/00
3M Environmental Laboratory
Page 503 of 703
BACK TO MAIN
S a l w h List: Last modifid: Method: Last maifiea: Job Code:
C:\Idarllynx\.oUp020l99.pro\salwl~~B\*ooll22a
Wed Nov 22 07:23:5S 2000 C:\Ida~~l~\~o~D020199.prO\M~~MB\~001122~ on NOV 17 07:42:34 2000
Printed:
Hon NOY 27 07:50:41 2000
1 Campound 2: TllP108 (427,801. fUnC 2
1 s00122a-001 E00-1311 Meoi Blank, TN-A-4715, Aliq. 11/16/00
2 sOO122a-002 E00-1311 991.78 ppb PFOS 00002-86-13, aliq. 11-03-00 MLA
3 s00122a-003 E00-1311 991.78 ppb PFOS 00002-86-13, aliq. 11-03-00 MLA
4 sOO122a-004 E00-1311 MeOH Blank, TN-A-4715, Aliqo. 11/16/00
5 s00122a 005 600-1311 MeOH Blank. TN-A-4715. AIlia. 11/16/00
6 sOOl22a-006 E00-1311 0 Dnb PFOS 00002-86-01 A l k 11-03-00 MLA
7 s00122a~007 EOO-1311 2.ijppb PFOS 00002-86-02. Aiiq. 11-03-00 MLA
8 s00122a~008 E00-1311 4.95 ppb PFOS 00002-86-03, Aliq. 11-03-00 MLA
9 sOO122a-009 E00-1311 9.9 ppb PFOS 00002-86-04, Aliq. 11-03-00 MLA
10 s00122a~010 E00-1311 24.75 ppb PFOS 00002-86-05, Aliq. 11-03-00 MLA
11 s00122a-Oll E00-1311 39.6 ppb PFOS 00002-86-06, Aliq. 11-03-00 MLA
123 soo122a-012 E00-1311 49.5 ppb PFOS 00002-86-07 Aliq. 11-03-00 HLA
sOO122a-013 E00-1311 74.26 ppb PFOS 00002-86-08. Aliq. 11-03-00 MLA
154 s00122a-014 E00-1311 99.2 ppb PFOS 00002-86-09, Aliq. 11-03-00 MLA
s00122a-015 E00-1311 247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA
16 SO 0122a-0 16 E00-1311 495.9 ppb PFOS 00002-86-12 Aliq. 11-03-00 MLA
17 s00122a-017 E00-1311 991.78 ppb PFOS 00002-86-13, aliq. 11-03-00 MLA
18 500122a~018 600-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
19 s00122a-019 E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
20 s00122a-020 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
21 100122a~021 E00-1311 0 ppb PPOS 00002-86-01, Aliq. 11-03-00 M U
22 n00122a-022 E00-1311 2.47ppb PFOS 00002-86-02, Aliq. 11-03-00 MLA
23 s00122a-023 E00-1311 4 . 9 5 ppb PFOS 00002-86-03. Aliq. 11-03-00 MLA
24 s00122a-024 EOO-1311 9.9 ppb PFOS 00002-86-04, Aliq. 11-03-00 MLA
25 s00122a-025 E00-1311 24.75 ppb PFOS 00002-86-05. Aliq. 11-03-00 MLA
26 sOO122a-026 E00-1311 39.6 ppb PFOS 00002-86-06. Aliq. 11-03-00 HLA
287 ~ 0 0 1 2 2 ~ 0 2 7E00-1311 49.5 ppb PFOS 00002-86-07 Aliq. 11-03-00 MLA
sOO122a-028 E00-1311 74.26 ppb PFOS 00002-86-08, Aliq. 11-03-00 MLA
29 sOO122a-029 EOO-1311 99.2 ppb PFOS 00002-86-09, Aliq. 11-03-00 HLA
30 s00122a-030 E00-1311 247.9 ppb PFOS 00002-86-10. Aliq. 11-03-00 MLA
31 s00122a-031 E00-1311 4 9 5 . 9 ppb PFOS 00002-86-12 Aliq. 11-03-00 MLA
32 s00122pq32 E00-1311 991.78 ppb PFOS 00002-86-13. aliq. 11-03-00 MLA
3 3 sOO122a-033 BOO-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
34 s00122a-034 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
35 sOO122a-035 E00-1311 E00-1311-1019 24 hour, OmgIL, S2. C-2
36 s00122a-036 E00-1311 EOO-1311-1020 24 hour. OmglL. 52, C-2
37 s00122a-037 E00-1311 EOO-1311-1021 24 hour, OmgIL, S2, C-2
38 sOO122a-038 E00-1311 E00-1311-1021 24 hour, OmglL, 52, C-2, MS
39 s00122a-039 E00-1311 247.9 ppb PFOS 00002-86-10. Aliq. 11-03-00 MLA
40 s00122a-040 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
421 s00122a-041 E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
s00122a-042 E00-1311 600-1311.1022 24 hour, 0.lOmglL. 82, C-2
43 s00122.a-043 E00-1311 E00-1311.1023 24 hour, O.lOmg/L, S2. C-2
44 600122a_044 E00-1311 EOO-1311-1024 24 hour, O.lOmo/L, S2. C-2
4 5 s00122aI045 EOO-1311 800-1311-1024 24 hour, O.lOm~/L.S2, C-2, MS
4 6 s00122a-046 E00-1311 E00-1311-1025 24 hour, l.OmgiL, S2, C-2
47 sOO122a-047 E00-1311 247.9 ppb PFOS 00002-86-10. Aliq. 11-03-00 MLA
48 sOO122a-048 E00-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00
4 9 50012211 0 4 9 E00-1311 MeOH Blank. TN-A-47lS. Alia. 11/16/00
50 s00122a1050 E00-1311 EOO-l3;l-l026 24 hour: l . O & / L y S2, C-2
51 sO0122a~051 E00-1311 E00-1311-1027 24 hour. 1.OmglL. S2. C-2
E00-1311 E00-1311.1027 24 hour, l.Omg/L. S2, C-2. MS
600-1311 E00-1311-1028 24 hour, OmglL. 82. C-3
E00-1311 800-1311-1029 2 4 hour. OmglL, 52, C-3
E00-1311 247.9 ppb PFOS 00002-86-10. Aliq. 11-03-00 MLA
~
~~~
E00-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00
57 soo122a-os7 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
58 s00122aI058 E00-1311 E00-1311-1030 24 hour. Omg/L. s2, C-3 59 soo122a-059 E00-1311 E00-1311-1030 24 hour. O m g l L . 5 2 . C-3 MS
60 sOO122a-060 E00-1311 E00-1311-1031 24 hour, 0.lOmglL. S2. C-3
61 500122a-061 E00-1311 EQO-1311-1032 24 hour. 0.lOnwlL. S2. C-3
E00-1311 E00-1311.1033 24 hour. O . l O & / L . S2, C-3
E00-1311 247.9 ppb PFOS 00002-86-10, 1119. 11-03-00 MWL
E00-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00
E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
E00-1311 E00-1311-1033 24 ho~u.r. O.lOmo-/L.. S2.. C-3 MS
67 s00122aI067 EOO-1311 800-1311-1034 24 hour. l.Omo/L. 82. C-3
68 sOO122a-068 E00-1311 E00-1311-1035 24 hour, l.O&/L. S2, C-3
69 rO0122a-069 E00-1311 E00-1311-1036 24 hour, l.Omg/L, 52. C-3
70 s00122a-070 E00-1311 E00-1311.1036 24 hour, l.Omg/L, S2, c-3 MS
71 sOO122a-071 EOO-1311 247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA
72 sOO122a-072 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
73 s00122a-073 E00-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00
74 s00122a-074 E00-1311 E00-1311-1037 24 hour, OmgIL. 52. C-4
75 sOO122a-075 E00-1311 EOO-1311.1038 24 hour. OmglL, S2. C-4
76 s00122a-076 E00-1311 E00-1311-1039 24 hour, OmgIL. S Z , C-4
77 sOO122a-077 E00-1311 E00-1311-1039 2 4 hour, OmgIL. S2, C-4 MS
78 sOO122a-078 E00-1311 E00-1311-1040 24 hour. 0.lOmglL. 52, C-4
79 s00122a-079 E00-1311 247.9 ppb PFOS 00002-86-10. Aliq. 11-03-00 MLA
80 900122.~080 EO0 -1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
81 s00122a~O.81 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
82 so0122a-082 E00-1311 E00-1311-1041 24 hour, 0.lOmglL. S2. C-4
83 ~ 0 0 1 2 2 ~ 0 8 3E00-1311 E00-1311-1042 24 hour. O.lOmg/L, S2, C-4
84 s00122a-084 E00-1311 EUO-1311-1042 2 4 hour, O.lOmg/L. S2, C-4 M!
85 ~001228.-085 E00-1311 E00-1311-1043 24 hour, l.Omg/L. S2, C-4
86 a00122a-086 E00-1311 E00-1311-1044 24 hour. l.Omg/L, S2. C-4
87 s00122a-087 E00-1311 247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA
88 s00122a-088 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
89 s00122a-089 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
SOUP 020199: quantitated and Drinted by CMC O n 11/27/00
P.S. 3
Tm. Analyte Analyte Analyte Analyte Analyte
Analyte Analyte Ana1yte Analyte Analyte Analyte Analyte Analyte Analyte Analyte Anna1yte Analyte Analyte Blank Blank Analyte Standard Standard Standard Standard Standard Standard Standard Standard Standard Standard Standard Analyte Analyte Analyte Analyte Analyte Analyte
QC Analyte
Analyte Analyte Analyte Analyte Analyte Analyte
QC Analyte Analyte Ana1yte Analyte Analyte Analyte Analyte
Q Analyte Analyte Analyfe Analyce Analyte
Analyte Analyte
QC Analyte Analyte Analyte Analyte Analyte Analyte AM1yte
QC Analyte Analyte Analyte Analyte Analyte Analyte Analyte
QC Analyte Analyte Analyte Analyte Analyte Analyte Analyte
QC Analyte Analyte
Eta conc
RT
6.939 6.937
6.938 6.939 6.940 6.938 6.939 6.935 6.937 6.937 6.936 6.926 6.936 6.926
246.10 246.10 246.10 246.10 246.10 246.10 246.10 246.10 246.10 246.10 246.10
6.939 6.924 6.924 6.925 6.926 6.925 6.926 6.923 6.924 6.926 6.924 6.924
246.10
6.937 6.927 6.932 6.927 6.925
246.10
6.925 6.926 6.927 6.936 6.926 6.926
246.10
6.925 6.926 6.926 6.924 6.935 6.926
246.10
6.939
6.934
6.938
6.938 6.937
6.939
246.10
6.938 6.936 6.938 6.937 6.938 6.938
246.10
6.937 6.938 6.949 6.940 6.951 6.937
246.10
6.938 6.938 6.951 6.949 6.937 6.939
Area
3051 3040
m
217.69 216.91
ria^^ Hod co
-12 bb -12 bb
3421 3762 4037 3673 4110 3660 3241 3276 3264 3307 3143 3129
244.07 268.38 288.03 262.10 293.25 261.13 231.28 233.72 232.91 235.96 224.24 223.23
-1 bb 9 bb
17 bb 6 bb
19 bb 6 bb
-6 bb -5 bb -5 bb -4 bb -9 bb -9 bb
3449 4070 4333 3650 4008 3746 3326 3445 3451 3421 2921 2813
246.08 290.39 309.17 260.43 285.94 267.24 237.33 245.81 246.25 244.07 208.41 200.70
-0 bb 18 bb 26 bb
6 bb 16 bb
9 bb -4 bb -0 bb
0 bb -1 bb -15 bb -18 bb
2593 2607 2649 2468 3004
184.99 185.98 189.00 176.07 214.36
-26 bb -26 bb -24 bb -30 bb -13 hb
2680 2654 2684 2550 2669 3101
191.25 189.34 191.51 181.94 190.42 221.29
-24 bb -24 bb -23 bb -27 bb -24 bb -10 bb
2687 2648 2546 2726 2708 3128
191.68 188.95 181.67 194.48 193.23 223.18
-23 bb -24 bb -27 bb -22 bb -23 bb
-9 bb
2729 2641
2702
2695 2687
3115
194.71
188.46
192.79 192.30 191.73 222.22
-22 bb -25 bb - 2 3 bb -23 bb -23 bb
-10 bb
2598 2577 2600 2635 2502 3063
185.34 183.88 185.A9 187.99 178.55 218.57
-26 bb -26 bb -26 bb -25 bb -29 bb -11 bb
2707 2802 2718 2612 2728 3086
193.17 199.93 193.94 186.40 194.65 220.15
-23 bb -20 bb -22 bb -25 bb -22 bb -11 bb
2750 2815 2704 2728 2773 3103
196.21 200.86 192.91 194.61 197.84 221.43
-22 bb -20 bb -23 bb -22 bb -21 bb -10 bb
3M Environmental Laboratory
Page 504 of 703
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Last m d i f i e d : W e d NOY 22 07:23:55 2000
Method:
C:\~~LI1~\~oUpO2Ol99.prO\~tMB\~001122~
Last M i r i e a : MOD NOV 27 07:42:34 zoo0
Job Code:
Printed:
MOD Nov 27 07:50:41 2000
C-und
2: THPFOS l417W801, fuuc 2
0 NUM 90 s00122a-090 91 s00122a-091 92 s00122a-092 93 s00122a-093 94 sOO122a-094 95 s00122a-0.95 96 s00122a-096 97 s00122a-097 98 s00122a-098
99 s00122a-099 100 s00122a~100 101 s00122a-101 102 s00122a-102
103 600122a-103 104 s00122a-104 105 s00122a-105 106 sOO122a-106 107 s00122a-107 108 aO0122a-108 109 s00122a-109 110 s00122a~110
atudy no EOO-1311 E00-1311
E00-1311 E00-1311 E00-1311 E00-1311
- E00-1311
EO0 1311 E00-1311
- E 0 0 4 3 1 1
EO0 1311 E00-1311
E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311
S-lelfSt T a t
E00-1311-1045 24 hour, l.Ow/L. S2, C-4
E00-1311-1045 24 hour, l.OG/L, S2, C-4 MS
247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA
MeOH Blank. TN-A-4715. Aliq. 11/16/00
MeOH Blank, TN-A-4715. Aliq. 11/16/00
HeOH Blank. TN-A-4715. Alia. 11/16/00
0
11-03-00 M U
2.iqppb PFOS 00002-86-02, Aiiq. 11-03-00 MLA
4.95 ppb PFOS 00002-86-03, Aliq. 11-03-00 MLA
9.9 ppb PFOS 00002-86-04. Aliq. 11-03-00 MLA
24.75 ppb PFOS 00002-86-05, Aliq. 11-03-00 MLA
39.6 ppb PFOS 00002-86-06, Aliq. 11-03-00 MLA
49.5 ppb PFOS 00002-86-07 Aliq. 11-03-00 NLA
74.26 ppb PFOS 00002-86-08. Aliq. 11-03-00 MLA
99.2 ppb PFOS 00002-86-09, Aliq. 11-03-00 MLA
247.9 ppb PFOS 00002-86-10, Aliq. 11-03-00 MLA
495.9 ppb PFOS 00002-86-12 Aliq. 11-03-00 MLA
991.78 ppb PFOS 00002-86-13, aliq. 11-03-00 MIA
MeOM Blank, 'R-A-4715. Aliq. 11/16/00
MeOH Blank, TN-A-4715. Aliq. 11/16/00
MeOH Blank, TN-A-4715, Aliq. 11/16/00
Type Analyte Analy te
QC Analyte Analyte Analyte Analyte Standard Standard Standard Standard Standard Standard Standard Standard Standard Standard Standard Analyte Analyte Analyte
Std Corm 246.10
246.10 246.10 246.10
246.10 246.10
RT 6.944 6.949 6.935
6.938 6.939 6.941 6.945
6.938 6.949
a.2748 2591 3076
m b %De.v Flaws Hod Co 196.05 -22 bb 184.90 -26 bb 219.46 -11 bb
3265 3759 4012 3443 3774 3346 3009 3152 3125 3159 3013 2906
232.93
268.23 286.25 245.67 269.26 238.73 214.72 224.87 222.98 225.42 214.96 207.36
-5 bb 9 bb
16 bb -0 bb
9 bb -3 bb -13 bb -9 bb -9 bb -8 bb -13 bb -16 bb
SOUP 020199: wuantitatsd and Printed by CMC an 11127fOO
3M Environmental Laboratory
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'0
fPn)
0 0
Inj Dale
8sW
SmpTyp Fils
Sample Name
M21012053 D.WsmWurh.WJ10222.b SAMPLE 2N10121:M D.WemWurh.!W010222.b CALlB-1 2R2/0121:16 0 WemWurh.ilR010222.b W l B - 2 2R210121.27 0 WemWurh.N(OlCI222.b CALIB-3 2122101 21.38 DWemWurh.iiROl0222.b CALIB-4 2122101 21 49 DWemWurh.iW010222.b CALK-5 212/01 22.03 D~~.~m~~~"r*.iWC!O22C2K.IbB-6 2/221C12211 0:bhsmWush 1W010222.b CALIB-7 2/22/012222 D WemWurh.iW010222.b CALIB-8 2/22/0122.34 0 khemWuih.iW010222.b CALIB-9 2/22/0122 45 0 khemU(urh iW010222.b CALK-10 2122101 22.56 D WemWurh.iW010222.b SAMPLE 212UO123.07 D.WsmWurh.iW010222.b SAMPLE 2123/01 1.32 D.WemWurh.iiR010222.b CCALlB-1 2123101 1.43 DWemWurh.iW010W.b CCALIB-1 2/23/014.08 DkhemWurh.iW010222.b CCALIB-1 2/23/014.20 D:WsmWurh.iW010222.b CCALIB-1 2RM16 45 DkhamWurh.iW010222.b CCALlE-1 2R3016-56 DWemWurh.iW010222.b CCALIB-1 2R3/01 B21 D:WemWush.iW010222b CCALIB-1
RUSH0022.D OOW2-1Mol RUSHW23.D WW2-10442 RUSHW24.D woO2-laM3 RUSHW25.D WW2-1MM RUSHW26.D wOO2-10445 RUSH0027 D OwO2-1Mo6 RUSH0028.D W 2 - 1 M 0 7 RUSH0029.0 WW2-1Mo8 RUSH0030.0 WW2-1MO9 RUSHW31.D WW2-1M10 RUSH0032.D woO2-1Ml1 RUSH0033.0 W002-1Ml2 RUSHOOY.0 OW02.1M13 RUSHO(U7.0 wW2-1M43 RUSHWI8.0 WWZ-1M-IO RUSHWB1.D wO02-1ou)3 RUSH0062.D W002-1MlO RUSHW750 woO2-1Mo3 RUSH0076.0 WW2-1MlO RUSHW89 0 WOOZ-lMo3
2/23/01933 2/23/01 1158 2123101 12 09 2/23/01 14.35 2/23/01 1446 2/23/01 16.49 2/23/01 17.W 2/23/01 1734 u23/01 1745 2/23/01 1756 2/23/01 18 07 2/23/01 1818 2/23/01 18 29 2/23/01 1841 2:23/01 16.52 2/23/01 19 03 2/23/01 19.14 2/23/01 19.25 2/23/01 19 36 2/23/01 19.48
DWemWush.iW010222.b CCALIB-1 OhhamWurh1W010222.b CCALIB-1 0 WemWurh.#W010222.b CCALlB-1 D WemWurh.iWO10222.b CCALlB-1 D'khemWush IW010222.b CCALlB-1 D.bhemWurh8W010222.b CCALIB-1 D WemWush.ii010222.b CCALIB-1 D.WemU(ush xW010222b SAMPLE O.WemWurh.iW010W b CALlB-1 D Wem!Rush.iW010222.b CALK-2 D WemWurh.oU(010222.b CALIB-3 D.khemWush.iW010222.b W B - 4 D.WemWurh.iiR010222.b CALIB-5 D.WcmWurh.rW010222.b CALIB-6 0 Shem~Wuih.iW010222.bCALlB-7 DWemWurh.iW010222.b CALIB-8 D.!&hemWurh iW010222.b CALlB-9 D WemWurh iW010222.b CALIB-10 D bhemWUih.iW0102Z2.b SAMPLE DWemWuihoWO10222.b SAMPLE
RUSHW90.0 RUSH0103 D RUSHO1M.D RUSH0117 D RUSHO118.D RUSHOl29.D RUSH0130.D RUSH0133.D RUSHO1Y.D RUSHO1U.D RUSH0136.D RUSH0137.D RUSHO138.D RUSH0139.D RUSH0140.D RUSH0141.D RUSH0142.D RUSH0143.D RUSHOlU D RUSH0145.D
WWZ-1MlO WW2-1Mo3 WW2-lM10 OOW2-1Mo3 woO2-lMlO OwO2-1M43 WWZ-1MlO WW2-1Mo1 WW2-1M02 WW2-104-03 WW2-lMo4 WW2-1M-05 OOW2-1Mo6 WW2-lW7 OwO2-1Mo8 OwO2-lM09 00W2-1M10 WWZ-lMll WWZ-lM12 WW2-1M13
J Misc Info
ComwndNam
Ldnolmsatacwnqrsquinmml Cal sld 2 (LW) C1. .Id 3 Cal .Id 4 Cal std 5 Cal *Id 6 Cal s l d 7 CaI s l d 8 CaI sld 9 CaI sld 1 0 excluded IO kner 61d a b u d u d o d l o klter 61dab
did ml m e l amno, nquinmsnl Cal *Id lz(L0Q) Calsld13 Cal sld 1 4 C1. .Id 1 s Cal s l d 1 6 Cal 'Id 1 7 CaI s l d 1 8 CaI s l d 19 C d .Id 20 excluded IO teller M dstl exdudsd IO M e r fit d a b
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFDS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
RT
Ana
5.553 5.561 5.55.8 5 554 5.545 5.54 5 539
5.552 5.567 5.56 5.551 5.569 5.555 5.561 5.567 5.555 5.547 5.545 5.539 5.54
688380 604164 889138 679632 671308 684907 876783 674589 68747 6uBo2 619576 595985 576693 713865 652248 716157 659416 723145 654913 557797
5.532 5.507 5.51 5.537 5.536 5.5w 5.511 5.507 5 454 5.505 5 499 5.51 5.502 5.519 5.509 5.513 5.511 5.512 5.508 5.505
avenge sld deviation
%Cy
649228 714024 640235 748169 662e45 729420 637769 718171 728159 734029 723187 711239 704611 705699 702051 85302
6r16270 610214
573664 562318 672404 45783
6.8%
h w n t CompoundNanis RT ndmL
,--
ha
munl
ndmL % De"
249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3
249.3 249.3 249.3 249.3 249.3 249 3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFDS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
0
0
5.185 56147
5.775 93148
5.778 104431
5.769 401765
5.764 664873
5 756 856165
5.776 1276020
5.784 1657895
5.777 3779794
5.775 6765120
5.773 95011%
0
0
5.779 94822
5.785 3452407
5.78
93243
5.771 3887395
5.769 92534
5.763 3872492
5.771 94512
check standard>30%due lo
5.763 3834030
5.731 91142
5.741 3727210
5.768 94563
5.76 3860610
5.733 94353
5.728
n
3687433 0
5.735 50380
5.729 89391
5.716 165120
5.727 385518
5.719 629059
5 729 832703
5 726 1248638
5 13 1612642
5 728 3713608
5 722 606551
5 725 9143085
5 722 11281687
00
00
X
50
00%
100
00%
250
00%
401
0 3%
502
0 4%
748
0 3%
995
0 5%
249s
0 0%
5W1
0 0%
7765
X
00
X
53
59%
251 6
0 6%
52
3 6%
2497
0 1%
51
2 1%
251 9
0 7%
67
34 6%
lowTHPFos rctponre
251 5
0 6%
51
1 8%
2477
0 9%
50
0 9%
2479
0 9%
52
3 2%
2458
11%
00
26
X
50
0 3%
105
4 7%
221
11 5%
304
8 9%
483
3 5%
732
2 4%
982
1 8%
2505
0 2%
4998
0 0%
7764
X
10176
X
P
BACK TO MAIN
73
9)
rn
(D
sVI
0 -J
-J 0 0
2/22/01 2341 D chemP.ulh 1P.010222 b SAMPLE RUSHW37 D 13114052S1 2r2M123 52 D chemlRvln 1R010222b SAMPLE RUSHW38 D 1311405M1 2125010 03 D LChemRuIn1P.010222 b SAMPLE RUSh0039 D 13114054S1 M Y 0 10 14 D Cnem\Rurh16010222b SAMPLE RUSHOMOD 131140YMS s f M310l 025 DWsmP.urh1P.010222b SAMPLE RUShC.31D 13114051s1 u 2 L O l 036 DkhemP.urh1P.010222b SAMPLE RUSkW42D 131140Msl
2R310l 0 47 D LChsmP.ushhR010222b SAMPLE RLShC.33 D 13114057S1 212M1 0 59 D WcmlR.sh UU10222b W P . E R U S H WD 13114057MSSl
2123011 10 DWemlRah 1P.010222~SAMPLE RUSrlOM5D 1~114056Sl 2!2301 4 24 D LChemWuih 1R.010222D SAMPLE RLSd0048 D 1311405951 2123012 17 DWemP.urnkR010222 b SAMPLE RUSd0051D 1311.406C-Sl 2R301 2 28 0 WemWurn 1P.010222b SAMPLE RUSHW52D 1311MWMSS1 2RM1 239 D\chcmP.ulh1P.010222b SAMPLE RUShW53D 13114061S1 212M12 50 DkhtmP.~rh~P.01022b2 SAMPLE RUSH0054D 13114062Sl 2RM13 01 D memP.ush&3010222 b SAMPLE RUShW55D 1311406?-Sl 2123013 13 D WrmR.rh iW010222b SAUPLE RUSHW56D 13114063MSSl 2R301 3 24 DWemRdih 1P.0102220 SAMPLE RUSH0057D 1311406cS1
2~31013 35 D memflusn N10102220 SAMPLE R J S ~ W So 13114065-s1
212301346 D~ncmP.urh1R010222b SAMPLE RUSdW59D 13114066.Sl 212301 3 57 DYhemRuih1P.010222 b SAMPLE RUSHW60 D 13114066M5S1 2123014 53 D WemRurh 1R.010222b SAMPLE RUSrl0065D 1311406751 21231015 M D khsmR.rh 1R.010222b SAMPLE RUShW6BD 1311406851 21238015 16 DWcmR.rh1W010222 b SAMPLE RUSHW67D 13114069-Sl 2RLO15 27 D WemP.ush lW010222b SAMPLE RUShW68D 13114069USSl 212301538 D WomU7urh1U1010222D SAMPLE RbSHW69D 1311407C-S1 2123401 5 49 D WsmlRush1P.010222D SAMPLE RUSH0070D 13114071S1 2123016 W D mcmlRurh 4P.010222 b SAMPLE RuSHW7l D 13114072S1 21231016 11 D WcmP.urh 1P.010222b SAMPLE RUSr(0072D 13114072MSSl 212301623 DWernP.uih P.010222 b SAMPLE RJSH0073 D 1311407bSl M 3 0 16 34 D WchemP.,sh fR.OlOu2b SAMPLE RUSh0074 D 1311407cSl 2 2 M 1 7 30 D WomW.sh N(010222b SAMPLE RUSh0079 D 13114075Sl
MU017 41 DkhemlRush1P.010222~SAMPLE RUShOO6OD 13114075MSSl 2RUOl 7 52 D WemP.sh1lR010222D SAMPLE RLShW8l D 13114076Sl u231018 03 D memWYih1P.010222b SAMPLE RLSHW82 D 1311407751 2nUol 8 14 D memP.urh iW010222b SAMPLE RUSH0083D 13114078-S1 W231018 25 D WemWurh 1R.010222b SAMPLE RUSH00840 13114078MSSt 21231018 37 D WemP.uih 1W010222b SAMPLE RUSH0085D 13114079-Sl M M 1 848 D WemWush tW010222 b SAMPLE RUSH00860 1311438&S1 2QM1 8 59 D khemU7urhiW010222b SAMPLE RUSH0087D 13114081-51 2/23/019 10 D WemWulih iW010222b SAMPLE RusHooaaD 1 3 i i ~ o a i ~ ~ s i 21231011006 D WemR.urh 1P.010222b SAMPLE RUSH0093D 1311482.S1 212301 10 17 D WemP.uih 1P.010222 b SAMPLE RUSHW94 D 1311408551 2IZ301 1028 D WemWuih iW010222b SAMPLE RUSH0095D 1311408cs1 2123011040 D.WemR.ush.iR.OlO222.b SAMPLE RUSmM96.D 13114WMSS1 2nM1 1051 D!chemWush iP.OlM22.b SAMPLE RUSH0097D 13114085S1 21231011132 DWemP.ush.iW010222.b SAMPLE RUSHOW8.D 1311-4086.Sl 2R3101 11:13 D ~hemP.uih.iWOlO222.b SAMPLE RUSHW99 D 13114087Sl 212301 1124 D Wem\Rush iW010222b SAMPLE RUSH0100D 13114087MSSl 21231011135 D WemRush rR.010222b SAMPLE RUSH0101D 13114088-Sl Z M 1 1747 D WemRurh ,lRO10222b SAMPLE RUSHO102D 13114089-S1 2 n M 1 1243 D WemR.urh 1P.010222b SAMPLE RUSH0107D 13114090S1 212301 1254 D WemWurh iP.010222 b SAMPLE RUSH0106D 13114090MS-S1 m 3 m l 1305 D WemiRvrh iW010222b SAMPLE RUSH0109D 13114091-51 2 n M 1 1316 D WemR.urh iW010222b SAMPLE RUSH0110D 13114092-S1 21231011327 OWemLQurh 1P.010222b SAMPLE RUSH0111D 1311409bSl 2123/01 13 39 D:khemP.ush.#P.010222.b SAMPLE RUSHO1jZ.D 13114093MS-S1 21231011350 D.\chemR.ush.iP.OlO222.b SAMPLE RUSHO113.D 1311.409441 2/2310114:01 O.WemP.u~h.iP.010222.bSAMPLE RUSH0114.D 13114095S1 212310114.12 O\chemP.ushiR.010222b SAMPLE RUSHO115.D 1311.4096S1 21231011423 D.!chemP.urh iR.010222b SAMPLE RUSHOll8.D 1311409SMS-Sl 212301 1519 DW~mP.ushRRO1OW.bSAMPLE RUSHOl2l.D 13114W761 2/23/0115'30 0 k h W u S hiW010222b SAMPLE RUSH0122.D 13114098-51 212301 15:42 D.WemR.urh.iW010222.b SAMPLE RUSH0123.D 13114099-51 2 n M 1 15.53 D.Wem\Rurh.lP.010222 b SAMPLE RUSH0124D 13114099MSS1 2123101 16 04 D.WemR.urh.1P.010222.b SAMPLE RUSH0125.0 1311.4lO&S1 2123101 1615 DWemP.urh iP.010222.b SAMPLE RUSH0128D 1311.4101Sl 212301 18.28 DWemR.urh.iW010222b SAMPLE RUSH0127.D 13114102-Sl 2n301 1638 D khemlRurh.~R.Ol0222.bSAMPLE RUSH0126.D 1311.4102MSSl
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
5.561 5.565 5.567 5.567 5.559
5.56 5 565 5 567
5.568 5.561 5.558 5.561 5.555 5.559 5.561 5.554
5.544 5.537 5.555 5.554 5.533 5 525 5.539 5.539 5.541 5.54r 5.54 5.54 5.547 5.547 5 548 5.541 5.554 5.545 6.551 5.539 5 537 5.543 5.528 5.528 5.527 5.528 5.513 5 509 5 5M 5.506 5.505 5.51 5.518 5 502 5.511 5.521 5 521 5.503 5 505 5.525 5.531 5.547 5.533 554 5 523 5 529 5.528 5.52 5.515 5.515 5.518 5.51
738374 729881 748027 MBMO 720087 718694 713613 650599 898677 697037 712727 623982 713961 722949 717685
625622 893953 703230 883158 601504 715149 718563 721833 626695 723074 713569 710887 826987 719422 721925 721018 830748 721U5 713442 714470 827930 716587 706703 787134 825739 711683 705320 711370 817162 702007 701896 704199 818234 883319 878063 87Mx)9 594782 696138 702240 713218 817233 706887 708135 705249 81W7 727274 722539 724260 611327 714433 712382 699621
606960
249.3 249.3 249.3 249.3 249.3
249.3 240 3 249.3 249.3 249.3 249.3 249.3 240.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249 3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249 3 249 3 249 3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249 3 249.3 249.3 249.3 249 3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249.3 249 3 249.3
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFDS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
5.792 5.789 5.791 5.798 5.79 5.792 5.797 5.791 5.797 5.785 5.775 5 785
0 5.783
0 5.778
0
0
0 5.785 5.75 5.749 5.783 5.783 5.758 5 759 5.757 8.757 5.m 5.m 5.779 5.772 5.778 5.789 5.775 5.758 5.781 5.787 5 752 5.757 5.751 5.743 5.73 5.733 5.728 5.73 5.729 5.734 5.74 5.719 5.735 5.746
0
0
0 5.742
0
0
0 5.784 5.747 5.753 5 757 5 751 5.739 5.74 5.735 5 734
210932 lsB367 214795 32735% 162434 159201 4M553 3223948 199972 le4182 188818 3147881
0
52969 0
3039824 0
0
0 2944564 708991 738565 483585 3383101 353028 401704 385139 3324237 368061 377219 3w 3329105 4W719 3M833 391323 3308122 327587 32608553 3277776 359433 317521 322509 3238116 275759 289371 598587 3378059 296195 292811 286C64 3043722
0
0
0 2959556
0 0
0 2967005 379645 387810 572801 3364903 266964 280369 248736 3069584
11.3 10.1 11.3 212.3 8.9 8.8 22.4 208.2 11.3 10 4 10.5 212.2
0.0
3.0
0.0
203.5
00
0.0
0.0 m.5 39.3 40.8 26.5 228.3 19.3 22.2 21.4 223.9 20 1 20 8 19.5 2Z.8 21.9 21.3 21.6 222.3
18.1 18 1 31.4 221.0 19.9 17.8 179 221.4 155 18 3 33.7 232.1 17.1 17 1 18 8 215.5 0.0
00
0.0 201.0 0.0 0.0 0.0 200.7 20 8 21.2 31.3 233 1 14 8 15 5 14.0 212.8
BACK TO MAIN
212UO12042 DWemWurh.iW010222b SAMPLE 212210123.18 D.khamWush.~W010222.bSAMPLE 2/22/012329 D WamWurhiW010222.b SAMPLE 2/231011.54 D.\chsmWushiWO10222.b SAMPLE 2/23/012:ffi D.WemWurh.iW010222.b SAMPLE 2/23/01 4 31 D.WrmWurh.iW010222b SAMPLE 2123101 4.42 D.WemWush.i\R010222.b SAMPLE 2123101 7.07 O.MemWurh.tWOlOZZ2.b SAMPLE 2/23101718 D'khemWurh.iWO10222.b SAMPLE 2123101 9:44 D.WemWurh.iWO10222.b SAMPLE 2123101 9.55 DkhemWurh.iW01022.b SAMPLE 2/23/01 1220 DWsmWurh.iW010222.b SAMPLE 2/23/01 1232 D:WlemWush.1W010222.b SAMPLE 2/23/01 1457 D:WemWush.i\ROlO222.b SAMPLE 2/25/01 1508 D.\chemWurh.iW010222.b SAMPLE 2123101 1711 O:WamWurh.lW010222.b SAMPLE 2R31011722 D:WemW~~h.1W010222.SbAMPLE 2/23/01 1959 DWcmWurh.rWOlO222.b SAMPLE 2/23/012010 DkhsmWurh.i\R010222.b SAMPLE
RUSHW21.D TN-A4755 MsOH RUSHW35.D TKA4755 MeOH RUSHW36.D TN-A4755 MsOH RUSH0049.D TKA 4755 MsOH RUSH0050.D TN-A4755 MsOH RUSH0063.D TKA4755 MsOH RUSHW64.D TN44755 MsOH RLISHW77.D TKA4755 MeOH RUSHW78.D TKA4755 MsOH RUSHW91.D TN-A4755MeOH RUSHW92.D TUA4755 MeOH RUSHOlO5.D TN-A4755 MsOH RUSHO1OB.D TN-A4755 MeOH RUSHO119.D TN-A4755 MeOH RUSH0120.D TN-A4755 MeOH RUSHO131.D TN-A4755 MeOH RUSHO132.D TN-A4755 MeOH RUSHOl46.D TN-A4755 MeOH RUSH0147.0 TN-A4755 MaOH
THPFOS
0
0.0
PFOS
5.802 13952
0.0
THPFOS
0
PFOS
5.794 23163
00
THPFOS
0
0
0
PFOS
0
0
00
THPFOS
0
0
0
PFOS
0
0
00
THPFOS
0
0
0
PFOS
0
0
0.0.
THPFOS
0
0
0
PFOS
0
0
0.0
THPFOS
0
0
0
PFOS
0
0
0.0
THPFOS
0
0
0
PFOS
0
0
00
THPFOS
0
0
0
PFOS
0
0
0.0
THPFOS
0
0
0
PFOS
0
0
0.0
THPFOS
0
0
0
PFOS
0
0
0.0
THPFOS
0
0
0
PFOS
0
0
0 0 ~~
THPFOS
0
0
0
PFOS
0
0.0
THPFOS
0
0
0
PFOS
0
0.0
THPFOS
0
0
0
PFOS
0
0.0
THPFOS
0
0
0
PFOS
0
0.0
THPFOS
0
0
0
PFOS
0
0
0.0
THPFOS
0
0
0
PFOS
5.733 25813
0.0
THPFOS
0
0
0
PFOS
5.735 18305
0.0
BACK TO MAIN
HOIMO2b.xls
Sample Batch HOlW2.b. analyzedon Hlllary ocO201. PFOS AdsorblDesorbsamples. Matrix: SolUSlglSed. Standardcuwe range used for calibration OF sampler: 5-1002 nghnL Batch method H010402b.m
In] Date
Batch
Samplype File
SamDle Name
4/3/01 3 14 D ChemWillary\H010402b SAMPLE HILL0077D 0 n&L PFOS in MeOH
413/01 3 28 D\ChemWillaryW010402b 4/3/013 43 D ChemWdlary\HOIC4Mb
CALIBIZ CALIB 1
HILL0078D 2 5 ngmL PFOS In MeOH HILL0079D 5 ngm. PFOS m MeOH
413/013 57 D\ChemWillaryWO10402b CALIB-3 HILL0080D IOnghnl PFOSm MSOH
4/3/014 11 D ChemWdlaryWOlC402b CAUB-4 HILL0081D 25 ngmL PFOS m MeOH
4/3/01 4 26 D ChemWillaryW010402b SAMPLE HILL0082D 40n#mL PFOS in MeOH
4/3/014 40 D \CChemWdlaryW010402b CALIB-5 HILL0083D 50 1ngmL PFOS in MeOH
4/3/014 54 D\ChemWiIlary\HO10402b CALIB-6 HILL0084D ?5 1 ngmL PFOS In MeOH
4/3/01 5 09 D \ChemWillwyWOlM02b CALIB-7 HILL0085D 1002 nglmL PFOS in MeOH
4/3/01 5 23 D\ChemWiIlaryW010402b CALIB-8 HILL0086D 250 5 n@mLPFOS In MeOH
4LW1 5 38 D ChemWillaryWOlM02b SAMPLE HILL0087D 4W 8 ngmL PFOS in MeOH
413/01 5 52 D\ChemWdIaryW010402b CALlE-9 HILLW88D 501 ngmL PFOS In MeOrl
4/3/01606 DChemWiIIaryWOIM02b CALIB-IO HILLWB9D loo2 nglmL PFOS in MeOH
4f3/0123 24 D ChemWillaryWO10402b SAMPLE HILL0161D OWmL PFOS in MeOH
4/3/0123 39 DChemWillaryWOlM02 b CALIB-11 HILL0162D 2 5ngmL PFOS in MeOH
4/3/0123 53 D ChemW1llaryW010402b CALIB-12 HILL0163D 5 ngmt PFOS in MeOH
4/4/01 0 07 D \ChemWillaryW010402b CALIB-13 HILLO164D IOngmL PFOS in MeOH
4/4/010 2 2 D ChemWillaryWO10402b CALIB-14 HILL0165D 25 ngmL PFOS in MeOH
414101 0 36 D\ChemWillaryW010402b SAMPLE HILLOIE6D 40 ngmL PFOS in MeOH
4/4/01 0 50 D \ChemWllaryWO10402b CALIB-15 HILL0167D 50 1ngmL PFOS in MeOH
4/4M1 105 D ChemWilla~WOl0402b CALIB-16 HILL0168D 75 1 n#mL PFOS in MeOH
4/4/01 I19 ~ \ C h e m ~ 1 I l a r y ~ 0b1 0 4C~ALIB-17 HILL0169D 1W 2 namL PFOS in MeOH
4/4/01 134 D\ChemWillaryW010402b CALIB-18 HILL0170D 2% 5 ngmL PFOS ~1MeOH
4/4/01 1 48 D \ChemWillaryW010402b SAMPLE HILL0171D 4W 8 ngmL PFOS In MeOH
4/4/012 02 D ChemIHdlaryW10402b CALIB-19 HILL0172D 501 n@mLPFOS in MeOH
4/4/012 17 DChemWillaryW010402b CALIB-20 HILL0173D 501 ngmL PFOS in MeOH
THPFDS MI% InfComnoundNI RT
Ana
Amount
5106 1211876
254
THPFOS
5105 1169631
254
THPFOS
5108 1115864
254
THPFDS
5097 1128520
254
THPFOS
5105 1132730
254
THPFOS
5104 1144180
254
THPFOS
5112 1088719
254
THPFOS
5105 10M910
254
THPFOS
5107 1034615
254
THPFOS
5105
86924a
254
THPFOS
5105
988215
254
THPFDS
51Og 1060823
254
THPFOS
5107
928336
254
THPFOS
5105 1337731
254
THPFOS
5 1 1311179
254
THPFOS
5097 1236112
254
THPFOS
5101 1272114
254
THPFOS
5087 1204745
254
THPFOS
5 1 1303887
254
THPFOS
50%
1207553
254
THPFOS
5Q99 1208046
254
THPFOS
5101 1167221
254
THPFOS
509 1093910
254
THPFOS
5091 1097069
254
THPFOS
5091 1175367
254
THPFOS
5104 1023103
254
Compound NInUT PFOS PFOS PFOS PFOS PFOS
PFOS
PFOS PFOS PFOS PFOS PFOS PFDS PFOS PFOS
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
0 5322 5325 5321 5 322 5329 5336 5322 5331 5329 5329 533 5331
0
531 5307 5 311 5308 531 5306 5309 5318 5307 5309 5309 5321
Area
Amount
0
0
76308 3386026
108804 5067026
209068 9618429
565907 26 00359
929336 4242639
1114128 5358744
1636985 8209443
2152918 1103641
4767587 2698584
7513403 4302713
9712588 5273099
15404980 1041642
0
0
76978 3057097
107847 4535542
208869 8524792
W 7 1 4 2270129
928989 3717265
I099646 4762208
1590311 6917822
2147218 972829
4811322 2398238
7530799 3852073
9910075 4816606
15786129 9510902
1487085 +30%: 800738 30%:
101% 96% 104% 106% 107% 109% t*O% 108% 107% 105% 104%
91% 05% 91% 93% 95% 92% 97% 96% %% 96% 95%
0
-h
page r of 3
BACK TO MAIN
In] Date
Batch
4nm1 2 45 O\ChemWillaryW010402b
SamPTYF,e SAMPLE
4/3/012 59 0\ChemWdIaryW010402b SWPLE
4/3/016 21 D \ChemWillaiyW010402b SAMPLE
4133101 6 35 0\ChemWillaryv1010402b SAMPLE
4 ~ m7i 04 D \ChemWillaryWO104OZb SAMPLE
4/3/017 33 0 \ChemWillaryWo10402b SAMPLE
40mi 8 02 0 !ChemWillaryW010402b SAMPLE
4/3/01 8 30 D \ChemWillaryW010402 b SAMPLE
4 n m i 8 59 0 \ChemWillaryWO10402b SAMPLE
4/3/01 9 28 D\ChemWdIaryW010402b SAMPLE
4/3/01 9 57 D \ChemWillaryW010402b SAMPLE
4/3/01 10 26 OU)hemWillaryW010402b SAMPLE
4/3/01 10 55 O\ChemWillary\HOl0402b SAMPLE
413101 11 52 O\ChemWillaryW010402b SAMPLE
4/3/01 1207 O!ChemWiIlary\H01040202 b SAMPLE
4 n m i 12 35 0 \ChemWillaryWOl0402b SAMPLE
4/3/01 13 04 0 \ChemWillaryW010402b SAMPLE
4/3/01 13 33 0 \ChemWillaryW010402b SAMPLE
4/3/01 14 02 D \ChemWillaryWOl0402b SAMPLE
4nm1 14 31 o \ C h e m ~ ~ I l a r y ~ O l WbO Z SAMPLE
4/3/01 1500 D\ChemWillaryW010402b SAMPLE
413101 15 26 D\ChemWilIaryWOlC402b SAMPLE
4/3/01 15 57 D \ChemWillaryW010402b SAMPLE
4 n m i 16 26 D \Cham~llaryV1010402b SAMPLE
4/3/01 17 24 D \ChemWillaryW010402b SAMPLE
413101 17 36 D ChemWtllaryW010402b SAMPLE
40mi 18 07 D \ChemWilIaryW010402b SAMPLE
4/3/01 18 36 O\ChemWilla~W010402b SAMPLE
4/3/01 19 05 D \ChemWillaryW010402b SAMPLE
4/3/0119 33 O!ChemWillaryW010402b SAMPLE
4/3/012002 O\ChemW~llary\HO1040b2 SAMPLE
4/3/0120 31 D !ChemWillaryW010402b SAMPLE
4/3/0121 00 O\ChemWillaryW010402b SAMPLE
4 n m i 21 29 O\ChemWillaryW010402b SAMPLE
41301 21 58 \ChemWillaryW010402b SAMPLE
4/3/04 22 55 0 !ChemWilleryW010402b SAMPLE
4nmi 23OI D \ChemWillaryW010402b SAMPLE
4 ~ m2i 31 0 \ChemWillaryWO10402b SAMPLE
4/4/012 45 D \ChemWilla~WO1040b2 SAMPLE
flle HILL0075 D HlLLW76.D HILLOO9O.D HILLW91.D HILLOW3 D HlLLW95.0 HILL0097.D HILLWQ9.D HILL0101 D HILLO103.D HILL0105 D HILL0107.D HlLL0109.D HILLO113.D HlLL0114.D HILLO1IG.D HlLL0118.D HILL0120 D HILL0122 0 HILL0124.D HILL0126.D HILLO128.0 HILLO130.D HILL0132.D HILL0136.D HlLL0137.D HILL0139.D HILL0141.0 HILL0143.D HILL0145 0 HILL0147.0 HILL0149.D HILLOl51.D HILL0153 D HILL0155 0 HILL0159.D HILL0160 D HILL01740 HILL0175.D
Sample Name TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4602 MeOH TN-A 4802 MeOH TN-A 4602 MeOH
TN-A 4802 MeOH
TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TNA 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TNA 4802 MeOH TNA 4802 MeOH TNA 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TNA 4802 MeOH TNA 4802 MeOH TNA4602 MeOH TN-A 4802 MeOH TNA 4602 MeOH
TN4 4602 MeOH TNA4802 MeOH
TN-A 4802 MeOH TNA4602 MeOH TN4 4802MeOH TN-A 4802 MeOH TN4 4802 MeOH TN-A 4802 MeOH TNA 4802 MeOH TN-A4802 MeOH TN-A 4602 MeOH TNA4802 MeOH TN-A 4802 MeOH TNA 4602 MeOH
H010402b.xls
Miss lnfcompound Na UT THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
A*. 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Amount
0
0
'0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Compound NanRT PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
A 0 0 5425 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
0
0 0 0 0
0 0
m
Amount
0
0
0
0
56059
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
page 2 of 3
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.
H010402b.xls
C'
Inj Date
Batch
4/3/01 6 49 D \ChemWillaryW010402b
4i-31017 18 DChemWillaryW010402b
4/3/01 7 47 D \Chem\HillaryW010402b
4/3/01 8 16 DChemWillaryWOl0402b
4/3/01 8 45 D\ChemWillaryW010402b
4/3/01 9 14 D\ChemWillaryW010402b
4 1 3 ~ 1 942 D ChemVlillwjWO10402 b
4/3101 10 11 DChemWilIaryW010402b
4/3/01 1040 DChernW1llaryWO10402b
4/3/01 11 09 DChemWilIaryW010402b
4/3/01 1123 DChemWIIlaryW010402b
4/3101 11 38 DChemWillaryWOl04OZb
4/3/01 12 21 DChemWillaryW010402b
4nm1 12 50 DChemWillaryW010402b
4/3/01 13 19 DChemWillaryW010402b
4/3/01 1348 DChemW1llaryW010402b
4/3/01 14 17 DChemWillaryW010402b
4/3/01 14 45 D ChemWillaryW010402b
4/3/01 15 14 DChemWillaryWOlO402b
4/3/01 1543 D ChemWilIaryW010402b
413101 16 12 D ChemVlill~Wo10402b
4/3/01 16 40 D ChemWillaryW010402b
4/3/01 1655 D ChemWillaryW010402b
4/3/01 1709 DChernW1llaryW010402b
4/3/01 1752 DChemUiiIIaryWOl0402b
4/3/01 1821 D ChemWillaryW010402b
4/3/01 1850 D ChemWillaryW010402b
4/3/01 19 19 DChemWillaryW010402b
4/3101 1948 D\ChemWllla1yW010402b
4/3/0120 17 D\ChernW1UaryWO10402b
4/3/0120 46 D ChemWillaryWOl0402b
4/3/01 21 14 D\ChemWlllaryW010402b
4/3/01 21 43 DChemW1IIa~Ol040b2
4/3/0122 12 D \ChemWillaryW010402b
4/33/0122 27 D \ChemWillaryW010402b
4/3/0122 41 D\ChemWillayW01~02b
SampType SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
File HILL0092.D HILLW94.D HILL0WG.D HILL0098.D HlLLOlW.D HtLW102.0 HILL01M.D HILL0106.D HILL0108.D HILLOl1O.D HILLO1ll.D HILL0112.D HILL0115.D HILLO117.D HlLLOl19.D HILLO12l.D HlLL0123.D HILL0125.D HILL0127.D HILL0129.D HILLO131.0 HILL0133.D HILL0134.D HILL0135 D HILL0138.D HILL0140D HILL0142D HILL0144 D HILL0148D HILL0148D HILLOISOD HILL0152D HILL0154D HILL0156 D HILL0157 D HILL0158 D
SimDle Name 5 m g i PFOSSudy Number E001311 5mgA PFOS Study Number E00-1311 5mgA PFOS Study NJmber E001311 5mgA PFOSShdy Number EW-1311 5mgA PFOS SlLdy Number E001311 smgh PFOS Study Number EW-1311 5Wk PFOS Sludy Nlul?OwEW-1311 5mgA PFOS Study Number EW-1311 5mgA PFOS Study Nurnber EW-1311 5mgk PFOSSlddy humber E00-1311 5 ndmL PFOS In MeOH
2% 5 q / m L PFOS in MeOH
Smgk PFOSStudy Number EW-1311 5W PFOS SlLdy Number EW-1311 5mgA PFOS Study Ndmber EW-1311 5mgll PFOSStudy Number EW.1311 S M PFOS Study Number EW-1311 5mgA PFOS Study Numbsr E001311
5mgA PFOSS M y Numwr E001311
smen 5mgL PFOS Saay NJmber EW-1311 PFOSstudy N ~ EW W-I~II 5 M PFOS S M y Nmber EW-1311 5nprmL PFOS In MeOH 2% 5 ngmL PFOS on MeOH Smpll PFOS Sludy Number EW-1311 5mgk PFOS Study Number EW-1311 5mgA PFOS Study Number EW-1311 5mgll PFOS Study Number EW-1311 SmgA PFOS Study Number E00-1311 5mgA PFOS Study Number E00-1311 5mgllPFOS Study NurnberEW-1311 5mgllPFOSStudyNumberE00-1311 Smgk PFOS Study Number EW-1311 5mgA PFOS Study Number EM)-1311 5 n$mL PFOS in MeOH 250 5 ngmL PFOSin MeOH
Mire InfCompound Na RT
nmr
Am o u n t
Compound NanRT
Am
Amount
THPFOS
5106 1643044
254 ISTD>130% PFOS
533 209598 6621818
THPFOS
5112 1594154
254 ISTD>130% PFOS
5329 3430184 1142188
THPFOS
5106 1605329
254 ISTD>130% PFOS
5323 73592 2392023
THPFOS
5097 1598522
254 ISTD>130% PFOS
5314 58889 1919775
THPFOS
5103 1558836
254 ISTD>lM% PFOS
5321 63584 2 130565
THPFOS
5105 1574536
254 ISTD>130% PFOS
5322 3247504 1093654
THPFOS
5105 1563077
254 IST0>130% PFOS
5329 72818 2430454
THPFOS
5098 1582850
254 lSTD>l30% PFOS
5322 99365 3268414
THPFOS
5098 1574580
254 ISTD>13O% PFOS
5323 173732 5731799
THPFOS
5099 1545068
254 ISTD>130% PFOS
5323 3282444 1127346
THPFOS
5105 1418003
254
PFOS
5322 111688 4096218
THPFOS
5105 1327511
254
PFOS
5322 4689629 190655
THPFOS
5087 1772997
254 ISTD>130% PFOS
5319 178540 5232697
THPFOS
5091 1580363
254 ISTD>130% PFOS
5309 143612 472336
THPFOS
509 1599960
254 ISTD>130% PFOS
5314 73070 2363101
THPFOS
5098 1583275
254 ISTD>130% PFOS
5322 3194485 1069281
THPFOS
5093 1507671
254 ISTD>l3O% PFOS
531 74289 2569598
THPFOS
5 1 1613223
254 ISTD>l3O% PFOS
5317 73272 2370152
THPFOS
5099 1542538
254 ISTD>130% PFOS
5316 125073 4216276
THPFOS
50% 1558630
254 ISTD>130% PFOS
5316 3322158 1131153
THPFOS
5097 1638237
254 ISTD>130% PFOS
5314 132485 420529
THPFOS
5104 1636599
254 ISTD>13O% PFOS
5314 188089 5969764
THPFOS
5103 1485841
254
PFOS
5313 102882 3603134
THPFOS
5112 1395726
254
PFOS
5322 4803174 1855252
THPFOS
5093 1654266
254 ISTD>130% PFOS
531 189555 595208
THPFOS
5099 1604691
254 ISTD>130% PFOS
5318 3364843 1112337
THPFOS
5 1 1567626
254 ISTD>130% PFOS
5317 70689 2353252
THPFOS
5098 1657152
254 ISTD>130% PFOS
5315 150169 4710199
THPFOS
5098 1628130
254 ISTD>13O% PFOS
5308 256726 8 187031
THPFOS
5105 1586581
254 ISTD,130% PFOS
5315 3420939 1144608
THPFOS
5106 1594869
254 ISTD>130% PFOS
5316 197132 641957
THPFOS
5105 1613975
254 ISTD>130% PFOS
5315 178892 5757917
THPFOS
5104 1847163
254 ISTD>130% PFOS
5314 88721 2807077
THPFOS
5098 1616736
254 ISTD>130% PFOS
5308 3291692 1079254
THPFOS
5097 1495313
254 ISTD>130% PFOS
5308 111995 3895974
THPFOS
5099 1408690
254
PFOS
5309 4791463 1832822
82% 76%
72% 74%
78% 73%
page 3 of 3
BACK TO MAIN
R010404 extemai sld quantds
LG, Sample Batch R010404.b, analyzedon Hillary 044441. PFOSAdsorbmesorb sampler. Matrix: SolllSlplSed. Standard cuwe range used for calibration01 samples: IO-lW2 n#mL Batch method: UO1MM.m (ENrn.1 Standard Quat)
Inj Date
Batch
4/4/01 17 33 D \Chem\RurhW010404 b
SampTyP SAMPLE
4/4/01 1748 D \ChemWurhW010404b CALlB-1
414101 18 02 DChemWushW0104M b CALIB-2
4/4/01 16 16 D \Chem\RurhW010404b CALIB-3
4/4/01 18 31 D C h e ~ ~ R ~ s ~ ' i ? 0b1 0 4C~ALiB-4
4/4/01 18 45 D ChemWurh\R010404 b SAMPLE
4/4/01 18 59 D Chem\RushW010404b cALiB-5
4/4/01 19 14 D \Chern\RurhW010404b CALIB-6
4/4/01 19 28 D Chem\Rurh\R010404 b CAUB-7
4/4/011943 DChem\Rush\ROlD404b CALIB-8
4/4/01 19 57 D ChemRushW0104C-i b SAMPLE
4/410120 11D \Chem\Rush\RO10404b CALIB-9
4/4/0120 26 D \ChemRush\RO10404b CALIB-IO
4/5/01 14 08 D ChemWurhW010404 b SAMPLE
4/5/01 1422 D ChemWush\R010404b CALIB-11
4/5/01 14 36 D \ChemWurh\R010404b CALIB-12
4/5/01 1451 D CtvemWushW010404b CALIB-13
4/5/01 1505 D \ChemWurh\R010404b CALIB-14
415101 15 19 D\Chem\Rush\R010404b SAMPLE
4/5/01 15 34 D ChemRushW010404 b CALlB-15
4/5m11548 D \ChemWurh\R010404b CALIB-18
4/5/01 16 03 DChemRush\R010404 b CAUB-17
4/5/01 16 17 D \Chem\RushW010404b CAUB-18
4151011631 D \ChsmWush\RO10404b SAMPLE
4/5/01 1646 D Chem\RushW010404b CALlB-19
4/5/01 17 00 D lChemRushW010404b CALIB-20
nl.
RUSH0017 D RUSH0018 D RUSHW19 D RUSH0020 D RUSH0021 D RUSH0022 D RUSH0023 D RUSH0024 D RUSH0025 D RUSH0026 D RUSHW27 D RUSH0026 D RUSHW29 D RUSHW96 D RUSH0099 D RUSH0100 D RUSH0101 D RUSH0102 D RUSH0103 D RUSH0104 D RUSH0105 D RUSH0108 D RUSH0107 D RUSH0108 D RUSHOlO9.D RUSHOl1O.D
Sample Name 0 ngmL PFOS in MeOH 2.5 n@mLPFOSin MeOH 5 nglmL PFOS in MeOH 1 0ndmL PFOSin MeOH 25 N m L PFOSin MeOH 4 0 ngimLPFOSin MeOH 50.1 n$mL PFOSin MeOH 75.1nglmLPFOSin MeOH 100.2nglmL PFOSin MeOH 2M5 nUmLPFOSin MeOH 400.8n&nL PFOSin MeOH M1ngmL PFOSin MeOH 1002ngImLPFOSin MeOH 0 ngmL PFOS in MeOH 2.5 n#mL PFOSinMeOH 5 nglmL PFOS in MeOH 10n#mL PFOSin MeOH 25 n p L PFOSin MeOH 40 WmL PFOSinMeOH 50.1nglmLPFOSin MeOH 75.1 WmL PFOS in MeOH 100.2nNmL PFOSin MeOH 250 5 n#mL PFOSin MeOH 4W.8 nglmL PFOS in MeOH 501 ngmL PFOSinMeOH 1W2 nglmLPFOSIn MeOH
Miss IniCompOundNaRT THPFOS THPFDS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
Ana 5.582 5 579 5 591 5 595 5 569 5 587
558 6 588
5 598 5 569 5 585
5 588 5 581 5 574
5 579 5 581 5 567 5 573 5 585 5 578 5 577 5 565 5 588 5 589
5584 5 561
Amount
583312
254
598272
254
61sB09
254
603517
254
a229
254
607817
254
012230
254
820258
254
614982
254
641474
254
615848
254
625082
254
640512
254
567197
254
573134
254
587603
254
566302
254
587276
254
550302
254
571777
254
568082
254
565114
254
573672
254
560876
254
557017
254
575273
254
Compound N i R T PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
A 0 5.789 5 801 5 805 5 792 5 79 5 79 5 799 5 799 5 792 5 788 5 798 5 784
0 5 782 5 764 5 777 5 783 5 788 5 781 5 787 5 768 5771 5 772 5 707 5 764
m
Amount
0
0
170517
0
216580 OW3813
300075 5901514
587394 2529359
825934 4428921
998065 5734062
1408399 88 63623
174Mx9 114 5699
3758226 2843931
5347186 4324344
6357305 533 1193
11034302 1065 901
0
0
147436
0
189460
0
258280 290194
519265 21 77576
736331 3773328
897827 49 75867
1258308 77.07207
1578440 1018738
~ ~ 5 0 4 22248 4373
4782617 378.3062
5638078 4609056
9804704 9152275
1% 53% 101% 111% 114% 118% 114% 114% 108% 106% 106%
0% 29% 87% 94% 99% 103% 102% 99% 94% 92% 91%
Averam: 591028,653 20847.711Q
XRSD: 4.5%
708337 +30%: 413720 -30%:
Inj Date
Batch
4 1 4 ~ 137 05 DChemWushW010404b
4/4/01 17 19 DChemWurhW010404 b
41410120 40 D\chem~ushWO10404b
n
i
4/4/01 20 54 DChemWurhW010404 b 4/5/010 01 D\Chem\Rurh\R010404b 4/5/01 0 15 D ChemWurhW010404 b
2 i n
4/5/013 22 D \Chem\Rush\R010404b 4/5/013 37 D ChemWurhWO10404b 4/5/016 54 D \Chem\RushW010404b
4/5/01 7 08 D ChemWush\R010404b
4/5/01 10 15 DChem\RushW0104W b
4/5/01 10 30 D \ChemWurh\ROlM04 b
4l5101 12 25 D\Chem\Rurh\R010404b
415101 13 39 D EhemWurhW010404 b
41510113 53 D Chem\Rush\R010404b
4/5/01 17 14 DChemWushW010404 b
4/5/01 17 29 D ChemWurhW010404 b
SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
File RUSH0015 D RUSH0016 D RUSH0030 D RUSH0031 D RUSH0044 D RUSHM)45 D RUSH0058 D RUSH0059 D RUSHW72 D RUSH6373 D RUSH0086 D RUSH0067 D RUSHW95 D RUSHW96 D RUSHW97 D RUSH0111 D RUSH0112 D
Sample Name TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 M ~ O H TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH
MISC lnkompound NaRT THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
AIU 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Amwnt
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Compound N a R l PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
Ana 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Amount
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
4
0 w
page 1 of 2
BACK TO MAIN
-0
9) (P
(D
ROIMM external6td q ~ n L x l i
Inj Date
Batch
4/4/0121.09 D.\Chem\Rush\R010404.b
4/4/01 21:23 D'\Chem\RuSh\R0104M.b
4/4/0121 37 D \Chem\Ruih\R010404b
41410121 52 D \Chern\Rush\R010404 b
41410122 06 D \ChemiRushW010404b
4/4/0122 20 D \Cham\Rush\R010404b
4/4/0122 35 D \Chern\Rurh\R010404b
4'4/0l 22 49 0 Ciiem8ushW010404 b
4/5/0123 03 D \Chem\RurhW010404b
4/5/01 23 18 D \Chern\RurhW010404b
4/5/0123 32 D \Chem\RurhW010404b
4/5/0123 47 D \Chem\Ru5hR010404b
415/01030 D ~hem~urh\R01040b4
4/5/01 0 44 D \Chem\Rurh\ROIMM b
4/5/010 58 D\Chem\Rurh\R010404b
4/5/01 1 13 D \Chern\Rush\R010404 b
4/5/01 127 D \ChemRush\R010404b
4/5/01 1 42 D \Chem\Rurh\R010404b
4/5/01 156 D \ChemWurhW010404b
4/5/012 10 D \Chem\Rush\R010404b
4/5/012 25 D \Chem\Rush\R010404b
4/5/012 39 D \Chem\Rush\R0104M b
4/5/01 2 53 D \Chem\Rush\R010404 b
4/5/01 3 08 D \ChemWurh\RO10404 b
4/5/013 51 D \Chern\Rurh\R010404b
4/5/014 06 D \Chem\Rush\ROlMMb
4/5/014 20 D \Chem\Rurh\R010404b
4/5/014 34 D \Chem\Rurh\R010404b
4/5/014 49 D \ChemRurh\R010404b
4/5/01 5 03 D \Chem\Rurh\R010404b
4/5/015 17 D \Chem\Rurh\R010404b
4/5/01 5 42 D \Chem\Rush\R010404b
4/5/015 56 D \Chem\RushW010404b
415101 6 11D \ChemWush\R010404b
4/5/016 25 D \Chem\Rurh\R010404b
4/5/016 39 D Chem\RushWO10404b
4/5/017 23 D ChernWurhW010404b
4/5/017 37 D Fhem\Rush\R010404b
4/5/01 7 51 D \Chem\Rurh\R010404b
415/018 06 D \Chem\Rush\R010404b
4/5/01 8 20 D \Chem\Rurh\R010404b
4/5/01 8 34 D \Chem\Rurh\R010404b
4/5/01 8 49 D \ChemWurh\R010404 b
4/5/01 9 03 D \Chem\Rurh\R010404b
4/5/01 9 18 D\Chem\Rurh\R010404 b
4/5/019 32 D ChemWuShiR010404b
4/5/019 46 D \Chem\Rurh\ROIMMb
415101 1001 D \Chem\Rurh\R010404b
4/5/01 1044 D \Chsm\Rurh\R010404b
4/5/01 10 58 D \Chern\RurhW0104Mb
4/5/01 11 13 D \ChemWush\R010404 b
4l5101 1127 D \Chem\Rush\R010404b
4/5/01 1142 D \Chem\RurhW010404b
4/5/01 1156 D\Chem\Rush\R010404b
4/5/01 12 10 D \Chern\Rurh\R010404b
SampTyyp SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
Flle RUSHW32.D RUSHW33 D RUSH0034 D RUSHW35 D RUSH0036 D RUSH0037 D RUSH0038 D RUSH0039 D RUSH0040 D RUSH0041 D RUSH0042 D RUSH0043 D RUSH0046 D RUSH0047 D RUSH0048 D RUSH0049 D RUSHOOM D RUSH0051 D RUSHW52 D RUSHW53 D RUSH0054 D RUSHW55 D RUSH0056 D RUSH0057 D RUSHOOM) D RUSHWel D RUSHW62 D RUSHWe3 D
RUSH0064 D RUSHM)65 D RUSHW68 D RUSHW67 D RUSHWeB D RUSHW69 D RUSH0070 D RUSH0071 D RUSHW74 D RUSH0075 D RUSHW76 D RUSH0077 D RUSHW78 D RUSHW79 D RUSH0080 D RUSH0081 D RUSHM)82 D RUSH0083 D RUSH0084 D RUSHCQ85 D RUSHW88 D RUSH0089 D RUSHW90 D RUSH0091 D RUSH0092 D RUSH0093 D RUSH0094 D
Simple Name Study Number EW-1311 Study NumberE001311 Study Number E00-1311 Study Number EW-1311 Study Number EW-1311 Study Number E001311 Study Number EW-1311 Study Number EM)-1311 Study Number E001311 Study NumberEm1311 5 ng/mLPFOS in MeOH 250 5 n g h L PFOS in MeOH Study Number E00-1311 Study Number EW-1311 Study Number EW-1311 Study Number EM)-1311 Study Number EW-1311 Study Number EW-1311 Study Number EW-1311 Study Number E00-1311 Study Number EW-1311 Study NumberEm1311 5 nWmL PFOS m MeOH 250 5ng/mL PFOSin MeOH Study Number E00-1311 Study Number EW-1311 Study Number E00-1311 Study Number EW-1311 Study Number UX)-1311 Study Number E001311 Study NumberE00-1311 Study Number E00-1311 Study Number E00-1311 Study NumberEm1311 5 n@mLPFOSm MeOH 250 5 ng/mL PFOS in MeOH Study Number E001311 Study NumberE001311 Study NumberEW-1311 Study NumberEm1311 Study Numbar E001311 Study Number EW-1311 Study NumberEW-1311 Study Number EW-1311 Study NumberEW-1311 Study Number E00-1311 5 ngimL PFOS m MeOH 250 5 WmL PFOSm MsOH Study NumberE001311 Study NumberE001311 Study NumberEM)-1311 Study Number E00-1311 Shdy Number EOO-1311 5 nUmLPFOSm MeOH 250 5 ng/rnL PFOSm MeOH
Mlrc InfCompound NaRT
Ama
'
THPFOS
5 589
THPFOS
5 589
MPFOS
5 574
THPFOS
5 596
THPFOS
558
THPFOS
5 574
THPFOS
5 581
THPFOS
5 578
THPFOS
5 579
THPFOS
5 575
THPFOS
5 575
MPFOS
5 582
THPFOS
5 57
THPFOS
5 58
THPFOS
5 608
THPFOS
5 586
THPFOS
5 565
THPFOS
5 587
THPFOS
5 578
THPFOS
5 578
THPFOS
5 588
THPFOS
5 594
THPFOS
5 589
THPFOS
5 589
THPFOS
5 579
MPFOS
5 581
THPFOS
5564
THPFOS
5 565
THPFOS
5 565
THPFOS
5 567
THPFOS
5 575
THPFOS
5 635
THPFOS
5 596
THPFOS
5 614
THPFOS
5 616
THPFOS
5 598
THPFOS
5 581
THPFOS
5 581
THPFOS
5 596
THPFOS
5 59
THPFOS
5 582
MPFOS
5 594
THPFOS
5 603
THPFOS
5 597
THPFOS
5 585
THPFOS
5 582
MPFOS
5 589
THPFOS
5 5e4
MPFOS
5 574
THPFOS
5 575
THPFOS
5 574
THPFOS
5 581
THPFOS
5 582
THPFOS
5 586
THPFOS
5 571
Amount
867461
254
843971
254
856577
254
103366g
254
7.84276
254
797188
254
753794
254
795069
254
817238
254
860427
254
566116
254
559850
254
862542
254
787133
254
934664
254
863820
254
1126734
254
942383
254
808043
254
978478
254
1316674
254
899797
254
619700
254
583040 254
904765
254
896633
254
902428
254
898486
254
913892
254
958949
254
747595
254
953521
254
921327
254
956257
621485
591317
672912
921483
254
914616
254
929161
254
924098
254
903461
254
884953
254
998451
254
941330
254
1193912
254
681210
254
626988
254
789982
254
1022922
254
970087
254
999735
254
808526
254
685035
254
844837
254
Compound NaRT
ARa
Amount
ISTDrlJO% PFOS
0
0 '0
ISTD>130% PFOS
0
0
0
ISTD>130% PFOS
0
0
0
ISTD,130% PFOS
0
0
0
ISTD,13Wb PFOS
0
D
O
ISTD430% PFOS
0
0
0
PFOS
0
0
0
ISTD>13O% PFOS
0
0
0
ISTD>130% PFOS
0
0
0
ISTD>130% PFOS
0
0
0
PFOS
0
0
0
PFOS
5.785
3853083 275.043
ISTD>130% PFOS
0
0
0
ISTD430% PFOS
0
0
0
ISTD>130% PFOS
0
0
0
ISTD113Wb PFOS
0
0
0
ISTD>130% PFOS
0
0
0
ISTD>130% PFOS
0
0
0
ISTDr1309L PFOS
0
0
0
I S T D 1 3 W PFOS
0
0
0
ISTD>130% PFOS
0
0
0
ISTD>l30% PFOS
0
0
0
PFOS
0
0
0
PFOS
5.792
3610058 271.2329
ISTD>l30% PFOS
0
0
0
ISTDz13046 PFOS
0
0
0
ISTD>13O% PFOS
0
0
0
ISTD>130% PFOS
0
0
0
tSTD>130% PFOS
0
0
0
ISTDz130% PFOS
0
0
0
PFOS
5.778
2604047 184.7008
ISTDrl30% PFOS
5.845
267284 3.547403
ISTD>130% PFOS
0
0
0
0
0
0
0
0
0
5.801
3590033 269.4627
5.792
3440014 256.2652
ISTD>130% PFOS
0
0
0
ISTDr130% PFOS
0
0
0
ISTD,130% PFOS
0
0
0
ISTDrl3O% PFOS
0
0
0
ISTD>130% PFOS
0
0
0
ISTDrl30% PFOS
0
0
0
ISTD>130% PFOS
0
0
0
ISTD>13O% PFOS
0
0
0
ISTD>130% PFOS
0
0
0
PFOS
0
0
0
PFOS
5.794
3481787 259.9287
ISTD>130% PFOS
5.777
2772186 I98 8805
ISTDz130% PFOS
0
0
0
ISTD>130% PFOS
0
0
0
ISTD>130% PFOS
0
0
0
ISTD>130% PFOS
5.785
225U127 1555797
PFOS
0
0
0
PFOS
5.775
3467170 258.6458
0.0% 109.8%
0.0% 108.3%
0.0% 107.6%
0.0% 103.8%
0 0% 103.3%
page 2 of 2
BACK TO MAIN
Sample Batch HOlO329.b, analyzed on Hillary 03-29-01. PFOS AdsorblDesorb samples. Matrix: SoillSlglSed. Standard CUNB ranae used for calibration of samples: 5-1002 ng/mL (2.5 nglmL s l d not included due to (he higher sample concentration range). Batch method H010329.m
In1Date
Batch
SampType File
Sample Name MisC InfCompounb(T
3R9/01 17 54 D \ChemUiillaSAMPLE HILLWIG D 0 ndmL PFOS in
THPFOS
3/29/01 1809 D:\Chem\HillCALlB-l
HILLOO17.D 2.5 &lmL PFOS I
THPFOS
3/29/01 1823 D:\ChemiHillCALIE-l
HILL0018.0 5 ng/mL PFOS in
THPFOS
3/29/01 18:38 C?!Chem\HiII CALlE-2 HILL0019.D 10nglmL PFOS i
THPFOS
3129101 1852 D:\Chem\HillCALlB-3 HlLL0020.D 25 nglmL PFOS in
THPFOS
3/29/01 19 06 D \Chem\H liaSAMPL.5 HILLOO~I 0 4 0 n@mLPFOS in
THPFOS
3/29/01 1921 O\Chem\HillCALIE-4
HILLO0ZZ.D 50.1 nglmL PFOS
THPFOS
3/29/01 1935 D:\Chem\HillCALIE-5 HILL0023.D 75.1 n@mLPFOS
THPFOS
1/29/01 19:49 D:\Chem\HillCALIE-6 HlLL0024.D 100.2 nglmL PFO
THPFOS
3/29/01 20:M D:Chem\HillCALlB-7
HILLOO25.D 250.5 nglmL PFO
THPFOS
3/29/01 2O:t8 D:\Chem\HillCALIE-8 HILL0026.D 400.8 ng/mL PFO
THPFOS
3/29/01 20:33 D:\Chem\HillCALIE-9 HILL0027.D 501 nglrnL PFOS
THPFOS
3/29/01 2047 D:\Chem\HillCALlE-10 HILL0028.D 1002 ng/mL PFOS
THPFOS
3/31/01 16 58 0 \Chem\HhSAMPLE HILL0212 D 0 n@mLPFOS m
THPFOS
3/31/01 1713 D:\Chem\HillCALIB-11 ~iLL0213.D2.5 ng1mL PFOS I
THPFOS
3131101 1727 D:\Chem\HillCALIB-11 HILL0214.D 5 nglmL PFOS in
THPFOS
3/31/01 17:41 D:\Chcm\HillCALIB-12 HILL0215.D 10nglmL PFOS i
THPFOS
3131101 1756 D.\Chem\HillCALIB-13 HILLO216.D 25 nglmL PFOS in
THPFOS
3/31/01 18 10 D\ChemWr.laSAMPLE HILL0217 D 4 0 n@mLPFOS in
THPFOS
3131101 1825 D : \ C ~ ~ ~ \ H I I ~ C A L I EH-IL~L~0218.D 50.1 nglmL PFOS
THPFOS
3/31101 1839 D.\Chem\HillCALIB-15 HlLLOZl9.D 75.1 nglmL PFOS
THPFOS
3/311011853 D:\Chem\HillCALIE-l6 HILL0220.D 100.2 nglmLPFO
THPFOS
3/31101 19:08 D:\Chem\HillCALlE-17 HILL0221.D 250.5 nglmL PFO
THPFOS
~ 3 1 1~9221 D:\Chem\HillCALIB-18 HILL0222.D 400.8 nglmL PFO
THPFOS
3/31/01 19:36 D:\Chcm\HillCALIE-19 HILL0223.D 501 nglmL PFOS
THPFOS
3/31/01 1951 D:\ChemWillCALIE-ZO HILL0224.D 1002nglmL PFOS
THPFOS
Area
Amount
5.098 960831
254
5.098 970141
254
5.098 1088770
254
5.088 954633
254
5.093 962518
254
5.092 969520
254
5.098 976505
254
5.093 967966
254
5.094 957847
254
0
0
0
5.091 969149
254
5.092 973244
254
5.093 1000466
254
5.07 842487
254
5.on 835488
254
5.078 850162
254
5.07 814436
254
5.071 813666
254
507 800797
254
5.076 805652
254
5.07 799837
254
5.071 789814
254
5.073 812044
254
5.079 775631
254
5.07 783605
254
5.077 814065
254
CompounRT PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
0 5.323 5.315 5.312 5.324 5.316 5.315 5.317 5.318
0 5.316 5.316
5.31 0
5.308 5.302 5.301 5.295 5294 5.294 5.294 5.295 5.29 5.303 5.288 5.294
Amount
0
0
68338 0.677157
154846 3.650955
209554 6.883663
550443 2260741
874302 37.47291
1094742 47.43103
1620491 72.81732
2093623 96.65124
0
0
7386300 370.5128
B ~ ~ O D Mm . 6 5 a s
17048775 914.463
0
0
W J ~ I 0.85a56i
109759 2.805341
179020 7.088001
495753 24.4548
779905 4089347
981753 52.01963
1483559 81.31145
1929027 108.8196
4679248 272.5867
6867611 437.8109
8368086 541.0708
15279147 1050.288
73.0% 68.8% 90.4% 93.7% 94.7% 97.0% 96.5%
0.0% Sample level i n Vial too low
92.4% 90.8% 93.3%
58.1% 70.9% 97.8% 102 2% 103.8% 108.3% 108.6% 68.0% 109.2% 108.0% 104.8%
Averaqe: 857280.5
_ Std D_ ev: _ 1962_ 00.6 _XRS_D:-22.9%
1114465 +30%: 6W096 -30%:
BACK TO MAIN
In1 Date
Batch
SampType
3/29/01 17 26 D \Chem\HdIaSAMPLE
3/29/01 17 40 0 \ChemWillaSAMPLE
3/29/01 21 01 0 \Chem\HillaSAMPLE
3/29/01 21 16 D \Chem\HtllaSAMPLE
3/29/01 21 30 D \Chem\HdlaSAMPLE
3/30/01 0 23 0 \ChemWillaSAMPLE
3/30/01 0 37 0 Charmnti~aSAMPLE
3/30/01 3 44 D \Chem\HillaSAMPLE
3/30/01 3 59 D \ChemWillaSAMPLE
3/30/01 7 06 D \ChemWillaSAMPLE
3/30/017 20 D \ChemWdlaSAMPLE
3/30/01 10 28 D \ChemWillaSAMPLE
3/30/01 10 43 D \Chem\HillaSAMPLE
3/30/01 13 50 D \Chem\HillaSAMPLE
3/30/01 14 05 D\ChemWillaSAMPLE
3/30/01 17 12 D \ChemUlillaSAMPLE
3/30/01 17 27 0 \ChemWillaSAMPLE
3/30/01 20 34 0 \Chem\HillaSAMPLE
3/30/01 20 48 D \ChemWdlaSAMPLE
3/31/01 23 27 o \ChemWilIaSAMPLE
3/31/01 2341 0 \ChemWiIIaSAMPLE
3/31/01 2 48 D \Chem\HtllaSAMPLE
3/31/01 3 03 D\Chem\HillaSAMPLE
3/31/01 6 24 D \Chem\HillaSAMPLE
3/31/01 6 39 D \Chem\HillaSAMPLE
3/31/01 9 46 D \ChemWillaSAMPLE
3/31/01 10 00 D \ChemWillaSAMPLE
3/31/01 13MI D \Chem\HillaSAMPLE
3/31/01 13 22 D \Chem\HillaSAMPLE
3/31/01 16 30 D\Chern\li~llaSAMPLE
3/31/01 16 44 D \Chem\HillaSAMPLE
3/31/01 20 05 D \Chem\HillaSAMPLE
3/31/01 20 20 D \Chem\HillaSAMPLE
File
Sample Name MIS:( InfCornpound3T
HILL0014 D TN-A 4802 MeOH
THPFOS
HILL0015 D TN-A4802 MeOH
THPFOS
HILL0029 D TN-A 4802 MeOH
THPFOS
HILL0030 D TN-A4802 MeOH
THPFOS
HILLW31 D TNA4802 MeOH
THPFOS
HILLW43 D TN-A 4802 MeOH
THPFOS
hlL&O44 D IN-A 4802 MeOH
THPFOS
HILL0057 D TN-A 4802 MeOH
THPFOS
HILL0058 D TN-A 4802 MeOH
THPFOS
HILL0071 D TN-A4802 MeOH
THPFOS
HILL0072 D TN-A4802 MeOH
THPFOS
HILL0085 D TNA4802 MeOH
THPFOS
HILL0086 D TNA4802 MeOH
THPFOS
HILL0099 D TN-A 4802 MeOH
THPFOS
HILL01W D TN-A 4802 MeOH
THPFOS
HILLO113D TN-A4802 MeOH
THPFOS
HILL0114 D TN-A 4802 MeOH
THPFOS
HILL0127 D TN-A4802 MeOH
THPFOS
HILL0128 D TNA4802 MeOH
THPFOS
HILL0139 D TNA4802 MeOH
THPFOS
HILL0140 D TN-A 4802 MeOH
THPFOS
HILL0153 D TN-A 4802 MeOH
THPFOS
HILL0154 D TN-A 4802 MeOH
THPFOS
HILL0168 D TN-A 4802 MeOH
THPFOS
HILL0169 D TN-A4802 MeOH
THPFOS
HILL0182 D TN-A4802 MeOH
THPFOS
HILL0183 D TN-A 4802 MeOH
THPFOS
HILL0196 D TN-A 4802 MeOH
THPFOS
HILL0197 0 TN-A 4802 MeOH
THPFOS
HILL0210 D TN-A4802 MeOH
THPFOS
HILL0211 D TN44802 MeOH
THPFOS
HILL0225 D TN-A 4802 MeOH
THPFOS
HILL0226 D TN-A 4802 MeOH
THPFOS
Area 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Amount
0'
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
CompounRT PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
Area
Amount
5392 13019
0
0
0
0
5386 23896
0
0
0
0
0
0
0
0
0
0
0
0
0
D
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
BACK TO MAIN
In] Date
Batch
SampType File
Sample Name Mlrc InfCompoundXT
Area
Amount
CompounRT
Area
Amount
3/29/01 21 45 D \Chem\HillaSAMPLE HILL0032 D lOmg/mL PFOS Study NumTHPFOS
5092 941565
254
PFOS
5317 7685289 3998253
3/29/01 21 59 D \Chem\HillaSAMPLE HILL0033 D IOmg/mL PFOS Study NumTHPFOS
5 092 955051
254
PFOS
5316 8722101 4533549
3/29/01 22 13 D \Chem\HillaSAMPLE HILL0034 D lOmg/mL PFOS Study NumTHPFOS
5091 947677
254
PFOS
5315 7434958 3826G37
3/29/01 22 28 D \Chem\HillaSAMPLE HILL0035 D 10mglmL PFOS Study NumTHPFOS
5093 777892
254
PFOS
5 3 1 9661038 6436158
3/29/01 22 42 D \Chem\HillaSAMPLE HILL0036 D 50mglmL PFOS Study NumTHPFOS
5085 I089404
254
PFOS
5302 5246893 2244704
3/29/01 22 56 0 \Chen'Hi"aSAMPLE HILL0037 D 5OnglmL PFOS Study NumTHPFOS
5083 1w0640
254
PFOS
5308 5197203 221 9073
3/30/01 23 11 D \ChemWdlaSAMPLE HILL0038 0 50mgmL PFOS Study NumTHPFOS
5084 1030788
254
PFOS
5308 4771646 2150835
3/30/01 23 25 D \Chem\HillaSAMPLE HILL0039 D 50mglmL PFOS Study NumTHPFOS
5077 1073111
254
PFOS
5301 9471261 4363103
3/30/01 23 40 D \ChemWillaSAMPLE HILL0040 D OmglmL PFOS Study NumWHPFOS
5085 918338
254
PFOS
5309 540709 233661
3/30/01 23 54 D \ChemWillaSAMPLE HILL0041 D 5 nglmL PFOS in MeOH THPFOS
5085 1091788
254
PFOS
5302 162150 3734831 74.7%
3/30/01 0 08 D \ChemWillaSAMPLE 3/30101 0 52 D \Chem\HillaSAMPLE 3/30/01 1 06 D \Chem\HIIIaSAMPLE 3/30/01 1 20 D \Chem\H!llaSAMPLE 3/30/01 1 35 D \ChemWillaSAMPLE 3/30/01 1 49 0 \Chem\HillaSAMPLE
HILL0042 D 250 5 ngmL PFOS inMeOTHPFOS HILL0045 D OmglmL PFOS Study NumWHPFOS HILL0046 D OmglmL PFOS Study NumWHPFOS HILL0047 D hng/mL PFOS Study NumbTHPFOS HILL0048 D 0 5mglmL PFOS Study NunTHPFOS
HILL0049 D 0 5mglmL PFOS Study NunTHPFOS
0 5091 5086 5092 5092 5085
0 893965 871748 746435 887622 872024
0 lST&ZQ% PFOS
- 254
PFOS
- 254
PFOS
- 254
PFOS
- 254
PFOS
254
PFOS
0 5315
531 5316 5316 5309
0 126502 88651 3303886 620867 520023
0 3424213
166155 2049582 2834021 2370488
0.0% Sample levelinVial too low
3/30/01 2 04 0 \Chem\HillaSAMPLE HILL0050 D 0 5mg/mL PFOS Study NunTHPFOS
5083 867832
254
PFOS
5307 582795 2708401
- 3/30/01 2 18 0 \Chem\HillaSAMPLE HILL0051 D 0 5mglmL PFOS Study NunTHPFOS
5091 727915
254
3/30/01 2 32 D \Chem\HillaSAMPLE HILL0052 D 2mglmL PFOS Study NumbTHPFOS
5083 854851
254
3/30/01 2 47 D \ChemWillaSAMPLE HILL0053 D 2mglmL PFOS Study NumbTHPFOS
5083 857430
254
PFOS PFOS PFOS
5300 5307 5307
3691790 237353 2353605 1234773 2593339 1364485
3/30/01 3 01 D \Chem\HillaSAMPLE HILL0054 D 2mglmL PFOS Study NumbTHPFOS
5 0 9 854499
254
PFOS
5314 2562398 1352093
3/30/01 3 16 D \Chem\HillSAMPLE 3/30/01 3 30 D \Chem\HdlaSAMPLE
HILL0055 D 5 nglmL PFOS in MeOH THPFOS HILL0056D 250 5 nglmL PFOS inMeOTHPFOS
0
0
0 ISTD<70% PFOS
0
0
0 ISTD<70% PFOS
0
0
0 0 0% Sample level In Vial too low
0
0
0 0 0% SamplelevelIn Vial too low
3130/01 4 13 D \Chem\HillaSAMPLE HILL0059 D 2mglmL PFOS Study NumWHPFOS
5084 749219
254
PFOS
5308 5345747 3444726
3/30/01 4 28 D \Chem\HillaSAMPLE HILLWGOD 5mglmL PFOS Study NumWHPFOS
5084 876417
254
PFOS
5300 1620046 8090241
3/30/01 4 42 D \ChemWiIWAMPLE HILL0061 D 5mglmL PFOS Study NumWHPFOS
5077 906862
254
PFOS
5301 1503995 7209314
3/30/01 4 56 D \Chem\HillaSAMPLE HILL0062 D 5mglmL PFOS Study NumbTHPFOS
5085 901113
254
PFOS
5309 1497426 7224531
3/30/01 5 11 0 \Chem\HillaSAMPLE HILL0063 D 5mglmL PFOS Study NumWHPFOS
5084 755376
254
PFOS
5 301 4532655 280 4432
3/30/01 5 25 D \Chem\HillaSAMPLE H I L L W D IOmglmL PFOS Study NumTHPFOS
5086 913312
254
PFOS
5303 3057247 1520074
3/30/01 5 40 D \ChemWillaSAMPLE 3/3/01 5 54 D \ChemWillaSAMPLE 3/30/01 6 08 D \Chem\HiIIBAMPLE 3/30/01 6 2 3 D \Chem\HillaSAMPLE 3/30/01 6 37 0 \Chem\HillaSAMPLE
HILL0065 D IOmglmL PFOS Study NumTHPFOS HILL0066 D 10mglmL PFOS Study NumTHPFOS HILL0067 D IOmglmL PFOS Study NumTHPFOS HILL0068 D 5OmglmL PFOS Study NumTHPFOS HILL0059 D 5 ng/mL PFOS in MeOH THPFOS
5086 5079 5083 5088
0
973798 911827 781459 979507
0
- 254
PFOS
254
PFOS
- 254
PFOS
- 254
PFOS
0 lST&ZQ% PFOS
531 5303 5307 5312
0
3260951 3051917 5989063 2234423
0
1520686 151 9884 372804 101 1328
0
0 0% Sample levelin Vial too low
3/30/01 6 51 D \ChemWtllaSAMPLE
- 3/30/01 7 35 D \Chem\HillaSAMPLE - 3/30/01 7 49 D \Chem\HillaSAMPLE
- 3/30/01 8 03 D \Chem\HillaSAMPLE - 3/30/01 8 18 D \ChemWillaSAMPLE - 3/30/01 8 32 0 \ChemWillaSAMPLE - 3/30/01 8 46 D \Chem\HillaSAMPLE
3/30/01 9 01 D \Chem\HillaSAMPLE
- 3/30/01 9 15 D \Chem\HillaSAMPLE
- 3/30/01 9 30 D \Chem\HillaSAMPLE - 3/30/01 9 45 D \Chem\HillaSAMPLE
3/30/01 9 59 0 \Chem\HillaSAMPLE
3/30/01 10 14 D\ChemWillaSAMPLE
- 3/30/01 10 57 D\ChemWdlaSAMPLE - 3/30/01 11 12 D \Chem\HillaSAMPLE - 3/30/01 11 26 D \Chem\HillaSAMPLE - 3/30/01 1141 D \Chem\HillaSAMPLE - 3/30/01 11 55 D \Chem\HillaSAMPLE - 3/30/01 12 09 0 \Chem\HillaSAMPLE - 3/30/01 12 24 D \Chem\HillaSAMPLE - 3/30/01 12 38 D \Chem\HillaSAMPLE
s - 3/30/01 12 53 D \Chem\HillaSAMPLE
HILL0070 D 250 5 nglmL PFOS in MeOTHPFOS HILL0073 D 50mglmL PFOS Study NumTHPFOS HILL0074 D 50mglmL PFOS Study NumTHPFOS HILL0075 D SOmghL PFOS Study NumTHPFOS HILL0076 D OmglmL PFOS Study NumbTHPFOS HILL0077 D OmglmL PFOS Study NumWHPFOS HILL0078 0 OmglmL PFOS Study NwWHPFOS HILL0079 D OmglmL PFOS Study NumbTHPFOS HILL0080 D 0 5mglmL PFOS Study NunTHPFOS HILLW81 D 0 5mglmL PFOS Study NunTHPFOS HILL0082 D 0 5mglmL PFOS Study NuBHPFDS HILL0083 D 5 nglmL PFOS in MeOH THPFOS HILL0084 D 250 5 ng/mL PFOS m MeOTHPFOS HILLW87 D 0 5mglmL PFOS Study NunTHPFOS HILL0088 D 2mglmL PFOS Study NumWHPFOS HILL0089 0 2mglmL PFOS Study NumWHPFOS HILL0093 D 2mglmL PFOS Study NumWHPFOS HILL0091 D ZmglmL PFOS Study NurnWHPFOS HILL0092 D 5mglmL PFOS Study NumbTHPFOS HILL0093 D 5mglmL PFOS Study NumWHPFOS HILL0094 D 5mglmL PFOS Study NumWHPFOS HILL0095 D 5mglmL PFOS Study NurnWHPFOS
0 5079 5084 5077 5076 5084 5085 5083 5077 5084 5087
0 0 5083 5086 508 5078 5077 5072 5077 5078 5078
0 967155 990636 924192 868541 862422 848676 712693 830763 838359 817463
0 0 723549 829574 810539 813653 698202 870788 833403 865160 732175
0 lST&ZQ% PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
~
PFOS
254
PFOS
254
PFOS
254
PFOS
0 &?J&GO% PFOS
0 &?J&GO% PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
0 5296 5301 5294 5307
0 0 53 5295 5309 5311 0 0 5314 5303 5297 5295 5301 5297 5294 5 302 5302
0
0
1999273 9109713
1896764 839824
5706884 2939526
199968 7359762
0
0
0
0
3185982 2071555
2350237 1270906
1735740 9124829
2751710 1529141
0
0
0
0
5581843 3755325
7796382 4682081
7782923 4796898
7488962 4573479
9920061 7529404
4681978 2528436
4589661 2595041
4617034 250 8006
7091269 4843771
0.0% Samplelevelin Vial too low
0 0% Sample levelin Vial too low 0.0% Sample ISVEinI Vial too low
BACK TO MAIN
3/30/01 1307 D \ChemWillaSAMPLE
33W01 13 21 0 \Chem\HillaSAMPLE 3/30/01 13 36 D \Chem\HillaSAMPLE 3130101 14 19 D \Chem\HillaSAMPLE 3/30/01 14 34 D\ChemWillaSAMPLE 3/30/011448 D \Chem\HillaSAMPLE 3/30/01 15 02 D \Chem\HillaSAMPLE
3/30/01 15 17 D\Chem\HillaSAMPLE 3/30/01 15 31 D \Chem\HiIlaSAMPLE 313010115 46 D\Chem\HilIaSAMPLE 3/30/01 16 00 D \ChemWillaSAMPLE 3/30/01 16 15 D \ChemWillaSAMPLE 3/30/01 16 29 D \Chem\HillaSAMPLE
3130101 16 43 D \ChemWillaSAMPLE
3/30/01 16 58 D \Chem\HillaSAMPLE 3/30/01 17 41 D \Chem\HillaSAMPLE 3/30/01 17 56 D \Chem\HdlaSAMPLE 3130101 18 10 D\Chem\HilWAMPLE
3/30/01 18 24 D \Chem\HdaSAMPLE 3130101 18 39 D \Chem\HillaSAMPLE 3/30/01 18 53 D \ChemWillaSAMPLE 3/30/01 I 9 08 D \Chem\HillaSAMPLE 3/30/01 19 22 D \Chem\HillaSAMPLE 3/30/01 19 36 D \Chem\HillaSAMPLE 3/30/01 19 51 D \Chem\HdlaSAMPLE 3/30/0120 05 D \ChemWillaSAMPLE 3/30/01 20 20 D \Chem\HillaSAMPLE 3130101 21 03 D \ChemWillSAMPLE 3/30/01 21 17 D \Chem\HdlaSAMPLE 3/30/01 21 32 D \Chem\HillaSAMPLE 3/30/01 21 46 D\ChemWillaSAMPLE 330101 22 00 D \Chem\HillaSAMPLE 3/30/01 22 15 D \Chem\HillaSAMPLE 3/30/01 22 29 D \Chem\HillaSAMPLE 3/30/01 22 44 D \Chem\HillaSAMPLE 3/30/01 22 58 D \Chem\HllaSAMPLE 3/31/01 23 12 D \Chem\HillaSAMPLE 3/31/01 23 56 D \ChemWillaSAMPLE 3/31/01 0 10 D \ChemWillaSAMPLE 3/31/01 0 24 D \Chem\HillaSAMPLE 3/31/01 0 39 D \ChemWdlaSAMPLE 3/31/01 0 53 D \ChemWillaSAMPLE 313'1101108 D \Chem\HllaSAMPLE 3/31/01 1 22 D\ChemWtllaSAMPLE 3/31/01 1 36 D \Chem\HiIIaSAMPLE 3/31/01 1 51 D\ChemWillaSAMPLE 3/31/012 05 D \Chem\HilIaSAMPLE 3/31/01 2 20 D \Chem\HillaSAMPLE 3/31/01 2 34 D \Chem\HillSAMPLE 3/31/01 3 17 D \Chem\HiIWAMPLE 3/31/01 3 32 D\Chem\HllaSAMPLE 3/31/01 3 46 D \Chem\HillaSAMPLE 3/31/014 00 D \Chem\HillaSAMPLE 3/31/01 4 15 D\Chem\HillaSAMPLE 3/31/01 4 29 D \ChemWillaSAMPLE 3/31/01 4 44 D \ChemWillaSAMPLE 3/31/01 4 58 D \ChemWdlaSAMPLE 3/31/01 5 12 D \Chem\HillaSAMPLE 3/31/01 5 27 D \Chem\HdlaSAMPLE
HILL0096D 10mgmL PFOS Study NumTHPFOS HILL0097 D 5 ngmL PFOS in MeOH THPFOS HILL0098 D 250 5 ngmL PFOS IllMeOTHPFDS HILL0101D 10mgmL PFOS Study NumTHPFOS HILL0102 D IOmgmL PFOS Study NumTHPFOS HILL0103 D lOmg/mL PFOS Study NumTHPFOS HILL0104 D 50mg/mL PFOS Study NumTHPFOS HILL0105 D 5OmgmL PFOS Study NumTHPFOS HILL0106 D 5OmgmL PFOS Study NumTHPFOS HILL0107 D 50mglmL PFOS Study NumTHPFOS HILL0108 D OmgmL PFOS Study NumWHPFOS HILL0109D CmgmL PFOS Study NumWHPFOS HILL0110 D h g m L PFOS Study NumWHPFOS
HILL0111D 5 nglmL PFOS in MeOH THPFDS
HILL0112 D 250 5 ngmL PFOS inMeOTHPFOS HlLLOl 15 D OmgmL PFOS Study NumWHPFOS HILL0116 D 0 5mglmL PFOS Study NunTHPFOS HILL0117 D O5mglmL PFOS StudyNunTHPFOS HlLLOlI 8 D 0 5mgmL PFOS Study NunTHPFOS HILL0119 D 0 5mgmL PFOS Study NunTHPFOS HILL0120 D 2mglmL PFOS Study NumWHPFOS HILL0121 D 2mg/mL PFOS Study NumWHPFOS HILL0122 D 2mg/mL PFOS Study NumWHPFOS HILL0123D ZmglmL PFOS Study NumWHPFOS HILL0124 D 5mglmL PFOS Study NumWHPFOS HILL0125 D 5 ngfmL PFOS m MeOH THPFOS HILL0126D 250 5 ngmL PFOS inMBOTHPFOS HILL0129D 5mgmL PFOS Study NumWHPFOS HILL0130 D 5mgmL PFDS Study NumbTHPFOS HILL0131 D 5mgmL PFOS Study NumWHPFOS HILL0132 D 10mgmL PFOS Study NumTHPFOS HILL0133 D IOmgmL PFOS Study NumTHPFOS HILL0134 D 1OmglmL PFOS Study NumTHPFOS HILL0135 D 10mg/mL PFOS Study NumTHPFOS HILL0136 D 5OmglmL PFOS Study NumTHPFOS HILL0137 D 5 ngmL PFDS in MeOH THPFOS HILL0138 D 250 5 ngmL PFOS in MeOTHPFOS HILL0141 D 50mgmL PFOS Study NumTHPFOS HILL0142 D 5OmglmL PFOS Study NumTHPFOS HILL0143 D 50mgmL PFDS Study NumTHPFOS HILL0144 D OmslmL PFOS Study NumbTHPFOS HILL0145D OmgmL PFOS Study NumWHPFOS HILL0146D DmgmL PFOS Study NumWHPFOS HILL0147 D OmglmL PFOS Study NumbTHPFOS HILL0148 D 0 5mg/mL PFOS Study NuriWPFOS HILL0149 D 0 5mUmL PFOS Study NunTHPFOS HILL0150D 0 5mgmL PFOS Study NuniHPFOS HILL0151 D 5 ng/mL PFOS in MeOH THPFOS HILL0152 D 250 5 ngmL PFOS in MeOTHPFOS HILL0155 D 0 5mglmL PFOS Study NunTHPFOS HILL0156D ZmplmL PFOS Sludy NumWHPFOS HILL0157 D Zmg/mL PFOS Study NumWHPFOS HlLLOl58 D Zmg/mL PFOS Study NumWHPFOS HILL0159 D 2mg/mL PFOS Study NumbTHPFOS HILL0160 D 5mgmL PFOS Study NumWHPFOS HILL0161 D 5mglmL PFOS Study NumbTHPFOS HILL0162 D 5mglrnL PFOS Study NmbTHPFOS HILL0163 D 5mglmL PFOS Study NumbTHPFOS HILL0164 D IOmglmLPFOS Study NumTHPFOS
507 507 507 5075 507 507 5083 5076 5081 5071 5079 5084 5083 5079 5071 5084 5085 5077 5085 5079 5084 5077 5071 5077 5078 5085 5076 5078 5077 5075 507 5069 5078 5077 5077 5077 5084 5078 5077 5077 507 507
0 0 0 0 5059 5077 507 5063 5057 0 5055 5055 5062 507 5069 507 5071
871278 1031178 935555 877270 893385 742701 907624 931206 919670 796555 849151 829076 821979 913364 935372 706581 824542 816173 807718 699831 788878 809256 794520 683431 846191 899639 916782 862439 872248 730684 853720 867572 825915 705375 891448 947052 930968 900440 896344 785271 1517034 1519670
0 0 0 0 1378137 I127307 10.57386 1222595 1394294 0 1405167 1264058 1123797 1170021 1140248 892226 1049855
254
PFOS
254
PFOS
254
PFDS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFDS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFDS
254
PFOS
254
PFOS
254
PFDS
254
PFOS
254
PFOS
254
PFOS
254
PFDS
254
PFDS
254
PFOS
254
PFDS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFO.S.
