Document 0JVvpKq1G0bzNMYqw6dMxBBvM
ATLANTA
Corporate Headquarters 3945 Lakefield Court Suwanee, GA 30024
(770) 866-3200 FAX (770) 866-3259
LOS ANGELES 3020 Old Ranch Parkway
Suite 300 Seal Beach, CA 90740
(562) 799-5530 FAX (562) 799-5531
PHOENIX 903 South Rural Road
#101-388 Tempe, AZ 85281 (480) 239-0602 FAX (602) 470-2655
RALEIGH 616 Hutton Street
Suite 101 Raleigh, NC 27606
(919) 829-7041 FAX (919) 829-5518
Cutting of Johns-Manville Asbestos Containing Cement Pipe
Work Practice Study
October, 2003
SUNNYVALE 285 North Wolfe Road
Suite 101 Sunnyvale, CA 94085
(408) 737-9700 FAX (408) 737-9791
WASHINGTON DC Severna Professional Building 2 605 Baltimore - Annapolis Blvd.
Severna Park, MD 21146 (410) 421-5166
FAX (508) 267-6182
www.mastest.com
By: Richard L. Hatfield Michael D. Mount, CIH William E. Longo, Ph.D.
Materials Analytical Services, Inc.
SC-GRAY-6015
INDEX OF REVISIONS
0:/
Revision # 1) Revision #0 2) Revision #1
Date Completed
October 31, 2003
December 21, 2007
Remarks N/A
Dimensions of pipe corrected.
CUTTING OF JOHNS-MANVILLE ASBESTOS CONTAINING CEMENT PIPE
PROTOCOL
1
ASBESTOS AIR & FABRIC RESULTS
2
BULK ANALYSIS DATA 1. M31736
AIR ANALYSIS DATA 1. M31835
FABRIC ANALYSIS DATA 1. M31850
DUST ANALYSIS 1. M31851
3 4 5 6
MIDGET IMPINGERS
7
PHOTOGRAPHS
8
Cutting of Johns-Manville Asbestos Containing Cement Pipe Work Practice Study
William E. Longo, Ph.D., Richard Hatfield, and Michael Mount, CIH
STUDY DESIGN AND METHODOLOGY
The study was performed in the exposure characterization lab (ECL). The size of the ECL is approximately 20' x 15' x 8' and the walls and ceiling are constructed of a painted plastic laminate. The ECL was constructed with two viewing windows for video taping purposes and has an air exchange rate of approximately 200 cubic feet per minute with two primary inlet sources and a negative air machine that produces a constant airflow during the study. Before the study, the ECL was decontaminated by standard asbestos abatement methods including HEPA vacuuming of all dust and debris and wet wiping of all surfaces in the ECL.
During video taping of the workplace study, high intensity lighting (three Altman 360Q 750 watt lights) were utilized inside the ECL to enhance the possible observations of any respirable size dust particles released during the work activity. Previous studies and protocols have shown that the use of high intensity lighting is an effective method of displaying microscopic airborne dust generated from workplace activities.1'2'33,44,5,65 6To minimize reflection, the walls inside the ECL were painted black.
During the study, air samples were collected using 25mm air cassettes containing 0.8 micron pore size mixed cellulose ester (MCE) filters and a 5.0 micron backing pad. The air sampling pumps were calibrated utilizing a DryCal primary standard before and after the sample collection. High volume pumps (Dawson 110V) were used for area or bystander air samples during the study. The pumps were located outside the ECL and connected to the air sample cassettes by Tygon tubing through the walls of the ECL. The four area air samples were located on the quadrant ends of the ECL. The air sampling cassettes were located approximately five feet from the floor and six to eight feet from the work activity. For background samples, the high volume pumps were calibrated to a flow rate of between 9.6 and 9.9 liters per minute. During the actual work practice, the high volume pumps in the ECL were calibrated to a flow rate of between 2.0 and 2.2 liters per minute.
