Document NGX8m9zYEbq8YRB25pDRbzqjD
15) OECD 211-OPPTS 850.1350, Chronic toxicity test (daphnia magna), 454A-130
@ I
PFBS:
- A SEMI-STATIC _LIFE-CYCLETOXICITY TEST WITH THE CLADOCERAN (Daphnia magna)
FINAL REPORT
SAN ITlZEO
WILDLIFE INTERNATIONAL LTD. PROJECT NUMBER: 454A- 130 3M Environmental Lab Project No. E00-1429
U.S. Environmental Protection Agency
Series 850 - Ecological Effects
OPPTS Nimber 850.1300
OECD Guideline 2 11
DEC 0 9 2003
AUTHORS:
Kurt R Drottar
Raymond L. Van Hoven, Ph.D.
Henry 0. Krueger, Ph.D.
STUDY INITIATION DATE: October 6,2000 STUDY COMPLETION DATE: April 11,2001
Submitted to
3M Corporation
Environmental Laboratory Building 2-3E-09 935 Bush Avenue
St. Paul, Minnesota 55 144
WildlifeIntemutional, Ltd.
8598 Commerce Drive Easton, Maryland 2 1601
(410) 822-8600
Page 1 of 80
wildlife International, Ltd.
-2-
OEC 20Q3 Project Number 4j4A-130
SANITIZED
GOOD LABORATORY PRACTICE COMPLIANCE STATEMENT
SPONSOR: 3M Coqoration
TITLE:
PFBS: A Semi-static Life-Cycle 'Toxicity Test with the Cladoceran (Daphnia mugnu)
WILDLIFE INTERNATIONAL, LTD. PROJECT NUMBER: 454A- 130
STUDY COMPLETION: April 11,2001
This study was .conducted in compliancewith Good LaboratoryPracticeStandardsaspublished by the U.S. Environmental ProtectionAgency in 40 CFR. Parts 160 and 792,17 August 1989;OECD Principles of Good LaboratoryPractice(ENV/MC/CHEM (98) 17);and Japan MAFF, 59NohSan, NohficationNo.3850, Agricultural Production Bureau, 10 August 1984, with the following exceptions:
The test substancewas not characterizedin compliance with Good LaboratoryPractices prior to its use in the study. However, subsequent GLP compliantcharacterizationresulted in a purity similarto the original characterization purity.
The stability of the test substance under cclnditions of storage at the test site was not determined in accordance with Good Laboratory Practice Standmar&.
STUDY DIRECTOR:
Kurt R Drottar Senior Biologist
SPONSOR'S REPRESENTATIVE:
DATE
W iW t f e International, Ltd.
-3-
Proiect Number 454A-130
QUALITY ASSURANCE STATEMENT
This study was examined for compliance with Good Laboratory Practice Standards as published by the
U.S. Environmental ProtectionAgency in 40 CFR. Part 160 and 792, 17August 1989; OECD Principlesof
Good Laboratory Practice (ENVMCKHEM (98) 17; and Japan MAFF, 59 NohSaqNotificationNo. 3850, Agricultural Production Bureau, 10 August 1984. The dates of all inspections and audits and the dates that any findings were reported to the Study Director and Laboratory Management were as follows:
ACTMTY: Test Substance Preparation Analytical Sample Preparation Exposure Initiation,Offspring Observations, Length Measurements and Offspring Counts Analytical Sampling Biological Data and Draft Report Analytical Data and Draft Report Final Report
DATE CONDUCTED: February 7,2001 February 9,2001 February 21,2001
February 28,2001 February 28,2001 March 21 - 23 and 26,2001 March 26 and 29,2001 April 10 and 11,2001
DATE REPORTED TO: STUDY DIRECTOR: MANAGEMENT:
February 7,2001
February 9,2001
February 9,2001
February 14,2001
February 21,2001
February 22,2001
February 28,2001 February 28,2001 March 26,2001 March 29,2001 April 11,2001
March 2,200 1 March 2,2001 March 27,2001 March 29,2001 April, 11,2001
Kimbefy A. Hox& Quality Assurance Representative
W i l d l i f eInternational, Ltd.
-4-
Project Number 454A- 130
mpom APPROVAL
SPONSOR: 3M Corporation
TITLE:
PFBS: A Semi-static Life-Cyclc: Toxicity Test with the Cladoceran (Daphniamagna)
WILDLIFE INTERNATIONAL LTD. PROJECT NUMBER: 454A- 130
STUDY DIRECTOR:
Kurt R. Drottar Senior Biologist
MANAGEMENT:
I
Henry%. &eger, Ph.D. Director, Aquatic Toxicology and Non-Target Plants
DATE DATE
wildlife International. Ltd.
-5-
Proiect Number 454A-130
TABLE OF CONTENTS
TitleKover Page ........................................................................................................................................... I
Good Laboratory Practice Compliance Statement ....................................................................................... .2
Quality Assurance Statement..........................................
............................................... 3
Report Approval ........................................................................................................
...........4.
Table of Contents....................................................................................
....................... 5
summary ............
................................
................................................................ 7
................................................................................................................................
Objective............. ...................................................................................................................................... 8
ExperimentalDesign......................
.......................................... 8
Materials and Methods...................
.................................. 9
Results and Discussion ..................................
....
.............................................. 13
Conclusions.........................................................................................................................................
References ................................................................................................................................................... 16
TABLES
Table 1 - Summary of Analytical Chemistry Data .............................. Table 2 - Temperature of Water in the Test Chambers ....................... Table 3 - Dissolved Oxygen Content of Water in the Test Chambers. Table 4 - pH of Water in the Test Chambers........................
............................................... 17 ............................................... 18
................................ 20 ..................................... 22
wildlife International, Ltd.
-6-
Project Number 454A-130
TABLE OF CONTENTS
- Continued -
TABLES (Continued)
Table 5 - Specific Conductance, Hardness and Alkalinity in the Negative Control
and Highest Treatment Group ............. ..................................................................................... 24
Table 6 - Summary of Cumulative Percent Mortality and Treatment-RelatedEffects
for First-Generation Daphnids ............. ..................................................................................... 25
Table 7 - Summary of Daphnia magna Reproduction During the Life-Cycle Toxicity Test.................. 26
Table 8 - Summary of Length and Dry Weight of SurvivingFirst-GenerationDaphnids....................... 27
Table 9 - Cumulative Percent Mortality/Immobil.ity and Treatment-RelatedEffects for
Second-Generation Daphnids ..............,..................................................................................... 28
Appendix 1
Appendix 2 Appendix 3 Appendix 4
Appendix 5 Appendix 6 Appendix 7 Appendix 8
APPENDICES
- Specific Conductance, Hardness, Alkalinity and pH of Well Water
Measured During the 4-Week: Period Immediately Preceding the Test ..................... 29
- Analyses of Pesticides, Orgarucs and Metals
in Wildlife International, Ltd. Well Water ................................................................. 30
- The Analysis of PFBS in Freshwater in Support of
Wildlife International, Ltd. Project No.: 454A-130 .................................................. 32
- Cumulative Percent Mortality and Treatment-RelatedEffects -
First-GenerationDaphnids ....................._................................................................... 52
- Neonate Production..................................................................................................... 73
- Length and Dry Weight of SurvivingFirst-GenerationD a p h d s ............................. 77
- Changes to the Protocol.............................................................................................. 79
- Personnel Involved in the Study ................................................................................. 80
~~~~
WildlifeInternational, Ltd.
SANITIZED
- 7 - DEC 0 9 2003
Proiect Number 454A-130
1 SPONSOR:
SPONSOR'S REPRESENTATIVE:
LOCATION OF STUDY, RAW DATA AND A COPY OF THE
FINAL REPORT:
WILDLIFE INTERNATIONAL LTD. PROJECT N T J ~ B E R : TEST SUBSTANCE: STUDY:
NOMTNAL TEST CONCENTRATIONS MEAN MEASURED TEST CONCENTRATIONS: TEST DATES:
LENGTH OF TEST:
TEST ORGANISM: SOURCE OF TEST ORGANISMS:
AGE OF TEST ORGANISMS:
SIJMMARY 3M Corporation
Wildlife International, Ltd. Easton, Maryland 2 1601
454A- 130 Perfluorobutanesulfonate, Potassium Salt (PFBS) PFBS: A Semi-static Life-Cycle Toxicity Test with the Cladoceran (Daphnia magna)
Negative Control, 63, 125,250,500, 1000 and 2000 mg a.i./L
Negative Control, 60, 121,247,502,995 and 1876 mg a.i./L Experimental Start - February 7,200 1 Biological Termination - February 28,2001
Experimental Termination - March 2,200 1
2 1 Days
Neonate Cladocerans (Daphnia magna) Wildlife International, Ltd. cultures Easton, Maryland 21601 Juveniles c 24 hours old
MATC :
707 mg a.i./L
wildlife International, Ltd.
-8-
Project Number 454A-130
INTRODUCTION T h s study was conducted by Wildlife International Ltd. for 3M Corporation at the Wildlife International, Ltd. aquatic toxicology facility in Easton, Maryland. The in-life phase of the test was
conducted from February 7,200 1to February28,200 1. Raw data generatedby Wildlife International,Ltd.
and a copy of the final report are filed under Project Number 454A-130 in archves located on the Wildlife International Ltd. site.
OB,JECTIVE The objective of thls study was to determinethe effects of Perfluorobutanesulfonate,Potassium Salt (PFBS) on the survival, growth and reproduction of the cladoceran (Daphnia magna) during a 21-day exposure period under semi-static test conditions.
EXPERIMENTAL DESIGN Daphmds were exposed to a geometric series of six test concentrationsand a negative (dilutionwater) control. Ten replicatetest chambers were maintainedin each treatment and control group with one daphmd in each test chamber. Nominal test concentrationswere selectedin consultationwith the Sponsor,and were based upon the results of an acute toxicitytest. Nominal test concentrationswere 63, 125,250,500, 1000 and 2000 mg active ingredient (a.i.)/L. Mean measured concentrations were determined from new and correspondingold solutions during each week of the test. Daphnids were transferred to new solutionsevery Monday, Wednesday and Friday during the test.
First-generationdaphnidswere observeddaily for survival,the onset of reproduction, and clinical signs of toxicity. With the onset of reproduction,the number of second-generation neonates were counted (number of live neonates, number of dead or immobile neonates and number of aborted eggs) every Monday, Wednesday and Friday duringthe test. If available,twenty second-generation neonatesfrom each treatment and the controlwere exposed under static test conditionsfor 48 hours. At test termination, the length and dry weight of each first-generationdaphmd was determined. The no-observed-effect-concentration(NOEC)and lowest-observed-effect-concentration(LOEC) were determined by examinationof the mortality, growth and reproductiondata. The maximum acceptabletoxicant concentration(MATC)was calculatedas the geometric mean of the NOEC and LOEC.
WildlifeInternational, Ltd.
SANITIZED - 9 - DEC 0 9 2003
Project Number 454A-130
MATERI.ALSA N D METHODS The study was conducted based on the procedures outlined in the protocol,"PFBS: A Semi-staticLifeCycle Toxicity Test with the Cladoceran (Daphnia magna)".The protocol was based onprocedures outhed
in the U.S. Environmental Protection Agency Sleries850 - Ecolog~calEffects Test Guidelines OPPTS
Number 850.1300 (1); OECD Guideline 21 1. Daphnia magna Reproduction Test (2); Standard Evaluation Procedure, Daphnia magna Life-Cycle (21-Day Renewal) Chronic Toxicity Test (3); and ASTM Standard E 1193-96, Standard Guide jbr Conducting Renewal Life-Cycle Toxicity Tests with Daphnia magna (4)...
Test Substance
The test substance was received from 3M Corporation on June 28, 2000 and was assigned Wildlife
International, Ltd. identification number 5292. The test substance, a whte powder, was identified as
Potassium Perfluoro Butane Sulfonate, AKA
Developmental Product, AKA PFBS, lot 2, CAS
Number 29420-49-3. Information provided by the Sponsor indicated a purity of 97.90%. A subsequent
revision of the certificate of analysis inchcated a l~urityof 97.3% and an Expiratiofleassessment Date of
January 17,2002. The test substance was stored at ambient room temperature.
Preparation of Test Concentrations Nominal test concentrations were 63, 125,250,500, 1000 and 2000 mg a.i./L. A 4-L primarystock
solution was prepared by adding the test substance to W sterilized dilution water at a concentrationof 2000 mg a.i./L. The test solution was stirred with an electric stamless steel top-down mixer until all the test substance was dissolved. The primary stock solut.ionwas proportionally diluted with W sterilized dilution water to prepare 2-L of the other five test concentrations. All ddutions were inverted to mix. M e r mixing, 200 mL of test solution was added to the 10 replicate test chambers for each treatment group. New solutions were prepared for each renewal day. After mixing, all test solutions appeared clear and colorless. All test concentrations were adjusted for the original reported purity of the active ingredient in the test substance (97.9%).
Test Organism The cladoceran, Daphnia magna, was selected as the test species for thls study. Daphmds are
representative of an important group of aquatic invertebrates and were selected for use in the test based upon
wildlifeInternational, Ltd.
- 10-
Proiect Number 454A- 130
past hstory of use and ease of culturingin the lab'oratory. D a p h d neonates used in the test were less than 24-hours old and were obtained from culturesmaintainedby Wildlife International,Ltd., Easton, Maryland.
Adult daphnidswere cultured at approximatelythe same temperature as used duringthe test in Wildhfe International,Ltd. well water. Daphnids in the cultures were held for at least 15 days prior to collection of the juveniles for testing. The adults showed no s i p s of disease or stress during the holdingperiod. During the 14-day holding period preceding the test, wate:r temperaturesranged from 19.8to 20.1"C. ThepH ofthe water ranged from 8.1 to 8.3 and dissolved oxygen ranged from 8.3 to 8.6 mg/L. Instrumentation and methods used for water measurements are describedin the Environmental Conditions sectionof h s report.