254 Ma PFOS
254 &zbaLu PFOS
0 &ZDQ.C% PFOS
0 IfTprzo?L PFOS
0 IfTprzo?L PFOS
0 IfTprzo?L PFOS
254 sw4a.b PFOS
- 254 &zbaLu PFOS
254
PFOS
254 &zbaL'u PFOS
254 &zbaLu PFOS
0 &ZDQ.C% PFOS
254 uzn43Lu PFOS
254 &zbaLu PFOS
254 &zbaLu PFDS
254 uzn43Lu PFOS
254 ST&bWXb PFOS
- 254
PFOS
- 254
PFOS
5294 5287 5287 5 292 5294 5287 5307 5308 5298 5296 5311 5301 5307 5303 5288 5308 5302 5294 5302 5303 5308 5295 5295 5301 5302 5309 5307 5309 5294 5299 5294
53 5302 5301
8976434 165503
4930244 12899537 13256112 15131931 5518080 5108086 5181946 7665976
742763 183483 107928 119662 4919934 3248594 1502753 1724356 1736346 4688064 5634498 5717625 5974646 8405232 3725697 122088 4879273 3516962 3677170 6262922 6519410 6622791 6587808 83758505705483
5194978 4265778 2474028 783 9937 7924273 1161 188 2890022 2583954 2660334 4809168 3624765 6963474 2972255 2 959401 2468948 2135081 7969637 9322899 9496021 3213717 3448627 3407597 3650473 6363714 2037979 3167352 2500647 1877001 1945103 4222447 3713232 371 1742 3897087 61485332466657
5301 5308 5295 5 288 5294 5294 5294 5283 5294 5288 5286 5283 5301 5294 5294 5288 5295 5286 5286 5294 5301 5293 5294 5 295
121133 4866574 3499027 3507729 6226527
607465 161015 102458 2813295 123415 245088 154022 104248 4570480 2934417 298977 308066 261303 3012214 256463 268126 138591 3214850 12043940
2821811 2452477 1782918 179 6005 387 1451 1493697 1850082
0 0 0 0 2107086 1253723 1997993 1067379 6657971 0 5394641 1059273 7269909 7312199 2540176 164426 587 354
85.3% 98.8%
59.2% 98.6%
63.3% 99.8%
56.4% 97.9%
25.1% 79.8%
BACK TO MAIN
3/31/01 5 41 0 1CnemWlISAMPLE HILL0165 D IOmglmL PFOS Study NumTHPFOS
3/31/01 5 56 D \Chem\H ,ISAMPLE HILL0166D 5 nglmL PFOS in MeOH THPFOS
3/31/01 6 10 0 \Cnem\HdiaSAMPLE HILL0167 D 250 5 ng/rnL PFOS in MeOTHPFOS
3131101 6 53 D \Chem\H ll&LE
HILL0170D lOmglmL PFOS Study NumTHPFOS
3/31/017 08 0 \Cnem\HibaSAMPLE HILL0171 D 10mglmLPFOS StudyNumTHPFOS
3/31/01 7 22 D \Chem\ii IISAMPLE HILL0172 D 50mglmL PFOS Study NumTHPFOS
3131M1 7 36 D \Cnem\H,I SAMPLE HILL0173D 5OmglrnL PFOS StudyNumTHPFOS
3/31/01 7 51 D \Chem\HdaSAMPLE HILL0174 D 50mglmL PFOS Study NumTHPFOS
3131/@18 05 0 Che!--lu 'ISAMPLE HILL0175 D 5OmglmL PFOS Study NumTHPFOS
3/31/01 8 20 D \Chem\HIISAMPLE HILL0176 D Omg/mL PFOS Study NumbTHPFOS
3/31/01 8 34 D \Chem\HrllaSAMPLE HILL0177 D OmglmL PFOS Study NumbTHPFOS
3/31/01 8 48 D \Cnem\Hd &LE
HILL0178 D CmglmLPFOS StudyNumWHPFOS
3131101 9 03 D \Cnem!htiaSAMPLE HILL0179 D OmglmL PFOS Study NumWHPFOS
3/31/01 9 17 D \Chem\H IlaSAMPLE HILLOlBO D 5 nglmL PFOS in MeOH THPFOS
3/31/01 9 32 D ChemWdlaSAMPLE HILL0161D 250 5 nglmLPFOS~1MeOTHPFOS
3/31/01 10 15 O \ C ~ ~ ~ W I M A M P L EHILL0184 D 0 5mglmL PFOS StudyNunTHPFOS
3/31/01 10 29 D \Chem\HdaSAMPLE HILL0185 D 0 5mglrnL PFOS Study NunTHPFOS
3/31/01 10 44 D \Cnem\H#iSAMPLE HILL0186D 0 5mglmL PFOS StudyNunTHPFOS
3/31/01 10 58 D \ChsmWalaSAMPLE HILL0187 D 0 5mg/mL PFOS Sludy NunTHPFOS
3/31/01 11 13 D \Chern\HillaSAMPLE HILL0188D 2mglmL PFOS Study NumbTHPFOS
3/31/01 11 27 0 \ChemW#PaSAMPLE HILL0189D ZmglmL PFOS Study NumWHPFOS
3131101 11 41 D \Chem\HillSAMPLE HILL0190 D ZmglmL PFOS Study NumtXHPFOS
3/31/01 11 56 0 \CnemWdlSAMPLE HILL0191D 2mglmL PFOSStudy NumWHPFOS
3/31/01 12 10 D \Chem\H6ilSAMPLE HILL0192 D 5mglmL PFOS Study NumWHPFOS
3/31/01 12 25 O \ C ~ ~ ~ \ H I I S A M P L EHILL0193D 5mg/mL PFOS Study NumWHPFOS
3/31/01 12 39 D \Cnem\HllaSAMPLE HILL0194 D 5 ng/mL PFOS in MeDH THPFOS
3/31/01 12 53 D \Chem\H IlaSAMPLE HILL0195 D 250 5 nglmL PFOS in MeOTHPFOS
3/31/01 13 37 D\Chem\HiISAMPLE HILL0198D 5mglmL PFOS Study NumWHPFOS
3/31/01 13 51 D\Cnem\HillaSAMPLE HILL0199 D 5mglmL PFOS Study NumbTHPFOS
3/31/01 14 05 D \Chem\HdlaSAMPLE HILL0200 D 10mglmLPFOS Study NumTHPFOS
3/31/01 14 20 D\ChemWiI&LE HILL02010 tOmglmL PFOS Study NumTHPFOS
3/31/01 14 34 0 lCnem\H.&MMPLE HILL0202 D 10mglmLPFOS Study NumTHPFOS
3/31/01 14 49 D lChem\H.llSAMPLE HILL0203 0 10mglmLPFOS Study NumTHPFOS
3131101 15 03 D \Cnem\HdlaSAMPLE HILL0204 D 5OmglmLPFOS Study NumTHPFOS
3/31/01 15 17 O\Cnem\H #ISAMPLE HILL0205D SOmg/mL PFOS Study NumTHPFOS
3/31/01 15 32 0 \Chem\H IlaSAMPLE HILL0206 D 56nglmL PFOS Study NumTHPFOS
3/31/01 15 46 0 lChemlHiISAMPLE HILL0207 0 5OmglmL PFOS Study NumTHPFOS
3131101 16 01 0 \Chem\H1laSAMPLE HILL0208D 5 nglmL PFOS inMeOH THPFOS
3/31/01 16 15 D \Chem\HillaSAMPLE HILL0209D 250 5 ndmL PFOS in MeOTHPFOS
507 5077 5078 5078 5062 5077 5073 5078 5078 507
0 5077
507 5077 5077
0 0 5071 0 0 0 5056 5056 5057 5072 5055 5062 507 5074 5077 5071 5077 5077 5077 5084 5077 5078 5077 507
1029270 1045844 961392 983111 781444 863043 848190 958369 699825 1475601
0 1496086 1338136 1319457 1233038
0 0 1471417 0 0 0 1464319 1287803 1254007 1222970 1252112 1233786 1196708 940569 1165476 1154702 1154514 936013 1005094 1020410 970721 844704 937393 9-
- 254
PFOS
- 254
PFOS
- 254
PFOS
- 254
PFOS
- 254
PFOS
- 254
PFOS
- 254
PFOS
- 254
PFOS
- 254
PFOS
-254
PFOS
0 lETpLzosL PFOS
-254
a PFOS
-254 &TbllLb PFOS
254 JsTbuCu PFOS
254
PFOS
O S T L u M PFOS
0 lETpLzosL PFOS
254 l s b l a c u PFOS
O S T L u M PFOS
O S T L u M PFOS
0 lETpLzosL PFOS
254 SUWSQ% PFOS
254 ksUw3U PFOS
254 ksUw3U PFOS
254
PFOS
254 lSTb&N% PFOS
254 szbu&*b PFOS
254 254
4 s b-u L b
PFOS PFOS
254
PFOS
254 lSTb&N% PFOS
254 ksUw3U PFOS
- 254
PFOS
- 254
PFOS
- 254
PFOS
- 254
PFOS
- 254
PFOS
- 254
PFOS
- 254
PFOS
5294 5301 5302 5302 5294 5294 5297 5302 5309
0 53
0 5294
0 5301 5296 5296
0 5294 5294 5288 5287 5288 5288 5289
0 5286 5294 5298 5301 5302 5301 5301 5294 5301 5309 5302 5 295 5294
7942166 113187
4685914 11897888 13471666
547258 371026 502489 3544102
0 15403
0 2562313
0 4581504
106080 88413
0 2763394
243781 191714 184484 2856662 314686 267523
0 4563196
188759 3245571
335088 525297 550957 3645184 256482 233790 231102 3674257 112408 4662409
3756283 195061 227378
6246515 9475747 2540056 1658928
204758 2369754
0 0 0 8398912 0 1699125 0 0 0 0 0 0 2736832 9817581 8279809 6849741 0 1690775 4143137 1570094 990566 1737075 1836785 1782599 6468139 7309995 7707909 2011561 2 468054 242609
39.0% 90.8%
0.0% 67.8%
0.0% 67.5%
49.4% 96.8%
. ..
BACK TO MAIN
9
0
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I'
rn
00
3
Batch Sample List. Curve and CalibrationChecks Acquiotm InslrumentlSequence: Hilla1y/HOlO319~a) DatelAnalystof Reprocessing: 02 Apr 01 / M I A Batch Method: R010319a.m OuantitationRange: 2.5 to 1002 n g h L
lnj Date
3/19/2001 20:05 3/19/2001 2O:i9 3/19/2001 20.33 3/19/2001 20:48 3/19/2001 21:02 3/19/2001 21:16 3/19/2001 21.31 3/19/2001 21:45 3/19/2001 22:OO 3/19/2001 2 2 1 4 3/19/2001 2 2 2 8 3/19/2001 2 2 4 3 3/20/2001 2:04 3/20/2001 2:18 3/20/20015:l I 3/20/2001 5.25
3/20/2001 832
3/20/2001 8:47 3/20/2001 11:25 3/20/2001 1 1 3 9 3/20/2001 14:18 3/20/2001 14.32
Batch
SampType
File
Sample Name
C:\CHEMWillary.iWOIO319-a.b CALIB-1 C:\CiiEM',Hillary.i\J-IC10319-a.b CALIB-2 C.\CHEMWillary.iWO1031S-a.b CALIB-3 C:\CHEMWillary.iWO10319-a.b CALIB-4 C\CHEM\Hillary.iWO1031S-a.b CALIB-5 C:\CHEMWillaiy.iWOIO319-a.b CALlB-6 C:\CHEMWillarf.rWO10319-a.b CALIB-7 C:\CHEMWillary.iW010319-a.b CALlB-8 C:\CHEMWillary.iWO1031S-a.b CALIB-9 C:\CHEMWillary.iWO1031S-a.b CALIB-IO C:\CHEMWillary.iWOlO3lS-a.b CALIB-I 1 C:\CHEMWillary.iWO1031Pa.b CALlB-12 C:\CHEMWillary.iWOIO319-a.b CCALIB-I
C:\CHEMWillary.iWOl0319-a.b CCALIB-1 C:\CHEMWillary.iWOIO319-a.b CCALIB-I C.\CHEMWillary.iWO10319-a.b CCALlB-I C : l C H E M ~ i ~ i ~ . i ~ O l O C3 Cl ~AL~L.-1b C:\CHEMWillary i\H010319-a.b CCALIB-1
C:\CHEMWillary.iW0103lS-a.b CCALIB-1 C:\CHEMWillary.iWOlO3l!&a.b CCALIB-I C:\CHEM\HiIlary.iWOiO319-a.b CCALIB-I C:\CHEMWillary.iWOIO319-a.b CCALIB-1
HILL0017.D HILL00IB.D HILL0019 D HILLW20.D HILL0021.D HILLW22.D HILL0023.D HILL0024.D HILL0025.D HILL0026.D HILL0027.D HILL0028.D HILL0042.D
HILL0043.D HILL0055.D HtLL0056.D
HILL0lW.D
HILL0070.D
HILLOOB1.D HILL0082.D HILL0093.D HILL0094.D
2.5 ng/mL PFOS in MeOH 5 ng/mL PFOS in MeOH 1 0 ng/mL PFOS in MeOH
25 ng/mL PFOS in MeOH 4 0 nglmL PFOS in MeOH 50.1 ng/mL PFOS in MeOH 75.1 ng/mL PFOS in MeOH 100.2 ng/mL PFOS in MeOH 250.5 ng/mL PFOS in MeOH 400.8 ng/mL PFOS in MeOH
501 ng/mL PFOS in MeOH
1002 ng/rnL PFOS in MeOH 5 ng/mL PFOS in MeOH
250.5 ng/mL PFOS in MeOH 5 n g h L PFOS in MeOH
250.5 n g h L PFOS in MeOH
5nghL PFOS h MeOH
250.5 ng/mL PFOS in MeOH
5 n g h L PFOS in MeOH
250.5 ng/mL PFOS in MeOH
5 ng/mL PFOS in MeOH
250.5 ng/mL PFOS in MeOH
Yisc. Info.
01003-07-02 01003-07-03 01003-07-04 0100M7-05 0100M7-06 01003-07-07 0100347-08 01003-07-09 0100307-10 01003-07-11 01003-07-12 01003-07-13 01003-07-03 01003-07-10 01003-0703 0100507-10 01003-07-03 01003-07-10 01003-07-03 01OOM7-10 0100307-03 0100307-10
Compound Name
THf+ec
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS Avengeha:
S1d b v : %RSD:
RT
4.96 4.97 4.96 4.96 4.97 4.96 4.96 4.97 4.97 4.97 4.97 4.96 4.97 4 97 4.97 4.97 4.98 4.99 4.96 4.96 4.98 4.98 887103 67424.5 8%
Area
952704 958659 946379 954921 955330 958316 961545 961218 963600 945005 937041 930802 869312 865137 854600 852353 828170 821673 792949 787755 795135 793444
Amount
254 ~ 254
254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254
-.- Compound Name
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
RT
M
5.18 5.18 5.19 5.18 5.19 5.19 5.19 5.18 5.19 5.19 5.19 5.18 5.19 5.19 5.20 5.20 5.20 5.21 5.19 5.19 5.20 5.20
Area
n
63092 108976 207712 553295 871355 1084605 1595162 2149447 5065486 7558280 9061046 15880052 107823 4962586 104397 4950256 111868 4958647 108119 4876204 111428 4914110
Amount
3.2 5.2 9.8 25.4 40.0 49.8 73.7 100.4 250.5 401.6 500.7 1002.0 5.7 275.9 5.6 279.7 6.2 291.9 6.2 300.3 6.4 300.5
Theoretical
27.7% 4.5% 2.4% 1.4% 0.1% 0.6% 2.0% 0.2%
0.0%
0.2% 0.1%
0.0%
13.4% 10.1% 11.8% 11.7% 22.8% 16.5% 23.9% 19.9% 27.2% 20.0%
E001311 PFOS AdsoW/oeso*
BACK TO MAIN
9
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0
3
2
-0
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(0 (D
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=+I
0 -4 0
Batch Sample List. SarnDles Onlr
Acquistion InstrumentlSequence: Hillary/HOIO319(a)
Date/Analyst of Reprocessing: 02 A p r 0 1 I MLA
Batch Method. R010319a.m
Quantitation Range: 2.5 t o 1002 ng/mL
Inj Date
3/19/2001 23:40 3/19/2001 2354 3/20/2001 0:09 3/20/2001 0 2 3 3/20/2001 0:38 3/20/2001 0:52 3/20/2001 1:06 3/20/2001 1 2 1 3/20/2001 1:35 3/20/2001 1:49 3/20/2001 3:01 312012001 3.16 3/20/2001 3:30 3/20/2001 3:44 3/20/2001 3 5 9 3/20/2001 4: 13 3/20/2001 4 2 8 3/20/2001 4:42 3/20/2001 4:56 3/20/2001 6:08 3/20/2001 6 2 3 3/20/2001 6.37 3/20/2001 6 5 1 3/20/2001 7:06 3/20/2001 7 2 0 3/20/2001 7:35 3/20/2001 7:49 3/20/2001 8:03 3/20/2001 8:18 3/20/2001 9:30 3/20/2001 9:44 3/20/2001 9 59 3/20/2001 10 13 3/20/2001 10:27 3/20/2001 10:42 3/20/2001 1056 3/20/2001 1 1 : l l 3/20/2001 1223 3/20/2001 12.37
312012001 12 51
3/20/2001 13 06 3/20/2001 13 20 3/20/2001 13:35 3/20/2001 13 49 3/20/2001 14 03
Batch
SampType
C:\CHEM\Hillary.i\HO10319-a.b SAMPLE
C:\CHEM\Hillary.i!HO10319-a.b SAMPLE
C:\CHEM\Hillary.i\HO10319-a.b SAMPLE
C:\CHEM\Hillary.RHO10319-a.b SAMPLE
C:\CHEM\Hillary.i\HO10319-a.b SAMPLE
C:\CHEM\Hillary.i\HO10319-a.b SAMPLE
C:\CHEM\Hillary.i\HO10319-a.b SAMPLE
C:\CHEM\Hillary.i\HO10319-a.b SAMPLE
C:\CHEM\Hilla~.i\HO10319-a.b SAMPLE
C:\CHEM\Hilla&\HO10319-a.b SAMPLE
C~\CHEM\Hillary.i\H010319-a.b SAMPLE
C:\CHEM\Hillary.i\H010319-a.b SAMPLE
C:\CHEM\Hillary.i\HO10319-a.b SAMPLE
C:\CHEM\HilIary.i\HO10319-a.b SAMPLE
C:\CHEM\Hillarv.i\HO10319-a.b SAMPLE
C:\CHEM\Hilla~.i\HO10319-ab. SAMPLE
C:\CHEM\Hillary.i\HO10319-a.b SAMPLE
C \CHEM\Hlllary i\H010319-a b SAMPLE
C \CHEM\Hillary AH010319-a b SAMPLE
C \CHEM\Hillary iAH010319-a b SAMPLE
C \CHEM\Hillary i\H010319-a b SAMPLE
C \CHEM\Hillary AH010319-a b SAMPLE
C \CHEM\Hillary i\H010319-a b SAMPLE
C \CHEM\Hillary iAH010319-a b SAMPLE
C \CHEM\Hillary 1\H010319-ab SAMPLE
C \CHEM\Hillary iAH010319-a b SAMPLE
C \CHEM\Hillary ilH010319-a b SAMPLE
C:\CHEM\Hillary.i\HO10319-a.b SAMPLE
C:\CHEM\Hillary.i\HO10319-a.b SAMPLE
C:\CHEM\Hillary.RHO10319-a.b SAMPLE
C:\CHEM\Hillary.i\HO10319-a.b SAMPLE
C \CHEM\Hillary i\H010319-a b SAMPLE
C \CHEM\Hillary 1\H010319-ab SAMPLE
C:\CHEMWillary.i\HO10319-a.b SAMPLE
C:\CHEM\Hillary.i\HO10319-a.b SAMPLE
C:\CHEM\Hillary.i\HO10319-a.b SAMPLE
C:\CHEM\Hillary.i\HO10319-a.b SAMPLE
C:\CHEM\Hillary.i\HO10319-a.b SAMPLE
C:\CHEM\Hillary.i\HO10319-a.b SAMPLE
C \CHEM\Hillary 1\H010319-ab SAMPLE
C \CHEM\Hillary i\H010319-a b SAMPLE
C \CHEM\Hillary iAH010319-a b SAMPLE
C \CHEM\Hillary.i\HO10319-a.b SAMPLE
C \CHEM\Hillary 1\H010319-ab SAMPLE
C \CHEM\Hillary AH010319-a b SAMPLE
File
HILL0032.D HILL0033.D HILL0034.D HILL0035.D HILL0036.D HILL0037.D HILL0038 D HILL0039.D HILLW0.D HILL0041.D HILL0046.D HILL0047.D HILL0048.D HILL0049.D HILL0050.D H I L L 0 0 5 1. D HILLW52.D HILL0053.D HILLW54.D HILL0059.D HILL0060.D HILL0061.D HILL0062.D HILL0063.D HILL0064.D HILL0065.D HILL0066.D HILL0067.D HILL0068.D HILL0073.D HILL0074.D HILL0075 D HILL0076 D HILL0077.D HILL0078 D HILL0079.D HILL0080.D HILL0085.D HILL0086.D HILL0087 D HILL0088 D HILL0089 D HILL0090.D HILL0091 D HILL0092 D
Sample Name 131 1-4124-SZ 1311-4125-S2 131 1-4126-SZ 1311-4148-S2 131 1-4149-SZ 131 1-4150-52 1311-4124-53 1311-4124-53 13114126-53 1311-4148-S3 1311 - 4 1 4 9 4 3 1311-415O-S3 131 1-4124-S4 131 1-412 5 4 4 131 1-4148-S4 1311-4149-54 131 1-4150-54 1311-4124-S5 13114125-55 1311-4126-S5 131 1-4148-S5 1311-4149-S5 1 3 11 - 4 15 0 - S 5 1311 4 1 2 4 - 5 6 1311-4125-56 13 11-4 12 6 - S 6 13114126MS-S6 1311-4148-S6 1311-414946 1311-4150-S6 1311-4150MS-S6 1311-4124-S7 1311-4125-S7 1 3 11 - 4 1 2 6 4 7 1311-414847 1311-4149-57 1311-4150-57 1311-4124-S8 1311-4125-58 1311-4126-S8 13114126MS-S8 1311-4148-S8 1311-4149-S8 1311-4150-S8 1311-4150MS-S8
Compound N a m e
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
RT 4.97 4.97 4.96 4.97 4.97 4.97 4.97 4.97 4.96 4.97 4.97 4.97 4.97 4.97 4.97 4.97 4.97 4.97 0.00 4.98 4.99 4.99 4.99 4.99 4.99 4.99 4.99 4.99 4.99 4.97 4.97 497 497 4.97 4.97 4.97 4.97 4.97 4.98 497 4 98 497 4.98 498 4 98
Area 912437 929948 896524 912022 896921 864432 851789 760590 855770 815449 799794 795722 778881 829069 831754 822782 783261 832109
0 870389 818725 813491 836794 794532 935394 819696 682208 824967 796443 790214 671901 833453 781273 822529 788804 839982 766667 873274 851164 794047 720378 819035 837526 867770 765928
Amount 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 0 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254
Compound Name PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
RT
0.00 0.00
5.19 5.19 5.19 5.19
0.00
5.11 0.00 5.19 5.19 5.20 5.20 5.19 5.20 5.19 5.19 5.21
0.00
5.20 5.21 5.21 5.22 5.22 5.21 5.21 5.22 5.22 5.21 5.20 5.20 520 520 5.25 5.20 5.20 5.19
5.20
5.20 521 520 520
5.20
521 521
Area
0 0
24098 634921 662089 600651
0 11390
0 725638 701086 791683 18545 88450 2403148 1442298 3545457 19220
0
20928 1344937 1158276 1492192
22539 16342 12441 3391548 1104066 1163274 1145873 4132085 38789 22919 79060 1077441 1199443 1234169 28965 41619 20502 3590912 1087596 1189179 720004 4692081
Amount
0.0 0.0
1.5 30.5 32.4 30.4
0.0
1.0 0.0 39.1 38.5 43.7 1.4 4 9 131.4 780 212.6 1.4 00 1.4 72.9 63.0 79.4 1.6 1.1 1.0 235.6 59.1 64.6 64.2 298.1 24 16 4.5 60.4 63.2 71.4 1.8 2.5 15 2363 586 628 364 2968
3rd Environmental Laboratory
EW-1311PFOS AdsorblDesorb
BACK TO MAIN
Batch Sample List: Methanol Blanks
s Acquistion Instrumentlsequence: Hillary/HOlO3lS(a) Date/Analystof Reprocessing: 02 Apr 01 / MLA
9 Batch Method: R010319a.m
3. Quantitation Range: 2.5 to 1002 ng/mL
3
;i;
3
Inj Date
Batch
SampType File
Sample Name Compound Name RT Area Amount Compound Name RT Area Amount
? 3/19/2001 19:22 C:\CHEM\Hillary.i\HOIO319-a.b SAMPLE HILL0014.D TN-A 4802 MeOH
THPFOS
00
0
ICm-T 33//1199//2200001121295: 7s CC::\\CCHHEEMM\\HHiillllaarryy..ii\\HHOOIIOO331199--aa..bb SSAAMMPPLLEE HHlILLLLO00O2195..DD TTNN--AA 44880022 MMeeOOHH TTHHPPFFOOSS 00 00 00
0
3/19/2001 2 3 : l l C:\CHEM\Hillary.i\HO10319-a.b SAMPLE HILL0030.D TN-A 4802 MeOH
THPFOS
00
0
3 3/19/2001 23:26 C:\CHEM\Hillary.i\H010319-a.b SAMPLE HILL0031.D TN-A 4802 MeOH
THPFOS
00
0
PFOS PFOS PFOS
PFOS PFOS
5.22 14278 0
0.00 0
0
5.21 27267 O
5.25 11603 0
0.00 0
0
3/20/2001 2:33 C:\CHEM\Hillary.i\HO10319-a.b SAMPLE HILL0044.D TN-A 4802 MeOH
THPFOS
00
0
3/20/2001 2:47 C:\CHEM\Hillarv.i\HO10319-a.b SAMPLE HILL0045.D TN-A 4802 MeOH
THPFOS
00
0
3/20/2001 5 4 0 C:\CHEM\Hilla&.i\HO10319-a.b SAMPLE HILL0057.D TN-A 4802 MeOH
THPFOS
00
0
PFOS
.P.FO_ S_
PFOS
0.00 0
0
ooo n- n-
0.00 0
0
3/20/2001 5-54 C:\CHEM\Hillary.i\H010319-a.b SAMPLE HILL0058.D TN-A 4802 MeOH
THPFOS
00
0
PFOS
0.00 0
0
3/20/2001 9:Ol C:\CHEM\Hillary.i\HOIO319-a.b SAMPLE HILL0071.D TN-A 4802 MeOH
THPFOS
00
0
PFOS
0.00 0
0
3/20/2001 9:15 C:\CHEM\Hillary.i\HOIO319-a.b SAMPLE HILL0072.D TN-A 4802 MeOH
THPFOS
00
0
PFOS
0.00 0
0
3/20/2001 1154 C:\CHEM\Hillary.i\HO10319-a.b SAMPLE HILL0083.D TN-A 4802 MeOH
THPFOS
00
0
PFOS
0.00 0
0
3/20/2001 12:08 C:\CHEM\Hillary.i\H010319-a.b SAMPLE HILL0084.D TN-A 4802 MeOH
THPFOS
00
0
3/20/2001 14:47 C:\CHEM\Hillary.i\H010319-a.b SAMPLE HILL0095.D TN-A 4802 MeOH
THPFOS
00
0
PFOS PFOS
0.00 0
0
0.00 0
0
3/20/2001 15:Ol C:\CHEM\Hillary.i\HOIO319-a.b SAMPLE HILL0096.D TN-A 4802 MeOH
THPFOS
00
0
PFOS
0.00 0
0
3M EnvironmentalLaboratoly
E00-1311 PFOS Adsorb/Desoib
BACK TO MAIN
I'
a,
e
0
GI
Batch Samole List: Curve and Calibration Checks Acquislion InsWmenVSequence: Rush I R010312 OatelAnalystof Reprocessing: 27-28 Mar 01 / MIA Batch Method R010312.m
Ouantitation Range: 5 to 501 ng/mL, Quadratic fit, lniernalStandard W a n t
Inj Date
Batch ,
SampType
File
Sample Name
3/13/2001 1 2 5 9 3/13/2001 13:lO 3/13/2001 13:21 3/13/2001 1 3 3 3 3/13/2001 1 3 4 4 3/13/2001 1 3 5 5 3/13/2001 1 4 0 7 311312001 14:18 3/13/2001 1 4 2 9 3/13/2001 14:41 3/13/2001 17:08 3/13/2001 17:19 31132001 19:47 3/13/2001 1 9 5 8 3/13/2001 2226 3/13/2001 2 2 3 7 3/14/2001 1:05 3/14/2001 1:16 3/14/2001 3:44 3/14/2001 3 5 5 3/14/2001 6 2 3 3/14/2001 6:34 3/14/2001 9 9 2 3/14/2001 9:14 3/14/2001 11:07
C:\CHEMRush.i\RO10312.b CALIB-1 C:\CHEMRush.i\RO10312.b CALIB-2 C:\CHEM\Rush.iR010312.b CALIB-3 C:\CHEM\Rush.i\R010312.b CALiB-4 C:\CHEMRush.iRO10312.b CALIB-5 C:\CHEM\Rush.i\RO10312.b CALIB-6 C:\CHEMRush.i\RO10312.b CALiB-7 C:\CHEM\Rush.i\ROl0312.b CALlB-8 C:\CHEMRush.i\RO10312.b CALlB-9 C\CHEM\Rush.iRO10312.b CALlB-IO C:\CHEM\Ruoh.iR010312.b SAMPLE C:\CHEM\Rush.iUiOl0312.b SAMPLE C:\CHEM\Rush.iUiO10312.b SAMPLE C:\CHEMRush.iRO10312.b SAMPLE C\CHEMRush.i\RO10312.b SAMPLE C:\CHEMRush.iRO10312.b SAMPLE C:\CHEMRush.i\RO10312.b SAMPLE C:\CHEMWush.i\RO10312.b SAMPLE C:\CHEM\Rush.i\RO10312.b SAMPLE C:\CHEM\Rush.iROl0312.b SAMPLE C:\CHEM\Rush.iRO10312.b SAMPLE C:\CHEMRush.iROl0312.b SAMPLE C:~HEM\Rush.i~O10312.b SAMPLE C\CHEMRush.iRO10312.b SAMPLE C:\CHEMRush.iWO103f2.b SAMPLE
SAMPLE
RUSH0018.D RUSH0019.D RUSH0020.D RUSH0021.D RUSH0022.D RUSHW23.D RUSH0024.D RUSH0025.D RUSH0026.D RUSH0027.D RUSHW40.D RUSH0041.D RUSH0054.D RUSHW55.D RUSHOOB8.D RUSHOffi9.D RUSHW82.D RUSHOOB3.D RUSHOO96.D RUSH0097.D RUSHOl 10.D RUSH0111.D RUSH0124.D RUSH0125.D RUSH0135.D RUSHO1X.D
5 ng/mL PFOS In MeOH 1 0 ng/mL PFOS in MeOH 25 ng/mL PFOS in MeOH 4 0 ng/mL PFOS in MeOH 50.1 nghnL PFOS in MeOH 75.1 nghnL PFOS in MeOH 100.2 ng/mL PFOS in MeOH 250.5 nghL PFOS in MeOH 400.8 ng/mL PFOS in MeOH 501 ng/mL PFOS in MeOH 5 ng/mL PFOS In MeOH 250.5 ng/mL PFOS in MeOH 5 ng/mL PFOS in MeOH 250.5 nghnL PFOS in MeOH 5 ng/mL PFOS in MeOH 250.5 ng/mL PFOS in MeOH 5 ng/mL PFOS in MeOH 250.5 ng/mL PFOS in MeOH 5 ng/mL PFOS in MeOH 250.5 ng/mL PFOS in MeOH 5 ng/mL PFOS in MeOH
250.5 ng/mLPFOS in MeOH 5 n g h L PFOS in MeOH
250.5 nghnL PFOS in MeOH 5 ng/mL PFOS in MeOH
250.5 ndmL PFOS In MeOH
Misc Info
Compound Name RT
01003-07-03 010034744 01003-07-05 0100307-08 01003-07-07 010 0 3 0 7 4 8 01003-07-09 0100307-10 0100507-11 0100307-12 01003-0743 01003-07-10 010030743 01003-07-10 01003-0743 01003-07-10 01003-07-03 01003-07-10 010030743 01003-07-10 01003-0743 01W3-07-10 01003-07-03 01003-07-10 010034743 01003-07-10
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
5.52 5.52 5.51 5.52 5.51 5.50 5.52 5.51 5.51 5.51 5.50 5.51 5.50 5.50 5.48 5.48 5.49 5.47 5.46 5.48 5.47 5.46 5.47 5.47 5.47 5.47
Area
lawx
1175891 1179538 1182584 1170614 1181798 1181055 1158213 1161020 1178672 1183842 1100680 1104166 1077492 1087960 1078955 1102376 1038142 I024757 1028518 1029337 1016043 1008141 1011902 990965 Besgss 995410
Amount 2;;
254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254
Compound Name
"I
," .A I
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
RT
w
5.73 5.73 5.72 5.73 5.72 5.72 5.73 5.73 5.73 5.73 5.71 5.73 5.71 5.71 5.70 5.69 5.70 5.69 5.87 5.87 5.68 5.68 5.68 5.68 5.69 5.69
Area
Amount Theoretical
"
204920 357143 891797 1351707 1872821 2422605 3017918 6654469 9884645 11780946 199857 6579760 203470 6288787 191841 6376911 211733 6137149 188604 6114459 197545 6034586 189737 6021739 187812 6061624
3.5 8.1 24.7 39.9 50.0 75.5 98.8 246.3 393.6 490.1 3.8 258.1 4.0 248.8 3.6 249.0
4 6
259.6 3.8
257.1 4.2
260.1 4 .O 264.3 4.0
284.9
70.1% 81.1% S8.7% 99.7% 99.8% 100.6% 98.6% 98.3% 98.2% 97.8% 75.3% 103.0% 80.5% 99.3% 72.5% 99.4% 91.3% 103.7% 76.6% 102.6% 84.5% 103.8% 79.5% 105.5% 80.3% 105.8%
3/14/2001 1 2 1 5 C:\CHEMWush.W010312.b CALIB-11 RUSH0141.0
3/14/2001 1 2 2 6 C:\CHEMRush.iROl0312.b CALlB-12 RUSHOl42.D
3/14/2001 1 2 3 8 C:\CHEM\Rush.i\ROlO3lZ.b C U B - I 3 RUSH0143.D
3/14/2001 1 2 4 9 C:\CHEM\Rush.iW01031Z.b CALlB-14 RUSH0144.D
3/14/2001 1 3 0 1 C:\CHEM\Rush.i\R010312.b CALiB-IS RUSH0145.D
3/14/2001 1312 C:\CHEM\Rush.i\R010312.b CALIB-16 RUSH0146.D
3/14/2001 1 3 2 3 C:\CHEMlRush.iR010312.b CALIB-17 RUSH0147.0
3/14/2001 1 3 3 5 C:\CHEM\Rush.iR010312.b CALlB-18 RUSH0148.D
3/14/2001 1346 C \CHEMRush i\R010312 b CALlBIl9 RUSH0149D
3/14/2001 13 57
. C L
\CHEM\Rush i d a*ullt.0.
iW010312 b
pol"" y. M
,"CALIB-20
"..d ,rU I I D
RUSH0150 D
O I O n Ws"ldo".
5 ng/mL PFOS in MeOH 1 0 nglmL PFOS in MeOH 25 ng/mL PFOS in MeOH 4 0 ng/mL PFOS in MeOH 50.1 nglmLPFOSin MeOH 75.1 ng/mLPFOS in MeOH
100.2 nghnL PFOS in MeOH
250.5 nghnL PFOS in MeOH 400.8 n m L PFOS in MeOH
501 nglmLPFOS in &OH
010030743 0100307-04 01003-07-05 010030748 aiw3-07-07 0100307-08 01003-07-09 01003-07-10 0100307-11 0100367-12
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
5.46 5.48 5.46 5.46 5.46 5.46 5.47 5.46 5.48 5.48
1010117 999012 1013523 1000910 1019495 1013642 1007297 1010097 995285 1019903
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
m m l r O . w . - . -1
,=,4r a m
- 7
JOI
5.68 5.68 5.88 5.68 5.68 5.68 5.69 5.67 5.67 5.67
184884 324179 787488 1203328 1495911 2154462 2739039 5867202 8617452 10475418
3.8 8.9 25.5 41.7 52.0 78.8 103.8 250.2 409.9 510.6
76.3% 89.0% 102.1% 104.2% 103.9% 104.6% 103.4% 99.9% 102.3% 101.9%
EOO-1311PFOS AdsMblDBsolb
BACK TO MAIN
Balm Sem~lqLis1 SamDles Only Acqulsbon lnswrnenVSequenw RushI R010312 DalslAnalyn ol Reprocessing 27-28 Mar 01 I MLA Balm Meinoa R010312.m Ouanurauon Range 6 lo 501 n@mL, Quadratic fit,lniemalStandard Quint.
In1 Date
Batch
Flla
SampleNima CompoundNamc RT
AN.
Amour4 Compoundname RT
A n a Amount
3/13/2001, 1535 C:\CHEM\Rush.i~010312.b RUSHW30.D 1311-5088S1
THPFOS
551 1385664 254
PFOS
5.73 9084269 289.8
3/13/200115:26 3/13/2001 1537
3113,2001 16:00
C:\CHEMWush.l\R010312.b RUSH0031.D C:\CHEMWushhR010312.b RUSHW32.D
C5CHEM\Rush.i\R010312.b RUSHWM.D
13115089 1311-5090
13115091
THPFOS THPFOS
THPFOS
-5.51 1477514 254
5.50 1191529 254 5.51 1269217 254
PFOS
-" PFOS ^^
PFOS
5.72 9108410 268.9 5.72 7388008 269.9
5.73 1291151 34.6
3/13/2001 16:11 C:~HEM\Rush.i\R010312.b RUSH0035.D
13115092
THPFOS
5.51 1192069 254
PFOS
5.72 334372 7.3
3/13/2001 1623 C:\CHEM\Rush.i\RO10312.b RUSH003B.D
1311-5093
THPFOS
5.51 1150399 254
PFOS
5.72 177340 2.8
3/13/2W1 1634 C:\CHEM\Rush.i\RO10312.b RUSH0037.D 13115093MS
THPFOS
5.50 1021896 254
PFOS
5.72 4988078 203.3
3/13/2001 l6:45 C:\CHEM\Rushl\RO10312.b RUSH0038.D
1311-5094
THPFOS
5.51 1149765 254
PFOS
5.72 1598584 49.0
3/13/2001 1657 C:\CHEM\Rush.iW010312.b RUSH0039.D
13115095
THPFOS
5.50 1187956 254
PFOS
5.72 1827571 54.8
3/13/2001 1754 C:~HEM\Rush.i\R010312.b RUSH0044.D
13115096
THPFOS
5.51 1190238 254
PFOS
5.72 1567771 46.2
3/13RW1 18:05 C:\CHEM\Rush.iAR010312.b RUSHW45.D 13115096MS
THPFOS
5.51 1010278 254
PFOS
5.73 8130982 263.8
3/13/2001 18:16 C:\CHEM\Rush.i\R010312.b RUSHW46.D
13115097
THPFOS
5.51 1151402 254
PFOS
5.72 5335559 191.2
3113RWl 18:28 3/13/2001 18:39
C:\CHEM\Rush.i\R0103lZ.b RUSHW47.D C:\CHEM\Rush.RR010312.b RUSHW48.D
13115098 13115099
THPFOS THPFOS
- 5.51 1115232 254
5.50 1102724 254
*I
-.. PFOS
PFOS
-"
5.72 6471149 249.9 5.71 6167800 239.1
3/13/2001 19:M 3/13RO01 19:13 3/13/2W1 1924 3/13,2001 19:36 3/131200120:32 3/13/200120:44 3/13/200120:55
C:\CHEM\R~sh.l\R010312.b C\CHEM\Rush.iWO10312.b C:5CHEM\Rwh.l\R010312.b C:\CHEM\Rush.i\R010312.b C:\CHEM\Rush.i\R010312.b C:\CHEM\Rurh.i\RO10312.b C:\CHEM\Rush.l\R010312.b
RUSH005O.D RUSH0051.D RUSHCM52.D RUSHW53.D RUSHW58.D RUSHW59.D RUSHW60.D
1311-5100 1311-5101 13114102 1311-5102MS 13115103 13115104 13115105
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
5.50 1062217 254 5.49 1091409 254 5.49 1089550 254 5.49 954668 254 5.49 1117174 254 5.50 1116804 254 5.48 1088708 254
PFOS PFOS PFOS PFOS PFOS PFOS PFOS
5.71 4081880 153.8 5.71 3885689 140.8 5.71 3812836 1380 5.71 7834048 370.7 5.70 7957940 321.0 5.71 7667501 306.8 5.69 7435595 305.4
u-
Y13/200121:18 C:\CHEM\Rush.i\RO10312.b RUSHWB2.D
13115106
THPFOS
5.49 1197459 254
PFOS
5.71 5272348 180.1
3/13/200121:29 C:\CHEM\Rush.i\R010312.b RUSHW63.D
13115107
THPFOS
5.49 1180945 254
PFOS
5.69 5098549 176.0
3/13/200121:41 C:\CHEM\Rush.l\ROl0312.b RUSHW64.D 13115108
THPFOS
5.49 1203215 254
PFOS
5.70 5046570 170.2
3/13/200121:52 C:\CHEM\Rush.i\R01031Z.b RUSH0065.D 13115108MS
THPFOS
5.48 1052179 254
PFOS
5.70 9075493 407.9
3/13/2W122:03 C\CHEM\Rush.iWO10312.b RUSH0OSB.D
13115109
THPFOS
5.49 1065391 254
PFOS
5.70 478603 134
i
3/13/2W12215 C:\CHEM\Rush.l\R010312.b RUSHW67.D
13115110
THPFOS
5.48 1166374 254
PFOS
5.89 154573 2.0
3/13/200123:ll C\CHEM\Rush.N1010312.b RUSH0072.D
13115111
THPFOS
5.48 1179002 254
PFOS
0.00
0
0.0
3/13/200123:23 C:\CHEM\Rushi\R010312.b RUSH0073 D 1311S111MS
THPFOS
5.48 956166 254
PFOS
5.69 4711542 205.6
Y13Rw121.34 C:\CHEM\Rush.i!R010312.b RUSH0074.D 1311-5112
THPFOS
5.48 1126349 254
PFOS
5.69 1945796 62.4
3/13/2001 23:45 C\CHEM\Rush,i\RO10312.b RUSHW75.D
13115113
THPFOS
5.48 1133593 254
PFOS
5.69 1923182 61.1
3/13/20012357 C:\CHEM\Rush.i\R010312.b RUSH0076.D
13115114
THPFOS
5.48 105W97 254
PFOS
5.69 1911701 66.1
3/14ROO10:08 C:\CHEM\Rush.i\R010312.b RUSH0077.D 1311-5114MS
THPFOS
5.48 913903 254
PFOS
5.69 5785268 277.7
3/14Roo1 0.20 C:\CHEM\Rush.l\R010312.b RUSHW78.D
13115115
THPFOS
5.47 1051871 254
PFOS
5.M) 7556059 324.3
U14/2W10:31 C5CHEM\Rush.iW010312.b RUSH0079.D
1311-5116
THPFOS
5.48 1005648 254
PFOS
5.69 7453080 337.1
3/14R0010:42 C:\CHEM\Rush.i\R010312.b RUSH0080.D
1311-5117
THPFOS
547 1064813 254
PFOS
5.88 7243851 303.4
31~0011:50 3/14RWl 2 0 2 3/14RW12:13 3/14/20012:25 3/14R0012:36 3/1412001 2 4 7 3/14/2001 2 5 9 3/14/2001 3 3 0 3/14/2001 3 2 1 3/14/20013:33 3/14/2001 4 2 9 311412001 4:41 3/14120014:52 3/14/2W15:04 Y14R001 515 3/14/2001 526 3/14/2W15:38 3/14/20015:49 3/14/2001 6:00 3/14/2W16:12 3/14/2001 7:08 3/14/20017:20 3/14/2001 731 3/14/2w17:43 3/14/2W1 7 5 4 3/14/2001 8:05 3/14/2001 8:17 3/14/2001 8:28 3/14RW1@39 3/14/2001 8 5 1 3/14/2001 9:48 311412001 9:59 3/14/2001 10:lO 3/14/2001 1022 W1412Wl 1033 3/14/2001 10:44 311412001 10:56
_. C\CHEM\RushiW010312b RUSH0086 D
RUSH0087.D RUSH0068.D RUSH0089.D RUSH0090.D RUSH0091.D RUSHOW2.D RUSHCG93.D RUSHCG94.D RUSHW95.D RUSHO1W.D RUSHOlD1.D RUSHOlO2.D RUSH0103.D RUSH01W.D RUSHO105.D RUSH0106.D RUSH0107.D RUSHO108.0 RUSH0109.D
RUSH0114.D RUSH0115.D RUSHO116.D RUSH0117.D RUSH0118.D
RUSHO119.D RUSHOl2O.D RUSHO121.D RUSH0122.D RUSH0123.D RUSH0128.D RUSH0129 D RUSHO13O.D RUSHO131.D RUSH0132.D RUSH0133.D RUSH0134.0
13115118 13115119 1311-5120 1311-5120MS 1311-5019-SZ 1311-5020 13115021 1311-5021MS 13115022 13115023 1311-5024
13115024MS 1311-5025 13115028 1311-5027
13115027MS 13115028 13115029 13115030
1311-5030MS 13115031 1311-5032 13115033
13115033MS 1311-5034 1311-5035 13115036
1311-5036MS 1311-5055 13115055 13116057
13115057MS 1311-5058 1311-5059 1311-5060
13115060MS 1311-5061
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
5.48 1069400 254 5.48 1071246 254 5 47 1053796 254 5 47 906343 254 5.47 1068914 254 5.47 1035621 254 5.46 1058784 254 5.46 908983 254
5.48 1047722 254 5.47 1044074 254 5.47 1027244 254 5.47 900913 254 5.46 1034605 254 5.47 1024646 254 5.46 1017504 254 5.48 879952 254 5.49 997963 254 5.48 1030844 254 5.47 1022445 254 5.48 879426 254 5.46 1025535 254 5.47 1025203 254 5.47 1029469 254 5.47 880742 254 5.47 1023217 254 5.47 1012932 254 5.47 1026080 254
5.47 earn 254
5.47 987998 254 5.47 968034 254 5.48 691221 254 548 855978 254 5.48 897688 254 5.47 958286 254 5.47 975732 254 5.46 840001 254 5.47 967423 254
.. PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
... 569 5 69 5 68 566 5 68
OW OW 5 67 5 69 5 68 5 69 5 68 5 68
5 68 5 68
5 69 5 70 5 69 5 69 5 70 5 68 5 68 568 5 69 5 68 5 68 5 68 5 68 5 68 588
ow
5 69 5 69
5 69 5 68 5 68 5 68
...-. 5158635
4682505 5171543 e4%68 237607
0 0 4336124 413339 390331 420991 4492622 862953 009216 730970 4918144 1584024 970831 1650112 5622153 1856815 1884859 2002764 5840312 3730551 5585758 4711539 7998407 395287 166967 0 4243033 380@42 391761 847418 4805368 1987989
200.5 17i.7 204.6 460.9
5.2 00 0.0 197.9 11.4 10.7 12.0 208.5 27.7 28 9 23.3
238.9 56.0 31.7 57.8 281.1 65.7 66.9 71.2 293.9 144.7 235.1 189.2 448.9 11.6 34 0.0 206.8 10.9 11.9 29 0 245.7 75.7
3M Environmental Laboratory
EO@-1311 PFOS AdsoMDsaorb
P a w 4 of 5
Page 523 of 703
BACK TO MAIN
,9
7 s.
0 3
zI-
Pe , 0 3
Batch SarnDle List MeOH Blanks
Acquistion InstrumenffSequence: R u s h IR010312
DatelAnalystof Reprocessing: 27-28 Mar 01 I M U
Batch Method: R010312.m
Quantitation Range: 5 t o 501 ng/mL, Quadratic f&Internal Standard Q U m t
lnj Date
3/13/2001 12:13 3/13/2001 1225 3/13/2001 14:52 3/13/2001 15:03 3/13/2001 17:31 3/13/2001 17:42 3/13/2001 20:lO 3/13/2001 20:21 3/13/2001 2249 3/13/2001 23:OO 3/14/2001 1 2 8 3/14/2001 1:39 3/14/2001 4:07 3/14/2001 4:18 3/14/2001 6:46 3/14/2001 6 5 7 3/14/2001 9:25 3/14/2001 9:36 3/14/2001 11:30 3/14/2001 11:41 3/14/2001 14:09 3/14/2001 2420
Batch C:\CHEM\Rush.i\R010312.b
C:\CHEM\Rush.i\R010312.b
C:\CHEMUiush.iRO10312.b C:\CHEM\Rush.iWOl0312.b
C:\CHEM\Rush.i\RO10312.b
C:\CHEMRush.i\RO10312.b C:\CHEM\Rush.iWOl0312.b
C:\CHEM\Rush.i\RO10312.b C:\CHEM\Rush.i\RO10312.b
C:\CHEMRush.iRO10312.b C:\CHEM\Rush.i\ROl0312.b C:\CHEM\Rush.iWO10312.b C:\CHEMWush.iWOl0312.b C:\CHEM\Rush.iW010312.b C:\CHEMRush.iW010312.b
C:\CHEM\Rush.i!RO10312.b C:\CHEM\Rush.i\RO10312.b C:\CHEM\Rush.i\RO10312.b
C:\CHEM~ush.iWO10312.b C:\CHEMWush.i\RO10312.b
C:\CHEM\Rush.i\RO10312.b
C:\CHEM\Rush.i\R010312. b
SampType SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
File RUSH0014.D RUSH0015.D RUSHOO28.D RUSH0029.D RUSHOO42.D RUSH0043.D RUSH0056.D RUSH0057.D RUSH0070.D RUSH0071.D RUSHO064.D RUSHO085.D RUSHOO98.D RUSHO099.D RUSH0112.D RUSH0113.D RUSHO126.D RUSH0127.D RUSH0137.D RUSH0138.D RUSH0151.D RUSH0152.D
Sample Name TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH
Compound Name
RT
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
THPFOS
0
Area 0
0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Amount 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
0
Compound Name PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
RT 5.76 5.69 5.74 5.67 5.68 5.66 5.70 5.70 5.70 5.69 5.66 5.64 5.62 5.63 5.63 5.64 5.64 5.64 5.64 5.63 5.70 5.63
Area 38880 28954 39944 31045 30703 26910 71679 67134 72663 87507 72910 27715 30881 26667 29144 26564 31899 27859 29497 25940 41235 31551
Amount 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
3M EnvironmentalLabwatwy
EDO-1311PFOS AdrorbDescd
Page 5 of 5
LG,
-0
P)
(P (D
PFOS AdslDes E00-1311
BACK TO MAIN
Intcml Slindard 9usnI. Rsproctrslns method H0~0222t.m.callbntlon hndards 6-250 nplmL 2.6 npPFOSImL standarddld not meet accuracy requlnnents. 500.750 and 1000nWmL standards exclud*d t o better fit th. data. 9uadratic cuwe fit
Inj Date 2/2210120:51 2/22/0121.02 2/22/01 2133 2/22D1 21.24 2N101 21:35 2Rm121.46 21221012158 2/2m122:09 2122/0122:20 2/22/012231 2R2101 22:42 2Rm122:53 2R210123:04 2R3/01 1:29 2/23/01 1:40 2/23/014:05 2t23Dl 4:16 2/23/01 6.41 2123101 632 2/23/01 9:17 2/23/01 9:28 2/23101 1153 2R3/01 12:04 2/23/01 1430 22301 14:41 2123D1 16.44 2R301 16:55 2/23/01 17:28 2R301 17:39 m 3 m i 17:s 2/23/01 1802 2i23/01 18:13 2/2310118'24 22301 1835 2/23/01 18:46 2RJ101 18.57 2 R M 1 19:08 2/23/01 19.20 2R301 1931 ZRYOl 19:42
Batch D:WemWiilary.iW01OW.b D:khemWillary.WOlOW b D:WemWillaIy.iWOlOW.b D.WemWillary.iW01022.b D:WemWillary.iWO10222.b O.WemUliliary.iWO10222.b D:WemWlllary.iWOIOW.b D:WemWillary.iWO10222.b D:WemWiliary.iWOlM22.b D.WemWillary.RHO10222.b D:WemWillaryiW010W.b D WlemWilia1y.RH010222.b D.~mWillary.iV1010222.b D:WemWillary.iW010222.b D.WemWiilary.RH010222.b D.\chemWillary.iWO10222.b D:WlamWillary.WOl02222.b D:WemWiliary.iWO10222.b DWemWillary.iWO10222.b DWemWillary.iWO10222.b D:WemWiliary.iW01022.b D:WemWillary.iWO10222.b D.WamWillary.iWO10222.b D:WamWillary.iWOIO222.b D:'~~emWiliary.WO10222.b D.WemWlllary.iWO10222.b O.WemWillary.iWO10222.b D:WemWillary.iWO10222.b D.WemWillary.iWO10222.b D;Wem\Hillwy.RHO10222.b D:WlemWiilary.RHOlM22.b D:WemWiilary.iWOIO222.b D:WemWillary.iWO10222.b D:#emWillary.iWO10222.b D.WemWillary.iWO10222.b
DWemWillary.iUl010222.b D:WemWillary.iWO10222.b D:WemWiilary.iWOlOW.b D.WemWilla~.~O10222.b D:WemW~llary.iW010222.b
SampType Fila SAMPLE HILLW22 D CALIB-1 HlLW23 D CALlB-2 HILLW24.D CALIB-3 HILLW25.D CALIB-4 HILLW26.D CALIB-5 HILLW27.D CUB-6 HtLLCQ28.D CALlB-7 HILLW29.D CALlB-8 HILLW30.D CALIB-9 HILL0031.D CALlB-IO HILLW32.D SAMPLE HiLLW33.D SAMPLE HlLLW34.D CCALIB-1 HILLOM7.D CCALIB-1 HiLLOM8.D CCALIB-1 HILL00gl.D CCALIB-I HILL0062.D CCALIB-1 HILL0075.D CCALIB-1 HILLW76.D CCALIB-I HILL0089.D CCALlB-1 HILL0090.D CCALIB-I HILL0103.D CCALIB-I HILL0104.D CCALlB-1 HILL0117.0 CCALIB-1 HILL0118.D CCALIB-I HILL0129.D CCALIB-1 HILL0130.D SAMPLE HILL0133.D CALIB-I1 HILL0134.D CALlB-12 HILL0135D CALIB-I3 HILL0136.D CALIB-14 HILL0137.D CALIB-15 HILL0138.D CALIB-16 HILL0139.D CALIB-17 HILL0140.D CALlB-I8 HILL0141.D CALlB-19 HILL0142.D CALlB-20 HILL0143.D SAMPLE HILL0144.D SAMPLE HILL0145.D
Sample Name 00002-10401 00002-10402 WW2-lM43 WW2-10404 woO2-10405 W002-10406 MxKJ2-10407 00002-10408 00002-10409 m2-104-10 WW2-104-11 00002-104-12 0~-104-13 00002-10403 m2-104-10 woO2-10443 MXx)2.104-10 WW2-10403 W002-104-10 m2-10403 w002-104-10 oooO2-10403 m2-104-10 00002-1oeo3 ww2-104-10 oooO2-10443 00002-104.10 00002-10441 00002-10402 W2-10443 m2-10404 WOO2-10445 m2-10406 00002-10447 m02-10608 m2-10408 00002-104-10 M)o2-1M.11 00002-104-12 00002-104-13
Miac Info
Compound N8me
S M a m. t_~ n ~ L l
2.5
THPFOS THPFOS
5
THPFOS
10
THPFOS
25
THPFOS
40
THPFOS
50
THPFOS
75
THPFOS
I00
THPFOS
250
THPFOS
500
THPFOS
750
THPFOS
lW0
THPFOS
5
THPFOS
250
THPFOS
5
THPFOS
250
THPFOS
5
THPFOS
250
THPFOS
5
THPFOS
250
THPFOS
5
THPFOS
250
THPFOS
5
Twos
250
THPFOS
5
THPFOS
250
THPFOS
(0 SW) 2.5
THPFOS THPFOS
5
THPFOS
10
THPFOS
25
THPFOS
40
THPFOS
50
THPFOS
75
THPFOS
1W
THPFOS
250
THPFOS
500
THPFOS
750
THPFOS
I000
THPFOS
RT 4.945 4.938 4.945 4 945 4.945 4.938 4.944 4.937 4.937 4.945 4.932 4.905 4.948 4.944 4.928 4.937 4.938 4.903 4.934 4.933 4.904 4 921 4.914 4.93 4.818 4.91 4.909 4.909 4.917
4.9 4.897 4.902 4.902 4.91 4.902 4.903 4.902 4.902 4.903 4.904
Area 882637 883313 890555 879564 886135 877054 863584 863923 861128 819727 777086 727981 725193 938494 843674 954179 843825 955094 854940 972449 a46048 9MO% 841012 w76a 843661 965275 849853 960603 970213 975322 962803 955202 931719 913224 908508 891910 835096 767261 726914 710125
Averaae: 877~02 Std Dev: 75930
Y R S D 8.7%
Amount Compound Name
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
249.3
PFOS
QC IS range (+I3-0% averaps):
1140493 +30%:
614112 30%:
RT 5.169 5.162 5.169 5.169 5.169 5.162 5.168 5.161 5.162 5169 5.156 5.171 5.163 5.168 5.153 5.154 5.162 5.155 5.151 5.157 5.163 5.145 5131 5154 5.147 5135 5.134 5.133 5.134 5.124 5.121 5.126 5.127 5.134 5.127 5.113 5.119 5.126 5.127 5.128
Area 87135 71W7 130540 254321 527419 838037 10948% 1627972 2166581 5046746 9079135 12908429 16080347 128463 5084843 130987 5117167 124712 5115342 128458 5100493 126306 50014W 127270 5032612 123647 4974770 80947 70306 123635 246680 509141 809392 1075245 1576634 2094348 4914708 8822276 12478371 15773542
Amount 4.2 3.4 6.2 12.1 24.8 39.7 52.7 78.3 104.4
255.1 483.2 731.9 913.8
5.8 249.8
5.8 251.3
5.5 248.0
5.6 249.8
56 246.5
5.4 247.2
5.4 242 6
3.6 3.1 53 10.7 22.2 36.1 48 9 72.1 97.5 243.9 475.6 708.7 915.4
% meweucai
X 123 1% 120 7% 99 1% 99 3% 105 4% 1043% 104 4% 102 1%
X X
1151% 888% 1154% 1005% 109 8% 99 2% 111 1% 99 8% 111 8% 98 6% 108 5% 98 9% 107 8% 97 0%
X 106 7% 107 I %
ea 8%
90 3% 97 9% 96 1%
97 5%
97 6% 95 1%
X X
Page 1 of 4
BACK TO MAIN
PFOS AdsDes Em-1311
Internal Standard Quint, Reprocessing method: H01022nm, calibrationstandards 5 - I O n#mL 2.5 ngPFOSlmLstandard did not meet accuracy requlrments, 500.750 and 1000 nglmL standards excludedto better Mthe data. Quadrauc CUNC M
In1D a b
Batch
SampType File Sample Name MissInfo Compound Name RT
2R2101 23 38 2/2210123 49
2123101 o 00 2/23/01 o 11
2/23/01 0 22 2/23/010 33 2123m10 45 2123771 0 56
2231011 0 7 2123m1118 2/23/01 2 14 2/23/012 25
212Nl12 36 2/23/012 47 2/23/012 58
2/2M13 w
2/23/01 3 20 2R31013 32 2R31013 43 2123101354
m 3 m i 4 50 2/23/01 5 01 2,23/015 12 2113101 5 23
2/23/015 34 2 R M 1 5 45 2123/01556 2R3iU16 08
M u 0 1 6:lS 2 R M 1 6 30 2,23101 7 26 2,231017 37
Z n M l 7:48 m m 1 759
m~m8ii o
2/23/018 21
Z R M l 812 2/23/018 44 2 / 2 M 1 8 55 2/23/01906
D:khemWillary.iWO10222.b D \memWil!ary.iW@1~222.b D:WemWillary.WOl0222.b D.WemWillary.iW010222.b
SAMPLE SAMPLE SAMPLE SAMPLE
HILLW37D 13114001Sl HILL0038D 13114W2S1 HILL0039D 13114W3S1 HILL0040D 13114W3MS-Sl
D:WemWillary.iW010222.b D:Wem\Hillary iW010222.b D WemWillary.iW010222.b D:WemWillary.iWO10222.b
SAMPLE SAMPLE SAMPLE SAMPLE
HILLW41D 13114W4S1
HILLW420 13114W5S1 HILL0043D 13114006s1 HILLW44D 13114006MSSl
D'WlemWillary.iW010222.b D.WemWillary iWO10222.b D WemWillary.iWOlO222.b D.WemWllary.iWO10222.b
SAMPLE SAMPLE SAMPLE SAMPLE
HILLWX5D 13114W7S1 HILL00460 1311400Bs1 HILL00510 1311400991 HILL0032D 13114009MSSl
D.WemWillary.iW010222.b D.WemWillary iW010222.b D WemWillary.iW010222.b D.WemW3lary.iWO10222.b
SAMPLE SAMPLE SAMPLE SAMPLE
HILL00530 13114010S1 HILLW540 13114011S1 HILL0055 D 13114012Sl HILL0056D 13114012MSS1
D.WemWillary.iWO10222.b 0 WemWBlary.iW010222.b D.WemWillary.iWO10222.b D.WmWillary.iWO10222.b
SAMPLE SAMPLE SAMPLE SAMPLE
HILL00570 1311401391 H I U 5 8 0 13114014-S1 HILL00590 1311401541 HlLLW60 0 13114015MS-S1
D.WemWillary.iW010222.b D.WemWillary.iWO10222.b D.WemWillary.iWO10222.b D.WemWillary.iW010222.b
SAMPLE SAMPLE SAMPLE SAMPLE
H I L L M D 1311-401E-S1 HILLOW60 1311401791 HlLLW67D 13114018S1 HlLLW68 D 13114018MSSl
D'WemWillary.iWO10222.b D.WemWillary.iWO10222b D:WemWillary.iW010222.b D:WemWillary.iWOl0222.b
SAMPLE SAMPLE SAMPLE SAMPLE
HILLW69D 1311401991 HILLW70D 13114MDs1 HILLW71 D 13114UZ191 HILLW72 0 1311-4021MSS1
D:khsmWillrry,NIOl0222.b D.WemWillaiy.iWO10222b D WemWillary.iW010222.b D.WmWiilary.i~O10222.b
SAMPLE SAMPLE SAMPLE SAMPLE
HILLW73.D 1311-4022-S1 HILL0074D 13114023-S1 HILL0079D 1311402491 HILLODBOO 13114024MS-S1
D:lchemWilkry.MolO222.b D:lchemWillary..lWO10222.b D WlemWillary.iW010222.b D.WemWillary.iWO10222.b
WPLE SAMPLE SAMPLE SAMPLE
HlLL0081.D 1 3 l l M 2 5 - S I HULW82.D 13114026S1 HILL083 D 1311402791
HILL0084D 13114027MS-S1
O:lchemWillary.MOlO222.b DWemWillary iW010222b D WemWillary.iW010222.b D.WemWillary.tWO10222.b
SAMPLE SAMPLE SAMPLE SAMPLE
HILLW8S.D 1311-4028-S1 HILL0086D 13114029Sl HILLW87D 13114030-S1 HILL0088D 13114030MSS1
THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS
4.943 4.931 4.944 4.937
4.939 4.937 4.937 4.929
4.937 4.938 4.939 4.93
4.937 4.936 4.935 4.931
4.929 4.936 4.937 4 938
4.93 4.93 4.936 4.931
4 93 4.939 4932 4.925
4.933 4 931 4.929 4.937
4.947 4.938 4.93 4.932
4.937 4.929 4.931 4.929
Area
944393 963890 942003
ern32
945739 932519 933232 816057
944645 933140 965150 833273
871260 963096 966343 839415
971971 978257 958983 831850
1012423 1057231 1128229 879406
994786 1005038 995117 855713
1145409 1017422 996024 995047
1162201 1169445 1007177 949165
1167037 985447 1123074 866592
Samples E00-4Wl-SI mru4 0 5 1 9 1
*'.