1 Surgen Commander P.G. Harris, "The Effects and Control of Disease Associated with Exposure in Devonport Dockyard", Doctoral Dissertation.
2 C. Dernchl & K.S. Lane, "Asbestos Toxicology Report", Union Carbide Corporation. 3 D.T. ECLs, "Dust Control Development" (S. Chissick and R. Derricott), in Asbestos Volume 2 Properties,
Applications and Hazards, 6 193, 1983. 4 !.J. Selikoff, "Insulation Hygiene Progress Report", Volume 3 No.4, Winter, 1971. 5 Environmental Protection Agency SOP EPA-Libby-02, March 2001. 6 MDHS 82, The Dust Lamp, Health & Safety Executive, March 1997.
The investigator performing the work activity was fitted with two personal air samplers attached to his left and right shoulder areas. The samples were positioned to measure the breathing zone concentration of the asbestos dust during the studies. The personal air samples were collected with battery operated Gillian pumps calibrated to a flow rate of approximately 2 liters per minute. Before the study, background samples were run inside the ECL. The PCM and TEM air samples were collected in general accordance with methods outlined in the NIOSH 7400 method. During the study, two air cassettes were opened in the ECL for approximately 30 seconds, and then closed. These samples were analyzed as field blanks.
The individuals working inside the ECL wore a Tyvek suit under 100% cotton work clothes and were protected with a powered air purified respirator. The ECL design included decontamination areas for clothing removal and for a shower to remove any residual asbestos contamination before the worker left the ECL area.
The air sampling and work time for the cutting of Johns-Manville (JM) cement pipe was five minutes in length. After completion of the cutting activities and air sampling, fabric samples from the work clothes of the investigator who cut the pipe and the helper were collected in the ECL.
A sample of the Johns-Manville cement pipe was analyzed by PLM to determine the asbestos type and content. Before and after the cutting, one dust sample was collected again from the finish surface of the Johns-Manville pipe.
ANALYTICAL METHODS
The air filters were analyzed in general accordance with the NIOSH 7400 method for PCM using A counting rules. For TEM analysis, a modified Yamate EPA level II indirect air sample analysis was performed. The samples for TEM analysis were first prepared using a washout redeposit method. The fabric samples were prepared by the recommended EPA method to determine the level of asbestos contamination of the clothing worn by the investigators. The midget impinger samples were analyzed by the ACGIH method. A solution of 50% water and alcohol was used in the impinger and the results were expressed as million particles per cubic feet (MPPCF).
WORK PRACTICE
MAS received a section of Johns-Manville asbestos containing cement pipe from J. Riggs, Salmon Brothers, Inc. The dimension of the cement pipe was approximately five inches long with a one-half inch wall thickness and a six inch outside diameter. Photographs were taken of this pipe section and are shown in Section 8 of this report. A common work practice used for this type of cement pipe was to cut the material with an electric handsaw containing a masonry blade. Our study consisted of making one cut across an end of the Johns-Manville pipe section that we received. A new 7 1/4" Skil saw with a new DeWalt abrasive saw blade was used for the study. The saw was
rated at 2.3 HP and 13 amps. Additional information about this tool is shown in Section 8 of this report.
During the pipe cutting study, air samples were collected according to the following schedule:
I. Personal (IWA)
1) 0-5 minutes
P-1-A, P-1-B, P-1-C and P-1-D
II. Area (IWA)
1) 0-5 minutes
1st Area Sample Set
2) 60 - 82 minutes 2nd Area Sample Set
III. Midget Impingers 1) 0-5 minutes
P-1-MIMM & P-1-MIRH
RESULTS
During the work practice, the individual performing the cutting operation was exposed to levels of airborne asbestos fibers of between 47 to 73 fibers/cc as measured by PCM. The helper/assistant's exposure level ranged from 58 to 73 fibers/cc when also measured by PCM. Due to pump failure, only the helpers' midget impinger air sample could be analyzed and the midget impinger level was found to 40.6 MPPCF. The results for the surface dust samples can be found in the summary page.