Neonate daphnids ( e 4 hours old) were obtained for testing from four individual adult d a p h d s . At test initiation,thejuvenile d a p h d s were collected from the culturesand placed in glass beakers oneto two at a time until each beaker contained 10 daphnids. The beakers were then impartially assigned to treatment groups. One daphnid was then transferred to each test chamber using a wide-bore pipet underneath the aidwater interface. Daphnids in the cultures and those used in the test were fed a mixture of yeast, Cerophylla, and trout chow (YCT, 1800 mg TSSL), as well as a suspension of the freshwater green alga, Selenastrum capricornutum (approximately3.5 r: lo7cells/mL). Duringthe test, eachtest chamberwas fed 0.5 mL of YCT and 1.0 mL of Selenastrum once daily.
Test Apparatus Test chambers were 250-mL plastic (Nalgenb) beakers containing200 mLof test solution. The depth
of test solution in a representative test chamber was approximately 5 cm. Test chambers were indiscriminatelypositionedby treatmentgroup in an environmental chamber set to maintain a temperatureof 20+1C. The test chambers were labelled with the project number, test concentration and replicate.
Dilution Water The water used for culturingand testing was freshwaterobtainedfrom a well approximately40 meters
deep located on the Wildlife International, Ltd. site. The well water is characterized as moderately-hard water. The specificconductance, hardness, alkalinity,and pH of the well water duringthe four-week period immediately preceding the test are presented in Appendix 1.
wildlife International, Ltd.
-11-
Project Number 454A- 130
The well water was passed through a sand filter to remove particles greater than approximately25 tun, and pumped into a 37,800-L storage tank where the water was aerated with spray nozzles. Prior to use, the water again was filtered to 0.45 pm and passed through a UV sterilizer to remove microorganisms and fine particles. The results of periodic analysesperformed to measure the concentrationsof selected contaminants in well water used by Wildlife International,Ltd. are presented in Appendix 2.
Environmental Conditions Lightingused to illuminate the cultures and test chambers duringculturing andtesting was providedby
fluorescent tubes that emitted wavelengths similar to natural sunlight (Colortone0 50). A photoperiod of 16 hours of light and 8 hours of darkness was controlled with an automatic timer. A 30-minute transition period of low light intensity was provided when lights went on and off to avoid sudden changes in lighting. Light intensitywas measured at test initiation and at weekly intervalsthereafterwith a SPER Scientific Ltd. light meter. Light intensity ranged from 357 to 512 lux at the surface of the water (Negative Control, Replicate A).
Temperature was measured in alternating replicates of each treatment and the control group at test initiation, in old and new test solutions on renewal days, and at test termination using a liquid-in-glass thermometer. Temperature was also measured continuously in one negative control replicate using a Fulscope EWC Recorder. Recorder measurements were verified with a liquid-in-glassthermometerprior to test initiation and at least weekly thereafter. The target test temperaturewas 20k 1C. Dssolved oqgen was measured daily in alternating replicates during the first seven days of the test, in old and new solutions on renewal days, and at test termination. Measurements of pH were made in alternating replicates at test initiation, in old and new solutions on renewal days and at test termination. Hardness, alkalinity and speclfic conductance were measured in water samples colltxted from alternatingreplicates of the negativecontrol and the highest test concentration at test initiation and at approximately weekly intervals thereafter (new solutions).
Measurements of pH were made using a Fisher Accumet Model 915 pH meter, and dissolvedoxygen was measured using a Yellow Springs Instrument Model 5 1Bdissolvedoxygen meter. Specificconductance was measured using a Yellow Springs Instrument Model 33 Salinity-Conductivity-Temperaturemeter.
WildlifeInternational, Ltd.
- 12-
Proiect Number 454A-130
Hardness and alkalinitymeasurements were made by titration based on procedures in StandardMethoakfor the Examination of Water and Wastewater (5).
Biological Observations and Measurements The first generation daphmds were observed daily during the test for survival, the onset of
reproduction,and clinical signs of toxicity. The criteria for death included whte opaque coloration,lack of movement of appendages,absenceof heartbeat and lack of responseto gentleprodding. Immobilization was defined as lack of movement except for minor activity of the appendages. The presence of eggs in the brood pouch, aborted eggs, males or ephippia were also recorded.
With the onset of reproduction,the number of second-generation neonates were counted (number of live neonates, number of dead or immobile neonates and number of aborted eggs) and recorded every Monday, Wednesday and Friday during the test. At each observation period, the live first-generation daphnids were retained and the second-generation daphnids were discarded. On Day 14, the secondgenerationneonateswere collected and used for the second-generation acute exposure. At test termination, the length (measured from the apex of the head to the base of the spine) and dry weight were determined for each survivingfirst-generationdaphmd. The individualdaphnidswere removed from the test chambers and placed into tared~aiuminumdrymg pans. The length of each daphmd was determinedusing a caliper. The pans were then placed in a drymg oven at approximately60C for approximately46 hours. The pans were removed from the dryingoven and placed in a desiccatorto cool. When cool, the pans were weighed using a Mettler AE-240 analytical balance.
Statistical Analyses Statistical analyses were performed on survivalof first-generationdaphmds, the number of liveyoung
and the length and dry weight of the survivingfirst-generation daphnids. Survivaldata were analyzed using Fisher's exact test. Treatment groups with sigmficant survival effects were excluded from the analyses of reproduction and growth. Reproduction and growth (length and dry weight) data were evaluated for normality and homogeneity of varianceusing the chi-squaretest and Bartlett'stest, respectively. If the data met the assumptions of normality and homogeneity, the Bonferroni t-test was used to identify treatment groups that were statisticallyreduced in comparison to the negative control (p I; 0.05). If the data failed the assumptions of normality or homogeneity, transformationswere appliedto the data in an attemptto correct
wildlife International, Ltd.
- 13 -
Project Number 454A-130
the condhon. If transformations failed, Wilcoxon's rank sum test with the Bonferroni adjustment was used to evaluate the data (p I 0.05). All statistical tests were performed on a personal computer using TOXSTAT Version 3.5 (6) statistical software.
Analytical Chemistry Water samples were collected from new 2nd old solutions each week during the test. Duplicate
samples of new solutions were collected from the freshly prepared solutions. Duplicate samples of the old solutions were collected from a composite of the remaining replicate test chambers. Samples were collected in plastic scintillation vials and were analyzed as soon as possible without storage. Analytical procedures used in the analysis of the samples are provided in Appendix 3.
RESULTS A N D DISCUSSION
Verification of Test Concentrations Results of analyses to measure concentrations of PFBS in water samples collected during the test are
presented in Table 1 and the analytical chemistryreport (Appendix3). Nominal concentrationsselected for use in the study were 63, 125, 250, 500, 1000 and 2000 mg a.i./L. Measured values of new (freshly prepared) samples ranged from 85 to 103% of nominal values, whereas measured values from the .ol.d solutionsranged from 86 to 106%of nominal values. Consequently,PFBS was stablethroughouttherenewal periods. When measured concentrationsofsamples collected during each week ofthe test were averaged,the mean measured concentrations were 60,121,247,502,995 and 1876 mg a.i./L, which represented 95,97, 99, 100, 100 and 94% of nominal, respectively. The results of the study were based on mean measured concentrations.
Physical and Chemical Measurements of Water Measurements of temperature, dissolved oxygen and pH are presented in Tables 2, 3 and 4,
respectively. Manual water temperature measurements were within the range of 20&l0Cestablishedfor the test. However, there were two instances when the continuous temperature monitor reached 18C. This
occurred duringrenewal of test solutions and was probably the result of the temperatureprobebeingexposed
to air. Dissolved oxygen concentrations remained 27.9 mg/L (87% of saturation) throughout the test. Measurements of pH ranged from 7.9 to 8.7.
wildlifeInternational, Ltd.
- 14-
Project Number 454A- 130
Measurements of specificconductance, hardness and alkalinity in the negative control and the hghest treatment group are presented in Table 5. No apparent dlfferences were observed for hardness or alkalinity throughoutthe exposure period. However, condmtivitywas elevatedin the 1876mg a.i./L treatment group in comparison to the negative control.
Survival and Biological Observations A s u m m a r y of the results of the observations of mortality and sublethal signs of toxicity for first-
generationdaphnids are shown in Table 6. Daily observationsare provided in Appendix 4. ARer 21 days of exposure, survival in the negative control group was 90%. Survival in the 60, 121,247,502, 995 and 1876 mg a.i./L treatment groups was 100, 100, 100, 100, 70 and 20%, respectively. Fisher's exact test showed that survivalwas significantlydifferent in the 1876 mg a.i./Ltreatment group in comparison to the negative control (p 5 0.05).
Reproduction A s u m m a r y of the mean number of liveyoung produced by the first-generationd a p h d s is presented in
Table 7. A complete listing of the number of neonatesproduced is provided in Appendix 5. Daphds in the control and PFBS treatment groups ~ 9 9 m5 g a.i./L started producing neonates on Day 8. There were no observations of aborted eggs in any treatment group. Reproduction averaged 86 young per adult in the
negative control. Reproduction in the 60,121,247,502 and 995 mg a.i./Ltreatment groups averaged 173,
149, 167, 89 and 43 young per adult, respectively. The Bonfenoni t-test showed that reproduction was significantlyreduced in the 995 mg a.i./Ltreatmentgroup in comparison to the negativecontrol (JJ I 0.05). The 1876mg a.i./Ltreatment group was not included in the statistical analysis of reproductionor growthdata due to a statistically significant effect on survival.
Growth A s u m m a r y of the mean lengths and mean d r y weights of the surviving first-generationd a p h d s are
presented in Table 8. Individual measurements are provided in Appendix 6. The mean length and dry weight of first-generationdaphnids in the negative control was 4.18 mm and 0.80mg, respectively. Wilcoxon'srank
sum test showed that mean length was significimtly reduced in the 995 mg a.i./L treatment group in comparison to the negative control (JJ r; 0.05).
wiId1(fe I nternationa1, Ltd.
- 15 -
Project Number 454A-130
Second-Generation Acute Exposure The results of the second-generation acute: exposure are presented in Table 9. After 48-hours of
exposure, survival in the negative control was 100%. Survival in the 60, 121,247,502 and 995 mg a.i./L treatment groups was 100, 100, 100, 100 and loo%, respectively. A second-generation acute exposurewas not performed for the 1876 mg a.i./L treatment group due to a lack of neonates.
CONCLUSIONS There were no adverse effects on survival, reproduction or growth of Daphnia magna exposed to PFBS at concentrations g502 mg a.i./L. Daphnia magna exposed to 1876 mg a.i./L had sigtllficantly reduced survival. Daphnia magna exposed to 995 mg a.i./L had sipficantly reduced reproduction and length. Consequently, the LOEC for this study, klased on reproduction and length was 995 mg a.i./L. The NOEC was 502 mg a.i./L and the MATC was calculated to be 707 mg a.i./L. The results of the secondgeneration acute exposure indicated a NOEC of 995 mg a.i./L.
wildlifeInternational, Ltd.
- 16-
Project Number 454A- 130
REFERENCES
1 U.S. Environmental Protection Agency. 1996. Series 850 - Ecological Effects Test Guidelines (draft>,OPPTS Number 850.1300: Daphnia Chronic Toxicity Test.
2 OECD Guideline for Testing of Chemicals. 1997. Guideline 2 11: Daphnia magna Reproduction Test.
3 US.Environmental Protection Agency. 1986. Standard Evaluation Procedure, Daphnia magna Life-Cycle (21-Day Renewal) Chronic Toxicity Test. Hazard EvaluationDivision. Officeof Pesticide
Programs, EPA 540/9-86-141.
4 American Society for Testing and Materials. 1997. Standard Guidefor Conducting Renewal Life-Cycle Toxicity Tests with Daphnia magna, ASTM E 1193-96. Phladelpha, PA.
5 APHA, AWWA, WPCF. 1985. StandardMethodsfor the Examination of Waterand Wastewater.
16th Edition, American Public Health Association. American water Works Association. Water
Pollution Control Federation, New York.
'.
6 West, Inc. and D.D. Gulley. 1996. TOXSTAT, Version 3.5. Western Ecosystems Technology,Inc. Cheyenne, Wyoming.
- 17-
Project Number 454A-130
Table 1 Summary of Analytical Chemistry Data
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran, Daphnia magna Well Water
Nominal Concentration
(mg a.i./L)
Day 0 (New)
Day 2 (New)
Day 5 (Old)
Negative Control 63
<LoQ' <LOQ
57.1 59.4
<LOQ <LOQ
63.4 62.2
<LOQ <LoQ
63.7 64.5
125
117
121
127
118
125
132
250
239
251
265
237
249
262
500
490
498
544
484
498
537
1000
973
1004
1055
980
1007
1067
2000
1893
1879
2014
1955
1908
2078
'The limit of quantitation (LOQ) was 20.0 mg a.i./L.
Day 9 (New)
<LOQ <LOQ
58.3 59.3
115 116
24 1 230
474 482
956 946
1774 1835
Day 12 (Old)
<LOQ <LOQ
58.2 58.7
116 117
235 238
507 516
999 1002
1894 1962
Day 16 (New)
<LOQ <LOQ
54.5 53.2
114 119
257 248
497 477
973 960
1805 1836
Day 19 (Old)
<LOQ <LOQ
63.9 60.0
121 122
250 248
503 507
1014 1022
1841 1885
D~~ 2 1 (Old)
<LoQ <LoQ
63.8 64.6
127 127
25 1 250
525 500
964 991
1719 1734
Mean Measured Concentration (mg a.i./L)
<LOQ
60
121
247
502
995
1876
Percent of
Nominal
--
95
97
99
100
100
94
- 18 -
Table 2 Temperature of Water in the Test Chambers'
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran,Daphnia magna Well Water
Mean Measured Test Concentration
(mg a.i.4,)
Negative Control
Day 0 New 20.4
Day 2
Old
New
20.9
21.0
Day 5
Old
New
21.0
19.4
Temperature ( O C)
Day 7
Old
New
20.8
20.4
60
19.9
20.9
20.5
21.0
19.0
20.7
20.0
121
19.8
20.8
20.8
20.8
9.0
20.8
19.7
247
19.9
21.0
20.9
21.0
9.0
20.9
19.8
502
19.9
20.9
20.9
21.3
9.0
20.9
19.8
995
20.0
21.0
21.0
20.9
19.0
21.0
19.9
1876
20.2
21.0
21.0
21.4
19.2
21.0
20.1
'Temperature measured continuously during the test ranged from 18.0"C to 21.O"C.