Amount
249.3 249.3 249.3 249.3
249.3 249.3 240.3 249 3
249.3 249.3 249.3 249.3
249.3 249.3 249.3 249.3
248.3 249.3 249.3 249.3
249.3 249.3 249.3 249.3
249.3 249.3 249.3 249.3
249.3 249.3 249.3 249.3
249.3 249.3 249.3 249.3
249.3 249.3 249 3 249.3
mpoundName RT Area Amount %Theoretical
PFOS PFOS PFOS PFOS
PFOS PFOS PFOS PFOS
PFOS PFOS PFOS PFOS
was
PFOS PFOS PFOS
PFOS PFOS PFOS PFOS
PFOS PFOS PFOS PFOS
PFOS PFOS PFOS PFOS
PFOS
PFOS PFOS PFOS
PFOS PFOS PFOS PFOS
PFOS PFOS PFOS PFOS
0 0 0 5.161
0 0 0 4102327
0 0 0 5.153
0 0 0 4020982
5.161 5.162 5.17 5.154
1164609 1239235 1999524 5149900
5161 5.16 5.16 5.155
1233408 1214963 1183400 5007271
5.154 5.16 5.162 5162
1195984 1232516 1212915 5041035
5.154 5.154 5.16 5.155
1263565 1276111 1396036 5215525
5.154 5.163 5.1% 5149
1172949 1226450 1202381 5111162
5.15 5.155 5153 5.161
1537684 1206313 1250887 5936492
5.f65 5.162 5.162 5.163
1453734 1398064 1265770 5704109
5.168 5.161 5162 5.16
1418355 1267363 1377526 5191492
0.0 0.0 0.0 204.7
0.0 0.0 0.0 204.3
51.2 55.2 86.0 256.1
52.8 52.4 50.9 247.2
51.1 52.4 52.6 251.1
51.9 50.2 51.4 245.8
490 50.7 50.2 247.5
55.8 49.3 52.2 247.3
52.0 49.7 52.2 249.1
50.5 53.4 51.0 248.3
Page2 of4
PFOS Adsmes 00-1311
BACK TO MAIN
Sampler E W 4 W I S l thrd 4051-51
-3-
InternalStandardQuint, Reprocerrlng method: H01022~m.Callbmlon standards6-250 nglmL 2.6 ngPFOSlmLstandard did not meet accuracy requlnnentr, 600,760 and 1000nNmL standards excluded to better Mthe data. QuadmUc curve M
In) Date
Batch
SampType File Sample Name MI% Info Compound Name RT
Am.
m3m11002 2 m m i 10'13 m 3 m 1 10.24 2/23/01 10.35
D:WlemWillary.iWO10222.b D.WemWillary.IW010222.b O:WemWillary.iWO10222.b D:WemWillary.iWOl0222.b
SAMPLE SAMPLE SAMPLE SAMPLE
HlLL0093.D 13114031S1 HILLWM D 13114032S1 HILL0095D 1311403341 HILLW98.D 13114033MSSl
THPFOS THPFOS THPFOS THPFOS
4 925 4 923 4 93 4926
1015824 1079934 10551W 898829
2R3/01 10.46 2/23/01 10.57 2/23/01 11:09 2123/oi 11:zo
D WemWillary.RHO1OW.b 0 WemWiliary.iW010222.b D:WemWillary.iW010222.b D:WernWillary.iWOlO222.b
SAMPLE SAMPLE SAMPLE SAMPLE
HILLW97.D 13114034-51 HILLW98.D 1311403551 HILLW99.D 13114036S1 HILLO1W.D 13114036MSSl
THPFOS THPFOS THPFOS THPFOS
4 923 4 924 4 915 4 918
987405 1090655 1031470 841990
m 3 m i 11'31
zmmi ii:m z m m i 12.38
2 R M 1 1249
D:tchemWiilary.iWOl0222b O:WemWillary.iW010222.b D:WemWillary.iWOlOW.b D.WlemWillary.iWO1OW.b
SAMPLE SAMPLE SAMPLE SAMPLE
HiLLO1Ol.D 13114037Sl HILL0102.D 13114038sl HILL0107.D 1311403851 HILL0108.D 13114039MSSl
THPFOS THPFOS THPFOS THPFOS
4 922 4 922 4 918 4 915
995964 992751 985052 844071
2/23/01 13:W 2/23/01 13:12 2/23/01 1323 m 3 m i 1x34
D.WemWillary.iWO10222.b DWemWillary.lW010222.b D:WemWillary.iW0102.b D:WemWillary.iW010222.b
SAMPLE SAMPLE SAMPLE SAMPLE
HILLOlD9.D 13114040-51 HILLO1lO.D 13114041Sl HILLO1ll.D 13114042Sl HILL0112.0 13114042MSSl
THPFOS THPFOS THPFOS THPFOS
4 91 4 917 4 908 4 915
%lo932 986341 982392 873132
2R3D1 1S45 212331 13% 2/23/01 14.07 2/23/01 14.18
o:chernWillar/IWO10Z?2.b D:WemWillary.lW010222.b O.WemWillary.iWO10222.b D.WemWillary.iW010222.b
SAMPLE SAMPLE SAMPLE SAMPLE
HlLLO113.D 13114M3s1 HlLLO114.0 13114M4S1 HILLO115.D 1311-4045-Sl HILL0116.0 13114045MSSl
THPFOS THPFOS THPFOS THPFOS
4 914 4 925 4 922 4 923
984852 999207 997394 861434
m3mi1 5 : ~ ~3101 5 : ~ 212301 1537 2/23/01 15:48
D:~mWilIary.i~10222.b D:WemWillary.iW010222.b D:WlemWillary.iW010222.b D.WemWillary.iW010222.b
SAMPLE SAMPLE SAMPLE SAMPLE
HILLO1Zl.D 1311404651 HILL0122.D 1311-4047-51 HiLL0123.D 13114MBSl HILL0124.D 13114048MSSl
THPFOS THPFOS THPFOS THPFOS
4 923 4 92 4 923 4 91
1017804 993010 1007737 853140
2 ~ 3 mi5i :59 2/23/01 1610 m3mi 1 6 : ~ m3mi 1 6 : ~ ~
DtchemWillary.lWOlOZ~.b D.WemWillary.iWO10222.b D.WemWillary.iW010W.b D.WemWillary.iWO10W.b
SAMPLE SAMPLE SAMPLE SAMPLE
HILL0125.D 13114049S1 HILL0126.D 1311405041 HlLL0127.D 1 3 1 1 4 0 5 1 ~ 1 HILL0128.D 13114051MSSl
THPFOS THPFOS THPFOS THPFOS
4 916 4 91 4 915 4911
986831 979691 955326 849190
AVeRqe: 972356
Std Dev: 85032
.XRSD: 8.7%
Amouni
249.3 249.3 249.3 249.3
249.3 249.3 249.3 249.3
249.3 249.3 249.3 249.3
249.3 249.3 249.3 249.3
249.3 249.3 249.3 249.3
249.3 249.3 249.3 249.3
249.3 249.3 249.3 249.3
Compound Name RT Area Amount
PFOS PFOS PFOS PFOS
0
0
0
0
0
0
5.15 4355290
0.0 0.0 0.0 2w.9
PFOS PFOS PFOS PFOS
0 0 0 5.149
0 0 0 4108751
0.0 0.0 0.0 202.3
PFOS PFOS PFOS PFOS
5.153 5.153 5.142 5.139
876072 768043 683545 4577937
J6.6 33.0 28.9 2248
PFOS PFOS PFOS PFOS
5.141 5.141 5.139 5.146
277725 246166 265448 4439371
11.7 10.4 11.3 210.8
PFOS PFOS PFOS PFOS
5.145 269994
5.1479 23462256227 5.154 4358791
11.5
1909.2 209.8
PFOS PFOS PFOS PFOS
5.147 5.144 5.148 5.134
330798 266017 312638 4357808
13.6 11.2 12.9 211.8
PFOS PFOS PFOS PFOS
5.14 5.141 5.139 5.135
223688 203407 237833 4290735
9.5 8.7 104 209.5
X meoreucal
Page 3 of 4
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Quantity Compovnd
RiipOrt
E00-1311 P M 8 AdsorblDesOrb
8 - h List: Last wdified: Method: Last wdifisd:
Job Code :
C:\Mse~l~\:~oup020199.pro\8ampl~D8\~001207 Mon Dec 11 0'3:05:24 2000 C:\Msrlilynw\:10up020199.pro\MethD8\s001201 m n De0 11 0'):10:27 2000
Priqed:
m n DOC 11 0 ! 3 : a 3 : 3 8 2000
C m s n u n d 1: P.08 1499,991. :Cum 1
# N-
study no S.-lelirt Text
1 s001201~001 E00-1311 NeOH Blank, TN-A-4115, Aliq. 11/16/00
2 s001201_002 E00-1311 11101.7 ppb PFOS 00002-86-13. allq. 11-27-00 MLA
3 ~ 0 0 1 2 0 1003 E00-1311 1001.7 DDb PFOS 00002-86-13. alia. 11-27-00 MLA
4
E00-1311 L2OH Blank, TN-AL-4715,Aliq. ll/i6/00
5
E00-1311 MeOH Blank. TN-A-4115. Aliq. 11/16/00
6
E00-1311 0 ppb PFOS 00002-86-01, Aliq. 11-27-00 MLA
1
E00-1311 2.5 ppb PFOS 00002-86-02. Aliq. 11-21-00 MLA
8
E00-1311 5.00 ppb PFOS 00002-86-03. Aliq. 11-27-00 MLA
9
E00-1311 111.0 ppb PFOS 00002-86-04. Aliq. 11-27-00 MLA
10
EOO-1311 2'5.0 ppb PFOS 00002-86-05. Aliq. 11-27-00 MLA
11
E00-1311 411.0 ppb PFOS 00002-86-06. Aliq. 11-27-00 MLA
12
E00-1311 511.1 DDb PFOS 00002-86-01 Alia. 11-27-00 MLA
13 sOOl207I013 E00-1311 79.1 Pbb PFOS 00002-86-08. Alia. 11-21-00 MLA
14 ~ 0 0 1 2 0 1 ~ 0 1 4E00-1311 llJO.2~ipbPFOS 00002-86-09, Aliq. 11-27-00 MLA
15 ~ 0 0 1 2 0 1 ~ 0 1 5EOO-1311 2'50.4 ppb PFOS 00002-86-10, Aliq. 11-27-00 MLA
16 ~ 0 0 1 2 0 1 ~ 0 1 6E00-1311 5110.9 ppb PFOS 00002-86-11 Aliq. 11-21-00 MLA
17 a001201 011 E00-1311 11101.7 .o.Db PFOS 00002-86-13. alla. 11-21-00 MLA
18 ~ 0 0 1 2 0 1 ~ 0 1 8E00-1311 MlfOH Blank, TN-A-4115, Alla. ll/i6/00
19 ~ 0 0 1 2 0 1 ~ 0 1 9E00-1311 &?OH Blank, TN-A-4715, Alii. 11/16/00
20 ~ 0 0 1 2 0 7 ~ 0 2 0E00-1311 M*?OH Blank. TN-A-4115. Aliq. 11/16/00
21 ~001207-021 E00-1311 I1 ppb PFOS 00002-86-01, Aliq. 11-27-00 MLA
22 ~ 0 0 1 2 0 1 ~ 0 2 2E00-1311 2 5 ppb PFOS 00002-86-02. Aliq. 11-27-00 MLA
23 so01207 013 E00-1311 5 00 oob PFOS 00002-86-03. Alia. 11-21-00 MLA
24 ~001207--024 E00-1311 111.0 bbb PFOS 00002-86-04. All;. 11-21-00 MLA
25 s001207L025 E00-1311 25.0 PPb PFOS 00002-86-05. Alii. 11-27-00 MLA
26 ~ 0 0 1 2 0 1 ~ 0 2 6E00-1311 40.0 ppb PFOS 00002-86-06. Aliq. 11-27-00 MLA
27 s001201~021 E00-1311 511.1 ppb PFOS 00002-86-07 Aliq. 11-21-00 MLA
28 29
- s001201~028 E00-1311
~ 0 0 1 2 0 1 ~ 0 2 9EO0 1311
7!;.1 ppb PFOS 0 0 0 0 2 - 8 6 - 0 8 . Aliq. 11-27-00 MLA 1110.2 ppb PFOS 00002-86-09. Aliq. 11-27-00 MLA
30 s001201_030 EOO-1311 2!50.4 ppb PFOS 00002-86-10. Aliq. 11-27-00 MLA
31 ~ 0 0 1 2 0 1 ~ 0 3 1EO0 - 1311 500.9 ppb PPOS 00002-86-11 Aliq. 11-27-00 MLA
32 r001201 032 E00-1311 1001.7 ppb PFOS 00002-86-13. aliq. 11-27-00 MLA
33 sOOl201IO33 E00-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00
34
E00-1311 &:OH Blank, TN-A-4715, Alii. 11/16/00
356
37
38 39 40 41 42 43
44
45 46 41 48 49 50 51 52 53 54 55 56 57
58
59
60 61 62 63 64 65 66 67 68 69 70 71 732
74 75 76 s001207I016 71 18 19
eo
81 82 83 e4 e5 86 87 e8 e9
E00-1311 E00-1311 E00-1311 E00-1311 EOO-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 EOO-1311 E00-1311
ZOO-llll
EOO-1311
E00-1311 E00-1311 EOO-1311 E00-1311 E00-1311 EOO-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 EOO-1311 E00-1311 E00-1311
250.4 ppb PFOS 00002-86-10. Aliq. 11-21-00 MLA MeOH Blank, TN-A-4115. Aliq. 11/16/00 MtiOH Blank, TN-A-4115. Aliq. 11/16/00 lllx E00-1311-3005-S1, 0.5mgIL. Ohr. NO soil. 12/01/00 lllx E00-1311-3006-S1, 0.5mgIL. Obr. NO soil. 12/01/00 lllx E00-1311-3006ms-S1,0.5mg/L, Ohr, NO soil, 12/07/00
lllx E00-1311-3013-S1, 0.OmglL. Ohr. 1:lclay. 12/01/00 lox E00-1311-3014-S1, O.Omg/L, Ohr, 1:lclay. 12/01/00 Zli0.4 ppb PFOS 00002-86-10. Aliq. 11-27-00 MLA M1:OH Blank. TN-A-4115, Aliq. 11/16/00 M<!OH Blank, TN-A-4115. Aliq. 11/16/00 l l l x E00-1311-3015-S1, O.Omg/L. Ohr, 1:lclay. 12/01/00 lllx E00-1311-3015ms-S1,0.Omg/L, Ohr. 1:lclay. 12/07/00
lllx E00-1311-3016-S1. O.Omg/L. Ohr, 1:5clay. 12/07/00
10x E00-l311-3017-S1, O.Omg/L. Ohr, 1:Sclay. 12/07/00 lOx E00-1311-3018-S1. O.Omg/L. Ohr. l:5clay, 12/07/00 2!>0.4 ppb PFOS 0 0 0 0 2 - 8 6 - 1 0 , Aliq. 11-27-00 MLA
":OH Blank. TN-A-4715. ALlrq. 11/16/00
MeOH Blank, TN-A-4715. Aliq. 11/16/00
lllx E00-1311-3018ms-S1.0.Omg/L. Ohr. 1:Sclay. 12/07/00 l l l x E00-1311-3019~S1,O.OmglL.Ohr. 1:25clay. 12/01/00 l l l x E00-1311-3020-S1,0.0mg/L, Ohr. 1:25clay, 12/07/00
l l l x E00-1311-3021S1.0.Omg/L. Ohr. 1:25clay. 12/07/00 l l l x E00-l3ll-3021ms-S1,0.Omg/L,Ohr. 1:25clay. 12/07/00 :!50.4 ppb PFOS 00002-86-10, Aliq. 11-27-00 MLA MeOH Blank. TN-A-4715. Aliq. 11/16/00 HeOH Blank, TN-A-4115, Aliq. 11/16/00 :Ox E00-1311-3031-S1.0.5mglL. Ohr, 1:lelay. 12/01/00 :Ilx E00-1311-3032-S1,0.5mg/L. Ohr. 1:lclay. 12/01/00 :Ox EOO-l311-3033-Sl,0.5mg/L. Ohr. l:lclay, 12/01/00 :Ox E00-l311-3033ms-S1,0.5~/L, Ohr, 1:Iclay. 12/01/00 lllx E00-1311-3034-S1,0.5mg/l.0hr. 1:Sclay. 12/07/00 250.4 ppb PFOS 00002-86-10. Aliq. 11-21-00 MLA Mt!OH Blank. TN-A-4115. Aliq. 11/16/00 MeOH Blank. TN-A-4115. Aliq. 11/16/00 l0x E00-1311-3035-S1.0.5mg/L,Ohr, 1:Sclay. 12/01/00 lllx E 0 0 - 1 3 1 1 - 3 0 3 6 - S 1 , 0 . 5 m g l L . O h r , 1:Sclay. 12/01/00 l(lx E00-1311-3036ms-Sl,0.5mg/L,0hr, 1:Sclay. 12/07/00 l(lx EOO-1311-303l-S1,0.5~/L,Ohr. 1:25clay, 12/07/00 l ( l x E 0 0 - 1 3 1 1 - 3 0 3 8 - S 1 , 0 . 5 ~ / L , O h r ,1:25clay. 12/01/00 2!#0.4 ppb PFOS 00002-86-10. Aliq. 11-21-00 MLA HeOH Blank, TN-A-4115, Aliq. 11/16/00 Mt!OH Blank, TN-A-4715. Aliq. 11/16/00 l(lx E 0 0 - 1 3 1 1 - 3 0 3 9 - S 1 , 0 . 5 m g l L . O h r , 1:25clay. 12/07/00 l(lx E00-1311-3039-S1,0.5mg/L,Ohr, 1:25clay. 12/07/00
EIr!OH Blank, TN-A-4115, Aliq. 11/16/00 MeOH Blank, TN-A-4715. Aliq. 11/16/00 MeOH Blank, TN-A-4715. Aliq. 11/16/00 0 ppb PFOS 00002-86-01, Aliq. 11-27-00 NLA
Analyte
Analyte Analvte Anal& Analyte Analyte Analyte Analyte Analyte
Ana1yte Ane1yte Analyte Analyte Ana1yte Analyte Analyte Analyte Analvte Blank
Blank Analyte Standard Standard Standard Standard Standard Standard Standard Standard Standard Standard Standard Analyte Blank Blank Analyte Analyte Ana1yte Ana1yte Analyte
QC Analyte Analyte Analyte Analyte Analyte Analyte Analyte
QC Analyte Analyte
Analyte Analyte Analyte
Analyte Analyte
QC Analyte Analyte
Analyte Analyte Analyte
Analyte Analyte
QC Analyte Analyte Analyte Analyte Analyte Analyte Analyte
QC Analyte Analyte Analyte Analyte Analyte Analyte Analyte
QC Analyte Analyte Analyte Analyte Analyte Blank Blank Analyte
Std Conc
2.50 5.00 10.00 25.00 40.00 50.10 75.10 100.20 250.40 500.90 1001.70
250.40
250.40
250.40
250.40
250.40
250.40
RT 7.oeo 7.082 7.079 7.092 7.091 7.092 1.080 1.094 7.093 1.082
1.082 1.092 7.089 1.092 7.082 7.079 1.079 7.101 1.091 7.089 7.079 7.080 1.093 1.093
~~
7.092 1.094 7.080 7.080 7.082 7.081 7.091 7.091 7.104 1.091 7.092 7.089 7.105 1.105 7.093 1.103 1.093 1.093 7.094 1.094
1.086 7.105
7.098 7.109 7.094
7.106 7.115 1.106 1.105 7.104
7.106
1.103
7.104 7.092 7.091 1.106 7.106 7.092 1.104 7.105 1.093 1.091 7.106 1.103 1.103 1.106 1.131 1.106 1.103 7.105 7.105 1.092 1.104 1.100 1.106 1.107 1.092 7.091 1.091 1.104 1.092 1.101
PIDB 1
Area 92
50144 46601 ~~~~~
364 102 131
pvb 0.00
0.00 0.00 0.00
5-v
LOO LOO
Flags Mod Co bb bb1 h_ hT _. bb bb bb bb bb
8189
9927
18824
29260
42301 262
123
18
111
534
805
1401 ~~
~
3018 4640
5541 1431
9561
18376
28180 40982
350
183 11
11
25
25
13130
227 14711
86
40
33
13912 61
13528 13 61
18197 91
53 23 13924
59
29
14015 18494 11814
e2 13420 14135
64 21 2906 4003 6024
17898 23398 20000 20428 15260
12
20562 20568
137 86 52
io8
86.02 15 bb
115.03 15 bb
269.69 8 bb
493.19 -1 bb
bbI
0.00
bb
~~
0.00
bb
0.00
bb
0.00
bb
0.00 -100 bbX
0.00 -100 bbx
0..0.0. -1..0.0 hhY
12.07 -52 bb
34.18 -13 bb
41.01 -6 bb
80.70 7 bb
115.12 15 bb
255.94 2 bb
469.41 -6 bb
848.10 -15 bb
0.00
bb
0.00
bb
0.00
bb
0.00
bb
0.00
bb
0.00
bb
243.94
bb
0.00
bb
291.29 16 bb
0.00
bb
0.00
bb
0.00
bb
341.05
bb
0.00
bb
289.20 0.00 0.00
15 bb bb bb
463.23
bb
0.00
bb
0.00
bb
0.00
bb
272.53 9 bh
0.00
bb
0.00
bb
151.28
bb
398.29
bb
449.11
bb
0.00
bb
261.31
bb
281.45 12 bb
0.00
bb
0.00
bb
26.41
bb
47.72
bb
14.95
bb
541.85
bb
366.00
bb
211.32 11 bb
0.00
bb
0.00
bb
389.48
bb
390.30
bb
554.07
bb
(27.38
bb
401.20
bb
214.95 10 bb
0.00
bb
0.00
bb
450.84
bb
441.93
bb
0.00
bb
0..0.0~ bb
0.00
bb
0.00
bb
SOUP 020199: wantitated d l printed by chzc on 12/11/00
3M Environmental Laboratory
Page 529 of 703
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Guantify Ccmuound sunmaw R e w r t E00-1311 PFO8 AdsorbIE0sorb
S-le List: C:\lllsalynr.\~ou~020199.~ro\S~laDB\r001201
Method:
C:\lll~~ly~1.\~0~~020199.~r0\l(atMB\~001201
Last mdified: I(on IMC 11 09:10:27 2000
Job Code :
Prinded:
I4on m c 11 09:23:38 2000
- _ - - - - I _ _
CaqpoUnd 1: PFOS ( 4 9 9 > 9 9 ) , fwrC 1
U Narm
study M SaTwlelist Text
90 ~001207-090 E00-1311 2 . 5 ppb PFOS 00002-86-02, Aliq. 11-27-00 MLA
91 ~001207-091 EOO-1311 5.00 ppb PFOS 0 0 0 0 2 - 8 6 - 0 3 , Aliq. 11-27-00 MLA
92 ~001207-092 E00-1311 10.0 ppb PFOS 00002-86-04, Aliq. 11-27-00 MLA
93 ~001207-093 E00-1311 25.0 ppb PFOS 00002-86-05. Aliq. 11-27-00 MLA
94 ~001207-094 E00-1311 40.0 ppb PFOS 0 0 0 0 2 - 8 6 - 0 6 , Aliq. 11-27-00 MLA
95 ~001207-095 E00-1311 50.1 ppb PFOS 00002-86-01 Aliq. 11-21-00 MLA
96 ~001201-096 E00-1311 15.1 ppb PFOS 00002-86-08. Aliq. 11-27-00 MLA
91 ~001207-091 EOO-1311 100.2 ppb PFOS 00002-86-09, Aliq. 11-27-00 MLA
98 ~001207-098 E00-1311 250.4 ppb PFOS 00002-86-10, Aliq. 11-27-00 MLA
99 s001207L099 E00-1311 500.9 ppb PFOS 00002-86-11 Aliq. 11-27-00 MLA
100 ~ 0 0 1 2 0 7 ~ 1 0 0E00-1311 1001.7 ppb PFOS 00002-86-13. aliq. 11-27-00 MLA
101 ~ 0 0 1 2 0 7 ~ 1 0 1E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
102 s001201~102 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
103 ~001207-103 E00-1311 MeOH Blank. TN-A-4115, Aliq. 11/16/00
104 ~ 0 0 1 2 0 1 ~ 1 0 4EOO-1311 lox E 0 0 - 1 3 1 1 - 3 0 4 0 - S 1 , 0 . 5 m g l L . 2 h r
105 ~001207-105 EOO-1311 lox E 0 0 - 1 3 1 1 - 3 0 4 1 - S 1 , 0 . 5 m g / L . 2 h r
106 ~001207-106 E00-1311 lox E 0 0 - 1 3 1 1 - 3 0 4 2 - S 1 , 0 . 5 m g / l . 2 h r
107 ~ 0 0 1 2 0 1 ~ 1 0 7E00-1311 250.4 ppb PFOS 00002-86-10, Aliq
108 ~001207-108 E00-1311 .YeOH Blank. TN-A-4115. Aliq. 11/16/00
109 ~001207-109 E00-1311 MeOH Blank, TN-A-4115, Aliq. 11/16/00
110 ~ 0 0 1 2 0 7 ~ 1 1 0E00-1311 lox E00-1311-3042ms-S1,0.5mg/L.Zhr. 1:lclay. 12/01/00
111 ~ 0 0 1 2 0 7 ~ 1 1 1~ 0 0 - 1 3 1 1lox E00-1311-3043-S1
112 ~001207-112 E00-1311 LOX E00-1311-3044-S1
113 ~001207-113 E00-1311 LOX E00-1311-3045-S1
114 ~001207-114 E00-1311 LOX E00-1311-3045ms-
115 ~001207-115 E00-1311 :250.4 ppb PFOS 00002-86-10. Aliq. 11-27-00 MLA
116 ~001207-116 E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
117 ~001207-117 E00-1311 MeOM Blank. lT-A-4715, Aliq. 11/16/00
118 ~001207-118 E00-1311 LOX E 0 0 - 1 3 1 1 - 3 0 4 6 - S 1 , 0 , 5 m g l l . 2 h r . 1:25clay
119 ~001207-119 E00-1311 .LOX E 0 0 - 1 3 1 1 - 3 0 4 7 - S 1 . 0 . 5 m J / L . 2 h r . 1:25clay
120 ~ 0 0 1 2 0 7120 E00-1311 LOX E 0 0 - 1 3 1 1 - 3 0 4 8 - S 1 . 0 . 5 m g / l . 2 h r . 1:25clay
121 s001201I121 E00-1311 :LOX E00-1311-3048ms-S1,0.5mglL.2br, l:25clay, 12/07/00
122 ~001207-122 E00-1311 .LOX E 0 0 - 1 3 1 1 - 3 0 4 9 - S 1 , 0 . 5 n g / L . 4 h r . l:lclay, 12/07/00
123 ~001207-123 E00-1311 :!SO.( ppb PFOS 00002-86-10, Aliq. 11-27-00 MLA
124 ~001207-124 EOO-1311 MeOH Blank. TN-A-4115. Aliq. 11/16/00
125 ~001207-125 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
126 so01207 126 E00-1311 :.Ox E 0 0 - 1 3 1 1 - 3 0 5 0 - S l , 0 . 5 m g / l . d h r . l:lclby, 12/01/00
127 ~ 0 0 1 2 0 1 ~ 1 2 7E00-1311 :.Ox E 0 0 - 1 3 1 1 - 3 0 5 1 - S 1 , 0 , 5 m g / L . d h r , 1:lclay. 12/01/00
E00-1311 ].Ox E 0 0 - 1 3 1 1 - 3 0 5 1 m s - S 1 , 0 . 5 ~ l L . P h r . 1:lclay. 12/07/00
E00-1311 :.Ox E 0 0 - 1 3 1 1 - 3 0 5 2 - S 1 , 0 . 5 m g / L , 4 h r , 1:Sclay. 12/07/00
E00-1311 ].Ox E 0 0 - 1 3 1 1 - 3 0 5 3 - s 1 , 0 . 5 W / L . d h r . 1:5clay, 12/07/00
E00-1311 2150.4 ppb PFOS 00002-86-10, Aliq. 11-27-00 MLA
EOO-1311 MeOH Blank, TN-A-4115. Aliq. 11/16/00
E00-1311 MeOH Blank, TN-A-4115. Aliq. 11/16/00
E00-1311 ].Ox E 0 0 - 1 3 1 1 - 3 0 5 4 - S 1 , 0 . 5 m g l L . d h r . 1:Sclay. 12/07/00
E00-1311 l o x E 0 0 - 1 3 1 1 - 3 0 5 4 m 4 - S 1 , 0 . 5 m g / L , 4 h r . l:5clay. 12/07/00
E00-1311 1 . 0 ~E 0 0 - 1 3 1 1 - 3 0 5 5 - S 1 , 0 . 5 m g l L . l h r , 1:25clay, 12/07/00
E00-1311 lox E 0 0 - 1 3 1 1 - 3 0 5 6 - S 1 , 0 . 5 m g l t . d h r . 1:25clay. 12/07/00
EOO-1311 lox E 0 0 - 1 3 1 1 - 3 0 5 7 - S 1 , 0 . 5 m g / L . ( h r . 1:ZSclay. 12/07/00
E00-1311 250.4 ppb PFOS 00002-86-10. Aliq. 11-27-00 MLA
140 ~ 0 0 1 2 0 7 ~ 1 4 0E00-1311 MeOH Blank, TN-A-4715, Aliq. 11116/00
141 ~001207-141 E00-1311 EleOH Blank. TN-A-4715. Aliq. 11/16/00
142 ~001207-142 E00-1311 lox E 0 0 - 1 3 1 1 - 3 0 5 7 m a - S 1 , 0 . 5 m g / L . 4 h r . 1:25clay, 12/07/00
143 ~001207-143 E00-1311 lox E 0 0 - 1 3 1 1 - 3 0 6 7 - S 1 , 0 . 5 m e l L . 1 6 h r . 1:lclay. 12/07/00
144 ~001207-144 E00-1311 lox E 0 0 - 1 3 1 1 - 3 0 6 8 - S 1 , 0 . 5 m g / L , 1 6 h r . 1:lclay. 12/07/00
145 ~001201-145 E00-1311 l o x E 0 0 - 1 3 1 1 - 3 0 6 9 - S 1 , 0 . 5 m g / l . l 6 h r , 1:lclay. 12/07/00 146 s001207L146 E00-1311 lox E00-1311-3069ms~S1,0.5mglL.16hr. 1:Icle~. 12/07/00 147 5001207-1&7 E00-1311 2 5 0 . 4 ppb PFOS 00002-86-10, Aliq. 11-27-00 MLA
148 ~001207-148 E00-1311 NeOH Blank, TN-A-4715, Aliq. 11/16/00
149 ~001207-149 E00-1311 lleOH Blank, TN-A-4115. Aliq. 11/16/00 150 ~001207-150 E00-1311 lox E00-1311-3070-S1,0.5mg/L.16hr, 1:Sclay. 12/07/00
151 ~001207-151 E00-1311 lox E 0 0 - 1 3 1 1 - 3 0 7 1 - S 1 , 0 , 5 m / L , 1 6 h r , 1:5clay, 12/07/00
152 ~001207-152 E00-1311 ]Ox E 0 0 - 1 3 1 1 - 3 0 7 2 - S 1 , 0 . 5 m g l l . l 6 h r , 1:Sclay. 12/07/00
153 ~001207-153 EOO-1311 l o x E00-1311-3072ms-S1,0.5~/L,l6h~,l:5clay. 12/07/00
154 ~001207-154 800-1311 l o x E 0 0 - 1 3 1 1 - 3 0 7 3 - S 1 , 0 . 5 m g l l . l 6 h r . 1:25clay. 12/07/00
155 ~001207-155 E00-1311 2 5 0 . 4 ppb PFOS 00002-86-10, Aliq. 11-21-00 MLA
156 s001207L156 E00-1311 BeOH Blank. TN-A-4715. Aliq. 11/16/00
EOO-1311 WeOH Blank, lT-A-4715. Aliq. 11116/00
E00-1311 lox E 0 0 - 1 3 1 1 - 3 0 7 4 - S 1 , 0 . 5 m g l L . 1 6 h r . 1:25clay. 12/01/00
E00-1311 lox E00-1311-3015-S1,0.5m91L.16hr. l:25clay. 12/01/00
E00-1311 lox E00-1311-3075ms-S1,0.5mg/L.16hr,1:25clay, 12/01/00
EOO-1311 250.4 ppb PFOS 00002-86-10, Aliq. 11-27-00 MLA
E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
163 s001207I163 E00-1311 MeOH Blank. TN-A-4715. Alia. 11/16/00
~ 0 0 1 2 0 1 ~ 1 6 4E00-1311 MeOH Blank. TN-A-4115. Alii. 11/16/00
65 E00-1311 0 ppb PFOS 00002-86
169 s001207I169 170 171 112 113 174 175 176 177 178
E00-1311 E00-1311 E00-1311
- E00-1311
EO0 1311 E00-1311
- E00-1311
EO0 1311 E00-1311 E00-1311
. ~
~~
-
~~~
~~ - -
25.0 bbb PFOS 00002-86-05. Alia. 11-21-00 MLA
4 0 . 0 &b PFOS 00002-86-06. Alii. 11-27-00 MLA
50.1 ppb PFOS 00002-86-07 Aliq. 11-27-00 MLA
75.1 ppb PFOS 00002-86-08. Aliq. 11-27-00 MLA
100.2 ppb PFOS 00002-86-09. Aliq. 11-27-00 MLA
250.4 ppb PFOS 00002-86-10, Aliq. 11-21-00 MLA
500.9 ppb PFOS 00002-86-11 Allq. 11-27-00 MLA
1301.7 ppb PFOS 00002-86-13. aliq. 11-27-00 MLA
MeOH Blank, TN-1-4715. Aliq. 11/16/00
l a O H Blank. TN-A-4715, Aliq. 11/16/00
Type Standard Standard Standard Standard Standard Standard Standard
Standard Standard S tandllrd Standard
Analyte Blank Blank Ana1yte Ana lyte Analyte
QC Ana1yte Analyte Analyte Analyte Ana1yte Analyte Anal& pc Analyte Analyte Analyte Analvte Anal& Analyte Analyte
QC Analyee Analyte Analyte Analyte Analyte Analyte Analyte
QC Analyte Analyte Analyte Analyte Analyte Analyte Analyte
Qc Analyte Analyte Analyte
Analyte Analyte Ana1yte
*n=.lYte
QC Analyte
Analyte Analyte Analyte Analyte Analyte
Analyte QC Analyte Analyte Analyte Analyte Ana1yte QC Analyte Analyte Anal& Analyte Standard Standard Standard Standard Standard
Standard Standard Standard standard Standard Standard Analyte
Analyte
Std COnc 2.50 5.00
10.00 25.00 40.00 50.10 75.10 100.20 250.40 500.90 1001.70
250.40
250.40
250.40 2.50 5.00 10.00
25.00 40.00
1001.70
RT 7.091 7.093 7.103 7.093 7.092 7.093 7.093 7.078 7.080 1.094 1.091 7.094 7.102 1.093 7.092 7.018
~~
7.091 7.088
7.078
1.104 7.092 7.091 7.094 7.104 1.104 7.103 1.103 7.103 7.094 7.106 7.105 7.105 7.093 7.103
1.102 7.092 1.092 7.094 7.092 1.104 7.102 7.093 7.096 7.102 7.105 7.106 7.102 7.096
7.095 7.105 7.105
Area 419 621
1098 2371 3561 4481 5972
1587 14431 21888 33270
188 44
44
8077 6920 5280 14240
55 42 14422
1672 8831 8354 15956 14525
59 30 15297 15841 15684 20930 7184 14302 63 44 5740 6651 20690 7617 7312
15005 186 63
8406
Dub %E0v Flags Mod Co
0.00 -100 bbX
0.00 -100 bbX
0.00 -100 bbX
12.50 -50 bb
34.53 -14 bb
49.25 -2 bb
82.10 9 bb
112.16 12 bb
264.22 6 bb
181.43 -3 bb
bbI
0.00
bb
0.00
bb
0.00
bb
144.29
bb
98.63
bb
68.87
bb
282.98 13 bb
0.00
bb
0.00
bb
250.89
bb
0.00
bb
155.70
bb
140.92
bb
351.48
bb
278.15 11 bb
0.00
bb
0.00
bb
311.10
bb
318.56
bb
326.30
515.02
bb
113.88
bb
266.08 6 bb
0.00
bb
0.00
bb
88.39
bb
92.13
bb
431.51
bb
126.40
bb
113.16
bb
273.98 9 bb
0.00
bb
0.00
bb
136.92
bb
113 91
23164 7812 6696 10698
212dO
15733 77 36
8898 9049 9463 11151 17176 16211
71 39 16614 11931 23217 16363 87 61 141 98 410 646 1176 2556
4700 6619 8118 15885 24335 36145 225
130
0.00
bb
0.00
bb
525.54
bb
119.29
bb
99.92
bb
166.04
bb
d38.97
bb
276.31 10 bb
0.00
bb
0.00
bb
140.62
bb
136.17
bb
152.02
bb
313.61
bb
330.98
bb
273.69 9 bb
0.00
bb
0.00
bb
321.53
bb
346.78
bb
518.38
bb
279.58 12 bb
0.00
bb
0.00
bb
0.00
bb
0.00
bb
0.00 -100 bbX
0.00 -100 bbX
0.00 -100 bbX
12.38 -50 bb
47.40 85.13 114.14 265.03 492.46
0.00 0.00
-5 bb 13 bb 14 bb
6 bb -2 bb
bbI bb
bb
SOUP 020199: wantirated an4 Printed by CMC on 1 2 ~ 1 1 1 0 0
3M Environmental Laboratory
a % C 1.3 / ( I /vc7
Page 530 of 703
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0 NmlO
study no samplelist Text
179 ~001207-179 E00-1311 MeOH Blank, TN-A--4715, Aliq. 11/16/00
TYVE Malyte
Std COnc
RT
7.105
Area 211
ppb ZIMV P I W S Mod Co
0.00
bb
3M Environmental Laboratory
C1A1/7C i2AI /od Page 531 of 703
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p u m t i r y compound svnnary R a m r t 600-1311 PI08 Adsorblwnrorb
9-1s List: C:\Masslynw\s0up020199.pr0\~~l~DB\0001207
Last modified: l@n w c 11 09:05:24 2000
Method:
C:\I*assl~\soup020199.pro\MathD8\sO0l207
Last modified:, m n Dec 11 09:10:27 1000
Job Code :
C-und
2: T W F O S l427>80), fvnc 2
study no S-lmliat Text
E00-1311 XeOH Blank, TN-A-4715, Aliq. 11/16/00
E00-1311 1001.7 ppb PFOS 00002-86-13, aliq. 11-27-00 MLA
EOO-1311 1001.7 ppb PFOS 00002-86-13, aliq. 11-27-00 MLA
E00-1311 YeOH Blank. TN-A-4715. Alia. 11/16/00
5 s001207I005 E00-1311 .*=OH Blank:.TN-A-4715. Alii. 11/16/00
6 ~001207-006 E00-1311 I ppb PFOS 00002-86-01, Aliq. 11-27-00 MLA
7 ~001207-007 E00-1311 1.5 ppb PFOS 00002-86-02. Aliq. 11-27-00 MLA
8 ~001207-008 E00-1311 '5.00ppb PFOS 00002-86-03. Aliq. 11-27-00 MLA
9 ~001207-009 E00-1311 10.0 ppb PFOS 00002-86-04, Aliq. 11-27-00 MLA
10 ~ 0 0 1 2 0 7 ~ 0 1 0E00-1311 .25.0 ppb PFOS 00002-86-05, Aliq. 11-27-00 MLA
11 ~001207-011 EOO-1311 ,10.0 ppb PFOS 00002-86-06. Aliq. 11-27-00 MLA
12 ~001207-012 E00-1311 '50.1 ppb PFOS 00002-86-07 Aliq. 11-27-00 MLA
13 4001207-013 E00-1311 ' 1 5 . 1 ppb PFOS 00002-86-08, Aliq. 11-27-00 MLA
14 sOO1207-014 E00-1311 100.2 ppb PFOS 00002-86-09, Aliq. 11-27-00 MLA
15 ~001207-015 E00-1311 :!50.4 ppb PFOS 00002-86-10. Aliq. 11-27-00 MLA
16 ~001207-016 E00-1311 !i00.9 ppb PFOS 00002-86-11 Aliq. 11-27-00 MLA
17 ~001207-017 E00-1311 :.001.7 ppb PFOS 00002-86-13, aliq. 11-27-00 MLA
18 SOO1207-018 E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
19 ~001207-019 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
20 SOO1207-020 E00-1311 lIeOH Blank, TN-A-4715. Aliq. 11/16/00
21 ~001207-021 E00-1311 0 ppb PFOS 00002-86-01, Aliq. 11-27-00 MLA
22 ~001207-022 E00-1311 :!.5 ppb PFOS 00002-86-02. Aliq. 11-27-00 MLA
23 ~001207-023 EOO-1311 !,.OO ppb PFOS 00002-86-03. Aliq. 11-27-00 MLA
24 ~001207-024 E00-1311 10.0 ppb PFOS 00002-86-04, Aliq. 11-27-00 MLA
25 ~001207-025 ~ 0 0 - 1 3 1 1>5.0 ppb PFOS 00002-86-05, Aliq. 11-27-00 MLA
26 ~ 0 0 1 2 0 7 ~ 0 2 6EOO-1311 40.0 ppb PFOS 00002-86-06, Aliq. 11-27-00 MLA
600-1311 10.1 ppb PFOS 00002-86-07 Aliq. 11-27-00 MLA
E00-1311 15.1 ppb PFOS 00002-86-08, Aliq. 11-27-00 MLA
E00-1311 100.2 ppb PFOS 00002-86-09, Aliq. 11-27-00 MLA
E00-1311 250.4 ppb PFOS 00002-86-10. Aliq. 11-27-00 MLA
E00-1311 500.9 ppb PFOS 00002-86-11 Aliq. 11-27-00 MLA
E00-1311 1001.7 ppb PFOS 00002-86-13. aliq. 11-27-00 MLA
3 3 ~ 0 0 1 2 0 7 ~ 0 3 3E00-1311 KeOM Blank, TN-A-4715. Aliq. 11/16/00
34 ~001207-034 E00-1311 HeOH Blank, TN-A-4715, Aliq. 11/16/00
35 ~001207-035 EOO-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00
36 6001207-036 E00-1311 lox EOO-l3ll-3001-S1. 0.0mglL. Ohr. NO soil, 12/07/00
37 ~001207-037 E00-1311 lox E00-13ll-3002-S1, O.Omg/L, Ohr, NO soil, 12/07/00
3 8 SOO1207-038 EO0-1311 lox E00-1311-3003-S1, O.Omg/L. Ohr, No sail. 12/07/00
39 ~001207-039 E00-1311 lox E00-1311-3003ms-S1 O.Omg/L, Ohr. NO soil, 12/07/00
40 ~ 0 0 1 2 0 7 ~ 0 4 0E00-1311 lox E00-1311-3004-SI 0.5mglL. Ohr. No soil, 12/07/00
41 ~001207-041 E00-1311 250.4 xmb PFOS 00002-86-10. Alia. 11-27-00 MLA
42 5001207-042 E00-1311 MeOH Biink, TN-A-4715. Alia. llj16/00
43 ~001207-043 E00-1311 MeOH Blank, TN-A-4715. Alii. 11/16/00
44 SOO1207-044 E00-1311 lox E00-1311-3005-S1, 0.5mglL. Ohr. NO soil, 12/07/00
4 5 SOO1207-045 EOO-1311 lox EOO-l311-3006-S1, 0.5mgIL. Ohr. NO soil, 12/07/00
46 ~001207-046 E00-1311 lox E00-1311-3006ms-S1.0.5molL. Ohr. NO soil. 12/07/00 ~~
47 r001207-047 E00-1311 lox E00-1311-3013-SI, O.OmgjL,'Ohr, 1:lclay. 12/07/00
48 ~001207-048 E00-1311 lox EO0-1311-3014-S1, O.Omg/L, Ohr. 1:lelay. 12/07/00
49 sOO1207-049 E00-1311 250.4 ppb PFOS 00002-86-10. Aliq. 11-27-00 MLA
50 sOO1207-050 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
51 sOO1207-051 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
52 ~001207-052 E00-1311 10x E00-1311-3015-S1, O.Omg/L, Ohr. 1:lclay. 12/07/00
53 9001207-053 E00-1311 13x E00-1311-3015ms-S1,0.Omg/L. Ohr, 1:lclay. 12/07/00
54 ~001207-054 800-1311 llx E00-1311-3016-SI. O.Omg/L. Ohr, 1:Sclay. 12/07/00
55 ~001207-055 E00-1311 13x E00-1311-3017-S1, 0.OmglL. Ohr. 1:Sclay. 12/07/00
56 ~001207-056 E00-1311 1 . 1 ~E00-1311-3018-S1, 0.0mglL. Ohr. 1:5clav, 12/07/00
57 9001207_057
58 s001207~058
59 S001207-059
60 ~001207~060
61 ~001207-061 62 ~001207-062
~. ~~
~
~
63
~001207-063
E00-1311
IIlx
E
O
0
-
1
3
1
1
-
3
0
2
l
s
1.
~
b
.
O
- m
i
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~
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. '
ll25il.G. ~
_
.
12/07/00
E00-1311 lox E00-1311-3021ms-Sl,O.Omq/L,Ohr. 1:25clay, 12/07/00
800-1311 2!50.4 ppb PFOS 00002-86-10, Aliq. 11-27-00 MLA
E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
~~. EO0-1311 lllx E00-1311-3031-S1,0.5mg/L, Ohr, 1:lclay. 12/07/00
69 ~001207-069 E00-1311 lox E00-1311-3032-S1,0.5mg/L, Ohr. 1:lclay. 12/07/00
70 5001207~070 E00-1311 lllx E00-1311-3033-Sll 0.5mg/L. Ohr, 1:lclay. 12/07/00
E00-1311 lllx E00-1311-3033ms-S1,0.5mg/L, Ohr. 1:lclay. 12/07/00
E00-1311 LClx E00-1311-3034-S1,0.5mgll.0hr, 1:Sclay. 12/07/00
E00-1311 250.4 ppb PFOS 00002-86-10. Aliq. 11-27-00 MLA
EOO-1311 m!OH Blank. TN-A-4715, Aliq. 11/16/00
75 ~001207- E00-1311 &!OH Blank, TN-A-4715, Aliq. 11/16/00
76 S001207_076 E00-1311 l(lx E 0 0 - 1 3 1 1 - 3 0 3 5 - S 1 , 0 . 5 m g l L . O h r . 1:Sclay. 12/07/00
77 so0120
BOO-1311 l ( l x E00-1311-3036-Sl. 0.5mgIL. Ohr. 1:Sclay. 12/07/00
EOO-1311 l l l x E00-1311-3036ms-S1,0.Smg/L,Ohr, 1:Sclay. 12/07/00
E00-1311 l[lx E00-1311-3037-S1,0.5mg/L,Ohr, 1:25clay. 12/07/00
~~. E00-1311 1.Cix E 0 0 - 1 3 1 1 - 3 0 3 8 - S 1 , 0 . 5 ~ / L , O h ~1,:25clay, 12/07/00
81 so0120
E00-1311 >50.4 ppb PFOS 00002-86-10. Aliq. 11-27-00 MLA
82 ~ 0 0 1 2 0 7 ~ 0 8 2EO 0-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
8 3 t001207.083 E00-1311 MeOH Blank. TN-A-4715. Aliq. 11/16/00
E00-1311 I C x E00-1311-3039-S1,0.5mq/L,Ohr, 1:25clay, 12/07/00
E00-1311 1Cx E00-1311-3039-S1,0.5mg/L.Ohr. 1:25clay, 12/07/00
E00-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00
. ...
E00-1311 McOH Blank. TN-A-4715, Aliq. 11/16/00
88 EOC
E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
89 so1
E00-1311 0 ppb PFOS 00002-86-01, Aliq. 11-27-00 M L A
TYD. Analyte Analyte Analyte Ana1yte Ana1yte Analyte Analyte
Analyte Ana1yte Analyte Analyte Analyte Analyte Ana1yte Analyte Analyte Analyte Analyte Blank Blank Analyte Standard Standard
Standard Standard Standard Standard Standard
Standard Standard Standard Standard Analyte Blank Blank Analyte Analyte Analyte Analyte Analyte
QC Analyte Analyte Analyte Analyte Analyte Analyte AnLna1yte Q Analyte Analyte Analyte Analyte Analyte
Analyte Analyte QC lVla1yte Analyte
Analyte Ana1yte Analyte Ana1yte Analyte Qc Analyte Analyte Analyte Analyte Analyte AnalYte Ana&
QC Analyte Analyte Analvte Analyte Analyte Analyte Analyte
QC Analyte Analyte Analyte Analyte Analyte Blank Blank Analyte
Std Conc
RT
6.889 6.899
6.900 6.900 6.902 6.914 6.903 6.904 6.900 6.898 6.900 6.903 6.900 6.901
248.60 248.60
6.900 6.901
6.901 6.901 6.900 6.902 6.901 6.901 6.903 6.902 6.912 6.899
248.60
6.909 6.912 6.913 6.915 6.912 6.913
248.60
6.914 6.917 6.907
6.913 6.914 6.907
248.60
6.914 6.915 6.924
6.913 6.914 6.912
248.60
6.925 6.913 6.912 6.914 6.926 6.913
248.60
6.914 6.910 6..~915 6.924 6.924 6.913
248.60
6.924 6.913 6.914 6.913 6.925 6.909
6.913 6.911
6.910
Area
2889 2593
DDb
339.35 304.55
37 bb 23 bb
3189 3064
3125 2657 2457 2712 2629 2467
2426 2401 2405 2355
374.53 359.92 367.01 312.11 288.56 318.54 308.79 289.75 284.94 282.02 282.49 276.59
51 bb
4 5 bb
48 ~
b~b -
26 bb
16 bb
28 bb
2 4 bb
17 bb
15 bb
13 bb
14 bb
11 bb
2386 2381 2451 2505 2411 2439 2467 2342 2328 2440 2397 2508
280.31 279.61 287.92 294.22 283.20 286.50 289.78 275.04 273.39 286.55 281.50 294.56
13 bb
12 bb 16 bb 18 bb 14 bb 15 bb 17 bb 11 bb
10 bb 15 bb 13 bb 18 bb
2239 2102 2149 1819 2059 1777
263.04 246.94 252.47 213.65 241.83 208.69
5 bb -1 bb
1 bb -15 bb
- 3 bb -16 bb
1163 1560 1495
1851 1458 1636
136.65 183.26 175.58 217.42 171.19 192.17
-45 bb -27 bb - 3 0 bb
-13 bb -32 bb -23 bb
1766 1570 1644
1719 1666 1762
207.41 184.45 193.06 201.96 195.68 2 0 6 93
-17 bb -26 bb -23 bb -19 bb -22 bb
-17 bb
2804 1774 1570 1798 1733 1819
329.34 208.40
184.44 211.13 203.52 213.68
32 bb -17 bb
-26 bb -16 bb -19 bb -14 bb
1756 1776 2006 1714 1832 1955
206.31 208.60 235.65 201.34 215.21 229.64
-17 bb -17 bb
-6 bb -19 bb -14 bb
-8 bb
1763 1742
1795 1825 1950 1918
207.11 204.64 210.87 214.36 228.99 225.26
-17 bb -18 bb -16 bb -14 bb
-8 bb -9 bb
1808 1816
212.34 -15 bb 213.36 -15 bb
1949 228.98 -8 bb
SOUP 020199: quantitated and printed by CMC On 12111100
3M Environmenfal Laboratory
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Quantify c-und
B v m ~ a r yR e p r t
E00-1311 Pros Adsorb/Daso:cb
8-1a List: C:\uai.slyn;~\soup020199.pro\Sam~leDB\r001207
Last Irodified: mn Dec 11 09:05:24 2000
Method:
C:\ua8~1yr~~\~~~p020199.pr0\~thDB\~001207
Last mdified: mn Dec 11 09:10:27 2000
Job Code:
Prinped:
Elon De0 11 09:23:38 2000
Ccoqpovnd 1 : TXP1W S l427>801, tunc 2
x N-
study M S w l a l i s t Text
90 ~001207-090 E00-1311 2.5 ppb PfOS 00002-86-02. Aliq. 11-27-00 MLA
91 ~ 0 0 1 2 0 7 ~ 0 9 1E00-1311 5.00 ppb PFOS 00002-86-03. Aliq. 11-27-00 MLA
EOO-1311 10.0 ppb PfOS 00002-86-04, Aliq. 11-27-00 MLA
E00-1311 25.0 ppb PfOS 00002-86-05, Aliq. 11-27-00 MLA
E00-1311 40.0 ppb PFOS 00002-86-06. Aliq. 11-27-00 MLA
EOO-1311 50.1 ppb PFOS 00002-86-07 Aliq. 11-27-00 MLA
E00-1311 75.1 ppb PFOS 00002-86-08, Aliq. 11-27-00 MLA
~
~~
E00-1311 100.2 ppb PfOS 00002-86-09, Aliq. 11-27-00 MLA
98 ~001207-098 E00-1311 250.4 ppb PfOS 00002-86-10, Aliq. 11-27-00 MLA
99 90012071099 E00-1311 500.9 ppb PFOS 00002-86-11 Aliq. 11-27-00 MLA
100 ~001207-100 E00-1311 1Op1.7 ppb PFOS 00002-86-13. aliq. 11-27-00 MLA
101 ~001207-101 EOO-1311 MeCH Blank. TN-A-4715. Aliq. 11/16/00
102 s00:207-102 E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
103 so01207 103 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00
104 ~ 0 0 1 2 0 7 ~ 1 0 4E00-1311 lox E00-1311-3040-S1,0.5mg/L.2hr. 1:lclay. 12/07/00
105 ~001207-105 E00-1311 lox E00-1311-3041-S1.0.5rm/L.2hr, 1:lclay. 12/07/00
106 ~ 0 0 1 2 0 7 ~ 1 0 6E00-1311 lox E00-l311-3042-Sl,O.5mg/L,2hr. 1:lclay. 12/07/00
107 ~001207-107 E00-1311 250.4 ppb PfOS 00002-86-10, Aliq. 11-27-00 MU. 108 ~001207-108 E00-1311 MeOH Blank, TN-A-4715. Aliq. 11/16/00 109 ~001207-109 E00-1311 MeOH Blank, TN-A-4715, Aliq. 11/16/00 110 ~ 0 0 1 2 0 7 ~ 1 1 0E00-1311 lox E00-1311-3042ms-S1,0.5mg/L,2hr, 1:lclay. 12/07/00
111 ~ 0 0 1 2 0 7 ~ 1 1 1E00-1311 lox E00-1311-3043-S1,0.5mg/L.Zhr, l:5clay. 12/07/00
112 ~001207-112 E00-1311 lox E00-1311-3044-S1,0.5mg/L,2hr. 1:5cIay, 12/07/00
113 ~001207-113 EOO-1311 lox E00-1311-3045-S1,0.5mg/L,2hr. 1:Sclay. 12/07/00
114 ~001207-114 E00-1311 lox E00-1311-3045ms-S1,0.5mg/L,2hr. 1:Sclay. 12/07/00
115 ~001207-115 116 ~001207-116 117 ~001207-117 118 ~001207-118
E00-1311 2 5 0 . 4 ppb PfOS 00002-86-10, Aliq. 11-27-00 MLA E00-1311 YeOH Blank, TN-A-4715, Aliq. 11/16/00 E00-1311 ,YeOH Blank, TN-A-4715, Aliq. 11/16/00 E00-1311 lox E00-1311-3046-Sl 0.5mg/L.2hr, 1:25clay. 12/07/00
119 ~001207-119 E00-1311 lox E00-1311-3047-S1 0.5mglL.2hr. 1:25clay. 12/07/00
120 ~001207-120 E00-1311 LOX EOO-1311-3048-51 0.5mglL.2hr. 1:25clay, 12/07/00
121 ~001207-121 E00-1311 LOX E00-l311-3048ms-S1,0.5~/L,2hr.1:25clay. 12/07/00
122 ~001207-122 EOO-1311 LOX E00-1311-3049-S1,0.5mg/L.4hr, 1:lclay. 12/07/00
123 ~001207-123 E00-1311 :250.4 ppb PfOS 00002-86-10, Aliq. 11-27-00 MLA 124 ~001207-124 E00-1311 I4eOH Blank, TN-A-4715, Aliq. 11/16/00 125 ~001207-125 EOO-1311 l4eoH Blank. TN-A-4715. Aliq. 11/16/00
126 ~001207-126 E00-1311 LOX E00-1311-3050-S1,0.5rng/L,4h~, 1:lclay. 12/07/00 127 ~001207-127 E00-1311 .LOX E00-1311-3051-S1,0,5rng/L,4hr. 1:lclay. 12/07/00
128 ~001207-128 E00-1311 :LOX E00-1311-3051ms-S1,0.5mg/L.4hr, 1:lclay. 12/07/00 129 9001207-129 EOO-1311 ..Ox E00-1311-3052-S1,0.5mg/L,4hr, 1:5clay, 12/07/00
130 ~001207-130 100-1311 :.Ox E00-1311-3053-S1,0.5mg/L.4hr. 1:Sclay. 12/07/00 131 ~ 0 0 1 1 0 7 ~ 1 3 1E00-1311 2!50.4 ppb PFOS 00002-86-10, Aliq. 11-27-00 MLA 132 so01207 132 E00-1311 BIeOH Blank. TN-A-4715, Aliq. 11/16/00
E00-1311 UeOH Blank, TN-A-4715, Aliq. 11/16/00 E00-1311 ].Ox E 0 0 - 1 3 1 1 - 3 0 5 4 - S 1 , 0 , 5 m g / L . P h r . 1:Sclay. 12/07/00 E00-1311 lox E00-1311-3054ms-S1,0.5ng/L.4hr, 1:5clay. 12/07/00
E00-1311 1Ox E00-1311-3055-S1,0.5~/L,4hr, 1:25clay. 12/07/00
E00-1311 l o x E00-1311-3056-S1,0.5mg/L,4hr. 1:25clay, 12/07/00
E00-1311 lox E00-13ll-3057-S1,0.5mg/L,4hr, 1:25clay, 12/07/00 139 ~ 0 0 1 2 0 7 ~ 1 3 9E00-1311 2 5 0 . 4 ppb PFOS 00002-86-10. Aliq. 11-27-00 MLA
140 s001207I140 141 9001207-141 142 ~001207-142 143 9001207-143
E00-1311 MeOH Bihnk, TN-A-4715, Aliq. lli16/00 E00-1311 l!eOH Blank, TI-A-4715, Aliq. 11/16/00 E00-1311 lox E00-1311-3057~-S1,0.5mglL.4hr. 1:25clay. 12/07/00 EOO-1311 lox E00-1311-3067-S1,0.5mg/L,16hr, 1:lclay. 12/07/00
144 ~001207-144 E00-1311 lox E00-1311-3068-S1,0.5mg/L,16hr. 1:lclay. 12/07/00
145 ~001207-145 E00-1311 lox E 0 0 - 1 3 1 1 - 3 0 6 9 - S 1 , 0 . 5 m g l l . l 6 h r . 1:lclay. 12/07/00 146 ~001207-146 E00-1311 lox E00-1311-3069rns-S1,0.5mg/L.16hr, 1:lclay. 12/07/00 1 4 7 ~001207-147 E O O - l 3 l l 2 5 0 . 4 ppb Pros 0 0 0 0 2 - 8 6 - 1 0 , Aliq. 11-27-00 M L I 148 ~001207-148 E00-1311 MeOH Blank. TN-A-4715, Aliq. 11/16/00
149 ~ 0 0 1 2 0 7 ~ 1 4 9E00-1311 MeOH Blank. TN-A-4715. Alia. 11/16/00 150 ~0012071150 E00-1311 lox EOO-l311-307O-S1.0.5rng;L. 16hr. l:5clay. 12/07/00
151 ~ 0 0 1 2 0 7 ~ 1 5 1E00-1311 lox E00-1311-3071-S1,0.5mg/L,16hr, 1:5clay, 12/07/00
152 ~001207-152 E00-1311 lox E00-1311-3072-S1,0,5rng/L,16hr. 1:Sclay. 12/07/00 153 ~001207-153 E00-1311 lox E00-1311-3072ms-S1,0.5mg/L.16hr. l:5clay. 12/07/00
154 so01207 154 E00-1311 lox E00-1311-3073-S1.0.5~/L.l6hr. 1:25clav. 12/07/00
155 s001207I155 156 s001207L156
157 sOOl207I157 158 ~001207-158
E00-1311 250.4 ppb PFOS 00002-86-1;. Aliq.'ll-27-00'MLA E00-1311 MeOH Blank. TN-A-4715, Alia. 11/16/00
E00-1311 MeOH Blank, TN-A-4715, Alii. 11/16/00
E00-1311 lox E00-1311-3074-S1.0.5mg16.16hr, 1:25clay. 12/07/00
159 ~001207-159 E00-1311 lox E00-1311-3075-Sl.0.5~/L,16hr. 1:25clay, 12/07/00
160 ~001207-160 E00-1311 lox E00-1311-3075ms-S1,0.5mg/L,16hr,l:25clay, 12/07/00 161 so01207 161 E00-1311 250.4 Dub PfOS 00002-86-10. Alia. 11-27-00 MLA 162 ~ 0 0 1 2 0 7 ~ 1 6 2Eoo-1311 M ~ O HBiHnk. TN-A-4715. Alib. llil6/00 163 s001207I163 EOO-1311 MeOH Blank. TN-A-4715, Alii. 11/16/00 164 ~001207-164 E00-1311 MeOH Blank. TN-A-4715. Alii. 11/16/00 165 ~ 0 0 1 2 0 7 ~ 1 6 5E00-1311 0 ppb PfOS 00002-86-01. Aliq. 11-27-00 MLA 166 ~ 0 0 1 2 0 7 ~ 1 6 6~ 0 0 - 1 3 1 12.5 ppb PfOS 00002-86-02, Aliq. 11-27-00 MLA 167 so01207 167 E00-1311 5 . 0 0 oob PFOS 00002-86-03. A110. 11-27-00 MLA 168 s001207I168 E00-;311 13.0 bbb PFOS 00002-86-04: Alii. li-27-00 MLA
169 ~0012071169 170 ~001207-170 171 ~001207-171 172 ~001207-172 173 ~001207-173 174 ~001207-174 175 ~001207-175 176 ~001207-176 177 ~001207-177 178 ~001207-178
E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311 E00-1311
25.0 PPb PfOS 00002-86-05. Alii. 11-27-00 MLA 481.0 ppb PFOS 00002-86-06. Aliq. 11-27-00 MLA 511.1 ppb PfOS 00002-86-07 Aliq. 11-27-00 MLA 7'5.1 ppb PFOS 00002-86-08, Aliq. 11-27-00 MLA 1110.2 ppb PfOS 00002-86-09. Aliq. 11-27-00 MLA 2'50.4 ppb PFOS 00002-86-10. Aliq. 11-27-00 MLA 500.9 ppb PFOS 00002-86-11 Aliq. 11-27-00 MLA LO01.7 ppb PfOS 00002-86-13. aliq. 11-27-00 MLA MBOH Blank. TN-A-4715, Aliq. 11/16/00 MeOH Blank, TN-A-4715, Aliq. 11/16/00
Tnm Standard Standard
Standard Standard Standard Standard
Standard Standard Standard Standard Standard Analyte Blank Blank Analyte Analyte Ana1;te
Qc Analyte Analyte Analyte Analvte Analit. Analyte
Analyte
Qc Ana1yte
Analyte Ana1yte Analyte Analyte Analyte Ana1yte
QC Analyte Analyte Analvte Anal& AnLna1yte Analyte Analyte
QC Ana1vte Analyte Analyte Analyte Ana1yte Analyte Analyte OC Analyte Analyte Analyte Analyte Analyte Analyte Analyfe
Qc
Analyte
Analvte Anal& Analyte Analyte Analyte Analvte
Qc Analvte Ana1;te Analyte Analyte Analyte OC Analvte Analhe Anal& Analyte Standard Standard Standard Standard Standard Standard Standard standard Standard Standard Standard Analyte Analyte
Std Conc 248.60 248.60 248.60 248.60 248.60 248.60 248.60 248.60 248.60 248.60 248.60
248.60
248.60
248.60
248.60
248.60
248.60
248.60
248.60 248.60 248.60 248.60 248.60 248.60 248.60 248.60 248.60 248.60 248.60
RT 6.899 6.901 6.911 6.901 6.901 6.914 6.901 6.899 6.901 6.902 6.900
6.912 6.898 6.902 6.899
6.901 6.899 6.912 6.897 6.901 6.902
6.900 6.901 6.913 6.899 6.901 6.900
6.901 6.914
6.924 6.923 6.924 6.915 6.928 6.913
6.912 6.912 6.915 6.914 6.912 6.913
6.913 6.923 6.914 6.913 6~ .9.1.1 ~ 6.913
6.912 6.912 6.914 6.913
6.917 6.910 6.925 6.915 6.922 6.917 6.915 6.911 6.915 6.916 6.912 6.915
Aroa 1909 1930
1903 1875 1879 1941 1858 1889 1871 1822 1904
ppb %De" ?lags m d Co
_ _ 224.21 -10 bb
2~~ 26.76. -9. hh 223.57 -10 bb 220.27 -11 bb 220.74 -I1 bb
227.93 -8 bb 218.26 -12 bb 221.85 -11 bb 219.71 -12 bb 214.03 -14 bb 223.61 -10 bb
1675 1902 1861 1751
196.76 223.44 218.60 205.65
-21 bb -11 bb -13 bb -17 bb
1955 2301 1728 1764 1677 1807
229.66 270.21 203.02 207.18 196.93 212.19
-8 bb 8 bb
-19 bb -17 bb -21 bb -15 bb
1735 1792 1742 1683 1778 1843
203.84 210.44 204.56 197.65 208.90 216.49
-18 bb -16 bb -18 bb -21 bb -16 bb -13 bb
1706 1921 1875 1745 1819 1891
27
1814 1825 1846 1872 1929
~~
1943
200.35 225.66 220.25 204.99 213.63 222.11
3.18
213.05 214.36 216.79 219.93 2.2~6.~ 5.7 228.17
-20 bb -10 bb -12 bb -18 bb -15 bb -11 bb
bb
-15 bb -14 bb -13 bb -12 bb
- 9~ bb ~~ -8 bb
1838
1869
1824
1993 1902 1970
215.90
219.50 214.19 234.12 223.44
a31.38
-14 bb
-12 bb
-14 bb -6 bb
-11 hb -7 bh
1882 221.02 -12 bb
1961 230.30 -8 bb
1886 221.54 -11 bb 1723 202.41 -19 bb
1~ 887. .7.21~ .6.6. _ -~ 11 h_h_.
2045 240.24 -3 bb
1865 1903 1859 2030
219.09 223.51 218.32 238.49
-12 bb -11 bb -13 bb
-4 bb
1997 2000 2051 2097 2028 2041 2082 2008 1995 2053 2004 2037
234.52 234.91 240.91 246.28 238.15 239.78 244.53 235.89 234.34 241.18 235.37 239.26
-6 bb -6 bb -3 bb -1 bb -4 bb -4 bb -2 bb -5 bb -6 bb -3 bb -5 bb -4 bb
SOUP 020199: wantitared anU printed by CMC on 12/11/00
3M Environmental Laboratory
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QUu.nti.fY COmWUnd 6-ry
RaEart
E00-1311 ?PO8 AdsOrblDIIsoz'b
0 Name
study no S - l a l i s t T a t
179 so01207279 E00-1311 MeOH Blank. TN-A-4715. A l i q . 11/16/00
TylM
Analyte
S t d conc
DDb LWv Flags Hod Co
SOUP 020199: quantitated and printed by CHC on 12/11/00
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Pruntrfy Coolpound Suwmary I w o r t PFOS Adsorb/Desorb Study LWMS Ins-t:
Tucker (uL052)
S v ~ p l oIlst: C:\MRSSLYNX\Deoatur.PaO\SampleOB\t00l215
Last ao&fxsd: Uon D.a 1 8 L0:45:28 2000
Metbd:
C:\MRSSLYNX\Dscatur.PRO~thDB\001215
last rodxfledd: Mon Do0 1 8 L0:SO:Ol 2000
Job Coda:
Printed:
Mon Do0 1 8 :L0:56:20 2000
Compound 1: PFOS(499)
I N.a-1 t001215-001 2 t001215-002 3 t001215-003 4 to01215 004 5 t0012151005 6 t001215-006 7 t001215~007 8 tO01215-008 9 t001215-009 10 t001215 010 11 t0012151011 12 tOO1215-012 13 t001215-013 14 t001215-014 15 t001215-015 16 t001215-016 17 t001215-017 18 t001215-018 19 t001215-019 20 t001215-020 21 t001215-021 22 t001215-022 23 t001215-023 24 t001215-024 25 t001215-025 26 t001215-026 21 to01215 027
33 t0012151033 34 t001215-034 35 t0O0O1l221155-003355 36 t001215-036 37 t001215-037 38 t001215-038 39 t001215-039 40 t001215-040 41 t001215-I0O41 42 tOO1215-042 43 to01215 043 44 t001215I044 45 t001215-045 46 t001215-046 47 t001215-047 48 t001215-048 49 t001215-049 50 t001215-050 51 t001215-051 52 t001215-052 53 t001215-053 54 t001215-054 55 t001215 055 56 t0012151056 57 t001215 057 58 t0012151058 59 t001215-059 60 t001215-060 61 t001215-061 62 t001215-062 63 to01215 063 64 t0012151064 65 t001215-065 66 to01215 066 61 t001215I067 68 t001215-068 69 t001215-069 70 t001215-070 71 to01215 071 72 t001215I072 73 to01215 073 74 t001215I074 75 t001215-075 76 t001215-076 77 t001215-077 78 to01215 078 79 t0012151079 80 t001215-080 81 tO01215-081 82 t001215-082
S a q l d r r t Text MeOH Blank, TN-A-4740. Aliq. 12/04/00 M C MeOH Blank, TN-A-4740, Aliq. 12/04/00 M C 1001.7 ppb PFOS 00002-86-13
1001.7 ppb PFOS 00002-86-13 MeOH Blenk, TN-A-4740, Aliq. 12/04/00 M C MeOH Blank, TN-A-4730. Aliq. 12/04/00 CMC MeOH Blank, TN-A-4740, Aliq. 12/04/00 M C 0 ppb PI'OS 00002-86-01 2 . 5 ppb PFOS 00002-86-02 5 ppb PI'OS 00002-86-03 10 ppb PFOS 00002-86-04 25 ppb PFOS 00002-86-05 40 ppb PFOS 00002-86-06 50.1 ppb PFOS 00002-86-01 15.1 pph PFOS 00002-86-08 100.2 ppb PFOS 00002-86-09 250.4 ppb PFOS 00003-141 500.9 ppb PFOS 00002-86-12 1001.7 Fipb PFOS 00002-86-13 HeOH Blank, TN-A-4740. Aliq. 12/04/00 M C MeOH Blank, TN-A-4740, Aliq. 12/04/00 M C MeOH Blank, TN-A-4740. Aliq. 12/04/00 CMC 0 ppb PFOS 00002-86-01 2.5 ppb PFOS 00002-06-02 5 ppb PFOS 00002-86-03 10 ppb PFOS 00002-86-04 25 ppb PFOS 00002-86-05 40 ppb PFOS 00002-06-06 50.1 ppt PFOS 00002-86-07 15.1 ppt PFOS 00002-86-08 100.2 ppb PFOS 00002-86-09 250.4 ppb PFOS 00003-141 500.9 ppb PFOS 00002-86-12 1001.7 ppb PFOS 00002-86-13 MeOH Blank, TN-A-4740, Aliq. 12/04/00 CMC MeOH Blank, TN-A-4740. Aliq. 12/04/00 M C lox E00-1311-3007 lox E00-1311-3008 lox E00-1311-3009 lox 600-1311-3009ms lox EOO-1311-3010
~. 250.4 ppb PFOS 00003-141
MeOH Blank. TN-A-4740.. Alio. 12/04/00 M C
MeOH Blank; TN-A-4740, Aliq. 12/04/00 M C lox 600-1311-3011 lox EOO-1311-3012 lox 600-1311-3012m lox 600-1311-3130 lox 600-1311-3131 250.4 ppb PFOS 00003-141 MeOH Blank, TN-A-4740, Aliq. 12/04/00 M C MeOH Blank, TN-A-4740, Aliq. 12/04/00 M C lox 600-1311-3132 lox BOO-1311-3132m
lox E00-1311-3133
10x 600-1311-3134 lox 600-1311-3135 250.4 ppb PFOS 00003-141 MeOH Blank, TN-A-4740. Aliq. 12/04/00 M C MeOH Blank, TN-A-4740. Aliq. 12/04/00 M C lox E00-1311-3135mr lox E00-1311-3136 lox 600-1311-3137 lox E00-1311-3138 lox E00-1311-3138ms 250.1 ppb PFOS 00003-141 MeOH Blank, TN-A-4740, Aliq. 12/04/00 QIC MeOH Blank, TN-A-4140, Aliq. 12/04/00 CMC lox E00-1311-3139 lox EOO-13114140 lox 600-1311-3141 lox 600-1311-3141ms lox E00-1311-3142 250.4 pp3 PFOS 00003-141 MeOH Blank, TN-A-4740, Aliq. 12/04/00 CMC MeOH Blank, TN-A-4140, Aliq. 12/04/00 M C lox 600-1311-3143 lox 600-1311-3144 101 BOO-1311-3144m lox E00-1311-3145 lox 600-1311-3146 250.4 ppb PFOS 00003-141
RT 6.481 6.371 6.488 6.489 6.433 6.408 6.417 6.425 6.445 6.371 6.496 6.484 6.411 6.481 6.445 6.200 6.188 6.184 6.223 6.172 6.228 6.240 6.493 6.360 6.438 6.492 6.485 6.356 6.476 6.485 6.488 6.489 6.489 6.384 6.293 6.288 6.456 6.469 6.429 6.483 6.450 6.469 6.357 6.242 6.204 6.469 6.400 6.481 6.411 6.488 6.443 6.237
6.101
6.292 6.260 6.406 6.485 6.476 6.445 6.245 6.420 6.431 6.361 6.485 6.429 6.484 6.453 6.360 6.315 6.240 6.207 6.256 6.272 6.473 6.423 6.268 6.489 6.478 6.480 6.478 6.488 6.484
Area 53206 30800 4641528 4640503 36137 35552 35344 39095 61396 77059 119454 208147 296693 386893 542145 739832 1625157 2627391 4126845 31200 28732 25271 32948 49820 64675 101190 203395 284054 345882 518826 638622 1490467 2357038 3944487 24270 23252 30587 27518 25569 1007052 26288 1311544 28127 25682 21374 25538 998865 587042 571685 1447645 21552 25476
492412 1536932 2205944 1406285 1523976 1529689
29026 26218 2204358 1996143 1996672 1935361 2548079 1536839 28963 28028 422345 583342 374356 1431728 1543781 1488024 28021 25280 1494614 1597102 2263636 2021915 1986134 1569815
Rsspanre 0.000 0.000
10770.559 10872.952
0.000 0.000 0.000 99.457 159.598 200.633 371.309 786.844 1031.971 1312.849 1854.385 2414.604 5012.082 8168.561 15693.600 0.000 0.000 0.000 107.336 165.290 217.657 349.543 720.329 939.183 1179.832 1802.378 2183.075 5091.336 8220.976 13555.334 0.000 0.000 116.821 104.562 94.837 3914.570 101.042 5035.394 0.000 0.000 78.074 97.150 3638.345 2059.048 1956.716 5035.4 61 0.000 0.000
1849.585
4835.963 6828.949 4365.327 4958.838 4997.809
0.000 0.000 7547.557 5741.427 6032.791 6022.490 7906.309 4164.796 0.000 0.000 1448.580 1737.042 1095.122 4389.666 4605.736 4509.151 0.000 0.000 4578.029 4 918.225 7136.543 6235.222 5982.209 4638.272
PPm Flags 0.00 bb 0.00 bb 729.75 bb 740.43 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 7.68 bb 29.54 bb 42.60 bb 57.71 bb 87.31 bb 118.62 bb 274.40 bb 54.5.53 bb
bbI 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bbX 0.00 bbX 6.54 bbX 26.02 bb 37.64 bb 50.53 bb 84.44 bb 105.59 bb 279.56 bb 501.26 bb 1123.76 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 209.90 bb 0.00 bb 275.97 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 189.67 bb 98.66 bb 92.97 bb 275.98 bb 0.00 bb 0.00 bb 8 7 . 0 4 bb 263.27 bb
396.95 bb 233.83 bb 271.08 bb 273.57 bb
0.00 bb 0.00 bb 449.46 bb 322.07 bb 341.64 bb 340.94 bb 416.11 bb 258.78 bb 0.00 bb 0.00 bb 65.07 bb 80.84 bb 45.98 bb 235.33 bb 248.78 bb 242.75 bb 0.00 bb 0.00 bb 247.05 bb 268.50 bb 419.10 bb 355.44 bb 338.22 bb 250.82 bb
%Da, od C-t -27 -26
-100 -100
-23 18 6 15 16 18 10 9
-100 -100
-35 4
-6 1
12 5
12 0
12
10
10
9
3
-3
0
Ciuantitated and Printed by (Mc on 18 Dea 00, Study E00-1311
Page 1
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Quantify Campound Suanary rlcport PFOS Msorb/Desorb Study I(:/MS I n s t - t :
Tucker (IA052)
Sample L i s t : Last d f i e d : hthod: Last modified: Job Code:
C:~SLYNX\.Dec~tur.m(D\SamplaDB\t001215 HDll Dec 1 8 1.0:&:28 2000 C:~SLY1M\.Dacatur.m(D~tMB\001215 HDll Dec 1 8 1.0:50:01 2000
Print*:
Mon m a 18 10:56:20 2000
Compound 1: PFOS(499)
# NaW 8 3 t001215-083 84 t001215-084 85 to01215 085 86 t0012151086 87 t001215-087 88 t001215-088 89 t001215-089 90 t001215 090 91 t0012151091 92 t001215-092 93 to01215 093 94 t0012151094 95 t001215-095 96 t001215-096 97 t001215-097 98 t001215-098 99 to01215 099 100 t001215~100 101 tO01215-101 102 to01215 102
107 t001215I107 108 t001215-108 109 t001215-109 110 t001215-110 111 t001215-111 112 t001215-112 113 t001215-113 114 t001215-114 115 t001215-115 116 t001215-116 117 t001215-117 118 t001215-118 119 t001215-119 120 t001215-120 121 t001215-121 122 t001215-122 123 t001215-123 124 t001215-124 125 t001215 125
130 t001215-130
137 t0012151137 138 t001215-138 139 t001215-139 140 t001215-140 141 t001215-141 142 to01215 142 143 t001215I143 I44 t001215-144 145 t001215-145 146 to01215 146
151 t0012151151 152 t001215-152 153 to01215 153
159 tO01215I159 160 t001215-160 161 to01215 161 162 t0012151162 163 c0012:5-163 164 t001215_164
Sanplslist Text MeOH Blank, TN-A-4740, Aliq. HeOH Blank, TN-A-4740. Aliq. lox 800-1311-3147
lox E00-1311-3147ms
lox E00-1311-3148 lox 600-1311-3149 lox EOO-1311-3150 250.4 ppb PFOS 00003-141 MeOH Blank, TN-A-4740. Aliq. MeOH Blank, TN-A-4740, Aliq. lox E00-1311-3150ms lox 600-1311-3151 lox EOO-1311-3152
lox 600-1311-3153 lox EOO-1311-3153250.4 ppb PFOS 00003-141 HeOH Blank, TN-A-4740, Aliq. HeOH Blank. TN-A-4740, Aliq. MeOH Blank, TN-A-4740, Aliq. 0 ppb PEDS 00002-86-01 2.5 ppb PFOS 00002-86-02 5 ppb PFOS 00002-86-03 10 ppb PFOS 00002-86-04 25 ppb PFOS 00002-86-05 40 ppb PFOS 00002-86-06 50.1 ppb PFOS 00002-86-07 75.1 ppb PFOS 00002-86-08 100.2 pp:o PFOS 00002-86-09 250.4 p p l ~PFOS 00003-141 500.9 ppl, PFOS 00002-86-12 1001.7 ppb PFOS 00002-86-13 HeOH Blank, TN-A-4740. Aliq. MeOH Blank, TN-A-4740, Aliq. lox EOO-L311-3154 101 EOO-1311-3155
1OX E00-1311-3156 lox EOO-.L311-3156m lox EOO-:L311-3157 250.4 ppb PFOS 00003-141 MeOH Blank, TN-A-4740, Aliq. MeOH Blank, TN-A-4740, Aliq. lox E00-:1311-3158 1OX 800-1311-3159 lox E00-:.311-3159ms 10x E00-311-3160 lox E00--!.311-3161 250.4 ppb PFOS 00003-141 MeOH Blank. TN-A-4740. Alia. HeOH Blank; TN-A-4740, Alii. lox E00-1.311-3162 10x E00-1311-3162m lox EOO-1311-3163 10s EOO-1311-3161 lox E00-1311-3165 250.4 pph PFOS 00003-141 MeOH Blank, TN-A-4740. Aliq. MeOH Blank, TN-A-4740, Aliq.
lox E00--1311-3165nvl lox E00-1311-3166 lox EOO-1311-3167 lox EOO-1311-3168 101 EOO--l311-31681os 250.4 pph PFOS 00003-141 MeOH Blank, TN-A-4740. Aliq. HeOH Blank, TN-A-4740. Aliq. lox E00-1311-3169
lox E00--1311-3170 lox SOO-1311-3171 lox E00-1311-3171ms lox BOO-3311-3172 250.4 pph PFOS 00003-141 MeOH Blark, TN-A-4740. Aliq. MeOH Black, TN-A-4740, Aliq. lox 600-1311-3173 lox 600-1311-3174 10x E00-1311-3174es 250.4 ppt PFOS 00003-141 HeOH Blank, TN-A-4740. Aliq. MeOH Blank, TN-A-4740, Aliq.