The PLM analysis showed that the Johns-Manville cement pipe contained 25% chrysotile and trace crocidolite asbestos as determined by the recommended Environmental Protection Agency protocol for this analysis.
The average asbestos exposure for the investigators performing the cutting in this study was approximately 62.6 fibers/cc as measured by PCM. The personal samples were collected over a five minute period. Assuming that in an 8-hour work day that was the only exposure this individual would have had was for the five minutes, then his 15 minute excursion limit would have been 20.9 f/cc (over OSHA's 1972 limit).
CONCLUSION
MAS conducted a study to determine the release and potential exposure to airborne asbestos fibers during the dry cutting of Johns-Manville asbestos-containing cement pipe. This study shows that when one cut is made, with an electric saw containing a masonry blade, across the 6" outside diameter cement pipe, significant amounts of airborne asbestos fibers were released into the breathing zone of the individual and the bystander/assistant who were performing this work activity.
The surface dust data here clearly shows that when an individual has to cut the JohnsManville pipe with a dry electric saw, not only will he breathe a significant level of airborne asbestos fibers, but the severe residual asbestos contamination on the surface of the pipe and in his work area after the cut provides another potential source for exposure to that individual.
When the clothing worn by the person cutting the pipe in this study was analyzed, it was found to be highly contaminated with asbestos. This asbestos contamination on his clothing is yet another potential source of exposure through re-entrainment of the asbestos dust from the clothing when such activities as the brushing of the clothing or laundry activities are done.
QUALITY CONTROL
Phase Contrast Microscopy
MAS is accredited by AIHA for phase contrast microscopy of fiber analysis and has been a participant in AlHA's asbestos Proficiency Analytical Testing (PAT) program for asbestos fiber analysis for the last 13 years. During that time, MAS has been found proficient in each and every PAT round for the fiber analysis. Additionally, MAS exchanges air samples with outside laboratories and has developed intra and inter counter precision for the laboratory.
For the PCM air samples analyzed in this study, 10% blind recounts were performed and those results were within the confidence limits as specified by NIOSH.
Transmission Electron Microscopy & Bulk Analysis
MAS is accredited by the National Voluntary Laboratory Accreditation Program (NVLAP) to analyze asbestos air samples by transmission electron microscopy and bulk samples by optical microscopy.
.
Rate of Error Calculation
The rate of error for this study is based on the PCM analysis and is determined as follows:
Cement Pipe Cutting
Average f/cc
1) Persona! Samples
62.6
The coefficient of variation determined at this laboratory for this range of PCM fiber counts are 0.136 for personal samples.
SECTION 1
Cutting of Johns-Manville Asbestos Containing Cement Pipe Work Practice Study August 6, 2003
Protocol
ECL SET-UP
A. Study is to be performed in the exposure characterization lab (ECL) constructed using negative airflow asbestos abatement technology. The size of the ECL is approximately 15' x 20' x 8'.
B. Air exchange inside the ECL will be approximately 200 cubic feet per minute as measured (Extech Model 451126) at the air exhaust of the HEPA filter negative air machine (Aramsco, Comanche Model #55011).
C. Tyndall lighting setup in accordance with the methods described in D.T. Chambers, "Asbestos", John Wiley & Sons, 6, 193, 1983 and the Environmental Protection Agency SOP, EPA-Libby-02, Revision #1, March 2001 (Tyndall lighting section only). The lighting source will be three high intensity lights (750 watts, ellipsoid pyrex glass lens, 219K candle power, 8 degree beam divergence) located on each side of the work activity at an approximate 15 degree angle from the line of sight of the cameras.
D. Two video cameras (the Sony Handcam, Model TRV99) will be used in this study and operated in manual focus mode.
BACKGROUND AIR SAMPLES
A. The ventilation flow rate will be adjusted to approximately 200 cubic feet per minute during background sampling.
B. Adjust and calibrate high volume area pumps to 10 liters per minute.
C. Setup four area air samples inside the ECL. Use 25 mm air cassettes containing 0.8 micron pore size mixed cellulose ester (MCE) filters with a 5.0 micron backing pad.