Project Number 454A-130
Day 9
Old
New
20.6
19.9
20.4
19.7
20.6
19.9
20.8
19.4
20.5
20.8
20.4
20.8
20.6
20.8
Day 12
Old
New
19.5
19.8
19.3
19.6
9.5
19.6
9.4
20.0
9.3
20.0
20.8
20.1
19.6
20.1
- 19-
Project Number 454A-130
Table 2 (Continued) Temperature of Water in the Test Chambers'
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran, Daphnia magna Well Water
Mean Measured Test Concentration
(mg a i /L)
Negative Control
Dav 14
~
Old
New
20 9
20 9
Temperature ( O C)
Dav 16
Old
New
20 5
19.8
60
20.3
20.5
20.4
19.4
121
20.8
20.2
19.9
19.3
247
20.9
20.0
19.6
19.3
502
20.8
20.1
20.7
19.7
995
21.3
20.1
19.8
19.7
1876
21.1
20.3
20.6
19.6
'Temperature measured continuously during the test ranged ffom 18.0"C to 21.O"C.
Dav 19
Old
New
20.7
20 3
21.0
19.7
21.0
19.5
20.9
19.5
20.5
19.6
21.0
19.7
21.0
19.9
Dav 21 Old 21 0 20.8 19.9 21.0 20.8 21.0 21.0
- 20 -
Project Number 454A-130
Table 3 Dissolved Oxygen Content of Water in the Test Chambers'
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran,Daphnia magna Well Water
Mean Measured Test Concentration
(mg a.i./L)
Negative Control
Day0 New 7.9
Day 1 Old 8.2
Day 2
Old
New
8.6
8.4
Dissolved Oxygen Concentration (rng/L)
Day 3
Day 4
Day 5
Old
Old
Old
New
8.6
8.4
8.4
8.6
60
8.2
8.2
8.6
8.5
8.6
8.4
8.4
8.6
1.2 9 1
8.0
8.2
8.6
8.5
8.6
a .?
a.4
8.6
247
8.0
8.2
8.6
8.5
8.6
8.4
8.4
8.6
502
7.9
8.2
8.6
8.6
8.6
8.4
8.4
8.6
995
8.1
8.2
8.6
8.4
8.6
8.4
8.4
8.6
1876
8.2
8.2
8.6
8.5
8.6
8.4
'A dissolved oxygen concentration of 5.4 mg/L represents 60% saturation at 20C in freshwater
8.4
8.6
Day 6 Old 8.5 8.5 8.5 8.5 8.5 8.5 8.6
Day 7
Old
New
8.2
81
8.2
8.3
8.2
8.3
8.2
8.2
8.2
8.2
8.2
8.5
8.2
8.8
-21 -
Project Number 454A-130
Table 3 (Continued) Dissolved Oxygen Content of Water in the Test Chambers'
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran,Daphnia magna Well Water
Mean Measured Test Concentration
(mg a.i./L)
Negative Control
Day 9
Old
New
8.3
8.4
Dissolved Oxygen Concentration (mg/L)
Day 12
Day 14
Day 16
Old
New
Old
New
Old
New
8.7
8.0
8.2
8.6
8.3
8.4
60
8.3
8.5
8.6
8.7
8.3
8.4
8.2
8.6
121
8.2
8.6
8.6
8.6
8.2
8.4
8.2
8.7
247
8.2
8.6
8.6
8.6
8.2
8.4
8.4
8.6
502
8.3
8.6
8.6
8.6
8.3
8.4
8.2
8.7
995
8.4
8.8
8.6
8.8
8.2
8.4
8.4
8.9
1876
8.3
9.0
8.8
9.0
8.4
9.0
'A dissolved oxygen concentration of 5.4 mg/L represents 60% saturation at 20C in freshwater.
8.3
9.0
Day 19
Old
New
8.4
8.1
8.2
8.1
n.4
8.!
8.2
8.2
8.4
8.4
8.5
8.6
8.5
9.0
Day21 Old 8.3 8.2 8.3 8.0 8.2 8. I 8.4
- 22 -
Project Number 454A-130
Table 4 pH of Water in the Test Chambers
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation
PFBS Cladoceran, Daphnia magna
Well Water
Mean Measured
Test Concentration (mg a.i./L)
Negative Control 60
121
247 502
995
- 1876
Day 0 New 7.9 8.0 8.0 8.0 8.1 8.1 8.2
Day 2
Old
New
8.5
8.0
8.5
8.2
8.6
8.2
8.6
8.2
8.6
8.3
8.6
8.3
8.7
8.4
PH Day 5
Old
New
8.5
8.1
Day 7
Old
New
8.4
8.2
8.6
8.1
8.4
8.2
8.6
8.1
8.4
8.2
8.6
8.1
8.4
8.3
8.6
8.1
8.5
8.3
8.7
8.2
8.5
8.4
8.7
8.2
8.6
8.5
Day 9
Old
New
8.4
8.0
8.5
8.1
8.5
8.1
8.5
8.1
8.5
8.1
8.5
8.1
8.5
8.2
Day 12
Old
New
8.5
7.9
8.5
8.0
8.5
8.0
8.5
8.0
8.6
8.1
8.6
8.1
8.7
8.3
- 23 -
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation
PFBS Cladoceran, Daphnia magna
Well Water
Table 4 (Continued) pH of Water in the Test Chambers
Mean Measured Test Concentration
(mg a.i./L) Negative Control
60
121
247
502
995
1876
Day 14
Old
New
8.3
8.2
8.3
8.1
8.4
8.1
8.4
8.2
8.5
8.2
8.5
8.2
8.6
8.2
Day 16
Old
New
8.3
8.0
8.3
8.1
8.4
8.1
8.4
8.1
8.5
8.2
8.5
8.3
8.6
8.4
Project Number 454A-130
Day 19
Old
New
8.3
8.0
8.3
8.0
8.3
8.0
8.4
8.0
8.4
8.1
8.5
8.2
8.6
8.4
Day 21 Old 8.5 8.5 8.6 8.5 8.6 8.6 8.6
wildlife International, Ltd.
- 24 -
Project Number 454A-130
Table 5
Specific Conductance, Hardness and Alkalinity in the Negative Control and Highest Treatment Group
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran, Daphnia magna Well Water
Negative Control .
Time
Parameter Specific Conductance
(pmhos/cm)
Day 0 325
Day 7 335
Day 14 340
Day 21 330
Hardness
128
128
132
128
( m a as CaC03)
Alkalinity
178
180
182
184
( m a as CaC03)
1876 mg a.i./L
Parameter Specific Conductance
(pmhos/cm)
Hardness (mgL as CaC03)
Alkalinity (mg/L as CaC03)
Day 0 800
140
178
Day 7 800
140
180
Day 14 800
128
176
Day 21 850
132
184
- 25 -
Project Number 454A-130
Table 6 Summary of Cumulative Percent Mortality and Treatment-Related Effects' for First-Generation Daphnids
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran, Daphnia magna
Well Water
Mean Measured
Cumulative Observations to Day 7
Test Concentration
YO
YO
(mg a.i./L)
Mortality Immobile
Effects
Negative Control
0
0
10 AN
Cumulative Observations to Day 14
YO
YO
Mortality Immobile
Effects
0
0
10 AN
60
0
0
10 AN
0
0
10 AN
121
0
0
10 AN
0
0
10 AN
247
0
0
10 AN
0
0
10 AN
502
0
0
10 AN
0
0
10 AN
995
0
0
6AN, 4D
30
0
5AN, lD, 1D,G
1876
20
0
8G
80
0
2G
'Observed Effects: AN = Appears Normal, D = Discoloration, G = Appears Smaller *Indicates a si@icant difference fiom the negative control on Day 21 using Fisher's exact test (p 5 0.05).
Cumulative Observations to Day 2 1
% Mortality
YO Immobile
Effects
10
0
8AN, 1D
0
0
10 AN
0
0
10 AN
0
0
10 AN
0
0
10 AN
30
0
6AN, 1D
80*
0
2 D,G
- 26 -
Table 7 Summary of Daphnia magna Reproduction During the Life-Cycle Toxicity Test
Project Number 454A-130
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran, Daphnia magna Well Water
Mean Measured Test Concentration
(mg a.i./L)
Number Of Daphnids
Negative Control
9
Mean Live Young/ Surviving Adult Daphnid
(k SD)
86 (+27)
First Day of
Reproduction
8
Total Number of Dead/Immobile
Neonates
0
60
10
173 (+34)
8
0
121
10
l l n l "-I\
14Y (k4l)
8
0
247
10
167 (+30)
8
0
502
10
89 (+26)
8
0
995
7
43* (+28)
8
0
1876'
2
14 (k 14)
11
3
`Ths treatment was excluded from the statistical analyses of reproduction due to a statistically significant survival effect. *Indicates a statistically significant difference from the control using the Bonferroni t-test (p < 0.05).
Total Number of Aborted Eggs 0
0
0
0
0
0
0
wildlife International, Ltd.
- 27 -
Proiect Number 454A-130
Ta.ble 8
Summary of Length and Dry Weight of Surviving First-Generation Daphnids
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran,Daphnia magna Well Water
Mean Measured Test Concentration
(mg a.i./L)
Number of Surviving Daphnids
Negative Control
9
60
10
121
10
247
10
5 02
10
995
7
Total Length (mm) Mean (kSD) 4.18 (k0.182) 4.89 (kO.111) 4.78 (k0.207) 4.77 (k0.206)
4.26 (k0.480) 3.69* (k0.352)
Dry Weight (mg) Mean (k SD) 0.80 (k0.29) 1.22 (k0.31) 1.21 (k0.34) 0.96 (k0.16)
0.88 (k0.16) 0.51 (k0.16)
1876'
2
2.68 (k0.106)
0.10 (kO.0)
`This treatment was excluded from the statistical analyses of growth due to a statistically significant survival effect.
*Inlcates a sipficant lfference from the negative control using Wilcoxon's rank sum test (p s 0.05).
- 28 -
Project Number 454A-130
Table 9
Cumulative Percent Mortalityhnrnobility and Treatment-Related Effects' for Second-Generation Daphmds
Sponsor Test Substance: Test Organism:
3M Corporation PFBS Cladoceran, Daphnia magna
Mean Measured Concentration
(mg a.i./L) Negative Control
Replicate
A B
Daphnia/ Replicate
10 10
Number Dead 0 0
60
A
10
0
B
10
0
.--
1'41
A
.^
1u
0
B
10
0
247
A
10
0
B
10
0
502
A
10
0
B
10
0
995
A
10
0
' B
10
0
Observed Effects: AN = Appears Normal
2 Hours Number Immobile
0 0
0 0
0 0
0 0
0 0
0 0
Effects 10 AN 10 AN
10 AN 10 AN
i o AN 10 AN
10 AN 10 AN
10 AN 10 AN
10 AN 10 AN
Number Dead 0 0
0 0
0 0
0 0
0 0
0 0
24 Hours Number Immobile
0 0
0 0
0 0
0 0
0 0
0 0
Effects 10 AN 10 AN
10 AN 10 AN
10 AN 10 AN
10 AN 10 AN
10 AN 10 AN
10 AN 10 AN
Percent Immobile and Dead
0
0
0
0
0
0
Number Dead 0 0
0 0
0 0
0 0
0 0
0 0
48 Hours Number Immobile
0 0
0 0
0 0
0 0
0 0
0 0
Effects 10 AN 10 AN
10 AN 10 AN
10 AN 10 AN
10 AN 10 AN
10 AN 10 AN
10 AN 10 AN
Percent Immobile and Dead
0
0
0
0
0
0
wildlifeInternational, Ltd.
- 29 -
Project Number 454A-130
Appendix 1
Specific Conductance, Hardness, Alkalinity and pH of Well Water Measured During the 4-Week Period Irnmediately Preceding the Test
Sponsor:
3M Corporation
Test Substance: PFBS
Test Organism: Cladoceran,Daphnia magna
Dilution Water: Well Water
Specific Conductance , (pmhos/cm)
Mean 309 (N = 4)
Range 305 - 3 10
Hardness (mgL as CaC03)
Alkalinity (mgLas CaC03)
131 (N=4) 178 (N= 4)
124 - 136
176 - 182
PH
8.0 (N = 4)
8.0-8.1
wildlifeInternational, Ltd.