101 E00-1311-3184 lox E00-1311-3185 lox 6'00-1311-3186
12/04/00 M C 12/04/00 CMC
12/04/00 M C 12/01/00 M C
12/04/00 M C 12/04/00 M C 12/04/00 CMC
12/04/00 M C 12/04/00 CMC
12/04/00 M C 12/04/00 M C
12/04/00 M C 12/04/00 CMC
12/04/00 mc 12/04/00 M C
12/04/00 CMC 12/04/00 M C
12/01/00 M C 12/04/00 CMC
12/01/00 CMC 12/04/00 CMC
RT 6.457 6.313 6.460 6.444 6.367 6.460 6.477 6.476 6.461
6.444 6.416 6.200 6.180 6.193 6.224 6.248 6.240 6.184 6.228 6.280 6.240 6.432 6.441 6.434 6.481 6.461 6.484 6.461 6.416 6.480 6.399 6.461 6.428 6.416 6.328 6.472 6.477 6.480 6.408 6.361 6.333 6.381 6.456 6.369 6.429 6.432 6.453 6.352 6.336 6.240 6.314 6.467 6.127 6.363 6.328 6.413 6.369 6.393 6.413 6.484 6.464 6.448 6.393 6.264 6.332 6.484 6.232 6.328 6.486 6.463 6.418 6.441 6.408 6.359 6.376 6.482 6.472 6.473 6.212 6.235 6.192 6.180
Are. 27890 25986 2160923 2795560 467443 434046 307296 1592065 27504 26941 1372094 1471355 1462737 1400633 2166117 1624666 26765 29157 28941 27909 52247 65529 99480 199217 299906 351140 531280 725423 1529458 2508341 4217609 26339 24228 1932000 1931864 1823747 2606071 589623 1486525
23881 23843 515994 398660 1391674 1313759 1336481 1630600 25232 23839 1420534 2176430 1921647 1919332 1891362
1616620 25608 25353
2518441 490459 454448 270348 1312137 1521355 23346 24500 1269778 1361053 1302570 21383 3 9 1909649 1569463 25530 25032 1924000 1823228 2505717 1551613 32065 28836 27853 27101 25663
Rsspcnse 0.000 0.000
6233.710 8625.720 1570.4 04 1307.942
917.941 4791.048
0.000 O.OO0 4498.274 4300.032 4422.156 4150.190 7015.362 4723.239 0.000 0.000 0.000 81.993 154.323 194.992 298.037 600.598 914.360 1050.562 1663.308 2262.606
5017.911 7683.917 12695.066
0.000 0.000 6231.812 5722.890 5469.763 1947.153 1792.083 4383.193 0.000 0.000 1728.388 1180.765 4215.479 3956.266 4023.424 4979.129 0.000 0.000 4680.638 6417.885 5708.008 5680.892 6470.854
5221.768 0.000 0.000
8671.869 1514.172 1362.081
804,620 3928.931 5042.004
0.000 0.000 3790.616 4423.3 67 3753.871 6326.790 5474.736 4583.933 0.000 0.000 6430.461 6107.042 7474.248 4455.908 0.000 0.000 79.638 76.961 73.164
m Flags
0.00 bb 0.00 bb 355.34 bb 533.78 bb 71.71 bb 57.44 bb 36.51 bb 260.43 bb 0.00 bb 0.00 bb 242.07 bb 229.84 bb 237.34 bb 220.60 bb 410.32 bb 256.16 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bbX 0.00 bbX 3 . 8 5 bbX 19.70 bb
36.32 bb 43.59 bb
76.79 bb 110.05 bb 274.86 bb 459.73 bb 967.50 bb
0.00 bb 0.00 bb 355.21 bb 320.83 bb 304.11 bb 479.86 bb 83.87 bb 234.93 bb 0.00 bb 0.00 bb 80.37 bb 50.58 bb 224.60 bb 208.79 bb
212.87 bb 272.38 bb
0.00 bb 0.00 bb 253.48 bb 368.04 bb 3 1 9 . 8 4 bb
318.04 bb 371.72 bb
287.97 bb 0 . 0 0 bb 0.00 bb
537.56 bb 68.64 bb 60.37 bb 3 0 . 4 8 bb
201.13 bb 276.40 bb
0.00 bb 0.00 bb 198.79 bb 237.42 bb 196.59 bb 361.74 bb 304.14 bb 247.42 bb 0.00 bb 0.00 bb 368.92 bb 346.68 bb 443.90 bb 239.44 bb 0 . 0 0 bb 0 . 0 0 bb 0.00 bb 0.00 bb 0 . 0 0 bb
8Dev
4
2
-100 -100
-61 -21
-9 -13
2 10 10 -8 -3
-6
9
15
10
-1
-4
od c-t
Guantitated and Printed by CMC on 18 Dec 0 0 , Study E00-1311
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~~~
e W t l f y Cd-
S-ry
-rt
PFOS Adsorbllhrorb Study LC/aas Ins-t:
Tucker (LA052)
SaqlO Ilst: c:Vd;*ssL~\~atur.PRO\Saql~\t001215
Last U f z e d d : ldrm OW 18 10:45:28 2000
t&thd:
c:~sLnm\naaatur.PRO\M.U9B\001215
L a s t modrfied: )don DW 1 8 1 0 : 5 0 : 0 1 2000
Job C o h :
PYmted:
M e n tma 18 10:56:20 2000
L Corpomd 1: PFos(499)
N165 t001215 165 166 tOO1215Ii66 167 t001215-167 168 to01215 168 169 t0012151169 170 to01215 170
178 t001215I178 179 t001215-179 180 t001215-180 181 t001215-181 182 t001215-182 183 t001215-183 184 t001215-184 185 t001215-185 186 t001215 186
192 t001215I192 193 tO01215-193 194 t001215 194
S.pple1i.t Text
lox 800-1311-3186ms lox 800-1311-3187
250.4 p'ob PFOS 00003-141 KeOH Blank, TN-A-4740, Aliq. 12/01/00 M C HeOH B1,nnk. TN-A-4740, Aliq. 12/04/00 CKC lox 600-1311-3188 lox 800-1311-3189 lox 600~-1311-3189m 10% 800~-1311-3190 10% 600-1311-3191
250.4 ppb PFOS 00003-141 HeOH B l a n k , TN-A-4740. Aliq. 12/04/00 CKC KeOH B l m k , TN-A-4740, Aliq. 12/04/00 CKC
lox 600-1311-3192 lox 800-~1311-3192ms 250.4 ppb PFOS 00003-141 HeOH B l a n k , TN-A-4740, Aliq. 12/04/00 CKC MeOH Blank, TN-A-4740. Aliq. 12/04/00 M c MeOH B l a n k , TN-A-4740. Aliq. 12/04/00 CKC 0 ppb PE'OS 00002-86-01 2 . 5 ppb PFOS 00002-86-02 5 ppb PEOS 00002-86-03 10 ppb EFOS 00002-86-04 25 ppb EFOS 00002-86-05 40 ppb EFOS 00002-06-06 50.1 ppb PEOS 00002-86-07 75.1 ppb PFOS 00002-06-08 100.2 ppb PFOS 00002-86-09 250.4 pGb PFOS 00003-141 500.9 oeb PFOS 00002~ -06-1.2~ 1001.7cipb PFOS 00002-86-13 HeOH Blank, TN-A-4740, Aliq. 12/04/00 M C KeOH B l a n k , TN-A-4740. Aliq. 12/04/00 CKC KeOH B l a n k , TN-A-4740, Aliq. 12/04/00 CKC
RT 6.189 6.208 6.228 6.192 6.248 6.304 6.442 6.484 6.443 6.215 6.213 6.240 6.252 6.477 6.361 6.412 6.420 6.296 6.480 6.401 6.421 6.482 6.486 6.469 6.376 6.468 6.484 6.409 6.192 6.221 6.221 6.221 6.199 6.176
Area 1213191
28200 1709614
33076 32005 24369 24595 1090006 26337 26588 1712977 32775 29504 26709 1122264 1590409 26186 26510 27913 31358 51199 72994 106025 197302 300365 368099 547191 716285 1792194 2783510 4584416 23461 23905 25693
3646.165 84.514
4678.916 0.000 0.000
69.146 70.860 3242.894 81.389 78.975 4750.145
0.000 0.000 76.788 3604.296 5068.404 0.000 0.000 0.000 91.574 146.499 212.090 312.819 574.354 861.131 1052.172 1577.562 2213.537 4908.508 7818.634 12639.560 0.000 0.000 0.000
ppm Flags
190.14 bb 0.00 bb
253.37 bb 0.00 bb 0 . 0 0 bb 0.00 bb 0.00 bb
166.28 bb 0.00 bb 0.00 bb
257.85 bb 0.00 bb 0.00 bb 0.00 bb
187.64 bb 278.09 bb
0.00 bb 0.00 bb 0.00 bb 0.00 bb 0.00 bbX 0.00 bbx 4.62 bbX 18.32 bb 33.49 bb 43.60 bb 72.10 bb 107.30 bb 267.88 bb 469.98 bb 959.07 bb 0.00 bb 0.00 bb 0.00 bb
9Dev
1
3
11
-100 -100
-54 -27 -16 -13
-4 7 7
-6 -4
cd Co-t
-~ Page 3
h t i t a t e d and Printed by C!&2 on 18 D o o 00, Study E00-1311
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210.10 250.40 210.40
210.40 250.10
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Page 539 of 703
E00-1311 PFOS Adsorb/Desorb
BACK TO MAIN
rc
0
Study# 00-131 1 Compound: PFOS
Study: AdsorblDesorb
s!Mww!J
owo2dBo5 ow02d6D6 ow02an7 -2dB-08 WdB-09
Analyiical Inslrument: Hillaryon 12/14/00 ReprocessingWorkstation: Dioana 12/1[vM) batch H1214al.b
s.m* m
B r m & P B ! d t ! a a E k w e E R s P a k eEBLBI
2488 ppblHPFOY2470 ppbPFBSO
25ppbPFOSCabbnllonstd XS
28 H1214A1M HllOM8 0 5
247.0
8 57
2488 ppbTHPFOY2470 ppbPFBSO
40 mbPFOSC d h U e n std rn
2488 ppbTHPFOY2470 p i b PFBSO M 1ppbPFOSCaDbnDonsld 17
27 H l l l U IM Hluo0170 8
247.0
856
21 n1214~M1 ~iinm8D 7
247 0
8 57
2488 ppbTHPFOY2470pphPFBSU 75 1ppbPFOSCahbmbonStd
?D n1214~Mi HIIIWT) o 8
247 0
6%
2488 ppbTHPFOY2470 ppb PFBSO 1W 2ppbPFOS CalibnhOnStd #3
30 H1214A1M HillWMD 9
247 0
156
2486mbTHPFOY2470oobPFBSO
CW43-141
2MiipbPFOS C.l~b~.lionStd#lO
31 H1214A1M HHIW31 D 10
247.0
8%
moo28811
2488ppbTHPFOY247OppbPFBSO 4WlppbPFOSCsllbnb~St~*11
32 ~ 1 2 1 4M~ 1niitwao 11
247 0
8%
2488ppbTHPFOSl247OppbPFBSO
ww2dB12 moo24613 owo3-141 ccv
so0 9 ppbPFOSCallbnhonSm a12 2488 ppb THPFOY2470 ppbPFBSO
1Wl 7ppbPFOSC.lbRbon Std #13
2486ppbWFOY2470ppbPFBSO 2% 4 m h PFOS CCV
33 H1214AlM HIllOO330 12
247 0
6 57
34 H1214A1M H1lOO34 D 13
247 0
e 57
42 H1114A1M -2 D 10
247 0
6%
2486p*THPFOY2i~OppbPFBSO
CCaU3-141 CCV
250 4 ppbPFOS CCV
50 ni214~M1 HUOW D 10
247.0
8%
ooOo2-141 CCV
2488ppbTHPFOI247OppbPFBsO 2504 ppb PFOS CCV
56 n1214*1 M HIIIWS~ D 10
247 0
856
Ow05141 CCV
2488ppbTHPFOY247OppbPFBSO
2% 4 ppb PFOS CCV
m nt214~M1 worno 10 2470
6%
ow05141 CCV ow03-141 ccv ~002-86-05 oooo~as-~
2481ppblHPFOY2470ppbPFBSO 1544 ppbPFOS CCV
2486 ppbTHPFOY2470 ppbPFBSO 250 4 ppbPFOS CCV
2486 mobTHPFOY2470 mobPFBSO 25bphPFOSCaIIbia1lonStd 1125
248 8 ppbTHPFOSJ247 0 ppb PFBSC
40 PpD PFOSCahbmbonSld ne
74 H1214A1M HlIIW740 10 2470
8 55
82 H1244AlM W1100820 10
247 0
8 53
89 H1214AlM HllOO890 5
247 0
8 53
90 H1214A1M HlOO900 B
21. 0
8 53
ow02-88-07
ww286n8
2488ppbTHPFOSJ2470pp~PFBSC
50 IppbPFOSCaIIbmtIonS I 1127 2486 ppb THPFOY2470 ppbPFBSO
75 1 ppt PFOSC.hbR11onSld #28
01 Hl214A1M H#ll0090l 7
247 0
6 53
92 H1214A1M HlllWS2D 8
247 0
8 53
~~28609
OOW3-l4,
2486 pph THPFOSl2470 ppbPFBSC 1002 oob PFOSCahbrahonSld nS
2466 ppbTHPFOSl2410ppbPFBSO 2544 ppbPFOSC.librabon Sld #M
83 H1214A1M H1Q093D 9
247 0
8 53
04 H1214A1M H1110094 D 10
247 0
8 53
moo2.E-11 WW2.8%12
2488 ppb THPFOSJ2470 ppbPFBSO 4W 7ppbPFOS CdlbnnonStd I J I
2486 ppbTHPFOY247OppbPFBSO 5W 9 ppbPFOS CallbrehonStd U 2
05 n 1 2 i i ~Mi ntiiwssD 11
247 0
8 52
OB H1214A1M H~1100860 12
247 0
6 52
WW2-86-13
2486ppbTHPFOY241 OppbPFBSJ 1001 7ppbPFOS Callbmllan Std U3
87 H1214AlM HlllW970 13
247 0
6 52
em#B4 1.030.547.8 1.M0.2773 1.UX.578 8 1.014,~.6 1.U23.443 3 I.MI.Mo4 1,037,341.3 1.042.852.8 1.011.UX4 i.mi,wo 1.U28.888 3 1.025.828 2 1,014,181 1 BM.439 1 078,9245 958.628 4 859.545 8 864.280 1 043,308 8 955,510 1 m.758 3 055.3424 861.285 8 938,3859
248 8 246 8 248 6 248 6 248 8 248 6 248 8 248 8 248 8 248 8 248 8 248 8 248 8 248 8 248 8 246 6 248 8 248 6 246 6 248 8 248 8 248 8 248 8 248 6
QwQUQa
754
645.953 3
7.54
~ 7 . 7m
7.56
647.800 0
7.54
642.514 9
7.54
M8.175.4
754
856,451 8
7.54
851.0132
754
8M.093 3
7.54
M4.701 0
7.54
855.563 3
754
053.181 1
7.53
855.1157 3
7.53
m.745 5
754
W5.288 6
7.52
822.280 5
7 52
599.348 4
7 52
602.015 6
7.52
813.8254
7.52
598.254 6
7 53
rn9.668 4
7 52
814.9133
7.52
M.3180
7.52
811.2124
7 52
588,8896
EQwiI
7.74 7.74 7 74 7.74 7 74 7 74 7.74 7 74 7 74 7 74 7 74 7 74 7.74 7 74 7 74 7 74 7 74 7 74 7 74 7 74 7 74 7.74 7 74 7 74
tEQ%usa 583.570 1 561.5183 707.754 0 1,M8,1604 l.YY.304 8 3,252.267.8 4,859.772 5 5,851,8855 10.1W.W90 1.~0.226 8 3,217,2125 3,228,307 5 3,122,5120 3.115.8880 3.0%.880 8 338.940 8 530,461 8 BgS,lSS 0 088.530 8 i.m5,48t 5 3.wB.623 0 4,449,8535 5.420.9n 5 9,330.6w 0
EEQaFi?
273
109%
394
I5%
49 4 773 102 1 2576 404 4
14%
30% 10%
2% 0%
498 0
02%
8804
0%
255 4
255 0
255 7 254 7 254 7 255 2 22 4 38 5
49 1
78 7
2 2% 2 1% 1 7% 17%
1 9%
10 4% 3 7% 2% 2 1%
1WB 253 8 387 5 491 5
0 4% 1 4% 0 8% 1 9%
1wB4
0 5%
00-1311 PFOS AdsorblDesortl
BACK TO MAIN
SwPwR
Study# EM)-1311 Compound PFOS
Study AdsorblDesorb
Analflical InJtrumenI Hillary on 12/14/00 RepmcesslngW o ~ a t i o nDioana 12181w batch H1214bl b
mp*m
BUU RUMY m n h ywd w w w m
ww2Ul6 o(DozdB06 oooO26607 Dmmm ww2M.m WWZ-141 ma5-11 ww2.8512 oWo2a5-13 WW2-141 CCV GXQ3-141 CCV wW3-141 CCV WWZ-141 CCV GXQ? 141 CCV WWJ-141 CCV 00002 f f i 05 O w 0 2 f f i OB oW02-Bgo7 wW2-%%08 ww2.ffin8 wDo3 141 wW2-BB11 OOWZ-BB12
2488 ppb THPFOY 247.0 ppb PFBSO
25ppbPFOS
C.HbntlaStdtd.5
2486wbWFOsI2470~~bPFBSo
40Ppa PFOS
2488 ppbTnpFoSl247 0 ppb PFBSO 50 1ppb PFOS
248 8 ppb THPFOY2470 ppb PFBSO
751ppa PFOS 2488 ppbTHPFOY2470 ppbPFBSO
1W2mbPFOS
2488 ppbTHPFOW2470 ppbPFBSD 2504 ppb PFOS
2488ppbTWFOSI247 oppbPF0sD 4W 7 ppb PFOS
2488ppbTHPFOY2470ppbPFBSO
5WSppbPFOS
2488ppbTHPFOY247OppbPFB80
1W17 PpbPFDs 2488 ppbTHPFOY2470 ppbPFBSO
2504 ppb PFOS CCV
2488~PbTHPFOW247OppbPFBSO
2504 ppb PFOS CCV 2488ppblwFos1247 OppbPFBSo 2-4 ppb PFOS CCV
2488 ppbTHPFOW2470 ppbPFBSO 2504 ppb PFOS CCV
2488ppbTHPFOsI247OppbPFBSO
2504 ppb PFOS CCV
2488 ppb 1HPFOS2l 47 0 ppb PFBSO 2504 DDb PFOS CCV
2486ppbTHPFOSl247 OPPbPFBS3
25 ppb PFOS
CaIIbratlonSld 125
2186ppblHPFOY2470~~IPFBS~
40ppb PFOS
Cahblallon Sld .28
2486ppbTWFOY241OppbPFBS2
50 1 ppb PFOS 2486 coblHPFOSl247 0 DDb PFBSZ 75 1 ppbPFOs
Clllbrabon Sld127 Cal8braUonSld128
2488 ppbTHPFOY2470 ppb PFIS3
(00 2ppbPFOS
C.libntion Sld 129
248 5 ppb THPFOSl2470 ppb PFBSO 2504 wbPFOS 2488 ppb THPFOY247 0 ppb PFBSO
caml!nn std am
4W7ppbPFOS
C.LbR1IOn Std8l
2486 ppbTHPFOSI2410 ppbPFBS3 Mo 8 ppb PFOS 2488 mbTHPFOS2470 PDbPFBS2
CalibmtlonSld 8 2
7 H1214B1M HIIW0I.D 5
247W
853
8 H1214B1M HllW80D 8
247M
053
0 H1214Bl M HI10391 D 7
24700
853
10 H1214B1M H11WD2 D 8
247W
853
11 Hl214B1M HIIWM)3D 8
247W
853
12 HI21481 M HlllW94 D 10
247W
853
13 H1214BlM HIIW95 D 11 247W
8.52
14 H1214BlM H111CCW D 12 247.W
8.52
15 H1214B1M Hlll0397D 13 241.00
852
24 ~ 3 2 1 4M~ 1nmmD 10 247110
851
32 H1214B1M Hill0114D 10 247.00
8.53
4a H1214B1M HIIWlPD 10
247w
8.54
48 H1214B1M HIllO1MD 10
24700
655
58 ~ 1 2 1M4H~I I~WD~ 10
24700
855
84 ~ 1 2M ~~8no1~46D 1 10
24700
854
71 n i 2 w w M nt110?530 5
267 w
8 54
72 H121481M H1110154D 8
247W
855
73 H121.81 M H1101550 7
24700
654
74 HI21401 M H8110158D 8
24700
854
75 H1214BlM Hdl0157D 9
24700
655
7U H121401 M HiMO158D 10
247W
854
77 H121481M H11101590 11
247W
854
78 H121481M H!IW1800 12 247W
654
eE&hml
QsE82n 38 9 5 w 5 75 wl280 13 943308 58 956510OB sal58 31
956342 u 861285 81
oJ8xI5 88 98050 M 87Mu) 89
87Ri97u o w 19
8BoOt99.4
871858 E8
958397 w
-11 58 88376 19 853208 M 88051744 88197484 95928258 859614 31
m2681 w
mEE!2%& meEQsBz-
24880 248 Bo 248 80 248 Bo 248 Bo 248 Bo
248 w
248 80 148 80 248 Bo 248 Bo 248 Bo
248 eu 248 80 2 a80 248 60 248 80 248 60 248 60 248 80 248 60 248 80 24660 248 60
752
5SSM838
752
W201558
752
813825U
752
5-63
753
nW?edJ(1
752
81491325
752
%531894
752
011212U
752
-8
751
61273483
752
82528375
752
6328118s
753
6311Bo38
753
82143550
752
83151888
753
61198938
753
62282431
753
61770118
752
81689531
7 53
815541U
752
62730431
753
81799138
752
812872 13
752
81999975
EQXm
7 74 7 74 7.74 7 74 7 74 7 74 7 74 174 7 74 7.74 7 74 7.74 7 74 7 74 7 74 7 74 7 71 7 74 7 74 7 74 7 74 7 74 7 74 7.74
E!2sml
338840 84 5 3 M 1 75 ea79500 Ri8uo 81 1265481 50 XaSsnW 4449853 M 5420827 M
0350660 w m7740 75 xea70 M M78148 W so3M35 M 3045221 M 3080745 75 341318 55 53352363 08917525 876864 25 1288105 75 M55103 75 4522913 50 542403854 966958100
PEWPPh
22 65 38 84 49 59
n 47
10164 258 44 401 52 4% 38 101605 258 81 25731 255 w 251 73 257 OB 254 00 22 25 37 89
49 44
7578 101% 25534
399 54
495 35
sa9 84
8 4% 2 8% 1% 3 2% 14% 2 4% 0% 0 8% 14% 2 5% 2 8% 18% 0 5% Z7% 14% 110% 5 8% 13% 09% 2 3% 2 0% 0 3% 11% 1 2%
BACK TO MAIN
m
3
s5CD
3
s e b
0
3
Sample Batch H010405.b, analyzedon HillaryOCOCO1. PFOSAdrorblD.rorb SimplN. Matrix: S o i l f S l g l ~ . Standardc u m range used tor calibration ot sampler: 5-1W2 n@mL Batch method: H01040S.m
Inj Dab
Batch
SimpTyp
416101 1253 D.ChsmWinaryWol0405.b SAMPLE
416101 13:08 D:\Chem&iWaryW10405,b CALlB-1
4(6101 1322 D:\ChemWlaryWOlW5.b CALIB-2
&WLX i;:"o ~:LPh~~.~!'3y\H01M05.CbALIB-3
4/6/01 13.51 D!ChemWiryWOlMO5.b CALIB-4
4/6/01 14.05 D ChemW1UaryWOlMO5.b SAMPLE
416101 14.20 D.ChemWllaryW010405.b CALIB-5
416101 14.34 D-ChemWillaryWolC405.b CALfB-6
416101 14.48 D-ChemWiNaryW010405.6 CAUB-7
416101 15:03 D!ChemWdlaryWOlW5 b CAUB-8
4/6/01 15.17 D.ChemW~UaryViOlMo5.b SAMPLE
W 0 1 15.31 D.ChemWillaryW010405b CAUB-9
416101 1546 D:ChemWdlaryW010405.b CAUB-10
4nm14.57 D ChemWllaryWOlW05.b SAMPLE
4nm1 511 D:\ChemWilaryW010405b CAUB-11
4 n x l l 5 26 D:ChemWlaryWolMo5.b CALM-12
4 n m i 5-40D:ChemWillaryW010405b CALIB-13
4/7/01 5.55 D ChmWillaryWOlW5.b CALM-14
4/7/01 6 09 D ChemWillaryW010405.b SAMPLE
4nm16.23 D ChsmW~UaryWO1Mffi.b CALIB-15
417101 6.38 D.ChemWlaryW010405.b CALIB-I6
417/016:52D.lChemW~aryWOlMO5.b CALM-17
417m17.07 DChemWNaryWOlMO5.b CALIB-18
4/7/01 7:21 D:ChemW1llaryWOl0405b SAMPLE
417401735 DChemWdlaryWol0405.b CAUB-19
417101 7.50 DChemWllaryV1010405.b CAUB-20
File
Sample Nvn8
HILLWl6.D 0 ngmL PFOSin MeOH
HILLW17.D 2.5 nglmL PFOS inMeOH
HILLW18.D 5 nplmL PFOS in MeOH
HILLW19.D 10 nglmL PFOS in MeOH
HILLW2O.U 25 w ' m i PiDSaM-*H
HILLW21.D 4 0 nglmL PFOS in MaOH
HILLW22.D 50.1nplmLPFOSinMeOH
HILLW23.D 75.1 nglmL PFOS in MsOH
HlU0024.D 1W.2 ndmL PFOS inMeOH
HILLW25.D 250.5 n#mL PFOS in MeOH
HILLW26.D 400.8 ng/mLPFOS in MeOH
HILL0027 D 501 nglmL PFOS in MeOH
HILL0028D lWZnO/mLPFOSinMeOH
HlLLW83.D 0 W m L PFOSin MeOH
HlLLW84.D 2.5 nglmL PFOS in MeOH
H I L W 5 D 5 nplmL PFOS in MsOH
HI~w088.D 10N m L PFOSinM.DH
HILLWB7.D 25 W m L PFOS in MeOH
HlLLW88.D 4 0 W m L PFDSVI MeOH
HILLW89.D 50.1 ndmL PFOSinMeOH
HILLW90.D 75.1 n d m lPFOS in MeOH
HlLLW91.D 1W.2 nahnLPFOS 111 MoOH
HlUW92.D 2M.5 ng/mL PFOSm MeOH
HILLW93.D 4W.8 ndmLPFOSm MeOH
HlLLW94.D 501 n&L PFOS VI MEOH
HILL0095.D 501 nglmLPFOSin MeOH
MIrc InPCompoundN a R l
Ana
THPFOS
mwos
5.111 5.121
THPFOS
5.12
THPFOS
5107
THPFOS
5.1W
THPFOS
5.121
THPFOS
5.119
THPFOS
5.121
THPFOS
5.119
THPFOS
5.112
THPFOS
5.111
THPFOS
5.112
THPFOS
5.113
THPFOS
5098
THPFOS
5.092
THPFOS
5.048
THPFOS
5.1
THPFOS
5.108
THPFOS
5.101
THPFOS
5.1
THPFOS
5.101
THPFOS
5.108
THPFOS
5.107
THPFOS
5.105
THPFOS
5.104
THPFOS
5.104
Amount
853901
254
880305
254
9W514
254
884801
254
891555
254
8-
*c.
L-
805109
254
9079Sg
254
902929
254
921590
254
890229
254
885051
254
soBB.uI 254
909918
254
901288
254
907830
254
893988
254
886284
2=54
8wm
254
848217
254
818488
254
824040
254
839800
254
795504
254
790146
254
798759
254
Avenae: 871828.15q
w!2?!&3w.9.57909
XRSD:
Compound NarRT PFOS PFOS PFOS PFOS PFOS PFOS PFOS
wos
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
wos
PFOS PFOS PFOS
Ana
,Amount
0
0
0
5.331
5l194 3.942931
533
1 1 w 8.364052
5 324
189988 10.48501
5 323
495541 26.37293
5 331
779774 41.22295
5 33
971274 5 0 . 8 5 3
5 331
1469171 77.71198
5 328
1921199 102.2878
5 322
4651125 255.0356
5 335
6791612 402.9106
5 322
8184382 541689
5 33 14871358 994 5332
0
0
0
5 302
53350 3326644
5 301
95517 5.429805
5 31
158439 8.752514
5 316
425595 23.3514
5 311
675739 37.43176
5 31
847857 47.35439
5311
1278693 7446758
5309
1665885 97.01042
5 31
4111457 248.754
5 308
6W4617 3980979
5 314
7263676 498.2841
5 314 13221474 1M19.264
127% 105% 105% 103% ,..n.."*,. f03% 102% 64% 101% 100% 99%
109%
ea%
93% 94% 95% 99% 97% 62X 99% 99%
faiw
iimn +m%:
6102.W -30%:
In1Date
Batch
41WJ112 25 D ChemWdIaryWOlLl405b
41BR112 39 D IChemWfflaryWolMO5 b
4/6/01 76 W D !ChemWla1yWOIW5 b
4w101 16 14 D ChemW~llaryWOlW5b
4/6/011921 D ChmWiUaryWolMffi b
4 ~ 1 0 119 36 D ChemW11laryW010405b
41610122 43 D !ChemVkUaryW0104ffib
w 4/6/0122 57 D \ChemWdlaiyWOIO405b
4,7101 1 D IChemW!llaryW010405 b
mmi 2 M ~ChemWiIlaryWolM05b
2 4nmi 4 28 D ChemWllaryW010405b 4171014 43 D ChemWdlaryWOlW5 b 4/7m18 04 D ChemWdlaryWOlD405b
S.mpTYP SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
File HIUW14.D HlU0015.D HILLWZ9 D HILLWM.D HILLCiJ43.D HILLOO44.D HlLLW57.D HlU0058.D HILLW7O.D HIUW7I.D HILLW81.D HlLLW82.D HILLOWB D HILLW97.D
Sanpl. Name TN-A 4802 MeOH TN-A 4802MeOH TN-A 4602 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TNA 4802MeOH TN-A 4802MeOH TN-A 4802 MeOH TN-A 4802MeOH M - A 4802MeOH TN-A 4802 MeOH
Mlrc InPCompoundNaRT THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
Ana 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Amount
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Compound NaAT PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
Am. 0 0 0 0 0 0 0 0 0 0 0 0 0
Amount
0
0
0
0
0
0
o
a
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
00
0
BACK TO MAIN
Ini Data
Batch
4/6/01 1629 D ChemW~llaryW01040b5
416101 16 43 D ChemWllaryW010405b
416101 16 58 D ChemW11laryV1010405b
4/6/01 17 12 D ChemWllaryWO1MOSb
41M)l 1726 D ChemWillaryWOlM05b
4/6/01 1741 D ChemWllaryW010405b
4/6/01 17 55 0 \ChemWdlaryWOlMO5b
4Iwui 11 UY u \Lnernwtuarywuiw%D
4/6/01 18 24 D ChemWtflaryW010405b
4/6/01 18 38 D ChemWillaryWO10405b
4/6/01 18 52 D ChemW1llaryW010405b
4I6ml 1907 D \Chem~llaryWOlMO5b
4/6/01 19 50 D ChemWdllaryW010405 b
41610120 04 D ChemW~tlaryWOl04OSb
4/6/0120 19 D ChemW8UaryW010405b
416101 20 33 D iChemWllaryW010405 b
4/6/01 20 48 D ChemWtllaryW010405 b
4161(312102D ChemWiflaryW010405b
416101 21 16 D ChemW~UaryWOl0405b
4/6/01 21 31 DChemWllaryWOlMOSb
4/Bx)121 45 0 \ChemWllaryW010405b
4/6/0121 59 DChemW1llaryW01040b5
4/6/01 22 14 DChemW~llaryWOlMO5b
416101 22 28 D ChemWillaryW010405 b
4/6/01 23 11 DChemWdlaryW010405 b
4/6/01 23 26 D ChemWdlaryWO10405b
4/6/0123 40 D ChemWdlmyWOlC405b
416101 23 55 D ChemW1UaryWOl0405b
4nm10 W D ChemWllaryW010405b
4/7/010 23 D ChemWrlaryWO10405b
4/7/01 038 D ChemWollaryWOl0405b
4/7/01 0 52 D ChemWdlaryWOl0405b
4/7m1 107 D ChemWdaryWOlM05b
4 n m l 1 2 1 DChemWillaryW010405b
4/7/01 136 D ChemWdlaryW010405b
417/012 10 D C h e m W ~ ~ W O l r w obS
4/7/012 33 D ChemWllaryW010405b
4/7/012 47 D ChemW1llaryW010405b
4/7/01 3 02 D ChemWllaryW010405b
4/7/013 16 D ChemWillaryV1010405b
4/7/013 31 D ChemWllaryW010405b
4/7/01 3 45 D ChemW1llaryW010405b
Wm1 3 59 D ChemWdlaryWOl0405 b
4 n m l 4 14 D ChemWiUaryW010405b
SampTyp.
SAMPLZ SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SMMFLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
FIIe
Sample Name
MISSlnfcompwnd NaRT
Am
HILLW3l.D 2mgiLPFOSStud~NumberEW-1311
THPFOS
5112
HILL0032 D 2m& PFOS Study Number E001311
THPFOS
5.12
HlLLW33.D 2mdL PFOS Study Number EW-1311
THPFOS
5.113
HILL0034.D 2mfl PFOS Study Number EW-1311
THPFOS
5.112
HILL0035 D l h p n PFOS Study Number EW-1311
THPFOS
5.106
HILLW38 D HlUW37.D Hia3,g
".. 10mdL PFOSSWy Number EW-1311
10mgILPFOS Study Number EW-1311
.^ -.,, "-"CC...A...a .._L__rM.
' " " ' ~ L""*C.U",
I."II,MI L W I O I I
THPFOS THPFOS NDFOS
5.115
5.109
"c.,+""C"
HlLLW39.D 2mfl PFOSStudyNmberEW-1311
THPFOS
5.112
HILL004O.D 2mpll PFOSStudyNumber EW-1311
THPFOS
5.111
HILL0041.D 5 nglmLPFOS in MeOH
THPFOS
5.113
HlLLW42.D 250.5 nglmi PFOS in MeOH
THPFOS
5.118
HILL0045D 2mgL PFOS S W Number EW-1311
THPFOS
5.112
HILLW4&D 2mfl PFDSStudy NumberEW-1311
THPFOS
5.118
HILL0047 D l o a PFOSStudy Number EW-1311
THPFOS
5.108
HILL0048 D 10mplL PFOS Study Numbar EW-1311
THPFOS
5.112
HILLOM9D 1OmdLPFOSStudy Number E001311
THPFOS
5.106
H l L L ~ 5 0D lhng/L PFOSStudy Number EW-1311
THPFOS
5.112
HlU0051.D hng/L PFOS Study Number Em1311
THPFOS
5.114
HlLLW52.D O m g L PFDSStudy Number EW-1311
THPFOS
5.109
HlLL0053.D OmplL PFOS Study Number E001311
THPFOS
5.104
HILL0054 D OmglL PFDS Study Number EW-1311
THPFOS
5 098
HILLW55 D 5 @mL PFOS In MeOH
THPFOS
5.112
HILLW5B.D 250 5 nglmLPFOSIn MeOH
THPFOS
5.098
HILLW59.D l o m a PFOSStudy NumberEW-1311
THPFOS
5.105
H1LLW.D lompn PFOS Study NumberE001311
THPFDS
5.107
HlLLDOB1.D l~PFffiStudyNumberE001311
THPFOS
5.105
HILLW62.D 1 h d L PFOSStudy Number EW-1311
THPFDS
5.105
HILLW63.D l h # L PFOS Study Number EW-1311 HlU0064.D lhpnPFOS Study Number EW-1311
THPFOS THPFDS
5.111 5.105
HILL0065D 1 W L PFOS Study Number E001311
THPFOS
5.1
HILLWBBD 10mgtL PFOS Study Numbttr EW-1311
THPFOS
5.105
HILLDOB7D om#L PFOS Study Number Em1311
THPFOS
5.098
HILL0068.D 5 nplmL PFOS in MeOH
THPFOS
5.1
HlLLW69 D 250.5 WmL PFOSin MeOH
THPFOS
5 102
HILLW72.D Om& PFDS Study Number E001311
THPFOS
5.097
HILLW73D Om& PFOSStudy NumberEW-1311
THPFOS
5.091
HlLLW74 D O W PFOSStudy Number EW-1311
THPFOS
5 091
HILLW75.D OmdL PFOS Study NumberEW-1311
THPFOS
5.084
HILLOQ76.D OrnQIL PFDS Study NumberE00-1311
THPFOS
5 W2
HILLW77.D Omqll PFOSStudy NumberEW-1811
THPFOS
0
HILLW78.D ompllPFDS Study Number EW-1311
THPFOS
0
HlLLW79.D 5 ndmL PFOS in MeOH
THPFOS
5.085
HILLO08O.D 250.5 n@mLPFOSin MeOH
THPFOS
5.091
Amount
831638
254
645717
254
845296
254
691267
254
895152
254
904138
254
908952
254
715231
254
840577
254
843047
254
941520
254
937854
254
852429
254
688430
254
9iim7
254
919538
254
918088
254
732339
254
864599
254
844692
254
809811
254
672W
254
880662
254
872477
254
808071
254
808820
254
809437
254
648037
254
853122
254
888881
254
854113
254
700905
254
1281548
254
999732
254
916425
254
1282301
254
1283570
254
1122340
254
1275724
254
1295458
254
0
0
0
0
1122048
254
1051408
254
ISTD>130%
ISTDrlM% ISTD>130%
ISTD>130% ISTD>130% ISTD<70% ISTD<70%
Compound N a A T PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
A 5.329
5 33 5 323 5 322 5 323 5 333 5 328 5 322 5 329 5 321 5 323 5328 5 329 5 328 5 318 5 322 5 323 5 323 5 324 5 319 5 322 5 315 5 322 5 315 5 322 5317 5 322 5 323 5 322 5 315 5 31 5 315 5 308 5 31 5 312 5 307 5302 5 301 5 304 5 303 5 297 5 295 5 295 5308
m
Amount
1594908 91.89164
1 0 H W 5876517
1801969 1024878
4370912 326.6226
789270 41 74738
988799 51.74131
730034 38.024
?an?dn1 2?dRsn?
1682254 96.60648
2112598 121.2132
112770 8.100833
4597708 247.11%
1619584 91.01251
4093813 305.1053
1001788 52.07933
998187 51.3553
998588 5167698
3717782 2586704
780291 40.69207
213559 12.2533
113509 7.04131
3059833 228.1126
1099W 8.465906
4451710 258.0898
W 1 2 9 437.9532
7503267 533.5302
6451764 423.3709
8372595 746.0709
1011146 5623727
1599452 8808401
1587814 87843%
4173504 305.6482
542210 20.16817
103957 5.373168
4290803 235.5874
144727 5.782359
92058 3.88763
2467820 105.8252
19188 1.282508
11715 1.007175
11778
0
2280129
0
95065 4.488151
4[182781 191.3037
122.0% 980%
129.3% 103.0%
107.5% 94.0%
89.7% 76.4%
page 2 of 2
BACK TO MAIN
s"
Samph BatchRO10310.b, -1yz.d on Rush Stmdad c u m rangeusedlor ulibntion ol BPChmethod RO1032Om
Ini Daw
Batch
32Oml 1(:17 D.\ChemRushWlO320.b
MM)l 1431 D:Mem\RWW010320.b
MM)1 14.45 D.MunWushW010320.b
YiOlOl 1459 D \Chcm\RushWOl032O.b
320101 15 14 D \ChemlFlurii~OiO:Z8.D
3120101 1528 D!Chem\RushW0103ZO.b
VZOMl 15 42 DlChemIRurh\RO1032Ob
SunpTyp SAMPLE CAUS-1 CUlS-2 CALIS-3 C.*L!E-4 CWB-5 CUB 8
Fila RUSHWl8 D RUSH0019.D
RUSHW2O.D RUSHW21.0 RUSHW.D RUSHW23.D RUSHCQ24 D
0 WmLPFOSin MeOH 2.5 nohnL PFOS n UIOH 5 WRd. PFOS in MeCH 10WmLPFOS MIOH
25 WmLPFOS b M a
40 WlmL PFOSn YO6
5 0 W a PFOShMIOH
32Wl 1811 O\Cham'Rurh~01032Ob CALlBI8 320101 1625 D`ChemWushROlOM b CALlE 9 32Om1 1640 O:!Chcm\RurhU7010320b SAMRE
Y201011654 D:\ChcmRurhWlO32O.b w e - 1 0 32010117.09 D:\Chsm~hW010320.b SAMPLE M l l O l 1620 D:\Chun~~ushW0103ZO.b SAMPLE
3/21/011635 D\ChemWuSh\ROlO320b cws-11 CALlB_l2 CUlS-13 CUB-14
3/21/01 1732 D `ChemWushWO10320b CALIB-15 wimt 1746 01~hem~ush\~o10b320CUlB-16 ~ m m18i 01 D'ChrmRurhY1010320b wus-17 32110118 15 0 \ChcmlRurh\R010320b CALM-1 8 3121I011829 D \ChcmWurhWOlOM b CALIS-19 3R11011844 D \ChemWulhWOlO320b SAMPLE 32181 18 58 D \Chcm\Rurh\ROlO320b CALlB 20
M1m11912 D\CMmWushWO10320b SAMPk
RUSHWSD RUSH0027 D RUSHWZLID
RUSHW23 D RUSHOOM D RUSH0127 D
RUSH0128 D RUSH0129 0
RUSH01300 RUSH0131D
RUSH0132D RUSH0133 D RUSH0134 D
RUSH0135 D RUSH0158 D RUSH0137 D RUSH0138 D
RUSHO139D
lOO&LPFOSinMeOH 250 WmL PFOShMsOH 4W WmL PFOS h MaoH
500 WmL PFOS in Ulon
1WZnpllnLPFOShlMaOH 0 WmL PFOS in MeOH
2 5 w+Wd, PFOS h Id& 5 nplmL PFOS In UsOH 10WmL PFOSn UaOH 25 WmL PFOS in Ucon
40 w a PFOS in UM)H
50 r@Pa FOSn UaOH 75 WmLPFOSn MaoH 1WWmLPFOSflMsOH ZSOWmLPFOSbMeOn 4Wr@mLPFOSmMsOH 5CQWmLPFOSlnMeOH
lw2ipl~rLPFOShMeOH
, m L . MIUi u IInn compoundNaRT
Ama
THPFOS
5.517
THPFOS
5 496
MPFOS
5 A94
THPFOS
5.495
THPFOS
5.498
TYPFOS
5.494
THPFOS
5.495
THPFOS
5.496
THPFOS
5.503
THPFOS
5.49
WFOS
5.489
THPFOS
5.498
THPFOS
5 495
THPFOS
5.515
THPFOS
5 512
THPFOS
5.m
wFos
5.497
mpws
5.4m
THPFOS
5.4m
THPFOS
5.M2
THPFOS
5.49
THPFOS
5.484
THPFOS
5.461
THPFOS
5.494
THPFOS
5 481
THPFOS
5.485
1WlW 1W171 lW8872 1Do9ua1i
1WOOM 1108159 it06726 1104875 1112297 1114997 953251
962546
p691sd 960982 9511214
951m
948455
94421 94719 9389a2 9375011 931253
925949
COmpoundwr
A-
&mount
PFOS
0
0
0
PFOS
5.708 128796 1.792859
PFOS
5.704 203193 4.1851102 84%
2%
PFOS
5705 3YIW 9.517807 os%
W
PFOS
5.713 85778 28.7BM 107%
2%
PFOS
5.7M 1315734 43.05413 1OIx
ij;
PEDS
5.719 1620397 54.18483 IOlY
254
PFOS
5.72 22923S4 W.3aGi iliii
2%
PFOS
5.72 2972281 105.9074 W X
w
PFOS
5.707 6Mo194 2B3.4ouI 106%
254
PFOS
5.708 9479889 421.7312 106%
254
PFOS
5.7W 113Cd172 524921 106%
254
PFOS
5.712 19398403 1093.974 10%
254
PFOS
0
0
0
254
PFOS
5.729 118137 1.935808
w
PFOS
5.715 17683 4.131231 83%
254
PFOS
5.715 295223 8.741336 87%
254
PFOS
5.715 672893 23.-741
M%
254
PFOS
5.713 1028746 36.41873 %%
254
PFOS
5719 12592Ml 18.22542 I%
254
PFOS
5.707 1807434 12.4196 %%
254
PFOS
5.712 2314201 951839 (6%
254
PFOS
5.705 4oW995 zU.5876 83%
254
PFOS
5.711 7221977 3 6 7 M 7 91%
254
PFOS
5.890 m i i i s 8 44.2154 S I %
254
PFOS
5702 14684001 959.5687 %%
1331499 +30%: 716961 -30%.
lnl Kuw
Batch
YPOIOI 13 46 D!ChsmWuYI\R010320b
MOIO11402 DUhsmWush~OlO320b
32OIOl 1723 D Chem~urhWOlO32Ob
3ROIO11757 DIcMm~ushW010320b
31zM)120 44 D \CMm\RushH010320 b
32OlOl 20 58 D \ChemRuShWO10320b
3R1101005 D \ChemWuShWOlOUOb
3/21/010 19 D IChcm~urhWOl032Ob
321101326 0 \ChemWurhbQO10320b
VlrlOr 3 "7 D_ IC~m.LQuSh~O103b20
~ 1 / 0 1487 DU)hemW1~rh\RO1032b0
3/21/017 01 D!ChhemWuShWO10320b
3/21/011007 D IChem\RurhWOlO3ZOb
3R11011022 D uhcm~RushWOlO32b0
3/21/011300 0 \ChemWushWOl0320b
YZllOl 13 14 D \ChemWushW010320 b
3/21101 1552 DChsmWYSh\R010320b
_ V21m.l 16 OB 0 Mem\Rush\ROlO320b
3n1I01 19 27 D \Chun\RushWO10120b
SAMPLE SAMPLE S.AMPLE
~~
SAMPLE SAMPLE SAMPLE
SAMPLE SAMPLE
SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
Fih RUSHW18.D RUSHW17.D RUSHW31.D
RUSHW32.D
RUSHMY5.D
RUSHOM6.D
RUSH(1059.D
RUSHW60.D RUSHW73.D RUSH0074.D RUSHOMI7.D Rusma.o RUSHOlO1.D RUSH0102.D RUSHO113.D RUSHOll4.D
RUSH0125.D RUSHO1ZB.D RUSHOl4O.D
SMlPk Nm TUA4802 W O H RCA 4@Q2MeOH RCA 4802W O H TN-A 4WZ M& TKA 4 W MaM1 TKA48GZMaOH TKA 4802MsMl TN-A 4802 MeW TN-A 4602 MIOH TN-A 41102 M& TK* 1802M a TN-A 4102 M8Ml RCA 41102 MsDH
TN-A 4802 MaMl TN-A 4802 MIOH TUA 4802 MIOH TN-A 4802 MIOH
TNJL 4802 MMlH
TN-A 4802 MoOH
Mlrc In compound NaRT THPFOS
THPFOS
THPFOS THPFOS THPFOS THPFOS THPFOS
mpws
THPFOS THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
AU 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
*Rlo"nt
0
0
0
0
0
0
0
0
a
o
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
C m P,undN.nT PFOS PFOS PFOS PFOS PFOS PFOS
PFOS PFOS PFOS PFOS PFOS PFOS
PFOS PFOS PFOS PFOS PFOS PFOS PFOS
Am,
5.7%
5.733 5.719 5.718 5.704 5.701 5714
57W
5894 5897 5715 5712 5733 5727 5733 572 5741 574 5718
Amount
Mno
0
33969
0
53624
0
36113
0
y8u
0
30908
0
37789
0
33871
0
4m9
0
35794
0
41264
0
36212
0
U171
0
38719
0
soM2
0
42724
0
46381
0
42881
0
594w
0
0
-h
-4
w 0
BACK TO MAIN
R010320 dsta ewO.*
In1 Dab
Each
3R0101 1732 D:\ChemU7urh\R010120b
S ~ P T Y P FN.
Sample NU~Y
SAMPLE RUSHW33.D 13111-506653
M O l O l 18.08 D.\Chsm\RurhW10320.b SAMPLE RVSHW34.D 13115066MSS3
3lZOlOl 1820 0 ChemWurhiRO1032O.b SAMPLE RUSHW35.D 1311dlWS3
3RDIo1 18.55 O.\Cham\RRurh\RO1032O.b SAMPLE RUSHW36D 1311~510153
yzO/O1 18.49 O.Ehem\R~hUtO10320.b SAMPLE RUSHW17D 1311-5102-S3
3ROlOl 19.03 0 \Cham\Rush\RO10320.b SAMPLE RVSr(Om8D 1311-5102ysS3
W 0 1 19.18 ~
:
~
"
~
,
,
;
~.SA"MPL~E
~RU~SH~00~ 39~D .!l.J~~llS
l
Y-
I
~-s3 ~
.
~
Mol011932 O:\Chem\RushU7010320b SAMPLE RUSHOMO.0 1311-5iSi-S3
UZ0101 W48 D:\ChemWush\R010320.b SAMPLE RUSHWI1.D 1311-5138-S3
300101 X.01 O.Mm\Rurh\R01032O.b SAMPLE RUSHOM2.D 1311-51JM16s3
32010120:15 O:Ehcm\Rwh\R010320.b SAMPLE RUSHOM3.0 5 DplmL PFOS h M6W
M O l O l 2029 O:\Chem\Rurh\RO103ZOb SAMPLE RU5HW.D ZMnglmLPFOShMsOH
312010121:12 D:\Chem\Rwh\RO1OUO.b SAMPLE RUSHOM7.D 1311-5172-53
312OiU1 21:27 D:VlhemU?urh\RO1OUO.b SAMPLE RUSHO(U8.D 1311-5171.51
MOmlZl:41 O:!Ch~wh\ROlOUO.b SAMPLE RUSHOM9.D 1311-5174-53
312010121:55 D~MmWushWO10320.b SAMPLE RUSHW5O.O 1311-5174ussJ
3220101 22'10 O'\Chem\RUSh\R010320.b SAMWE RUSHW5l.D 1311-52WS3
SAM=
RUSHOOU.0 1311-520453
312010122 38 0 \Chem\Rush\RO10320b SAMPLE RUSHDO53.D 1311-521053
M O I O 1 22 53 D Chsm\RurhU7010320b SAMPLE RUSHW54.D 1311-5210MS-53
312010123 07 D Chm\Rurh\RO10320b SAMPLE RUSHW55D 1311.503153
3120/012322 OEhem\Rush\R010320b SAMPLE RJSHWSBD 1311403253
uZM)123 36 D\ChemY(ushYIO1032O b SAMPLE RUSrK)IUI0 5 9 m i PFOS h USOH
U2.0M12- 3 50 D\Chem\Rurh\R010320b SAMPLE RUSHWSD 250 d m PFOSn UaoH
3211010 33 D\Chem~hW01032b0 SAMPLE RUSHOOBI D 1311-&3-S3
MI101048 D:\Chem\Rurh\RO1032O.b SAMPLE RUSH00620 1311-5033MS3
M i 1 0 1 192 D:\Chm\RurhY(010320.b SAMPLE RUSHW63 D 1311--7.53
3/21/01 138 D:\Chem~urh~O1032O.b SAMPLE RUSH- D 1311-5WS-S3
3211011.31 D:\Chem\Rurh~O10320b SAMPLE RUSHW650 1311-546BS3
Ml1011:45 O.\Chem\RurhRO10320.b SAMPLE RUMOS50 ll11-508oHs-s3
31211012.00 D.\ChemlRushROl0320.b SAMPLE RUSH00870 1311-5103S3
V211012 1 4 0 \Chcm\R~urhR01032b0 SAMPLE R U S H W D 1311-51ocsJ
3/21/01 228 D\Chem\R~1h\R010320.b SAMPLE RUSHUC69D 1311-510553
3/211012:43 O:\Chsm\Rurh\RO1O320 b SAMPLE RUSHOO70.D 1311-5105M653
3/21101 2:57 D:!ChemHushbQO1032O.b SxMPLE
M l l O l 311 D.\Chem\RushW10320 b SAMPLE
3/21/01354 D IChemRurhkQ010320b SAMPLE RUSH0075.D 1311~139S3
3/21/01 4.09 O.Ehem\Rush\R010320.b SAMPLE RUSHW76.D 1311-514C43
3/21/01 433 O:\ChemWurh\ROlO3ZO.b SAMPLE RUSH0077.0 13115141-S3
3/21/01 4:s D'\Chem\Ruih\R010320.b SAMPLE RUSH00780 !311-5141MSS3
3R1lOl 4 5 2 D'\Chem\Ruih\R010320.b SAMPLE RUSHOO79.D 1311-5211-53
M1101 5.08 D:!Chem\RushlR01032O.b SAbWLE RUSHOO8OD 1311-5212S3
3R11015.21 O \ C h e m ~ u r h ~ 0 1 0 3bX SAMPLE RUSHDO81D 1311-521SS3
x i m i 5.35 D:!Chsm\RuShlR010320.b SAMPLE RUSH0082D 1311-5213M-S3
3R11015:ls O:\Chem\Rush\ROlO320.b SAMPLE RUSHODLUD 1311-50%-53
31211016.04 D:\Chem\Rurh\RO10320b SAMPLE RUSH0084D 1311-503553
SAMPLE RUSHOW50 5 Wn'L PFOSin MtOH
sr\MPLE SAMPLE
RUSHOM6D 250 nglnk PFOSin MsOH RUSH0089 D 13~t.y1?&S~ 3 .
3
SAMPLE RUSH0090 D 131l-M16M5S1
Mirc In Canwund NaRT
Am.
lWiOS
5.49
5.489
MPFOS
mwos
5.483 5.w
THPFOS
5.482
THPFOS
5.m
THPFOS
5.481
THPFOS
5.489
THPFOS
5.468
THPFOS
5.476
THPFOS
5.474
THPFOS
5.467
THPFOS
5.473
THPFOS
5.47
THPFOS
5.474
THPFOS
5404
MPFOS
5.47
MPFOS
5.474
THPFOS THPFOS
5.484 5481
MPFOS
5.494
THPFOS
5.404
THPFOS
5.484
MPFOS
rnm
THPFOS
5.481 5 18 5.474
WFOS
5.474
MPFOS
5 474
THPFOS THPFOS
5 472 5 472
THPFOS
5 474
THPFOS
5.489
THPFOS
5.46
THPFOS TWFOS
5.469 5.467
mpws
5.46
THPFOS
mwos
5.460 5.46
THPFOS
wms
THPFOS
5.468 5.4e7 5.482
THPFOS
5.474
WFOS
5.476
THPFOS
5.48
MPFOS
5.507
THPFOS
5.5
THPFOS
5.498
WFOS
5.404
lUPFOS
5.487
THPFOS
5.482
1141140 972009 11W7 1149419 1150191 971562 1143798 11455oM
,I.e,".n"..7,.
963588 lll8533 11W
1129661 1115042 11MW
929428
1392W
1m5d 1290165
1042UM 1189027
1136514 1112285 109039 1119517
025302 1mw2 1103798 1103738 918M 1094801 1093215 llO8623 886016 1076701
108(1295 1114973
1101102 lW8M1 904101 1297195 1309423 1316725 1041110 1163007 1101oQo 1083524 10715d3 1075235 892740
254
PFOS
254
FFQS
w
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
- %A.
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
w
PFOS
254 ISTDrl3W PFOS
254 IsTD>luI% PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
PFOS
254
PFOS
254
PFOS
2%
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
w
PFOS
zn
PFOS
2%
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
w
PFOS
254
PFOS
254
PFOS
254
PFOS
w
PFOS
5.7 5.713
5.7 5.701 5.692
5.8W 5.698 5.706 5.696 5m
5.891 5684
5.69 5.07 5.884 5.688
5.60 5.691 5.701 5.6M 5.718 5.711 5.708 5.705 5.897 5.898 5.692
5691 5089
5889 5.691 5.8s
5.69 5.670
5.084 5.877 5.876
5.67 5678 5.677 5.879
5.868081 5.891 5.724 5.717 5.715 5.701 5.704 5.699
8 3 7 ~ 0318.52%8
11297958 62U.7308
1Od30182 467.7081
89ZOlW 371.419
11003403 485.0679
14356682 869.5144
18281734 823.9011
1-125 S1.0889
.--. 18715781 972.5325
zi<--,= .*IM . I
0-4-
a",
240390 5.337948
6190150 2a.3279
11805872 532.2045
ionwi 491.843
10755750 4M.17W
13780741 873.3741
OW2U 332321 737W16 244.5963
7352450 251.8495
10536384 521.0775
284331 6.217634
83M 5.939702
197941 3.M2167
6080384 245.5533 1ini6 7871924
~~
4503593 210.2697 7145884 2981447
8x8381 %0505 7016805 337w2
11534808 697.0305 181WW 870.1489
15234507 841.5557
14183081 713.1438 18427112 1394.184
ZMPBO 5.m.w
5 8 5 ~ 5 1242.332i
27484446 1828.784 2631M68 1743.W
ZMo1434 1676.89
2 ~ 4 0 7m2.41
12510860 400.M51
14227W1S08151 450647.783b4S70
18461602 955.5121 786091 21.65781 570479 16.95932 194667 4.0295 5756H8 236.5543
1 3 7 m 46.22885 -3642 252.5315
1038% 90.1%
792% 98.6%
10Bm 96.7%
80.5% 94.4%
4
w 0
BACK TO MAIN
3121101744 D:\ChrmbQurh\ROlOUO.b SAMPLE 51211017-56 D.~hcm\Rush\R01032O.b SAMPLE 3R1101&13 D'\Chem\Rush\R010320.b SAMPLE 3121101827 D.\ChcmV7LnhVN)lO3ZO.b W L E 3 , i i i i i 6.4: D~Gti:;~~.?nrh!.?,\P.n*MXb, SAMPLE
3Rl1018:s O:\Chem\R~sh\R010320.b SAMPLE 31211018.10 D'\ChCmWUlhRO10320b SAMPLE 31211019 24 D \ChsmWushWOl0320b SAMPLE 3R1101819D - ~ ~ u s h l Q O l O SbAMPLE Ml1019:53 D'\Chtm\R~h\RO10320.D SAMPLE
MI1011036 D:\Chem\RushROlOM.b SAMPLE 31211011031 D.\ChemlRushVMl03M.b W L E
312110111:05 D:\ChamlRwh\ROl@M.b SAMPLE 3/2110111.19 D:\Chsm\Rush\R010320b SAMPLE
31211011133 D:lChnn\Rurh\R010320.b MMPLE
3121101 11:48 D:~hem\RushU701032O.b SAMPLE
3121101 1202 D:Chrm\Rush\ROlOUO.b SAMPLE
M l l O l 12:18 D:Uhcm\Rush\ROl0320.b SAMPLE UZ11011231 D:\Chem\Rush\RO10320.b SAMPLE 3121101 1245 D:\CMm\Rulh\R010320.b SAMPLE 3R1101 13.28 D.~hem\RurrhVN)lO32o.b SAMPLE .3iZ-lMl 1313 D-\Chem\Rur~W01. 0.32b0 SAMPLE 5121/011357 D\Chem\Rumh\ROl0320b SAMPLE M l m l 1411 0 \Chem\Rurh\ROlOMb SNdPLE
3RtDI I 4 zb 0 lChemlQuhlRo103Mb SAMPLE 3RliVl 1440 OUChemWIPhR010320b SAMPLE 3RliUl 1454 D\Chem\RuSh\RO10320b SAMPLE VZllOl 15W D\Cham\Rush\ROlO320b SAMPLE
51211011523 D ~ h ~ \ R u S h ~ O 1 0b3 2 0SAMPLE 3/211011537 D \ChsmWurhR010320b SAMPLE
RUSHWO1.D
RUSHOW2.D RUSHOOB3.0 RUSH00M.D
RUSHWO5.D
RUYXI0QB.D
RUSHWO7 D RIJSHDW8.D
RUSHWS9.D RUSHO1W.D RUSHO103.D RUSH01M.D RUSHOlO5.D RUSHO10B.D RUSWl07D RWO108.D RUSHO1W.D RUSHOl1O.D RUSH0111.0 RUSHO112.D RUSH0115.D RUSHOll6.D RUSH0117.0 RUSHOll1.D WSHOll9.D RUSHO1I.D RUSHO121.D RUSH0121D RUSH0123.D RUSHO124.D
1311417CSY '
1311-517653
1311-517763
1311.5177M553
1311407US3
,3.,,.54.7t.s..
1311.507263
1311-507ZMSS3
5WmL PFDSn UCOH
25OnplmLPFOSnMeOH
1311510653
1311-5107-Y
1311-510bU
1311-5108Ms53
1311-5141Y
1311-514153
1311-51U53
131141UMS-S3
5-
PFOS h W
250 WmL PFOS h YSOH
1311-521-3
1311-521563
1311-52lbs3
1311-5218MSS3
1311-517bS3
1311-517ES3
1311-518oS3
1311-5180MSS3
5 WmL PFOS h MEOH
250 npmLPFOShI h O H
Roll
THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS THPFOS
ms
THPFOS THPFOS THPFOS THWOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
mwos
THPFOS WFOS THPFOS
wws
1WFW THPFOS
mwos
THPFOS THPFOS THPFOS
54 n 5.48 5.401 5.474
5.46 5.482 5.467 5.46
5.411) 5.4M 5.408 5.471 5.487
5.443 5.479 5.487 5.495 5.4%
5.505
5.494 5.475 5.494 5.495 5.495 5.495 5.489 5 495
5.502 5.507 5.518
594727
..sa5323 9389 565G 485275 1M3914 1030333 M7518 575234 5757B5 479125 562160 561713 562359 469121 lW716l 98(1753 5..979.Y)~ Mllll 602126 4939a2
980810 W5254
w isrnm% PFOS 254 i s w m % PFOS
254 I S P 7 0 K PFOS 2.5_ 4 ISnX7.0.%.~P. .FO.S.
254 ' 1 s r n < 7 ~PFOS
2% ISW70K PFOS
2~ !~lrrm*PFOS
254 1SlD<70% PFOS
2%
PFOS
254
PFOS
254 1sm70% PFOS
254 ISTW7OK PFOS
254 ISlW70% PFOS
2-5.4 lS.m. r7M.L PFOS.
254 ISTLX70K PFOS
254 ISlDC70% PFOS
2% ISlW70% PFOS
254 1Sm70% PFOS
254
PFOS
w
PFOS
254 ISmC7OX PFOS
254 ISm70% PFOS
254 ISmC70% PFOS
254 ISm<70% PFOS
2% ISm7ML PFOS
254 ismmx PFOS
2% ISlW70% PFOS
254 1SW70% PFOS
254
PFOS
254
PFOS
5.887 5 89 5 871 5.671
5.80
5.892
5.697 5.883
5.705 5.705 5.871 5.895 5.897
5.m3 5.807 5.705 5.705 5.7w 5.729 5.704 5.678 5 e97 5.705 5.705 5.705 58s 5.705 5.712 5.732 5.733
12484311 1436.243 13594800 18720(3 12514644 1471.1i47aiuo 2m.m lBW7M 2244559
209BSBLll 3271.008 21MUMo -3i.245
224W3 5.311072 55711114 235.7W 18483579 2811.823 219w531 3511.765 22W2831 379.179 25723514 6353.82 435951U 12220.39 45427123 12Mll.l 4 0 8 8 8 1 ~10776.50 41017544 14983.72
23695132 3809 243 2431wM 5515.218 tW24.3 d22oM5 13542180 8755.161 15594555 9159.363 i .w i. 3 m.w.e 5
203wO 5030218 5141212 W . l U 1
5 UL INJECTIONVOLUME 5 UL IkECTION WLWE 5 ULINJECTIONVOLUME 5 UL INJECTIONVOcUME 5 UL INJ- ECTIO. NYOCUME 5 UL INJECTIONVOLUME
5 UL INJECTIONVOLUME 5 UL !???ECTIONVOLUME
i m2%
95.3%
5 UL INJECTIONVOLUME 5 ULINJECTIONVOWYE 5 ULIMJECTIONVOWME 5 ULINJECTIONVOLUME 5 UL INJECTIONVOLUME
5 UL INJECTIONVOLIJMi 5 ULINJECTIONVOLUME 5 ULINJECTIONVOLUME 157 0%
M9U 5 ULINJECTIONWWME 5 UL INJECTIONVOLUME 5 ULINJECTIONVOLUME 5 UL INJECTION VOLUME 2 UL INJECTION VOLUME 2 ULINJECTIONVOLUME 2 UL INJECTION VOLUME 2 UL INJECTIONVOLUME
lWI%
93 5%
Page3 013
BACK TO MAIN
Sample BatchHO1DW.b. anaiyuQ on Hillary C+OW1. PFOSAdswbmson umplrr. Matrix SoivSidSesl. Sundard CUM nngs used iorulibntionol samples: 10-1002ndmL Batchmethod: H010405.m (axt.nul SlandardQuad)
14 Dab
mlch
- m p m FU.
SamphNum
Misc
4 m l 12 53 0 @hemWdh#yWOlW5b SAMPLE HILLW16.D 0nMmLPFOSinMaOH
416l01 1308 0 EhamW~Ua#y\HolMob5 CWB-1 HiLLOOl7.D 2.5n#mL PFOSInMeOH
4'clCr *I21 83 LClumWlliaryWOlMO5b CUB-2 HILL0018D 5 r@mL PFOSin MsDH
U6M113 36 D EhemVidIaryVIOlM05b CALIB-3 riLL%iS D :C a#m- PFOSmUsOH
1/6/0113 51 DUhemWiliaryWOlMO5b CALIE-4 HILLW20.D 25 WmL PFOS inMLOH
4iBm114 05 DIChemWdaryWOlM05b SAMPLE HILLW21.D 40n#mLPF0SinM10H
4Ki01 14 20 D UhemWdW!HOlMosa CALlE-5 HILLWZ.0 50.1 nphnLPFOSinMeOH
4l6M114 34 D UhcmWlsryWOlMOs b CALIB-6 HILL0023.D 75 1ngmL PFOSinMeOH
4 m l 14 48 DUhemWdlaryWOlMOSb W B - 7 HiLLW24.D 1032n#mL PFOSlnMsOH
4iBml 15 03 OEhemWtUaryVIOlMOSb CUB-8 HILLW25.D 250.5 ndmL PFOSin McOH
446m115 17 D U l n m W d l a ~ O l M 0 5 b SAMPLE HILLW26.D 4w.8 nofmL PFOSfflMsOH
4 I o I 1531 D EhemWtUa#y\HOlM05b CALlB-9 HlLLW27.D 501ngmlPFOSinMsOH
4 0 1 1546 DIChemWdlaryWOlMOSb CALIB-10 HILLW28.D 1W2ngmL PFOSmMsOH
4I7ml4 57 DIChsmWdary!HOlMO5b SAMPLE HILLW83.0 0n#"d. PFOSinUsOH
4nm15 11 DChemWlaryWOlMO5b CALlB-11 HlLUXlMO ZSng/mLPFOSinM&H
417101 5 26 D IChemW~llsryWOlMOSb CALIB-12 HILLW85.D 5 nglmLPFOSinHsOH
417101 5 40 DUhcmWllrryWOlMO5 b CUB-13 HiLL0DBg.D tOn&LPFOShMsOH
4nmi 5 55 D UhemWillaflOlMOs b CALIB-14 HlLLW87.D 25 ngmLPFOSin MoOH
4I7ml6 W 0 EhemWvKiflOlMOs b SAMPLE HlLLOO88.D 40 ndml PFOSinMsOH
4I7lal6 23 D UhemWdlnryVI010405b CAUB-15 HlLLW89.D 50.1 ngrmL PFOSmMeOH
4/7/016 38 D !ChsmWlllaryWOlMOSb CALlE-18 HILLOMM.0 75.1ngmL PFoSmMcOH
Mi01652 D!GWmWlUBlyWOlM05b CAlIE-17 HILLW91.D 1W.Z n#mL PFOSinMeOH
4nl01 7 07 DUhemWllaIyW0lM05 b CUB-18 HILLW92.D 250.5 WmLPFOSinMeOH
4nmi 7 21 D \chemWilla#yWOlMo5b SAMPLE HILLOW3.0 400.8 nplmL PFOSinMeOH
401017 35 D EhcmWllsryWOlMo5 b CUB-19 HILLCV94.D M1nprmlPFOSIn MsOH
4n1017 M 0 EhemWcil~ryVIOlMo5b CALIB-20 HlLLOO95.D M1 n#mL PFOSinMoOH
Inj Dah
Salch
-mpTn ).
4WOl 1225 D.UhemW#tlsMlMQ5.b SAMPLE
4 m 1 12.39 D.lChsmW#llrMlMO5.b SAMPLE
4Kml 16.W O.UhemWiaryVIOlMo5.b SAMPLE
41610116.14 O:UhemWlls~W010405b SAMPLE
4m01 1921 D.IChamWillsryVIOlMO5b SAMPLE
4 m 1 1938 D:IChamWillsryWOlMO5.b SAMPLE
44616101 2243 WUhemWilla#yWOlMo5.b SAMPLE
4 0 1 2257 D.UhemWilla#yWOlMO5.b SAMPLE
4nmi 1.50 D.UhemWitlls~OlMob5 SAMPLE
4i7m12M D\ChemUlluyV(010405.b SAMPLE
4nm1428 D.\UMmWlaryWOlMOSb SAMPLE
4Umi 4:43 D:\CChmWUBryWOlMO5.b SAMPLE
Wml 8.M O:UhsmWillsryWOlMO5.b SAMPLE
4 m O l 818 D:UhemW~ilaryWOlMo5.b SAMPLE
File HILLO014.0 HILLWl5.0 HlLLW29.D HlLL0030.D HlLLWU.0 H1LLWU.D HILLrn7.D HlLLW58.D HiLLW70.D HILLW7l.D HiLLOOII1.D HILL0082.D HILLW%.D HtLLW97.D
%mph Nam TN-A 4802 MeOH TN-A4MIZ MsOH TN-A 4802 MsOH TN-A4802 Mdw TN-A 4602 W TN-A4802 MsOH TN-A4802 MsOH TN-AWZ MuJH TN-A4802 MuJH TN-AUIOZ MsOH TN-Am2 MaOH TN-A 4802 MoOH TN-A 4802 MUJH TN-A48CQ MuJH
C'.
CompovndNlRT
Am.
THPFOS
5.111
THPFOS
5.121
THPFOS
5.12
THPFOS
5.107
,nrrOS
5.105
THPFOS
5.121
THPFOS
5119
THPFOS
5.121
THPFOS
5.119
THPFOS
5.112
THPFOS
5.111
THPFOS
5.112
THPFOS
5.113
THPFOS
5.098
THPFOS
5.092
THPFOS
5.098
THPFOS
51
THPFOS
5.106
THPFOS
5.101
THPFOS
5.1
THPFOS
5.101
THPFOS
5.1ffi
THPFOS
5.107
THPFOS
5.105
THPFOS
5.104
THPFOS
5.lM
Amount
853901
254
880305
254
9W514
254
aueui 2%
ai555
zn
wsm 2%
905309
254
901966
254
902928
254
921590
254
890229
254
885051
254
sa46 254
909918
2%
9012m
254
907830
254
893968
254
866284
254
854070
254
848217
254
818488
254
BZ4MO
254
839800
254
7955041 254
790146
254
796759
254
CwnpoundNafiT PFOS PFOS
PFOS PFOS PFOS
pros
PFOS
PFOS PFOS
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
0 5.331
5.33 5.324 5.323 5.331 5.33 5.331 5.329
5322 5335 5.322 5.33
0
5.302 5.301 5.31
5.318 5.311 5.31 5.311 5.-
531 5.508 5.314 5.314
Aru
Amount
0
0
4194
0
1 1 m 2.152886
189968 8.660505
495541 Z4.6wg2
779774 11.55324
971274 U.01579
1469171 83.12445 1921199 110.8424
4651125 285.888
6791612 432.6167
8184382 532.4149
1467135E 1059.765
0
0
53650
0
95517 1 . 1 W
158439 4.812732
425595 20.52568
875739 35.35248
847857 45.620%
1276693 71.55369
1665685 95.12872
4111457 250.3098 6oM617 377.7554
7263676 466.0545
1 ~ 1 4 7 4m . 2 3 n
1133377 +30%: 610280 -30%:
43% 67% 99% 104% 106% 111% 111% 114% 108% 106% 106%
23% 48% 82% 88% 91% 95% 95% 100% 94% 93% 52x
Compound w.RT THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
AN 0 0
0 0 0 0 0 0 0 0 0 0 0 0
AWnt
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Compovnd NaaT PFOS PFOS PFOS PFOS PFOS PFOS
PFOS PFOS PFOS PFOS PFOS
PFOS PFOS PFOS
Ana 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Amounl '
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
BACK TO MAIN
I"j Dala
Batch
SmPTYp.
4/6/01 16:29 D:ChemW~llsrv\HOlMO5.b SAMPLE
4151011643 D:ChamWdnryW01M405.b SAMPLE
4/6/01 1658 D ChemW1Uarv\HolMo5.b SAMPLE
y6H)l 17:12 DChsmWilla~WOlMO5.b SAMPLE
4&91 17.26 D !ChemWillarvWO1MO5.b SAMPLE
416m1 17.41 uu;n~m'~;I~-"~"~Ob1a?SoAsMPLE
416101 17.55 D.ChcmWtUaryWolMO5.b SAMPLE
416101 18 W D.ChamWiUaryWOlMO5.b SAMPLE
uM)1 18.24 D:~hsmWillaryWO1MiJ5,b SAMPLE
41610118.1 D.ChemWdl~OlMiJ5.b SAMPLE
.wemi ia:52 D.ChsmwUaryWOlMOlb SAMPLE
4I66x)I 19:07 D:ChcmWtllarv\HolMD5.b SAMPLE
4,616101 1950 D:ChemWiUaryWOlMW.b SAMPLE
416101 20.M D C h e m W # w W O l ~ . b SAMPLE
41610120:19 D:ChcmWdla~Wo1MW.b SAMPLE
4161012033 O : C h e m ~ U a r y W o l ~ . bSAMPLE
4K1012048 O:ChemWiUsryW01Ma5.b SAMPLE
41610121:02 DChemW~llsrv\HOlMO5.b SAMPLE
416101 21:16 DChemWill~~WOlMOb5 SAMPLE
416101 21.31 D.ChsmWillaryWO1MO5.b SAMPLE
416101 21:45 D.ChamWillawWOlMO5.b SAMPLE
416101 2159 D.ChsmWdswWOlMO5.b SAMPLE
UMH 2214 D ChemWillawWOlMa5.b SAMPLE
m o i 22.28 D:CbmWdla~WOlW5.b SAMPLE
UMIl 23.11 D:\Ch~mWillaryWOlMO5.b SAMPLE
vM)l 23:26 WChemWillwWOlMO5.b SAMPLE
UFJOl 2340 D.ChcmWillawUiOlMO5.b SAMPLE
41610123'55 D:ChsmWillawWOlMO5.b SAMPLE
4/7/010:09 DChsm~dlarv\HOlMO5.b SAMPLE
4nmi 0.23 D.ChsmWillaryWOlMO5.b SAMPLE
tffm10:1 D.ChemWillaryWOlMO5.b SAMPLE
4nm1 0.52 D:ChsmW~llarv\HOlMO5.b SAMPLE
4ffm1 1.07 DChemWillarv\HOlMO5.b SAMPLE
m m 1 121 D:ChemWillarv\HOlMO5b SAJJPLE
4nmi 1:s D:ChamWdIarv\HOlMOSb SAMPLE
m m i 2:ig D:ChemW~llarv\HolMo5b SAMPLE
4/7/012'33 D:lChemUiillaryWOlMO5b SAMPLE
4nmi 2:47 D:\ChemWillaryWOlMO5.b SAMPLE
m m i 3.02 D:ChemUiillaryUrOlMO5.b SAMPLE
4nlol 3.16 D:\ChemWill~OlMO5.b SAMPLE
4nmi 3:31 D:\ChsmWiUuv\nolMO5.b SAMPLE
4nmi 3;45 D.ChsmUiiUaWHOlMO5.b SAMPLE
4nml 359 D:\ChemWiUawYK)lMO5.b SAMPLE
4nml4:14 D:ChemW1U~W01M05.b SAMPLE
Fila
S.mpkNamm
Mac Info
HILL0031D 2mgllPFOSSludyNumbarEW-1311 1311-5M?-Sl
HILL0032D 2r& PFOSStudyNumber001311 1311-5M+Sl
H I L m 3D ZmplLPFOSStudyNumbar EW-1311 1311-504551
HILL0031.D 2r& PFOSStudy Numbar EW-1311 1311-5045MSSl
HILL0035.D lomplLPFOSStudy Numbar EM1311 1311-504951
HiUW1.D 1OmprLPFOSSiudiNumLw Em1311 1311-505asl
HILLoO37.D 1-
HlUW38.D lo&
F i G S i U . + j k 7 k r E-I311 1311-505151 PFOS Stvdy Numbar EW-1311 1311-5IHIMSSl
HILL0039 D 2w PFOS Sludy Elumbar EW-1311 1311-5079.S1
HILWM0.D 2n@PFOSS~NUmbaEWl311 1311-5080Sl
HILLOM1.D 5n#mLPFOSinMEOH
HILLOM2.D 250.5 n@nL PFOSfflMeOH
HlL~W45.0 2mpn PFOSSbrdyNumberEW-1311 i 3 i i . ~ a i - s i
HlLLW46.D 2mWL PFOS S(udyNhlNumbsrEW-1311 1311-5MIlMSSl
HILLW47.D 1hQJLPFOSSbrdyWrEW-1311 1311-M85-S1
lw HILL0048.D lDm~PFOSSlUdyNvmberELW1311 1311-5086Sl
HILLCC49.D
PFOS Sludy Number Em1311 1311-%8731
HILLW5O.D lOmqLPFOSSludyNumberEMl311 1311-5M17MSSl
HILLW5l.D OqJLPFOSStudyNurnbar EW-1311 1311-509131
HlLLW52.D OnWPFOS StudyNumbsrEW-1311 1311-5Os251
HILLOO53.D OmfiPFDs Study Numkr EM1311 131l-Mg3-Sl
HlLLOo54.D CnqRPFOSStudy Number EW-1311 1311-5093MSS1
HILLOo55.D 5 nprrnL PFOS In MeOH
HIUWM.0 250.5 n#mL PFOSin MeOH
HIUW59 D 1OmplLPFOSSW Number EW-1311 1311412151
HILLCWJD 10~PFOSSWNumberEW-1311 1311412251
HILL006l.D lhnonPFOSShdyNumbsrEM1311 1311412351
HILLW62.D l O ~ P F O S S ~ d y N u m t u E M 1 3 1113114123MSSl
HILLW63D lL%n@lPFOSSbdy Numbar EW-1311 1311415751
H1LLWM.D I W L P F O SSudy NumbsrEM1311 1311-515651
HILL0065.D I h w l P F O S Study NvmMr EM1311 1311-515p51
HILL0066.D lL%n@lPFOS Sbdy NumWr EM1311 1311-5159MSS1
HILL0067.D
PFOSStudy NumbsrEW-I311 i ~ i i - s i a i - s i
HiLLW6a.D 5 n # PF~OSin MaOH
HILL0069.D 250.5 nprmLPFOSin MeOH
HILL0072.D ~ L P F O W S NumbaEW-1311 131i-5iaz-si
HILL0373D W L P F O S W Numbar EOC-1311 1311.5ia~si
HILwo74.D ~ P F O s S h dNyumbarEW-1311 1311-5183MSS1
HILLW75D cm#l PFOSSudy NumberEM1311 1311-5199.51
HILLW76.D CmglPFOSSudy Numhsr EW-1311 1311-5200Sl
nlLL0077.D ~PFOsS~dy NumkrEW-1311 1311-520151
HlLL007a.D Om& PFOSSWy Nwnb.rEW-1311 1311-5201MS-S
HILL0079.D 5 ngImlPFOSnMeDH
H1LLWWI.D 250.5nplmLPfOSin MeOH
compound Ndl THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFUS THPFOS MPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
5.112 5.12 5.113 5.112 5.106 5.115 5.1W
ac ., "=I
5.112 5.111 5 113 5 116 5.112 5.118 5.1W 5.112 5.1ffi 5 112 5.114 5.109 5.104 5.wa 5.112 5.098 5.105 5.107 5.105 5.105 5.111 5.105
5.1 5.105 5.098
5.1 5.102 5.097 5Wl 5.091 5.w4 5.092
0
0
5.W5 5.Wl
6452% 691267 a95iu 904138
908952 745233
uosn
643447 941520 937852429
686430 911967 91951 gisffia 732339
864599
BUS92 a9811 672064 860662 872477 W71
808820 a09437 646037 853122 8WI 854113 700905 i2aiyB 999732 918425 12a23ni i2awo 1122340 1275724 12954%
0
0
1122048 i0514oa
lunt
compound h e r
Am
Amt
254
PFOS
5.329
1594W4 8079793
254
PFOS
5.33
1011663 5544188
254
PFOS
5.323
1801969 1034959
254
PFOS
5.322
4370912 267.3979
254
PFOS
5.323
789270 42.1201
254
PFOS
5.333
986788 53.91793
254
PFOS
5.326
73w34 38.58667
254
PFOS
5.322
s a s i 2w.44~
254
WUS
5.32?
1692254 96.75814
254
PFOS
5.321
2112598 122.6887
254
PFOS
5.323
11~7702.13wa
254
PFOS
5.328
459noa 282.43s
254
PFOS
5.329
16195U 92.30717
254
PFOS
5.328
409113 249.139
254
PFOS
5.3ia
iwi7ffi ~ ~ a i a
254
PFOS
5.322
998187 5451181
254
PFOS
5323
254
PFOS
5.323
254
PFOS
5.324
254
PFOS
5319
254
PFOS
5.322
254
PFOS
5315
254
PFOS
5.322
254
PFOS
5.315
254
PFOS
5.322
2%
PFOS
5.317
254
PFOS
5.322
254
PFOS
5.323
254
PFOS
5.322
254
PFOS
5.315
254
PFOS
5.31
254
PFOS
5.315
254 ISTc1130% PFOS
2%
PFOS
5.308 5.31
.
. ..
254
PFOS
5.312
4298803 2526356
254 ISTD>13w( PFOS
5.307
144727 4.W-
254 ISTD,130% PFOS
0
254
PFOS
5.301
254 lSTD>l3M( PFOS
0
254 ISTD>lMX PFOS
0
0 IST[h70% PFOS
0
0 ISTB7W PFDS
52%
254
PFOS
5.295
254
PFOS
5.m
w 0
.
.
BACK TO MAIN
s"
n v
c
d
n
Sampk Batch H010402.b. analyzed on Hillary 044241. PFOSAdrorb/DaroIb samples Matrix: SOiUSlplS~.
5.0 fac i&&ro, Standad C U N ~nnae used forCallbmtlonof samnbs: ~ m 0 0 2dni~
Bdsh method Ho10402.m
Inj Dab
Batch
SampType File
SBmplS Nuno
4N01 12.30 D.\ChemWillatyW010402.b SAMPLE HlLLW16.D 0 ng'mL PFOS in MeOH
412101 12 51 D.\ChemWiIdawW010402.b CALI6 1 HlLLW17.D 2.5 ndmL PFOSin MeOH
41.0~71305 D Cka,~*<Ih-,?UClMn2 b CAUB-2 rllLLOO10 D 5 ngmL PFOS In MeOH
mol 1320 D \ChemWdlaryW01M02b CALIB-3 HILLW19D 10ngImL F F S (13
4/2/01 1334 D \ChemWdIaryWO10402b CALIB-4 HlLLW20D 25 ng"PFOS ln MeOH
4/2/01 1340 D \ChemWdliuyW010402b SAMPLE HlLLW21D 4 0 nglmL PFOSin MeOH
4 / m l 14 03 D \ChemWaryW010402b CALIB-5 HlLLWZZ D 50 InWmLPFOSIn MeOH
4/2/01 14 17 D \ChemWillaryW010402 b CAUB-6 HILL0023D 75 1n W L PFOS m MeOH
4N01 14 32 D ChemWillaryWOlM02b CAUB-7 HILL0024D 1W2 nglmLPFOS in MeOH
4/2/01 1446 D \ChemWdlaryWOlMOZb CAUB-8 HILL0025D 250 5 nglmtPFOSm MeOH
4/2/01 15W D \WemVldaryW010402b SAMPLE HILLW26 D 400 0 nglmL PFOSinMBOH
4/2/01 15 15 D \ChemWllaryW010402b CAUB-9 HILLW27 D 501n@mLPFOSin MeOH
4/2/01 1529 D \ChemW1llaryW010402b CALIB-10 HILL0020D iW2 nglnltPFOS inMeOH
4131013 14 D\ulemWflaryWOlO4W b SAMPLE H I U 7 7 D 0 n@mLPFOSin MeOH
4131013 20 D \ChamW1aaryWOIMO2b CALIB-11 HlLLW78D 2 5 nglmLPFOS in MeOH
4/31013 43 D \ChemWBaryW010402b CALIB-12 HILLW79 D 5 ngmL PFOS m MeOH
413m13 57 D \ChemWdlaryWOlMO2 b CALIB-13 HILL0080 D 10n g h L F'FOS m MeOH
4/3/014 I1D ChemWWaryW010402b CALIB-14 HILLW81D 25 nglmLPFOS in MeOH
413m14 26 D \ChemWdlaryW0104D2b SAMPLE HILLWE2D 40 ngmL PFOS in MeOH
4/31014 40 D \ChemWdlaIydiO10402b CALIB-15 HILL0083 D Y) 1 nglmL PFOS In MeOH
419314 54 D \ChemWillaryW010402b CALIB-16 HILL0084 D 75 1nQ/mL PFOSVI MeOH
4131015 09 D \ChemWllaryW010402b CALIB-17 HILL0085D 1W2 nglmLPFOS In MeDH
4/yo15 23 D \ChemWluaryul010402 b CALIB-18 HILLCUE8D 250 5 nglmLPFOS m MeOH
4/3/01 5 38 D ChemU.(lIaryWO10402b SAMPLE HILL0087D 4028 nUmLPFOS in MeOH
413101 5 52 D \ChemWllalyW010402 b CALIB-19 HILL0088 D 501 n@mt PFOS in MeOH
4131010 06 D \ChemWdlaryW010402b CAUB-20 HILL0089 D 1032 nglmt PFOSin MeOH
Misc InfCompound THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS MPFOS THPFOS THPFOS THPFOS
NaRT
Ana
Amount
5104 884438
254
5099 891647
254
5105 073155
254
5099 914977
254
5105 941733
i54
5107 960037 254
5104 936141 254
5115 916274
254
5114 94oMu
254
5 107 893340
254
5112 922772
254
5 111 980724
254
5105 893327
254
5108 1211076 254
5105 1169631 254
5100 1115864
254
5097 1128520
254
5105 1132730 254
5104 1144180 254
5112 1008719
254
5105 1050910
254
5107 1034815
254
5105
989240
254
5105 988215
254
5106 1060023
254
5107
928330
254
Avenae 999239.808 Std BY1:02082.113
W S D : 10.2%
InJDate
Fhtch
41210112 00 D ChemWdlaryW010402b
412101 12 22 D \ChemUi~lla~O1040b2
m o l 1543 D \ChemwlIarywO10402 b
412101 I 5 58 D\ChemW1llaryW010402b
412m1 10 12 D \ChemWllaryWO10402 b
412101 19 19 D IChemWdiary\H010402b
4 m 1 1933 D Chem!4iilwW010402 b
4N0121 14 D ChemWillaryW010402b
4 m 1 21 28 D \ChemWlIaryW010402b
4121012157 0 ChamHdIaryWlM02 b
4 m 1 2 2 20 D iGhem!HiIlaryW010402 b
4/2/0122 54 D\ChemWdlaryWOlMO2b
412101 23 23 D \ChemUidlaryW010402 b
4 1 2 ~ 123 52 D ChemW~llaryW01040b2
4/3/01021 D \ChemWllaryWOIMOZ b
413m1 0 50 0 \ChemWhyWO10402b
4/33 119 D \ChemWdlaryWOlM02b
4 m 1 1 47 D ChemW1IlaryW010402b
4 m 1 2 45 D EhemWlaryWO1MOZb
4/3/01 2 59 D \ChemWdlaryW010402b
413101 6 21 D ChemWiUaryW010402 b
413J01035 D \ChemWllaryW010402b
SampTyps SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
Fib HlLLWl4 D HILLW15 D HILLW29 D HlLLOO3O.D HILLW31 D HILLW44 D HlLLW45.D HILLW52.D HILLW53.D HILL0055.D HlLLW57.D HILL0059.D HILLW3l.D HILLWB3.D HILLW65.D HILLW67.D HlLLW69.D HILLW71.D HlLLW75.D HILLW76.D HlLLO09Q.D HILLW9I.D
Sampk Name TN-A 4802 MeDH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MnOH TN-A 48M MeOH TN-A 4802 MeOH TN-A 4802 MeOH TT-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4tA2 MeOH TN-A 4802 MeOH TN-A 4802 MeOH
Miso InfCompoundNaRl THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS rnPF0S THPFOS THPFOS THPFOS THPFOS THPFOS
Area 0 0 0 0 0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0
Amount
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
C o m w u n o 1NJ31AT
PFOS PFOS PFOS PFOS PFOS
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
An.