D. Locate the area air samples in each quadrant of the ECL at a height of 55" from the floor and a distance of approximately 7 feet from the work activity.
III. WORK PRACTICE STUDY
A. Before the study, one dust sample will be collected from the surface of the pipe and submitted to the laboratory with a field blank. After the cutting is completed, a second dust sample will be collected on the surface of the pipe.
B. The investigators will wear a supplied air respirator.
C. Each investigator will wear three personal air pumps for two air cassettes and one midget impinger air sampler.
D. The work practice will be viewed from time to tine under high intensity lighting. The entire procedure will be video taped with two separate cameras.
E. Area air samples will be taken during the study in each quadrant of the chamber at a flow rate of approximately 2.0 - 2.5 liters per minute. Two sets of area samples will be collected in this study. The high volume pumps will be calibrated both before and after the air samples are collected.
F. A 7%" 13 amp Skil saw (2.3 HP) Mode! #5600-01 with a 7" abrasive saw (DeWalt) will be used in this study and was purchased new for the study.
G. The work practice will consist of cutting one cross section from the end of the Johns-Manville cement pipe.
H. The investigators will wear personal air samples during the work practice. The Gilian pumps will be calibrated to approximately 0.5 liters per minutes for the air cassettes and 2.75 liters per minute for the midget impinger. After the study, the air pumps will be recalibrated.
I. The personal air cassettes will be collected for five minutes.
J. The first set of area samples will be collected for five minutes, the second set will be run for approximately 20 minutes and started approximately 60 minutes after the first area samples have been collected.
Laboratory Analysis
A. All air samples will by analyzed in general accordance with the NIOSH 7400 PCM method using A counting rules. After a portion of the filter has been removed for the PCM analysis, the filter then will be analyzed by TEM.
B. For the TEM analysis, all air samples will be prepared by the indirect washout method. Samples will be analyzed using the EPA Level II Modified Counting Rules.
C. Fabric samples will be analyzed by the EPA recommended method.
D. Dust samples will be analyzed in general accordance with the ASTM D5755-3 method.
E. Midget impinger samples analyzed by the ACGIH method.
MATERIALS ANALYTICAL SERVICES, INC.
#
Work Practice Simulation Protocol
I) Chamber Setup
A) The walls, ceiling, and floor are painted black to diminish light reflection. B) Arranged lighting for Tyndall effect in general accordance with the method
described in by D.T. Chambers, "Asbestos", John Wiley & Sons, 6, 193, 1983.
II) Background Air Samples
A) Adjust and calibrate high volume area pump to appropriate flow rate. B) Set up two or more air samples inside the chamber and one outside air
sample in general accordance with the procedure outlined in the NIOSH 7400 method.1
III) Work Practice Study2
A) Review the appropriate information on work practices simulation. B) Acquire all necessary tools and materials required for work practice
simulation. C) Calibrate personal and high volume sampling pumps appropriate to flow
rates. D) Set ventilation to 200 cubic feet per minute as measured with the Extech
Flow Anemometer. E) Set up two or more inside air samples and one outside air sample in
general accordance with the procedure outlined in the NIOSH 7400 Method.1 F) Participants in the study are to wear protective clothing, work apparel, and respiratory protection equipment. G) Set up the personal air samples in general accordance with the procedure outlined in the NIOSH 7400 method.1 H) Determine the appropriate time for the length of study. I) Work practice study performed as determined in Section III, A&B.
1 If midget impinger air sampling is to be done, set up the samples in general accordance with the ACGIH method.
2 Parts of the procedure may be done in advance of chamber set up.
J) If appropriate, film the work practice study from start to finish in two directions. During filming, turn off Tyndall lighting and turn the overhead lights on at least on one occasion.