- 30 -
Proiect Number 454A-130
Appendix 2 Analyses of Pesticides, Organics and Metals in Wildlife International, Ltd. Well Water'
Component
Measured Concentration
Component
Measured Concentration
Pesticides and Organics
Aclonifen Alachlor Ametryn Atrazin Azinphos-ethyl Azinphos-methyl ' Azoxystrobin Bifenthrin Bioallethrin Bitertanol Brornacil Bromophos Brornophos-ethyl Broompropylaat Bupirimaat Carbaryl Carbofuran Carboxin Chlorfenvinphos C hloridazon C hlorpropham Chlorpyriphos C hlorpyriphos-methyl
Chlorthalonil
Coumaphos Cyanazin Cytluthrin Cypermethrin C yproconazole Deltamethrin Demeton Demeton-o Desethylatrazin Desisopropylatrazin Desrnetryn Diazinon Dichlobenil Dichloran Dichlorbenzamide Dichlorfenthion Dichlorfluanid
~ 0 . 0 p3 g 5 CO.01 pg/L <0.01 pg/L <0.01 pg/L ~ 0 . 0 4pg/L ~ 0 . 0 8pg/L ~ 0 . 2 p5g/L ~ 0 . 0 5pg/L ~ 0 . 0 5pg/L ~ 0 . 0 5pg/L ~ 0 . 0 5pg/L (0.02 pg/L C0.02 pg/L C0.02 pg/L <0.05 pg/L 4 . 0 5 pg/L ~ 0 . 0 3pg/L C0.02 pg/L C0.02 pg/L ~ 0 . 0 5pg/L 4 . 0 2 pg/L CO.01 pg/L <0.01 pg/L
-4.04 pg/L
<0.02 pg/L <0.05 pg/L ~ 0 . 0 5pg/L ~ 0 . 2 5pg/L ~ 0 . 0 5ppjL C0.02 pg/L C0.02 pg/L 10.02 pg/L <0.01 pg/L <0.02 pg/L
<0.01 pg/L <0.01 pg/L CO.01 pg/L <0.03 pg/L C0.02 pg/L CO.01 pg/L <0.03 pg/L
Dimethomorf Disulfoton DMST Dodemorf Endosulfan-a Endosulfan-P Endosulfan-sulfaat Epoxiconazole Eptam Esfenvaleraat Ethion Ethofumesaat Ethoprophos Etridiazole Etrimphos Fenarimol Fenchlorphos Fenitrothion Fenoxycarb Fenpiclonil Fenpropathrin Fenpropimorf Fenthion
Fenvaleraat
Fluazifop-butyl Fluoroglycofen-ethyl F1uroxypyr:meptyl Flutolanil Fonophos Furalaxyl Heptenophos Imazalil Iprodion Kresoxim-methyl Lenacil Lindane Malathion Metalaxyl Metamitron Metazachlor Methidathion
<0.05 pg/L <0.02 pg/L <0.05 pg/L <0.01 p a <0.01 pg/L <0.01 pg/L <0.02 pg/L <0.05 pg/L 4 . 0 2 pg/L <0.02 pg/L <0.05 pg/L <0.02 pg/L <0.01 pg/L C0.02 pg/L <0.05 pg/L C0.05 pg/L CO.01 pg/L <0.03 pg/L <00.03pg/L ~ 0 . 0 5pg/L ~ 0 . 2 5pg/L <0.01 pg/L CO.01 pg/L
<0.02 p g n
C0.02 pgL. <0.02 pg/L <0.05 pg/L <0.02 pg/L CO.01 pg/L <0.02 pg/L <0.02 pa <0.01 p a 10.05 pg/L <0.02 pg/L <0.05 pg/L C0.02 pg/L C0.02 pg/L ~ 0 . 0 5pg/L <0.05 pg/L <0.02 pg/L <0.02 pg/L
'Analyses performed by TNO Nutrition and Food Institute on samples collected on October 14 and 15, 1999.
wildlifeInternational, Ltd.
- 31 -
Project Number 454A- 130
Appendix 12 (Continued) Analyses of Pesticides, Organics and Metals in Wildlife International, ~ t dW. ell Water'
~~
Pesticides and Organics (Page 2)
Component
Measured Concentration
Component
Measured Concentration
Dichlorvos Dicofol Diethyltoluamide Difenoconazole Dimethoate Paclobutazole Parathion Parathion-methyl Penconazole Pendimethalin Permethrin-cis Permethrin-trans Phosalon Phosmet Phosphamidon-cis Pirimicarb Pirimiphos-ethyl Pirimiphos-methyl Prochloraz Procymidon Prometryn Propachlor Propazin
Propham
Propiconazool Propoxur Propyzamide Prosulfocarb Pyrazophos
<0.01 pg/L
~ 0 . 2 5pg/L
<0.02 pg/L
4 . 0 3 pa
C0.02 pg/L
<0.05 pg/L
C0.01 pg/L
4 . 0 1 pg/L
~ 0 . 0 5pg/L
<0.03 pg/L
co.01 pg/L
CO.01 pg/L
<0.05 pg/L
<0.02 pg/L
~ 0 . 0 5pg/L
<0.01 pg/L
<0.01 pg/L
CO.01 pg/L
C0.02 pa
<0.01 pg/L
<0.01 pg/L
<0.01 pg/L
<0.01 pg/L
-4.02 p&
co.05 pgrL
~ 0 . 0 3pg/L
<0.02 pg/L
<0.02 pg/L
~ 0 . 0 3p&
-
Methoxychlor Metolachlor Metri buzin Mevinphos Nitrothal-Isopropyl Pyrifenox-1 Pyrifenox-2 Pyrimethanil Quizalofop-ethyl Simazin Sulfotep Tebuconazole Tebufenpyrad Terbutryn Terbutylazin Tetrachlorvinphos Tetrahydroftaalimide Tetramethrin Thiabendazole Thiometon Tolclophos-methyl Tolylfluanid Triadimefon
Triadimenol
Triallaat
Triazophos Trifluralin Vamidothion Vinchlozolin
CO.01 pg/L ~ 0 . 0 1pg/L <0.02 pg/L CO.01 pg/L ~ 0 . 0 5pg/L 4 . 0 1 pg/L CO.01 pg/L <0.01 pg/L C0.02 pg/L CO.01 pg/L 4 . 0 2 pg/L <0.05 pg/L ~ 0 . 0 5pg/L CO.01 pg/L <0.01 pg/L CO.01 pg/L ~ 0 . 0 5pg/L C0.01 pg/L <0.05 pg/L ~ 0 . 0 4pg/L <0.01 pg/L ~ 0 . 0 4pg/L <0.05 pg/L
-4.05pg/L
4 . 0 2 pg/L C0.02 pglL c0.02 pg/L <0.01 pg/L CO.01 pg/L
Metals
Magnesium
Sodium Calcium Iron Potassium Aluminum Manganese Beryllium Chromium Cobalt
11.0 mg/L 18.0 mg/L 29 mg/L ~ 0 . 0 1 5mg/L
1.1 mg/L ~ 0 . 0 2mg/L CO.1 pg/L C0.2 pg/L < O S pg/L
C0.2 pg/L
Nickel Copper Zinc Molybdenum Silver Cadmium Arsenic Mercury Selenium
4 . 1 pg/L ~ 0 . 7pg/L <00.25pg/L ~ 0 . p3g/L
4 . 2 Pg/L CO.1 pg/L <OS pg/L <0.025 pg/L
< O S pg/L
'Analyses performed by TNO Nutrition and Food Institute on samples collected on October 14 and 15, 1999.
wildlife International, Ltd.
- 312 -
Proiect Number 454A-130
Appendix 3
THE ANALYSIS OF PFBS IN FRESHWATER IN SUPPORT OF
WILDLIFE INTERNATIONAL, LTD. PROJECT NO.: 454A- 130
wildltfe International, Ltd.
- 33 -
Project Number 454A- 130
REPORT APPROVAL
SPONSOR: 3M Corporation
TITLE:
PFBS: A SEMI-STATIC LIFE-CYCLE TOXICITY TEST WITH THE CLADOCERAN
(Daphnia magna)
WILDLIFE INTERNATIONAL, LTD. PROJECT NO.: 454A-130
3M ENVIRONMENTAL LAB PROJECT NUMBER: E00-1429
PRINCIPAL INVESTIGATOR:
Raw&Van Hoven, Ph.D. Scientist
MANAGEMENT:
Willard'B. Nixon, Ph.D. Director, Analytical Chemistry
DATE
Wildl5feInternational, Ltd.
.- 34 -
Project Number 454A-130
Introduction Freshwater samples were collected from a sc:mi-static life-cycle aquatic toxicity study designed to
determine the effects of PFBS (Perfluorobutane Sulfonate, Potassium Salt) to the cladoceran (Daphnia magna). T h ~ sstudy was conducted by Wildlife International, Ltd. and identified as Project Number 454A -130. The analyses of these water samples were performed at Wildlife International, Ltd. using hgh performance Liquid chromatography with mass spectrometric detection (HPLCIMS). Samples were received for analysis between February 7, 2001 and February 28, 2001 and were prepared for analysis on
..
each sample receipt day.
Analytical Standard
The analytical standard was received from 3M Environmental Technology and Safety Services on
March 27, 2000, assigned Wildlife International:, Ltd. Identification number 52 16, and stored under
ambient condltions. The analylcal standard, a whte powder, was identified as: Potassium
Perfluorobutane Sulfonate
1, Lot 2), expiration date: March 2010. The analytical standard was
further identified with the 3M Environmental Laboratory test control and reference number TCR .
The test substance had a reported purity of 97.90%. A subsequent revision of the certificate of
analysis indlcated a purity of 97.3% and an Expiratiofieassessment Date of January 17, 2002. The
analytical standard was the same material and lot number as the test substance (Wildlife International, Ltd.
Identification number 5292). The analytical standard was used to prepare calibration standards and matrix
fortification samples.
Analytical Method Water samples were analyzed accordmg to the method entitled "Analytical Method Validation for the
Determination of Perfluorobutane Sulfonate, Potassium Salt (PFBS) in Freshwater" (Wildlife International, Ltd. Project No. 454C-115). Samples were diluted in a 50% methanol : 50% NANOpure@water solution so that they fell withm the calibration range of the PFBS methodology. Aliquots of the dilutions were transferred to autosampler vials and submitted for analysis by direct injection. Concentrations of PFBS in freshwater samples were determined by reverse-phase high performance liquid chromatography using a Hewlett-Packard Model 1100 N g h Performance Liquid Chromatograph ("LC) interfaced with a Perkin-
W i l d l @ International, Ltd.
- 35 -
Proiect Number 454A-130
Elmer API IOOLC mass spectrometer (single quadrupole) operated in selective ion monitoring (STM)
detection mode. The mass spectrometer was equipped with a Perkin-Elmer TurboIonSpray ion source.
Chromatographc separations were achieved using a Keystone PRISM RP column (30 nun x 1.5 mm,
3 prn particle size) fitted with a Keystone Javelin C ~GSuard Cartridge (20 mm x 2 mm). The instrument parameters are summarized in Table 1 and a method flowchart is provided in Figure 1.
Primary and Secondary Stock Solutions All primary and secondary stock preparations were adjusted for the purity of the analytical standard
(97.90%). A 10.0 mg a.i./mL primary stock solu.tion of PFBS in methanol was prepared by weighmg 1.0243 g of the analytical standard and bringing to final volume with methanol. Secondary stock solutions (1000, 100, 10.0, 1.00, and 0.100 mg a.i./L) of I'FBS in methanol were prepared by serial volumetric dilution from the primary stock.
Calibration Standards and Calibration Curves Calibration standards were prepared in 5050 methanol: NANOpure@water by appropriate dilutions of
the 10.0 mg a.i./L stock solution of PFBS in methanol. The calibration standards of PFBS, ranging in
concentration from 0.0100 to 0.0500 mg a.i./L, were analyzed with each sample set. Five calibration
standards (different concentrations) were analyzed with the samples. The calibration standard series was injected at the beginning and end of each run,and one standard was injected, at a minimum, after every five samples. Linear regression equations were generated using the peak area responses versus the respective concentrations of the calibration standards. A typical calibration curve is presented in Figure 2. The concentration of PFBS in the samples was determined by substituting the peak area responses into the applicable linear regression equation. Representative ion chromatograms of low and hgh calibration standards are presented in Figures 3 and 4, respectively.
Limit of Quantitation The method limit of quantitation (LOQ) for these analyses was set at 20.0 mg a.i./L calculated as the
product of the lowest calibration standard analyzed (:0.0100mg a.i./L) and the dilution factor of the matrix blank samples (2000).
WildlifeInternational, Ltd.
- 36 -
Project Number 454A-130
Matrix Blank and Fortification Samples Eight matrix blank samples were analyzed to determine possible interference. No interferences were
observed at or above the LOQ during samples analyses (Table 2). A representative ion chromatogram of a matrix blank is presented in Figure 5 .
Freshwater was either fortified with the appropriate PFBS stock solution in methanol (30.0 mg a.i./L), or directly fortified (i.e. without use of camer solvent) with PFBS (400 and 2500 mg a,i./L). Direct fortifications were required for the higher fortificatioin levels due to the limitation in preparing a sufficiently concentrated methanol stock of PFBS. The fortified samples were analyzed concurrently with the test samples to determine the mean procedural recovery (Table 3). Sample concentrations were not corrected for the mean overall procedural recovery of 96.394. A representative ion chromatogram of a matrix fortification is presented in Figure 6.
Example Calculations
Sample number 454A-130-9, nominal concentration of 500 mg a.i./L in freshwater.
First Initial Volume: 0.100 mL
Calibration curve equation:
First Final Volume: 10.0 mL
Slope: 10184392
Second Initial Volume: 0.100 mL
Intercept: 21932.54
Second Final Volume: 25.0 mL
Curve regression weighted llx
Dilution Factor: 25000
PFBS Peak Area: 221526
eak area - (y-intercept)
PFBS (mg a.i./L) measured at ins-trument=
slope
PFBS (mg a.i./L) in sample = PFBS measured at instrument (mg a.i./L) x dilution factor
-- 221526 - 21932.54 25000
10 184392 = 489.9
Wildlife International. Ltd.
-37-
Project Number 454A-130
Percent of Nominal Concentration = - PPFFBBSS((mmggaa.i..i/.L/L))innosmaminpalle
- - 48-9.9 x 100=98.0% - 500
Calculated with HPLCNS instrument s o h a r e : MacQuan, version 1.6.
RESULTS
Sample Analysis Freshwater samples were collected from a senu-static life-cycle toxicity study with the cladoceran
(Daphnia magna) at test initiation, February 7, 2001 (Day 0), on February 9, 2001 (Day 2 - new solutions), on February 12, 2001 (Day 5 - old solutions), on February 16, 2001 (Day 9 - new solutions),
on February 19, 2001 (Day 12 - old solutions), on February 23, 2001 (Day 16 - new solutions), on February 26, 2001 (Day 19 - old solutions) and at test termination on February 28, 2001 (Day 21 - old solutions). The measured concentrations of PFBS in the samples collected at initiation of exposure of the test organisms (Hour 0) ranged from 90.7 to 98.0% of the nominal concentrations (Table 4). Samples
collected at Day 2, Day 5, Day 9, Day 12, Day 16 and Day 19 had measured concentration ranges of 94.0
to 101%, 101 to 109%, 88.7 to 96.5%, 92.4 to 103%, 84.5 to 103% and 92.0 to 102% of nominal values, respectively. Samples collected at test termination (Day 2 1) had a measured concentration range of 85.9 to 105% of nominal values. A representative ion chromatogram of a test sample is shown in Figure 7.