Amount
0
0
0
5323 76123 2937764
5322 112527 4927384
5323 219535 I002044
5329 564068 2 7 W 3 9
5 331 90- 42 62353
5335 1124594 54-8
5 332 1641678 83 18952
5331 2175779 108093
5 331 4790973 286 3wB
5338 7485094 4198087
5328 9634440 5170107
5.329 15519974 1025.7
0
0
0
5.322 76339 2019f59
5325 108809 3492407
5 321 209068 7 510677
5322 565907 22W294
5 329 929330 30 56921
5330 1114120 4049134
5 322 1638985 71 91555
5331 2152910 972404
5329 4767507 2420323
5329 7513403 3905142
533 9712588 4815275
5 331 15404980 975 7589
1299012 +30%: ggs4ga -30%:
99% 100% 110% 107%
110% 111%
103% 102%
70%
75%
88%
91%
93%
a96%
99~77%..u_
4'74,
96%
97%
Compound N a A T PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
5405 0
5.406 542
0 0 0 0 C 0 0 0 0 0 0 0 0 0 0 0 5.425 0
Ama Amount
18449
0
0
0
33972
0
11581
0
0
0
0
0
0
0
0
0
O
O
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
38059
0
0
0
page 1of 2
BACK TO MAIN
In1 Data
Blkh
4/2/011626 D ChEmW!UaryMlO4a2b
4/2/011641 D ChemW~1UaryWO1M0b2
4/2/01 1655 D ChemWaryV1010402b
4No1 17 09 D ChemWillalyWOlMO2b
4/2/011724 D ChemUillaryW010402b
41W1 1738 D ChsmWdaryWO10402b
4/2/01 17 53 D IChsmWllaryW010402 b
412101 18 07 DChemWdlaryW010402 b
4/2/01 1821 D ChemWoUaryW01M02b
4No1 I 8 36 D ChemWilIaryW010402b
4/2/0118 50 D ChernwtaaryWOimb
4m01 1904 D ChemUi1llaryWO10402b
412101 1948 D ChemWllaryW010402b
4/2/0120 02 D ChemWlaryW010402 b
4n/0120 16 D iChemWlaryWOlM02 b
4/2/0120 31 D ChemWdlaryW010402b
4No120 45 D \ChemWlla~W010402b
41210120 59 D \ChemW1llaryWOl04OZb
4 m 1 21 43 D ChemWdlaryWOIMOZb
4/2/0122 11 D ChemUillaryW010402b
4/2/0122 40 D ChemUillaryWO104OZ b
4No123 09 D ChemWdlaryWOl0402b
4/2/01 23 38 D ChemUilllaryWOlMOZ b
4TJxH 0 06 DChemWdlaW10402 b
413/01035 D \ChemWdlaryW010402b
4/3/01 104 D ChemWdlaryWO1C402b
4No1 133 D ChemWllaryWO10402b
4/3R12 02 D ChemWdlaryW010402b
413/012 16 D ChemUillaryW010402b
4/5/012 31 D ChernW!~la~Oro4obz
SampTyp SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
Fb HILLD032D HlLLW33D HIUW34.D HILLW35.D HILL0036.D HILLW37.D HlLW038.D HILLW39.D HlUW40.D HIUW4I.D HILLW42.D HILLW43.D H1110046.D HlLLW47.D HlLLW48.D HILLW49.D HlU0050.D HILLW51.D HILLW54.D HILLWSB.0 HILL0058.D H1LLWMI.D HlLLCC62.D HlUW64.D HILL006B.D HlLLW68.D HILLW7O.D HILLW72.D HILLW73.D HILLW74.D
Sample Name
2mglL PFOS Sludy Num~cE001311
ZmUL PFOS Study Number E001311
5mplL PFOS Study Number E00131f
%I&PFOSSLudy NumberECC-1311
Sm#l PFOS Study Number E001311
5mg.k PFOS Study NumberE001311
1CmgAPFOS StudyNumberE001311
n@or.l
PFOS Stwly Nomber E001311
I h g A PFOS Study Number E001311
1OmplLPFOS Shdy Number E001311
5 nglmL PFOS in MeOH
250 5 ndmL PFOS in MmH
SOmplL PFOS Study Number E001311
MrnplLPFOS Study Number E001311
SOmplL PFOS Study Number E001311
5CmdLPFOSStudyNumberE001311
5 ndmL PFOS m MeOH
250 5 nUmL PFOSin MeOH
ompnPFDSStudyNumberE001311
O W L PFOS StudyNumberE00131I
Om& PFOS Study Number E00-1311
Cm& PFOS Study Number E001311
om& PFOS Study Number E001311
Cm& PFOS Shldy Numixr E001311
OmplL PFOS Study Number E001311
CmgL PFOS Study Number E001311
5mplLPFOS Study Number 00-1311
5- PFOS Study Number E001331
5 WmL PFOS111 MeOH
250 5 WmL PFOSn M a O H
Misc
InfCompoundNaRT THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
5.115 5.112 5.119 5.134 5.121 5.119 5.120 5.127 5.12 5.125 5.127 5.127 5.133 5.133 5.127 5 128 5.128 5 119 5 112 5.111 5.107
5039 5.108 5.098 5.097 5.098 5.098 5 105 5.105 5.088
Area
Amount
1089043
254
840525
254
1140615
254
1121827
254
1105%
254
914972
254
1092485
254
1128533
254
1141778
254
912742
254
929W4
254
875517
254
1181781
254
1078087
254
1116896
254
951406
254
924450
254
875538
254
1559964
254
1545380
254
1539293
254
1521208
254
I584873
254
1594416
254
1612740
254
1582196
254
1615581
254
1590591
254
1403089
254
1313803
254
ISTD>IM% ISTD>130% ISTD>130% ISTD>130% ISTD>130% ISTD>IM% ISTD>130% ISTD>l3O% ISTD>1M% lSTD1130% ISTD>130% ISTD>I30%
Compuna ku#T PFOS
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
.i=z
&mcwi
5.339 91788 2852832
5336 3307825 1904263
5338 250070 9070036
5358 255801 9465038
5 345 202135 7 399684
5343 3416478 1800553
535 415060 164674
5351 524864 2040436
5351 516752 1982583
5 349 3833223 204 1541
5 351 115805 4 724463 94 5%
5 344 4809365 272 8592 1089%
535 2608914 1053019
5 35 2143323 92 71704
5351 1984759 824808
5353 4992173 2595911
5345 121763 505741 101 1%
5 343 4808081 272 7724 108 9%
0
0
0
0
0
0
0
0
0
5324 3196100 982237
0
0
0
0
0
0
0
0
0
5 329 3075504 90 56478
0
0
0
0
0
0
532s l o o a n 2 3 2 1 9 ~ 1 46 4%
5 322 4689812 1716327 68.5%
page20f2
BACK TO MAIN
Sample Batch R010329b.b. analyzed on Rush 03-2941. PFOS Adiorbl[)esofb Samples. Matrix: SoiVSlglSed. Standard cuwe range used for calibration of samples: 5-501 ng/mL (2.5 ng/mL std not included due to the hlgher sample concentration range), Batch m e t h o d R010329.m
lnj Date
Batch
SampType File
Sample Name
Misc Info Compound N a S T
Area
Amount
Compound N3T
Area
Amount
- 3130101 1444 D:\ChemViush\ROl0329.b SAMPLE RUSHOIM.D 0 ndmL PFOS in MeOH
THPFOS
5.574 E45852
254
PFOS
0
0
D
h 3/30/01 1458 D:\Chem\Rush\Rolo320.b CALIE-7 RUSHCllnS 0 2.5 h m L PFOS in MeOH THPFOS 5.561 650507 254 PFOS 5.771 234324 2.803619
3130/01 1 5 13 O:\Chem\Rush~Ol0329.b CALiE-2
RUSHO1OG.D 5 ng1mL PFOS in MeOH
rhrrvu
5.v 805498
254
PFOS
5.78 259067 4.511131 90.2%
3/30/01 1527 D\ChemViush\R010329.b CALIE-3
RUSH0107.D 1 0 ng/mL PFOS in MeOH
THPFOS
5.574 844287
254
PFOS
5 . i i 8 2?2K!4 %%E22
89.8%
3/30/01 1541 O;\Chem\Rush\R010329.b CALIE-4
RUSHOlO8.0 25 ng/mL PFOS in MeOH
THPFOS
5.574 874761
254
PFOS
5.777 7506t7 25.05443 100.2%
3130101 15% D:\Chem\Rush\R010329.b CALIB-5
RUSHOID9.0 4 0 ng1mL PFOS in MeOH
THPFOS
5.575 874280
254
PFOS
5.778 1074369 39.99818 99.7%
3/30/01 16:lO D:\ChemlRush\R010329.b CALIB-6
RUSH0110.0 50.1 n g h L PFOS in MeOH
THPFOS
5.575 856450
254
PFOS
5.778 1261642 50.16737 100.1%
3130101 16:25 D:\ChemViush\RO10329.b CALIB-7
RUSHO111.0 75.1 ng1mL PFOS in MeOH
THPFOS
5.562 857550
254
PFOS
5.765 1770429 75.8725 101.0%
3/30/01 1639 D:\ChemWush\R010329.b CALIB-8
RUSH0112.0 100.2 n#mL PFOS in MeOH
THPFOS
5.568 863358
254
PFOS
5.771 2201517 96.11491 97.9%
3/30/01 16.53 O:\Chem~ush~O10329.b CALIB-9
RUSHO113.0 250.5 ng/mL PFOS in MeOH
THPFOS
5.576 806157
254
PFOS
5.789 4379739 251.4603 100.4%
3/30101 I T 0 8 O:Ghem\Rush\R010329.b SAMPLE RUSH0114.0 400.8 n g h L PFOS in MeOH
THPFOS
5.574 858200
254
PFOS
5.777 6738788 406.2194
3/30/01 17:22 D:\Chem\Rush\RDl0329.b CALIE-IO RUSH0115.0 501 n g h L PFOS in MeOH
THPFOS
5.57 909424
254
PFOS
5.773 8394525 508.9853 101.6%
3130101 17% D:\Chem\Rush\R010329.b SAMPLE RUSH0116.0 1002 ng/mL PFOS in MeOH
THPFOS
5.568 813760
254
PFOS
5.778 12942478 1114.479
3/31/01 10:24 O:\Chem\Rush\RO10329.b SAMPLE RUSH0188.0 0 ng/mL PFOS in MeOH
THPFOS
5.52 760278
254
PFOS
0
0
0
3/31/01 1038 D:\Chem\Rush\R010329.b CALIB-I1 ~ U s ~ o 1 8 7 .2D.5 right PFOS in MeOH
THPFOS
5.534 761291
254
PFOS
5.744 222040 3.400639
3/31/01 1053 D:\Chem\Rush\RD10329.b CALIE-12 RUSH0188.0 5 ng/mL PFOS in MeOH
THPFOS
5.517 731965
254
PFOS
5.727 254163 5.463481 109.3%
3/31/01 11:07 D;\Chem\Rush\R010329.b CALIB-13 RUSH0189.D 10ng/mL PFOS inMeDH
THPFOS
5.515 771260
254
PFOS
5.725 358164 9.856814 98.6%
3/31/01 H:21 D\Chem\Rush\RO10329.b CALIB-14 RUSHO190.0 25 nglrnL PFOS in MeOH
THPFOS
5.511 764462
254
PFOS
5.721 666714 25.61491 102.5%
3/31/01 1136 D:\ChemRush\R010329.b CALlB-I5 RUSH0191.D 40 na/mL PFOS in MeOH
THPFOS
5.517 769541
254
PFOS
5.727 980488 40.53221 101.1%
3/31/01 1150 D:\Chem\Rush\R010329.b CALlE-I6 RUSH0192.D 50.1 n g h L PFOS in MeOH
THPFOS
5.524 769770
254
PFOS
5.734 1138148 50.39724 100.8%
3/31/01 12:W D:\Chem\Rush\ROl0329.b CALIB-17 RUSH0193.0 75.1 n@mLPFOS in MeOH
THPFOS
5.517 764856
254
PFOS
5.727 1583158 76.11235 101 3%
3/31/01 1219 D:\Chem\Rush\R010329.b CALIE-18 RUSH0194.0 100.2 ndmL PFOS in MeOH
THPFOS
5.526 787147
254
PFOS
5.729 2037660 99.93338 59.7%
3/31/01 I 2 3 3 D:\Chem\Rush\R010329.b CALlB-I9 RUSHD195.D 250.5 ng/mL PFOS In MeOH
THPFOS
5.519 733588
254
PFOS
5.729 3963988 249.7285 W.7%
3/31/01 12:48 D:\Chem\Rush\R010329.b SAMPLE RUSH0196.D 400.8 nQ/mLPFOS in MeOH
THPFOS
5.522 775073
254
PFOS
5.733 6072032 406.9537
3/31/01 1302 D:\Chem\Rush\R010329.b CALIE-20 RUSH0197.D 501 n#mL PFOS in MeOH
THPFOS
5.525 827129
254
PFOS
5.728 7615022 507.1578 101.2%
3/31/01 1316 D.\Chem\Rush\R010329.b SAMPLE RUSHOl98.D 1002 ng/mL PFOS in MeOH
THPFOS
5.525 744097
254
PFOS
5.728 11828629 1113.673
Averaoe: 809251.5 Std Dev: 50097.37
HRSD: 6.2%
1052027 +3D%. 568478 -30%:
73 Iu
M
(D
VI VI
page 1 of 4
BACK TO MAIN
Sample Batch R010329b.b. analyzed on Rush 03-20-01. PFOS AdsorbfDesorb samples. Matrix: SoiVSlg/Sed. Standard curve range used for calibration of samples: 5-501 nghL (2.5 nglmL std not included due t o the higher sample concentration range). Balch m e t h o d R01032S.m
lni Data
Batch
SampType
1nj Data
Batch
SampTyp.
3%&! !A15 ~-\Chem'~ushiRO10329.bSAMPLE
3/30/01 1429 D:\ChemRush\R010329.b SAMPLE
3/30/01 1751 D:\Chem\Rush\R010329.b SAMPLE
3130101 l8:05 O:\Chem\Rush\R010329.b SAMPLE
3/30/01 1820 D:\Chem\Rush\R010329.b SAMPLE
3130/01 21 27 0 \Chem\Rush\R010329 D SAMPLE
313M)l 21 41 D \Chem\Rurh\R010329b SAMPLE
3/31/01 0 4 8 D:\Chem\Rush\R010329.b SAMPLE
3i31/01 1:03 D:\Chem\RushW010329.b SAMPLE
3/31/014 1 0 D:\ChemU7ush\R010329.b SAMPLE
3/31/01 4 2 4 D:\ChemWush\R010329.b SAMPLE
3/31/017 3 1 D:\Chem\Rush\R010329.b SAMPLE
3/31/017 4 6 D:\Chem\Rush\R010329.b SAMPLE
3/31/019:41 D:\ChemWush\R010329.b SAMPLE
3/31H)1955 D:\Chem\Rush\RO10329.b SAMPLE
3/31/01 1009 O:\Chem\RushlR010329.b M M P L E
3/31/01 1 3 3 1 O\Chem\Rush\RO10329.b SAMPLE
File
Sample Name
File
Sample Name
RUSHOIOZ.D TN-A 4802 MeOH
KLISHC8iGS.D :?!-A 4BC2 MPOH
RUSH0117.D TN-A 4802 MeOH
RUSH0118.D TbA480.2 MeOH
RUSH0119.D TN-A 4802 MeOH
RUSH0132 D TN.A 4802 MeOH
RUSH01330 TN-A4802 MeOH
RUSH0146.D TN-A 4802 MeOH
RUSH0147.D TN-A 4802 MeOH
RUSH0160.D TN-A4802 MeOH
RUSHO181.D TN-A4802 MeOH
RUSH0174.D TN-A 4802 MeOH
RUSH0175.D TN-A 4802 MeOH
RUSHO183.D TNA4802 MeOH
RUSH0164D TNA4802 MeOH
RUSHO185.D TN-A 4802 MeOH
RUSH0199.D TN-A 4802 MeOH
Misc Info Compound N a A T M i c info Compound N a A T
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
Area Area 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Amwnt
Amount
0
0
0
0
0
"
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
CompoundNIT Compound ERT PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
Area
Amount
Ana
Amount
5.792 144070
0
5.789 136863
0
5.798 170024
0
5.793 144025
lj
5.797 138657
0
5.758 145074
0
5.769 139112
0
5.781 142482
0
5.788 134617
0
5.764 139821
0
5.765 133049
0
5.749 142142
0
5.738 136409
0
5.749 147797
0
5.749 139494
0
5.737 140062
0
5.756 174751
0
0
-h
page 2 of 4
BACK TO MAIN
Sample Batch R010329b.b. analyzed on Rush 01-29-01. PFOS AdsorblDesorbsamples. Matrix: SoiUSlgiSed. Standard cutve range used for calibration of samples: 5-501 nglmL (2.5 nglmL s l d n o t included due to the higher r a m p i e concentration range). Batch method: R010329.m
inj Date
Batch
S a wT y p
lnj Date
Batch
SampTyp
3/30/01 18-34 D:\Chem\Rush\R010329.b SAMPLE
3/30/01 18:48 D:!CnemuiushU?OiD3229.C S.A%PLE
3/30/01 1903 D:\Chem\Rush\R010329.b SAMPLE
3/30/01 19:17 D:\Chem\Rush\R010329.b SAMPLE
3/30/01 1932 D\ChemRush\R010329.b SAMPLE
3/30/01 19:46 O:\Chem\Rush~010329.b SAMPLE
3?i.Ob31 2000 D:\ChemViush\R010329.b SAMPLE
W 0 1 2015 D:\ChemRush\R010329.b SAMPLE
3/30/01 20:29 D:\Chem\RushRO10329.b SAMPLE
3/30/01 2043 D:\ChemRush\R010329.b SAMPLE
3/30/0120:58 O:\Chem\Rush\R010329.b SAMPLE
3i3OX)l 21:12 O:\Chem\Rush\ROlO329.b SAMPLE
3/3wD121:55 D\Chem\RushW010329.b SAMPLE
3/30/01 2210 O:\Chem\Rush\R010329.b SAMPLE
3/30/01 2224 D \ C h e m ~ u s h ~ O l 0 3 2 9 . bSAMPLE
3/30/01 2239 O:\Chem\Rush\R010329.b SAMPLE
W M 1 2253 O:\ChemIRush\R010329.b SAMPLE
3/30/01 2307 D:\Chem\RushW010329.b SAMPLE
3L30/01 23:22 D:\Chem\Rush\R010329.b SAMPLE
3/30/01 2336 O:\Chern\Rush\R010329.b SAMPLE
3/30/01 2351 D:\ChemRush\R010329.b SAMPLE
3131101 0:05 D:\ChemRush\R010329.b SAMPLE
3/31/01020 O:\Chem\Rush\R010329.b SAMPLE
3/31/01 0 3 4 O:\Chem\RushW10329.b SAMPLE
File
Sample Name
File
Sample Name
RUSH0120.D Study Number E001311
RLISHO121.D Study Number E001311
RUSH0122.D Study Number E001311
RUSH0123.D Study Number E001311
RUSH0124 D StudyNumberE001311
RUSH0125.0 Sludy NumberE001311
RUSH0126.D Study Number E001311
RUSH0127.D Study Number E001311
RUSH0128.D Study Number E001311
RUSH0129.0 Sludy Number E001311
RUSH0130.D 5 ng/mL PFOS in MeOH RUSH0131.D 250.5 ng/mL PFOS in MeOH
RUSH0134.0 Study NumberEOO-1311
RUSH0135.D Study NumberEW-1311
RUSHO136.D Study Number EOO-1311
RUSH0137.D Study Number EOC-1311 RUSHO138.D Study Number EBO-1311
RUSH0139.0 Study Number E001311
RUSH0140.D Study Number E001311
RUSHO141.D Study Number E001311
RUSH0142.D Study Number E001311
RUSH0143.D Study Number E001311
RUSHO144.D 5 ng/mL PFOS in MeOH RUSH0145.D 250.5 ng/mL PFOS in MBOH
Misc Info Misc Info
Compound NalRT Compound NarAT THPFOS
-.THPFOS
4 nrrva THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
Area
Amount
Area
Amount
5.574 700662
254
5.565 880404
254
5.569 El20419
254
5.57 821252
254
5.579 673700
254
5.573 843531
254
5.568 821307
254
5.56 824221
254
5.554 655636
254
5.551 814171
254
5.547 794288
254
5.553 791691
254
5.562 835122
254
5.571 804691
254
5.57 644452
254
5.567 873023
254
5.567 887648
254
5.58 926167
254
5.561 758299
254
5.568 824449
254
5.574 804828
254
5.567 789160
254
5.57 774516
254
5.568 788822
254
c=
Compound tRT Compound t R T PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
Area
Amount
Area
Amount
5.777 3839014 254.22
5.769 2916166 135.13
5.779 2814668 141.11
5.161 iei623 :42.97
6.789 5475251 427.65
5.776 1878094 83.18
5.779 1731214 77.82
5.763 1739800 77.95
5.75 4384199 329.52
5.755 3390903 179.53
5.757 258302
4.64
5.7% 4310524 252.17
5.765 3594706 187.10
5.774 3233585 171.68
5.773 5569928 465.00
5.77 2263901 101.23
5.77 2361032 103.30
5.763 2579566 109.27
5.764 5414508 359 43
0
0
0.00
5.784 203794
I.98
0
0
0.00
5.78 250673
4.59
5.771 4205216 253.74
92.9% 100.7%
91.7% 101.3%
0
-h
-4
w 0
page 3 of 4
BACK TO MAIN
Sample Batch R010329b.b. analyzed on Rush 03-29-01. PFOSAdsorbKksOrbSamplES. Matrix: SoivSlglSad. Standard c u w e range usedfor calibration of samples: 5-501 ng/mL (2.5 ng/mL rtd not included dueto the higher sample conceptration range).
Batch m e t h o d R010329.m
Inj Date
Batch 3/31/01 1:17 D:\Chem\Rush\R010329.b 3/31/01 1 3 2 D:\ChefN?ush\nU10528.b 3/31/01 1:46 D:\Chem\Rush\R010329.b 3/31/01 2:W D:\Chem\RushLQO10329.b 3/31/01 2:15 D:\Chem\Rush\R010329.b 3/31/012 2 9 D:\Chem\Rush\R010329.b 3/31/01 2:43 D:\Chem\Rush\R010329.b 3/31/012 5 8 D:\Chem\Rush\R010329.b 3/31/01 3:12 D:\ChemRushLRO10329.b 3/31/01 3127 D:\Chem\Rush\R010329.b 3/31/01 3:41 D:\Chem\Rush\R010329.b 3/31/01 3 5 5 D:\Chem\Rush\R010329b 3/31/01 4:39 D:\Chem\Rush\R010329.b 3/31/01 4 5 3 D:\ChemWush\R010329.b 3/31/01 5 9 7 D:\Chem\Rush\R010329.b 3/31/01 5 2 2 D:\Chem\Rush\RO10329.b 3/31/01 5:36 D:\Chem\RushlR010329.b 3/31/01 5 5 0 D:\Chem\Rush\R010329.b 3/31/01 6:05 D:\Chem\Rush\R010329.b 3/31/016:19 D:\ChemWush\R010329.b 3/31/016:34 D:V;hem\Rush\R010329.b 3/31/01 6:48 O:\Chem\Rush\R010329.b 3/31/017:02 D:\Chem\RushV7010329.b 3/31/017:17 D:\Chem\Rush\RO10329.b 3/31/01 8:W D:\Chem\RushlR010329.b 3/31/01 8:14 D:\Chem\Rush\R010329.b 3/31M18:29 D:\ChemWush\R010329.b 3/31/018:43 D:\Chem\Rush\R010329.b 3/31/018.57 D:\Chem\Rush\R010329 b 3/31/01 9:12 O:\Chem\RushW010329.b 3/31/019:26 D:\Chem\Rush\ROlO329.b
SamuTvpe SAMPLE SA::PLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
File
Sample Name
RUSH0148.D StudyNumber E001311
P.FSH0149.D StudyNumber E001311
RUSHO15O.D SludyNumber E00-131I
RUSH0151.O StudyNumber E00-1311
RUSH0152.D StudyNumber E M 1 3 1 1
RUSH0153.0 Study Number E00-1311
RUSH0154.D StudyNumber 00-1311
RUSH0155.D StudyNumberEOO-1311
RUSH0156.D StodyNumber E00-1311
RUSHOI57.D StudyNumber 00-1311
RUSH0158.0 5 n@mLPFOS in MeOH
RUSH0159.D 250.5 n g h L PFOS in MeOH
RUSHO162.D StudyNumber E00-1311
RUSH0163.D StudyNumber E001311
RUSH0164.0 StudyNumber E001311
RUSH0165.0 StudyNumber 00-1311
RUSH0166.0 Study Number E M 1 3 1 1
RUSH0167.D Study Number 00-1311
RUSHO168.D StudyNumber E001311
RUSH0169.D StudyNumber 00-1311
RUSH0170.D StudyNumber 00-1311
RUSH0171.D Study NumberEOO-1311
RUSH0172.D 5 nghnL PFOS in MeOH
RUSH0173.0 250.5 nglmL PFOS in MeOH
RUSH0176.0 Study Number E00-1311
RUSH0177.0 Study Number E00-1311
RUSH0178.D StudyNumber E M 1 3 1 1
RUSH0179.0 StudyNumber E001311
RUSH0180.D Study NumberE00-1311
RUSHO181.0 5 nglmL PFOS in MeOH
RUSH018Z.0 250.5 ng/mL PFOS in MeOH
Mlrc info
Compound NarRT THPFOS THPFOS
T::"FOS
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
Area
Amount
5.568 648571
254
5.571 777614
254
5.56 773093
254
5.57 765364
254
5.56 699682
254
5.554 752148
254
5.553 740653
254
5.552 760503
254
5.547 630350
254
5.54 726008
254
5.543 737132
254
5.541 729955
254
5.54 758508
254
5.541 757756
254
5.547 615598
254
5.537 734440
254
5.533 771181
254
5.529 754378
254
5.518 599700
254
5.533 860517
254
5.529 908478
254
5.532 746279
254
5.532 742286
254
5.532 728504
254
5.528 615539
254
5.524 771909
254
5.528 694870
254
5.525 717026
254
5.525 618466
254
5.524 706770
254
5.526 709256
254
Compound WT PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
Ana
Amount
5.778 3031707 207.59
5.774 1604497 75.82
5.763 1592359 75.66
5.771 1911308 95.65
5.763 4619176 324.00
5.757 6721579 486.79
5.756 7944853 627.78 > 501 u g h
5.749 7336093 541.01 501 u g h
5.75 8586480 885.44 > 501 ugR
5.743 3782037 238.27
5.753 251147
5.22 104.4%
5.744 4087493 261.45 104.4%
5.743 3926573 236.36
5.751 3793091 226.44
5.75 5938887 541.09 > 501 u g h
5.74 6989609 530.96 > 501 ugh
5.736 7352037 532.24 > 501 uglL
5.739 7301746 543.57 > 501 ugh
5.728 9140058 1045.56 w 501 ugR
5.736 5403042 303.36
5.739 5358582 279.64
5.743 4454098 283.95
5.742 253008
5.23 104.5%
5.735 3903435 247.03 98.6%
5.738 6430648 604.83 > 501 UgiL
5.727 740559 29.08
5.738 238023
5.29
5.735 210945
3.49
5.728 3041758 221.42
5.741 249768
5.69 113.9%
5.736 3915802 256.72 102.5%
page4of4
BACK TO MAIN
Sample Batch R010329a.b. analyzed on Rush 033941. PFOS AdsorblDesorb samples. Matrix: SoiIISlglSed.
Standard curve range used for calibration of samples: 5-501 ng/mL (2.5 nglmL std not includeddue to the higher sample concentration range).
h
Batch method: R010329.m
Ini Date
Batch SamDTVDeFile
SamDle Name
3/29/01 19:W D:\Chem\RSAMPli' RUSH00220n g h L PFOSin MeOH
3/29/01 19:19 D:\Chem\RCALIB-l RUSH00232.5 ng/mL PFOS in MeOH
3/29/01 19:33 D:\Chem\RCALIB-2 RUSH00245 ng/mL PFOS in MeOH
3/29/01 19:47 D:\Chem\RCALIB-3 RUSH002510 nglmL PFOS in MeOH
3/29/01 20:02 D:\Chem\RCALIB-4 RUSH002625 ng/mL PFOS in MeOH
3/29/01 20:16 D:\Chem\RCALIB-5 RUSH002740 ng/mL PFOS in MeOH
3/29/01 20:30 D:\Chern\RCALIB-G RUSH002850.1 ng/mL PFOS in MeOH
3/29/01 20:45 D:\Chem\RCALIB-7 RUSH002975.1 ng/mL PFOS in MeOH
3/29/01 20:59 D:\Chem\RCALIB-8 RUSH0030100.2 ng/mL PFOS in MeOH
3/29/01 21:13 D:\Chem\RCALIB-9 RUSH0031250.5 ng/mL PFOS in MeOH
3/29/01 21:28 D:\Chem\RSAMPLE RUSH0032400.8 ng/mLPFOS in MeOH
3/29/01 21:42 D:\Chem\RCALIB-lO RUSH0033501 ng/mL PFOS in MeOH
3/29/01 21:57 D:\Chem\RSAMPLE RUSH00341002 nglmL PFOS in MeOH
3/30/01 14:44 D:\Chem\RSAMPLE RUSH01040ng/mL PFOS in MeOH
3/30/01 14:58 D:\Chem\RCALIB-11 RUSH01052.5 ng/mL PFOS in MeOH
3/30/01 15:13 D:\Chem\RCALIB-l2 RUSH01065 ng/mL PFOS in MeOH
3/30/01 15:27 D:\Chem\RCALIB-13 RUSH010710 nglrnL PFOS in MeOH
3/30/01 15:41 D:\Chem\RCALIB-14 RUSH010825 ng/mL PFOS in MeOH
3/30/01 15:56 D:\Chem\RCALIB-15 RUSH010940 ng/mL PFOS in MeOH
3/30/01 16:lO D:\Chem\RCALIB-lG RUSHOl 1050.1 ng/mL PFOS in MeOH
3/30/01 16:25 D:\Chem\RCALIB-l7 RUSHOl1175.1 ng/mL PFOS in MeOH
3/30/01 16:39 D:\Chem\RCALIB-18 RUSHOl12100.2 ng/mL PFOS in MeOH
3/30/01 1653 D:\Chem\RCALIB-19 RUSH0113250.5 ng/mL PFOS in MeOH
3/30/01 17:08 D:\Chem\RSAMPLE RUSHOl14400.8 ng/mL PFOS in MeOH
3/30/01 17:22 D:\Chem\RCALIB-PO RUSH0115601 ng/mL PFOS in MeOH
3/30/01 17:36 D:\Chem\RSAMPLE RUSHOl161002ng/mL PFOS in &OH
Misc InComoouncRT THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
Area
Amount
5.581 937536
254
5.587 932041
254
5.582 892607
254
5.59 941200
254
5.586 952213
254
5.581 964296
254
5.588 940694
254
5.582 913845
254
5.584 931382
254
5.581 882940
254
5.577 925627
254
5.582 989407
254
5.585 884676
254
5.574 845419
254
5.561 850637
254
5.57 805498
254
5.574 844287
254
5.574 874781
254
5.575 874280
254
5.575 856450
254
5.562 857550
254
5.568 863358
254
5.578 806157
254
5.574 858200
254
5.57 909424
254
5.568 813760
254
ComDouncRT PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
0 5.797 5.793 5.793 5.789 5.784 5.798 5.792 5.787 5.791 5.787 5.785 5.788
0 5.771
5.78 5.778 5.777 5.778 5.778 5.765 5.771 5.789 5.777 5.773 5.778
Area 0
233998 265016 397179 812531 1183051 1389031 1906080 2452896 4875108 7451045 9377197 14614178
0 234682 259067 372504 750517 1074369 1261642 1770429 2201517 4379739 6738768 8394525 12942478
Amount 0
2.84 4.50 9.07 25.37 40.13 50.34 76.36 101.14 253.12 415.73 519.76 1161.45 0.00 3.73 5.40 9.78 25.55 40.21 50.20 75.43 97.27 247.92 402.04 501.13 1096.91
89.9% 90.7% 101.5% 100.1% 100.5% 101.7% 100.9% 101.0%
103.7%
107.9% 97.8% 102.2% 100.3% 100.2% 100.4% 97.1% 99.0%
100.0%
-- Average: 890317.9
Std Dev: 49995.31 %RSD: 5.6%
1157413 +30%: 623223 -30%:
Page 1 of 4
BACK TO MAIN
s"
Sample Batch R010329a.b, analyzed on Rush 03-29-01. PFOSAdsorblDesorb samples. Matrix: SoiUSlglSed.
Standard curve range used for calibration of samples: 5-501 nglmL(2.5 ng/mL std not included due to the higher sample concentration range).
Batch method: R010329.m
lnj Date
Batch SampTypeFlle
Sample Name
3/29/01 18:35 D:\Chem\RSAMPLE RUSH0020TN-A 4802 MeOH
3/29/01 18:50 D:\Chem\RSAMPLE RUSH0021TN-A 4802 MeOH
3/29/01 22:ll D:\Chem\RSAMPLE RUSHOO35iN-A4802 MeOH
3/29/01 2225 D:\Chem\RSAMPLE RUSH0036TN-A 4802 MeOH
3/30/01 0:49 D:\Chem\RSAMPLE 3/30/01 1:03 D:\Chem\RSAMPLE 3/30/01 4 : l l D:\Chem\RSAMPLE 3/30/01 4:25 D:\Chem\RSAMPLE 3/30/01 7 3 2 D:\Chem\RSAMPLE 3/30/01 7:46 D:\Chem\RSAMPLE
RUSH0046TN-A 4802 MeOH RUSH0047TN-A 4802 MeOH RUSH0060TN-A 4802 MeOH RUSH0061TN-A 4802 MeOH RUSH0074TN-A 4802 MeOH RUSH007-N-A 4802 MeOH
3/30/01 1 0 9 D:\Chem\RSAMPLE RUSH0086fN-A4802 MeOH 3/30/01 11:08 D:\Chem\RSAMPLE RUSH0089TN-A 4802 MeOH 3/30/01 14:15 D:\Chem\RSAMPLE RUSH0102TN-A 4802 MeOH
3/30/01 14:29 D:\Chem\RSAMPLE RUSHOIOJTN-A4802 MeOH
3/30/01 1751 D:\Chern\RSAMPLE RUSHOl17TN-A 4802 MeOH
3/30/01 18:05 D:\Chem\RSAMPLE RUSHOl18TN-A4802 MeOH
3/30/01 1820 D:\Chem\RSAMPLE RUSH0119TN-A4802 MeOH
Mise InCompouncRT THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS
THPFOS THPFOS THPFOS THPFOS THPFOS
Area 0 0 0 0
0 0 0 0 0 0 0 0 0 0 0 0 0
Amount
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
CompounrRT
Area
Amount
PFOS
5.806 157757
0
PFOS
5.809 137641
0
PFOS
5.804 167176
0
PFOS
5.798 141973
0
PFOS
5.809 145679
0
PFOS
5.803 135609
0
PFOS
5.803 138237
0
PFOS
5.803 134040
0
PFOS
5.807 144692
0
PFOS
5.808 137246
0
PFOS
5.796 142382
0
PFOS
5.794 138943
0
PFOS
5.792 144070
0
PFOS
5.789 134518
0
PFOS
5.798 170024
0
PFOS
5.793 144025
0
PFOS
5.797 138657
0
BACK TO MAIN
Sample Batch RGiiXZSa.b, aii~!'yz$d$5 Rmh 03-29-07. PFOSAdsorblhsorb samples. Matrix: SoiIIslg/s8d.
Standard curve range used for calibration of samples: 5-501 flg/mL (2.5 ng/mL sta not inciuded d i e :a tks !?!gharsample concentration range).
Batch method: R010329.m
Inj Date
Batch SampTypeFile
Sample Name
Mise InCompouncRT
Area
Amount
CompouncRT
3/29/01 22:40 D:\Chem\RSAMPLE RUSH0037Study Number EOO-1311
THPFOS
5.588 074070
254
PFOS
3/29/01 22% D:\ChemRSAMPLE RUSHOO38Study Number E00-1311
THPFOS
5.502 901936
254
PFOS
3/29/01 23:08 D:\Chem\RSAMPLE RUSHOO3btudy Number E00-1311
THPFOS
5.508 905901
254
PFOS
3/29/01 23:23 D:\Chem\RSAMPLE RUSH0040Study Number EOC-1311
THPFOS
5.586 727872
254
PFOS
3/29/01 23:37 D:\Chem\RSAMPLE RUSH0041StudyNumber E00-1311
THPFOS
5.581 801852
254
PFOS
3/29/01 23:52 U:\Chem\RSAMPLE RUSH0042Study Number 00-1311
THPFOS
5.502 084596
254
PFOS
3/30/01 0:06 D:\Chem\RSAMPLE RUSH0043Study Number E00-131I
THPFOS
5.583 880085
254
PFOS
3/30/01 0:20 D:\Chem\RSAMPLE RUSH00445 ng/mL PFOSin MeOH
THPFOS
5.502 090865
254
PFOS
3/30/01 0:35 D:\Chem\RSAMPLE RUSH0045250.5 ng/mL PFOS in MeOH
THPFOS
5.50 877456
254
PFOS
3/30/01 1:10 D:\Chem\RSAMPLE RUSH0048Study Number EOO-I311
THPFOS
5.508 694334
254
PFOS
3/30/01 1:32 D:\Chem\RSAMPLE RUSH0049Study NumberEOO-1311
THPFOS
5.503 970838
254
PFOS
3/30/01 1:47 D:\Chem\RSAMPLE RUSH0050Study NumberE00-1311
THPFOS
5.582 911997
254
PFOS
3/30/01 3/30/01 3/30/01 3/30/01 3/30/01
2:Ol 235 2:30 2:44 259
-- D:\Chem\RSAMPLE
D:\Chem\RSAMPLE D:\ChemRSAMPLE D:\Chem\RSAMPLE D:\Chem\RSAMPLE
RUSH0051Study RUSH0052Study RUSH0053Study RUSHOO54Study RUSH0055Study
Number E00-1311 Number E00-1311 Number E00-1311 Number E00-1311 Number E00-1311
THPFOS THPFOS THPFOS THPFOS THPFOS
Yuwas
5.575 084072 5.575 711307 5.571 895011 5.569 093422 5.568 900655 &.56.7746683
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254
PFOS
254-eWs
3/30/01 3:27 D:\Chem\RSAMPLE RUSHOO57Study Number E00-1311
THPFOS
5.575 868476
254
PFOS
3/30/01 3:42 D:\Chem\RSAMPLE RUSH00585 n g h L PFOSin MeOH
THPFOS
5.501 060307
254
PFOS
3/30/01 3:56 D:\Chem\RSAMPLE RUSH005a50.5 ng/mL PFOS in MeOH
THPFOS
5.581 045346
254
PFOS
3/30/01 4:39 D:\Chem\RSAMPLE RUSH0062Study Number EOO-1311
THPFOS
5.581 879621
254
PFOS
3/30/01 4 : s D:\Chem\RSAMPLE RUSHOO63Study Number 00-1311
THPFOS
5.578 865113
254
PFOS
3/30/01508 D:\Chem\RSAMPLE RUSHOO64StudyNumber E00-1311
THPFOS
5.573 713593
254
PFOS
3/30/01 5 2 2 D:\Chem\RSAMPLE RUSH0065Study Number00-1311
THPFOS
5.581 056465
254
PFOS
3/30/015:37 D:\Chem\RSAMPLE RUSHOO66Study Number00-1311
THPFOS
5.501 844166
254
PFOS
3/30/015 5 1 D:\Chem\RSAMPLE RUSHOO67Study NumberE00-1311
THPFOS
5.502 840621
254
PFOS
3/30/01 6:06 D:\Chem\RSAMPLE RUSH0068Study Number00-1311
THPFOS
5.579 669997
254
PFOS
3/30/01 6:20 D:\Chem\RSAMPLE RUSH0069Study Number00-1311
THPFOS
5.577 810557
254
PFOS
3/30/01 6:34 D:\Chem\RSAMPLE RUSH0070Study Number EOO-1311
THPFOS
5.502 015811
254
PFOS
3/30/01 6:49 D:\Chem\RSAMPLE RUSH0071Study Number 00-1311
THPFOS
5.574 023985
254
PFOS
3/30/01 7:03 D:\Chem\RSAMPLE RUSH00725 ng/mL PFOS in MeOH
THPFOS
5.571 023981
254
PFOS
3/30/01 7:17 D:\Chem\RSAMPLE RUSH0073250.5 nglmL PFOS in MeOH
THPFOS
5.570 821611
254
PFOS
Area 5.791 3351053 5.705 3334462 5.791 3176252
5.79 5058869 5.791 6707348 5.785 4533069 5.787 6721663 5.799 279066 5.791 4055798 5.792 0002466 5.793 2166125 5.792 2001596 5.770 1925950 5.785 4007082 5.701 7066726 5.779 7171691 5.771 7403683 5.zua4d.65u 5.785 471637 5.798 272404 5.792 4664476 5.791 207413 5.708 175106 5.703 3349107 5.705 2228059 5.784 2133042 5.785 1411558 5.702 4285006 5.70 7109748 5.705 5211026 5.777 0017544 5.788 275231 5.781 4574902
Amount 159.93 152.92 143.26 415.70 391.37 230.09 387.34 5.09 253.86 795.21 02.81 85.1 1 80.38 329.29 404.55 414.16 433.90 @a56 13.57 5.11 252.91 2.29 1.09 205.86 99.69 96.20 58.15 306.23 460.98 305.78 539.08 > 5.85 255.08
101.0% 101.3%
5DluglL 102.1% 101.0%
501ug/L 117.0% 102.136
0
-h
Page 3 O f 4
BACK TO MAIN
Sample Batch R010329a.b. analyzed on Rush 03-29-01. PFOS AdsorblDesorb samples. Matrix: SoillSlg/Sed.
Standard curve range used for calibration of samples: 5-501ng/mL (2.5 nglmL std not included due to the higher sample concentration range).
Batch method: ROlO329.m
3130101 8:Ol D:\Chem\RSAMPLE RUSH0076Study Number E00-1311
THPFOS
5.568 690116
254
PFOS
3/30/01 8:15 O:\Chem\RSAMPLE RUSH0077Study Number E00-1311
THPFOS
5.579 956969
254
PFOS
3/30/01 8:29 D:\Chem\RSAMPLE RUSH0078Study Number E00-1311
THPFOS
5.574 870548
254
PFOS
3/30/01 8:44 D:\Chem\RSAMPLE RUSH0079Study Number EOO-1311
THPFOS
5.581 845769
254
PFOS
3/30/01 8:58 D:\Chem\RSAMPLE RUSH0080Study Number E00-1311
THPFOS
5.574 710436
254
PFOS
3/30/01 9:13 D:\Chem\RSAMPLE RUSH0081Study Number E00-1311
THPFOS
5.576 852256
254
PFOS
3/30/01 9:27 D:\Chem\RSAMPLE RUSH0082Study Number 00-1311
THPFOS
5.576 913113
254
PFOS
3/30/01 9:42 D:\Chem\RSAMPLE RUSH0083Study Number E00-1311
THPFOS
5.585 834426
254
PFOS
3/30/01 9:56 D:\Chem\RSAMPLE RUSHOOWtudy Number E00-1311
THPFOS
5.578 702989
254
PFOS
3/30/01 1O:lO D:\Chem\RSAMPLE RUSHOO85SStudyNumber E001311
THPFOS
5.581 919415
254
PFOS
3/30/01 10:25 D:\Chem\RSAMPLE RUSH00865 nglmL PFOS in MeOH 3/30/01 10:39 D:\Chem\RSAMPLE RUSH0087250.5 ng/mL PFOS in MeOH
THPFOS
5.579 828884
254
THPFOS
5.573 820925
254
PFOS PFOS
3/30/01 11:37 D:\Chem\RSAMPLE RUSHOOSlStudy Number E00-1311
THPFOS
5.575 851126
254
PFOS
3/30/01 11:51 D:\Chem\RSAMPLE RUSH0092Study Number EOO-1311
THPFOS
5.577 699580
254
PFOS
3/30/01 12:06 D:\Chem\RSAMPLE RUSHOO93StudyNumber 00-1311
THPFOS
5.581 833674
254
PFOS
3/30/01 12:20 D:\Chem\RSAMPLE RUSH0094Study Number E00-1311
THPFOS
5.575 827651
254
PFOS
3/30/01 12:34 D:\Chem\RSAMPLE RUSHOO95StudyNumberE00-1311
MPFOS
5.579 833417
254
PFOS
3/30/01 12:49 D:\Chem\RSAMPLE RUSHOO96Study Number 00-1311
THPFOS
5.573 660626
254
PFOS
3/30/01 1303 D:\Chem\RSAMPLE RUSHOO97StudyNumber E00-1311
THPFOS
5.575 831428
254
PFOS
3/30/01 13:17 D:\Chem\RSAMPLE RUSHOO9Study Number 00-1311
THPFOS
5.572 822165
254
PFOS
3/30/01 13:32 D:\Chem\RSAMPLE RUSHOO99Study Number 00-1311
THPFOS
5.576 815744
254
PFOS
3/30/01 13:46 D:\Chem\RSAMPLE RUSH01005 ng/mL PFOSin MeOH
THPFOS
5.569 788928
254
PFOS
3/30/01 14:Ol D:\Chem\RSAMPLE RUSH0101250.5nglmLPFOS in MeOH
THPFOS
5.574 788989
254
PFOS
5.778 5.782 5.778 5.784 5.777 5.779 5.779 5.788 5.781 5.785 5.789 5.783 5.785 5.78 5.784 5.785 5.789 5.783 5.785 5.775 5.779 5.779 5.777
10151474 4102214 3443662 3186935 5795265 6155804 8769331 5927478 8168548 4411967
270806 4516252 4018521 6442026 1056562
376593 275264 3353185 846945 885719 850807 261893 4409485
976.13 > 5Olug/L 183.73 166.25 156.55 423.27 359.52 529.37 > 501uglL 351.66 692.32 > 501ug/L 211.71
5.58 111.6% 251.94 100.6% 207.41 499.47 41.77
10.29 5.71
227.32 31.83 34.15 32.79 5.77 115.5%
257.10 102.6%
D
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Page4 of 4
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HO10404external standardquantxlr
Q
3
r
Sample B i t c h H01WX.b, analyzedon Hlllay OUKOI. PFOSAdsotiwUesoe samples Matrix: SolUSlplSed. Standard CuNe range used for calibration d samples: 10400.8 n d m L Batch method HO1MM.m (ExternalStandard Ouant)
In] ate
Batch
SmpTyp.
414101 1617 D-ChemWillaryWO10404.b SAMPLE
ii4;Gi 1?3:5:~ : ` P ~ ~ m ? H i l l a l y u ( O l 0 .CbALIB-1
4/4/01 18.46 D:ChemWillarywOl0404b CAUB-2
4/4101 19.00 D:ChemWdiaryW010404.b CALlB-3
4/4nlf 19:14 D:\ChemWiuaF/WOl0404b CAUB-4
414101 19 29 D.!ChemW~llwyW0104M4.b CALIB-5
414101 19 43 DChemWiNaryWOIOI1(Y.b CALIB-6
414101 19.57 WChemWiNaryWOlD404.b CALIB-7
41410120.12 D:ChemWParyW010404.b CALIB-8
414m1 20 26 D.\chemwiUalvwO10404b CAUE-9
414101 2041 DChemWllaryWOl0404b CAUB-10
4/41012055D:ChemWillaryWOlW04.b SAMPLE
414M121.09 D:\Chem~illaryW0104M.b SAMPLE
ml ~l.f9D:\ChemWillalyutol0404.b SAMPLE
415101 11:33 O.\themWla.rNO104M.b CALIB_lI
415101 1147 D ChemWdlsryWO10404b CALIB~12
415101 12 02 D ChemWdlaryWO10404b CAUB-13
41510112 16 D ChemWdIqWOlO4M b CAUB-14
4l5101 12 31 D C h e m W t l l a ~ O 1 M 0b4 CALIB-15
41Y01 12 45 D \ChamWiltaryW010404b CAUB-16
415101 I 2 59 D ChemWillaryWO10404b CAUB-17
415101 13 14 D ChemWIaryWO10404 b CALIB-18
4No1 13 29 D \ChemWKawWO<M04b CALI6 19
415~0113 42 D memV11a ~ W 0 1 0 4 Mb CAUB120
4,501 13 57 D Q2hernu(H.~sryV10104b04 SAMPLE
415101 14 11 D Cnamu(lrryH010404 b SAMPLE
File HILLOO16.D HlLL0017.D HILLCC~B D HILLWISD HILLOO2O.D HlLLoO21.D HILL0022D HlLLW23.D HlLL0024.D HILL0025.D HILL0026.D HlUW27.D HIUW28.D HlUOO87D HILLW66.0 HlUW89.D HlLLOO9O.D HILL0091D HlLL0092.D HlLLW93.D HlLLMM4.D HlLLW95.D HILL009B.D HlU0097 D HlLLW96 D dLL0099 D
Sample Nuns 0 nVmCPFOS m MeOH 2.5 nglmL PFOS in MeOn 5 >&?L PCflS m MaOH IOnglmLPFOSin MeOH 25 W L PFOS il MeOH 40nVmLPFOSin MeOH 50.1 nght PFOSinMeOH 75.1 n&LPFOS in MBOH 103.2 ng/mLPFOS in MeOH 250.5 n W L PFOS in MeOH 4W.8 WmLPFOSinMSOH 501 ngllnLPFOS in MeOH 1W2 nglmLPFOS in MeOH
OnglinLPFOSmMsoH
2.5WmLPFOS in MeOH 5 W m L PFOSin MBOH 10nWmLPFOSm MBOH 25 n m L PFOSin MeOH 40 nWmL PFOS in M e O n 50.1 nghnLPFOSinM& 75.1 WmL PFOS in MeOH 100.2 WmL PFOS in M.OH 250.5 rWmL PFOS h MeoW 400 8 G m L PFOS m M e n 501 nwm- PFOS m MaOH 1002 ngmL PFOS m MeOH
Mlsc
InfCompaund NaRT THPFOS THPFOS
-,THPFOS h^r-rewC THPWS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
Am4 5.113 5.112 5 112 5 112
5 113 5 I11 5 112 5 113 5 114 5 113 5 112 5 113 5 114 5 092
5 091
5 093 5 09 5 092 5 W1 5098 5 098 5 093 5 092 5 092 5093 5 099
Amount
806065
254
889526
254
877571
254
402873
254
680573
2%
931996
254
803398 254
684697
254
699168
254
657703
254
891222
254
907981
254
840757
254
1261932
254
1203313
254
1167470
254
I191649
254
1181183
254
1183642
254
I129902
254
1099744
254
11M)820
254
1030899
254
1039403
254
1052373
254
862330
254
Averroe: 5Std Dav: 85107.0294
HRSD 7.6%
c
Compound N a R T PFOS PFOS PFOS PFOS PFCS PFOS PFOS PFOS
PFOS PFOS PFOS PFOS PFOS PFOS
PFOS PFOS
ms ffos
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
Ana
Amount
0
0
0
5.329
72734 1.190813
5.329
110448 3.153981
5.329
204980 6.062458
5.51
54~l4712568227
5.329
683638 43.iSBi.i
5329
1056705 53.09021
5.33
1555069 79.67175
5.331
2075718 107.8776
5.323
4653038 252.4225
5.329
7377624 414 1189
5.33
9097217 520.6761
5 331 15189218 928379
0
0
0
5.301
62293 0647625
5.31
90724 2543506
5.307
166223 7200022
53 w
494122 23 22532
5.301
813449 4 0 0 6 w
5 315
975991 4869034
5.315
1451614 74 11635
5.31
1962240 1017013
5 309
4432636 2397418
5.309
6951500 3882267
5 31
6649086 4927043
5.309 14944991 911 1632
14M)4BB +30%: 768405 30%:
63% 61% 103%
r,"nZn,"w
IC%% 1cB% 108% 101% 103% 104% 93%
51% 72% 93% 100% 97% B4.h 101% 86% 97% 98% 91%
In) D
M
Batch
4/4/0114 41 D Chemw!llaryWol0404b
414101 14 56 D \ChemWdlary\HOI0404 b
414101 15 39 D ChemVldlary\H010404WOl0404 b
414~11553 D ChemWisarywolWM b
414101 1746 D IChemWaawO10404 b
4141011603 D ChemWdIaryW0104Mb
41410121 24 D ChemWtUaar/W010404b
4l4l012138 D \ChemWllaryWD10404 b
415/010 45 D ChemWdlaryWO10404 b
4/5/01 1 0 0 DChemWdl&H0104W b
415101407 D ChemWlaryWol0404b
415/01421 DChemW1llaryW010404b
4/5/01 7 26 D ChemWllaryW010404b
4/51017 43 DChemWdlaryW010404b
415m1 1050 D \ChsmWllaryW010404b
4R101 1104 D \ChemWillaryWOlOdMb
415101 14 26 D ~ m W d l a r y W 0 1 0 4 0b4
415101 14 40 D \ChemWltaryY1010404 b
SmpTypa SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
FIO
HILL0001D HILL0002D HILL0005D HILLMX)~ D
HILL0014 D
HlLLW15 D HILL0029 0 HlLLW30 D HILL0043 D
HILL0044 D HILL0057 D
HILLW58 D HILLW71 D
HILL0072 D HlLLW65 D
HILLWE6 D
HlLLOIOO D HILW101 D
Sampb Name TN-A 4802 MeOH TN A 48112 MeOH TN-A 48112 MeOH rN-A 48112 M ~ O H TN-A 4802 MeOH T U 8 4802MeOH TN-A 4802MeOH TN A4802 MeOH TN-A4802 MeOH TNA4602MeOH TN-A 4802 MeDH TN-AQOZMeOH TN-A 4802 MeOH TN-A 4602 MeOH TN A 1002 MeOH TN-A 4802 MeOH TN-A 4002 MeOH T K A4602 MeOH
Mire InfCompoundNaRT THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
Am 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Amount
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Compound N a A T PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
Am 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Amoun(
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
page 1 Of 2
BACK TO MAIN
HO104Me a m a l standardquanLxls
lnj Date
htch
SampTyp
4/4/012152 DChemW~llaryW010404.b SAMPLE
4/4/01 22 07 D ChemWBaryW01M04b SAMPLE
4/4/01 22 21 D ChemWdlarvWO10404b SAMPLE
414/012236 D CnemHlaryWO10404D SAMPLE
41410122 M D ChemW.llaryr1010404b SAMPLE
41410123 04 D CnemWlllaryW010404b SAMPLE
44'01 23 19 D CaemU~,llaryUIOIQ104b SAMPLE
414mi 23 33 D ChemWiilaryHOlM04 a SAMPLE
4/4/0123 48 D ChernHLaryWO10404b SAMPLE
4/5/010 02 D ChsmW~llaryW01040b4 SAMPLE
415101 0 16 D CnemW llary~O10404b SAMPLE
4151010 31 D CnemWillaFl\k010404b SAMPLE
415101 1 14 D Chemvl~.IaryW010404b SAMPLE
415101 128 D ChemWdlaryW010404b SAMPLE
4/5/01 1 43 D CnemWllaryW010104b SAMPLE
4.Y01 157 DCnemWdIaryviO10404b SAMPLE
41M12 11 D CnemH~llary~OlM0b4 SAMPLE
415101 2 26 D ChemW~llaryh010404b SAMPLE
41M12 40 D CnemW!llaryh010404b SAMPLE
4,5101 2 55 DChemW~llaryHOlMMb SAMPLE
415101 3 09 D ChemW#llaryW010404a SAMPLE
4.501 3 23 D ChemWl.aryHO10404b SAMPLE
41501 3 38 D ChamWIIaryH01MC-l b SAMPLE
415013 52 D ChemWllaryWO1C404b SAMPLE
41M14 35 O C h e m W ~ l l ~ W O l 0 4b0 4 SAMPLE
415014 50 D Chemih!llaryW010404b SAMPLE
46/01 5 04 D Chem~~lmryH01040b4 SAMPLE
415IOl 5 19 DChemW1~iaryHO1040b4 SAMPLE
4151015 33 D ChemW#haryW0104Mb SAMPLE
4,501 5 47 D ChemW~I~sryW0104bM SAMPLE
41501 602 DChemWtllaryd010404b SAMPLE
415,Ol 6 16 D Cnemih.llaryh010404b SAMPLE
4/5/016 31 D ChemW.laryY1010404 b SAMPLE
41M16 45 D Chamdo laryH010404 b SAMPLE
41M16 59 D ChemWdlaryH0104Mb SAMPLE
4,5/01 7 14 DChemWdaryHOl0404 b SAMPLE
415017 57 D ChemHidaryHOlCM04b SAMPLE
415101 8 11 DChemW#laryVIO1040b4 SAMPLE
4/5/018 28 D !&hem* llaryh010404b SAMPLE
4,51018 40 D Cnemw ilaryyto10404b SAMPLE
415101 8 55 D ChemWdlaryHO10404b SAMPLE
41M1 9 09 D ChemWdlmyJiO10404D SAMPLE
4/5/019 23 D ChemW IhryWO10404 b SAMPLE
4,Ml 9 38 D Chemih llary\k010404 b SAMPLE
415101 9 52 D Chem~#llaryWOl040b4 SAMPLE
41501 1007 D ChemWllaryH010404b SAMPLE
4/5/01 1021DChemWlaryWO10404b SAMPLE
4 l M 1 1036 DChemWra~yho1040b4 SAMPLE
File HILL0031.D HlLL0032.D HILL0033 D HILL0034 D HlLLw35 D HILL0036 D HILL0037 D HILL0038 D HILL0039 D HILL0040 D HILL0041 D HlLLW42 D HlLLW45 D HILLOM6 D HlLLW47 D HlLLW48 D HlLLW49 D HILL0050 D HILL0051 D HILL0052 D HILL0053 D HILL0054 D HILL0055 D HILL0056 D HILL0059 D HILLMXK) D HILL0061 D HILLOM2 D HILL0063 D HIWD HlLLwB5 D HlLLW30 D HILL0007 D HILL0068 D HILUX169 D HILL0070 D HlLlW73D HILLCO74 D HILL0075 D HILL0076 D HILL0077 D HILL0078 D HILL0079 D HILLOOBO D HILL0081 D HILL0082 D HILL0083 D HILL0084 D
S a m P Name W P F O S Study Numb.rEW-1311 DmQiLPFOSStudy Number E00-1311 Om@ PFOS Study Number EW-1311 Om@ PFOSStudy Number E001311 OmflPFOS Study Number EW-1311 Om& PFOS Study Number EW-1311 OmfiPFOS Study NumtmEM1.1311 hnplLPFOSStudy NumberEW-1311 5mgLPFOS Study Numb.rEW-1311 SmgLPFOSStudy Number EW-1311 5 ng/mL PFOS in MeOH 250 5 nUmL PFOS m MeOH 5m#t PFOSStudyNumberEW-1311
SmaPFOS Study Number E001311 5mWPFOS Study Number EW-1311 srnWPFOSStudyNumberE00-1311 SmWPFOS ShldyNumberE001311 SmQiLPFOS StudyNumber E001311 SmaPFOS Study NumberEM1.1311 5mgllPFOSS M y Number E001311 5mgLPFOS Study Number EW-1311 Sman PFOS S U y Number E001311 5 nphnt PFOS m MeOH 250 5 n#mL PFOS in MeOH SmWPFOSStudy Number E001311 5mWPFOS Study Number E00-1311 SmOnPFOS Study NumbMEW-1311 SmgLPFOSStudy Number EW-1311 5mgRPFOS Study NumberEW-1311 5mdtPFOSStudyNumberEW-1311 5mPnPFOS Study Number E001311 5mW PFOS Study Number EW-1311 5mWPFOS Study Number E001311 5mpllPFOSStudy NumberEW-1311
5 wmt PFOS tn MeOH
250 5 n@mLPFOS m MeOH SmgLPFOS Study NumberEW-1311 5mgllPFOS Study Number E001311 5mplLPFOS Study Number E001311 5m@PFOs Study Number EW-1311
5mgLPFOSSludyNumberEW-1311 SmgAPFOS Study Number EW-1311 SmpiLPFOSStudy Numtmr EW-1311 5mgLPFOS Study Nwnber EW-1311 5m@APFOSStudy Number Em1311 SmglLPFOSStudy Number EW-1311
5 nplmt PFOS m MeOH 250 SnplmL PFOS m M e O n
Mlsc InfCompoundNaRT
Ana
THPFOS
5.108
THPFOS
5.111
THPFOS
5 107
THPFOS
5 108
THPFOS
5 098
THPFOS
51
THPFOS
5094
THPFOS
5099
THPFOS
5 099
THPFOS
5 098
THPFOS
5 105
THPFOS THPFOS
5 108
5 ma
THPFOS
5 098
THPFOS
5 105
THPFOS
5 099
THPFOS
5094
THPFOS
5 098
THPFOS THPFOS
5 097
5 mi
THPFOS
5 091
THPFOS
5 099
THPFOS
5 104
THPFOS
5 098
THPFOS
5 048
THPFOS
51
THPFOS
5 099
THPFOS
5 099
THPFOS
5 098
THPFOS
5 099
THPFOS
5048
THPFOS
5 092
THPFOS
5 091
THPFOS
5 09
THPFOS
5092
THPFOS
5 098
THPFOS
5 091
THPFOS
5 098
THPFOS
5 097
THPFOS
5 099
THPFOS
5 092
THPFOS
0
THPFOS
0
MPFOS
5085
THPFOS
5 085
THPFOS
5 084
THPFOS
5 087
THPFOS
5 086
hOMI
CompoundN a A T
Ana
Amount
1582301
254 I S T D l M % PFOS
0
0
0
1575594
254 ISTD>lM% PFOS
0
0
0
1560082
254 ISTD>130% PFOS
0
0
0
1537278
254 ISTD>130% PFOS
5.316
31709% 186.3053
1599896
254 ISTD>130%PFOS
0
0
0
1613917
254 ISTD>130% PFOS
0
0
0
1644862
254 ISTD,130% PFOS
0
o
n
1578150
254 ISTD>130% PFOS
5.309
2970771 157.1483
158738s
254 ISTD>130%PFOS
0
0
0
1587309 254 ISTD>lM% PFOS
0
0
0
1307817 254
PFOS
5.315
101216 2873254
11-
254
PFOS
5.318
4807627 249.8049
1569404
254 ISTD>130% PFOS
5.315
2027% 7.956382
15211W
254 ISTD>130% PFOS
5.315
3255972 173.0552
1583690
254 ISTD>lM% PFOS
5.315
80242 1581493
1535494
254 ISTD>130% PFOS
0
0
0
1528194
254 ISTD>130% PFOS
0
0
0
1514404
254 ISTDrl30% PFOS
5.315
3115242 185 1936
1537503
254 ISTD>130% PFOS
5.314
76776 1401129
1529992
254 ISTD>lM% PFOS
5.308
m528 2429182
1541462
254 ISTD>130%PFOS
5.308
168651 8082828
1500713 254 ISTD>13O% PFOS
5.309
3133475 1862108
1341697
254
PFOS
5.314
103787 2 80712
1246317
254
PFOS
5.308
4550667 2485252
1687410
254 ISTD>130% PFOS
5.3w
183857 6980244
1546322
254 ISTD>130%PFOS
5.31
148784 5151322
1570952
254 ISTD>lM% PFOS
5.316
80452 1582421
1511291 254 ISTD>130%PFOS
5.316
3105298 164639
1520307
254 ISTDr13O%PFOS
5.315
81053 1623698
1536595
254 ISTD>130% PFOS
5.316
74150 1264487
1504984
254 ISTD>130% PFOS
5.308
119473 3 624028
1472241
254 ISTDI130% PFOS
5.302
3098377 164 2531
1543912
254 ISTDr130% PFOS
5.308
134114 4386787
1511129
254 ISTD>l30% PFOS
5.301
178554 6 7 5 5 m
1329935 254
PFOS
5.309
99459 2581778
1283173
254
PFOS
5.308
4490291 2430532
1537210 254 iSTD>130%PFOS
5.W
181284 684802
1489558
254 ISTDrl30% PFOS
5.308
3114794 165 1 6 s
1509221
254 ISTD>130% PFOS
5.307
7 W 3 1384206
1509704
254 ISTD>13O% PFOS
5.309
138272 4803457
1492328
254 ISTD>13O% PFOS
5.309
231419 9462838
0
0 ISTD<7O% PFOS
5.302
3083518 162 3102
0
0 ISTDc70% PFOS
5.295
191090 7357805
1474995 254 ISTD>130% PFOS
5.302
170928 6 305786
1468047
254 ISTD>130%PFOS
5.302
88BBo 2030021
1443304 254
PFOS
5.301
2902477 153 3541
1338208 254
PFOS
5.304
100507 2.63634
1274099 254
PFOS
5 2%
4412461 238.5841
53 5% 99 7%
58 1% gs 4%
51 6% 87 0%
52 7% 952%
page 2 of 2
BACK TO MAIN
3 b
b 0
3
D aa,
(D
H010412.xlr
Sample Batch HO10412.b, analyzedon HlllatycCl201. PFOSA&oridDewrb UmpleS. Mltrlr: Solk'SI~d Standard curve range usedfor calibration ofsamples: 10400.8 n@mL Ratch method H010412.m
In] Date
Batch
SampType
4/12/01 1751 D\ChemWllIaryW010412Ab SAMPLE
4/12/01 18 05 O ChemW1lla1yWO10412Ab CALlB-1
4,1201 18 19 D\ChemWillaryWOlMlZAb CALK-2
4/12/0118 34 D\ChemWillaryW010412Ab CALIB-3
4/12/01 1848 0 V)hemWdlaryW010412Ab CALiB-4
4/12/01 19 03 D \ChemWillatyW010412A b CALlB-5
4/12/01 19 17 D!ChemWiIlaryW10412Ab CALL-6
4/12/01 1931 D!ChemWiUaryWOl0412A b CALIB-7
4/12/01 1946 D\ChemWillaryW010412Ab CALIB-8
4/12/01 20 00 D\ChemWillaryW010412Ab CALK-9
4/12/0120 15 D\ChemWillaryW010412Ab CALiB-10
4/12/01 2029 D\ChemWillaryWOl0412Ab SAMPLE
4/12/01 20 43 D \ChemWillary\H01041ZA b SAMPLE
4/13/01 7 02 D \ChemWiIlaryWO10412Ab SAMPLE
4/13/01 7 17 D\ChemWillaryWOl0412Ab WlB-11
4113101 7 31 D \ChemWillary\H010412A b CALIB-12
4/13/017 45 D ChemWillaryW010412Ab CALIB-13
4/13/01 8 W D ChemWdfaryW010412A b C4LlB-14
4/13/018 14 ~\ChemWiIIary~OlO4lZbA CALlB-15
4/13/01829 ~\ChemWillaryW010412Ab CALIB-16
4/13/018 43 D \ChemWillaryW010412A b CALIB-17
4/13/01 8 58 D\ChemWillaryW010412Ab CALIB-18
4/13/019 12 D~hemWiIIaryWOlO4lZAb CALlB-19
4/13101926 D ~ h e m W l l I a ~ W O l ~ l ? ACAbLlB-20
4/13/019 41 ~\ChemWilla1yW010412b~ SAMPLE
4113101 9 55 D \ChemWillaryW010412A b SAMPLE
Ale HILL00160 HILLW17D HILL0016 D HILLWIO D
HILLODZOD HILL0021D
HILL0022D
HILL0023 D HiLL0024D HILL0025 D HILL0026 D HILL0027 0 HILL0026 0 HILL0071 D HILL0072 D HILL0073 D HILL0074 D HIUW75 D HILL0076 D HILL0077 0 HILL0078 D HILL0079 D HILL0080 D
HILLWBl D
HILL0082 D HILL0083 D
Sample N8me
M uInfCompoundNa RT
0 nglmL PFOS in MeDH
THPFOS
2 5 n$mL PFOS in MeOH
THPFOS
5 nglmL PFOS in MeOH
THPFOS
In _ _ I lYfiYlllL
.d&H r"C,n"EI l,l"l ,
THPFOS
25 n&L PFOS in MeOH
THPFOS
40 n$mL PFOS in MeOH
THPFOS
50 1 nglmL PFOS in MeO
THPFOS
75 1 n$mL PFOS in MeO
THPFOS
1W 2 n$mL PFOS in Me
THPFOS
250 5 n$mL PFOS H)Me
THPFOS
400 8 n$mL PFOS in Me
THPFOS
501 n$mL PFOS in MeOH
THPFOS
1002nwinL PFOSin Me0
THPFOS
O n g G PFOS in M ~ O H
THPFOS
2 5 ng/mL PFOS in MeOH
THPFOS
5ngImL PFOS in MeOH
THPFOS
10ngmL PFOS in MeOH
THPFOS
25 ng/mL PFOS in MeOH
THPFOS
40 n$mL PFOS in MeOH
THPFOS
M 1 n$mL PFOS In Me0
THPFOS
75 1 n$mL PFOS in MeO
THPFOS
1W2 nglmLPFOS in Me
THPFOS
250 5 nglmL PFOS in Me
THPFOS
400 8 ng/mL PFOS in Me
THPFOS
501 n$mL PFOS In MeOH
THPFOS
1002n$mL PFOS In Me0
THPFOS
Area 5 106 5 105 5 097 5 105 5.098 5.093 5 098 5.105 5.105 5.104 5.106 5.106 5.104 5 099
5 099 5096 5 098 5 099 5 092 5 092 5 098 5 085 5 09 5 099 5 097 5 084
Amount
101ffi80
254
1014600
254
1026197
254
1049688
254
1021353
254
1028355
254
1027805
254
1029130
254
1037720
254
1024280
254
1016328
254
1009794
254
lwD8lO
254
882895
254
892938
254
895922
254
899640
254
884732
254
9-30766
254
891237
254
894208
254
891115
254
885221
254
886337
254
884329
254
859618
254
Compound N i m l
Area
Amount
PFOS
0
0
0
PFOS
5 323
55595 1292822
PFOS
5314
99110 344801
PFOS
5315
177299 7180735
PFOS
5308
488699 L J U U W
PFOS
5303
ma2 3759613
PFOS
5308
980853 4789974
PFOS
5315
1465942 7243472
PFOS
5 315
1929805 95 25518
PFOS
5314
4613300 2361376
PFOS
5509
7015531 3672555
PFOS
5316
8452648 4490379
PFOS
5314
15272484 848646
PFOS
0
0
0
PFOS
5 309
53548 1559602
PFOS
5 307
98474 4135939
PFOS
53W
180965 8847021
PFOS
was
5316 5302
474368 2617914 771667 4281933
PFOS
5302
9 6 W 5447431
PFOS
5308
1455847 8309964
PFOS
5296
1905711 1099345
PFOS
5308
4583269 2726371
PFOS
5309
6974946 4209773
PFOS
53
8448498 5156745
PFOS
5294
14868206 971 933
a AVeRGe: 888368.5077 10482.05486 %RSD: 1.2%
1154879 +30%: 621858 30%:
69% 72% 52% 84% 96% 96% 96% 84% ~2% 93% 85%
83% 88% 105% 107% 109% Ill%
iim
109% 105% 103% 97%
Inj Date
Batch
SampTypc
4/12/01 1722 OKhemWfllaryWO10412Ab SAMPLE
4/12/011735 D\ChemWiUaryWOl04lZ4b SAMPLE
4/12Xll20 58 D \ChemWiIlatyWOlC412A b SAMPLE
4/12/0121 12 D~hemWiIIaryW010412Ab SAMPLE
4/13/01 o 19 D\ChemWiIIaryW010412Ab SAMPLE
4/13/01 0 33 D \ChemWillaryWOlO412A b SAMPLE
4/13/01341 D\ChemW1IIary\H010412Ab SAMPLE
4/13/01 3 55 0!ChemWillaryWO10412Ab SAMPLE
4/13/016 33 D ChemWillaryWO1041ZA b SAMPLE
4/13/01648 D\ChemWllla~WOlMl2Ab SAMPLE
4/13/01 10 10 D\ChemWilla~OlC412Ab SAMPLE
4/13/01 1024 D\ChemWlllaryWO10412Ab SAMPLE
Flle HILLW14.D HILL0015.D HILL0029 D HILL0030 D HILL0043.D HILL0044.D HILL0057.D HlLLW58.0 HILLW69.D HILL0070.D HILLO384.0 HILLW85.D
Sample Name TNA 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN.A 4802 MeoH TN-A 4602 MeOH TNd4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH
Misc InlCompoundNa RT
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
Area 0 0 0 0 0 0 0 0 0 0 0 0
Amount
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Compound N a m l PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
Am. 0 0 0 0 0 0 0 0 0 0 0 0
Amoum
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Page 1 of 2
BACK TO MAIN
H010412.xk
e--
In1Dale
Batch
-4/12/01 21 26 D\ChemWillaryW010412Ab
4/12/01 21 41 D\ChemWillaryW010412Ab
"
,
. .