W i l d l i f eInternational, Ltd.
- 38 -
Project Number 454A-330
Table 1 Typical HPLCMS Operational Parameters
INSTRUMENT:
Hewlett-Packard Model 1100 High Performance Liquid Chromatograph with a Perlun-Elmer API IOOLC Mass Spectrometer operated in Selective Ion Monitoring (SIM) Mode
ION SOURCE:
Perlun-Elmer TurboIonSpray
ANALYTICAL COLUMN:
Keystone PRISM RP (30 nun x 1.5nun,3-pm particle size)
GUARD COLUMN:
Keystone Javelin CIScartridge (20 mm x 2 mm)
OVEN TEMPERATURE:
40C
STOP TIME:
3.00 min
FLOW RATE: MOBILE PHASE: INJECTION VOLUME:
200 j.lL/min
25% NANOpzlreO Water with 0.1% Ammonium Formate: 75% Methanol
5.0 pL
PFBS PEAK RETENTION TIME: Approximately2.1 minutes
PFBS MONITORED MASS:
299.0 a m u
w i l d l i f e International, Ltd.
- 39 -
Project Number 454A-130
Table 2 Matrix Blanks Analyzed Concurrently During Sample Analysis
Number (454A-130-)
MAB- 1
Sample
' Preparation Diite (Day) 0
Measured Concentration of PFBS
(mg a.i./L)
< LOQ
MAB-2
2
< LOQ
MAB-3
5
< LOQ
MAB-4
9
< LOQ
MAB-5
12
< LOQ
MAB-6
16
< LOQ
MAB-7
19
< LOQ
MAB-8
21
< LOQ
1 Preparation Date refers to the Day during the defbtive test that these quality control samples were
prepared concurrent with sampling of the test samples. 2 The limit of quantitation (LOQ) was 20.0 mg a.i../Lbased upon the product of the lowest calibration
standard analyzed (0.0100 m a ) and the cl~lutionfactor of the matrix blank samples (2000).
Wildlife I nternational, Ltd.
-40-
Project Number 454A-130
Talble 3 Matrix Fortifications Analyzed Concurrently During Sample Analysis
Sample Number (454A- 130-)
MAS-1 MAS-4 MAS-7 MAS-10 MAS-13 MAS-16 MAS-19 MAS-22
Preparation Date (Day)'
0 2 5 9 12 16 19 21
Concentrations of PFBS
(mg a..i./L)
Fortified
Measured2
30.0
31.6
30.0
31.0
30.0
29.8
30.0
30.6
30.0
30.0
30.0
29.5
30.0
31.2
30.0
31.1
Percent of
Nominal2
105 104 99.3 102 100 98.4 104 104
MAS-2
0
400
390
97.5
MAS-5
2
400
376
94.0
MAS-8
5
400
348
87.1
MAS-1 1
9
400
36 1
90.3
MAS- 14
12
400
350
87.6
MAS-17
16
400
361
90.2
MAS-20
19
400
372
93.0
MAS-23
21
400
4 14
103
MAS-3
0
2500
2355
94.2
MAS-6
2
2500
2346
93.8
MAS-9
5
2500
2275
91.0
MAS-12
9
2500
2346
93.8
MAS-15
12
2500
2212
88.5
MAS-18
16
2500
2409
96.4
MAS-2 1
19
2500
2356
94.2
MAS-24
21
2500
248 1
99.2
Mean = 96.3
Standard Deviation = 5.63
CV = 5.84%
N = 24
' Preparation Date refers to the Day during the defhtive test that these quality control samples
were prepared concurrent with sampling of the test samples. 2 Measured and Percent of Nominal values wen: calculated using MacQuan, version 1.6 software
Manual calculations may vary slightly. Mean of duplicate redilutions (2399 and 2419 mg a.i./L) of original fortification. A dilution error occurred during original sample preparation.
wild llfe I nternationaI, Ltd.
.-41 -
Project Number 454A-130
Table 4
Measured Concentrations of PFBS in Freshwater Samples from a Cladoceran Semi-static Life-Cycle Toxicity Test
Nominal Test Concentration
(mg a.i./L)
0.0
Sample Number
(454A-130-) 1 2
15 16 29 30 43 44 57 58 71 72 85 86 99 100
Sampling Time
(Day) 0 0 2 2 5 5 9 9 12 12 16 16 19 19 21 21
PFBS Measured Concentration'
(mg a.i./L) <LOQ'
<LOQ <LOQ <LOQ <LOQ <LOQ <LOQ <LOQ <LOQ <LOQ <LOQ <LOQ <LOQ <LOQ <LOQ <LOQ
Percent
o-f-
Nominal`
-_
63
3
0
4
0
17
2
57.1
90.7
59.4
94.3
63.4
101
18
2
62.2
98.7
31
5
63.7
101
32
5
64.5
102
45
9
58.3
92.6
46
9
59.3
94.1
59
12
58.2
92.4
60
12
58.7
93.2
73
16
54.5
86.5
74
16
53.2
84.5
87
19
63.9
101
88
19
60.0
95.2
101
21
63.8
101
102
21
64.6
103
I Measured and Percent of Nominal values were calculated using MacQuan, version 1.6 software.
Manual calculations may vary slightly.
f i f i 2 The limit of quantitation (LOQ) was 20.0 mg a.i./L based upon the product of the lowest calibration
w i l d l i f e International, Ltd.
- 42 -
Project Number 454A-130
Table 4 (Continued)
Measured Concentrations of PFBS in Freshwater Samples from a Cladoceran Semi-static Life-Cycle Toxicity Test
Nominal Test Concentration
(mg a.i.L)
125
Sample Number (454A-130-)
5 6 ' 19 20 33 34 47 48 61 62 75 76 89 90 103 104
Sampling Time: (Day)
0 0 2 2 5 5 9 9 12 12 16 16 19 19 21 21
PFBS Measured Concentration'
(mg a.i.L)
117 118 121 125 127 132 115 116 116 117 114 119 121 122 127 127
Percent of
Nominal'
93.3 94.8 96.7 99.9 102 105 92.4 93.0 92.5 93.7 91.2 95.5 96.6 97.7 102 101
250
7
0
8
0
239
95.7
237
94.8
21
2
25 1
101
22
2
249
99.7
35
5
265
106
36
5
262
105
49
9
24 1
96.5
50
9
230
92.1
63
12
235
94.1
64
12
23 8
95.0
77
16
25 7
103
78
16
248
99.1
91
19
250
100
92
19
248
99.3
105
21
25 1
100
106
21
250
100
1 Measured and Percent of Nominal values were calculated using MacQuan, version 1.6 software.
Manual calculations may vary slightly.
w i l dIlfe InternationaI, Ltd.
- 43 -
Proiect Number 454A-130
Table 4 (:Continued)
Measured Concentrations of PFBS in Freshwater Samples from a Cladoceran Semi-static, Life-Cycle Toxicity Test
Nominal Test Concentration
(mg a.i./L)
500
Sample Number (454A-130-)
9 10 ' 23 24 37 38 51 52 65 66 79 80 93 94 107 108
Sampllng Time
(Day 1
0 0 2 2 5 5 9 9 12 12 16 16 19 19 21 21
PFBS Measured Concentration'
(mg a.i./L)
490 484 498 498 544 537 474 482 507 5 16 497 477 503 507 525 5 00
Percent of
Nominal'
98.0 96.7 99.5 99.7 109 107 94.9 96.4 101 103 99.5 95.4 101 101 105 100
1000
11
0
973
97.3
12
0
980
98.0
25
2
1004
100
26
2
1007
101
39
5
1055
106
40
5
1067
107
53
9
956
95.6
54
9
946
94.6
67
12
999
99.9
68
12
1002
100
81
16
973
97.3
82
16
960
96.0
95
19
1014
101
96
19
1022
102
109
21
964
96.4
110
21
99 1
99.1
1 Measured and Percent of Nominal values were calculated using MacQuan, version 1.6 software.
Manual calculations m w g h t l y.
wiIdI(fe I nternationaI, Ltd.
- 44 -
Project Number 454A-130
Table 4 (Continued)
Measured Concentrations of PFBS in Freshwater Samples from a Cladoceran Semi-Static:Life-Cycle Toxicity Test
Nominal Test
Sample
Sampling
PFBS Measured
Percent
Concentration
Number
Time
Concentration'
of
(mg a.i./L)
(454A-130-)
(Day)
(mg a.i./L)
Nominal'
2000
13
0
1893
94.7
14
0
1955
97.8
27
2
1879
94.0
28
2
1908
95.4
41
5
2014
101
42
5
2078
104
55
9
1774
88.7
56
9
1835
91.8
69
12
1894
94.7
70
12
1962
98.1
83
16
1805
90.2
84
16
1836
91.8
97
19
1841
92.0
98
19
1885
94.2
111
21
1719
85.9
112
21
1734
86.7
1 Measured and Percent of Nominal values werl: calculated using MacQuan, version 1.6 software.
Manual calculations may vary slightly.
W i l d l t f eInternational, Ltd.
- 45 -
Proiect Number 454A-130
METHOD OUTLINE FOR THE ANALYSIS OF PFBS IN FRESHWATER
Prepare matrix fortification samples in freshwater as follows: For target PFBS concentrations I 200 mg a.i./L, fortify freshwater with the appropriate stock solution of PFBS. For target PFBS concentrations > 200 mg a.i./L, prepare by weighing the requisite amount of PFBS test substance on an
analytical balance and transferring lrectly into a Class A volumetric flask partially filled with freshwater. Rinse weighing paper and the sides of the flask with repeat freshwater rinses. Swirl the
flask to dissolve the test substance and then bring to final volume with freshwater. Sonicate as appropriate and mix with several repeat inversions. The matrix blank is unfortified freshwater.
Prepare appropriate dilutions of study and QC samples to within the calibration range of the PFBS LCMS methodology: Partially fill Class A volumetric flasks with 50% methanol : 50% NANOpure@ water dilution solvent. Add the appropriate volume: of sample and bring to volume with ddution solvent. Perform secondary dilutions as necessary. Process matrix blank samples using the same dilution and
aliquot volume as for the lowest fortification level. Mix well by several repeat inversions.
.L
Ampulate samples and submit for LCMS analysis.
Figure 1. Analytical method flowchart for the analysis of PFBS in freshwater.
WildlifeInternational, Ltd.
- 46 -
Proiect Number 454A-130
Area 50000040000P
30000020000
10000
Concentration pg a.i./L
Figure 2.
A typical ealibration curve for PFBS. Slope = 10184392; Intercept = 21932.54; r = 0.99818,
w i l d 1(fe I ntemational, L td.
- 47 -
Proiect Number 454A-130
PFBS-1
STD 0.0100 mg r.lJL
5216-002C-6
2.97 in 1 period pws
No Internal Standard
Use Area
1: 2.96 Q1 MI, 178 scans
299.0 Noise Thres. Quant Thres. Min. Width Mult. Width Base. Width RT Win. (secs) Smooth Expected RT
20.0 20.0 3 6 100 10 1 2.16
Area 124515
Height 14822
Start Time
2.03
End Time
2.43
integration Width
0.40
Retention Time Integration Type
-2.16
A 88
Thu, Feb 8, 2001 19:12 'OOl
intensity: 120000 cps
129 A
0
:I 1
61
91
121
151
scan
0.52
1.02
1.52
2.03
2.53
Time
Figure 3. A representative ion chromatogram of a low-level (0.0100 mg a.i.L) PFBS standard.
wildlife International. Ltd.
- 48 -
Project Number 454A-130
PFBS-5
STD 0.0500 mg a.l.lL
521 6-002C-10
2.97 in 1 period
RBS No Internal Standard Use Area
1: 2.96 Q1 MI, 299.0 Noise Thres. Quant Thres. Min. Width Mult. Width Base. Width
RT Win. (secs) Smooth Expected RT
178 scans
20.0 20.0 3 6 100 10 1 2.16
Area 548302 Height 5721 2 Start Time End Time Integration Width Retention Time Integration Type
2.01 2.68 0.67
-2.16
A BE
Thu, Feb E, 2001 19:28
0
9
~~
~
intensily: 120000 cps
4;;, 0
24
129
30
20
10
0
:3 1
61
91
121
151
scan
'3.52
1.02
1.52
2.03
2.53
Time
Figure 4. A representative ion chromatogram of a high-level (0.0500 mg a.i./L) PFBS standard.
wild lcfe I ntemationa1, L td.
- 49 -
Project Number 454A-130
PFBS-7 454A-130-
MAB-1
Thu, Feb 8, 2001 19:37
2.97 in 1 period pws No Internal Standard Use Area
1: 2.96 Q1 MI, 178 s a n s
299.0
Noise Thres.
20.0
Quanl Thres. Min. Width
Mult. Width
Base. Width RT Win. ( s e a )
Smooth
20.0 3 6 100
10 1
Expected RT
2.1 6
Area
0
Height 0 Start Time
0.00
End Time
0.00
Integration Width
0.00
Retention Time
0.00
Integration Type
:!
2
0J, 9,16, 38 31 0.52
56 61 1.02
80 91 1.52
intensity: 120000 cps
1
115 129 121 2.03
162
151 2.53
Scan Time
Figure 5. A representative ion chromatogram oFa matrix blank sample (454A-130-MAJ3-1). The arrow indicates the retention time of PFBS.
WiId 1(fe I nternationaI, L td.
-50-
Proiect Number 454A-130
PFBS-9 454A-130-
MAS-2
Thu, Feb 8, 2001 19:45
2.97 in 1 period pws No Internal Standard Use Area
1: 2.96 ai MI, 178 scans
299.0
Noise Thres.
20.0
Quant Thres. Min. Width
20.0 3
Mull. Width
6
Base. Width
100
FIT Win. (sea) 10
Smooth
1
Expecled FIT
2.16
Area
419242
Height 43383
Start Time
2.03
End Time
2.63
Integration Width
0.60
Retention Time Integration Type
2.18
A - EB
intensity: 120000 cps
120
n
0.52
1.02
1.52
2.03
2.53
Time
Figure 6 . A representative ion chromatogram of a matrix fortification sample (454A-130-MAS-2, nominal PFBS concentration of 400 mg a.i./L, dilution factor = 10000~).
WildlifeInternational, Ltd.
-51 -
Project Number 454A-130
PFBS-21
9
454A-130-
Thu, Feb 8, 2001 20:34
2.97 in 1 period pws
No Internal Standard
Use Area
1: 2.96 Q1 MI, 178 scans
299.0
Noise Thres.
20.0
Quant Thres.
20.0
Min. Width
3
Mutt. Width
6
Base. Width
100
RT Win. (sea) 1 0
Smooth
1
Expected RT
2.16
Area 221526
Height
24774
Start Time
2.04
End Time
2.50
Integration Width
0.45
Retention Time Integration Type
2.18
A - BB
g1100'1
8
intensity: 120000 cps 130 A
Figure 7.
A representative ion chromatogram of a test sample (454A-130-9, nominal PFBS concentration of 500 mg a.i./L, dlution factor = 25000~).
- 52 -
Project Number 454A-130
Appendix 4
Cumul tive Percent Mortalit. and Treatment-RelatedEffects' - First-GenerationDaphnids
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran,Daphnia magna Well Water
Mean Measured
Initial
Test Concentration
Number Number
(mg a.i.k)
EXPOSed Immobile
Negative Control
A
1
0
B
1
0
C
1
0
D
1
0
E
1
0
F
1
0
G
1
0
H
1
0
I
1
0
J
1
0
Day 0
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
Effects
IAN
IAN IAN 1AN IAN IAN IAN IAN IAN IAN
60
A
1
0
0
IAN
B
1
0
0
1"
C
1
0
0
IAN
D
1
0
0
1AN
E
1
0
0
1AN
F
1
0
0
IAN
G
1
0
0
IAN
H
1
0
0
IAN
I
1
0
0
IAN
J
1
0
0
IAN
121
A
1
0
0
IAN
B
1
0
0
IAN
C
1
0
0
1AN
D
1
0
0
IAN
E
1
0
0
IAN
F
1
0
0
1"
G
1
0
0
1AN
H
1
0
0
IAN
I
1
0
0
IAN
' J
1
0
0
IAN
Observed Effects: AN = Appeared Normal, D = Discoloration (Pale), G = Small
Number
Immobile
0 0 0 0 0 0 0 0 0 0
Day 1
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
Effects
1AN
1AN 1AN 1" IAN 1AN IAN IAN IAN IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
1AN
0
0
1AN
0
0
1"
0
0
1"
0
0
IAN
0
0
1"
0
0
IAN
0
0
1AN
0
0
IAN
0
0
1"
0
0
1AN
0
0
IAN
0
0
1AN
0
0
1AN
0
0
1AN
0
0
IAN
0
0
IAN
.
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day2
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
Effects
IAN
IAN 1AN 1AN IAN IAN IAN 1" IAN 1AN
0
0
IAN
0
0
1AN
0
0
IAN
0
0
1AN
0
0
1"
0
0
1AN
0
0
1"
0
0
1AN
0
0
IAN
0
0
IAN
0
0
1AN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
1AN
0
0
IAN
0
0
IAN
0
0
1AN
0
0
1AN
0
0
1AN
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day 3
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
Effects
1AN
1AN IAN 1AN IAN IAN IAN IAN 1" 1AN
0
0
1AN
0
0
1AN
0
0
IAN
0
0
1AN
0
0
1AN
0
0
1AN
0
0
1AN
0
0
1"
0
0
1AN
0
0
IAN
0
0
1"
0
0
1AN
0
0
1AN
0
0
1AN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
1AN
- 53 -
Project Number 454A-130
Appendix 4 (Continued)
Cumulative Percent Mortality and Treatment-Related Effects' - First-GenerationDaphnids
Sponsor: Test Substance: Test Organism: Dilution Water:
Mean Measured
Test Concentration (mg a.i./L)
Negative Control
3M Corporation PFBS Cladoceran,Daphnia magna Well Water
Initial
Replicate
Number Exposed
A
1
B
1
C
1
D
1
E
1
F
1
G
1
H
1
I
1
J
1
60
A
1
B
1
C
1
D
1
E
1
F
1
G
1
H
1
I
1
J
1
121
Number Immobile
0 0 0 0 0 0 0 0 0 0
0
0 0 0 0 0 0 0 0 0
Day 4
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
' J
1
0
0
Observed Effects: AN = Appeared Normal, D = Discoloration (Pale), G = Small
Effects
IAN IAN 1AN 1AN IAN IAN 1AN IAN IAN IAN
1AN IAN IAN 1" IAN IAN 1AN 1AN 1AN IAN
IAN 1AN 1AN 1AN IAN 1AN IAN IAN IAN 1AN
Number Immobile
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0
Day5 . Cumulative
Dead 0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0
Effects
1AN IAN IAN 1AN IAN 1AN 1AN IAN IAN IAN
1AN 1AN IAN IAN 1AN 1AN IAN IAN IAN IAN
1AN 1AN 1AN 1AN IAN 1AN 1AN IAN 1AN IAN
Number Immobile
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0
Day 6 Cumulative
Dead 0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0
Effects
1AN 1AN 1AN 1AN 1AN IAN 1AN IAN IAN IAN
IAN 1AN IAN IAN IAN 1AN IAN 1" IAN 1AN
IAN IAN 1AN 1AN IAN IAN 1AN 1AN IAN IAN
- 54 -
Project Number 454A-130
Appendix 4 (Continued) Cumulative Percent Mortality and Treatment-RelatedEffects' - First-GenerationDaphnids
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation
PFBS
Cladoceran,Daphnia magna Well Water
Mean Measured
Initial
Test Concentration (mg a.i./L)
Replicate
Number Exposed
Negative Control
A
1
B
1
C
1
D
1
E
1
F
1
G
1
H
1
I
1
J
1
60
A
1
B
1
C
1
D
1
E
1
F
1
G
1
H
1
I
1
J
1
121
Number Immobile
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Day 7
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
J
1
0
0
Observed Effects: AN =Appeared Normal, D = Discoloration (Pale), G = Small
Effects
1AN IAN 1" 1AN 1" IAN 1" 1AN 1AN IAN
IAN 1AN 1AN 1AN 1AN 1AN 1AN 1AN IAN 1AN
1AN 1AN IAN 1AN IAN 1AN 1AN IAN 1AN 1AN
Number Immobile
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0
Day 8 Cumulative
Dead 0 0 0 0 0 0
'0 0 0 0
0 0 0 0 0 0 0 0 0 0
0
Effects
1AN IAN 1AN 1" 1AN 1" IAN IAN 1AN IAN
1AN 1AN IAN IAN IAN IAN IAN IAN IAN 1AN
IAN 1AN 1AN 1AN IAN 1AN 1AN 1AN 1" IAN
Number Immobile
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0
Day 9 Cumulative
Dead 0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0
Effects
IAN IAN 1AN 1AN IAN IAN 1AN
1AN IAN IAN
IAN IAN 1AN 1AN IAN 1AN IAN IAN IAN 1"
1AN 1AN 1AN IAN 1" IAN IAN IAN IAN IAN
- 55 -
Project Number 454A-130
Appendix 4 (Continued) Cumulative Percent Mortality and Treatment-RelatedEffects' - First-GenerationDaphnids
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran,Daphnia magna Well Water
Mean Measured
Initial
Test Concentration (mg a.i./L)
Replicate
Number Exposed
Negative Control
A
1
Number Immobile
0
Day 10 Cumulative
Dead
0
60
A
1
0
0
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
0
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
J
1
0
0
121
' Observed Effects
A
1
0
0
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
0
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
J
1
0
0
AN = Appeared Normal, D = Discoloration(Pale), G = Small
Effects
IAN IAN IAN IAN IAN IAN 1" IAN IAN IAN
IAN IAN
IAN
IAN 1" 1AN IAN 1AN 1" 1AN
1AN 1AN IAN 1" IAN 1AN 1AN 1" 1AN IAN
Number Immobile
0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Day 11
Cumulative Dead
0 0 0 0 0 0 0 0 0 .O
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Effects
IAN IAN IAN IAN IAN IAN 1AN 1AN IAN IAN
1" IAN IAN IAN 1AN IAN 1" 1AN IAN IAN
1" 1AN 1" IAN IAN IAN IAN 1AN IAN IAN
Number Immobile
0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Day 12 Cumulative
Dead 0
0 0
0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Effects
1AN IAN IAN IAN IAN IAN 1AN IAN IAN IAN
1AN IAN 1" IAN IAN IAN 1AN IAN 1AN 1AN
IAN IAN IAN IAN IAN 1AN 1AN IAN IAN IAN
-56-
Project Number 454A-130
Appendix 4 (Continued)
Cumulative Percent Mortality and Treatment-Related Effects' - First-Generation Daphnids
Sponsor: Test Substance: Test Organism: Dilution Water:
Mean Measured
Test Concentration (mg a.i./L)
Negative Control
3M Corporation PFBS Cladoceran, Daphnia magna Well Water
Initial
Replicate
Number Exposed
A
1
B
1
C
1
D
1
E
1
F
1
G
1
H
1
I
1
J
1
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day 13
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
60
A
1
0
0
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
0
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
J
1
0
0
121
A
1
0
0
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
0
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
' J
1
0
0
Observed Effects: AN = Appeared Normal, D = Discoloration (Pale), G = Small
Effects
IAN IAN 1AN 1AN 1AN 1AN 1AN 1AN 1AN 1AN
IAN 1AN IAN 1AN IAN 1AN 1AN IAN IAN IAN
1AN 1AN IAN 1AN 1AN IAN IAN 1AN IAN IAN
Number Immobile
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Day14 .
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Effects
IAN IAN 1AN 1AN IAN IAN IAN IAN 1AN IAN
IAN IAN IAN IAN IAN IAN IAN IAN IAN 1AN
1" IAN 1AN IAN IAN IAN 1AN IAN IAN IAN
Number Immobile
0 0
0
0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Day 15
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Effects
IAN ~
1D 1AN IAN IAN IAN IAN IAN IAN 1AN
IAN IAN 1AN IAN IAN IAN IAN IAN 1AN IAN
1AN 1AN 1AN 1AN 1AN IAN IAN IAN 1AN IAN
- 57 -
Project Number 454A-130
Appendix 4 (Continued) Cumulative Percent Mortality and Treatment-Related Effects' - First-Generation Daphnids
Sponsor: Test Substance: Test Oreanism: DilutiolWater:
3M Corporation
PFBS
Cladoceran.DaDhnia ma"ma Well Water' '
Mean Measured Test Concentration
(mg a.i./L)
Replicate
Initial Number Exposed
Negative Control
A
1
B
1
C
1
D
1
E
1
F
1
G
1
H
1
I
1
J
1
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day 16
Cumulative Dead
0 1 0 0 0 0 0 0 0 0
60
A
1
0
0
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
0
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
J
1
0
0
121
A
1
0
0
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
0
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
' J
1
0
0
Observed Effects: AN = Appeared Normal, D = Discoloration(Pale), G = Small
Effects
1"--
1AN 1AN 1" 1AN IAN 1AN IAN IAN
1AN 1AN 1AN 1AN IAN IAN 1AN 1AN 1" 1"
IAN IAN 1AN 1" IAN 1AN 1AN 1AN 1AN 1AN
Number Immobile
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Day 17
Cumulative Dead
0 1 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Effects
I A-N
IAN 1AN IAN 1" 1" 1" IAN IAN
IAN 1AN IAN IAN IAN IAN IAN IAN IAN 1AN
IAN IAN IAN 1AN 1" IAN 1AN IAN IAN IAN
Number Immobile
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Day 18 Cumulative
Dead
0 1 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Effects
I A--N
IAN 1AN IAN IAN IAN IAN IAN 1"
1AN IAN IAN 1AN 1AN 1AN IAN IAN 1" 1"
1AN IAN IAN IAN IAN IAN IAN IAN IAN 1AN
Project Number 454A-100 -58-
Appendix 4 (Continued) Cumulative Percent Mortality and Treatment-RelatedEffects' - First-GenerationD a p h d s
Sponsor: Test Substance: Test Organism: Dilution Water:
Mean Measured
Test Concentration (mg a.i./L)
Negative Control
3M Corporation PFBS Cladoceran, Daphnia magna Well Water
Initial
Replicate
Number Exposed
A
1
Number Immobile
0 0 0 0 0 0 0 0 0' 0
Day 19
Cumulative Dead
0
60
A
1
0
0
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
0
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
J
1
0
0
121
A
1
0
0
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
0
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
' J
1
0
0
Observed Effects: AN = Appeared Normal, D = Discoloration (Pale), G = Small
Effects
1AN
-
1AN 1AN IAN IAN IAN IAN IAN 1AN
1AN IAN IAN IAN 1AN 1" 1AN IAN 1AN 1AN
1AN 1" 1" 1AN IAN 1AN 1" 1" 1AN 1AN
Number Immobile
0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Day20. Cumulative
Dead 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Effects
IAN
--
IAN 1" IAN 1" IAN IAN 1AN IAN
IAN IAN 1AN 1AN IAN IAN 1AN 1AN 1AN 1AN
1AN 1" 1AN IAN IAN IAN 1" 1AN 1AN IAN
Number Immobile
0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Day 21 Cumulative
Dead 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Effects
IAN --
IAN 1AN 1" IAN 1AN IAN 1D 1"
1" 1AN IAN IAN IAN IAN IAN 1AN 1AN 1"
IAN IAN IAN IAN IAN IAN 1AN IAN IAN IAN
- 59 -
Project Number 454A-130
Appendix 4 (Continued)
Cumulative Percent Mortality and Treatment-RelatedEffects' - First-Generation Daphnids
Sponsor:
3M Corporation
Test Substance: PFBS
Test Organism: Cladoceran,Daphnia magna
Dilution Water: Well Water
Mean Measured
Initial
Test Concentration (mg a.i.n)
Number
Number Immobile
247
A
1
0
B
1
0
C
1
0
D
1
0
E
1
0
F
1
0
G
1
0
H
1
0
I
1
0
J
1
0
Day 0
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
Effects
IAN IAN IAN IAN IAN IAN IAN IAN IAN IAN
502
A
1
0
0
IAN
B
1
0
0
IAN
C
1
0
0
IAN
D
1
0
0
IAN
E
1
0
0
IAN
F
1
0
0
IAN
G
1
0
0
IAN
H
1
0
0
IAN
I
1
0
0
IAN
J
1
0
0
IAN
995
A
1
0
0
IAN
B
1
0
0
IAN
C
1
0
0
IAN
D
1
0
0
IAN
E
1
0
0
IAN
F
1
0
0
IAN
G
1
0
0
IAN
H
1
0
0
IAN
I
1
0
0
IAN
' J
1
0
0
1 AN
Observed Effects. AN = Appeared Normal, D = Discoloration (Pale), G = Small
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day 1
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
Effects
1AN 1" 1" 1AN IAN IAN IAN IAN 1" IAN
0
0
IAN
0
0
IAN
0
0
1AN
0
0
IAN
0
0
IAN
0
0
1AN
0
0
IAN
0
0
1"
0
0
1AN
0
0
IAN
0
0
1AN
0
0
1AN
0
0
1AN
0
0
1AN
0
0
1AN
0
0
1AN
0
0
IAN
0
0
1"
0
0
IAN
0
0
IAN
~
,
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day2
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
Effects
IAN IAN IAN IAN IAN IAN 1AN IAN IAN 1AN
0
0
IAN
0
0
1AN
0
0
1"
0
0
IAN
0
0
IAN
0
0
1"
0
0
IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
1AN
0
0
IAN
0
0
1"
0
0
IAN
0
0
IAN
0
0
1 AN
~
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day 3
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
Effects
1" IAN IAN IAN IAN 1" 1AN 1AN IAN IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
1AN
0
0
1AN
0
0
1"
0
0
1AN
0
0
1AN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
1AN
0
0
1AN
0
0
IAN
0
0
IAN
0
0
IAN
- 60 -
Project Number 454A-130
Appendix 4 (Continued)
Cumulative Percent Mortality and Treatment-RelatedEffects' - First-GenerationDaphnids
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran, Daphnia magna Well Water
Mean Measured Test Concentration
(mg a.i./L)
Replicate
Initial Number Exposed
247
A
1
B
1
C
1
D
1
E
1
F
1
G
1
H
1
I
1
J
1
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day 4
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
502
A
1
0
0
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
0
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
J
1
0
0
995
A
1
0
0
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
0
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
'
Observed Effects:
J
1
0
0
AN = Appeared Normal, D = Discoloration (Pale), G = Small
Effects
IAN 1AN 1AN 1AN 1AN 1AN IAN 1AN IAN IAN
1AN 1AN 1AN IAN 1AN 1AN 1AN 1AN 1AN 1AN
1AN 1" 1AN IAN 1AN IAN 1AN 1AN 1AN
1AN
Number Immobile
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Day5 .