ln.* -"I&I
I
C
L ""
nlr*^-~U,I^-,Yn.n,.*.L "~"*","'.,,P',","'Y~'L~Y
4/12/01 22 10 D \ChemWillaryW0104124b
4/12/01 22 24 DChemWillafyW010412A b
4/12/0122 38 O\ChemW1IIaryWO10412Ab
4/12/0122 53 D\ChemWillaryWOl0412Ab
4/12/0123 07 D \ChemW~llaryW010412bA
4/12/01 2321 D\ChemWilIaryWO10412Ab
4/12/01 23 36 D \ChemWilIwWO104124 b
4/12/0123 50 D \ChemWillaryW010412Ab
4/13/01 005 DChemWillaly\HOl0412A b
4/13/01048 D\ChemWilIaryWOlC412Ab 4/13/01 1 02 D \ChemWilIaryWO10412Ab
4/13/01 1 17 o\ChemWillaryW010412Ab
4/13/01 1 3 1 DChemWinaryWOl0412A b
4/13/01 145 D\ChemWillaryWO10412Ab
4/13/01200 DChemWdIaryW010412Ab
4/13/01 2 14 D \ChemWdlaryW0104124b
4/13/01 229 DEhemW1llaryW010412Ab
4/13101 2 43 D\ChemWiIIaryWO10412Ab
4/13/012 57 D !ChemWillaryWOl04lZAb
4/13/01 3 12 DChemWillaryW010412A b
4/13/01 3 26 DChemWillaryW010412A b 4/13/014 09 D \ChemWillaryW010412b
4/13/01 4 24 D \ChemWillaryW010412Ab
4/13/01 4 38 D \ChemWilIaryWO10412Ab
4/13/01453 D\ChemWiII~O10412Ab
4/13/01 5 07 DChemWillaryW010412A b
4/13/01 521 DChemWillaryW010412A b
4/13/015 36 D\ChemWillaryW010412Ab
4/13/015 50 D ChemWdlaryW010412Ab
4/13/016 05 D \ChemWillaryW010412Ab
4/13/01 6 19 D\ChemWillaryW010412Ab
SampTw SAMPLE SAMPLE
E:".%
SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
File HILL0031.D HILL0032.D I111 I ""** n
! IILL"Wa.Y
HILL0034.0 HILL0035.D HILLW36.D HILLW37.D HILLW38.0 HILLW39.D HILL0040.D HlLLw41.D HlLLW42.D HILLW45.D HILL0046.D HILLOC47.D HILLW48 0 HILL0049 D HILL0050.D HILL0051.D HILLW52.D HILL0053 D HILL0054.D HILLW55.D HILL005S.D HILL0059.D HiLL0ffiO.D HILL0061 D HlLLW62.D HILLW63.0 HILLW64.D HILLW65.D HILL0066.D HILL0067.D HILLW68.D
Sample Name
MISSInfCompundNa RT
Area
1311518441
THPFOS
5098
13115185s1
1 1 . 4 C."P
-1
I* I l Y l u w t
THPFOS -, .^?^^
I nrrVD
5 098 5 G92
1311-5186MS41
THPFOS
5086
1311-518741
THPFOS
0
1311-518841
THPFOS
5 085
1311518941
THPFOS
5 084
13115189MS41
THPFOS
51
131151soS1
THPFOS
5 091
1311-5191-S1
THPFOS
5 105
5 ng/mL PFOS in MeOH
THPFOS
5 09
250 5 nglmL PFOSin Me
THPFOS
5 093
1311 5 19 2 4 1
THPFOS
5 OW
13115192MS41
THPFOS
5 111
1311-520241
THPFOS
5 092
1311-5203-Sl
THPFOS
5 084
1311520441
THPFOS
5 084
13IlS2MMS41
THPFOS
5084
13115205-SI
THPFOS
5084
1311-52oaS1
THPFOS
5 092
1311-520741
THPFOS
5 083
13115207MS-S1
THPFOS
5084
5 nglmL PFOS in MeOH
THPFOS
5 085
250 5 nghnL PFOS in Me
THPFOS
5 092
1311520gS1
THPFOS
5084
1311-520941
THPFOS
5 083
1311521oS1
THPFOS
5 096
1311-5210MS41
THPFOS
5 084
1311-521141
THPFOS
5 091
1311-5212S1
THPFOS
5 091
1311-521341
THPFOS
5 09
13115213MSSl
THPFOS
5 097
5 n@mL PFOS in MeOH
THPFOS
5 099
250.5 ngmL PFOSin Me
THPFOS
5 098
Amounl
Compound NanUT
1421318
--_- . .^ 1386650
lJJJwLI
254 STD>130%PFOS
254 STD,130%PFOS 2- STD>,WhPFOS
1167677
254 STD>130%PFOS
0
0 ISTDc70% PFOS
1378613
254 STD,130%PFOS
1378731
254 STD>130%PFOS
1203962
254 STD>l30%PFOS
1027068
254
PFOS
843460
254
PFOS
933401
254
PFOS
809322
254
PFOS
1068135
254
PFOS
819845
254
PFOS
1481313
254 STD>lWhPFOS
1430325
254 STD>130%PFOS
1442269
254 STDrl30%PFOS
1273255
254 STD,130%PFOS
1406869
254 STD>130%PFOS
1404007
254 STD>130%PFOS
1398417
254 STD>IBO%PFOS
1228700
254 STD>l30%PFOS
1163680
254 STD>130%PFOS
1059764
254
PFOS
1078804
254
PFOS
1062929
254
PFOS
I137098
254
PFOS
868940
254
PFOS
1076613
254
PFOS
1079410
254
PFOS
1083530
254
PFOS
872902
254
PFOS
882171
254
PFOS
851213
254
PFOS
Ana
5.308 5308
5309 5 303
5 293 5 302 5 301 5318 5 301 5 315
53 5 303 5 316 5 322 5302 5 302 5 301 5 294 5 301 5 309 5 301 5 301 5 302 5 302 5 301 5 293 5 306 5 301 5 308 5 301 5 307 5 307 5 309 5 315
AlllOvnt
121664 2.881555
244130 7549882
154787 4341296
2811652 1241501
290916
0
303230 981694
261759 8262414
2936973 1258164
255948 1132774
265286 1470451
955% 3752122
4533055 2621838
142453 5346159
3212267 2045971
111849 2360961
91312 1759256
81813 1392345
2746281 1109w6
242229 7349539
188695 5399388
183603 5239191
2820818 1182271
95332 267728
4415425 2179421
327252 14 12675
266793 114209
193712 7255599
3239017 194376
342271 14 87953
531168 2389509
545049 2446187
3604117 2159226
101365 4393428
4585830 2840595
75 0% 104.7%
53 5% 87.0%
87 9% 1134%
BACK TO MAIN
RoI0412.xiS
Sample Batch R0104012.b, analyzedon Rush 04-1241. PFOS AdsorbDecorb samples. Matrix: SolUSlglSed. Standard curve rang0 used for calibration of samples: 10-1002 nglmL (2.5,5 nglmL std not Included due to the hqher slmpia concentration range). Batch method: R010412.m
Inj Date
Batch
4/12/01 17:41 U:CneriiG~ijhL90!!%!2 b
4/12/01 1756 O:\ChemlRush\ROl041Z.b
4/12/01 1 8 : l O D:\ChemWush\R010412.b
4/12/01 18:24 D:\Chem\Rush\R010412.b
4/12/01 1639 D\Chem\Rush\R010412.b
4/12/01 1653 D:\Chem\Rush\R010412.b
4/12/01 1908 D:\Chem\Rush\RO10412.b
4/12/01 1922 O:\Chem\RushWOIM12.b
4/12/01 1936 O:\Chem\Rush\R010412.b
4/12/01 1951 D:Xhem\Rush\R010412.b
4/12/01 2005 D\ChemlRushlRO10412.b
4/12/01 20:19 D:\Chem\Rush\RO10412.b
4/12/01 20:34 D\Chem\Rush\ROIM12.b
4/13/01 1253 D\ChemWush\ROlWIZ.b
4/13/01 1397 O:\Chem\Rush\ROI0412.b
4/13/01 1322 D\Chem\Rush\ROI0412.b
4113iU1 1336 D:\Chem\Rush\R010412.b
4/13/01 1350 D:\Chem\RushWO10412.b
4/13/01 14.05 D\Chem\Rush\R010412.b
4/13/01 14:19 D:\Chem\RushR010412.b
4/13/01 1433 D:\Chem~ushWOl0412.b
4/I3/01 14:46 O:\Chem\Rush\RO1041Z.b
4/13/01 1502 D\Chem\Rush\R010412.b
4/13/01 1517 D:\Chem\RushWO10412.b
4/13/01 1531 D\Chem\Rush\R010412.b
4/13/01 1545 D:\Chem\Rush\RO10412.b
SampWp. SAMPLE CALlE-I CALIB-2 CALlE-3 CALIE-4 SAMPLE CALlE-5 CALlB-8 CALlE-7 CALlB-8 SAMPLE CALIE-9 CALIE-10 SAMPLE CALlE-11 CALIE-12 CALiE-I3 CALlE-14 SAMPLE CALIE-15 CALIE-16 CALl8-17 CALlE-18 SAMPLE CALlB-19 CALlE-20
File RUSHDO17.D RUSHWi8.D RUSH0019.D RUSH00ZL.D RUSH0021.D RUSHW2Z.0 RUSH0023.D RUSHWZ4.0 RUSH0025.D RUSH00ZB.D RUSHW27.D RUSH00ZB.D RUSH0UZB.D RUSH0097.D RUSHOOS8.D RUSHW.D RUSH01OO.D RUSHOIO1.D RUSH0102.0 RUSH0103.D RUSH0104.D RUSHO105.D RUSHO1ffi.D RUSH0107.D RUSHOlO8.D RUSHOlM).O
Sample Name 0 n&L PFOS in MeOH 2.5 ag.JmLPFOS in MeOH
5 nalml PFOSin MeOH 1 0 ng/mL PFOSin MeOH 25 ng/mL PFOS in MeOH 4 0 nglmLPFOSin MeOH 50.1 n g h L PFOSin MeOH 75.1 ng/mL PFOS in MeOH 100.2 ng/mL PFOS in MeOH 250.5 nglmL PFOS in MeOH 400.8 n g h L PFOSin MeOH 501 n@mLPFOSin MeOH 1002 ng/mL PFOSin MeOH 0 ng/mLPFOS in MeOH 2.5 ng/mL PFOS in MeOH 5 ng/mL PFOS in MeOH 10 ng/mL PFOSin MeOH 25 ng/mL PFOS in MeOH 4 0 nglmL PFOSin MeOH 50.1 ng/mL PFOS in MeOH 75.1 ng/mL PFOS in MeOH 100.2 n@mLPFOSin MeOH 250.5 ng/mL PFOS in MeOH 400.8 ng/mL PFOS in MeOH 501 ng/mL PFOS in MeOH 1W2 ng/mLPFOS in MeOH
Misc InfCompounaT THPFOS THPFOS THPFOI THPFOS THPFOS THPFOS THPFOS THPFDS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
Area
Amount
5.583 598645
254
5.585 600613
254
5.5es m w s
254
5.593 600915
254
5.574 597942
254
5.58 601700
254
5.588 602030
254
5.577 604353
254
5.579 599001
254
5.587 592421
254
5.58 598537
254
5.581 586806
254
5.585 566i718
254
5.543 576686
254
5.554 579447
254
5.559 564774
254
5.551 585534
254
5.549 579681
254
5.551 577089
254
5.545 576872
254
5.555 579170
254
5.551 582102
254
5.558 578231
254
5.551 570124
254
5.553 566337
254
5.545 571690
254
CompoundlT
PFOS PFOS PFOS PiOI PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFDS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
Area
Amount
0
0
0
5.795 124534
0
5.788 162745 2.292686
57E9 2.16433 7.373546
5.777 479447 24.5.5608
5.783 712400 41.060268
5.784 860733 51.933337
5.774 1214934 78.281691
5.782 1517772 102.89232
5.79 3189495 251.02982
5.783 4665182 395.00116
5.785 5465982 494.621
5.788 9329369 1006.4382
0
0
0
5.784 108654
0
5.762 146886 1.502829
5.754 222698 6.829581
5.752 463425 24.442741
5.754 683988 41.135446
5.748 631833 52.479175
5.758 I172849 78.947857
5.755 1462631 103.52283
5.761 3120176 251.71766
5.754 4477040 398.70415
5.756 5297025 497.2204
5.746 9058485 999.91911
45.9% 73.7% 98.2% 102.4% 103.7% 104.2% 102.7% 100.2%
98.7%
30.1% 88 3% 97.8% 102.6% 104.7% 105.1% 103.3% 100.5%
99.2%
Av0raqe: 587644.7 Std Dev: 11704.42
%RSD: 2.0%
763938 +30% 411351 -30%:
IniD m
Batch
4/12/01 17:13 D\Chem\Rush\ROlM12.b
4/12/01 1737 D:\ChemWushWOlMlZ.b
4/12/0120:M D:\ChemWush\R010412.b
4/12/0121:03 D:\Chem\Rush\R010412.b
4/13/01 a09 D:\Chem\Rush\R010412.b
4/13/01 024 D:\Chem\RushWO10412.b
4/13/01 3:31 D\Chem\Rush\R010412.b
4/13M1 345 D:\Chem~ush\RO10412.b
4/13/01 652 D:\Chem\Rush\R010412.b
4/13/01 7:06 D:\ChemRush\RO10412.b
4/13/01 916 D\Chem\RushW010412.b
4113/01 9:31 D\Chem\Rush\ROl0412.b
4/13/01 1209 D\Chem\RushR010412.b
4/13/01 1224 O:\Chem\Rush\R010412.b
4/13/01 1236 D\ChemRush\RO10412.b
4/131O1 16:W D:\Chem\RushROl0412.b
4/13/01 1614 D:\Chem\Rush\R010412.b
SampType SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
SAMPLE
File RUSH0015.D RUSH0018.D RUSH0030.D RUSHOO31.D RUSHW44.D RUSHOO45.D RUSHOO58.D RUSHOO59.D RUSHW72.D RUSHW73.0 RUSHWB2.D RUSHW83.D RUSHOOM.0 RUSHWO5.D RUSHOLW5.D RUSHO1IO.O RUSHO111.0
Sample Name TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4602 MeDH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH
Misc InfCornpounBT THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFDS THPFOS THPFOS
Area 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Amount
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Compourib(T
P\rea
Amount
PFOS
5.8 92075
0
PFOS
5.799 71408
0
PFOS
5.797 88361
0
PFOS
5.795 74724
0
PFOS
5.785 70265
0
PFOS
5.782 66840
0
PFOS
5.793 69743
0
PFOS
5.776 66261
0
PFOS
5.792 67260
0
PFOS
5.769 63670
0
PFOS
5.763 66988
0
PFOS
5.762 62760
0
PFOS
5.764 67549
0
PFOS
5.777 60061
0
PFOS
5.775 596W
0
PFOS
5.79 76873
0
PFOS
5.768 61967
0
Page 1of 2
n-0l
(P (D
u1 -4 0
0
-k
-4 0 0
BACK TO MAIN
R010412As
Inj Date
Batch
SampType
4/12/01 21:17 D.\Chem\Rush\R010412.b
SAMPLE
4/12/01 21:31 D\Chem\Rush\R010412.b
SAMPLE
^ * . ~ 4/12/01 21:46 D:\Chem\Rush\R010412.b
SAMPLE
4/12101 22:W D:\Chem\RushWOlM12.b
SAMPLE
4,I L W I LL. D:',~.h.P~~\a~~Ph\ROlOl2.bSAMPLE
4/12/01 22:29 D:\ChemWush\RO10412.b
SAMPLE
4/12/01 2243 D:\Chem\RushW010412.b SAMPLE
4112/01 2257 D:\Chem\RushWO10412.b
SAMPLE
4/12/01 2312 D\Chem\Rush\R010412.b
SAMPLE
4112M1 2326 D:\Chem\Rush\R010412.b
SAMPLE
4/12/01 2340 D:\Chem\Rush\RO10412.b SAMPLE
4/12/01 23:55 D\Chem\Rush~O10412.b SAMPLE
4/13/01036 D:\Chem\Rush\ROl0412.b
SAMPLE
4113/01052 D:\Chem\Rush\RO10412.b SAMPLE
4/13/01 1:07 D:\Chem\RushROl0412.b
SAMPLE
4/13/01121 D:\Chem\Rush\RO10412.b
SAMPLE
4/13/01 1:36 D:\Chem\RushW010412.b
SAMPLE
4/13/01 150 D\Chem\Rush\R010412.b SAMPLE
4/13/01 2:04 D:\Chem\Rush\ROl0412.b SAMPLE
4/13/012:19 D\Chem\Rush\ROI0412.b
SAMPLE
4/13/01 233 D:\Chem\Rush\R010412.b
SAMPLE
4/13/01 2:47 D\Chem\Rush\R010412.b
SAMPLE
4/13/01 3 0 2 D:\Chem~ushWD1L?412.b SAMPLE
4/13/013:16 D:\Chem\Rush\R010412.b
SAMPLE
4/13/01359 D:\ChemWush\R01041Z.b
SAMPLE
4/13/01 4:14 D:\Chem\Rush\RO10412.b SAMPLE
4/13/01428 D:\Chem\Rush\ROlMl2.b
SAMPLE
4/13/01 4:43 D\Chem\RushWO10412.b SAMPLE
4/13/01 457 D:\Chem\Rush\R010412.b
SAMPLE
4/13/01 5:11 D:\Chem\Rush\RO10412.b
SAMPLE
4/13/01526 D:\Chem\Rush\ROl0412.b
SAMPLE
4/13/01 5:40 D:\ChernWush\RO10412.b SAMPLE
4/13/01 5 5 5 D:\Chem\Rush\ROl0412.b
SAMPLE
4/13/016:09 D:\ChemWush\ROl0412.b SAMPLE
4/13/01623 D:\Chem\Rush\R010412.b
SAMPLE
4/13/01 6:38 D:\ChernWush\RO10412.b SAMPLE
4/13/01 7:21 D:\Chem\Rush\RO10412.b SAMPLE
4/13/01 735 D:\Chem\Rush\R010412.b SAMPLE
4113K)I 750 D:Fhem\RushU?010412.b SAMPLE
4/13/01 8:04 D:\Chem\Rush\R010412.b
SAMPLE
4/13/01 8:18 D\Chem\Rush\RO10412.b
SAMPLE
4/13/01 8:33 D:\Chem\Rush\RO10412.b SAMPLE
4/13/01 8:47 D:\ChemWushtR010412.b
SAMPLE
4/13/01 9:02 D\Chem\Rush\R010412.b SAMPLE
4/13/01 9:45 D:\Chem\Rush\R010412.b
SAMPLE
4/13/01 l0:W D:\Chem\RushWO10412.b SAMPLE
4/13/01 10:14 D:\Chem\Rush\R010412.b SAMPLE
4/13/01 1028 D:\Chem\Rush\RO10412.b SAMPLE
4/13/01 10:43 D:\Chem\Rush\RO10412.b SAMPLE
4/13/01 1057 D:\Chem\Rush\R010412.b SAMPLE
4/13/01 11:12 D:\Chem\RushWO10412.b SAMPLE
4/13/01 11:26 D:\Chem\RushW010412.b SAMPLE
4/13/01 11:41 D:\Chem\Rush\R010412.b
SAMPLE
4/13/01 1155 D:\ChemWush\R010412.b
SAMPLE
File RUSH0032.0 RUSH0033.D RUSH0034D RUSH0035.D RUSHOO36.0 iiUSHGC37.D RUSH0038.D RUSHOO39.D RUSHOC4.D RUSHOOP1.D RUSH0042.D RUSHOOP3.0 RUSH0046.D RUSHWII7.D RUSHW(8.D RUSHOM9.D RUSHOO59.D RUSH0051.D RUSHOO5Z.D RUSHW53.D RUSHW54.D RUSH0055.D RUSHWS.D RUSHW57.D RUSHW60.D RUSH0061.D RUSM2.D RUSHo63.D RUSHW64.D RUSHW65.D RUSHOC66.D RUSHM167.D RUSHN68.D RUSW9.D RUSHO070.D RUSHW71.D RUSH0074.D RUSH0075.D RUSHW76.D RUSHW77.D RUSHW78.D RUSHW79.D RUSHW80.D RUSH0081.D RUSHOOB4.D RUSHCO85.D RUSHW66.D RUSH0087.D RUSHO088.D RUSHOOB9.D RUSHOO9O.D RUSHO091.D RUSHOO92.D RUSHm3.D
Sampio Name 1311-5124-51 1311-512551 1311-512651 1311-5126MSS1 1311-5127-51 !?1-512&SI
1311-5129-51 1311-5129MSS1 1311-51X)-Sl 131I-5131-SI 5 ng/mL PFOS in MeOH 250.5 ng/mL PFOS in MeOH 1311-5132-SI 1311-5132MS-SI 1311-5133-SI 1311-513441 1311-513551 1311-5135MS-SI 1311-5136-S1 1311-5137-S1 1311-5138S1 1311-5138MSS1 5 ng/mL PFOS in MeDH 250.5 ng/mL PFOS in MeOH 1311-5139-S1 1311-514081 1311-5141-S1 1311-5141MSS1 1311-5142-SI 1311-514581 1311-5144-S1 1311-5144MS-S1 1311-514551 1311-514651 5 ng/mL PFOS in MeOH 250.5 ng/mL PFOS in MeOH 1311-5147-S1 13115147MS-S1 1311-5l45S1 1311-5149-S1 1311-5150S1 1311-5150MS-S1
5 nghL PFOS in MeOH 250.5 ng/mL PFOS in MeOH
1311-5151-S1 1311-515241 1311-5153Sl 1311-5153MSSl 1311-5154-S1 1311-515551 1311-5156-51 1311-5156MSSl 5 ngmL PFOS in MeOH
250.5 n g h L PFOSIn MeOH
Misc InfCompounMl THPFOS THPFOS THPFOS THPFOS THPFOS
T-H.P_FOS
InrF03 THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFDS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
Area Amount
5.58 677530
254
5.571 656863
254
5.557 633889
254
5.551 650748
254
5.568 615903
254
5.572 613221
254
5.5ES W 5 5
254
5.585 485715
254
5.567 594618
254
5.565 575974
254
5.572 592560
254
5.553 m 7 7 0
254
5.565 614288
254
5.557 483260
254
5.565 587357
254
5.565 585569
254
5.572 585514
254
5.565 477977
254
5.566 565186
254
5.567 580244
254
5.564 577866
254
5.562 480568
254
5.559 577392
254
5.572 578945
254
5.551 595025
254
5.55 639476
254
5.557 616815
254
5.559 496627
254
5.558 608824
254
5.551 600876
254
5.565 607245
254
5.559 554564
254
5.572 W380
254
5.545 588635
254
5.562 584267
254
5.561 584334
254
5.565 602683
254
5.556 481237
254
5.572 584694
254
5.571 579440
254
5.554 560769
254
5.565 464515
254
5.559 571261
254
5.551 577867
254
5.572 579739
254
5.561 567623
254
5.565 566068
254
5.549 451967
254
5.553 560862
254
5.568 547161
254
5.557 562481
254
5.554 446367
254
5.547 570884
254
5.558 584635
254
CompounRT PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFDS PFOS PFOS PFOS PFOS PFOS PFOS PFDS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
5.77 5.774 5.753 5.747 5.769 5.782
0 5,775 5.777 5.769 5.775 5.756 5.768
5.76 5.775 5.768 5.775 5.768 5.769
5.77 5.767 5.772 5.769 5.775 5.754 5.754 5.761 5.769 5.768 5.754 5.775 5.762 5.775
0 5.772 5.764
0 5.761 5.782 5.775 5.757 5.775 5.769 5.754 5.775 5.757 5.768 5.752 5.75 5.769 5.768 5.757 5.757 5.761
e--
A n a Amount
3454739 235.14955
3355208 235.64253
3182334 230.60435
6054164 493.84798
444477 21.144501
168978 2.504388
0
'0
235335 221.25701
480775 24.842763
373656 18.057138
158302 2.158669
3218501 256.73464
502482 25.246348
2628517 254.1411
1602422 112.23406
1852365 133.55448
1678850 135.81745
3662482 386.66394
1220182 a5.185002
1144435 76.528101
I130123 75.760492
3167549 321.0065
157432 2.385234
3179184 257.08626
2160001 157.04195
2298555 155.2245
2208338 154.50156
4097578 424.19511
1622807 109.20753
1479479 99.477125
1456259 96.43578
3859865 343.24391
214358 5.865127
0
0
152719 1.92182
3226476 258.79876
0
0
2325043 220.44504
1727840 123.26243
1311565 90.083398
1 9 m 7 5 152.50789
3830754 423.93446
155989 2.401694
3239422 263.57325
5190205 470.27597
5181003 481.76818
4993539 461.55284
6454778 867.49401
3101765 259.20449
3159998 273.24465
3121769 260.40515
4577579 559.64233
157988 2.553111
3184410 265.50363
43.2% 102.5%
47.7% 102.6%
38.4% 103.3%
48.0% 105.2%
51.1% 106.0%
Page 2 of 2
BACK TO MAIN
-0 Iu
(cl
tD
SampleBatch HOlO3W.b, analyzed on Hlllay 010941. PFOSAdsorbitesorb sampl-. Standard curve range usad for calibration of samples: 5 4 0 . 8 nOlmLIN1n@mLctd not Includeddue to the low Sample conmntntionnnO.1.
Batch mathod H010309.m
gDab
Balch
SampType
3/9/01 19 38 D \ChemWllaryW010309b SAMPLE
3/9/01 19 49 D \ChemWllaryW010309b CALIB-1
3i9/0120 01 D \ChemW1llaryWOIO309b CALIB-2
3/9/0120 12 D \ChemWllaryW010309b CALIB-3
3I9m12024 D \ c h e m W r ~ W O l l w o sb CALIB-4
319/012035 D ChemWdlaryW010309b CAUB-5
3/8/0120 46 D ChemW1llaryW010309b CALIB-8
3/9/0120 58 D iChemWdiaryW010309b CALlB-7
3/9/0121 09 D \ChemWllary\H010309b CALIB-8
3/9/01 21 20 D iChemWllsryWOlO309b CALIB-9
3/9/0121 32 D IChernW1llaryW01030b9 CALIB-10 mrni21 43 D \ c h e m ~ ~ i i s r y ~ 0 1 0b3 rSnAMPLE
3 l W O 1 19 09 D iChemWilaryW0103O8b SAMPLE
3/10/01 1920 D \chemW1IlaryWO10309b CAUB-11
3H0101 1931 D \chemWdlaryWOlOJosb CAUB-12
310101 1943 DiChemW~llaryW01030b9 CALiB-13
310101 19 54 D !ChemWdlaryW010309b CAUB-I4
3/1010120 05 D \ChemWllaryW010309b CALIB-15
3lOlOl20 17 D \ChemWllaryW010309b CALIB-18
31WO120 28 D \ChemW1llaryWOlO309b CALK-17
31W012040 D\ChemW1llaryW010309b CAUB-18
311WO120 51 D \ChsmWilarvW010309b CCAUB 1
i l l w o l 2 1 o 2 D Ichemwll&W010309 b CAuB_i;D
3110101 21 14 D\Chem~~llaryW01030b9 SAMPLE
3101010 22 D \cr+emWdlaryUiOlO309b CCALIB-1 3101010 33 D \ChemWllaryWOIOM9b CCALIB-1 3101013 01 D \Cmn~111aryW0103b09CCALlB-1 3/10!013 13 D I C M m W d l a ~ l O M B bCCALIB-1 310,Ol 5 41 D \cr+emW8 oaryWO10309 b CCAUB-1 3110,Ol 5 52 D ChemW~iIaryWOlOJobs CCALlB-1 3110101 8 20 D ChemWIltaryWOIOJos b CCALIB-1 3 l O l O l 8 31 D ChemW#amryW0103Wb CCAUB-1 311W01 1059 D C h e m haryUiOlO309 b CCALIB-1 31WO1 11 11DCnem\h~laryW010309bCCAUB-1 3 l W O l 1339 D ChemklllaryW010309b CCALIB-1 31WO1 1333D\ChemW1laryW010309b CCAUB-1 3 1 0 I O 1 1607 D Chemw I a ~ O l bOCC~ALIB-1 310101 16 18 D iChemUidlaryW010%3 b CCAUB-1 3/1WO11823 D Ch.mWllsryWO10309b CCALIB-1
Fils HILLW21 D
HlLLM22 D HlLLW23.D HlLLW24.D HlUW25.D HILLW2B.D HILL0027.D HILL0028.D HILLO029.D H1LLM)M.D HILLW31.D HILL0032.D HlLL0145.D HILLO148.D HiLL0147.D HlLL0148.D HILL0149.D HlLL0150.D HlLLO15l.D HILL0152.D HlLLO153.D HlLL0154.D HILL0155 D HILL0158 D
Sample Nanm 0 nplmLPFOSInMeOH
2 5 ndmL PFOSIn MeOH 5 n@mLPFOS in MeOH r o i p l m L PFOSm M ~ O H 25 ndmL PFOS in MeOH 4 0 nplmL PFOSin MeOH 50 1nplmL PFOSIn MeOH 75 1n@mLPFOSin MeOH 1002 nplmL PFOSin MeOH 2 5 0 5 ndmL PFOSm MeOH 400 8 nplmLPFOSIn MeOH 501 nvmL PFOSin MeOH 0 nplmL PFOS in MeOH 2 5 nplmL PFOS in MeOH 5 nplmL PFOS in MaOH 1 0 n m L PFOS m MeOH 25 nplmL PFOSin MeOH
4 0 nplmL PFOS in MeOH 5 0 In@mLPFOS In MeOH 75 1n#mL PFOSIn MeOH 1002 nplrnLPFOSin MeOH 250 5 ndmL PFOSVI MeOH 4W 8 n&L PFOSin MeOH 501 nglmL PFOS in MeOH
Misc Info
Compound Name RT THPFOS
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
Area
A w n 1 C-nd
5049
1.. 07.. 32_ 8.1 . 2-5~4 PFOS
5 041
1072804
254 PFOS
5.05
1108750
254 PFOS
5 042
1078385
254 PFOS
5 035
1076706
254 PFOS
5 039
1100085
254 PFOS
5 043
1076389
254 PFOS
5 038
1055026
254 PFOS
5 045
1081297
254 PFOS
5 044
1069673
254 PFOS
5 038
1034737
254 PFOS
5 036
1060528
254 PFOS
5 023
888821
254 PFOS
5015
870619
254 PFOS
5MK)
912239
254 PFOS
5 013
888038
254 PFOS
5 018
880755
254 PFOS
5 008
920893
254 PFOS
5 017
899188
254 PFOS
5 015
876702
254 PFOS
5 014
901682
254 PFOS
5W8
899022
254 PFOS
5W9
898706
254 PFOS
5014
899348
254 PFOS
Name RT
Ares
0
5 285 5 274 5.273 5.259 5.271 5.274 5.267 5.269 5.288 5.287 5.28
0 5.2u) 5.232 5.237 5.247 5.232 5.241 5.246 5.238 5.232 5233 5238
Amount
0
0
e 4 5 1 2.270782
143418 4.248778
231999 7.730027
622428 2254388
1029087 3723449
1260789 4890954
1838015 7078131
2464526 6343521
5867511 2338441
0794548 3733181
10677107 449 019
0
0
79381 2700768
150012 5873501
233970 9723374
607127 2710542
998520 4338523
1226451 5499273
1767880 8231103
2372952 108 4295
5738392 274 4434
8481603 417304
10729909 541 808
HILLCC46.D HlLLOM7.D HILL0080.D MLLWg1.D HlLLW74.D HlLLW75.D HILLW88.D HlLLW89.D HILL0102.D HlLLO103.D HILLOi1B.D HILLOll7.D HILWl29.D HILLOl3O.D HlLLO14l.D
YII I"<AD n
5 nplmL PFOS in MeOH 250 5 nplmLPFOSIn MeOH 5 nglmL PFOSin MeOH 2 5 0 5 W m L PFOSII) MeOH 5 nplmL PFOSin MeOH 250 5 nplrnLPFOSin MeOH 5 W m L PFOSin MeOH 250 5 n m L PFOSinMeOH 5 nplmL PFOS in MeOH 250 5 ndmL PFDS m MeOH 5 nplmLPFOSin MeOH 250 5 nplmL PFOS in MeOH 5 nplmLPFOS m MeOH 250 5 nplmL PFOSm MeOH
5 nplmL PFOS in MeOH
Amnaa: Std Dw:
Wlk
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
THPEnS
S83395.417 94153.7839 9.6%
5.029 5.031 5.028 5.029 5.027 5.023 5.028 5.021 5.033 5.035 5.017 5.021 5.02 5.017 5.014 s nia
+30% 1278414 4% 608377
1094159
254 PFOS
1070122
254PFOS
'
1Mu793
254 PFOS
1-55
254 PFOS
968230
254 PFOS
978188
254 PFOS
922690
254 PFOS
806571
254 PFOS
909132
254 PFOS
908551
254 PFOS
e89545
254 PFOS
872093
254 PFOS
888500
254 PFOS
870533
254 PFOS
888391 nnnn
254 PFOS Dcnc
5.253 5.262 5.252 5.253 5.259 5.247 5.253 5.245 5.257 5.288 5.241 5.245 5.244 5.241 5.238
5 Y,'
133354 3.9456 5758785 228.8809
143353 4.362347 5711018 228.462
137467 4856142 5853787 246.9623
138789 5.015913 5622338 258.1543
140178 5.256988 5838922 2883707
135055 5302078 5547134 273.4258
137470 5.423749 5593808 278.4058
141405 5.473911 .WA?I1A?Cd716 31-
I
85% 77%
m%
93% 94% 94% 92% 93% 93%
113% 97% 108% 108% 110% 109% 106% 110% 1M%
1W% 106% 105% 106% 106% 109% 108% 110%
BACK TO MAIN
Inj Date
Batch
SampType
39/01 1915 D:ChemWillaryW010304.b SAMPLE
3/9/01 1927 WChemWiUaryWOlO3.b SAMPLE 3/9/01 2155 D.ChemWiilaryW0103.b SAMPLE 319m122.0g D:ChemWlaryWOlO3.b SAMPLE 3/9/0122:17 DChemWiUaryW010309.b SAMPLE
UlWOl 0:45 D:ChemWUIaryWOlO309.b SAMPLE UlWOlO.58 D:ChemWiUaryWOlO309.b SAMPLE UlW013:24 D:ChemWillaryWOlO30.b SAMPLE 3llWO1 3:M D:ChemWiliaryWol030.b SAMPLE 3110101 8:03 D:ChemWiUaryW01030.b SAMPLE U1M)l 6:15 D:ChemWillaryWOlO3W.b SAMPLE UlW018:43 DChernWUlaryW0103W.b SAMPLE U1M)l E54 DChemWdlaryWOlO3W.b SAMPLE 3 l l M l l 11'22 DChemW~laryWOlO3o9.bSAMPLE
Uloml H:34 D : C h e m W i I l a ~ O l O ~ . SbAMPLE
3llMll l4:02 DChsmWillaryWOlo9.b SAMPLE UlOR11413 D:\wemWdlaryWOlo3oS.b SAMPLE U1M)l 16:30 D.ChemWtUaryWOlO3.b SAMPLE UlOm116:41 D:WemWillsryW010309.b SAMPLE
Uloml 18:46 D:ChemWillaryWO10309.b SAMPLE Uloml 18.57DChamWillaryWOlo309.bSAMPLE
UlOm121:25 DChemWillaryWO1030.b SAMPLE
Re
Sample Name
HlUOO19.D HlLLO02D.D HlLLW33.D HlLLW34.D HlLLW35.D HILLM8.D HlLLW49.D HILLW82.D HlLW3.D HlLLW7E.D HILLW77.D HlLLW90.D HILLWIH.0 HIU104.D HlLLO105.D HlLLO118.D HlLLO119.D HlLLO131.D HlU0132.D HlUO143.D HIU0144.D HlU0157.D
TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 M a O n TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH
Mi% l n b CompoundName RT
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
Area
0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Amount CompoimdName RT
Area
0
0 PFOS
0
0 PFOS
0
OPFOS
0
0 PFOS
0
0 PFOS
0
OPFOS
0
0 PFOS
0
0 PFOS
0
OPFOS
0
0 PFOS
0
OPFOS
0
OPFOS
0
OPFOS
0
OPFOS
0
OPFOS
0
0 PFOS
0
0 PFOS
0
0 PFOS
0
OPFOS
0
0 PFOS
0
0 PFOS
0
0 PFOS
5.33 0
5.315 0 0
5.315 0
5.301 0
5.294 0 0 0
5.303 0 0 0 0 0 0 0
5.28
Amount
20788
0
0
0
19572
0
0
0
0
0
9584
0
0
0
9498
0
0
0
9444
0
0
0
0
0
0
0
8875
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
17138
0
BACK TO MAIN
InlDale
Batch
SampTp
W 0 1 22.29 D:ChemWillarvui01030S.b SAMPLE
319101 22 40 DChsmWilla&\n010309b SAMPLE L9101 22 51 D ChomWllaryW010309 b SAMPLE M,01 23 03 D Chem%HdlaryW010309b SAMPLE u9101 23 14 D CnsmW.llaryW010309 b SAMPLE m o l 2 3 25 D CnemW1llaryW010309D SAMPLE Y9m1 23 37 D ChemHlaryw010309 b SAMPLE 39/0123 48 D ChemHi arvWo10309 b SAMPLE 31910123 59 D Chem\nllaryW010309b SAMPLE 510101 0 11 D ChemW.llsryW010309 b SAMPLE 3110,ol 108 D CnemWdlaryW010309b SAMPLE 3110101 1 19 D CnemVlll~yW010309S~AMPLE YlOlOl 130 D Chem~llaryV1010309b SAMPLE 3110101 1 42 D ChemMllaryW310309b SAMPLE 311OD1 1 53 D YlhemWI am010309 b SAMPLE 3110101 2 M D ChsmWo.aryWOlO309 b SAMPLE 3110101 2 16 D Chemhd ary\n010309 b SAMPLE 3110101 2 27 D IChemWdlaryW010309b SAMPLE 3110101 2 39 D CnemW llaryw010.309b SAMPLE 311Om12 50 D Ch.mw~llaryW010309b SAMPLE
310101347 D ChemHdlaryW010309b SAMPLE
3110,Ol 3 58 D ChomWdlaryWO10309b SAMPLE 3110101 4 10 D ~hembi~llaryWOlO30b9 SAMPLE 3110101 421 DYlhemWllaryW010309b SAMPLE 310101 4 32 D ChemWJlaryiHOlO309b SAMPLE 410101 444 DChsmiHllaryV1010309b SAMPLE JllOD1 4 55 D ChemHdla~010309b SAMPLE YlOlOl 5 06 D ChemWdlaryW010309b SAMPLE 311W15 18 DCbmW1IlaryWOlO309b SAMPLE Y l W 1 5 29 D ChemW,lla~OlO309b SAMPLE 311(u010 28 D ChemWI aryW010309 b SAMPLE Y101010 38 D Chsmui IlaryWO1Oy)Bb ?AMPLE 3110101 6 49 D Ch~mV(lla~W0103b09SAMPLE 31101017 W D Chernui.llaryW010~b SAMPLE 3110101 7 12 D CnemWillaryW010308 b SAMPLE
YlOD17 23 D CnemW~llaryWO1Oy)Bb SAMPLE 3110101734 D CnemWllaryW010308b SAMPLE
Y l W l 7 46 D CMmW#llaryHOlOMg b SAMPLE
Flle
Sample Nsme
HILLW36.D
HILLW37.D HILLW38.D HlLLW3S.D HlLLW4O.D HILLW41.D HlLLW42.D HILLOM3.D HILL0044.D HlLLW45.D HlLL0050.D HILLW51.D HlU0052.D H1LLWm.D HlLLW54.D HILLW55.D HILLWSB.D HlLLW57.D HILL0058 D HILL0059.D HILLWB4.D HlLLOCS5.D H1LLWBg.D HlUCC67.D HILLW68.D HILLCC69.D HlLLW70.D HILLW71.D HILLW72.D HILLW73.D HlLLW78.D HILLW79.D HILUKIE0.D HILLw8l.D HILLO082.D HlLLWC3.D H1LLW.D HlLLW85.0
EO013114109Sl
E001311-4104-S1 E001311-4105-51 E00131141O~Sl-MS E00131141OgSl ECC-13114107S1 E0013114105S1 E0013114108SI-MS E0013114lO9-S1 E0013114110Sl E0013114111Sl E0013114111-S1-MS EW-1311-4112-S1 E0013114116Sl E001311411CS1 E001311411CS1-MS E0013114115S1 E0013114115S1 E001311-4117-Sl E0013114117-S1-MS E0013114115Sl E001311411aSl E00131141MS1 EW-1311412OSl-MS E001311403+S2 EO013114W5SZ E0013114OC6S2 E001311-402552 E001311403052 E m 1 3 11-4wcS2 E0013114035-52 E0013114l%-S2 E001311~S2 E001311-4059-52 E0013114060S2 EO01311 m S 2 E001311-4085S2 EW-1311-
Mirclnfo CompoundNama RT
Area
Amount CwnpoundNsma RT
Area
Amount
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
5034 5.03 5.042 5.029 5.038 5.035 5.028 5 029 5.027 5.031 5.028 5.029 5.035 5.029 5.032 5 028 5.028 5.028 5.029 5.023 5 028 5.m 5.022 5.023 5.027 5.028 5.028 5.029 5.031 5.029 5.028 5.03 5.028 5.022 5.027 5.029 5.021 5.027
1058178 1221819 1028589 074849 1488017 1055707 1050237 865Mo 1073533 1045079 1036444 869342 1043258 1053741 1654927 836338 1048939 1038327 1024948 865270 998797 1004358 1012808 843094 941893 914587
aiono
951757 912591 919151 924250 $24751 879571 869204 80&u? 870882 814404 889708
254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS
5.288 5.289 5.268 5.28 5.28 5.288 5 25 5.26 5.250 5.282 5.259 5.28 5.288 5.26 5.203 5 252 5.252 5.259 5.253 5.247 5.254 5.248 5.252 5.254
0 0 0 5.253 5.255 5 253 0 0 5.259 5 248 5.258 0 0 0
234470 215844 237536 3983142 452939 325164 304848 4611498 173898 178135 165195 3920789 170915 178264 330413
3890653 177753 181171 164575
3867704 leoBl8 178877 176413
3760328 0
8.012285 8.1698
8.375534 190.9872 11.53411 11.51244 10.78999 195.2088 5.573715 5.956354 5.488121 190.0809 5.646499 5788485 7.103971 196.3718 5.890369 6.081278 5.516164 188.3050 8.353969 6.139234 6068331 187.8729
0
0 270433 2641%
58201 0
2302809
0 10.5408 10.7588 1.571008
0 9.8320704
260133 290040
0 0 0
10.88282 13.58092
0 0 0
4
0 w
BACK TO MAIN
...
(Dale
Bald?
SarnpTypn
310101 7 57 D ChemWll~W010309b SAMPLE
310101 808 D\ChemWilla~W010309b SAMPLE 31M)19 06 D !ChemWdlaryWOl0308 b SAMPLE 31ox)19 17 D `ChemWdlaryWOlO308b SAMPLE 3/10101928D\ChernW~IhyWOl0308b SAMPLE 3101019 40 D ChernWdaryW010308b SAMPLE 310101 9 51 D ChemWlllaryW010309b SAMPLE 3110101 1003 D ChemWillaryWOlM09b SAMPLE 3/10/01 10 14 D ~hem~1llaryw0103b0eSAMPLE 3110101 1025 D \ChemWillaryWOI0309b SAMPLE 3110101 10 37 D ChemW~llaryW01030b9 SAMPLE 3lOIO1 1048 D V)hemWillaryW010309b SAMPLE 3110101 1145D\ChemWdlaryW010309b SAMPLE 3/1M)1 1156 D \ChernWillary\HO10308b SAMPLE 310101 1208 D \ChemWillaryW010329b SAMPLE 3110101 12 19 D ~hernW~llaryWOlcMOb9SAMPLE 3110101 12 30 D \ChemWllaryWOl[UO9b SAMPLE 3110101 1242 D \ChemWdlaryW010309b SAMPLE 311010112 53 D \ChemWllaryW010309b SAMPLE 31010113 05 D ChemWalaryWO10308b SAMPLE 31010113 16 D \ChemWtllaryWO10309b SAMPLE 3110101 13 27 D \Ch:hsmWdlaryW010308 b SAMPLE 310101 14 24 D \ChernWdlaryW010309b SAMPLE
I 310101 14 38 D \ChernWillaryW0103Wb SAMPLE
3110101 1447 D ChemW1llaryW010308b SAMPLE 310101 14 59 D \ChemWlllaryW010309 b SAMPLE 3110101 15 10 DChernWdlaryWO1M09b SAMPLE 3101011521 D \ChemWllaryW010309b SAMPLE 310101 15 33 D\ChemWdIan/WafO309b SAMPLE 310/01 1544 D \ChemWdlaryW010308b SAMPLE 3110101 15 56 D \ChemW~llaryW01030b9 SAMPLE 310101 18 52 D \ChemWllsryW010309b SAMPLE 31m117 04 D \ChemWdIaryW010309b SAMPLE 311M)l 17 15 D \ChemWillaryW0103Wb SAMPLE Y1m1 1726D ChemWiUalyW010309b SAMPLE 310101 17 38 D ChemW1larvW010309b SAMPLE 3110101 17 49 D ChemWiUaryW010309 b SAMPLE 311m1 1601 D \ChernWillaryW010309 b SAMPLE 310101 18 12 D ChernWdlaryW0103Wb SAMPLE
File
HILL0086 D HILLMKI7.D HILLWO2.D HlLLW93.D HlLLWg4.D HlLLW95.D H1LLWW.D HILLW97.D HlLLW9B.D HILLOW9.D HILLO1W.D HILLO101.D HILLO1W.D HILLO107.D HlU0108.D HILL0109.D HILLO11D.D HILL0111.D HILL0112.D HILLO113.D HlLL0114.D HlLL0115.D HlLLO120.D HlLLO121.D HILL0122.D HILL0123.D HILL0124.D HlU0125.D HILL012B.D HlLLOl27.D HILLO128.D HlLL0133.D HILL0134.D HILL0135.D HILLO136.D HILL0137.D HILL0138.D HILL0139.D HILL0140 D
Sample Name
E00-1311-408BS2 EW-1311aSS2 EW-1311-4WOS2 EO0-1311-4094s2 E00.1311-408542 EW-1311-4WS2 EW-1311-411BS2 E00.1311-4119-S2 EO0-1311-4120-52 E00-1311-4W4-S3 EO0-1311-4W5S3 E001311-4W6-S3 EW-1311-402aS3 EW-1311430S3 EW-1311-4035S3 EW-1311-403e43 Em131 1-405aS3 EOC-1311-405943 E00-1311dOBOS3 E001311-4064S3 E001311-408553 EW-1311-4WS3 E m 1311-4088-53 EW-1311-408943 E m 1 3 11-4090.S3 E m 1311-4094S3 EW-1311-4085S3 EW-1311-408gS3 E m 1 3 114116S3 EW-1311-4119-S3 EW-1311-412C-S3 EW-1311-4w4s4 E00131145S4 E001311-400SS4 E00-1311-402BS4 E001311d030S4 EW-1311-403444 E001311435S4 EOC-1311-403SS4
IIII MircInfo
Compound Name RT
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
Am
5028 5.028 5.03 5 043 5.046 5.035 5.042
Amount ComparndName RT
Area
883099 871382 917602 858298 897083 8mw 874070
254 PFOS
254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS
5252 5.250 5 254
0 0 0 5288
Amount
541521 495693 547710
0 0 0 357854
2456545 22.1668
23.31443 0 0 0
1564721
THPFOS
5.038
899818
254 PFOS
5 267
357623 1515864
THPFOS
5.038
802577
254 PFOS
5 267
411380 1754001
THPFOS
5.041
877509
254 PFOS
5 265
646257 2904183
THPFOS
5.034
849226
254 PFOS
0
0
0
THPFOS
5 028
898143
254 PFOS
0
0
0
THPFOS
5.029
871502
254 PFOS
5 253
244415 1039048
THPFOS
5.029
887421
254 PFOS
528
242159 1008219
THPFOS
5 028
878559
254 PFOS
0
0
0
THPFOS
5.029
762849
254 PKlS
0
0
0
THPFOS
5.029
889217
254 PFOS
5 253
101283 3720289
THPFOS
5.028
83Xl81
254 PFOS
5 252
130273 5345841
THPFOS
5.029
851383
254 PFOS
5 253
260840 1145682
THPFOS
5.028
e85697
254 PFOS
0
0
0
THPFOS
5.023
837808
254 PFOS
0
0
0
THPFOS
5.023
814470
254 PFOS
0
0
0
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPKlS THPFOS THPFOS THPFOS THPFOS THPFOS
5.018 5.014 5.022
5.02 5.021 5.013 5.023 5.013 5.021 5.014 5.008 5 014
838311 e81294 BMBo8 810228 819327 728839 8742W 878280 825208 640817 883425 893529
254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS 254 PFOS
5 242
373687 17 14026
5 238
497521 2252588
5 248
491884 23.11219
I 0
0
0
0
0
0
0
0
0
II 5 247
5 245
199280 8.254569 118886 4.49281
5 245
928893 45.09718
0
00
0 0
I 0
0
0
0
THPFOS
5.015
824687
254 PFOS
5 248
27wO1 12.30281
THPFOS
5.014
976257
254 PFOS
5 238
223858 8.300946
THPFOS
5.013
823949
254 PFOS
0
0
0
THPFOS THPFOS
5.018 5016
8842w 823859
254 PFOS 254 PFOS
I 0
0
0
0
0
0
BACK TO MAIN
R010405 internalslacdard.ala
Simple Batch ROlMOl.b, analyzedon HillaryMOB.01. PFOSAdsorblOerorb sampler. Matrix: SoiUSIgEed. Standard CYNO range used for calibnllona( sampler: 25-1002 ndmL Batch method: ROlMO5.d
lnj D a b
Batch
416101 13:07 D.ChemWurhWO1MOS.b
416101 1322 O.ChemWurhW010405.b
46/01 13 38 D:ChernWurhW010405.b
4WO1 13.50 D'Chem\RushW010405.b
4W01 14.05 D:ChemWurhW010405.b
4161011419 D'ChemWurhW010405.b
4W01 14% D.ChsmWushW010405.b
4/6x)1 14:48 D:\Chem\RurhW010405.b
46/01 1502 D:ChemWurhWO1MOS.b
4/6/01 15.17 D:ChemWushW0104OS.b
41BM11531 O:\ChemWushW010405.b
4,5101 15.45 D:ChemWurhW010405.b
4/6/01 16.00 D:\ChemWurhW010405 b
4/7/01623 DChemWurhWO1MOS.b
4/7/01 6.37 D.ChemWurhW010405.b
4/7/016 5 2 D:ChemWushW010405.b
4/7/017:06 D.ChemWurhW010405.b
4/7/01 7:20 D.ChemWushWo10405.b
4/7/01735 D:ChemWushW010405.b
4mU1 7.49 D:ChemWurhW010405.b
4/7/01 8.04 D.ChemWushWO10405.b
4/7/01 8.18 D.ChsmWurhW010405.b
4/7/018:32 D:ChemWurhU7010405.b
4l71018.47 D.ChemWurhW010405b
4/7/01 9:01 D:ChemWurhW010405.b
W / 0 1 9.15 DChemWurhW010405.b
SarnpTyp SAMPLE CAUB-1 CALlB-2 CALiB-3 CAUB-4 SAMPLE CAUB-5 CALIB-8 CALIB-7 CALIB-8 SAMPLE CAUB-9 CAUB-10 SAMPLE CALlB-11 CALK-I2 CALIB-13 CALIB-14 SAMPLE CAUB-15 CAUB-18 CALIB-17 CALlB-18 SAMPLE CALlB-IS CALIB-20
File
SamplcName
RUSHW17.D 0 ndmLPFOSin MeOH
RUSH0018 D 2.5 WmL PFOS in MeOH
RUSH0019.D5 ndmLPFOSin MeOH
RUSHW2O.D10 na/mLPFOS in MeOH
RUSHW21.D25 ngmLPF0S in MeOH
RUSHW22.D40 ndmLPFOSin MeOH
RUSHW23.0 50.1 WImL PFOS in MeOH
RUSHW24.D 75.1 ndmL PFOS in MeOH
RUSHW25.D100.2 WmL PFOS m MeOH
RUSH0026.D250.5 n#mL PFOSin MeOH
RUSHW27.D 400.8 ndmLPFOSin MeOH
RUSHOO28.DW1 nphnL PFOSin MeOH
RUSHW29.D1002 n#mL PFOSin MeOH
RUSHW89.00 nglmLPFOSin MeOH
RUSHW0.D 2.5 nglmLPFOS inMeOH
RUSH0091.D5 W m L PFOSin MeOH
RUSHW92.D 10 ndmL PFOS in MeOH
RUSHW93.0 25 ndmL PFOS in MeOH
RUSHW94.D4 0 ndmLPFOSinMeOH
RUSH0095.D 50.1 nmL PFOS in MeOH
RUSHW9B.D 75.1 WmL PFOS in MeOH
RUSHW97.D 100.2 ndmL PFOS in MsOH
RUSHW88.D 250.5 ndmL PFOS in MeOH
RUSHW9S.D400.8 W L PFOS in MeOH
RUSHO1W.D 501 ndmL PFCS in MeOH
RUSHOIO1.D 1002 WmL PFOS in MeOH
Miss InfCompound NiRT
ARI
THPFOS
5.573
THPFOS
5.572
THPFOS
5.563
THPFOS
5 577
THPFOS
5.571
THPFOS
5.573
THPFOS
5.568
THPFOS
5.563
THPFOS
5.557
THPFOS
5.573
THPFOS
5.504
THPFOS
5.561
THPFOS
5.588
THPFOS
5.573
THPFOS
5.568
THPFOS
5.553
THPFOS
5.57
THPFOS
5.561
THPFOS
5 559
THPFOS
5.557
THPFOS
5554
THPFOS
5.561
THPFOS
5.558
THPFOS
5.56
THPFOS
5.545
THPFOS
5.551
Amount
539235
254
541201
254
530210
254
544175
254
556935
254
575120
254
555475
254
580525
254
564583
254
554331
254
56uBB
254
5m7
254
551338
254
559057
254
550680
254
533382
254
556117
254
553124
254
576802
254
550084
254
548419
254
553360
254
5-97
254
544285
254
580621
254
525351
254
Compamd PFOS PFOS. PFOS PFOS
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
NaAT
0 5.775 5.767
5787
5.774 5.778 5.769 5.788
5.78 5.778 5767 5.764 5.771
0
5.785 5.783 5.773 5.771 5.762 5.787 5.784 5.764 5.768 5.764 5.755 5.754
Area
Amount
0
0
1456~
o
177598
0
255188 4252916
520711 26.14883
778358 46.19528
8mxa Y).~I.so~
1254456 897-
1593523 119.474
3289063 289.5214
4814176 446.0827
5878253 542.0292
9480515 1071.163
0
0
llSW)2
0
142789
0
210206 o.031512
430360 18.72559
643226 34.73718
755748 47.18652
1044359 73.14746
I341441 99,1613
2714138 242.7803
4031839 377.1597
4912948 461.7658
7877904 9030327
-__ Awanaa: 552630.6823
Std Day: 14747.09534 XRSD: 27%
718420 *30%: 388841 -30%
ox
43% 105% 115% 117% 120% 119% 116% 111% 108% 107%
ox ox
75% 87% 94% 97% 99% 97% 84% 82% 90%
In1 Dab
Batch
4W01 12 39 D ChemWurhW010405b
4/6/01 12 53 D ChemWushW010405b
416l01 16 14 D \ChemWurhW010405b
4/6/01 1629 0 ChemWurhW010405b
4/6/01 19 35 DChemWushW010405b
416101 19 50 D ChemWurhW010405b
c,
4/13/01 22 57 D \ChemWurhW010405b 41610123 11 DChemWushW010405b
3
$
4/7/01 2 I 8 D ChemWushW010405b 4/7/01 2 33 D ChemWushW010405b 4/7/01 5 40 D ChemWurhW010405b 4/7/01 5 54 DChemWurhW010405b
4/71016 W D ChemWurhWO104OSb
4/7/01 9 30 D ChemWushW010405b
3-
4/7/01 9 44 0 ChemWushW010405b
S.mpTyw SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
File
Sample Name
RUSHWIS D TN-A 4802 MeOH
RUSHWl6 D TN-A 4802 MeOH
RUSHW3O D TN-A 4802 MeOH
RUSH0031 D TN-A 4802 MeOH
RUSH0044D T K A 4802 MeOH
RUSH0045 D TN-A 4802MeOH
RUSH0058 D TN-A 4002 MeOH
RUSH0059 OTN-A 4802 MeOH
RUSHW72D TN-A 4802 MeOH
RUSH0073D TN-A 4802MeOH
RUSH0088 D TN-A 4802 MsOH
RUSHW87D TN-A 4802 MeOH
RUSHW88D T K A 4802 MeOH
RUSH0102D TN-A 4802 MeOH
RUSH0103D TN-A 4802 MeOH
a --
MISCInfCompound NaRT THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
Am. 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Amount
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Compound NIAT PFO.S~ PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
Ana 5.78.5. 5.781
5 79 5.774 5.781 5.798 5.776 5 775 5 763 5.788 5.778 5.784 5.775 5.782 5.765
Anl0"nt
1oB775
0
91018
0
103874
0
84825
0
82678
0
78114
0
82141
0
76802
0
76352
0
71081
0
74008
0
89593
0
87762
0
83254
0
64445
0
page 1 Of 2
BACK TO MAIN
Inj D a b
Batch
416101 16:43 D.ChemWurhW010405.b
4/6/01 1857 O.Chem\RushWO10405.b
416101 17:12 DChemWurhWO1MOS.b
4/6/011726 D:ChemWushWOlM05.b
416101 17:40 D ChemWurhW010405.b
4/6/01 1755 DChernWurhV7010405.b
4iM)l l a 09 D.Chern'b?urhW010405.b
4/6/01 1823 D ChamWushW010405.b
4/6/01 1 8 : s D ChemWurhW010405.b
4/6/01 1852 D.ChemWurhW010405.b
4/6/01 1907 O:ChemWurhW010405.b
4/6/01 19.21 D.ChemWurhW010405.b
4/6/01 2O:M D.ChemWurhW010405.b m m l 20.18 O:~emWurhW010405.b
4/6/01 20:33 D\ChemWurhWOl0405.b
4161012047 O:ChemWushW010405.b
4/6/0121:02 DChemWurhW010405.b
4m121:16 D.Chem\RushW010405.b
4/6/0121:30 D.ChemWurhW010405.b
416101 21'45 D.ChernWurhW010405.b
4/6/0121:59 D:ChemWurhW010405.b
4/6/01 2213 O:\ChernWurhW010405.b
416101 22:28 D:ChernWushW010405.b
4/6/0122:42 D:bChernWurhWO10405.b
416101 23:25 D:ChernWurhW010405.b
4/6/01 2340 DChemWurhW010405.b
4/6/01 23% DChemWurhW010405.b
4/1/01 009 D:ChemWurhLQ010405.b
4/7/01 023 DChemWurhW010405.b
4!7/01 0'37 D:ChemWurh!R010405.6
4/7/01 052 VChemWurhW010405.b
417101 1.mO:ChemWushW010405b
4l7101 1 2 1 D:ChemWurhW010405.b
4nm1 1'35 DChemWurhWO10405.b
4I7/01 1:49 DChemWurhWO104OS.b
4/7/01 2:04 O:\ChemWushW010405.b
4,7101 247 D:\ChernWurhW010405.b
4/7/01 301 D:ChernWurhW010405.b
4/7/01 316 D:\ChsmWushW010405.b
4/7/01 3:30 DChernWurhW010405.b
4mo1 3 4 5 D:ChemWurhW010405b
4/7/013.59 D:ChernWushW010405.b
4!7/01 4:13 D:ChemWurhW010405.b
4/7/014128 D:ChemWushWOl0405.b
4/7/01 4:42 D:ChemRurhW010405.b
4/7/01457 D:ChemWurhW010405.b
417101 511 D.ChemWurhW010405.b
47/01 5.25 O.ChemWushW0>0405.b
SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
...-RUSHW32.D Study Number E001311
RUSHW33.D Study Number Em1311 RUSHW34.D Study Number Em1311 RUSHW35.D Study Number Em1311 RUSHW3f.D Study Nvnber EoO-1311 RUSHW37.D Study Nvmber Em1311 RUSHW38.D Study Number E001311 RUSHOO39.D Study Numbsr EM)-1311 RUSH0040.DSludy Nwnber Em1311 RUSHW41.D Study Number Em1311 RUSHW42.D 5 ndmL PFOS in MeOH RUSH0043.D250.5 WmL PFOSin MeOH RUSHW46.D Study Number Em1311 RUSHW47.D Study Number Em1311 RUSHW48.D Study Number E001311 RUSHW49.D Study Number Em1311 RUSHW50.D Study Number Em1311 RUSHW51.D Study Number Em1311 RUSHW52.D Study N h r Em1311 RUSHW53.D Study NumberE00-1311 RUSHW54.D Study Number Em1311 RUSHW55.D Study Number Em1311 RUSHW56.D 5np/mLPFOSin MeOH RUSHW57.D 250.5 ndmL PFOSin MeOH RUSHW3J.D Study Number E001311 RUSHWB1.DSludy Number Em1311 RUSHWB2.DSludy Number EW-1311 RUSHWB3.DStudy Number Em1311 RUSHWg4.D Study Number Em1311 RUSHWB5.0 Study Number Em1311 RUSHWBBDStudy Number Em1311 RUSHWB7.D Study Number EOQ1311 RUSHW@a.D Sludy Number Em1311 RUSHWB9.D Study Number EW.1311 RUSHW7O.D 5 n@mLPFOS in MeOH RUSHW71.D 250.5 n W L PFOS in MeOH RUSHW74.D Sludy NumbsrEW.1311 RUSHW75.D Study Number E001311 RUSHW78.D Study Number EW-1311 RUSHW77.D Sludy Nvmber Em1311 RUSHW78.0 Study Number Em1311 RUSHW79.0 Study Number Em1311 RUSHW60.D Study NumberEmlSll RUSHW81.D Sludy Number E001311 RUSHW82.D Study Number EMJ-1311 RUSHW83.D Sludy Number E001311 RUSHW04.D 5 n@mLPFOS in MeOH RUSHWS D 250.5 n$mL PFOS in MeOH
M i s s InfCompound NaRT
THPFOS
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
THPFOS THPFOS
Area 5.567 5.569 5.565 5.567 5 559 5.584 5.583 5.571 5.572 5.571 5.559 5.582 5.568 5.558 5.565 5.554 5.548 5.559 5 551 5.561 5.568 5.589 5.564 5.572 5.561 5.57 5.585 5.561 5.568 5.581 5.551 5.565 5.567 5.561 5.547 5.558
5.58 5.561 5.549 5.557 5.552 5.544 5.562 5.546 5.549 5.547 5.552 5.556
Amount
549855
254
546340
254
551952
254
543988
254
556241
254
556138
254
557637
254
467615
254
560192
254
553257
254
577885
254
567895
254
558163
254
546057
254
558505
254
554244
254
550460
254
539432
254
547053
254
559047
254
549045
254
543576
254
563324
254
586595
254
551418
254
563119
254
551121
254
533687
254
559718
254
53ao81
254
549935
254
538497
254
548482
254
552442
254
544700
254
549811
254
539554
254
530879
254
538799
254
550408
254
540857
254
518943
254
538710
254
544277
254
552811
254
537904
254
544157
254
535679
254
Compaund N a A T PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
Ana
5.77 .
5.765 5.768 5.777 5.762 5.774
0
5.762 5.775 5.781
0 5.765 5.776 5.761 5.775 5.757 5.749 5.769 5.762 5.784 5.769 5.792
0 5.775
0 0 0 5.771 5.778 5.771 5.761 5.768 0 0 0 5.759 0 5.764 0 0 5.762 5.747 5.773 5.756 5.752 5.757 0 5.759
Amount
692574 41.69038
614092 35.16084
997270 68.33123
3033445 268.9711
266CQ8 4884134
512785 2553805
0
0
2253516 226.2934
358332 12.22107
341742 11.19223
0
0
3181790 270.4896
MBBMl 8.188777
2580190 221.0756
800286 50.04657
921208 61.22001
965W3 65.68839
2988304 286.8858
219943s 182.5878
2324379 190.9588
2803069 242.2878
4426533 422.8252
0
0
3078172 280.7912
0
0
0
0
0
0
2297114 197.9487
305322 7.818031
269990 5.7797
280197 6.14042
2329314 199.9928
0
0
0
0
0
0
2913840 253.3329
0
0
2181139 187.322
0
0
0
0
218149 1.206327
2172754 191.5886
736133 47.25497
855021 57.65922
981309 66.77087
2761164 243 8076
0
0
2787890 247.8607
0 0% 108.wC
0.0% 104.1%
0 0% 101.1%
0 0% 98 9%
page 2 Of 2
BACK TO MAIN
-u
a,
M (D
Sample Batch ROlM02b.b. analyzed on Rush 04-02-01. PFOS Adso~WDesorbsamples. Patrlx: SoiNSiglSed. Standard curve nnoe used For calibntion of samples: 101002 n g h l (25 and 5 nglmL std not Included due to the higher sample concentration range). Batch method: R010002b.m
c.
f h
Inj Date
Batch
4/3/01 8 10 D \Chem\Rush\RO10402b
4/3/01 8 24 D \Chem\Rush\RO10402b
4/3/01 8 38 D \Chem\Rush\R010402 b
4/3/01 8 53 D \Chem\Rush\ROlM02 b
4/3/01 9 07 D \Chem\Rush\R010402 b
4/3/01 9 21 D \Chem\Rush\R010402 b
4/3/01 9 36 D lCChemIRushlQO10402b
4/3/01 9 50 D \Chem\Rush\R010402 b
4/3/01 10 04 D \Chem\Rush\R010402 b
4/3/01 10 19 D \Chem\RushU7010402b
4/3/01 1033 D\Chem\Rush\RO10402b
4/3/01 10 48 D \Chem\Rush\R010402 b
4/3/01 11 02 D\ChemUiush\R010402b
4/3/01 22 19 D\Chem\Rush\RO1040Zb
4/3/01 22 33 D \Chem\Rush\R010402 b
4/3/01 22 47 D \Chem\RushR010402 b
4/4/0123 02 D \Chem\Rurh~0104Mb
4/4/01 23 16 D \Chem\Rush\R010402 b
4/4/01 23 30 D \Chem\Rush\R010402 b
4/4/01 23 45 D \Chem\Rush\R010402 b
4/4/01 10 08 D \Chem\Rush\R010402 b
4/4/01 10 22 O\Chem\Rush\RO10402b
4/4/01 10 37 D \Chem\Rush\R010402 b
4/4/01 10 51 D\Chem\Rush\R010402b
4/4/01 11 05 D \Chem\Rush\R010402 b
4/4/01 11 20 D\ChemWush\RO10402 b
SampType SAMPLE CALlB-1 CALlB-2 CALlB-3 CALIB-4 SAMPLE CAM-5 CALlB-6 CALl8-7 CALl8-8 SAMPLE CALIB-9 CALlB-10 SAMPLE CALlB-11 CALIB-12 CALlB-13 CALIB-14 SAMPLE CALF-15 CALIB-16 CALlB-I7 CALlB-18 SAMPLE CALIB-19 CALlB-20
File RUSH0104 D RUSH0105 D RUSH0106 D RUSH0107 D RUSH0108 D RUSH0109 D RUSH0110 D RUSH0111 D RUSH0112 D RUSH0113 D RUSH0114 D RUSH0115 D RUSH0116 D RUSH0163 D RUSH0164 D RUSH0165 D RUSH0166 D RUSH0167 D RUSH0168 D RUSH0169 D RUSH0170 D RUSH0171 D RUSH0172 D RUSH0173 D RUSH0174 D RUSH0175 D
Sample Name
0 ndmL PFOS in MeOH 2 5 & n L PFOS in MeOH 5 ng/mL PFOS in MeOH 1 0 ng/mL PFOS in MeOH 25 ng/mL PFOS in MeOH
4 0 n@mLPFOS m MeOH
50 1 ndmL PFOS K) MeOH
75 Ing/mL PFOS m MeOH 1W 2 ng/mL PFOS in MeOH 250 5 nglmL PFOS in MeOH
4W 8 n@mLPFOS in MeOH 501 n@mLPFOS in MeOH 1002 ng/mL PFOS in MeOH 0 n@mLPFOS in MeOH
2 5 ng/rnL PFOS in MeOH
5 ng/mL PFOS in MeOH 1 0 ng/mL PFOS in MeOH 25 nglmL PFOS 111 MeOH
40 n@mLPFOS m MeOH
5 0 1 ng/mL PFOS in MeOH 75 1 n@mLPFOS in MeOH 1W 2 n@mLPFOS in MeOH
250 5 n@mLPFOS in MeOH 400 8 ng/mL PFOS in MeOH 501 ng/mL PFOS in MeOH 1002 n@mLPFOS in MeOH
Yisc InCompoun RT
Area
THPFOS
5.545
THPFOS
5546
THPFOS
5 558
THPFOS
5 553
THPFOS
5 553
THPFOS
5 543
THPFOS
5 553
THPFOS
5 55
THPFOS
5 541
THPFOS
5544
THPFOS
5546
THPFOS
554
THPFOS
5 542
THPFOS
5 537
THPFOS
5544
THPFOS
5 548
THPFOS
5 551
THPFOS
5 53
THPFOS
5 551
THPFOS
5 559
THPFOS
5 625
THPFOS
5 609
THPFOS
5 599
THPFOS
5 595
THPFOS
5 594
THPFOS 5 593
Amount
691265
254
707691
254
726641
254
702679
254
71 1476
254
695068
254
697300
254
709991
254
709014
254
744829
254
710505
254
719310
254
745057
254
619245
254
643440
254
655629
254
629187
254
639165
254
649746
254
65031 1
254
717155
254
86050
254
714495
254
69513
254
683159
254
707430
254
CompounRT PFOS
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
Area Amount
0
0
0
5.756 192592
0
5.768 249725 1.588495
5.757 339511 7.167098
5.756 641983 24.24615
5.739 905841 41.026119
5.749 1085138 51.837004
5.753 1535613 78.469104
5.744 1912604 102.76639
5.747 4147318 246.4199
5.749 5754500 391.55477
5.743 6939227 488.84633
5.745 12088828 974.5569
0
0
0
5.747 181340
0
5.75% 238783 2.406374
5.754 311745 7.661761
5.733 614103 26.666053
5747 872886 42.7321109
5.762 1054849 54.680469
5 828 1572840 79.825492
5.819 1906689 106.54576
581 4102314 255.81083
5.805 5711729 418.05536
5.797 6776340 506.61571
5.795 11937411 1028.811
31 8% 71 7% 97 0% 102 3% 103 5% 104 5% 102 6% 98 4%
97 6%
48 I % 76 6% 1067% 1066% 109 1% 106 3% 106 3% 102 1%
101 1%
Avenqe: 689821.2108
- _ Std Dev: 34866.78097 YRSD: 5.1%
895768 +30% 482075 -30%:
Page 1 of 3
BACK TO MAIN
Sample Batch R010402b.b. analyzedon Rush 04-0201. PFOS A d s o M e r o r b samples. Matrix: SoiWSlglSed.
StandardC U N ~ranne used for calibrationof samDIes: 10-1002n d m L 125 and 5 nglmLstd not includeddue to the higher sample concentrationrange).
Batch method ROib40Zb.m
Inj Date
Batch
SampType File
Sample N u m
Miac InCompoun RT
Area
Amount
4/3/01 7 41 D \Chem\Rush\R010402b
SAMPLE
RUSH0102 D TN-A 4802 MeOH
THPFOS
0
0
0
4/3/01 7 55 D \Chem\Rush\R010402b
SAMPLE
RUSH0103 D TN-A 4802 MeOH
THPFOS
0
0
0
4/3/01 11 16 D \Chern\Rush\RO10402 b
SAMPLE
RUSH0117 D TN-A 4802 MeOH
THPFOS
0
0
0
413101 11 31 D \Chem\Rush\R010402b
SAMPLE
RUSH0118 D TN-A 4802 MeOH
THPFOS
0
0
0
4/3/011145 D\Chem\Rush\R010402b SAMPLE
RUSH0119 D TN-A 4802 MeOH
THPFOS
0
0
0
4/3/01 14 52 D\Chem\Rush\R0104M b
SAMPLE
RUSH0132 D TN-A 4802MeOH
THPFOS
0
0
0
413/01 1507 O\Chem\Rush\R010402b
SAMPLE
RUSH0133 D TN-A 4802 MeOH
THPFOS
0
0
0
4/3/01 18 14 D \Chem\Rush\R010402b
SAMPLE
RUSH0146 D TN-A 4802 MeOH
THPFOS
0
0
0
40101 18 28 D\Chern\Rush\R010402b
SAMPLE
RUSH0147 0 TN-A 4802 MeOH
THPFOS
0
0
0
4/3/01 21 35 D \Chem\Rush\ROlM02 b
SAMPLE
RUSH0160 D TN-A 4802 MeOH
THPFOS
0
0
0
4/3/01 21 50 D \Chem\Rush\RO10402 b
SAMPLE
RUSH0161 0 TN-A 4802 MeOH
THPFOS
0
0
0
4/3/01 22 04 D \Chern\Rush\RO1MOZ b
SAMPLE
RUSH0162 D TN-A 4802 MeOH
THPFOS
0
0
0
4/4/01 11 34 D\Chem\Rush\ROlMOZb
SAMPLE
RUSH0176 D M A 4802 MeOH
THPFOS
0
0
0
4/4/01 1149 D \Chem\Rush!RO10402 b
SAMPLE
RUSH0177 D M-A4802 MeOH
THPFOS
0
0
0
CompwnRT
Area Amount
PFOS
5.772 131207
0
PFOS
5.764 128138
0
PFOS
5.768 153626
0
PFOS
5.771 130584
0
PFOS
5.764 126241
0
PFOS
5.764 130330
0
PFOS
5.765 119843
0
PFOS
5.763 122906
0
PFOS
5.77 120557
0
PFOS
5.761 145239
0
PFOS
5.764 143817
0
PFOS
5.768 144439
0
PFOS
5.818 154900
0
PFOS
5.824 133822
0
Page 2 of 3
BACK TO MAIN
Sample Batch ROlWZb.b, analyzed on Rush 0 4 0 2 0 1 . PFOS AdsorbiDesorb samples. Mab'ix: SoiUSlglSed.
Standard curve range used for calibration of samples: 10-1002nglmL(2.5 and 5 ng/mL s l d not included due to the higher sample concentration range).
Batch method R010402b.m
Inj Dale
hlch
Samplype File
Sample N a m
Misc In Compoun RT
Area
Amount
Compoun RT
Area Amount
4/3/01 1159 D:\Chem\Rush\R010402.b SAMPLE
RUSH0120D Study Number EW-1311
THPFOS
5 554
725886
254
PFOS
5757 978597 42932438
4/3/01 12:14 D:\Chem\Rush\ROIO402b. 4/3/01 12:28 D:\Chem\Rush\R010402.b
SAMPLE SAMPLE
RUSH0121 D Study Number EW-1311 RUSH0122 D Study Number EW-1311
THPFOS THPFOS
5 547 5 558
690051
254
701604
254
PFOS PFOS
5 7 5 933343 43 120798 5761 940734 42621787
4/3/01 12.43 D:\Chem\Rush\R010402b
SAMPLE
RUSH0123 D Study Number EW-1311
THPFOS
555
577118
254
PFOS
576 3533131 27670087
4/3/01 1257 D:\Chem\Rush\RO10402.b 4/3/01 13:Il D:\Chem\Rush\RO10402.b 4/3/01 1326 D:\Chem\Rush\R010402b 4/3/01 13:40 D:\Chern\Rush\R010402.b 4/3/01 13.55 D:\Chern\Rush\R010402b 4/3/01 14.09 D.\Chem\Rush\R010402.b 4/3/01 14:23 D:\Chem\RushW010402.b
SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
RUSH0124 D RUSH0125 D RUSH0126 D RUSH0127 D RUSH0128 D RUSH0129 D RUSH0130 D
Study Number EW-1311 Study Number EW-1311 Study Number EW-1311 Study Number EW-1311 Study Number EW1311 Study Number EW-1311 5 ng/mL PFOS in MeOH
MPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
5 558 5 554 5 552 5546 5 553 5 552 5 549
667527
254
674789
254
668248
254
550211
254
652849
254
655706
254
680355
254
PFOS PFOS PFOS PFOS PFOS PFOS PFOS
5754 5 757 5755 5749 5749 5 755 5759
2610383 2478325 2680467 4917918 5170053 5129723
253055
16075044 149 07W8
1657409 44349026 38056422 374 88948 2715008
4/3/01 1438 D:\Chem\Rush\R010402.b 4/3/01 1521 D:\Chem\Rush\R010402b 4/3/01 1535 D:\Chem\Rush\R010402b 4/3/01 1550 D:\Chem\Rush\R010402.b 4/3/01 16.04 D:\Chem\Rush\R010402.b
SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
RUSH0131 D RUSH0134 D RUSH0135 D RUSH0136 D RUSH0137 D
250 5 n g h L PFOS in MeOH Study Number EW-1311 Study Number EW-1311 Study Number EW-1311 Study Number EW-1311
THPFOS THPFOS THPFOS THPFOS THPFOS
554 5544 5 547 5 552
556
693668
254
680330
254
570439
254
656434
254
674502
254
PFOS PFOS PFOS PFOS PFOS
5751 5747
575 5755 5 763
4099082 5372136 7416165 2754639 2672733
26497215 37928766 721 85686 17499347 163 32509
4/3/01 16:19 D:\Chem\Rush\RO10402 b
SAMPLE
RUSH0138D Study Number EW-1311
THPFOS
554
679000
254
PFOS
5743 2840570 17434555
4/3/01 16:33 D:\Chem\Rush\R010402.b 4/3/01 16:47 D:\Chem\R~sh\R010402.b
SAMPLE SAMPLE
RUSH0139D Study Number EW-1311 RUSH0140D Study Number EW-1311
THPFOS THPFOS
5 548 5 554
660801
254
684382
254
PFOS PFOS
5751 5013884 36082333 5757 1412950 74086291
4/3/01 17:02 D:\Chem\Rush\R010402b
SAMPLE
RUSH0141D Study Number EW-1311
THPFOS
5 547
688891
254
PFOS
575 1505023 79446466
4/3/01 17:16 D:\Chem\Rush\ROIM02b. 4/3/01 1731 D:\Chem\Rush\ROI0402.b 4/3/01 17:45 D:\Chem\Rush\R010402.b
SAMPLE SAMPLE SAMPLE
RUSH0142 D RUSH0143 D RUSH0144 D
Study Number EW-1311 Study Number EW-1311 5 nglmL PFOS in MeOH
THPFOS THPFOS THPFOS
554 5 549 5 551
667236
254
669472
254
711232
254
PFOS PFOS PFOS
5744 1329804 7091215 5752 3830875 25476073 5754 247651 1768823
4/3/01 1759 D:\Chem\Rush\RO10402 b 4/3/01 18:43 D:\Chem\Rush\R010402.b 4/3/01 18.57 D:\Chem\Rush\R010402.b
SAMPLE SAMPLE SAMPLE
RUSH0145 D RUSH0148 D RUSH0149 D
250 5 ne/mL PFOS in MeOH Study Number EW-1311 Study Number EW-1311
THPFOS THPFOS THPFOS
5 553 5 555
554
711428 918872 885106
254
PFOS
254 STD~130WFOS
254
PFOS
5756 4044257 25272329
0
0
0
0
0
0
4/3/01 19.11 D.\Chem\Rush\R010402.b SAMPLE
RUSH0150 D Study Number EW-1311
THPFOS
5546
945311
254 STD>I3OI(PFOS
0
0
0
4/3/01 1926 0 \Chem\Rush\RO10402.b
SAMPLE
RUSH0151D Study Number EW-1311
THPFOS
554
703724
254
PFOS
5743 2896965 17099756
4/3/01 19:40 D.\Chem\Rush\R010402.b SAMPLE
RUSH0152D Study Number EW-I 311
THPFOS
5544
856144
254
PFDS
0
0
0
4/3/01 19.55 D \Chern\Rush\R010402.b SAMPLE
RUSH0153D Study Number EW-1311
THPFOS
5534
834838
254
PFOS
0
0
0
4/3/01 20.09 D \Chem\Rush\R010402.b SAMPLE
RUSH0154 D Study Number EW-1311
THPFOS
5 539
816843
254
PFOS
0
0
0
4/3/01 2023 D.\Chern\Rush\ROl0402.b 4/3/01 20 38 D.\Chem\Rush\RO10402.b
SAMPLE SAMPLE
RUSH0155 D Sludy Number EW-1311 RUSH0156D Sludy Number 00-1311
THPFOS THPFOS
5 539 5 55
623341
254
851433
254
PFOS PFOS
5 742 2925075 2W 24318
0
0
0
4/3/01 20 52 D \Chem\Rush\R010402b 4/3/01 21:07 D-\Chem\Rush\RO10402.b 4/3/01 21.21 D.\Chem\Rush\ROlMOZb
SAMPLE SAMPLE SAMPLE
RUSH0157 D RUSH0158 D RUSH0159 D
Study Number EW-1311 5 ng/mL PFOS in MeOH 250 5 n g h L PFOS in MeOH
THPFOS THPFOS THPFOS
5 543 5 55 5 554
837861
254
641250
254
631991
254
PFOS PFOS PFOS
0
0
0
5753 234427 2461139
5757 3979419 28641899
54.3% 1058%
1588 9% 28.3% 35 4% 1W.9%
49 2% 1143%
Page 3 of 3
BACK TO MAIN
Q
5 r
Sample Batch R010402a.b. analyzed o n Rush 040201. PFDSAdsorbmesorb samples. Matrix: SoiVSlglSed.
Standard curve range used for calibratlon of samples: 5 4 + H nglmL (2.5 ng/mL otd not included due to the higher sample concentration range).
Batch method: R010402a.m
51 (3-fd
Inj Date 4/2/01 1230 4/2/011244 4/2/01 1259 4/2/01 13:13 4/2/01 13:27 4/2/01 13:42 4/2/01 1356 4/2/01 14:11 4/2/01 14:25 4/2/01 14:39 4/2/01 1454 4/2/01 1508 4 N o 1 15:22 4/3/01 8:lO 4/3/01 8:24 4/3/01 8:38 4/3/01 853 4/3/01 907 4/3/01 9:zi 4/3/01 9 : s 4/3/019:50 4/3/01 IO:M 4/3/01 1019 4/3/01 10:33 4/3/01 10:48
m m i I:OZ
Batch D:\Chem\Rush\R010402.b O:\Chem\Rush\RO10402.b D:\Chem\Rush\ROl 0402.b D\Chem\Rush\RO10402.b O:\Chem\RushROl0402.b D:\Chem\Rush\RO10402.b D\Chern\Rush\ROI0402.b O:\Chern~ush\RO10402.b O:\Chem\Rush\RO10402.b D:\Chem\Rush\RO10402.b D:\Chem\Rush\RO10402.b O:\Chern\Rush\ROl0402.b D:\Chern\Rush\RO10402.b D.\ChemWush\R010402.b O:\Chem\Rush\RO10402.b D\Chem\Rush\RO10402.b D:\Chern\Rurh\RO10402.b O:\Chern\Rush\RO10402.b D:\Chem\Rush\RO10402.b D:\Chem\Rush\R010402.b O:\Chem\Rush\RO10402.b O:\Chern\Rush\ROl0402.b O:\Chem\Rush\RO10402.b D:\Chem\Rush\R010402.b O:\Chern\Rush\RO10402.b 0 .\ChernRush\R010402.b
SampType SAMPLE CALIB-1 CALIB-2 CALIB-3 CALIB-4 SAMPLE CALlB-5 CALIB-6 CALlB-7 CALlB-8 SAMPLE CALK-9 CALIB-IO SAMPLE CALIB-11 CALIB-12 CALlB-13 CALIB-14 SAMPLE CALlB-15 CALIB-16 CALiB-I7 CALIB-18 SAMPLE CALIB-I9 CALIB-20
File RUSHW22.D RUSHW23.D RUSHW24.D RUSHW25.D RUSHW26.0 RUSHW27.D RUSHW28.0 RUSHW29.D RUSHW30.0 RUSH0031.0 RUSHW32.D RUSHW33.0 RUSHW34.D RUSH0104.D RUSHOIO5.D RUSH0106.D RUSH0107.D RUSH0108.0 RUSHOI09.D RUSHO11O.O RUSHO111.D RUSHO1IP.D RUSH0113.D RUSH0114 D RUSHO115.D RUSH0116.0
- Sample Name
0 na/mL PFO~ S in.MeOH 2.5 n g h L PFOSin MeOH 5 nglmL PFOS in MeOH 1 0 ng/mL PFOS in MeOH 25 ng/mL PFOS in MeOH 4 0 ng/mL PFOS in MeOH 50.1 ng/mL PFOS in MeOH 75.1 ng/mL PFOS in MeOH 100.2 n g h L PFOSin MeOH 250.5 ng/mLPFOSin MeOH 4W.8 ng/mL PFOSin MeOH 501 ng/mL PFOS in MeOH 1002 nglmL PFOSin MeOH 0 nglmLPFOSin MeOH 2.5 ng/mL PFOSin MeOH 5 ng/mL PFOS in MeOH 1 0 ng/mLPFOS in MeOH 25 ng/mL PFOS in MeOH 4 0 nglmL PFOS in MeOH 50.1 ng/rnL PFOSin MeOH 75.1 n g h L PFOS in MeOH 100.2 ng/mL PFOS in MeOH 250.5 ng/mLPFOSinMeOH 400.8 n g h L PFOSin MeOH 501 nglrnL PFOSin MeOH 1002n g h L PFOS in MeOH
Misc InfCompouncRT THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
Area
Amount
5.549 673482
254
5.55 687494
254
5.559 717007
254
5.553 692713
254
5.559 698171
254
5.553 694018
254
5.557 699817
254
5.558 708280
254
5.559 701188
254
5.567 732842
254
5.561 711160
254
5.564 714631
254
5.567 739760
254
5.545 691238
254
5.546 707818
254
5.558 726841
254
5.553 702679
254
5.553 711476
254
5.543 695068
254
5.553 697300
254
5.55 709991
254
5.541 709014
254
5.544 744829
254
5.546 710505
254
5.54 719310
254
5.542 745057
254
CompoundU PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
0 5.76 5.769 5.763 5.769 5.763 5.767 5.768 5.769 5.77 5.764 5.774 5.77
0 5.756 5.768 5.757 5.756 5.739 5.749 5.753 5.744 5.747 5.749 5.743 5.745
Area
Amount
0
0
201953 1.38861
259654 3.944702
339488 8.769619
641564 25.343497
908997 40.988941
1106262 52.140717
1545079 77.738587
1912602 102.07183
4155372 250.46887
5685914 406.28894
6981587 505.86859
12248403 1053.3589
0
0
193236 0.616118
249725 3.252923
339511 8.507324
641983 24.690572
905841 40.723752
1085138 51.118799
1535613 76.928129
1912604 100.70449
4147316 244.83253
5754500 394.96094
6939227 497.41946
12088828 1022.9766
78.9% 87.7% 101.4% 102.2% 104.1% 103.5% 101.9% 100.0%
101.0%
65.1% 85 1% 98.8% 101.6% 102.0% 102.4% 100.5% 97.7%
99.3%
Average: 709288.4 Std Dev: 17649.55
- %RSD- 2.5%
922075 +30% 496502 -30%:
Page 1 of 4
BACK TO MAIN
Sample Batch RO104OZa.b. analyzedon Rush 040241. PFOSAdsorblDesorb samples. Matrix: SoivSlgiSed.
Standard cuwe range used for calibration of sampler: S-reePnglmL (2.5 nglmL std not included due to the higher sample concentration range).
Batch method: R010402a.m
50 U%<S I f S / O \
Inj Date
Batch
SampType File
Sample Name
Mise InfCompouncRT
Area
4/2/01 1201
D:\Chem\RushR010402.b
SAMPLE
RUSHW20.D TN-A 4802 MeOH
THPFOS
0
4/2/01 12313
D:\Chem\Rush\R010402.b
SAMPLE
RUSHW21.D TN-A4802 MeOH
THPFOS
0
4/2/01 1537
D:\Chem\Rush\R010402.b
SAMPLE
RUSH0035.D TNA4802 MeOH
THPFOS
0
4/2/01 1551
D:\ChemiRush\R010402.b
SAMPLE
RUSH0036.D TKA4802 MeOH
THPFOS
0
4/2/01 18:15
D:\Chem\Rush\R010402.b
SAMPLE
RUSHOC46.D TNA4802 MeOH
THPFOS
0
4/2/01 1829
D:\Chem\Rush\R010402.b
SAMPLE
RUSHW47.D TN-A4802 MeOH
THPFOS
0
4/2/01 21:36
D:\Chem\Rush\R010402.b
SAMPLE
RUSH0060.D TN-A4802 MeOH
THPFOS
0
4No1 21:51
D:\Chem\Rush\R010402.b
SAMPLE
RUSHW61.D TN-A 4802 MeOH
THPFOS
0
4/3/01 0:58
D:\Chem\Rush\R010402.b
SAMPLE
RUSH0074.D TN-A 4802 MeOH
THPFOS
0
4/3/01 132
D:\Chem\Rush\R010402.b
SAMPLE
RUSH0075.D TN-A 4602 MeOH
THPFOS
0
4/3/014 3 9
D:\ChemU?ush\R010402.b
SAMPLE
RUSHW88.D TN-A 4802 MeOH
THPFOS
0
4/3/01 4:34
D:\ChemRushR010402.b
SAMPLE
RUSHW89.D TN-A 4802 MeOH
THPFOS
0
4/3/01 7:41
D:\Chem\Rush\R010402.b
SAMPLE
RUSH0102.D TN-A 4802 MeOH
THPFOS
0
4/3/01 755
D:\Chem\Rush\R010402.b
SAMPLE
RUSH0103.D TN-A 4802 MeOH
THPFOS
0
4/3/01 1136
D:\ChemRush\R010402.b
SAMPLE
RUSHO117.D TNA4802 MeOH
THPFOS
0
4/3/01 11:31
D:\Chem\Rush\R010402.b
SAMPLE
RUSH0118.D TNA4802 MeOH
THPFOS
0
4/3/01 11:45
D:\Chem\RushW010402.b
SAMPLE
RUSHO119.D TN-A4802 MeOh
THPFOS
0
Amount
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
CompouncRT
Area
Amount
PFOS
5.764 155059
0
PFOS
5.771 133949
0
PFOS
5.792 160821
0
PFOS
5.78 138099
0
PFOS
5.77 138330
0
PFOS
5.761 134138
0
PFOS
5.792 136128
0
PFOS
5.771 130679
0
PFOS
5.754 139503
0
PFOS
5.754 127186
0
PFOS
5.778 129477
0
PFOS
5.774 126456
0
PFOS
5.772 131523
0
PFOS
5.764 125537
0
PFOS
5.768 153626
0
PFOS
5.771 130584
0
PFOS
5.764 126241
0
Page 2 of4
BACK TO MAIN
Sample Balch R010402a.b, analyzed on Rush 04-02-01. PFOSAdsoWLbsorb samples. Matrlx: SolUSlglSed.
Standard curve range used for calibration of samples: 5 - W n g l m L (2.5 nglmL std not included due to the higher sample wncenbation range).
Batch method R010402a.m
Inj Date 4/2/01 16:06
Batch D:\Chem\RushRO10402.b
SamPTYw SAMPLE
File RUSHW37.D
Samole Name Stud; Number E001311
Mirc InfComwundlT
Area
Amount
THPFOS
5.56 720158
254
4/2/01 1620
D:\Chem\Rush\ROl0402.b
SAMPLE
RUSHW 38.D Study NumberE001311
THPFOS
5.546 709660
254
4/2/01 1 6 : ~ D:\ChemWush\R010402.b SAMPLE
RUSHW39.D Study NumberE001311
THPFOS
5.558 722650
254
4/2/01 16:49
D.5ChemWushW010402.b
SAMPLE
RUSH0040.D Study NumberE001311
THPFOS
5.548 707567
254
4/2/01 1703
D:\Chem\Rush\ROl0402.b
SAMPLE
RUSHW41.D Study Number E001311
THPFOS
5.548 713572
254
4/2/01 17:17
D.\ChemWushW010402.b
SAMPLE
RUSHW42.D Study Number EO01311
THPFOS
5.546 724968
254
4/2/01 1732
D:\Chem\RushWO10402.b
SAMPLE
RUSHW43.D Study NumberE001311
THPFOS
5.554 721402
254
4/2/01 17:46
D:\Chem\Rush\RO10402.b
SAMPLE
RUSHW44.D 5 nglmL PFOSin MeOH
THPFOS
5.548 753692
254
4No1 18:Ol
D\Chem\Rush\R010402.b
SAMPLE
RUSHW45.D 250.5 ng/mLPFOSin MeOH
THPFOS
5.551 746193
254
4/2/0118:44
D:\Chem\Rush\ROl0402.b
SAMPLE
RUSHW48.D Shldy Number EW-1311
THPFOS
5.554 710136
254
4/2/01 1 8 : s
D:\Chem\Rush\ROlWZ.b
SAMPLE
RUSHW49.D Study Number EW-1311
THPFOS
5.551 709407
254
4/2/01 19:13
D:\Chem\Rush\RO10402.b
SAMPLE
RUSHW50.D Study Number~ 0 0 1 3 1 1
THPFOS
5.56 687539
254
4/2/01 1927
D:\Chem\RushUi010402.b
SAMPLE
RUSHW51.D Study Number E001311
THPFOS
5.563 693912
254
4/2/01 i9:4i
D:\Chern\RushWO10402.b
SAMPLE
RUSHW52.D Study NumberEW-1311
THPFOS
5.557 573314
254
4/2/01 1956
D:\Chem\RushWO10402.b
SAMPLE
RUSHW53.D Study Number E001311
THPFOS
5.558 689156
254
4/2/01 2030
D\ChemWush\RO10402.b
SAMPLE
RUSH0054.0 Study Number E001311
THPFOS
5.555 698632
254
4/2/01 20:a
O:\Chem\Rush\RO10402.b
SAMPLE
RUSHOO55.D Study Number EOC-1311
THPFOS
5.558 701032
254
4/2/01 20:39
D:\ChemWush\ROl0402.b
SAMPLE
RUSHW56.D Study Number EW-1311
THPFOS
5.564 697975
254
4/2/01 2053
D:\ChemRushU7010402.b
SAMPLE
RUSHW57.D Study Number EW-1311
THPFOS
5.566 722953
254
4 N o 1 21:08
O:\Chem\Rush\R010402.b
SAMPLE
RUSW58.D 5 nglmLPFOS in MeOH
THPFOS
5.575 742818
254
4/2/01 21:22
D\ChemWushWO10402.b
SAMPLE
RUSHW59.D 250.5 ng/mL PFOSin MeOH
THPFOS
5.56 738144
254
4/2/01 22:05
D:\ChemWush\RO10402.b
SAMPLE
RUSHW62.D Study Number EW-1311
THPFOS
5.561 724679
254
4/2/01 2220
D:\Chem\Rush\R010402.b
SAMPLE
RUSHW63.D Study Number EW-1311
THPFOS
5.56 732716
254
4NOl22:34
D\Chem\Rush\ROIW2.b
SAMPLE
RUSHWB4.D Study Number EW-1311
THPFOS
5.551 709950
254
4No12248
D:\Chem\Rush\ROWl 2 . b
SAMPLE
RUSHW65.D Study Number E001311
THPFOS
5.541 717003
254
4/3/01 2303
O:\Chem\Rush\R010402.b
SAMPLE
RUSHW66.D Study NumberE001311
THPFOS
5.546 703450
254
4/3/01 2337
D:\Chem\Rush\RO10402.b
SAMPLE
RUSHWB7.D Study Number EO01311
THPFOS
5.541 699666
254
4/3/01 2331
D:\Chem\Rush\RO10402.b
SAMPLE
RUSHW68.D Study Number EW-1311
THPFOS
5.533 585285
254
4/3/01 2346
D\Chem\RushW010402.b
SAMPLE
RUSH0069.D Study Number E001311
THPFOS
5.539 675221
254
4/3/01 0:OO
O:\ChemWushWO10402.b
SAMPLE
RUSHW70.D Study Number E001311
THPFOS
5.532 679762
254
4/3/01 0 3 5
D:\ChemWush\RO10402.b
SAMPLE
RUSHW71.D Shldy NumberEOO-1311
THPFOS
5.533 576140
254
4/3/010 2 9
D.\Chem\RushWO10402.b
SAMPLE
RUSH0072.D 5 ng/mL PFOSin MeOH
THPFOS
5.535 704091
254
4/3/01 0:43
D:\ChemWush\ROWl 2 . b
SAMPLE
RUSHW 73.D 250.5 ng/mL PFOS in MeOH
THPFOS
5.543 709848
254
CompoundlT PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
5.764 5.749 5.759 5.751 5.758 5.756 5.757 5.756 5.754 5.757 5.761 5.77 5.768 5.76 5.768 5.765 5.761 5.767 5.769 5.792 5.77 5.764 5.763 5.747
0 0 0 5.736 5.742 5.735 5.736 5.745 5 739
Area
Amount
1429691 69.243301
1319817 63.879261
1351379 64.31529
3835296 236.73617
6391949 450.7897
4812925 305.70323
5198125 339.49098
266077 3.60348
4140558 243.77425
7163224 528,02219
2197087 119,09938
926960 42.675468
697046 28.725867
3024950 229.85155
2174774 121.84417
2284600 127.2331
2386809 133.63027
4749637 315.49117
1411113 67.811262
262089 3.595994
4133826 246.60414
1328107 62.727361
1708104 64.309464
4317226 273.50922
0
0
0
0
0
0
2892741 211.04908
643295 26676048
647862 26.69003
3230023 246.93617
259690 4196199
4132026 258 85952
72.1% 97.3%
71.9% 98.4%
83 9% 103 3%
Page3of4
BACK TO MAIN
Sample Batch R010402a.b, analyzed on Rush 040241. PFDSAdsorUDcsorb samples. Matrix: SoiVslgSed.
Standard curve range used for calibration of samples: 5-1682ngflL (2.5 nglmL std not included due to the higher sample concentration range).
Batch method: R010402a.m
>%I & ? & p - C b-1 l J - 7 d l
4/3/01 127
D:\Chem\Rush\RO10402.b
SAMPLE
RUSHW76.D Studv NumberE001311
THPFOS
5.565 7W501
254
4/3/01 1:41
mrni 1:55
D:\Chem\Rush\RO10402.b O:\Chem\Rush\RO10402.b
SAMPLE SAMPLE
RUSH0077.D Stud; Number E001311 RUSH0078.D Study Number E001311
THPFOS
5.552 679568
254
THPFOS
5.56 670087
254
4/3/01 2 1 0
O:\Chem\RushWOCl 402.b
SAMPLE
RUSHW79.D Study NumberE00.1311
THPFOS
5.544 568572
254
4/3/01 2:24
D:\ChemWushWO10402.b
SAMPLE
RUSHW80.D Sludy Number E001311
THPFOS
5.54 650461
254
4/3/01 2:38
D:\Chem\Rush\RO10402.b
SAMPLE
RUSHW81.D Study Number E001311
THPFOS
5.533 w e 0 5
254
4/3/01 2 5 3
D:\Chem\Rush\RO10402.b
SAMPLE
RUSHOO8Z.D Study NumberE001311
THPFOS
5.539 648526
254
4 ~ m3i:07
O:\ChemWush\RO10402.b
SAMPLE
RUSHW 83.D Study NumberE00-1311
THPFOS
5.534 560495
254
4/3/01 3 : ~ O:\Chem\Rush\R010402.b
SAMPLE
RUSHW 84.D Study Number E001311
THPFOS
5.54 660562
254
4/3/01 3:36
D:\Chem\RushWO10402.b
SAMPLE
RUSHW85.D Study Number E001311
THPFOS
5.531 672433
254
4/3/01 3:50
D:\Chem\RushWOI0402.b
SAMPLE
RUSHW86.D 5 ng/mL PFOS in MeOH
THPFOS
5.543 700545
254
4/3/01 4:05
O:\Chem\Rush\RO10402.b
SAMPLE
RUSH0087.D 250.5 ng/mL PFOS in MeOH
THPFOS
5.554 709410
254
4/3/01 502
D\Chem\Rush\RO10402.b
SAMPLE
RUSHO091.D Study Number E001311
THPFOS
5.551 669389
254
4 n m i 517
O:\Chem\Rush\R010402.b
SAMPLE
RUSHW92.D Study Number E001311
THPFOS
5.546 683096
254
4/3/01 5:31
O:\Chem\Rush\ROlC402.b
SAMPLE
RUSHO093.D Study Number E001311
THPFOS
5.543 683769
254
4/3/01 5:45
D:\Chem\Rush\RO10402.b
SAMPLE
RUSHW94.D Study NumberE001311
THPFOS
5.54 702574
254
4/3/01 6:W
O~\Chem\RushROCI402.b
SAMPLE
RUSHo95.D Study Number E00-1311
THPFOS
5.553 672540
254
4/3/01 6 1 4
D:\Chem\Rush\R010402.b SAMPLE
RUSHW96.D Study NumberE00-1311
THPFOS
5.544 690375
254
413101 6:29
O:\Chem\Rush\RO104M.b
SAMPLE
RUSHW97.0 Study NumberE001311
THPFOS
5.544 677814
254
4/3/01 6:43
D:\Chem\Rush\RO10402.b
SAMPLE
RUSHW98.D Study Number EW-1311
THPFOS
5.544 674569
254
4/3/01 657
D:\Chem\Rush\RO10402.b
SAMPLE
RUSHW99.D Study Number E001311
THPFOS
5.539 565914
254
4/3/01 7:12
D:\Chem\RushWO10402.b
SAMPLE
RUSH01W.D 5 nglmLPFOSin MeOH
THPFOS
5.545 710818
254
4/3/01 7:26
O:\Chem\Rush\RO10402.b
SAMPLE
RUSHO1OI.D 250.5 ng/mL PFOSin MeOH
THPFOS
5.547 699529
254
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
5.761 5.755 5.763 5.741 5.743 5.736 5.735 5.737 5.743 5.734 5.753 5.757 5.754
5.75 5.746 5.743 5.749
0 0 0 5 742 5.755 5.75
1988079 1990346 1686695 4300957 4141363 3611282 3972287 6061330 1849680 2010670 254899 4162725 4302522 6535234 6711588 6936083 84794205
0 0 2730205 259422 4064532
107.11332 111.28762 106.22388 361A4666 289.87301 249.67287 276.01481 580.02025 105.37736 114.12314
4.03926 261.46317 293.38551
491.9271 509.06131 513.00765 715.92273
0 0 0 20482416 4.0507 258.26619
80.2% 104.4%
81.0% 103.1%
Page 4 of 4
EW-1311 PFOS AdslDes
BACK TO MAIN
. . Samole Batch R010314.b. analvzedon Hillarv 03-14-01. PFOSAdsorblDerorbsamoles. Matdx: Sediment
Standardcurve range used for calibration oiumple.~: 2.5-250.5 n g h L (4M.8 and501 nglmL std not includeddue to the lower sample e o n ~ n t n t l o rnange). Batch method R010314t.m
In1D a b w4m121 05 3/14/0121 19 3/14/0121 33 3/14/01 21 48 3/14/01 22 02 3/14/01 22 16 3/14/0122 31 3/14/0122 45 3/14/01 23 00 3/14/0123 14 3/14/0123 28 3/14/0123 43 3/15/01 2 4 9 3115/013 03 3/15/016 10 3/15/01 6 24 3/15/01 9 31 3/15/01 9 45 3/15/01 1252 3/15/01 1306 3/15/01 1350 3/15/01 1404 3/15/01 14 18 3/15/01 1433 3/15/01 1447 3/15/01 1501 3/15/01 15 16 3/15/01 1530 3/15/01 1544 3/15/01 1559 3/15/01 16 13 3/15/01 16 28
Batch D Wlem\RushE3010314b D WlemWush E3010314b D WlemWushE3010314b D WlemWush iW010314b D \chemWush hR010314 b DWlemWush E3010314b D Wlem\Rush hR010314 b D Wem\Rush E3010314b D WlemWush E3010314b D hem\Rush 1W010314b D Wlem\Rush iUt010314b D Wlem\Rush1W010314b D WlemWush hR010314 b D MemWRushhR010314b D khem\Rush1W010314b D Wlem\Rush hR010314 b DMem\Rush E3010314b D \chem\Rush E3010314b DWlem\RUshE3010314b D Wlem\Rush E3010314b D WlemWush hR010314b D WlemWush 1W010314 b D WlemWush iUt010314b D WlemWush kR010314b D Wlem\RushE3010314b D MemWush E3010314b D khemWushtWO10314 b DWem\Rush iW010314 b D \chem\Rush 1W010314b D Wem\Rush tWO10314 b D WemWush 1W010314b DWlem\RushE3010314b
SampTyp. SAMPLE CALlB-I CALlB-2 CALIB-3 CALlB-4 CALIB-5 CALlB-6 CALIB-7 CALlB-8 CALIB-9 CALlB-IO SAMPLE CCALIB-1 CCALIB-1 CCALIB-I CCPLlB-I CCALIB-1 CCALIB-I CCALIB-1 CCALIB-I SAMPLE CALK-1 1 CALM-I2 CALIB-13 CAM-14 CALIB-15 CALIB-16 CALlB-I7 CALlB-18 CALlB-IS CALlB-20 SAMPLE
File
RUSH0017 D RUSHWIBD RUSH0019 D RUSH0020 D RUSH0021 D RUSH002 D RUSH0023 D RUSHW24 D RUSHOO25D RUSH0026 D RUSH00270 RUSH00280 RUSHWI D RUSH0042 D RUSHOOSS D RUSH0056 D RUSH0069D RUSHW70D RUSHOO83D RUSH0084 D RUSHW87D RUSHOOBB D RUSH0089 D RUSHOWO D RUSHW91 D RUSHW9ZD RUSHW93D RUSHW94 D
RUSHW95 D RUSHWID RUSH0097 D RUSH00980
Sample Name 01W307-01 010030742 010030703 010030704 01W 3 0 7 0 5 010030706 010030747 010030708 010030749 0100307-10 01wJ-07-11 01WW7-12 01w307-03 01003.07-IO 010030703 0100307-10 0:0030703 01003-07-10 010030743 OlW3-07-10 01W307-01 01W307-02 010030703 010030704 010030705 010030706 OlW30707 D lW30708 010030709 01W307-10 0100307-11 0100307-12
Mlsc Info
Compound Name THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFDS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
RT 5 48 5.47 5.46 5.45 5.46 5.46 5.46 5.47 5 47 5.46 5.46 5.46 5.47 5.47 5.47 5.48 5.47 5.46 5.47 5.46 5.47 5.47 5.46 5.47 5.47 5.47 5.46 5.46 5.46 5.46 5.46 5.47
Ana 1W9005 1002399 1offiuB 1013743 1002095 1014289 998269 1016405 1001184 1022553 1019780 1018171 1050373 1036120 I050495 1042671 1051910 1047495 1051525 1042848 I053861 1050989 1056424 1041839 1040134 1051034 1043368 1052178 1038121 1028679 1035833 1034919
_ _ _ Averaae: 1032038.969
Std Dev: 18725 XRSD: 1.8%
Amount 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254
Compound Nune
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
'
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
PFOS
RT
ow
568 568 567 567 568 568 568 569 568 567 568 569 569 569 569 569 568 569 568
ow
569 568 569 569 568 568 568 568 568 568 568
Area 0
129429 209405 330471 783497 1209876 1458055 2128988 2648411 5889029 8711721 I0307257 194784 5934195 196061 5869851 188546 5823836 187794 5774991
0 121720 183452 317434 756712 1162752 1426057 2081314 2616038 5630191 8331328 9922517
Amount 00 27 55 99 26 3 41 9 52 5 78 5 102 3
257 9 427 4 536 5
47 256 1 47 251 8 45 246 9 44 245 7 00 22 43 89 24 3 38 6 487 73 6 967 242 1 394 9 498 5
QC IS range (+I-30% average): +30%: 1341651 -30%: 722427
108 0% 109 3% 99 3% 105 1% 104 8% 104 7% 104 3% 102 1% 1030%
xx xx.
93 4% 102 3% 94 3% 1005% 89 1% 98 6% 88 6% 98 1%
89 4% 85 2% 88 9% 97 0%
96 5%
97 3% 97 8% 96 6% 96 7%
xx xx
Page 1 of 3
BACK TO MAIN
LG,
9(D
(D
VI
(XJ
VI 4
w 0
E00-1311 PFOS AddDes
Sample Batch ROlO314.b, analyzed on Hillaty 03.l4-01. PFDS AdsottJDaorb Sample% Matrix: Sediment StandardCUNB range usedfor calibrationof samples: 2.5-250.5 nglmL (400.8 and 501 ng/mL Std not includeddue to the lower sample concentrationrange). Batch method R010314t.m
lnj Date
3/15/010 26 3/15/01 0 40 3/15/01 054 3/15/01 109 3/15/01 123 3/15/01 137 3/15/01 1 5 2 3/15/01 2 06 3/15/01 2 20 3/15/01 2 25 3/15/01 347 3/15/01 4 01 3/15/014 15 3/15/01 4 30 3/15/01 4 44 3/15/01 4 58 3/15/01 5 13 3/15/015 27 3/15/01 5 41 3/15/015 56
3iwaU.w
3/15/01 7 22 3/15/01 7 38 3/15/01 7 50 3/15/01 805 3/15/018 19 3/15/018 34 3/15/01 6 48 3/15/019 0 2 3/15/019 17 3/15/01 1029 3/15/01 1043 3/15/01 1057 3/15/01 11 12 3/15/01 11 26 3/15/01 11 40 3/15/01 11 55 3/15/01 1209 3/15/0i 12 23 3/15/01 12 38
Batch
D Wem\Rush hR010314b D WemWush hR010314 b D WemRush hR010314 b DWemWush hR010314 b D \chemRush iW010314b D MemWurh hR010314 b D WemWush AR010314 b D WemRush hR010314 b D Wem\Rush iW010314b D \chem\RushiWOIO314 b D \chem\Rurh N1010314 b D WemWuoh tWO10314 b D Wem\Rush hR010314b D Wem\Rush hR010314 b D \chemRush hR010314 b D WemWush hR010314 b D MemRush N1010314 b D WemWush hROl0314b D WemRush hR010314 b D Mem\Rush iW010314b P D Mem\Rush hR010314 b D Mem\Rush iW010314b D Wem\Rush iW010314 b D Wem\Rush iW010314 b D Wem\Rush hR010314b D WlemWush 1W010314b DWem\Rush hR010314b D WemRush hR010314 b D \chern\Rush hR010314 b D WemRush W.010314 b D WemWush iW010314b D WemWush iW010314 b D WemWush tW010314b D WemWurh 1W010314b D \chemWushiW010314b D Wem\Rush iW010314b D WlernRush hR010314 b D\chemWush hR010314 b D WemWush 1W010314b
SampType
File
Sample Name
SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
fppJpLs SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
RUSHW31 D
RUSH0032 D RUSH0033 D RUSHW34 D RUSHW35 D RUSHWID RUSH0037 D RUSHWID
RUSH0039 D RUSHLWO D RUSHW45 D RUSH0048 D RUSHLW7 D RUSH0048 D RUSH0049 D RUSHWSO D RUSHWSI D RUSH0052 D RUSHWSS D RUSHWD
auswswa
RUSHWGO D RUSHOOG1 D RUSH0062 D RUSH0063 D RUSH0064 D RUSH0065 D
RUSHW6S D
RUSH0057D RUSH0058 D RUSH0073 D RUSH0074 D RUSH0075 D RUSHW76 D RUSHW77 D RUSHW78 D RUSHW79 D RUSHWBO D RUSHWBI D RUSHWBZ D
1311 ~ 1 2 1 5 1 13114122S1 13114123-S1 131l4123MS-S1 13114124-S1 13114125Sl 13114126Sl 13114126MS-SI 13114127-S1 1311412Bs1 13114129Sl 13114129MS-Sl 13114130-SI 13114131S1 13114132-SI 131j4132MS-SI 13114133-SI 1311 4 13451 1311413551 13114135MS-S1 su4U64s 13114137-SI 13114138-SI 13114138MS-S1 1311413951 1311 4 1 4 0 5 1 13114141-SI 131I4141MS-SI 13114142-SI 1311 4 143-SI 13114144-51 13114144MS51 13114145-S1 13114146-SI 13114147-SI 13114147MSS1 13114 1 4 8 S 1 13114149-S1 1311415OS1 1311415OMSSl
Misc Info
Compound N w
THPFOS THPFOS THPFOS THPFOS MPFOS MPFOS THPFOS THPFOS THPFDS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS WPFCs THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS MPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
RT
5 47 5 47 5 47 5 47 5 48 548 546 5 48 5 48 5 48 5 48 5 48 5 48 5 49 548 5 49 548 5 51 5 48 5 48
aca
5 48 5 47 5 47 5 47 5 47 5 48 5 47 5 48 5 47 5 48 546 5 47 546 5 47 546 5 47 5 47 5 47 5 47
Area
1425324 1078944 1090803 931360 1093465 I057249 1038845 903745 1084923 1074853 1660202 947684 1095965 1091572 1101888 919194 I073078 10812M I077793 921307
a
I099389 1083504 947454 1086262 1087521 1075484 915669 1079679 llLX514 1091080 895662 1070260 1090781
IM)B406 898964 10-5 1052012 1055409 887792
Averane: 1062023 Std Dev: 137692
XRSO: 13.0%
Amount CompoundName RT Area Amount
254
PFOS
OW
0
00
254
PFOS
OW 0
00
254
PFOS
ow 0
00
254
PFOS
568 4322756 1979
254
PFOS
ow 0
00
254
PFOS
ow 0
00
254
PFOS
254
PFOS
569 4220111 1994
254
PFOS
569 1155260 370
254
PFDS
569 4106846 1568
254
PFOS
570 1343718 273
254
PFOS
569 5004132 2316
254
PFOS
569 799984
243
254
PFOS
570 725496
21 9
254
PFOS
569 822873
250
254
PFOS
571 4874564 2329
254
PFOS
569 729534
225
254
PFOS
573 759438
233
254
PFOS
569 769202
237
254
PFOS
570 4762247 2257
a
@64s waaE%$ M
254
PFOS
569 757619
228
254
PFOS
569 757822
232
254
PFOS
569 4939810 2281
254
PFOS
569 684895
207
254
PFOS
569 677314
204
254
PFOS
569 687097
21 0
254
PFOS
568 4776931 2282
254
PFOS
570 673507
204
254
PFOS
569 716747
21 3
254
PFDS
570 688862
207
254
PFOS
569 4609795 2245
254
PFOS
569 640428
195
254
PFOS
568 644391
192
254
PFOS
569 636594
190
254
PFOS
5 6 8 4605162 2232
254
PFDS
5 6 8 649889
201
254
PFDS
568 645335
200
254
PFOS
569 651186
202
254
PFOS
569 4565770 2243
Page 2 of 3
EM)-1311PFOS AUslDes
BACK TO MAIN
Sample Batch R010314.b. analyzed on Hillary 03-14Oi. PFOS AdsoMOesorbsamplea Matrix: Sediment Standardcurve range used for calibration of samples: 2.5-250.5 nglmL (4W.8 and SO1 n@mLrtdnot Included due to the lower sampleconcentration range). Batch mathod R010314t.m
In1 Date
3/14/01 20 36 3/14/01 20 M 3/14/01 23 57 3/15/01011 3/15/01 3 18 3/15/01 3 32 3/15/016 39 3/15/016 53 3/15/01 1000 3/15/01 10 14 3/15/01 1321 3/15/01 1335 3/15/01 16 43 3/15/01 1657
Batch
D \chem\RuJh RR010314b D WemWush iW010314 b DWem\Rush hR010314b D Wern\RushAR010314 b D Wem\Rush hR010314b DWemWush i\R010314b D \chem\Rush 1W010314b DWemWush 1W010314b 0 WemWush AR010314 b D \them\Rush bR010314b D H e m m u s h iWOlO314b DichemWushARO10314 b D WernWush AR010314 b D Wlern\RushhR010314b
SamPTyp.
SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
File
Sample Name
RUSH0015D RUSHWIG D RUSH0029 D RUSHWJO D RUSHW3 D RUSH0044 D RUSH0057 D RUSHW5ID RUSH0071 0 RUSHLX72 D RUSHWE5 D RUSH0086 D RUSH0099 D RUSHOIW D
TN-A 4802 MeOH TN-A 480'2 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802MeOH TN-A4602 MeOH
Mlrc Info
Compound Name RT
THPFOS
ow
THPFOS
ow
THPFOS
ow
THPFOS
000
THPFOS
OM)
THPFOS
ow
TNPFOS
ow
THPFOS
ow
THPFOS
ow
THPFOS
OM)
THPFOS
000
THPFOS
ow
THPFOS
ow
THPFOS
ow
Area
0 0 0 0 0 0 0 0 0 0 0 0 0 0
Amount C:ompoundNanm RT
0
PFOS
5 70
0
PFOS
5 63
0
PFOS
5 69
0
PFOS
5 63
0
PFOS
564
0
PFOS
564
0
PFOS
5 69
0
PFOS
5 70
0
PFOS
5 69
0
PFOS
568
0
PFOS
5 68
0
PFOS
5 70
0
PFOS
568
0
PFOS
568
Area
40923 29136 40534 30463 33501 7- . 57454 51654 57753 53172 57830 45965 56083 47554
Amount
0.0 00 0.0 0.0 00 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0
4
0 w
BACK TO MAIN
Sample Batch R010309.b. analyzed on Rush 030901. PFOSAdsohlDesorb samples. Matrix: Cntrl and Soils 1.2, h 3. Standard curve range used for calibration of sampler: 10.501 ng/mL (2.5. and Ing/mL std not included due to the higher sample concentration range). Batch method R010314t.m
In) Date
Batch
3/9/01 20 26 D \chem\Rush1W010309b
3/9/01 20 37 D \chem\Rush AR010309 b
3/9/01 20 48 0 khem\Rush hR010309 b
d l Y N l L1 W U Wemwush Iu1010309b
3/9/01 21 11 D WemRush 1W010309b
3/9/01 21 22 D WemRush hRO103W b
3/9/01 21 33 D Wem\Rush hR010309 b
3/9/01 21 44 D WemRush 1R0103Wb
3/9/01 21 56 D \chemRush ARO10309 b
3/9/01 22 07 D \chemRush WO103W b
3/9/01 22 18 O\chem\Rush hR010309 b
3/9/01 22 29 0 \chem\Rush 1R010309b
3/10/01 0 54 D khem\Rush iR0103W b
3ll0/01 1 06 D Wem\Rush hR010309 b
3110101 3 31 DWem\Rush hR010309b
3/10/01 342 0 Wem\Rush AR010309 b
3/10/01 6 07 D MemRush hR0103W b
3/10/01 6 19 OWem\Rush 1\R010309b
3/10101 8 44 D Wem\Rush hR010309 b
3/10/01 8 55 D \chem\Rush1W010309b
3/10/01 11 21 D \chem\Rush t\R0103W b
3/10/01 11 32 D\chem\RushhR010309b
3/10/01 13 58 D\chem\RushW010309 b
3/10/01 14 09 D \chem\Rush1W010309b
3/10101 16 34 0 \chemRush 1W010309b
3/10/01 16 46 0 \chemRush 1W010309b
3/10/01 I 8 38 D Wem\Rurh 1W010309b
3/10/01 1849 D \chem\RushhR010309b
3/10/01 1922 DWem\Rush hR010309b
3/10/01 1933 DWem!RushhR010309b
3/101011945 DWemRushi\R010309 b
3/10/01 19 56 D \chemRush 1W010309b
3/10/01 20 07 D WemRush hR010309 b
3/10/0120 18 DWemu1ush ARO103W b
3/10/0120 29 D Wem\Rush hR010309 b
3/10/012040 D \chemWush ARO10309 b
3/10/0120 52 D \chem\Rush1W010309b
3/10/01 21 03 0 WemRush hR010309b
3/1wO121 14 DWem\Rush hR010309 b
3/101012125 DWem\Rush hR0103W b
SamPVp. SAMPLE SAMPLE CALlB-I CALIB-2 CALIB-3 CALIB-4 CALlB-5 CALlB-6 CALIB-7 CALl8-8 CALIB-9 CALlB-I 0 CCALIB-I CCALlB-I CCALIB-I CCALlB-I CCALIB-I CCALIB-I CCALIB-1 CCALIB-1 CCALIB-1 CCALIB-1 CCALIB-1 CCALlB-I CCALIB-I CCALIB-I CCALIB-I CCALIB-1 SAMPLE SAMPLE CALlB-I 1 CALK-12 CALlB-13 CALIB-14 CALlB-I5 CALlB-16 CALlB-17 CALM-18 CALlB-19 CALIB-20
File
Sample Name
RUSH0022D 0100307-01
RUSH0023 D 010034742
RUSHW24D 010034743
RUSH0025D 010034744
RUSH0026D 010034745
RUSH0027 D 010030706
RUSH0028 D 010030747
RUSH0029D 010030748
RUSHWBOD 01003-0749
RUSH0031D 0100347-10
RUSHW32 D 0100367-11
RUSH0033D 0100307-12
RUSH0046D 5 ng/mL PFOS
RUSH0347 D 250 5 nglmL PFOS
RUSHWGO D 010034743
RUSHWGI D 0100347-10
RUSH0074 D 010030703
RUSH0075 D 0100307-10
RUSHW88D 010034743
RUSH0089 D 01003-07-10
RUSH0102D 010034703
RUSH0103 D 01003-07-10
RUSHO116D 010030743
RUSH0117 D 0100347-10
RUSH0130D 010030743
RUSH0131 D 0100367-10
RUSH0141 D 010034703
RUSH0142D 0100307-10
RUSH0145D 01W307-01
RUSH0146D 01W3-0742
RUSH0147 D 01003-0703
RUSH0148 D 010034744
RUSH0149 D 010036745
RUSH0150 D 010034706
RUSH0151 D 01W 3 0 7 4 7
RUSH0152D 010034708
RUSH0153 D 010034749
RUSH0154 D 01W347-10
RUSH0155 D OlwJ07-11
RUSH0156 D 0100307-12
Ylsc Info 2.5 nglmL PFOS 5.0 nglmL PFOS 10nglrnLPFOS 25 ngiML PFOS 40 n@mLPFOS 50 nglmL PFOS 75.1 nglmL PFOS 1W.2 nglmL PFOS 250 5 r@mL PFOS 400.8 ngmL PFOS 501 nglmL PFOS
2 5 n g h L PFOS 5 0 nglmL PFOS 10 ngmL PFOS 25 ngiML PFOS 40 nglmL PFOS 50 n@mL PFOS 75.1 ng/mL PFOS 100.2 nglrnL PFOS 250 5 ngmL PFOS 400 8 nglmL PFOS 501 nglmL PFOS
o m p o u n d N m RT THPFOS 5 571 THPFOS 5 569 THPFOS 5566 THPFOS 5 579 THPFOS 5 579 THPFOS 5 577 THPFOS 5566 THPFOS 5 572 THPFOS 5 563 THPFOS 5 557 THPFOS 5 553 THPFOS 5566 THPFOS 5 55 THPFOS 5 55 THPFOS 5538 THPFOS 5 547 THPFOS 5 536 THPFOS 5548 THPFOS 5 539 THPFOS 5 543 THPFOS 5565 THPFOS 5 552 THPFOS 5546 THPFOS 5544 THPFOS 5 5 4 THPFOS 5 53 THPFOS 5 537 THPFOS 5 543 THPFOS 5 547 THPFOS 5 551 THPFOS 5 53 THPFOS 5 5 4 THPFOS 5 53 THPFOS 5 543 THPFOS 5 537 THPFOS 5 543 THPFOS 5 547 THPFDS 5 55 THPFOS 5 5 4 THPFOS 5 543
Area 1468051 1464363 1466531 1454968 1451878 1446455 1446507 1431459 1426618 1421352 1446399 1409274 1275681 1266963 1199867 1189673 1186907 1174775 I189770 1195540 1228262 1192842 1191068 1162130 I 174278 1176312 1186618 1178574 1190379 1197508 1190786 1193614 1189879 1188319 1207047 1206309 1201824 1192316 1277981 1207619
Amount
254 254 254 254 254 254
254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254
OmpoundNanw RT
PFOS
5711
PFOS
5779
PFOS
5783
PFOS
5789
PFOS
5796
PFOS
5794
PFOS
5783
PFOS
5782
PFOS
5773
PFOS
5767
PFOS
5764
PFOS
5776
PFOS
576
PFOS
576
PFOS
5748
PFOS
5764
PFOS
5753
PFOS
5758
PFOS
5756
PFOS
576
PFOS
5775
PFOS
5769
PFOS
5763
PFOS
5761
PFOS
5757
PFOS
574
PFOS
5747
PFOS
5753
PFOS
5687
PFOS
5761
PFOS
5747
PFOS
5757
PFOS
5747
PFOS
576
PFOS
5755
PFOS
5753
PFOS
5757
PFOS
5767
PFOS
575
PFOS
5753
Area
467665 400427 226905 408798 1016639 1557482 1933591
2767322 3545665 7811414 11707065 13729087 213475 7409689 207290 7301061 209110 7206080 211149 7439383 216178 7363242 215488 7166019 205428 7213554 213374 7252833 417527 375240 209130 379300 918545 1439357 1778172 2591174 3298534 7225944 11337407 12852853
Amount 90 66 29 76 23 6 38 3 48 6 73 0 963
236 5 375 1 471 6 34 254 4 36 269 2 37 269 1 37 273 7 37 271 1 39 270 7 36 269 0 38 270 1 102 81 37 90 264 43 6 541 82 0 107 5 265 3 419 8 527 1
X 76% 94% 96% 97% 97% 96% 94% 94% 94% below LOP 102% b l o w LOO 107% below LOQ 107% beiow LOO 109%
below LOP 108%
below LOQ 107%
X 90% 105% 109% 108% 1W% 107% 106% 105% 105%
Page 1 of 4
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3/9mi 23 03 3/9/01 23 14 39/01 23 25 3/9/01 23 36
m m i 23 47
3/9/01 23 58 3/10/010 10
$,lasl 021
310/01 032 3/1wO1 0 4 3 3/10/01 1 3 9 3/10101 1 5 0 3/10mi 2 01 3104012 13 3/104012 24 3/10/01 2 35 3/104012 46 3/10/01 2 57 3/10/01 3 08 3/10/01 3 20 3/10/01 4 16 3 101014 27 3/10/01 4 38 u101014 49 3/10/01 5 W 3/10/01 5 11 3110/01 5 23 3/10/01 5 34 3/10/01 5 45 3/10/01 5 56 310/01 6 52 3/10/017 03 3/10mi 7 15 3110401 7 26 3/10401 7 37 3/io/oi 7 48 31om1 7 59 3/10/01 0 11 3101018 22 3/10401 8 33 3/10401 9 29 3/10/01 940 3/10/01 951 3loM1 1003
D Wlem\Rush iW010309 b D \chem\Rush 1W010309b D \chem\Rush 1W010309b D \chem\Rusn 1W010309b D \chem\RLsh AR010309 b D Wlem\Rush 1W010309b D\chem\RJsh N1010309 b D bcnemiRusn ~ , h u i a uDr D Wem\RbSh AR010309 b D \chem\Rdsh hR010309 b D \ChemVlusha@010309 b D Wlem\Rdsh t\ROlOJD9 b D \chemlRJsh AR010309 b D Wlem\Rusn 1W010309b D \cnem\Rush 1W010309b D \mm\Rush tW010309 b D \cnem\Rush 1WOlO309b D \chem\RJsh i\R010309 b D \chem\Rush aAR010309 b D \Chem\RUsh Ni010309 b D \chem\Rush 1W010309b D \cnem\RLsn .W010309 b D \cnem\Rbsh W010309 b D WlemVldsh I\Ro10309 o D WlemVlush 1W010309b D Wem\Rurh 1W010309a D \cnem\Rush 1W010309b D \chem\Rush 1W010309b D Wem\RLsh tW010M9 b D Wlsm\Rush 1AR010309b D Wlem\Rdsh AR010309 b D \chem\Rrsh ,AROIOM9 b D WlemiRdsh ~ARO103090 D \mem\Rdsh hROIoJ09D
D \cnemARush 1WO10309a
D Wlem!Rt.sh tW010309 b D Wiem\Rdsh W010M9 b D Wlem\Rush W010309 b D \chem!Rdsh 1\R010309b D Wern\Rush RROlOM9 b D \chem\Rdsh i\ROlWW b D \cnem\Rusn 1\R010309b D \chem\Rush ~W010309b D \Chem\Rush 1W010309b
SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
RUSHW36 D RUSH0037 D RUSH0038 D RUSHW39 D RUSHW D RUSHW41 D RUSHW42 D
KUbHWJ D
RUSHW D RUSHW45 D RUSHWSO D RUSHW51 D RUSHW52 D RUSHW53 D RUSH0054 D RUSHW55 D RUSHWD RUSHW57 D RUSH0058 D RUSH0059 D RUSH- D RUSHW65 D RUSH0066 D RUSHW67 D RUSHW68 D RUSH0069 D RUSHW7O D RUSH0071 D RUSH0072 D RUSH0073 D RUSH0078 D RUSH0079 D RUSH0080 D
RUSHWI D
RUSHWB2 D RUSHW83 D RUSH0084 D RUSH0085 D RUSH0086 D RUSHWB7 D RUSH0092 0 RUSHW93 D RUSH0094 D RUSHW95 D
1311-4058-54 1311 4 0 5 9 4 4 13114064-S4 1311-4065-54 13114066-54 13114088-S4 1311 4 0 8 9 6 4 13114~S4 13114094-S4 1311-409554 1311 4 w 6 - S 4 1311411BS4 1311 4 119-54 13114120-S4 13114W4-S5 1311-4W5-S5 13114W6-S5 1311 4 0 2 B S 5 1311-40M-S5 13114034-55 13114035-S5 1311-4036-S5 13114058-55 I311-4059-55 13114060-S5 1311-4064-S5 13114065-S 1311 4 0 6 6 S 5 1311 4 0 8 B S 5 13114089-S5 13114090S5 13114O94-S5 i3114w5-s5 1311-45 1311-4118-S5 13114119-S5 1311412&S5 131l-iOOeS6 13114W5-S6 1311400546 13114006MS-S6 13114028-S6 13114030-56 13114030MS-S6
Soill SOlll Soil2 Soil2 Soil2 Soil2 Soil2
SOIL2 Soil3 Soil3 Soil3 sod3 Soil3 Soil3 CnVl Cntrl Cnvl Cntd Cntrl SOlll sodl Soill Soill Soill Soill Soil2 Soil2 SOC? Soil2 Soia so112 Soil3 Soil3 Soil3 Soil3 Sot13 Soil3 Cntrl Cntrl Cntrl Cntrl Cntrl cntr1 Cnlrl
THPFOS 5546
1463951
254
THPFOS 5 545
1400690
254
THPFOS 5 547
1086434
254
THPFOS 5 55
1289185
254
THPFOS 5 556
1063982
254
THPFOS 5 55
1351089
254
THPFOS
0
0
0
THPFOS 5544
1366635
254
THPFOS 5 549
1099645
254
THPFOS 5 537
1234304
254
THPFOS 5 557
62815
254
THPFOS 5 554
1038219
254
THPFOS 5 551
II72073
254
THPFOS 5 547
1188995
254
THPFOS 5 551
1269801
254
THPFOS 5 543
1239213
254
THPFOS 5 541
1295229
254
THPFOS 5 548
1187969
254
THPFOS
5 55
1957411
254
THPFOS 5 547
1453881
254
THPFOS 5 539
1153414
254
THPFOS 5 537
I099339
254
THPFOS 5544
1282394
254
THPFOS 5 536
1246108
254
THPFOS 5 535
1223354
254
THPFOS
554
1264548
254
THPFOS 5544
1228663
254
THPFOS 5544
1263001
254
THPFOS 5 552
1235655
254
THPFOS 5 542
1193060
254
THPFOS 5 547
1318378
254
THPFOS 5 55
I180237
254
THPFOS 5 551
1226490
254
THPFOS 5 542
1308839
254
THPFOS 5536
1290456
254
THPFOS 5 537
1336554
254
THPFOS 5 539
1245142
254
THPFOS 5 539
1304860
254
THPFOS 5 539
1261162
254
THPFOS 5 533
1247359
254
THPFOS 5 57
1071760
254
THPFOS 5565
1300949
254
THPFOS 5 569
1303672
254
THPFOS 5 57
1032466
254
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFDS PFOS PFOS PFOS PFOS PFDS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
5756 5762
0 0 0 5788 5706 5761 0 5684 5704 5764 5768 5757
0 0 0 5758 5767 0 0 0 5754 5753 5753 0 O 0 5769 5759 5764 0 0 0 5753 5754 5757 0 0 0 578 5775 5786 578
408283 469387
0 0 0 2735601 12191 863841 0 2999325 11924 420566
644551 595758
0 0 0 419771 476453 0 0 0 1014587 985016 1148377 0 D 0 1393130 1451794 1656632 0 0 0 747647 955425 958092 0 0 0 5486963 444872 428399 5773407
96 96 00 00 00 768 00 21 0 00 940 42 123
178 159 00 00 00 103 62 00 00 00 271 271 329 00 00 00 403 438 454 00 00 00 189 241 263 00 00 00 2170 99 94 241 4
Page 2 of 4
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3110101 10 14 D \chem\RLsn ARO10309 b 31iomi 10 25 D\chem\RdshhR010309D 3110101 10 36 D WrnlRdsh i\R010309b 3110101 1047 D knem!RLsn hR010309b 3110101 10 59 D \chemlRusn hR010309b 31lOtO1 11 10 DkhemlRdsh tW010309b J l l O l O l 12 06 D m \ R d s h iW010309b 3110101 12 17 D Wlem\Rush t\R010309 D
71lnl~1l 2 ?R n \rh?mlQnsh S & O Q * Q ~cQ ~
3110101 12 39 D hemlRush hR010309b 3110101 12 51 D knem\Rbsh1U7010309b 3110101 13 02 D WlemRush tW010309 D 3110101 13 13 D ichem\RdshW.O10309o 3110101 13 24 D \chemRush ARO10309 b 311D101 13 35 D \cnem\Rush1WOlOx19b 311010113 46 D knemWushI ~ o i 0 3 0 9b 3110101 14 43 D \chemLQush iW010309 b ~ 1 0 1 0114 54 O\chem\Rush~ ~ 0 1 0 3 0b9 311010115 05 D \cnem\RbshiAJ3010309b 311010115 16 D!chem\RJsh.\R010309b 3110101 1527 O!chem\RushNi010309b 3110101 15 39 D WmlRusn 1u1010309b 311010115 50 D \cnem\Rush<W010309b 311010116 01 D WlemWurh1W010309b 3110101 16 12 0 Wem\Rusn 1U7010309b 3110101 16 23 D \cnem\RLsh AR010309 0 311010117 19 D \chemW.sh 1AR010309o 311010117 30 D \chern\RushiAR010309b 3110101 17 42 D \chem\Rush N1010309 b 3110101 17 53 D \cnern\Rusn iWO10309 b 3110101 1804 D Mem\Rusn 1hR010309o 3110101 18 15 D WlemVLsh tAfZ010309 b 3llO101 18 26 D\chem\Rush 1\R010309b
SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
RUSH0096 D RUSH0097 D RUSHW96 b RUSH0099 D RUSHOlW D RUSH0101 D RUSHOICG D RUSH0107 D DL'SUO'OB E RUSH0109 D RUSH0110 D RUSH0111 D RUSH0112 0 RUSH0113 D RUSH0114 D RUSH0115 0
RUSH0120 D
RUSH0121 D
RUSH0122 D
RUSH0123 D RUSH0124 0 RUSH0125 D RUSH0126 D RUSH0127 D
RUSH0128 D
RUSH0129 D RUSH0134 D RUSH0135 D RUSH01360 RUSH0137 0 RUSH0138 0 RUSH0139 D RUSH0140 D
13114034-S6 13114035-S6 13114036-S6 13114036MS-S6 1311405866 1311-4O59-S6 13114WJS6 1311406OMS-S6 13114c63 s5 1311406566 13114WS6 13114066MS-S6 1311408&s6 1311-4089-S6 1311409OS6 13114090MS-S6 13114O94-S6 1311 4 0 9 5 3 6 13114096-S6 13114096MS-S6 1311 4 11866 13114119s6 13114120-S6 13114120MS66 13114004S7 13114W5-S7 13114006-S7 13114028-57 13114030-S7 1311-4034-S7 13114035S7 1311 4 0 M S 7 13114058-S7
sol11 Soill soill Soill Soill Soill Snill Soill e-:-
YVlY
Soin Soil2 Soil2 Soil2 sol12 Soil2 Soil2 Soil3 Soil3 Soil3 Soil3 Soil3 SOB3 Soil3 Soil3 Cntrl Cnlrl Cnlrl Cnlrl Cnlrl Soitl Soill Soill Soill
THPFOS 5565
1333744
254
THPFOS 5 572
1338340
254
THPFOS 5 572
1245746
254
THPFOS 5 565
1068189
254
THPFOS 5 565
1280942
254
THPFOS 5 559
1242425
254
THPFOS 5 556
1262511
254
-..,.-.^^ THPFOS
TI wnrn.. IrlrrV-
5 565 5s
1213422
ILJJIaV
254 2%
THPFOS 5 557
1250558
254
THPFOS 5 559
1239303
254
THPFOS 5 551
1034913
254
THPFOS 5 565
1253690
254
THPFOS 5 553
1250794
254
THPFOS 5 557
1285551
254
THPFOS 5 543
1080374
254
THPFOS 5 561
1242888
254
THPFOS 5 551
1231504
254
THPFOS 5543
1217872
254
THPFOS 5 538
1050039
254
THPFOS 5 543
1289869
254
THPFOS 5544
1232248
254
THPFOS 5 545
1307515
254
THPFOS 5 537
1053782
254
THPFOS 553
1230338
254
THPFOS 5544
1250384
254
THPFOS 5 543
1221946
254
THPFOS 5 538
1266595
254
THPFOS 5 537
1 192244
254
THPFOS 5 535
1218042
254
THPFOS 5 53
1194839
254
THPFOS 5 539
1252105
254
THPFOS 5 532
1194656
254
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
0 0 0 5775 5775 5776 5766 5775
u
0 0 5768 5775 577 5775 576 0 0 0 5755 576 5754 5755 5747 0 0 0 5748 5748 0 574 0 5742
0 0 0 5657330 1095297 1011012 1003621 5974975
o
0 0 5360487 1362179 1415860 1334234 6447671 0 0 0 5229681 1101877 1018381 993087 6331963 0 0 0 432393 423701 0 375306 0 962584
00 00 00 226 5 29 6 28 0 27 2 208 2 00 00 00 220 8 385 405 367 260 5 00 00 00 211 0 29 6 28 5 25 9 262 6 00 00 00 99 10 4 00 89 00 27 7
Page 3 of 4
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3/9/01 20 04 3/9/01 20 15 39/01 22 40 3/9/01 22 51 3410101 1 17 3/10101 1 28 31101013 53 3110101 4 W 34101016 30 3110101641 3/10/01 9 07 3410/01 9 18 3/10101 11 43 3110/01 11 54 3/10101 14 20 3/10/01 14 31 3/10/01 16 57 3l10101 17 08 3410101 19 W 3/10/0119 11 3110101 21 36 3/10101 21 48
D khwmwush RR010309b D WemWush W010309 b D Wem\Rush 1W.010309b D Wwm\RushRR010309b D Wsm\Rush 1W.010309b 0 \chem\Rush W010309 b D WwmWush WO10309b D Wem\Rush W010309 b D Wem\Rush 1W010309b DMe1n\RushiWO10309b 0 WernWush 1W.010309b 0 \chwm\Rush i ! R O I O J w b 0 WemWush W010309 b 0 Wem\Rush W0103W b DWem\Rush RR010309b 0 MemRuSh 1W.010309b D Wwm\Rush1W.010309b 0 Wem\Rush RR010309b D Mem\RushRR0103W b OWwm\Rush 1W0103W b D\chem\RushRR010309b 0 WemWush W010309 b
SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE RAMPI F
SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
RUSH0020 D RUSH0021 D RUSHW2-I D RUSH0035 D RUSH0248 D RUSHW49 D RUSH0052 D
RIISHMW n
RUSH0076 0 RUSH0077 D RUSH0090 D RUSH0091 D RUSH0104 D RUSH0105 D RUSH0118 D RUSH0119 D RUSH0132 D RUSH0133 D RUSH0143 D RUSH0144 D RUSH0157 D RUSH0158 0
TNA 4802 MWOH TNA 4802 MWOH TN-A 4802 MeOH TNd4802 MWOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 M ~ O H
TN-A4802 MeOH TN-A 4802 MaOH TNA 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TN-A 4802 MeOH TKA4802 MeOH TN-A 4802 MeOH TN-A4802 MWOH TN-A 4802 MWOH TN-A 4802 MeOH TN.A4802 MeOH TN-A 4802 MeOH TN-A 4802 MWOH
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
TUPFOS
n
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
THPFOS
0
0
0
PFOS
5802 49447
00
0
PFOS
5809 24769
00
0
PFOS
5799 34422
00
0
PFOS
5792 20717
00
0
PFOS
5785 21865
00
0
PFOS
575 15324
00
0
PFOS
5783 18986
00
PFG8
5685 i5i24
00
0
PFOS
5697 18689
00
0
PFOS
5707 15833
00
0
PFOS
5788 23180
00
0
PFOS
5718 16806
00
0
PFOS
5782 23713
00
0
PFOS
5712 le643
00
0
PFOS
5701 22854
00
0
PFOS
5698 20038
00
0
PFOS
5682 25164
00
0
PFOS
569 20930
00
0
PFOS
5696 24815
00
0
PFOS
5698 22446
00
0
PFOS
5783 38306
00
0
PFOS
5705 27663
00
Page 4 of 4
EW-1311 PFOSAdslOes
BACK TO MAIN
Samole Batch H010313.b. analned on HlllaN 034301. PFDS AdsorbIDesorb8ampIu. M8Wx: SolUSlglSed.
StandardcuNe range u&d for~callbntlonotsamplu: 5501 ngmL (2.5 ngmLstd-not included due tolhe hlgher sampleconcentration nnge).
Batch method HOlO3lld.m
Inj Date
Batch
SampType File
Sample Name
MISCInfo CompoundName RT Area
Amount CompoundNams RT A n a
Amount
3/13/01 12:M D WemWiilary iW010313b 3/13/01 IS07 D M e m W i l l w iW010313 b 3/13/01 1338 D WwmWillary iW010313b 3/13/01 1330 D WemWillary AH010313 b
3/13/011341 D MemWillary iW010313b 3/13/01 1352 0WemWillary iW010313b 3/13/0114:04 DMemWilla~yiW010313b 3/13/01 14:15 D MemWillary iW010313 b 3/13/01 1426 D MemWiliary tW010313 b 3/13/011438 D WemWillary iW010313b 3/13/01 14:49 DWemWillary iW010313b 3/13/01 15:Ol DWemWiilary iW010313b 3/13/0117:40 DWemWillary iW010313b 3/13/011751 DMemWillary iW010313 b 3/14/01 9:37 DMemWillary iW010313 b 3 m m 1 9-48 D\chemWilIa~yiW010313 b wi4mi i z : i 6 D WemWiliary iW010313 b 3/14/01 12.28 D WemWiliary tW010313 b 3/14rnii4:44 D MemWillary iW010313b 3/14/01 14:s DMwmWiliary iW010313 b 31141011530 0WlemMllary iWO10313 b 3/14/01 15.41 D WemWillary iWO10313 b 3/14/01 1553 DWemWillary iW010313b 3/14/01 1 6 : ~D WemWiliary iW010313b 3/14/01 1635 D MemWillary iW010313 b 3/14mi16:27 0 MemWillary iW010313 b 3/14/01 16-38 D WemWillary iW010313 b 3/+4/01i6:49 D WemWiliafy tWO10313 b
3/14/01w o i D WemWllary iW010313b
3/14/01 1 7 : ~ D MemWiilaty iW010313 b
3/14/01 17:24 D WemWillary iW010313 b
3/14/01 1 7 s DWemWillary tW010313 b
SAMPLE SAMPLE CALlB-I CALIB-2 CALIB-3 CALIB-4 CALIE-5 CALIE-6 CALIE-7 CALlB-8 CALIB-9 CALlB-10 CCALIB-1 CCALlE-1 CCALiE-1 CCALIB-1 CCALIB-1 CCALIB-1 CCALiB-I CCALIB-1 SAMPLE SAMPLE CALlE-11 CALIE-12 CALIB-13 CALIB-14 CALM-15 CALlE-16 CALIE-17 CALIB-18 CALIE-19 CALlB-20
HILLW16.D 0 nglmL PFOS in MeOH HILLW17.D 2.5 nglmL PFOS in MeOH HILL0018.D 5 W L PFOS in MeOH HlLL0019.D 10WnL PFOS in MeOH HILL0020.D 25 W L PFOS in MeOH HILLW21.D 40 nglmL PFOS in MeOH HILL0022 D 50.1 nglmL PFOS in MeOH HILLW23.D 75.1 nglrnL PFOS in MeOH HILL0024 D 100.2 n#mL PFOS in MeOH HILL0025.D 250.5 nghnL PFOS In MeOH HILL0026.D 400.8 nglmL PFOS in MeOH HILL0027.D 501 nglmL PFOS in MeOH HILLW41.D 5 nglmL PFOS in MEOH HILLW42.D 250.5nglmL PFCSin MeOH HILLW55.D 5 n#mL PFOS in MeOH HILLW56.0 250 5 nghnL PFOS in MeOH HILL0069.D 5 n@L PFOS in MeOH HILL0070.D 250.5 nglmL PFOS in MeOH HILL0082.D 5 ngmL PFOS in MeOH HILLW83 D 250.5nglmL PFOS in MeOH HILL0086 D 0 npknc PFOS in MeOH HILL0087.D 2.5 nphnL PFOS in MeOH HILLW88.D 5 nghnL PFOS in MeOH HlLLW89.D 10cghnL PFOS in MeOH H1LLWSO.D 25 n#mL PFOS in MeOH HILL0091.D 40 nghnL PFOS in MeOH HILL0092.D 50.1 ngmL PFOS in MeOH HILLOO93.D 75.1 nphnL PFOS in MeOH HiLLW94 D 1 W 2 M L PFOS in MeOH HILLWO5.D 250.5 nghlL PFOS in MeOH H1LLWM.D 400.8nglmL PFOS in MeOH HILL0097.D 501 nglmL PFOS in MeOH
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
499 986728 499 1004472 499 1053980 499 969429 499 1025198 499 1022879 499 1010348 499 998418 499 1010291 499 1043378 498 975369 498 10401w 498 973042 498 965534 501 1293233 499 1084981 498 953043 498 928765 498 916687 497 906152 497 884570 497 895265 498 62083 498 913122 488 9 2 2 w 498 836408 498 925210 498 908053 498 925726 498 987131 498 893733 498 968040
-- Avenae: 977950
Std Dev: 77747.7 %RSD: 0.0%
254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254 254
OC IS range (+3I-2% average): 1271335 +30%. 684565 -30%:
PFOS PFDS PFOS PFOS PFOS PFOS PFDS PFDS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFDS PFOS PFOS PFOS PFOS PFDS PFOS PFOS PFDS PFOS
0.00 521 5.21 5.21 5.21 5.21 5.21 5.21 5.21 5.21 5.20 5.20 5.20 521 5.24 5.21 5.20 5.20 5.22
50.2000 5.20 5.20 5.20 5.21 5.20 5.20 5.21 5.21 5.21 5.20 5.20
0 81205 141737 225923 598942 MU44 1166397 1754434 2316691 5628366 8318503
lOJg0908 154385 5687791 160636 6108094 155058 5707416 273109 56620486
83400 153877 221204 589951 936043 I160241 1701449 2264695 5613136 8216BM) 10392100
0.0 2.9 5.1 8.9 23.8 38.2 47.9 73.7 97.1 239.1 394.6 469 7 61 263 0 53 250 4 63 275.3 11.9 280.3 0.0 34 62 96 261 41 3 52 1
78 a
1038 258 8 429 2 511 3
yDev 102 6% 89 1% 95 3% 95 6% 95 7% 98 1% 98 9% 95 5% 98 5% 93 8% 122 5% 105 0% 106 9% 1000% 125 9% 109 9% 238 4% 111 9%
123.6% 95.8% 104.5% 103.2% 104 0% 104.9% 103.6% 103.3% 107.1% 102 1%
Page 1 of3
EW-1311 PFOSAdslDes
BACK TO MAIN
73
Lu
(D m
Sample Batch H010313.b. analyzed on Hlllary 03-13.01. PFOSAdsorblDUorb SImpleS. Matrlx: SolVSlplSed.
Standard cuwe rangeused For calibration ofsampies: 6-501 n@mL(2.1 n@mLstd not Included due to the hlgf
Batch method H010315d.m
Inj Date
Batch
SampType File
Sample Name
Miss Info
3/13/01 1546 3/13/01 1557 3/13/01 16:M) 3/13/01 16:20 3/13/01 1631 3/13/01 16:43 3/13/01 1654 3/13/01 17:ffi 3/13/01 17:17 3/13/01 17:28
3/13/01 19.22 3/13/01 1933 3113101 19:45
3/i3mi 20.08 3/14/01 10:23 3/14/01 1034 3/14/01 io:45 3/14/01 10:57 3/14/01 ii:o8 ~ i 4 mi i : i g 3/14/01 1131 wi4mi ii:4z 3/14/01 11% 3/14/01 12:05
DWlernWillary.iW010313.b SAMPLE HILLW31.D D:WlemWillary.iW010313b SAMPLE HILLW32.D D:WemWillary.i\H010313.b SAMPLE HILL0033.D DMemWillary.iW010313.b SAMPLE HILLW34.D
DWemWillary.iV(O10313.b SAMPLE HILLW35.D D\chemWillary.iWO10313.b SAMPLE HiLLOO36 D D:WemWillaryRH010313.b SAMPLE HILLW37.D D:WemWillary.RH010313.b SAMPLE HILLW38.D D.WlemWillary.iW010313.b SAMPLE HILLW39.D D WlemWillary.iW010313.b SAMPLE HILL0040 D
SP*LPLEU"'M"C"fPUPLEU"'M"P"fPUPLEnum4za-
v-w-
D.WernWillary.iW010313.b SAMPLE HILLW50.D
D:WlmWillary.iWO10313.b SAMPLE HILLW51.D
DWernWillaN.lW01W13.b SAMPLE HlLLW52.D
--w+wlw
SAUaEu"'ML.1"
DWlemWillary ih010313 b SAMPLE H.LLW54 D
D WlemWlllary Mol0313 b SAMPLE HILLW59D
D Wemhillary !W010313 b SAMPLE HILLWBOD
D\chemW.llaryiW010313 b SAMPLE HILL0061 D
D\chemWillaryiW010313 b SAMPLE hlLL0062D
D \chernWillary1h010313 b SAMPLE HILL0063 D
D WemWl.lary RHO10313b SAMPLE H I L L W D
D~emWllary1W010313b SAMPLE HILL0065 D
0 \damWdlary iW010313 b SAMPLE HLL0066D
D WernWiI ary iW010313 b SAMPLE HILL0067 D
D\chernWillary1W010313b SAMPLE HILL0068 D
vsAAIeLsl=uumun vsAAwLaU"'M7"" vsAlAaLSU."M7C." vfP*LeLSY'1M7C"
sAAwLaMucw?.o
EW-13115062S2 E0013115063SZ E00.1311-5063MSS2 EW-1311-5064S2 E00-13115065S2 EN1311-506BS2 E00.13115066MSS2 EW-13115087SZ EW-13115068SZ EW-1311-5069S2
- EW1311-509142 EN1311JWZS2 EOC~13115093S2
EN1311-509442 EW-13115095S2 Em1311 - 5 0 9 M 2 E00-13115096YSS2 E00-1311509752 EWl311-509BSZ EW-1311-5099-SZ E0013115099YSS2 E001311 5 1W S 2 EW.1311-5101S2
- - - -E00-13115102S2
Soil2 Soilz Sol12 Soil2 soil2 Soil2 So112 Soil2 Soil2 Soil2 foro solla solla
foro soil3 Soil3 S.oi~ l3. &#a SO113 SOID Soil3 Soil3 SOB3 Soil3 Soil3 Soil3 Soil3 Soil3 soil3
rioiu
foro foiu &#a fciu
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFDS THPFOS SblPFof SblPFof XnBCas XnBCas XnBCas THPFOS THPFOS THPFOS UlPEof THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
xuEos
xn!aEas TWKs SblPFof XnBCas xn!aEas WeFnS XnBCas SblPFof
4.99 4.98 4.99 4.99 4.99 4.99 4 99 4.99 4.99 4.09 498 49s 488
eo0 488 4.98 4.99 4.90 499 4 99 4.99 4.98 4.90 4 98 4.98 4.99 4.99 4.98 499 4.98 e98 488 498 498 488 488 499 49s poz
-Amount
ISTD ucrfomance commentt
909345
254
895204
254
758109
254
865275
254
860270
254
048747
254
733500
254
826114
254
835017
254
833819
254
xu34
a54
a5823
a54
a34522
a54
ZM401
142
6wau
a54
824186
254
786360
254
815722
254
6eI.Ga
a54
814408
254
878131
254
874013
254
723198
254
652831
254
841962
254
822198
254
709765
254
827302
254
824224
254
830977
254
u6a.u
a54
8260.?4
a54
843dal3
834.736
a54
6lx3E4
a54
395312
a54
ZLDDU
142
ZE52%2
a54
67xuis
a54
Compound Name RT
PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS WclS PCQf PEOf
nwas
PEOf PFOS PFOS PFOS psoc PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS PFOS
PEOf pcoc PEOf P.$as pcoc WclS
psof
PEOf
5.22 5.20 5.21 5.20 5.20 5.21 5.21 5.21 5.21 5.20 510 510 510
w
510 5.20 5.21 5.21
w
5.21 5.22 5.21 5.21 5.20 5.20 5.21 520 5.20 5.20 5 20
.a$
510 511 ha0
510
510 518 519
519
Ana
1448358 1150879 4304297 2329091 2422898 3659129 6555441 7740434 7494802 6105464 a5aEaZB azu6.7a aa535Ea
zl?axuS 14219500
2640517 945552 670677 362Sa35 822587 7N5W 736105 4068910 2533547 2481828 2597099
-5483252
6079541 5936738 6228226
8966(p1
4-wYW6 4w44.76 15*90681
v
34a53u azE65s6 36a3aa3
Avenue: 802682.15 Std Lkv: 61470.3
XRSD: 7.m
Amount
666 53 4 252 7 1147 120 2 lea2 415 8 438 9 4178
-333 4
66aa
aous a4Su
4662.0
1376 49 9 33 8 235A 41 7 35 2 346 250 2 127 1 126 1 135 5 353 6 334 7 327 4
-342 0
6191 638.6 WLO zokl
lODe0 3u.u 3aZQ.a 4ca5.9
Comments
Page 2 of 3
EW-1311 PFOSAddDes
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Sample BatchHOIOS13.b, analyzedon HMIay 034591. PFOS AdroIWWSOrb samples. Matrix. S o l U S l ~ t d .
Standad cuwe range usedfor callbratlonofsamples: 6-601 nplmL(2.5 ng/mLrtd not Includeddueto the hlghersample COncentRUOn range).
Batch method H010313d.m
In1 Date
Batch
SmpTypyp. File
Sample Name
Mlrc Info CompoundName RT A n a
3/13/01 1233 3/13/01 1244 3/13/01 i5:iz
3/13/01 i s m
3/13/01 15.35 3/13/01 1802 3/13/01 18:14
3114~1110:w 3/14/0iio:11 3/14/01 1239 3114101 i2:51 3/14/01 15:07 3/i4mi i5:ig
3/14/01 17:46 3114101 1758
D khernWillaryiUi010313b D WernWillary1W010313b DkhernWillaryiUi010313b DWernWtllaryiUi010313b
D WlemWillary 1W010313b
DWernWlllary1W010313b
D WernWlllary iW010313 b
D khernWtllaiyiUi010313b DkhernWillary 1W010313b D WernWillary iW010313 b DWmWtllary Ni010313b D WernWlllary iW010313 b DWemWlllaryiWOl0313 b D WernWillary iW010313 b DWernWtllaryRH010313b
SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE
HILL0014.D HILLW15.D HILLW28.D HILL0029.D HILL0030.D HILL0043.D HlLLW44.D HILLW57.D HILLW58.D HILLW71.D HILLW72.D HILL0084.D HlLL0085.D HILLOOO8.D HILLW99.D
TN-A4802 MeOH TN44802 MeOH TN-A4802 MeOH TN-A 4802 MeOH TN-A4802 MeOH TN44802 MeOH TN44802 MeOH TN44802 MeOH TN44802 MeOH TN-A4802 MeOH TN-A4&02 MeOH TN-A4802 MeOH TN4 4802 MeOH TN-A 4802 MeOH TN44802 MeOH
THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS THPFOS
000
0
ow 0 ow 0
000
0
ow 0
OW 0
ow 0 ow 0 ow 0 ow 0 ow 0
000 0
ow 0 ow 0 ow 0
Amount Compound Name UT Area
0
PFOS
5.25 23051
0
PFOS
0.00 0
0
PFOS
5.25 18799
0
PFOS
0.w
0
0
PFOS
0.w
0
0
PFOS
5.25 0263
0
PFOS
0.00
0
0
PFOS
0.03
0
0
PFOS
0.00 0
0
PFOS
5.25 10516
0
PFOS
0.00
0
0
PFOS
5.25 23204
0
PFOS
5.25 1m1
0
PFOS
5.25 16777
0
PFOS
0.00
0
Amount
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
Page3013
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Appendix I: Traceability Information
This appendix includes traceability information on the test substances and standards used in this study.
3M Environmental Laboratory
Page 594 of 703
-or reference #
Substance/chemit:al name:
LotJbatch #:
TCR Substance #
Purified PFOS, Perfluorooctanesulfonate (Primary
Suntdk)nown
Received from:
TCR-00017-046 George Moore
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Expiration date:
08/31/2001
IInitials:
7 7 containers:
I / 20 mL Nalgene bottle g o o d white powder
IRetain
0.3480 g
Amount received (wt. or vol):
Date:
05/31/2000
Shipper:
unknown
MSDS Wn) Date of Retain
mYUN 05/31/2000
IPurity:
97.9% LAC 09/19/00
IRecords received:
NIA
Recrystallized by George Moore, Bldg 236
fabrication, or derivation
i
records:
Std Location/Storage:
FI9, Frozen
/Molecular Formula: ~
C8Fl7S03-K+
Standard has been moved to Freezer 19 in room 347 KJD 6/7/00 Empty container weight approximatelly 11.869. LCG 8/16/00 tandard weighed on 9\28/00was stored frozen at -2OC+/- 10C untilshippment on 10/3/00
LAC 10/3/00 Standard was stored at room temperature prior to 6/7/00 LAC 12/21/00
tcr99030-46msds.pdf
COA(PF0S Primary Std).pdf
3M Environmental Laboratory
Page 595 of 703
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Centre Analytical Laboratorks, Inc.
3048 Research Drive
State College, PA 16801
Phone: (814)231-8032 Fax: (814)231-1253or (814)231-1580
INTElUM CERTIFICATE OF ANALYSIS
Revision 1(9/7/00) Centre Analytical Laboratories COA Reference #: 023-021
3M Product: PFOS, Primary Standard Test ControlReference # TCR00017-46
Purity: 97.9%
Metals
I. `calcium' 2. Magnesium 3. Sodium 4. Potassium' 5. Nickel 6. Iron
- Residual SolGents (TGA)
Purity by DSC Inorganic Anions (IC)
1. 0.006 wt./wt.% 2. 0.002 wt./wt.%
3. 1.216 wt./wt.% 4. 6.685 wt./wt.% 5. <0.001 wt./wt.% 6. 0.002 wt./wt.%
None Detected 97.5 Mol. %.
2. Hydrogen 3. Nitrogen 4. Sulfur 5 Fluorine
COA023-02 1
3M Environmental Laboratory
2. TheoreticalValue =0%
3I Theoretical Value =0% 4. Theoretical Value = 5.95% 5. Theoretical Value = 60%
2. 0.456 wt./wt.%
3. 1.51 wt./wt.% 4. 7.80 wt./wt.% 5. 58.0 wt./wt.%
Page 1 of 3
___--. -
-~
Page 596 of 703
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-
3048 Research Drive
State College, PA 16801-
Phone: (814)231-8032 Fax: (814)231-1253or (814)231-1580
INTERIM CERTIFICATE OF ANALYSIS
Centre Analytical Laboratories COA Reference #: 023-021
. Date o f Last Analysis: 08/31/00
Expiration Date: 08/31/01
StorageConditions: Frozen 5-10C
Re-assessmentDate: 08131/01
`Purity= 100% - (sum of metal impurities, 1.226% +LC/MS impurities,
0.14%+Inorganic Fluoride, 0.60%+NMR Xmpurity, 0.13%).
Total impurity from all tests = 2.09%
Purity = 100% - 2.09% i= 97.9%
2Pota+ssiumis expected in this salt form and is thereforenot considered animpurity.
3Sulfilrin the sample appearsto be converted to SO4 and hence detectedusing the
inorganicanion methodconditions. The anion result agrees well with the s u l h
determinationin the elemental analysis,lending confidenceto this interpretation. Based
,P-
on the results, the SO4 is not consideredan impurity.
9FA HFElA NFPA PFPA
Trifluoroacetic acid Heptafluorobutyric acid Nonofluoropentanoicacid Pentafluoropropanoicacid
STheoreticalvalue calculationsbased on the empiricalformula, C&7SO3X+ ( M W 4 3 8).
Tbis *workwas conductedunder EPA Good LaboratoryPractice Standards(40 CFR 160).
COA023-021
3M Environmenfal Laboratory
Page 2 of3
- - . - ___ -
Page 597 of 703
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Ctsntrti Analytical Laboratorigs, Inc.
3048 Research Drive
State College, PA 16801
f- MP&&pm%JB~ ~ - ~ ~ ~ (81~4) 23$1-15f80 j ~ O r
i
CentreAnalyticalLaboratoriesCOA Reference# 023-021
LCMS Purity Profile:
Total
Note: The C7 value was calculatedusing the averageresponse factors from the C6 and C8
standard curves.
Prep:wed By:
9/ohm
Date
Date Laboratory Manager, Centre Analytical Laboratories .
COAO23-021 3M Environmental Laboratory
Page 3 of 3
Page 598 of 703
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I withdrawal
19.90999
I (massor vol)
10.5069 g
Gross wt/vol aRer
I withdrawal
19.4030 g
Purpose (enter standard number)
I(Adsorb/Desorb Study
Balance I D Initials
Date
I1914
IILCG I~10/17/2000 1I
3M Environmetiltal Laboratory
Page 599 of 703
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lLot/batch #:
\Initials: containers:
-1[Retain
"Don Uglem" 00-2404 12/31/2015 LCG
dried and sieved
Received from:
Agvise
Amount received (wt. or 900 grams, Bulk vol):
Date:
10/23/2000
Shipper:
Fed Express
MSDS (v/n) Date of Retain
3YWN
Ifabrication, or derivation I
I
I I Irecords:
I Std Location/Storage:
Container stored ambient in TCR-CO2. LCG 12/26/00
. ..-. Molecular Formula:
I-f.,.nrn, mon,.t,c
II T.C-R.- -st-i.c-.ker a-d-d--ed- t-o- bottle after original weight LCG 10/25/00
I
I"1
I I1 Don Uglem loam-0-6.pdf
3M Environmental Laboratory
Page 600 of 703
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Highway I5 P.O. Box 510 Northwood ND 58267
(701) 587-6010
FAX 000 587-6013
email: agvise@pIarcomm.com Homepage agvklabscom
AGVISE S o i l Characterization Report
Submi.tting firm
= 3M
Protocol or Study No = NA
Sample ID.
= DON UGLEM-LOAM 0-6
Trial. ID.
= NA
Date Received
= 10-23-00
Date Reported
= 10-31-2000
AGVISE L a b NO
00- 2404
Percent Sand
39
Percent Silt
50
Percent Clay
11
USDA Textural Class (hydrometer method) Loam
Cation Exchange Capacity (meq/100 g) 23.9
Percent Organic Carbon
Percent Organic Matter
pH in 0.01 M CaC12
Total. Nitrogen
(%)
4.9 8.4 7.4 0.358
Base Saturation Data
Cation
Calcium Magnesium Sodium Pot as sium
Hydrogen
eercent
52.2 20.9
0.7 3 -5
22.7
QQm
2500 600 38 324
54
These! tests were completed in compliance of 40 CFR Part 160.
io-31- 00
Date
3M Environmeni!alLaboratory
Agricultural Testing
Page 601 of 703
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A m K L A B O R A T O ER I E S
1
Highway 15 P.O. BOX 510 Northwood ND 58267
(701) 587-6010 FAX (701) 587-6013
email: agvise(Ppolarcommcom Homepage agviselabs.com
The following personnel have been duly trained to perform Plant Analysis, Soil and Water
Characterizationmethods under 40 CFR Part 160 Good Lahratory Practice Standards.
Technical Support Staff
Aaderson, LindaM. - TechnicianIII
- Deutsch, Robert L. President
Hart,Linda M. - TechnicianIII
- Hime, SherryL. TechnicianI
Johnson,Julie M. - Nutrient LaboratoryManager
- McNeil, Vigo (Art) TechnicianI
Moen, Lucinda S.- TechnicianIII
- Polled, Garis Nutrient LaboratoryAnalyst - Pollock, John TechnicianI - Wall,Mary J. TechnicianII
Wyant, Linda L. - TechnicianI
Office Support Staff
- Berg, Eileen A. SecretaryIII - Ducioame, Gail M. Quality Control Specialist
Fuglestad, Teresa S.- SecretaryII
- Hagen, Shelly J. Administrative Assistant
Qualitv Assurance
Thingelstad, Mary L. - Quality Assurance Manager
COPY OF ORGINAL
oratories, Inc.
lniti
DateJ9-2J'--
05/00
3M Environmental Laboratory
Agricultural Testing
Page 602 of 703
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- Bulk De& Disturbedbulk density is determined by weighing a known volume of dried and
ground S ; O (~NUT.02.10). Core or nondisturbed bulk density is determined by weighing a known
t
volume of an intact,dried soil core (NUT.02.02).
Water Holdine CaDacitv and Water Relations
M o i s t u n a - Determined by gravimetricloss upon drying (NUT.02.36).
Saturatql'zkvdrauicConductivity- Determind byusingthe ccmtant head method and measuring
the rate of flow of water through a saturated soil column (NUT.02.34).
- Water InfiltrationRate Determined by using the constant head method and measuring the length
of time fiom water applicationto production of a leachate from a soil column (NUT.02.35)- ..,
Water Holdine Capacity- Determined by measuringthe moisture remaining when saturatedsoilis
placed under 1/3 or 0.10 bar pressure ("l'.02.08).
Water Holdine Cauacity - Determined by measuring the moisture remaining when saturated soil is
I
placed under 15 bar pressure (NUT.02.13).
All of the above methods are detailed in the current analyticalSOPSused by AGVISE Laboratories' Characterizationtesting laboratory.
NUT.05.01. Low Term Storaee of Soil and Water Characterization Specimens: According to this SOP, soil characterizationsamples will be retained by AGVISE Laboratoriesfor at least twoyears before dqosal and water characterization samples will be retained for a period of 60 days before disposal.
ADM.05.01. Archivist Duties and Archivine Procedures: This SOP states that copies of soil and water characterizationreports, original COC's and original raw data will be archivedwithin 60 days after the signatureby the analytical investigator. Hard copies generated by computer will
be archived weekly, and supplemental data will be archived annually.
OAU.08.01. Oualitv Assurance InsDections of Facilities. Studies. and Processes for GLP ComDliance: Method inspectionswill be performed on a regular basis at AGVISE Laboratories,
Inc. Far soil characterization, two methodswill be inspected per month and one water charactlsrization inspection will be conducted per month. An annual facility audit will be
perfomled by AGVISE Laboratories, Inc. Quality Assurance Unit.
All of the above methods are detailed in the current analytical SOP'S used in AGVISE Laboratones' characterization laboratorv.
. APPROVEDBY
ANALYTICAL INVESTIGATOR
-Robert L. Deutsch, Soil Scientist
ate
3M Environmenl'al Laboratory
Page 603 of 703
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Collection Information
- 'i
SiteIdentification 7)-
hl*, % & ! I
Sample ID AGVl SE kb+t d o 0 ~ 1 0 4
GeographicalReference h . h j J L/7 * l/f/'
Lonq~&.:-ql . 48I
Date ofSampling /0-19-00
PA, Use Elattern (e.g. agricultural,forest, etc.) N o m
I
.
1-
- Depth of Sampling 0 L, "
Collectedby &-k
P&k
........................................................
.K. e& SiteIdentification
fin-
,!.oa/m,
Sample ID A h Y / l s F Lah # (JOY ac105
GeographicalReference h & t d ~~ ./ 7 * J a ' Lon*;l2p/r,." 4 97 "r/b'
- - Date of Sampling 10 19 00
Use Pattern (e.g. agricdtud, forest, etc.)
A , DepthofSampling
Collectedby
O-L "
Pn&k
........................................................
,80- .A SiteIdentification
12uu/l> Adc/n,
Sample ID OO-A'+ob 46visE Labe
GeographicalReference Lnt;;tud, : 4 7 45' Lona&d,, ~
97037'
Date of Sampling 10 - I9 - 00
Use 'attern(e.g. a g r i m forest, etc.) ,MA
- Depthof Sampling
6 I1
m Collectedby A r t C N Q d .
0
h8attm-A
........................................................
K SiteI d e ~ ~ t i o nd h c n - , to. f -
SampleID A 6 V i s F h b e 60aaI/07
GeographicalReference LL&.!L& $f * h a ' I_oh&:-96
'VI'
Date of Sampling i o - a i - 00
. . use I'attern (e.g. agricultural,forest, etc.)
Depth of Sampling
- I(
L\wuu.&wd,
$yb
3M Environmental Laboratory
Page 604 of 703
BACK TO MAIN
GLP Ll Non-GLP
Characterization Chain of Custody
SEND RESULTSTO 7&
jl///
BILL TO:
Phone:
AGVISE Use Only
Date received
7 0 A 06'
n
v
Comments
Purchase Order #
Protocol/study # Test Substance stuuy Director Sponsor
Initiation Date
Specimen I.D.
~GVISE
Laboratories, Inc.
P.O. Box 5WHighway15 Northwood, ND58267
- Telephone (701) 587-6010 FAX (701)587-6013
Series 1. Soil Chara&rization 500 g sample minimum pH, %Mganicmatter,cationexchangecapacity.water hddillg ca& (1Band 15 bat),%sand-siltday,texture, bulk
- density,X totalnitrogen,phosphorus, andsdublesans.
Series 2 Soil Charadertetion 500 g sampie minimum pH, X organicmatter, c a h exchange capedty,m e r holding
- capacity (1Bbar), %sand-sillday, texture, and bulkdensity.
Series3.Water Characteritetion 500mi sample minimum pH. W m , magnesium,endim,hardnas,cardudivity.
- d i m ebsorptifflmtio, tdaldissolved solids,and Wdty.
Series4. Water Characterimton 500 misampleminimum pH, caldum, magnesium,sodium,hardness,d u m absop tion ratio, and conducthrity.
SWy Directof$Management
Natured Study
TeslSNem:SoilI Water
.-
cirdeC.h.3
RequestedT e s t ( ~ )
I
I
A c m of this COC will be mailed fo mi when soedmensare receivedbv Lab.
I
,,m
BACK TO MAIN
I
USE LOG
Gross wt/vol
Purpose (enter standard number)
Balance I D Initials
Date
I withdrawal
1954.79
I I after
(mass or vol) withdrawal
160.1 g
1894.6 g
I~E00-1311SuitableAn Study
I1904
IILCG I110/25/2000 II
3M EnvironmentalLaboratory
Page 606 of 703
BACK TO MAIN
Before 834.69
Amnt. withdrawn (mass or vol)
610.2g
Gross Wvol after
withdrawal
rr4.4g
Purpose (enter standard number) E00-1311 Sorption Study
Balance ID Initials
Date
904
LCG
11/13/2000
3M Environmental Laboratory
Page 607 of 703
BACK TO MAIN
Test Control and Reference Substance Log
7 or reference # soil name:
ILot/batch #:
Kittson Co.
NA
12/31/2015
00-2407
Inihals: containers IRetain
LCG 1L Nalgene
dried and sieved
'TCR Substance #
T
P
<<J mb5-017
Lmc >I.;L-~/o(
Received from:
Agvise
Amount received (wt. or Bulk
vol):
Date:
10/25/2000
Shipper:
FedEx
MSDS Wn)
-
aYWN
Date of Retain
I kocation of svnthesis.
fabrication, or derivation records:
Std Location/Storage:
1 NA
Container stored ambient in TCR-COZ. LCG 12/26/00
L
1 kittson co clay-0-6.pdf
3M Environmental Laboratory
Page 608 of 703
BACK TO MAIN
L AEoRATO R IEs
i i
.AGVISE Soil Characterization Report
Highway 15 P.0. Box 510 Northwood ND 58267
(701) 587-6010
FAX (701)587M113
ernail: agvise@polarcornmmm Homepage agviselakcom
Submitting firm
= 3M
Protocol or Study No = NA
Sample ID.
= KITTSON CO CLAY 0-6
Trial ID.
= NA
Date Received
= 10-23-00
Date Reported
= 11-02-2000
AGVISE Lab No
00- 2407
Percent Sand
16
Percent Silt
22
Percent Clay
62
USDA Textural Class (hydrometer method) Clay
Cation Exchange Capacity (meq/lOO g) 54.5
Percent Organic Carbon Percent Organic Matter pH in 0.01 M CaC12 Total Nitrogen (%)
2.6 4 -5 7.2 0.223
Base Saturation Data
Percent
opm
Calcium Magnesium Sodium
Potassium Hydrogen
54.2 34.6
0.9 3.6 6.8
5900 2260
110 771
37
Thesg! tests were cpnpleted in com-pliance of 40 CFR Part 160.
//-J
Robert Deutsch
Date
Soil Scientist/Analytical Investigator
- 00
Agricultural Testing 3M Environmenita/ Laboratory
Page 609 of 703
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LAEORATORIIZS
Highway 15 P.O. Box 510 Northwood. ND 50267
(700587410 FAX (701)5874l13
emall: agvise@polarcommcom Homepage agviselabscom
The following personnel have been duly trained to perform Plant Analysis, Soil and Water Characterizationmethods under40 CFR Part 160 Good LaboratoryPractice Standards.
TechnicalSupwrt Staff
- Anderson, Linda M. TechnicianIII - Deutsch, Robert L. President
Hart,Linda M. - Technician111
- Hime, SherryL. TechnicianI - Johnson,Julie M. Nutrient LaboratoryManager
- McNeil, Vigo (Art) TechnicianI
Moen, Lucinda S.- TechnicianIII
- Pollert, Garis Nutrient LaboratoryAnalyst - Pollock, John TechnicianI - Wall,Mary J. TechnicianII
Wyant, Linda L. - TechnicianI
- Berg, Eileen A. - SecretaryIII
Ducioame, Gail M. - Quality Control Specialist Fuglestad, Teresa S. - Secretary 11
Hagen, ShellyJ. AdministrativeAssistant
Oualitv Assurance
Thingelstad, Mary L. - QualityAssurance Manager
COPY OF ORtGlNAL
oratories, Inc. DateA9.U-
05/00
3M EnvironmeniLal Laboratory
Agricultural Testing
Page 610 of 703
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- Bulk Density Disturbedbulk density is determinedby weighing a knownvolume of dried and
ground soil (NUT.02.10). Core or non-disturbed bulk density is determined by weighing a known
1
volume of an intact, dried soil core (NUT.02.02).
Water `AoldineCaDacitv and Water Relations
Moisture % - Determinedby gravimetricloss upon drying (NUT.02.36). Saturated Hvdraulic Conductivitv - Determined by using the constant head method and measuring
the rate of flow of water through a saturated soil column (NUT.02.34).
- Water InfiltrationRate Determined by using the constanthead methodand measuring the length
of time from water applicationto prcduction of a leachatefiom a soil column (NUT.02.35). . .,
- Water Holdhe CaDacity Determinedby measuringthe moisture remainingwh& saturated soil is
placed under 1/3 or 0.10 bar pressure (NUT.02.08).
Water Holdinn Capacity - Determined by measuring the moisture remaining when saturated soil is
placed under 15 bar pressure (NUT.02.13).
All of the above methods are detailed in the current analytical SOPSused by AGVISE
Laboratories' Characterizationtesting laboratory.
NUT.05.01. Lone Term Storage of Soil and Water Characterization Soecimens: According
to this SOP, soil characterizationsamples will be retained by AGVISE Laboratoriesfor at least two years before disposal and water characterization samples will be retained for a period of 60 days before disposal.
ADM.05.01. Archivist Duties and Archivine Procedures: This SOP statesthat copies of soil and water characterizationreports, original COC's and original raw data will be archived withi 60 days.after the signature by the analytical investigator. Hard copies generated by computer will be archivedweekly, and supplemental data will be archived annually.
OAU.08.01. Oualitv Assurance Insuectionsof Facilities. Studies. and Processes for GLP
Compliance: Method inspections will be performed on a regular basis at AGVISE Laboratories,
Inc. Fcir soilcharacterization,two methods will be inspectedper month and one water
characterizationinspection willbe conductedper month. An annual facilityauditwill be perfomied by AGVISE Laboratories,Inc. Quality Assurance Unit.
All of the above methods are detailed in the current analytical SOP'Sused in AGVISE Laboratories' characterization laboratory.
A
APPROVED BY ANALYTICAL INVESTIGATOR
Robert L. Deutsch, Soil Scientist
3M Environmental Laboratory
Page 611 of 703
BACK TO MAIN
Colllection Information
: ?
I
a c k Site Ideacation
Uah
- S q l e I D A G V l S F L he dfio 2404
. GeographicalReferencelati&& J 4 7 ' p / '
Lona&,-'? . 7'1/8'
I
Date of
use att
Sampling l D - 1 9 - 0 0 tern (e.g. agricuItural, forest,
etc.)
Nn;twc
PA-. .
.
Depth of sampling 0- 0 "
COUelCtedby &A&
PdQOAk
........................................................
SiteIdentifimtion K. R A W
SampleID A ~ V I S E Loh Jt
&. Loa-,,
0fiLlaq05
- GeographicalReferenceJ&&L&
y7'qa'
Date QfSampbg 10- 19 - 60
use Pattern (e.g. agricdturaI, forest, etc.) &&I,
Depth of sampling 0 (b II
Lorla;&&,-
Collectedby .&AiA P O W
"d 97 "40'
JAI
site Icientiiication -An-
R/MJ
PA
SampleID O O - a u o b A ~ Y EK Lub*
GeographicalRefaenceLn;t;;tudr.:4 7 '4 5' Lona&&. z -
Date of Sampling 10 - 19 - 00
0
use Pattern (e.g. agricultural,forest, etc.) .MA I RiLuG &&ow3
Depth of sampling
0- 6 I'
Collectedby A r t M c I\JJJ.
97" 37'
...........................................................
site bientification K[ f t i j b - . t o . PJL -
Sample ID A b V i 5 F L h 600 2407
GeographicalRekence L
U :4g' 6 9 ' Lor\&..
- 9 b = VI'
Date ofSampling I O -2/- 00
Use Pattern (e.g. agricuIturaI,forest, etc.)
- Depth of Sampling
O 6"
u Collectedby
Il-1, * .
3M Environmental Laboratory
Page 612 of 703
BACK TO MAIN
r$ GLP c3 Non-GLP Characterization Chain of Custody
SEND RESULTS TO:
3/r
BILL T O
Phone:
AGVISE Use Only
Date received
2 0 'ad
U
Comments
Purchase Order #
Protocd/ Study # Test Substance Study Director Sponsor initiation Date
AGWSE Lab #
_ _ _ _ _ _ _ ~ _~_____
Specimen I.D.