Cumulative Dead 0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0
0
Effects
IAN 1AN IAN 1AN IAN IAN 1AN 1AN 1" 1AN
IAN IAN 1AN IAN 1AN 1AN 1AN 1AN 1AN 1AN
1AN 1AN 1AN 1AN IAN IAN 1AN IAN IAN 1AN
Number Immobile
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Day 6
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Effects
IAN 1AN 1" 1AN IAN IAN IAN 1" IAN IAN
1AN IAN IAN IAN IAN IAN 1AN 1AN 1AN 1AN
1D 1D 1AN IAN 1D 1D IAN 1AN I A.-N
~
IAN
-61 -
Project Number 454A-130
Appendix 4 (Continued) Cumulative Percent Mortality and Treatment-Related Effects' - First-Generation Daphnids
Sponsor:
3M Corporation
Test Substance: PFBS
Test Organism: Cladoceran, Daphnia magna
Dilution Water: Well Water
Mean Measured
Initial
Test Concentration (mg a.i./L)
Replicate
Number Exposed
247
A
1
B
1
C
1
D
1
E
1
F
1
G
1
H
1
I
1
J
1
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day 7
Cumulative Dead
0 '0 0 0 0 0 0 0 0 0
502
A
1
0
0
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
0
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
J
1
0
0
995
A
1
0
0
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
0
F
1
0
0
G
1
0
0
H
1
0
0
' I
1
0
0
J
1
0
n
Observed Effects: AN = Appeared Normal, D = Discoloration (Pale), G = Small
Effects
IAN IAN IAN 1AN 1AN 1" 1AN IAN IAN IAN
1AN 1AN 1" 1AN 1AN 1AN 1AN IAN IAN 1"
1D 1D 1" 1AN 1D 1D IAN 1AN IAN IAN
Number Immobile
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Day8 ,
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 1
EfFects
1AN 1" 1AN 1AN IAN 1AN 1AN 1AN IAN IAN
1AN 1" IAN 1AN 1AN 1AN 1AN 1AN 1" IAN
1D 1D IAN 1" 1D 1D IAN 1AN 1AN -
Number Immobile
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Day 9
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
1 0 0 0 0 0 0 0
0
1
Effects
IAN IAN IAN IAN 1AN IAN 1AN 1AN 1AN IAN
IAN 1AN IAN 1AN IAN 1" IAN 1AN IAN 1AN
__
1D IAN 1AN 1D 1D IAN IAN IAN
-
- 62 -
Project Number 454A-130
Appendix 4 (Continued)
Cumulative Percent Mortality and Treatment-RelatedEffects' - First-GenerationD a p h d s
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation
PFBS
Cladoceran,Daphnia magna Well Water
Mean Measured
Initial
Test Concentration (mg a.i./L)
Replicate
Number Exposed
241
A
1
B
1
C
1
D
1
E
1
F
1
G
1
H
1
I
1
J
1
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day 10
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
502
A
1
0
0
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
0
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
J
1
0
0
995
A
1
0
1
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
1
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
' J
1
0
1
Observed Effects: AN =Appeared Normal, D = Discoloration (Pale), G = Small
Effects
1AN 1AN IAN IAN IAN IAN IAN 1AN IAN 1AN
IAN 1AN 1AN IAN 1AN 1AN 1AN 1AN IAN 1AN
--
1D IAN IAN
-_
1 D,G 1" IAN 1AN
--
Number Immobile
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Day 11
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
1 0 0 0 1 0 0 0 0 1
Effects
1AN 1" 1AN 1AN IAN IAN 1AN 1AN IAN IAN
1AN IAN IAN 1AN 1AN 1AN 1AN 1AN 1AN 1AN
__
1D IAN
1"--
1 D,G IAN IAN IAN
--
Number Immobile
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Day 12
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
1 0 0 0 1 0 0 0 0 1
Effects
IAN IAN IAN 1AN IAN IAN IAN IAN IAN IAN
IAN IAN IAN 1AN 1AN 1AN 1AN 1AN 1AN 1"
-
1D IAN
1 _A_ N
1 D,G IAN IAN IAN
-
- 63 -
Project Number 454A-130
Appendix 4 (Continued) Cumulative Percent Mortality and Treatment-RelatedEffects' - First-GenerationDaphnids
Sponsor: Test Substance: Test Organism: Dilution Water:
Mean Measured
Test Concentration (mg a.i.L)
247
3M Corporation PFBS Cladoceran,Daphnia magna Well Water
Initial
Replicate
Number Exposed
A
1
B
1
C
1
D
1
E
1
F
1
G
1
H
1
I
1
J
1
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day 13
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
502
A
1
0
0
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
0
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
J
1
0
0
995
A
1
0
1
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
1
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
' J
1
0
1
Observed Effects: AN = Appeared Normal, D = Discoloration (Pale), G = Small
Effects
1AN 1AN 1" 1AN IAN 1" IAN 1AN IAN IAN
1AN 1AN 1AN 1" 1AN 1" 1AN IAN IAN 1AN
--
1D 1AN 1AN
--
1 D,G 1AN IAN
I A__ N
Number Immobile
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0
0
Day14.
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
1 0 0 0 1 0 0 0 0
1
Effects
1AN IAN IAN 1AN 1AN 1AN 1AN 1AN IAN IAN
1AN 1AN 1AN 1AN 1AN 1AN 1AN IAN 1AN 1AN
--
1D 1AN 1AN
--
1 D,G IAN IAN IAN
__
Number Immobile
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0
0
Day 15
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
1 0 0 0 1 0 0 0 0
1
Effects
1AN 1AN 1AN 1AN IAN 1AN 1AN 1AN 1AN IAN
1" 1AN 1" 1AN 1AN 1AN IAN IAN 1AN 1"
--
1D 1AN 1AN
--
1 D,G IAN 1AN ID
--
- 64 -
Project Number 454A-130
Appendix 4 (Continued)
Cumulative Percent Mortality and Treatment-Related Effects' - First-Generation Daphnids
Sponsor: Test Substance: Test Oreanism:
3M Corporation PFBS Cladoceran. DaDhnia m a m a
Mean Measured
Test Concentration (me a.i./L) 241
Replicate A
Initial
Number Exposed
1
Number Immobile
0
Day 16
Cumulative Dead 0
502
A
1
0
0
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
0
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
J
1
0
0
995
A
1
0
1
B
1
0
0
C
1
0
0
D
1
0
0
E
1
0
1
F
1
0
0
G
1
0
0
H
1
0
0
I
1
0
0
' J
1
0
1
Observed Effects: AN = Appeared Normal, D = Discoloration(Pale), G = Small
Effects
1AN 1AN 1AN 1AN IAN IAN 1AN 1AN 1AN 1AN
1AN IAN 1AN 1AN IAN 1AN 1AN 1AN 1AN IAN
I
1AN 1AN
I A--N
1D 1AN 1AN 1D
--
Number Immobile
0
Day 17 Cumulative
Dead 0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
0
0
0
0
0
0
0
1
0
0
0
0
0
0
0
0
0
1
Effects
1AN 1AN IAN IAN 1AN 1AN IAN 1" IAN IAN
IAN IAN IAN 1AN 1AN 1AN 1AN IAN 1AN IAN
--
IAN 1AN
I A__N
IAN IAN IAN IAN
-
Number Immobile
0
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
Day 18
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
1 0 0 0 1 0 0 0 0 1
Effects
1.. A_ N 1" 1AN 1AN IAN IAN IAN IAN IAN IAN
1AN 1AN IAN IAN IAN IAN IAN IAN IAN 1AN
-
IAN 1AN IAN
-_
IAN IAN IAN IAN
-
- 65 -
Project Number 454A-130
Appendix 4 (Continued)
Cumulative Percent Mortality and Treatment-Related Effects' - First-Generation Daphnids
Sponsor: Test Substance: Test Organism: Dilution Water:
Mean Measured
Test Concentration
(mg a.i./L)
~
~~~~
247
3M Corporation PFBS Cladoceran,Daphnia mugnu Well Water
Initial
Replicate
~~
A B C
D E F G H I J
Number Exposed
1 1 1 1 1 1 1 1 1 1
Number Immobile
0 0 0 0 0 0 0 0 0 0
502
A
1
0
B
1
0
C
1
0
D
1
0
E
1
0
F
1
0
G
1
0
H
1
0
I
1
0
J
1
0
995
Day 19
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0
' J
1
0
1
Observed Effects: AN = Appeared Normal, D = DiscolorationPale), G = Small
Effects
IAN IAN IAN IAN IAN 1" 1AN 1AN IAN IAN
IAN IAN IAN IAN 1AN IAN IAN 1" 1AN 1"
--
1" IAN
I A_-N
1D 1AN IAN
I A__N
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day 20.
Cumulative Dead
~~
0 0 0 0 0 0 0 0 0 0
Effects
1" 1" IAN IAN IAN IAN 1AN IAN 1AN IAN
0
0
1"
0
0
1AN
0
0
1"
0
0
IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
lAN
0
0
1AN
0
0
IAN
-
IAN
1AN
IAN
--
ID
1AN
1"
IAN
0
1
-
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day 21
Cumulative Dead
-~
0 0 0 0 0 0 0 0 0 0
Effects
IAN IAN IAN 1AN 1AN IAN 1AN IAN 1" 1"
0
0
IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
IAN
0
0
1AN
0
0
IAN
0
0
IAN
0
0
IAN
-
IAN
IAN
IAN
_-
1D
1"
IAN
0
1
I A-N
- 66 -
Project Number 454A-130
Appendix 4 (Continued)
Cumulative Percent Mortality and Treatment-RelatedEffects' - First-GenerationDaphnids
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran,Daphnia magna Well Water
Mean Measured
Initial
Day 0
Test Concentration (mg a.i./L)
Number Number Cumulative
Immobile
Dead
Effects
1876
A
1
0
0
IAN
B
1
0
0
IAN
C
1
0
0
IAN
D
1
0
0
1"
E
1
0
0
IAN
F
1
0
0
1AN
G
1
0
0
1AN
H
1
0
0
1AN
I
1
0
0
1AN
' J
1
0
0
IAN
Observed Effects: AN = Appeared Normal, D = Discoloration (Pale), G = Small
Number Immobile
0 0 0 0 0 0
. 1 0 0 0
Day 1
Cumulative Dead
0 0 0 0 0 0 0 0 0 0
Effects
1AN 1AN 1AN 1AN IAN IAN
--
1AN 1AN 1AN
.