Laboratories, Inc.
P.O. BoxSlWighway15 Northwood,ND5826?'
- Telephone(701) 567-6010 FAX (701) 5876013
Series 1. Sail Charactaimtion 500 g sample minimum
W, X Mganic maner,cationsxchangecapady, water noiciing capacily (lnand 15 bar), 56 Mnd-siltclay. texture. bulk densw, %total nibogen. phosphorus, and solublesalts.
. - serles2Soilcharactwrzatr'on 500 g sampleminimum pH,96 o m matter, cation exchange capadty.water hdd4t-g Capacity(Inbar), X sand-siltclayt,exture, and bulkdensity.
- Series3.Water Characterization 500 misample minimum pH. caldum. magnesium. sodium. hardness,conduclivity, - sodium absorption ratio, totaldissolved sdi, and lufbidw. Series 4. Water Charecterlzation 500 ml sampk minimum
PH.cakjum, maqnesium, sodium,hardness,d u m & s o p tion ratio, and conductivity.
Study Dirstoi's Management Natureof Sudy
TestSysfemSolIsdllWater
ci&lCkw,
RequestedT M s )
I
I
METHOD OF SHIPMENT Shipment I.D. #(s)
Fed Express
I
I
A corw ofthisCOC will be maledto VOLI when soecimensare receivedbv Lab.
Wrdn
BACK TO MAIN
I
USE LOG
Before 1243.7 g
Amnt. withdrawn (mass or vol)
160.1 g
Gross Wvol after
withdrawal
1183.6 g
Purpose (enter standard number) E00-1311 Sorption
BalanceI D Initials
Date
904
LCG
11/13/2000
Page 614 of 703
BACK TO MAIN
I---
t
USE LOG
Before
696.0 g
Amnt. withdrawn
(mass or vol)
255.769
Gross wt/vol after
withdrawal
440.24g
Purpose (enter standard number)
E00-1311 Sorption Study
Balance I D Initials
Date
904/916
LCG
11/28/2000
3M Envimnmental Laboratory
Page 615 of 703
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Before 390.82 g
withdrawn 122.44 g
after 368.38 g
Purpose (enter standard number)
Balance ID Initials
Date
E00-1311PFOS AdsorbIDesorb
9041916
CMC
01/22/2001
3M Environmental Laboratory
Page 616 of 703
BACK TO MAIN
I
USE LOG
I withdrawal
1368.37 g
Gross wt/vol
1 1 after
(mass or vol) withdrawal
175.27 g
1293.1 g
Purpose (enter standard number)
1IE00-1311PFOS AdslDes
Balance ID
I1904/914
Initials
IICMC
Date
I~01/25/2001 1I
3M Environment,alLaboratory
Page 617 of 703
BACK TO MAIN
7
USE LOG
t CR-00065-077
Before 293.01 g
Amnt. withdrawn
(mass or vol)
197.54 g
Gross wt/vol aRer
withdrawal
195.47 g
Purpose (enter standard number) E00-1311 PFOS Ads/Des
~~~
Balance I D Initials
Date
9041916
CMC
01/29/2001
3M Environmental Laboratory
Page 618 of 703
BACK TO MAIN
I------
USE LOG
Before 1363.9 g
withdrawn
after
16Q.2 g
1303.7 g
Purpose (enter standard number)
Balance ID Initials
Date
E00-1311 Suitable Analytical
904
LCG
10/25/2000
3M Environmental Laboratory
Page 619 of 703
BACK TO MAIN
Test Control and Reference Substance Log
ILot/batch #:
K. Broeren 00-2405
'F (Initials:
NA 12/31/2015
LCG
[Retain
Dried and Sieved
"TR Substance #
T
C
P
%
l&-J C.C,C?I.
5 -,>("c\
cvqc Sl-lC\ I o\
1
I
Received from:
Agvise
Amount received(wt. or Bulk vol):
Date: Shipper:
MSDS Wn)
10/23/2000 Fed Ex
-
dY@N
Date of Retain
Ipunty: IRecords received:
fabricabon, or derivabon records: Std Locahon/Stor<ige: Molecular Formula: Comments
NA Agvise Soil Characterization Report 00-2405 NA
Container stored ambient in TCR-COZ. LCG 12/26/00
TCR sticker added after original weight taken. LCG 10/25/00
K Broeren clay loam-0-6.pdf
3M Environmental Laboratory
Page 620 of 703
BACK TO MAIN
L A B o R A T O-R I E s
1.
Highway 15 P.O.Box 510 Northwood ND a 6 7
(701) 587-6010 FAX (701) 587-6013
email: agvse@pIarcomm.com Homepage: agviselabs.com
AGVISE Soil Characterization Report
Submi.tting firm
= 3M
Protocol or Study No = NA
Sample ID.
= K BROEREN-CLAY LOAM 0-6
Trial. ID.
= NA
Date Received
E 10-23-00
Date Reported
= 10-31-2000
AGVIGE L a b NO
00- 2405
Percent Sand
21
Percent: Silt
46
Percent Clay
33
USDA Textural Class (hydrometer method) Clay Loam
Cation Exchange Capacity (meq/lOO g) 24.7
Percent Organic Carbon
Percent Organic Matter
pH in 0.01 M CaC12
Total Nitrogen ( % I
2.6 4.4 6.0 0.216
Base Saturation Data
Cation
Calcium Magnesium Sodium Potassium Hydrogen
Percent
52.7 24.3
0.7 5.8
16.5
=.
2600 720 39 557
41
These tests were completed in compliance of 40 CFR Part 160.
A a lytical Givestigator
- / D 3/-00
Date
3M Environmental Laboratory
Agricultural Testing
Page 621 of 703
BACK TO MAIN
Highway 15 P.O. Box 510 Northwood, ND 58267
(701) 587-6010 FAX (701)587-6013
t
email: agvise@plarcommcom
Homepage agviselabscom
The following personnel have been duiy trained to perform Plant Analysis, Soil and Water Characterizationmethodsunder 40 CFRPart 160 GoodLaboratoryPractice Standards.
Technical Support StafF
Anderson, Linda M. - TechnicianIII
- Deutsch, Robert L. President
Hart,Linda M.- Techni~ian111
- Hime, SherryL. TechuicianI - Johnson, Julie M. Nutrient LaboratoryManager
McNeil, Vigo (Art) - TechnicianI
- Moen, Lucinda S. TechnicianIII
Pollert, Garis - Nutrient LaboratoryAnalyst
- Pollock, John Te~hnicianI
Wall,Mary J. - Technician11
- Wyant, Lmda L. TechnicianI
office suuuort Staff Berg, Eileen A. - SecretaryIII Ducioame, Gail M. - Quality Control Specialist
- Fuglestad, Teresa S. SecretaryI1 - Hagen, Shelly J. AdministrativeAssistant
OUalitvAssurance
Thingelstad, Mary L. - Quality Assurance Manager
COPY OF ORGINAL oratories, Inc.
lniti
DateA942'y~
05/00
3M Environmental Laboratory
Agricultural Testing
Page 622 of 703
BACK TO MAIN
Bulk De& - Disturbed bulk dens-ityis determined by weighing a known volume of dried and
ground soil (NUT.02.10). Core or non-disturbed bulk density is determined by weighing a known
i
volume of an intact,dried soil core (NW.02.02).
Water Holdinv CaDacitv and Water Relations
- Moisture % Determined by gravimetric loss upon dryins (NUT.02.36).
Saturated Hvdraulic Conductivity - Determined by usmg the constant head method and measuring
the rate of flow ofwater through a saturated soil colunm ("T.02.34).
Water Infiltration Rate - Determined by using the constant head method and measuring the la&
of time h m water application to production of a leachate from a soil column (NUT.02.35). - ,. .;
Water Holdinp CaDacity- Determined by measuringthe moisture remaining when saturated soil is
placed under 1/3 or 0.10bar pressure (NUT.02.08).
Water Holdinn Caoacity- Determined by measuringthe moisture remainingwhen saturated soil is
placed under 15 bar pressure (NUT.02.13).
i
All of the above methods are detailed inthe current analytical SOPSused by AGVISE Laboratories' Characterization testing laboratory.
NUT.05.01. Long Term Storage of Soil and Water Characterization Snecimens: A c c o r k g
to this SOP, soil characterization samples willbe retained by AGVISE Laboratories for at least
two years before disposal and water characterization samples will be retained for a period of 60 days before disposal.
ADM.05.01. Archivist Duties and Archivine Procedures: This SOP states that copies of soil
and water characterkition reports, original COC's and original raw data will be archived within 60 days after the signature by the analytical investigator. Hard copies generated by computer will be archived weekly, and supplemental data will be archived annually.
OAU.08.01. Oualitv Assurance Insoeetions of Facilities. Studies. and Processes for GLP
Cornuli-
Method inspectionswill be performed on a regular basis at AGVISE Laboratories,
Inc. For soil characterization, twomethodswill be inspected per month and one water
charactcxization inspectionwill be conductedper month. An annual facility audit will be
perfonnied by AGVISE Laboratories, hc. Quality Assurance unit.
All of the above methods are detailed in the current analytical SOP'S used in AGVISE
Laboratories' characterization laboratory. /I
APPROVED BY
ANAL'YTICAL INVESTIGATOR:
Robert L. Deutsch, Soil Scientist
ate
3M Environmental Laboratory
Page 623 of 703
BACK TO MAIN
Collection Information
- 1 Site[dentitication
UR&
La/rvL
Sample ID A 6 V l S Lab# dno a404 GeographicalReference L&J.. J q7 e ,
Lon a (f-8 .
. . Date of Sampling l o -1 9 -00
Use Pattern (e.g. agricultural, forest,
etc.)
No;tluc,
P
u
- Depth of Sampling 0 b I'
c0llt:ctedby A& PdAAk
........................................................
K. Siteldentification
fin-.
& Loam,,
Sample ID A b V I S F L a b 9 ooy aq05
. GeographicalReference -L.&hbk 4 7 ' q a ' Lona&&,
' Date of Sampling 10-14 - 00
<'97'(/()'
- usePattern(e.g. agricultural forest, etc.) &&c&J!u
Depth of Sampling O 6 "
Collectedby
~dQk
AA,
........................................................
- *- Site ldentiiication d o -
RUNAJ h h w ,PA,
SampleID 00- a4o b cI6Y1sE Lab*
GeographicalReference Ln;t;;tudc~ :4 7 ' 4 5 ' L O t W
,z- 9737'
Date of Sampling 10 I 9 - 00 use ]'attern (e.g. agricultural,forest, etc.) ,MA I b ! i i ~ U ~
Depth of Sampling
0- ,& "
Collectedby A r t . Mc A/Jl#.
.........................................................
K Site Jdentification t k b n - . to. f &M -
u Sample ID A 6 V l s E
@ 600 a407
GeographicalReference L d h d t a :$8' b 9 '
Date of Sampling m a l - oo
LDr\ak&&~
-9 b * 89'
Use Pattern (e.g. agricultural, forest, etc.)
Depthof Sampling
O-Gn
3
IJ-a-00 3M Environmental Laboratory
Page 624 of 703
BACK TO MAIN
76 GLP I3 Non-GLP
Characterization Chain of Custody
SEND RESULTSTO:
BILL TO:
Phone:
AGVISE Use Only
Date received /&2 0 * od
" ' Comments
Purchase Order #
Protocollstudy # Test Substance Study Director Sponsor initiation Date
~GVISE
Laboratories; Inc.
- ' P.O.BoxSl(YHighway15 Northwood,ND58267 Telephone (701)5874010 FAX pol)587-6013
Series1. SoilCharacterization 500 gsample minimum pH, %organicmatter,cationexchange capacity,water holding
Capacity (Inand 15 bar),%sand-siltday,texture, bulk
- den*ty, %tdal nitrogen,phosphorus,andsolublesalts.
Series 2 Soil Characterization 500 g sample minimum PH.% ~ganicmatler, cationexchangecapadty, waterholding
- capadty(1Bbar).%sand-sillcby, texhrre,andbulkdenslty.
series 3. Water Chaacteriratlon 5M)mlsample minlmum pH, caldum, magnesium. sodium, hardness,mdudiviiy,
- sodiumSbSorptiMl ratio, totaldissdved solids. and IUhidily.
S e t i e s 4 . W a t e' r io~n 500 ml sample minimum pH. calcium, magnesium, sodium. hardness, sodium absolp tion ratio, and mnductlvity.
Sludy Diredds Management Natured Study
Test System: SoilI Water Wohe
I
I
I
I
BACK TO MAIN
Before
withdrawn
after
1188.0 g
17!3.2 g
1108.8 g
Purpose (enter standard number or reason for removal)
00-1311 PFOS AdsorblDesorb
Balance Balance
ID
ID
1
2
Initials
Date
9041914
CMC 01/20/2001
3M Environmental Laboratory
Page 626 of 703
BACK TO MAIN
I------
USE LOG
I
Before 1055.79
Amnt. withdrawn (mass or vol) Balance ID 2
16t0.2~
Gross W v o l after
withdrawal Balance ID 1
995.59
Purpose (enter standard number or reason for removal)
E00-1311 Sorption
Balance Balance
ID
ID
1
2
Initials
Date
904
LCG 1I/I3/2000
3M Environmental Laboratory
Page 627 of 703
BACK TO MAIN
lay Loam
USE LOG
Before 1108.8 g
Arnnt. withdrawn (mass or vol) Balance ID 2
1917.3 g
Gross Wvvol after
withdrawal Balance ID 1
1011.5 g
Purpose (enter standard number or reason for removal)
E001311 PFOS AdslDesorb
Balance Balance
ID
ID
1
2
Initials
Date
904/916
CMC 01/30/2001
3M Environmental Laboratory
Page 628 of 703
BACK TO MAIN
1175.7g
Amnt. withdrawn
(mass or vol)
60.0 g
Gross wt/vOl after
withdrawal
1715.7 g
Purpose (enter standard number) E~~~~iy
Balance ID Initials - 904S t ~ LCG
Date 10/25/2000
3M Environmental Laboratory
Page 629 of 703
BACK TO MAIN
I
USE LOG
CR-00065-064
Before 1055.7g
withdrawn
after
995.59
Purpose (enter standard number)
Balance I D Initials
Date
E00-1311 Sorption
904
LCG
11/13/2000
3M EnvironmentiJ Laboratory
Page 630 of 703
BACK TO MAIN
or reference #
r
a
ILot/batch #:
t "K. Broeren"
`k IInibals:
NA 12/3112015
LCG
00-2405
containers:
ICondlhon:.
IRetain
Dried and Sieved
TCR Substance #
Received from:
Amount received (wt. vol): Date: Shipper:
MSDS Wn) Date of Retain
. -RCT
r i7A o \- c h ( o C
- elmC s/+1 0\
Agvise
or bulk
10/23/2000 FedEx
- c ) Y - N
IRecords received:
Agvise Soil Characterization Report 00-2405
NA
I I fabrication, or derjvation
Irecords: Std Locabon/Storage:
Container stored ambient in TCR-COZ. LCG 12/26/00
Molecular Formula:
Comments
I K Broeren clay loam-0-6.pdf
3M Environmental Laboratory
Page 631 of 703
BACK TO MAIN
lay Loam
USE LOG
Before 1188.0 g
Amnt. withdrawn mass or vol) 17!).2 g
Gross Wvol afer
withdrawal
1108.8 g
Purpose (enter standard number) E00-1311PFOS Adsorb/Desorb
Balance ID Initials
Date
9041914
CMC
0112012001
3M Environmental Laboratory
Page 632 of 703
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7
USE LOG
Before 1108.8 g
withdrawn
after
197.3 g
1011.5 g
Purpose (enter standard number)
Balance ID Inibals
Date
00-1311 PFOS AdslDesorb
9041916
CMC
01/30/2001
3M Environmental Laboratory
Page 633 of 703
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Test Control and Reference Substance Log
ILoVbatch #:
IInibals: containers
(Condltlon:
IRetain
12/31/2015 LCG
Dried and Sieved
Received from:
Agvise
Amount received (wt. or Bulk vol):
Date:
10123/2000
Shipper:
FedEx
MSDS Wn)
--
c)Y-N
Date of Retain
1Purit-y:
Records received:
fabrication, or derivation
Std Location/Storage: Molecular Formulii: Comments Attachment(s)
NA Agvise Soil Characterization Report 00-2406 NA
Container stored ambient in TCR-CO2. LCG 12/26/00
TCR sticker added after original weight was taken. LCG 10/25/00
3M Environmental Laboratory
Page 634 of 703
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LABORATORIES
Highway 15 P.O.Box 510 Northwood, ND 58267
(701) 587-6010 FAX (701)587-6013
email: agvise@polarcommcom Homepage agviseIabs.com
AGVISE Soil Characterization Report
Submitting firm
= 3M
Protocol or Study No = NA
Samp1,eID.
= GOOSE RIVER-SEDIMENT 0-6
Trial ID.
= NA
Date Received
= 10-23-00
Date Reported
= 10-31-2000
AGVISE Lab No.
00- 2406
Percent Sand
39
Percent Silt
42
Percent Clay
19
USDA Textural Class (hydrometer method) Loam
Cation Exchange Capacity (meq/lOO g) 17.5
Percent Organic Carbon Percent Organic Matter
pH in 0.01 M CaC12 Total Nitrogen ( % )
1.3 2.3 7.7 0.101
Base Saturation Data
Cation
Calcium Magnesium Sodium Potassium
Hydrogen
Percent
57.2 28.6
4.8 3.4
6 .O
u2In
2000 600 193
232
10
These! tests were completed in compliance of 40 CFR Part 160.
Analytical Investigator
/ o -J/-OO
Date
3M Environmental Laboratory
Agricultural Testing
Page 635 of 703
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L A B 0 R A T 0 R IE S r: t
Highway 15 P.O. Box 510 Northwood NU 58267
(701)587-6010 FAX (701)587-6013
email: agvise@polarcommcom Homepage agviselabscom
The following personnel have been duly trained to perform Plant Analysis, Soil and Water Characte*ation methods under 40 CFR Part 160Good LaboratoryPractice Staudards.
Technical SuDDort StafF
- Anderson, Linda M. - Technician111
Deutsch, Robert L. President
Hart,Linda M. - Technician111
Hime, SherryL. - TechnicianI
Johnson, Julie M. - Nutrient Laboratory Manager
McNeil, Vigo (Art) - TechnicianI
Moen, Lucinda S.- TechnicianIII
- Pollert, Garis Nutrient LaboratoryAnalyst - Technician1
- i
Pollock, John
Wall, Mary J. Technician 11
Wyant, Linda L. - TechnicianI
Office Support Staff
- Berg, Eileen A. SecretaryIII - Ducioame, Gail M. Quality ControlSpecialist
- Fuglestad, Teresa S. Secretary11 ,
- Hagen, Shelly J. AdministrativeAssistant
Ouality Assurance
Thingelstad, Mary L. - Quality Assurance Manager
COPY OF ORGINAL
oratories, Inc.
Date/02Yye
05/00
3M Environmental Laboratory
Agriculturfll Testing
Page 636 of 703
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Bulk Den:& - Disturbed bulk densityis determined by weighing a known volume of dried and
ground soil (NUT.02.10). Core or non-disturbedbulk density is determined by weighing a known
volume ofan intact, dried soil core (NUT.02.02).
i1..
Water Holding Caoacitv and Water Relations
Moisture `g- Determinedby gravimetricloss upon drying (NUT.02.36).
Saturated Hvdraulic Conduaivi& - Determined by using the constant head method and measuring
the rate offlow ofwater through a saturated soil column ("'-02.34).
Water Infiltration Rate - Determined by using the constant head method and measuring the length
of time from water application to production of a leachatefrom a soil column (NUT.02.35). ... .:,
Water H ~ ~ l dCi anD~acity - Determined by measuringthe moisture remaining when saturated soil is
placed under 1/3 or 0.10 bar pressure (NUT.02.08).
. Water Hclldine CaDacity - Determined by measuringthe moisture remaining when saturatedsoil is
placed under 15 bar pressure (NUT.02.13).
All of the above methods are detailedin the current analyticalSOPSused by AGVISE
Laboratories' Characterizationtesting laboratory.
NUT.05.01. Lone Term Storage of Soil and Water Characterization Soecimens: According
to this SOP, soil characterizationsampleswill be retained by AGVISE Laboratoriesfor at least
two years before disposal and water characterizationsamples will be retainedfor a period of 60 days before disposal.
ADM.05.01. Archivist Duties and ArchivinPProcedures: This SOP states that copies of soil
and water characterizationreports, original COC's and original raw data will be archived within 60 days after the signatureby the analyticalinvestigator. Hard copiesgenerated by computerwill be archived weekly, and supplementaldata willbe archived annually.
OAU.OS.01. Ouality Assurance InsDections of Facilities. Studies, and Processes for GLP
C o m o l i m s Method inspectionswill be performed on a regularbasis at AGVISE Laboratories,
Inc. For soil characterization, two methodswill be inspectedper month and one water
characterizationinspection willbe conducted per month. An annual ficility audit will be performed by AGVISE Laboratories,hc. Qualay Assurance Unit.
All of the above methods are detailed in the current analytical SOP'Sused in AGVISE Laboratories' characterization laboratory.
APPROVED BY
ANALYTICAL INVESTIGATOR:
Robert L.Deutsch, SoilScientist
COPY QF QRtilGINAL
3M Environrnent(a1Laboratory
Page 637 of 703
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Collection Information
Site Identification Drn
F
SampleID AbVlSF L b
i . GeographicalReference Ldt&,L, J q7
L a n a b . . -.q 7' 48'
Date of Sampling / o - r s -00
..
Use Pattern (e.g. a g r i c m forest, etc.) N w . P?h-
Depth of Sampling 0- L I'
CoUectedby ~% Po&& ,-,,l,
........................................................
c4au Site Identification K. R n tvuu-
Loa, 1
ofiu SampleID A A V I S E L~a#h
a405
.- GeographicalReference LQ?&.&~. q 7 . w
LonL l U , ' .
9 7 "40'
Date of Sampling 10- 14 - 00
use Pattern (e.g. agricdtud, forest, etc.) Depth of Sampling 0 - L 'I
Collectedby A& PohLd
&&d#.wiJ,
........................................................
SiteIdentscation doSam, LJ ~ d c / m a ~
Sample ID 00- 2404 A 6 Y / s Lab*
Geographical Refaence L
- : r17 '45'
:-97"37'
- . Date of Sampling 10 1 9-00
Use Pattern (e.g. agricdtura~,forest, etc.) ,MR
- Depth of Sampling
6 II
% Betta3,
CoUectedby A r t M c M R J .
........................................................
r SiteIldentification K &'b,0-. .thu-
SampleID A 6 V i s F L b boQa(/o7
GeographicalReference L&&u!L :48 ' b 2 ' Isn&:-9b
'S'I'
Date of Sampling m-ai- 00
Use F'attern (e.g. agricultural, forest, etc.)
a .e. J ,
Depth of Sampling 0-6 "
CoUected by
J .OI-
3M EnvironmentalLaboratory
Page 638 of 703
% GLP 0 Non-GLP
2 m
CharacterizationChain of Custody
55 .
SEND RESULTS TO:
BILL TO:
3
2
2
2
Ime
0
3
$
'hone:
Purchase Order #
AGVISE Use Only
I Protocol/ Study #
BACK TO MAIN
Laboratories, Inc.
P.O. Box 51O/Highway15 Northwood,ND 58267
- Telephone(701) 587-6010 FAX (701) 5876013
Series 1. Soil Characterization 500 g sample minimum pH. %organic malter.cation exchange capacity,water W i n g
capacity (Inand15 bar), %sand-siltday.texture,bulk
density, %total nilrogen,phosphorus. andsolublesalts.
- Series2. SoilCharacterization 500g sampleminimum pH, %organic matter. cationexchangecapacity.Water holding capacity(Inbar), %sand-siltday, texture, and bulk density.
- Series3. Water Characterization 500mi sampleminimum pH, calcium. magnesium, sodium, hardness, conductivity. sodiumabsorptron tab,totaldissolved solids. and turn.
- Series 4. Water Characterization 500ml sample minimum pH. calcium. magnesium, sodium. hardness, sodium absorp-
I tion m k , andconductivity.
Study Directoh Management
'I
I
SMpEinTmHaOntDIOF &SIHCI\PMENT:
FedExpress 0
I
I
*
&$/ohter
/
instructions:
COPY OF ORIGINAL
BACK TO MAIN
7
iver Sediment
USE LOG
Gross wt/vol after
Purpose (enter standard number)
Balance I D Initials
Date
i
3M Environmental Laboratory
Page 640 of 703
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' bCR-00065-070
I withdrawal
11 131.39
Gross wt/vol
I (mass or vol)
I
after withdrawal
160.0 g
11071.3 g
Purpose (enter standard number)
IIE00-1311Sorption
Balance I D
I1904
Initials
IILCG
Date
I~11/13/2000 II
3M Environmental Laboratory
Page 641 of 703
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Before 1592.99
withdrawn
after
1256.169
1336.749
Purpose (enter standard number) IE00-1311Sorption Studies
Balance ID Initials
Date
I ,
I
I
1904
ILCG
~11/28/2000
3M Environmental Laboratory
Page 642 of 703
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'' I--River Sediment (TCR-00065-070
USE LOG
Gross wtjvol
Purpose (enter standard number)
Balance I D Initials
Date
after
3M Environmenlal Laboratory
Page 643 of 703
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I iver Sediment
USE LOG
Before 263.23 g
withdrawn
after
(75.54 g
187.69 g
Purpose (enter standard number)
Balance ID Initials
Date
E00-1311 PFOS AdsorblDesorb
904191 4
CMC
0112412001
3M Environmental Laboratory
Page 644 of 703
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Test Control and Reference Substance Log
< ISubstance trade name /DomesticSludge
ITCR Substance #
ITCR-00065-025
Domestic Sludge
name:
ILoVbatch #:
2781
Received from:
NlST
)3M #
IExDiration date:
INA 110/31/2005
I
I
I
IAmount received (wt. or 140 g (per vendor)
(Inihals:
LCG
Iof 15
7 containers
freeze-
dried
/Retain
Date: Shipper:
MSDS ( Y h ) Date of Retain
1010312000
UPS
-
9Y-N
Ipurity:
r- \Recordsrecenred:
Locabon of synthesis, fabncation, or derivabon records:
Std Location/Storage:
Molecular Formulii:
Comments
NA
certificateof analysis SRM 2781
NA
Container stored ambient (IO-30C)in TCR-CO2. LCG 12/26/00
3M Environmental Laboratory
Page 645 of 703
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' eomestic Sludge!
,: omestic Sludge! CR-00065425
Before
withdrawn
after
423.66 g
USE LOG
Purpose (enter standard number)
Balance ID Initials
Date
E00-1311 Suitable Analytical
904
LCG
10/25/2000
3M Environmental Laboratory
Page 646 of 703
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TCR Substance #
TCR-00065-026
15ubstance/chemlcal name: ILoVbatch #:
Expirabon date:
Domestic Sludge
2781 NA 10/31/2005
IInihals:
LCG 2 Of 35
7freeze-dried
IRetain
Received from:
NET
Amount received (wt. or 40 g (per vendor)
vol):
Date:
10/03/2000
Shipper:
UPS
MSDS (vln)
-
SYWN
Date of Retain
\Punty: IRecords received:
fabncation, or deirlvabon records: SM Locabon/Storage: Molecular Formula: Comments
NA Certificate of Analysis SRM 2781 NA
Container stored ambient (IO-30C) in TCRG02. LCG 12/26/00
domestic sludge.pdf
3M Environmental Laboratory
Page 647 of 703
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USE LOG
Gross wt/vol
Purpose (enter standard number)
Balance I D Initials
Date
I I I I I after
withdrawal (massorvol) withdrawal
1164.61 g
119.12 g
1145.49 g
IE00-1311 gSuitable Analytical
1904
IILCG I110/25/2000 II
3M Environmental Laborafory
Page 648 of 703
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Test Control and ReferenceSubstance Log
Domestic Sludge
15ubstance/chemil:al Domestic sludge
name:
ILotjbatch #:
2781
NA
1013112005
`p IcConotainnedrs:ition:
LCG 30f15
freeze-dried
IRetain
TCR Substance #
TCR-00065-027
Received from:
NlST
Amount received(wt. or 40 g (per vendor) vol):
Date:
I010312000
Shipper:
UPS
MSDS (Vn)
-
L)YmN
Date of Retain
[Records received
fabrication, or deiwation records: Std Locabon/Storage: Molecular Formula: Comments
certificateof analysis SRM 2781 NA
containerwas stored ambient. LCG 12/26/00
domestlc sludge.pdf
3M Environmental Laboratory
Page 649 of 703
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USE LOG omestic sludge
Before 125.389
withdrawn
after
3.509
121.88g
Purpose (enter standard number)
Balance ID Initials
Date
Sorption E00-1311
904
LCG
11/13/2000
3M Environmental Laboratory
Page 650 of 703
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-"or reference#
Substance/chemical ILot/batch #:
Initials: -NI
- 1containers:
[Retain
Test Control and Reference Substance Log
Domestic Sludge
Domestic Sludge
2781 NA 10/31/2005
LCG 4 Of 15
freezedried
TCR Substance #
TCR-00065-028
Received from:
NlST
Amount received (wt. or 40 g (per vendor)
vol):
Date:
10/03/2000
Shipper:
UPS
MSDS Wn) Date of Retain
2YmN
Ipurity: riecords received
fabrication, or derivation records:
IMolecular Formu1,s:
NA Certificateof analysis SRM 2781 NA
Container was stored ambient. LCG 12/26/00
I domestic sludge.pdf
1
3M Environmental Laboratory
Page 651 of 703
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I
omestic Sludge
I withdrawal
1164.749
I (massor vol)
141.569
Gross wt/vol
I atler withdrawal 1123.189
Purpose (enter standard number)
I
IE00-1311 Sorption Study
Balance I D Initials
Date
I1904
IILCG I~11/13/2000 1I
3M Environmental Laboratory
Page 652 of 703
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Domestic Sludge
1n5aumbset: ance/chemsal
lLot/batch #:
Domestic Sludge
2781 NA 1013112005
IInittals:
7 containers:
7 IRetain
LCG 50f15
freeze-dried
TCR Substance #
TCR-00065-029
Received from:
NlST
Amount received (wt. or 40 g(per vendor) vol):
Date: Shipper:
MSDS (Y/n)
10/03/2000
UPS -dYmN
Date of Retain
IPunty: IRecords received:
fabricahon, or derivahon records: Std Locahon/Storage: Molecular Formula: Comments
NA Certificateof analysisSRM 2781 NA
Container stored ambient (10-3OC) in TCR-C02. LCG 12/26/00
domestic sludge.pdf
3M Environmental Laboratory
Page 653 of 703
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omestic Sludge!
I withdrawal
1162.699
Gross wt/vol
I after
1~:rnassorvol) withdrawal
115.389
1147.319
Purpose (enter standard number)
I
IE00-1311Sorption Study
Balance ID
I1904
Initials
IILCG
Date
I~11/13/2000 II
3M Environmental Laboratory
Page 654 of 703
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USE LOG
I
Before 147.06 g
withdrawn
afier
125.06 g
122.00 g
Purpose (enter standard number)
Balance ID Initials
Date
E001311 Sorption Study
904
CMC
01/24/2001
3M Environmental Laboratory
Page 655 of 703
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or reference #
name: ILoVbatch #: 1 3 #~
IInitials: INumber/sizeof
Test Control and Reference Substance Log
Domestic Sludge
TCR Substance #
TCR-00065-030
2781 NA
LCG 6 of 15
Received from:
vol): Date: Shipper:
NlST
10103/2000 UPS
Iknty: [Records received
fabncatron, or deiivabon records: Std Location/Stor,sge: Molecular Formul,i: Comments
NA certificateof analysisSRM 2781 NA
Container stored ambient (10-3OC) in TCR-COZ. LCG 12/26/00
domestic sludge.pdf
3M Environmental Laboratory
Page 656 of 703
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USE LOG
Before
withdrawn
aRer 123.400 g
Purpose (enter standard number)
Balance I D Initials
Date
00-1311 AdsrblDesorb
914
CMC
01/24/2001
3M Environmental Laboratory
Page 657 of 703
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Test Control and Reference Substance Log
;3 ISubstance trade iiame IDomestic Sludge
ITCR Substance #
ITCR-00065-031
I
Lot/batch #: 3M #
Expiration date:
I
IInitials:
INumber/size of
2781
NA
10/31/2005
I
ILCG
17 of 15
Received from:
NET
I I Amount received (wt. or 40g (per vendor)
Ivol): IDate:
110/03/2000
IShiDDer:
IUPS
I
IPunty: IRecords received
fabncation, or denvation records: Std Locabon/Storsge: Molecular Formula: Comments
NA Certificateof analysis SRM 2718 NA
Container stored ambient (IO-3OC) in TCR-COZ. LCG 12/26/00
I I domestic sludge.pdf
3M Environment(a1Laboratory
Page 658 of 703
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omestic Sludge
USE LOG
I I1 Gross Wt./Vol.
Amnt.
I I
Before withdrawal
I withdrawn
(massorvol)
1163.78 g
17.82 g
I Gross wt/vol
I I
after withdrawal
1155.96 g
II Purpose (enter standard number)
I
-
IE00-1311 PFOS AdsorblDisorb
II Balance I D
I
1914
II~ Initials
IICMC
II -D-a_te-
I101/24/2001
3M Environmental Laboratory
Page 659 of 703
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.......
Standard Reference Material" 2781
Domestic Sludge
This Standard Reference Material (SRM) is intended primarily for use in the evaluation of methods used for the analysis of sludges and other materials Of a S h i h matrix. S R M 2781 is a dried and pulverized domestic sludge. A unit of S R M 2781 consists of 40g of the dried material.
Certified V ~ U C ST:he certified values for 10elementsare listed in Table 1 two or more analytical methods.
are based on concordant results from
Analytical mediods used for the characterizationof this SRM are given in Table 3. All values are reported as mass fractions [I], c o a dry mass basis and are based on measurements using a sample mass of at least 100 mg.
Noncertified Values: Noncertified values for eleven additional elements are listed in Table 2 and were derived .
from a combmition of results from NIST and collaborating laboratories. These results may have sources of bias yet to be inves1:igated and do not meet NIST criteria for certification.
.
Expiration of CertWcation: This certification is valid for five years from &e date of shipment from NIST. However, the certificationwill be nullified if the S R M is contambtedof modifmi. Should any of the values change before the expirationof the certification. putchasers will be notifiedby NET. Return of the attached registration card
will facilitate nlotification.
. Stability: This material is considered to be stab!e: .however. its stabdity ha9 not been rigorously assessed. NIST will conrinuously monitor this material and rrponbuy substantive changes in certification to the purchaser.
- Use: A minimum sample mass of 100 mg (dry mass see Instructions for Drying) should be used and sample
preparation procedures should be designed to effect completedissolution for analytical determinationsto be related
IO the certified values provided.
..
f:
Instructionsfor Drying: When nonvolatile elements an to be determined. samplesshould be vacuum dried at r&m
temperature for 24 h or oven dried for 2 h at 110 "C. Volatile elements(e.g.. arsenic. mernuy. and selenium) should
be determined on samples as received; separate samples should be dried according to these htrUCtiOIE to obtain a
..
correction factor for moisture. Moisture corrections;LIC then made to measurement values before comparing them
to the certified values. [Note thatthe mass loss ondryingat the time of cenificationwas found to be in the range of
4.7 % to 6.6 46 when using the recommended drying procedures.]
Statisticalconsultation was provided by L.M.Gill of the MST Statistical Engineering Division.
The overall direction and coordinationof the analyses were under the chairmanship of J.D.Fassett of the NIST
Analytical Chemistry Division.
The technical and supportaspects involved in the original preparation. certification, and issuance of this SRM were coordinated through the Standard Reference Materials Program by J.S. Kane. Revision of this certificate was
coordinated thrixqh the Standard Reference Materials Program by B.S. MacDonald.
Gaithersburg. h4D 20899 Certificate Issue Date: October 25, 1996 (Revisionof certificatedated 6-22-95 to include addendum)
Thomas E. Gills, Chief Standard Reference Materials Program
Page 1 of 4
3M Environmentisl Laboratory
Page 660 of 703
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Source and Preparation of MatertPI: The U.S.Geological Survey (USGS). under contract to NIST, obtained .C
partially dehydrated sewage cake material from the Metropolitan Dmver Sewage Disposal District No. I . The
material (approximately 182 kg) was placed inplastic-lincddnrmsud transponcd to the USGS facilitiesin Lakewood.
8
Co for processing. It was dried at ambient tempcraw in a forced air chamber, ground to p w a 74 m. (200 mesh)
sieve, blended for 24 h to assun homogeneity of the pulverized material after which test samples were taken from
the blmkr for p r c l h h y homogeneity analyses. The matcnal was then radiation sterilired. The sterilized material
i
W ~ sShipped in bulk 10 NIST,where the material was bottled in40 g units after reblending for 4 h.
Analysis: The homogeneity was assessed at USGS on 10 replicate samples of bulk material for over 40 elements
using x-ray fluorescence (XRF) andlor inductively coupled plasma atomic emission spectrometry (ICP-AES).
-m
Homogeneity was funber asusedduring certifmtion analysis; at sample s S S Of 100 mg or greater. No sample-to-
sample variations in excess of those expected from the analytical measurements were detected.
Certified Values and UanrtnlntK* I.: "he certified values ye the mcivtsof the results from two or more indepmdcnt
analytical methods as described by Schiller and Ebcrhardt [21. The unccnainty is based on a 95 X contidence interval
for the uue valw, and includes an allowance for differraces bet~mthe
merhodo wed [3].
Table 1. Certifd Mass Frac.tions
Element
Mass Fraction (in mgflrg)
Element
Mass Fraction (in %)
Arsenic Cadmium Copper Lead
Mercury Molybdenum Nickel
Selenium Zinc
7.82 12.78 627.4 202.1
3.64 46.7 80.2 16.0 1273
f 0.28 f 0.72 f 13.5 f 6.5 f 0.25 f 3.2 f 2.3 f 1.6 f 53
Nitrogen
4.78 f 0.11
Noncertifled Values and Uncertainties: The noncertified values are the means of the results frcm two or more independent analytical methods as described by Schiller and Eberhardt [2]. The uncenainty is based on a 95 % confidence interval for the mean, and includes an allowarre for differences between the analytical methods used [3].
As the accuracy of the measurements could not be asscssed from the data, the uncenainty associated with a
nonccnified value may fail to include all sources of uncertainties and may represent only a measure of the precision
of the mcasunment methods.
Element
Chromium Silver
Table 2. Noncertified Mass Fractions
Mast Fraction (in m d k g )
Element
202 f 9 98 f 8
Aluminum Calcium Iron Magnesium Phosphorus Potassium Silicon
Sodium Titanium
Mass Fraction (in R)
1.6 f 0.1 3.9 f 0.1 2.8 f 0.1 0.59 f 0.04 2.42 f 0.09 0.49 f 0.03 5.1 0.2 0.21 f 0.02 0.32 f 0.03
Page 2 of 4
3M EnvironmentcaLl aboratory
Page 661 of 703
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Table 3. Methods wd for the Analysis of SRM 2781.
Aluminum Arsenic Cadmium Calcium Chromium Copper Iron Lead
Magnesium
Mercury Molybdenum Nick1 Nitrogen Phosphorus Potassium Selenium Silicon Silver sodium Titanium Zinc
INAA. ICP-AES, XRF
RNAA, Hyd. AAS,INAA ID-ICPMS, YGAA,RNM. INAA. TXRF
INAA, TXRF, ICP-AES. XRF INAA, TXRF, ICP-AES IPICPMS, RNAA. MAA, TXRF INAA. TXRF. ICP-AES, XRF
ICP-AES, ID-ICPMS, TXRF
INAA, ICP-AES. XRF
m-cv-Ms,RNAA, WAA
[PICPMS, ICP-AES. TXRF. INAA ICP-AES, IDICPMS, INAA. TXRF KJeldaM, PGAA
Color. ICP-AES. XRF
INAA, TXRF.ICP-AES Hyd. AAS,RNAA, INAA, TXRF
XRF
RNAA. I N M ,TXRF
INAA. ICP-AES, XRF INAA. TXRF, XRF ICP-AES, ID-ICPMS, INAA, TXRF
Methods
FIA-CV-AAS Hyd. AAS ICP-AES ID-ICPMS INAA PGAA RNAA TXRF XRF
NIST AIUIYS~S
M.H. &an E.S. Beary C.M.Beck I1 D.A. Becker M.S. Epsrein K. Garrity R.R. Gremberg R.M.Lmdstrom E.A. Mackey
Flow injection analysis cold vapor atomic absorption spectrometry Hydrih generation atomic absorptionspcctromeuy Inductively coupled plasma atomic emission spectrometry Isotope diiution inductively coupled plasma mass spectrometry Instrumenral neutron activation analysis Prompt gamma activation analysis Radiochemical neutron activation analysis Total reflecrance x-ray fluorescence Wavelength dispersive x-ray fluorescence
J.R. Moody B.R. Nonnan P.J. Paulscn M.S. Rearick T.A. Rush R. Saraswati J.M. Smeller R.L. Waners. Jr. L.J. Woad
Page 3 of 4
3M Environmental Laboratory
Page 662 of703
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Cooperating Annlys~sand Laboratories:
F,
S. Landsherger and D. Wu; Universiry of Illinois. Nuclear Engwcring Department, Champaign, IL
S.A. Wilson. D. Siems, and P. Briggs; USGS. Lakewood. CO
l
i I
A. Prange, U. Reus. and R. Neidergesiss;GKSS Research Center. Institute of Physical and C h e w m y r i c s , Geesthacht. Germany
REFERENCES
[ I ] Taylor, B.N.,'Guide for the Use of the International System of Units (SI)." NIST Special Publication
-L
811., 1995 Ed., (April 1995).
[2] Schiller, S.B. and Ekrhardt. K.R., Combining Data from Independent Chemical Analysis Methods.
Spcfitmhlmid Actn, 468(12), p~ 1607-1613, (1991).
[31 Guide IO the Expressh of Uncertainty in M e a w e m n r . ISBN 92-67-10188-9. 1st Ed. ISO. Geneva.
Swiizerland. (1993): see also Taylor, B.N. and Kuyao. C.E.. 'Guidelines for Evaluating a d Expressing the
Uncertainty of MST Measurement Results,' NIST Tcchical Note, 1297. U.S. Government hinting Office,
Washington D.C..(1994).
.
Page 4 of 4 3M Environmental Laboratory
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Addendum to Standard Reference Material@2781
i t
Domestic Sludge
Leachable Mass Fractions Using U.S.EPA and NJDEP Methods for Flame Atomic Absorption Spectrometry and Inductively Coupled Plasma Atomic Emission Spectrometry
-L
The certi.ficd concentrationvalues of constiruent elemern in certificate are given as totd ma~sfractions. TO obtain total mass fractions, either subsamples of the SRM must k complercly decomposed. or the sample must be analyzed directly in its solid form. For mixed acid dissohnion. hydrofluoric acid must be included in the acid mixrurr
to torally dissolve siliceous material present in sludge.
For a nurnber of environmental monitoring purposes. acid exmaable mass fractions of elemenu an o k n uud rather than total mass fractions. Acid extractable methods do not necessarily result in total decomposition of the sludge. It should be noted that results obtained using acid leach conditions are often depicted in reporu as total resutu. However, reponed acid labk or extractablemass fractionsof elements M generally lower than total masf fractious. Results are often presented as measured mass fractions in the leachate in comparison to the total or cenified mass fractions. The recovery of an element as a pcrcent of total is a function of several factors such as tbe mode of occurrence in the sample, leach medium. leach time. temperature conditions, and pH of the sample-leach medium
mixture [I].
In its monitoring programs. h e U.S..Epvironmental RotecdonAgency (US.EPA) has established a numkr of leach
methods. such as Methods 3015. 3050. and 3051 12.31 for thc determination of acid labile or extractable mass
fractionsof elements. The New Jersey Depamnenf of the En-
(NJDEP) has developed its own leach method.
NJDEP 100 for state use [4]. The NIDEP and the U.S. EPA preparedsamples of SRM 2781 using the NJDEP 100
method and EPA Methods 3050 and 3051 and analyzed the resulting leachates by flame atomic absorption
spectrornc:try (FAAS) and inductively coupled plasma a@micemission spectrometry (ICP-AES).
Reference values have been establishedfor the acid-leachable mats fractionsof several elements in SRM 2781. These vaiues an: thc means of all results from Ihc di&ran kactl mcasmenn~mrhaQ andcombinatioasused. ?berefvalm are listedinTable 1, almgwithtkrmCataintieSwtrirb an bavd ~a 95 % confidarcinavalsof thc maus of d t s . For some of the elements(copper. iron, silver, vanadium). no statisticallysignificant differences were found among
- - - - results from the two laboratoriesusing lhreeor four combinationsof sample preparation and insvumental measuremenf
ttchniques (NJDEP 100 FAAS;NJDEP 1M) ICP-AES: EPA 3050 ICP-AES; EPA 3051 ICP-AES). For all other elements. statistically significant between-laboratory differences were identified and are included in b e stated uncertainlies. These differences are small in comparison to control limits for many environmental monitoring programs. Therefore, the reference values are meaningful. despite the between-laboratory differences found.
Reference Values- and UnccrtPintier: The reference values given in Table 1 are MV NIST cenified but are provided as a reference for U.S. EPA 3050 and 3051, and NJDEP 100 methods. The uncertainties are based on a 95 Z
confidence interval for the mean and include an allowance for differences berween the analytical methods used.
Gaithenburg. MD 20899 Addendum Issue Date: October 25, 1996
Thomas E. Gills, Chief Standard Refereme Material Program
Page I of 2
3M EnvironmentlslLaboratory
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1 1
-9
..
Element
Al~inum Barium Cadmium Calcium Chromium Copper Iron Lead Magnesium Manganese Nickel Silver Vanadium Zinc
Table 1. Reference Leach Values for SRM 278I
Leachable rnass fraction (in mglkg)
8040, f 980
570 f 65
11 f
2
36440 f 1830
143 f
14
601 f 16
24300 f 2100
183 f
15
4850 f 290
745 f 33
12.3 f
6.3
86.3 f
I .7
81.9 f
3.8
1 120 f 34
96 Leach Recovery*
5-0-
86 93 71 96 87 91
8--2-
90
8--8-
88
K Leach Recovery = 100 L
Leach Value
Certified or Noncertified Value
Cooperating Analysts and Labomtories:
S.J. Nagoumey; New Jeney Department of the Environmeot, Trenton. NJ. J. Birri, K. Pcist; U.S. Environmental Protection Agency, Edison, NJ.
REFE~ENCES
111 Kam.J.S.. Leach Data vs Total: Which & b m t for SRMs, FreseniusJ. Anal. Chcm. 352: pp 209-213.
(IWS). [2] U.S. EPA 1991 Code of Federal Regulations. Title 40,Pan 136. Paragraph 33. [3] Federal Register 1-13-95 SW-846 update#2. Final. [4] New Jersey AdministrativeCode, 1994. N.J.A.C. 7:14-4.
Page 2 of 2
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Test Control and Reference Substance Log
Soil: Sandy Loam
13-1
name:
Soil: Sandy Loam
7 ILoVbatch #:
,<.. ..
[Initials:
99-2564 TNA-4621 0810112015 LCG
1-500ml(2 of 3)
7- containen:
[Retain
Dried and sieved
TCR Substance #
TCR-00065-009
Received from:
Anvise
Amount received (wt. or 448 g net weight vol):
Date:
09/14/2000
Shipper:
MSDS (Vn) Date of Retain
SY-N
[purity: IRecords received:
fabrication, or derivation records: Std Location/Storage: Molecular Formula: Comments Attachment(s)
NA NA
container stored ambient in cabinet TCR-CO2. LCG 12/26/00 weight of container wlcap 66.49 LCG 9/14/00
3M Environmenta/ Laboratory
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USE LOG
Before
withdrawn
Purpose (enter standard number)
Balance ID Initials
Date
after
E00-1311 PFOS adsldes
904
CMC
01/31/2001
3M Environmental Laboratory
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-
05/23/01 WED 153113 FAX 1 701 587 6013
AGVISE LABORATORIES
LA 8 0 R4T 0 RIE9
t
May 23,2001
@I002
Highway 15 P.0. BOX 510 Northwood, ND 58267
oou 587-6010
FAX (700 587-6OU emall: agvise@polarcornin.com nomepage agviselabrcom
Mr. Mark Ellefson 3M Corporation
Re Soil Characterizationfor Agvise South
Soil collectedfrom the site Agvise South has tested as follows~
Percent Sand Percent Silt Percent Clay USDA Textural Class (Hydrometer method)
58
22 20 Sandy Loam
Bulk Density(disturbed) g d c c
1.05
Cation Exchange Capacity (mew100 g)
23.3
% Moisture at 113 Bar
27.9
Percent Organic Matter
4.8
p~ in 1:I soilwater ratio
7.8
Extractable Iron (ppm)
10.3
Extractable Zinc (ppm)
1.59
ExtlactableManganese (ppm)
11.9
Extractable Copper (ppm)
0.24
Base Saturation Data Cation
Percent
PPm
Calcium
Magnesium
Sodium
Potassium
Hydrogen
a& Robert Deutsch
c
Soil Scientist
79.5 10.0 0.8 2.5 7.2
3700 280 41 231
17
3M EnvironmentasL/ aboratory Agriculturul Testing
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12/11/00 MON 15:17 FAX 1 701 587 6013
AGVISE LABORATORIES
~001
*
u
t
L A e o II A T o R I K S
AGVISE S o i l Characterization Report
Highway 15 P.0. Box 510 Northwood, ND 58267
1701) 587-6010
F A X (7011587-6013
I
emall: agvis&poiarcornm.com Homepage: agviselabs.com
Submitted By: BOB DEUTSCH
P.O. BOX 316 111 1ST AVENUIS NORTHWOOD ND
58267
Results Reported To: BOB DEUTSCH
P.O. BOX 316 111 1ST AVENUE NORTHWOOD ND
58267
- PrOtOcOl/StUdy NO =
Specimen ID
=
Purchase Order
Trial or Test NO =
AGVISE SOUTH
Depth =
Date Received = 9/20/00 Date Reported = 9/22/00
AGVISE Lab NO = AGVISE Ref NO =
27,767 6,633,357
Percent Sand Percent Silt Percent Clay
w USDA Textural Class (hydrometer method) % Organic Matter (Walkley-Black)
58 22
20
SANDY LOAM
4.9
p H (Water)
7.8
W
,
.. .. . .
3M Environmental Laboratory Agricultural Testing
Page 669 of 703
- iz/ii/oo MON i5:ia .FAX 1 701 587 6013
AGVISE LABORATORIES
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Bo02
c 3M Environmental Laboratory
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ISubstance/chemcal or reference#
name:
IH, IH, 2H, 2Hperfluorooctanesulfonic Acid
TCR Substance #
TCR-00017-047
ILot/batch #:
9-75-30
Received from:
SynQuest Labs
NIA
Amount received (wt. or 80 g, 428.04 g gross wt. vol):
[Initials:
PMR
Date:
0511 512000
7 INumber/sizeof
1/ 250 mL jar
Shipper:
UPS
Jcontainers:
I
I
I_
I
lgoodl white powder
~ S D (Sv/n)
PYUN
\Retain
10.2762 g
IDate of Retain
l05/17/2000
[Purity:
TBD
IRecords received:
MSDS
SynQuest Labs
fabrication, or derivation
records:
!
Std Lmtion/Storage:
F19, Frozen
IMolecular Formula:
C8H5Fl303S
3M Environment,alLaboratory
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Standards Database
SCSPL Single Component Standard Preparation Log
IStandard ID#
101001-03-07
IDescription
1500 mglL
BookNo. 001 PageNo. 03
1 IDate Prepared
~0210112001
IAnalyst JCMC
]Stock ID#
kR-00014-046
I
I
I Conc or Purity
lnut
I Final Conc
1500 mglL
Weight or Volume 0.500 g
Balance ID 914
Final Volume 1000 ml
I [ Storage Location [ ExpirationDate
13rd Floor
~08/0112001
T N A Solvent
0.01M CaClZ 00001-34-12
I 1 Comments:
I I
Reviewed Bv: Cindv M. Carlson 02/06/2001
3M Environment,alLaboratory
Page 672 of 703
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]Standard ID# [00001-19-01
IDescription ITHPFOS
Standards Database
SCSPL
Single Component Standard Preparation Log
BookNo. 001 PageNo. 19
IDate Prepared IAnalyst
1
(07/05/2000
(KLT
lneat I Conc or Purity
I Flnal Conc:
1444 ppm
I Weight or Volume
0.0111 g
Balance ID
1 FinalVulume
i i i a i m a i (914) 25ml
I Storage Location
(3rd Floor
I Expiration Date
~01/31/2001
I I
I Comments:
1Added Meoh TN-A per KLT on 1/30/01 OK. Updated Balance ID on 2/16/01 per KLT. OK
)-gn]enka
Krupljanin 0211612001
I TN-A Solvent
TNA-4464 Methanol
-
3M Environmental Laboratory
Page 673 of 703
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Environmental Laboratory
IStandard ID# lOOOOl-24-03
IDescription
ITHPFOS
Standards Database
SCSPL Single Component Standard Preparation Log
BookNo. 001 PageNo. 24
!Date Prepared IAnalyst
(09/13/2000
(CMC
1
I Conc or Purity
Weight or Volume 0.5 m l
Balance ID
Final Volume 10 ml
I Final Conc:
122.2 u g h 1
- I Storaae Location
13rd Floor
I ExDiration Date 103/31/2001
i I
I Comments:
IReviewed By: Cindy M. Carlson 10/19/2000
TNA Solvent tn-a4639 Methanol
I
I
3M Environmental Laboratory
Page 674 of 703
_ . .- . -
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SINGLE COMPONENT STANDARD PREPARATION LOG
W
Reviewed By:
?! h3
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IStandard ID#
IDescrbtion
Standards Database
SCSPL Single Component Standard PreparationLog
BookNo. 001 PageNo. 31
bate PreDared [Analvst I
6.0L
milli-q
I Comments:
I
Reviewed By: OlgnjenkaKrupljanin11/21/2000
3M Environmental Laboratory
Page 676 of 703
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Standards Database
SCSPL Single Component Standard Preparation Log
(Standard ID# 100001-31-11
(Description l5OOmglL PFOS
IStock ID# ITCR-00017-046
I Conc or Purity
lneat
I Weight or Volume
10.0500g
JBalanceID
I
BookNo. 001 PageNo. 31
!Date Prepared [Analyst
I
111/01/2000
ICMC
I FinalVolume 1 TN-A Solvent
IlOOml
IOOOO1-31-10 0.01M
I
CaC12
I
i-gnjenka
Krupljanln 05/23/2001
3M EnvironmentalLaboratory
Page 677 of 703
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. - . I I s--7
Y -- 7-
SINGLE COMPONENT STANDARD PREPARATION LOG
Book NO.
00 001
Page No.
32
Reviewed By:
Date:
I
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Standards Database
SCSPL Single Component Standard Preparation Log
BookNo. 001 PageNo. 32
I Conc or Purity 1 Weight or Volume ]Balance ID
1 Final Volume
1 TNA Solvent
(00001-31-10 0.01M
Final Conc
I'lODDlll
1 Storage Location I Expiration Date 1
13rd Floor
105/31/2001
1
Icomments:
I
1 Reviewed By: Cignjenka Krupljanin 11/21/2000
3M Environmentisl Laboratory
Page 679 of 703
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)Standard ID# 100001-32-07
[Stock ID# ITCR-00017-046
!Description llOOmg/L PFOS
I
Standards Database
SCSPL Single Component Standard Preparation Log
BookNo. 001 PageNo. 32
lDate Prepared (Analyst 1
~11/13/2000
ICMC
L
I Final Coni:
[100mg/~
1 I Storage Location
13rd Floor
1 Expiration Date
105/31/2001
Comments:
[V Reviewed By Ognjenka Krupljanin 11/21/2000
CaC12
3M Environmental Laboratory
Page 680 of 703
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Environmental Laboratory
Standards Database
SCSPL Single Component Standard Preparation Log
IStandard ID# 100001-32-09
IDescription
10.10rnglL PFOS
[Stock ID# 100001-32-07
I Conc or Purity
I
Weight or Volume 250uL
Balance ID
BookNo. 001 PageNo. 32
I IDate Prepared
111/13/2000
(Analyst ICMC
I
Final Volume 250mL
TN-A Solvent
00001-31-10 0.01M CaC12
Final Conc: 10.1Omg/L
1 I Storage Location 1 (3rd Floor
I Expiration Date
105/31/2001
i
I Comments:
1
LReviewed By: Ognjenka Krupljanin 11/21/2000
3M Environmental Laboratory
Page 681 of 703
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Standards Database
SCSPL Single Component Standard Preparation Log
[ Conc or Purity
llOOOppm
1 Weight or Volume
10.25mL
/Balance ID
I
1 Finalvolume 1 TN-A Solvent
1
1500mL
ITNA-4672
Final Cono 1500ppb
1 Storage Location I Expiration Date I
[2nd Floor
(03/30/2001
I Comments:
I Reviewed By: Olgnjenka Krupljanln 11/21/2000
I
~
3M Environmental Laboratory
Page 682 of 703
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Standards Database
SCSPL Single Component Standard Preparation Log t
L I Conc or Purity
588 ppm
Final Conc: 120 PPm
Weight or Volume 850u'
-Balance ID
Final Volume 25 ml
I Storage Location I Expiration Date 1
13rd Floor
105115/2001
I Comments:
I Reviewed By: Clgnjenka Krupljanin 11/27/2000
TN-A Solvent tn-a4604 Methanol
I
~
3M EnvironmentislLaboratory
Page 683 of 703
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Standards Database
SCSPL Single Component Standard Preparation Log t
1 Conc or Purity
I 100 ppm
Weight or Volume 5 ml
Balance ID
Final Volume I O ml
TNA Solvent
00001-31-10 0.0lMCaC12
I
' w g n j e n k a Krupljanin 11/27/2000
3M Environmental Laboratory
Page 684 of 703
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Standards Database
SCSPL Single Component Standard Preparation Log
IStandard ID# 100001-33-07
IDescription 10.01 M CaCl2 (aq)
BookNo. 001 PageNo. 33
IDate Prepared ]Analyst 1
~11/21/2000
ICMC
I I p o c k ID#
(tn-a4000
I Concorpuritv I Weight or Volume IEalanceID
I
I
I FinalVolume I
TN-A Solvent
I
I
I
I
I Final Coni:
10.01 M
I - Storage Location I Expiration Date I
13rd Floor
~03/01/2001
i
I Comments:
I
I
i-lgnjenka
Krupljanin 11/27/2000
3M Environmental Laboratory
Page 685 of 703
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:E nvironmental
Laboratory
i
IStandard ID# bOOO1-34-12
1 Description
10.01 M CaCl2 (aq)
Standards Database
SCSPL Single Component Standard Preparation Log
BookNo. 001 PageNo. 34
IDate Prepared 11 2/04/2000
]Analyst (CMC
1 Conc or Purity
lneat
I Weight or Volume
16.7142 g
IBalance ID
I NA
1 FinalVolume
16 Liters
Final Cono 10.01 M
I Storage Location I Expiration Date I
13rd Floor
103/14/2001
I Comments:
IReviewed By: Cindy M. Carlson 12/14/2000
1 TN-A Solvent
Imilli-q
I
J
3M Environmenfal Laboratory
Page 686 of 703
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SINGLE COMPONENT STANDARD PREPARATION LOG
BookNo. +.,. 00001
Page No.
34
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]Standard ID# [Ol 001-02-01
Standards Database
SCSPL Single Component Standard Preparation Log
I Description
I20 mg/L THPFOS IS
BookNo. 001 PageNo. 02
IDate Prepared ~01/08/2001
IAnalyst ICMC
E I Conc or Purity
Weight or Volume 850 ul
Balance ID NA
Final Volume 25 ml
TNA Solvent TNA-4715 Methanol
I
' [ R e v l e w e d i n d y M. Carlson 02/06/2001
3M Environmental Laboratoty
Page 688 of 703
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Standards Database
SCSPL Single Component Standard Preparation Log
IStandard ID# 101001-02-02
1 Description
IPFOS Stock
BookNo. 001 PageNo. 02
IDate Prepared ~01/09/2001
/Analyst IMLA
p o c k ID#
I
I
ITCR-00017-046
ineatconc or Purity
Weight or Volume 0.1278 g
Balance ID 914
Final Volume 10 ml
Final Conc: (12780 uglml
I 1 Storage Location
I 13rd Floor
I Expiration Date
101/09/2002
TN-A Solvent
tn-a-4755 Methanol
[Comments:
I I
1
Reviewed By: Cindy M. Carlson 02/06/2001
3M Environmental Laboratory
Page 689 of 703
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IStandard ID# 101001-02-03
1Description
ITHPFOS Stock
Standards Database
SCSPL Single Component Standard Preparation Log
BookNo. 001 PageNo. 02
]Date Prepared ~01/09/2001
IAnalyst IMLA
I Conc or Purity
lneat
Weight or Volume 0.0053 g
Balance ID 914
Final Volume I O ml
TNA Solvent
TN-A4755 Methanol
1 Comments:
I m i n d y M. Carlson 02/06/2001
3M Environmental Laboratory
Page 690 of 703
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Standards Database
SCSPL Single Component Standard Preparation Log
[Standard ID# 101001-02-04
[Description IPFBS Stock
IStock ID# ITCR-99030-023
1 Conc or Purity
lneat
I
Weight or Volume 0.0127 g
Balance ID 914
BookNo. 001 PageNo. 02
[DatePrepared [Analyst I
)01/09/2001
[ MLA
Final Volume 10 ml
TNA Solvent
TNA-4755 Methanol
P v G d By: Cindy M.Carkon 02/06/2001
3M Environmental Laboratory
Page 691 of 703
BACK TO MAIN
i
]Standard ID# [OIOOI-02-05 IStock ID# ~01001-02-02
Standards Database
SCSPL Single Component Standard Preparation Log
1IDescription
25 ppm (uglml) PFOS
BookNo. 001 PageNo. 02
IDate Prepared IAnalyst 1
~01/09/2001
(MLA
Final Conc: 125.048 ua/ml
I Comments:
NA
25 ml
I 1 Storage Location I Expiration Date
13rd Floor
101/09/2002
I
TNA-4755
Methannl
I
3M Environmental Laboratoty
Page 692 of 703
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Standards Database
SCSPL Single Component Standard Preparation Log t
BookNo. 001 Page No. 03
Weight or Volume
Balance ID NA
Final Volume I 0 0 ml
I Final Conc
(50 mg1L
I 1 I Storage Location
I 13rd Floor
Expiration Date ~0810112001
I Comments:
1 Reviewed By: Cindy M. Carlson 02/06/2001
T N A Solvent 0.01 M CaC12 00001-34-12
I
3M EnvironmentalLaboratory
Page 693 of 703
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Environmental
Standards Database
ILaboratory
SCSPL
Single Component Standard Preparation Log
i
]Stock ID#
I
ITN-~-4000
I Final Conc
10.01 M
I I 1 Storage Location
Expiration Date
13rd Floor
108/12/2001
1
I Comments:
I Reviewed By: Cindy M. Carlson 02/28/2001
~~~~
1
I
3M Environmental Laboratory
Page 694 of 703
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IEnvironmental ILaboratory
1
I StandardID#
I Description
Standards Database
SCSPL Single Component Standard Preparation Log
BookNo. 001 PageNo. 04
I Date PreDared I Analvst I
3M Environmental Laboratory
Page 695 of 703
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II MULTI-LEVELSTANDARD PREPARATION LOG Book ,No. 00 002
Gl
Pa"aeNo. 104
t
Description:&is&/ k - k
Date Prepared: la/&.I OD
&A--o&
Prepared By: L.1fi:-
Storage Location:
I-
ExpirationDate: (a
Lot#: .-
Description: Date Prepared:
Prepared By: Storage Location:
Expiration Date:
4 G,A
034Jm&? # bf
33'
-
011- ,$??
h
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MULTI-LEVEL PREPARATION LOG BookNo. 01 003 Page Nc'. 7
BACK TO MAIN
Prep date: Analyst:
Type of the curve:
Target analytes:
Exact concentration of
I .L0/
/tl& P.FrIS p h J CTy-/&/e
'PFOJ,THPFD>C"ZS) pp?fi~s(zr)
Standard mix used for preparing the curve:
D l m / -d - 5
every point of
every analyte
Book No: Page No:
01 003 7
Solvent & TN-A #: flpO//, Final Volume of each point:
7 , ~ - A- Y f55
__"-....-..-...........---.. ..--
........................... I...............".
Internal Standards
TH'HP.735 PFDs
/
standard concentration
amount used
Same amount of Internal standard used in all points, leading to same concentration in every point.
BACK TO MAIN
Date Frepared: is/,a/0 o
Prepared By:
Storage 1-ocation: Expiration Date:
cw\(
3 6 /o I
MULTICOMPONENT STANDARD PREPARATION LOG Book No. 00 003 PageNo. 147
Solvent: t+ 0 H S o u r c e : w sau
Lot #:
3MTrace#: m &-L(lL.Io Expiration Date: m o54
I
3M EnvironmenQslLaboratory
Page 699 of 703
a
ET&S Chemical inventory System
ISize:
lQty Recorded: IDate Recorded: b a t e ExDired:
14L
112
I5117/00
12005
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I
I 1
3M Environmentid Laboratory
Page 700 of 703
a
ET&S Chemical Inventory System
I I
I
ITrace #:
TN-A-07f5
Chemical Sort Prefix:
Chemical Namo:
Methanol
CASllD #:
67-56-1
Manufacturer:
EM
CATIStudy #:
MX0475-1
Lot #
40276
Size:
4L
Qty Recorded:
12
Date Recorded:
11110100
Date Expired:
11110/05
Storage Requinnents:
Flammable
Chemical Hazard Class 3
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I
3M Environmental Laboratory
Page 701 of 703
ET&S Chemical Inventory System
E i
I Trace #: ChemicalSort Prefix: Chemical Name: CASllD #: Manufacturer: CATIStudy #: Lot #: Size:
Qty Recorded: Date Recorded: Date Expired: Storage Requinments: ChemicalHazard Class
I TNA-4740
methanol 67-56-1 EM MX0475-1 40276 4L 12 11/27/00 11/27/05 flammable 3
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I
3M Environmental Laboratory
Page 702 of 703
a
ET&S Chemical inventory System
Trace #: Chemical Sort Prefix: Chemical Name CASllD #: Manufacturer: CATIStudy #: Lot #: Size: Qty Recorded: Date Recorded: Date Expired: Storage Requirrnents: Chemical Hazard Class
TNA-4755
Methanol 67-56-1 EM MX0475-1
4L 12 12/11/00 12/11105 flammable 3
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3M Environmental Laboratory
Page 703 of 703
Collection Information
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AGVISE Soil Characterization Report
submitting firm
= 3M
Protocol or Study No = NA
Sample ID.
= KITTSON CO CLAY 0-6
Trial ID.
= NA
D a t e Received
= 10-23-00
D a t e Reported
= 11-02-2000
AGVISE Lab NO
00- 2407
Percent Sand
16
Percent Si1t
22
Percent Clay
62
USDA Textural Class (hydrometer method) Clay
Cation Exchange Capacity (meq/lOO g) 54.5
Percent Organic Carbon Percent Organic Matter
pH in 0.01 M CaC12
Total Nitrogen ( 0 )
2.6 4.5 7.2 0.223
Base Saturation Data
Caticrn
Calcium Magnesium Sodium Potassium Hydrogen
Percent
54.2 34.6
0.9 3.6 6.8
5900 2260
110 771
37
leted in compliance of 40 CFR Part 160.
Date Soil Scientist/Analytical Investigator
- au
Agricultural Testing
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L A B 0 R A T0-RI e 8
AGVISE Soil Characterization R@port
Submitting firm
= 3M
Protocol or Study No = NA
Sample ID.
= DON UGLEM-LOAM 0-6
Trial ID.
=NA
Date Received
= 10-23-00
Date Reported
= 10-31-2000
AGVISB Lab No
00- 2404
Percent Sand
39
Percent Silt
50
Percent Clay
11
USDA Textural Class (hydrometer method) Loam
Cation Exchange Capacity (meq/lOO g) 23.9
Percent Organic Carbon Percent Organic Matter pH in 0.01 M CaC12
Total Nitrogen (%I
4.9 8.4 7.4 0.358
Base Saturation Data
Cation
Calcium Magnesium Sodium Potassium HyUrogen
Percent
52.2 20.9
0.7 3.5
22.7
oom
2500 600 38
324
54
These t e s t s were completed in compliance of 40 CFR Part 160.
Arkytical Investigator
10-31-00
Date
Agricultural Testing
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AGVISE Soil Characterization Report:
Submitting firm
= 3M
Protocol or Study No = NA
Sample ID.
E K BROKREN-CLAY LOAM 0-6
Trial ID.
rNA
Date Received
E 10-23-00
Date Reported
= 10-31-2000
AGVISE Lab NO
00- 2405
Percent Sand
21
Percent Silt
46
Percent Clay
33
USDA Textural Class (hydrometer method) Clay Loam
Cation -change Capacity (meq/100 g ) 2 4 . 7
Percent Organic Carbon Percent Organic Matter pH in 0-01 M CaC12 Total Nitrogen (%I
2.6
4.4 6.0
0.216
Base Saturation Data Cation
Calcium Magnesium Sodium Potassium Hydrogen
Eercent
52.7
24.3 0.7 5.8
16.5
ppm
2600
720 39
557
41
These tests w e r e completed in compliance of 40 CFR Part 160.
&a1 ytical Gvestigator
/&a- 00
Date
Agricultural Testing
05/23/01 WED 15:19 FAX 1 701 587 8013
AGVISE LABORATORIES
LABORATORIES
May 23,2001
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Highway 15 P.0. BOX 510 Northwood, ND 58267
(701) 5876010 FAX (701)5876013 emall: agvis&polarcommrom
nomepage agviselabscom
Mr. Mark Ellefson 3M Corporation
Re Soil Characterizationfor Agvise South
Soil collected from the site Agvise South has tested as follows;
Percent Sand
Percent SiIt
Percent Clay
USDA Textural Class (Hydrometer method)
58 22 20 Sandy Loam
Bulk Density (disturbed) gm/cc
1.05
Cation Exchange Capacity (meq/100 g)
23.3
% Moisture at 113 Bar
Percent Organic Matter
pH in 1:1 soikwater ratio
7.8
Extractable Iron (ppm)
Extractable Zinc (pprn)
Extractable Manganese (ppm) Extractable Copper (ppm)
10.3
I.59
11.9 0.24
Base Saturation Data
Cation
Percent
Calcium Magnesium Sodium Potassium Hydrogen
79.5 10.0 0.8 2.5
7.2
PPm
3700 280 41 231 17
&D*- Robert Deutsch
Soil Scientist
Agriciil turd Testing
LABORATORIES
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Highway 15 P.O. Box 510 Northwood ND 58267
(701) 587-6010 FAX (701) 587-6013
email: agvise@polarcommcom Homepage. agviselabs.com
AGVISE Soil Characterization Report
Submitting finn
= 3M
Protocol or Study No = NA
Sample ID.
= GOOSE RIVER-SEDIMENT 0-6
Trial ID.
= NA
Date Received
= 10-23-00
Date Reported
= 10-31-2000
AGVISE L a b No
00- 2406
Percent Sand
39
Percent Silt
42
Percent Clay
19
USDA Textural Class (hydrometermethod) Loam
Cation Exchange Capacity (meq/100 g) 17.5
Percent Organic Carbon Percent Organic Matter pH in 0.01 M CaC12
Total Nitrogen ( % )
1.3 2.3
7.7
0.101
Base Saturation Data Cation
Percent
&an!
Calcium Magnesium Sodium
Potassium
Hydrogen
57.2 28.6
4.8
3.4
6.0
2000 600 193
232
10
These tests were completed in compliance of 4 0 CFR Part 1 6 0 .
J@ie M. J o w o n Analytical Investigator
18 -J/-OO
Date
Agricultural Testing
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Standard Reference Material" 2781
Domestic Sludge
This Standard Reference Material (SRM) is intended pnmuily for use in the evllurtiOn of methods uscd for the analysis of sludgesand &r materials of a similar malrix. SRM 2781 is a dried and pulverized domestic sludge. A unit of SRM 2781 consists of 40g of rhe drkd mrterial.
C d i Values: The certified values for 10elemem m listed mTable 1 vdarebascd onfoacoTdant results from two or more analytical methods.
Analytical methods used for the characterizationof this SRM are givenm Tabb 3- All values arc reported as mass fractions [I], on a dry mass basis and arc based on m t m m w usinga sample mass of at least 100 mg.
Noacuttfied Vdocs: Noncertificd values for eleven additional elsmenu arc listed in Tabk 2 and were derived . from a combiDMion of results from NIST and collabontiag 19boratorier. These results may have sources of bias
yet IO be investigatedand do not meet NIST criteria for certification.
Expiration of CeMratian: This ctmficath is valid for five years from tbe due of Jhipnen from NIST.
However, tht certificationwill be nullifiedif the SRM iscmWmat&orlllamd. shoutdpnyofrhcvai~chaage
before dle Upiratimof thecenificarion, plrchasers wiubeooti&edbym1.Reaanof the atuched registration card
will facilitate notification.
stability: This material is amsidered to be stable;boweva, its StSwityhasnMbea!rigorously assessed. NIST will continuously monitor rhis material and report ahy subeuativc cbangcs in certification to the purchaser.
- Use: A mixurnurn sample mass of 100 mg (dry m8.w ree [9stmca* olls forDryiIlg)shouldbeased.ndsample
preparation procedures should be designed to effect complete dissolutiiopfor analytical derenninatiwsto k related to the certified values provided.
&. - 1
lor Drying: W h m n o n v o l a t i b e l e m e n r s a r e a b e ~sampks should k ~cuumdriedamt om
temperame for 24 h or oven dried for 2 h at 110 'C. Volntile elermar (e.g.,
mercury. and selenium) should
be &ermined on samples as received, sepmate sampla should be dried according to meSe imfltcti to obtain a
correction factor for moisrurt. Moisture comUm' os arc thm made to mwauememvalues befon amparing them
to the certifiedvalues. [Notethatthe mass loss andryingat the timC 0fcertiAcaClonwas found to be in the range of
4.7 7% to 6.6 96 when using the rtcommcodcd drykg procedUrrs.1
Statistical consultationwas provided by L.M.Gill of rbe NIST SaWcal snoia#rinsDivision.
The overall direction ivnd cOOrdiOatioD of tbe analyses were rmQ tk chahmdu'p of J.D. Fas~mof the NIST Analytical Chemistry Division.
The technical and support aspects involved in r k originalpreparation. certification,and issuance of this SRM were coordinated through the Standard Referare Materials Program by J.S. KaDc. Revision of this certificate was
coordinated through the Standard Reference Materials Program by B.S. MacDolllld.
Gaithersburg, M D 20899
Certificate Issue Dare: October 25, 1996 (Revisionof certificate dated 6-22-95 to include Eddendum)
Thomm E. Gills. Chief Standard Reference Materials Program
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. I
Sourrc sad Repamtiom d We*. The U.S. Geologicrl Swcy (USGS), under cowact to NIST. obuincd pniplly dehydrated sewage cake material from tk Menopoliua Dmer Sewage Disposal District No, 1. Ibe
mated(Ipp0ximUcly 182 I r s ) w r , ~ i n p l a r t k - l i ~ r r d o a r r s p a r t a d Ut SoG~S faciiitier ia L;rlrcwood.
b
CO for proceuina. hum dried &I ambient tcmpeMurr inr forcsdakchamber, grormd tom8 74 m. (200mesh)
sieve. blended for 24 h to wun bomogmeity of the pulverizCa material after which test umples were taken h m
tbc blender forplimirnry bmoga&y malyJcs. The mmefialwmtitcnndiationslerilited. 'Ibc rterilized moterial
WIU shipped inbulk to NUT, where the material was bottled m a g uniu a&r nblendq for 4 h.
- Anolysb: The bornoseniry was asscsxd a! USGS on 10 replicate samples of bulk mterial for over 40elements wing x-ray flwesceacc (XRF) and/or iaductively coupled plasma atomic emission spccttomeuy (ICP-AES). Homogarity wy f\atbrr PKualduringcmicrViOaadysis; Isampk Oizcs of 100 mg or greater. No saxnpk-to-
sampk variations in excess of thosc expected from the llarlyticzl mwurcmcnts wen detected.
Anmic
Cadmium
copper
Lepd
Mercury Molybdearmr Nickel
z i SClClliWll
7.82 f 0.28 12.78 f 0.72 627.4 f 13.5 202.1 f 6.5 3.64 f 0.25 46.7 f 3.2 80.2 $ 2.3 16.0 f 1.6 1273 f 53
Nitrogen
4.78 f 0.11
Element
chromium Silver
Mass Fraction
(in m m
202 f 9 98 f 8
Element
Page 2 of 4
* 1.6 f 0.1
3.9 0.1 2.8 f 0.1
0.59 0.04 2.42 f 0.09 0.49 f 0.03 5.1 f 0.2 0.21 f 0.02 0.32 f 0.c13
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Addendum to Standard Reference Material* 2781
Domestic Sludge
Leachable Mass Fractions Using US.EPA and NJDEP Methods for Ramc Atomic Absorption Spectrometry and Inductively Coupled Plasma Atomic Emission Spectromeq
IL
The CenifKd conctntntida values of constin~~ealemcn~in~ thit certificate are @vmas totalmass Froctioas. To
obtain total mass fractions, either subsamples of the SRM must be completely decompored or the sample must k
amlyzeddirealyiaiusdidfonn. Formixedaciddissdatiaa,hydroffuon- cacidmwbcirrhdtdinbreacidminat
to totally dissolve siliceous material prrsent in sludge.
For a number ofcnvimuneaolmaiming purposes, acidexaambk ma55 fractiossofclewnts are o f h used rather
th?n total mass h;aEti. Acid emactable metbodsdo aof llCCCSSUlyl result in tarl decomposition of thc sludge. It should be noted tb?t d t s obuined using acid lcacb Maditions arc often depicted in repons as mal result). However.reponcd acid labile or urnactablemass fmioos of elements arc gumally lower than tolll mass fractions. Results are often presmcd as measured mass fractioas in the -hate incomparisaatothetotal or certified mass fractions. The recovery of an ekmmt as a pcrcmt oftaal is a imaionof several factors such at the mode of
occurrence in the sample. leach medium. leach the. temperature coixiitkms, and pH of the sampk-leachmedium
mixture [11.
In its moaiurriag programs. thc u.s,Epviroamenut Rotccm. aAgcrry(U.S.EPA)bascsrabli&edanumk+ofkach
methods. such as Methods 3015. 3050,ad 3051 [2,3] far the dcttrmiDMioa of acid labile or exmaable mass
lractMN of ekmem. The New Jersey -of
the
mEP)bardmlop!!diuoWnruchmtbod.
NJDEP I00 for state UK [4]. Ihe NJDEP and dr U.S. EPA prepad samples of SRM 2781 uaiag h e NJDEP 100
method and EPA Methods 30% Ud 3OSl a d analyzed tht resulting leachates by flame atomic absorption
spectrometry (FAAS) and inductively couplea plasma atomic emissioa specvomeuy (ICP-AH).
Rcferrncc values havc kcamabhbcd fortbc acid-kdt&lemass baicms ofsevenl ek3nenrr inSRM2781. Ibcse values arc the meylJofpn Iesulaifiom Itr diffka* k d l mQMco3edmtbods ladcmwmthsItssd 'Ibcnkrrnce
v a h r s a n l i r s e d i m T a b k l . ~ W i h r b c i r ~ ~ a c b a r e d a9n6%r r n M a r r ~ o f t h c ~ o f r c o u k t . For some of the ekmmts (copper. inn,silver. vanadium), no StrUinicaUy significant differenceswen found unang
- - - - Mulufrom tht two labontw. rusiagthneorfourcombiaatiollsofs;llaplepepvaDionaadiasvumenulfnmmmma
tcchqws (NJDEP 100 FAAS;NJDEP 100 ICP-AES; JPA 3050 ICP-AES; EPA 3051 ICP-AES). For dl otbtr elelncnts. statistically sipificam bctw#n-laboratory difference were identified and are included in the stated uncertainties. These differraces are s d m cOmpPriSw to control 1imiB for many cmhmmtd monitoring programs. Therefore. the reference valuer an mcani@d. despite t& krwccn-laboramy differences found.
. Reference V.lucs md UncerMiakr The rcfermccvahres given mTrbk 1 arc mt NlSTCmitkd but arc provided
as a reference for U.S. EPA Mu)and 3051. and NJDEP 100 melhods. The UnCerUintks are based on a 95 5% confiiacc interval for tbe mean and include an allawlnct for diffnrrrcs ktw+mthe pnolyticd methods wed.
Gaithenburg. MD 20899
Addendum Issue Date: October 25,1996
Thomas E. Gills, Chief Standatd Referrnee M a r i a l Program
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Element
Aluminum
Barium Cadmium Calcium chromium Copper
IrOn
Lead Magntsium
Maw== Nickel Silver VaMdium Zinc
Table 1. Reference h h Values for SRM 2781
Leachable mass f r a c t i (inmg/kg)
8 04q 570 11
36440 143 601
24 30 183
4 850
745 72.3 86.3 81.9
1 120
fm
f 65
f
2
*f 1830 14
f 16
f 2100
f 1s
f 290
f 33
f
6.3
f
I .7
f
3-8
f34
46 Leach Recovery'
s-o
86 93 71
96
87 91 82
I -
90 88
-I
88
* % Leach Recovery = 100 x
Leach Value
Cerdtkd or Noneenifled Value
CoopclPtiaLAnnlysQandLPbaotorlcs:
. S.J. Nagwmey; New Jcney Dopanment of the EnvinnrmCat Tnntoa NJ.
J. Birri, K.kist;US. Environmental Protection Agency, Edison, NJ.
RJmitEWEs
(1) Kuw, AS., LuchDafa vs Total: Which u d;kvan for SRMs, Frcsadus J. Anal. cbcm. 3 8 : pp 209-213,
(199s).
[2] U.S. EPA I991 Cock of Federal Regulations. T i 40,Part 136. pprpgrppb 33. [3] Federal Register 1-19-95 SW-846 update y2. Fizul. [41 New Jcrsey Administrative Code, 1994. N.J.A.C. T14-4.
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T8ble 3. Methods used far the Analysis of SRM 2781*
I N M , ICP-AES, XRF
RNM, Hyd. AAS, I N M
ID-ICPMS, PCM, RNA& INAA. TXRF
I N M . TXRF, ICP-AES, XRF
I N M . TXRF. KP-AES
ID.IcpMs, RNM, INM,lXRF
INM.TXRF. m-AES.XRF
ICP-AES,ID.ICPMs.TXRF
INAA, ICP-AES. XRF
rn-Cv-AAS, RNA& INAA
ID=ICPMs,ICP-m, "XRF, INM
ICP-AES,IDXPMS, INM.TXRF
IQ-9
XAA
Cdor. ICP-AES, XRF
INAA,TXRF. ICP-AES
Hyd. Ms, RNAs IN&, TXRF
XRF
RNM, INM.lxRF
I N M . ICP-AES,XRF
INAA. TXRF, XRF
ICP-AES, DICPMS, MAA, TXRF
FIA-CV-AAS nyd. MS ICP-AES
ID-ICPMS
INAA PGAA RNAA
TXRF
XRF
M.H. Ahsan
E.S. Beary C.M.Beck I1
D.A. Baker M.S. Epstein
K. Gamty
R.R. Greenberg R.M. tiadsrrom E A .Maclrey
J.R. Moody
B.R. Nonnan P.J. Paulscn M.S. Rearick
T.A. Rwh R. Saraswati J.M. Smeller R.L. Waters, Jr. L.J. Wood
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- [11 Taylor, B.N., 'Guide for the Use of the Intcmuional System ofUnits (SI)." NIST Special Publication 811, 1995 Ed., (April 1995). [2] Schiller, S.B. and Eberbrdt. K.R.. Combining Data from lndependcru Chemical Analysis Metbob, SpeeaoChtmicrl Aao, 468 (12). p~ 1603-1613. (1991). [3] Guide ro the Expnssion of Uncertainly in Mcanmnunr. ISBN 92-6'7-10188-9, 1st Ed. ISO, Geneva. Switzerland, (1993): w also Taylor, B.N.and Kuym, C.E.. 'Gukklks for Evaluating pad w i n g rht Uncertainry of NfsT Measurement Resulu.' NIST Tcchohl Note, 1297. U.S. Government Riming Office. Washington D.C.. (1994).