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day2
Cumulative Dead
0 0 0 0 0 0 1 0 0 0
Effects
1AN 1AN 1AN IAN IAN 1AN
--
1" IAN 1AN
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day 3
Cumulative Dead
0 1 0 0 0 0 1 0 0 0
Effects
1G
__
1G 1G 1G 1G
--
1G 1G 1G
- 67 -
Project Number 454A- 130
Appendix 4 (Continued)
Cumulative Percent Mortality and Treatment-RelatedEffects' - First-Generation Daphnids
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran, Daphnia magna Well Water
Mean Measured
Initial
Day 4
Test Concentration (mg a.i./L)
Replicate
Number Exposed
Number hmobile
Cumulative Dead
1876
A
1
0
0
1
0
0
0
0
1
0
0
' J
1
0
0
Observed Effects: AN = Aooeared Normal. D = Discoloration (Pale). G = Small
Effects
1-_G
1G 1G 1G 1G
__
1G 1G 1G
Number Immobile
0
Day.5 Cumulative
Dead
0
0
0
Effects
1__G
1G 1G 1G 1G
__
1G 1G 1G
Number Immobile
0
Day 6 Cumulative
Dead
0
0
0
Effects
1G
--
IG 1G 1G 1G --
1G 1G 1G
- 68 -
Project Number 454A-130
Appendix 4 (Continued)
Cumulative Percent Mortality and Treatment-Related Effects' - First-Generation Daphnids
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran, Daphnia magna Well Water
Mean Measured
Initial
Test Concentration (mg a.i.L)
Replicate
Number Exposed
1876
A
1
Number Immobile
0
Day 7
Cumulative Dead
0
' J
1
0
0
Observed Effects: AN = Appeared Normal, D = Discoloration (Pale), G = Small
Effects
1G
--
1G 1G 1G 1G
--
1G 1G 1G
Number Immobile
0
Day .8
Cumulative Dead
0
0
0
Effects
1G
__
1G 1G 1G 1G
_-
1G 1G 1G
Number Immobile
0
Day 9 Cumulative
Dead 0
0
0
Effects
1G
--
1G 1G 1G 1G
--
1G 1G 1G
- 69 -
Project Number 454A- 130
Appendix 4 (Continued) Cumulative Percent Mortality and Treatment-Related Effects' - First-Generation Daphnids
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran,Daphnia magna Well Water
Mean Measured Test Concentration
(mg a.i./L)
Replicate
Initial Number Exposed
Number Immobile
Day 10
Cumulative Dead
1876
A
1
0
1
B
1
1
C
1
0
D
1
0
E
1
0
F
1
0
G
1
1
H
1
0
I
1
0
'
Observed Effects:
J
1
0
0
AN = Appeared Normal, D = Discoloration (Pale), G = Small
Effects
---
1G 1G 1G 1G
-_
1G 1G
1G
Number Immobile
0
Day 11
Cumulative Dead 1
0
0
Effects
-_ _-
1G
-
1G 1G
--
1G 1G 1G
Number Immobile
0
0
Day 12
Cumulative Dead
1 1 0 1 1 1 1 0 0 0
Effects
__ -_
1G
-__ __
1G 1G 1G
Project Number 454A-130
- 70 -
Appendix 4 (Continued)
Cumulative Percent Mortality and Treatment-Related Effects' - First-Generation Daphnids
Sponsor: Test Substance: Test Organism: Dilution- Water:
3M Corporation
PFBS
Cladoceran,Daphnia magna Well Water
Mean Measured
Initial
Test Concentration (mg a.i.L)
Number
1876
A
1
Number Immobile
0
Day 13
Cumulative . Dead
1
Effects
--
Number Immobile
0
Day 14 Cumulative
Dead
1
Effects
-
Number Immobile
0
Day 15 Cumulative
Dead
1
Effects
-
--
1G
' 1G
J
1
0
0
1 D,G
0
1
--
Observed Effects: AN = Appeared Normal, D = Discoloration(Pale),G = Small
-
1G
1G
0
1
-
- 71 -
Project Number 454A- 130
Appendix 4 (Continued)
Cumulative Percent Mortality and Treatment-RelatedEffects' - First-Generation Daphnids
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran, Duphniu mugnu Well Water
Mean Measured
Initial
Day 16
Test Concentration (mg a.i./L)
Replicate
Number Exposed
Number hmobile
Cumulative Dead
1876
A
1
0
1
B
1
0
1
C
1
0
1
D
1
0
1
E
1
0
1
F
1
0
1
G
1
0
1
H
1
0
0
I
1
0
0
' J
1
0
1
Observed Effects: AN = Appeared Normal, D = Discoloration pale), G = Small
Effects
-_ ---
__
__ --
1G
1--G
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day 1.7
Cumulative Dead
1 1 1 1 1 1 1 0 0 1
Effects
---
-
----
1G
1G
-
Number Immobile
0 0 0 0 0 0 0 0 0 0
Day 18
Cumulative Dead
1 1 1 1 1 1 1 0 0 1
Effects
--
-
-
1G
1-G
- 72 -
Project Number 454A- 130
Appendix 4 (Continued)
Cumulative Percent Mortality and Treatment-RelatedEffects' - First-GenerationDaphnids
Sponsor: Test Substance: Test Organism: Dilution Water:
3M Corporation PFBS Cladoceran,Daphnia magna Well Water
Mean Measured Test Concentration
Initial
(mg a.i./L)
Replicate Exposed
1876
A
1
Number Immobile
0
Day 19
Cumulative Dead 1
Effects
--
Number Immobile
0
Day 20 Cumulative
Dead 1
Effects
-_
Number Immobile
0
Day 21
Cumulative Dead 1
Effects
--
' J
1
0
1
-_
Observed Effects: AN = Appeared Normal, D = Discoloration pale), G = Small
--
-_
1 D,G
1 D,G
1 D,G
1 D.G
0
1
-_
0
1
--
- 73 -
Project Number 454A-130
Appendix 5
Neonate Production
Sponsor: Test Substance: Test Organism: Dilution Water
3M Corporation PFBS Cladoceran, Daphniamagna Well Water
Mean Measured Test
Concentration
0
2
5
7
(mg a.i./L)
Replicate
Negative Control
A
B
0
0
0
0
0
0
0
0
C
0
0
0
0
D
0
0
0
0
E
0
0
0
0
F
0
0
0
0
G
0
0
0
0
H
0
0
0
0
I
0
0
0
0
J
0
0
0
0
Day
9
12
14
16
19
21
0
31
31
14
19
0
9
27
26
-
--
-_
0
0
16
0
6
0
0
0
22
36
24
0
0
0
21
27
32
0
0
7
26
40
17
0
0
24
44
28
22
0
0
17
38
30
0
16
0
33
20
28
0
25
0
12
35
0
18
15
60
A
0
0
0
0
5
13
57
61
27
0
B
0
0
0
0
4
38
50
62
35
0
C
0
0
0
0
0
18
45
52
28
0
D
0
0
0
0
0
26
44
52
28
0
E
0
0
0
0
3
55
0
47
32
0
F
0
0
0
0
35
57
0
61
54
25
G
0
0
0
0
18
56
0
52
57
30
H
0
0
0
0
2
32
54
44
18
0
I
0
0
0
0
0
31
44
49
25
0
J
0
0
0
0
6
39
15
33
69
45
Total
95 62' 22 82 80 90 118 101 106 80 % (i SD) = 86 (* 27)
163 189 143 150 137 232 213 150 149
- 207
% (t SD) = 173 (* 34)
- 74 -
Project Number 454A-130
Appendix 5 (Continued)
Neonate Production
Sponsor: Test Substance: Test Organism: Dilution Water
Mean Measured Test
3M Corporation PFBS
- Cladoceran,Daphnia magno
Well Water
Concentration
0
2
5
7
(mg a.i./L)
Replicate
121
A
0
0
0
0
B
0
0
0
0
C
0
0
0
0
D
0
0
0
0
E
0
0
0
0
F
0
0
0
0
G
0
0
0
0
H
0
0
0
0
I
0
0
0
0
J
0
0
0
0
Day
9
12
14
16
19
21
0
15
27
20
0
9
0
18
46
58
30
0
0
12
31
30
10
0
0
74
0
48
51
0
5
50
0
57
55
27
4
55
0
43
33
9
0
74
0
53
34
33
4
39
57
57
51
0
0
34
46
45
29
0
0
16
41
0
43
17
247
A
0
0
0
0
B
0
0
0
0
C
0
0
0
0
D
0
0
0
0
E
0
0
0
0
F
0
0
0
0
G
0
0
0
0
H
0
0
0
0
I
0
0
0
0
- J
0
0
0
0
'This value excluded from calculation of the mean due to adult death.
8
11
43
47
46
0
6
35
41
32
35
0
0
17
21
40
28
0
2
24
40
45
43
53
10
48
0
41
43
16
21
35
0
27
40
37
22
29
0
45
50
32
8
54
0
40
50
33
0
24
41
50
40
0
7
39
54
0
57
52
Total
71 152 83 173 194 144 194 208 154 117 2 (t SD) = 149 (* 47)
155 155 106 207 158 160 178 185 155 209
- 75 -
Project Number 454A-130
Appendix 5 (Continued)
- Sponsor:
Test Substance: Test Organism: Dilution Water
Mean Measured Test
3M Corporation PFBS Cladoceran, Daphnia magna Well Water
Neonate Production
Day
-
Concentration
0
2
5
7
9
12
14
16
19
21
(mg a.i.iL)
Replicate
502
A
0
0
0
0
0
12
1
41
42
0
B
0
0
0
0
0
22
40
26
25
0
C
0
0
0
0
0
11
22
27
29
0
D
0
0
0
0
6
25
39
26
41
0
E
0
0
0
0
0
0
0
27
35
0
F
0
0
0
0
0
0
0
10
22
25
G
0
0
0
0
0
4
13
19
25
2
H
0
0
0
0
0
20
35
30
30
0
1
0
0
0
0
0
0
3
6
33
41
J
0
0
0
0
0
10
32
0
8
25
Total
96 113 89 137 62 57 63 115 83 75 X (t SD) = 89 (*26)
995
A
0
0
0
0
--
--
--
--
_-
0'
B
0
0
0
0
0
0
0
0
19
35
C
0
0
0
0
0
6
15
9
26
56
D
0
0
0
0
0
4
21
8
18
51
E
0
0
0
0
0
I --
--
-
0'
F
0
0
0
0
0
0
0
0
12
12
G
0
0
0
0
0
5
12
7
4
28
H
0
0
0
0
5
13
19
24
34
95
I
0
0
0
0
0
3
0
5
13
21
J
0
0
0
0
-_
0'
c ii(t SD) = 43 (i28)
- 76 -
Project Number 454A- 130
Appendix 5 (Continued)
Neonate Production
Sponsor: Test Substance: Test Organism: Dilution Water
3M Corporation PFBS Cladoceran, Daphnia magna Well Water
Mean
Measured Test
Concentration
0
2
5
7
(mg a.i./L)
Replicate
1876
A
0
0
0
0
Day
9
12
14
16
19
21
0
--
0
0
0
0
--
--
0
5
0
0
0
0
'This value excluded from calculation of the mean due to adult death.
Total
0' 0' 0' 0' O1 0' O1 24 4 0'
wiIdlife I nternationaI , Ltd.
- 77 -
Proiect Number 454A-130
Appendix 6 Length and Dry Weight of Surviving First-Generation D a p h d s
Sponsor: Test Substance: Test Organism: Dilution Water:
Mean
Measured Test Concentration
(mg a.i./L)
Negative Control
3M Corporation PFBS Cladoceran, Daphnia magna Well Water
Individual Length
(-1
. 4.25 4.05 4.30 3.95 4.40 4.30 4.40 4.00 4.00
Mean Length (mm SD)
4.18 ( 2 0.182)
60
4.90
4.89 (t 0.111)
4.90
4.90
4.65
4.90
5.00
5.00
4.80
5.00
4.80
121
4.75
4.78 (t 0.207)
4.80
4.50
4.60
4.85
5.00
4.65
4.90
4.55
5.15
Individual Dry Weights
(mg) 0.7
1.o
0.9 0.9 1.4 0.5 0.7 0.6 0.5
1.7 1.3 1.4 1.2 1.4 0.9 0.6 1.4
1.3
1 .o
0.9 1.5 1.9 1.6 0.9 1.1 0.9 1.2 1.1
1.o
Mean Dry Weights (mg t SD) 0.80 (2 0.29)
1.22 (t 0.31)
1.21 (t 0.34)
wildlife International, Ltd.
- 78 -
Project Number 454A- 130
Appendix 6 (Continued) Length and Dry Weight of Surviving First-Generation D a p h d s
Sponsor: Test Substance: Test Organism: Dilution Water:
Mean Measured Test Concentration
(mg a.i.4,) 247
3M Corporation PFBS Cladoceran, Daphnia magna Well Water
Individual Length
,
4.75
4.75
4.60
4.65
5.00
4.35
4.80
5.00
4.75
5.00
Mean Length (mm ?r SD) 4.77 (2 0.206)
502
4.35
4.26 (k 0.480)
4.40
4.30
4.25
4.45
2.95
4.20
4.65
4.60
4.40
Individual
Dry Weights
(mg)
1.o
1.2 1.1 0.8 0.9 0.8 0.8 0.9 1.2 0.9
1.o
0.9
1.o
1.1
1.o
0.6 0.9
0.9
0.7 0.7
995
4.10
3.69 (k0.352)
0.7
3.65
0.7
3.60
0.4
3.30
0.4
3.65
0.3
4.20
0.6
3.30
0.5
1876
2.75
2.68 (kO.106)
0.1
2.60
0.1
Mean
Dry Weights (mg k SD) 0.96 (k 0.16)
0.88 (2 0.16)
0.51 (t0.16)
0.10 (tO.0)
wildlife International. Ltd.
- 79 -
Proiect Number 454A-130
Appendix 7 Changes to Protocol
This study was conducted in accordance with the approved Protocol with the following changes:
1. The protocol was amended to add the experimental start and termination dates, test concentrations and test substance number.
2. The protocol was amended to correct the analytical sampling schedule. 3. During the second-generation exposure, neonates were observed at 2 , 2 4 and 48 hours. 4. Treatment groups were indiscriminately positioned. 5. There were two instances where the continuous temperature recorder reached 18C.
wiId1(fe Internationa1, Ltd.
- 80 -
/
Project Number 454A-130
Appendix 8 Personnel Involved in the Study
The followingkey Wildlife International Ltd. personnel were involved in the conduct or management of ths study:
1.
Henry 0.Krueger, Ph.D., Director, Aquatic Toxicology and Non-Target Plants
2. Willard B. Nixon, Ph.D., Director, Analytical Chemistry
3.
Raymond L. Van'Hoven, Ph.D., Scientist
4.
Cary A. Sutherland, Laboratory Supervisor
5.
Kurt R. Drottar, Senior Biologst
6.
Susan T. Platania, Biologist
i