IV. ANALYSIS
A) Analyze air samples in general accordance with the NIOSH 7400 PCM methods with A counting rules. (See Note)
B) Analyze some or all of the air samples by the NIOSH 7402 TEM method. C) Analyze the cloth/fabric samples by the recommended EPA method. D) Analyze dust samples by the ASTM D-5755-95 method.
V. RESULTS
A) Air: Report PCM results as fibers/cc, if NIOSH 7402 method is used, provide the results of the percentage of asbestos versus non-asbestos fibers and calculate the PCME.
B) Fabric: Report TEM results as number of asbestos structures per cm2 and per square foot of cloth sample.
C) Dust: Report TEM results as number of asbestos structures per cm2 and per square foot of surface area sampled.
VI. OPTIONAL ANALYSIS
A) Midget impinger samples analyzed by the ACGIH method. B) Dust samples analyzed by the ASTM D-5755-95.
Note: According to the NIOSH 7400 method, fiber counts outside 100-1300 fibers/mm2 range have greater than optimal variability and are probably biased.
SECTION 2
Sample No.
A-O-A (NE) A-O-B (SE) A-O-C (SW) A-O-D (NW)
A-MP-1
Cutting of Johns Manville Asbestos Containing Cement Pipe
Asbestos Air, Dust & Fabric Analysis Results
Sample Description
IWA Background IWA Background IWA Background IWA Background IWA Background
PCM
Fibers/cc
<0.01 <0.01 <0.01 <0.01
TEM
Str/cc (Alii
<0.05 <0.05 <0.05 <0.05
TEM Fibers
> 5 um/cc
N/A N/A N/A N/A
Midget Impinger MPPCF
0.25
Sample No.
P-1-ARHR P-1-B RHL P-1-C MMR P-1-D MML
P-1-RH P-1-MM
PERSONAL SAMPLES
Sample Description
Personal Personal Personal Personal Personal Personal
PCM
Fibers/cc
47.1 73.2 57.5 72.5
TEM
Str/cc (All)
3,814.9 1,911.2 3,003.3 3,668.2
TEM Fibers
> 5 um/cc
978.2 182.0 455.1 611.4
Midget Impinger MPPCF
Pump Failure 40.6
Sample No.
A-1-A A-1-B A-1-C A-1-D
A-2-A A-2-B A-2-C A-2-D
FB-1 FB-2
AREA SAMPLES
PCM
TEM
TEM Fibers
Sample Description
Fibers/cc
Str/cc (All) > 5 um/cc
IWA Area
21.9
2,245.4
377.9
IWA Area
22.0
6,969.5
1,222.7
IWA Area
21.9
3,938.1
317.6
IWA Area
23.5
933.7
222.3
Collected 60 Minutes After Area 1 Samples
IWA Area 5.8 63.5 15.9
IWA Area 6.3 55.8 22.3
IWA Area 6.3 40.6 10.2
IWA Area 4.4 60.6 5.1
AIR FIELD BLANKS
IWA IWA
PCM Fibers/mm2
<7 <7
TEM Structures/mm2
< 13 < 13
Cutting of Johns Manville Asbestos Containing Cement Pipe
Asbestos Air & Fabric Analysis Results
Continued
FABRIC ANALYSIS
Fabric Blank RH Fabric Blank MM
Fabric MM Fabric RH
F-1-RH F-1-MM F-2-MM F-2-RH
Blank Blank Fabric Fabric
Structures/ ft2
N/D N/D 68.15 million 148.4 million
SURFACE DUST ANALYSIS
DS-1 DS-2 DS-B
Outside Surface Before Study
Outside Surface After Study
Field Blank
Structures/ ft2 956.6 million
745.5 million
N/D
Structures/cm2
N/D N/D 73.35 thousand 159.7 thousand
Structures/cm2 1.0 million
802.4 thousand
N/D
ND = Non-detected
SECTION 3
MATERIALS ANALYTICAL SERVICES, INC. CHAIN-OF-CUSTODY
Page 1 of 1
CLIENT: LEVY, PHILLIPS & KONIGSBERG CONTACT: Moshe Maimon PHONE: (212)605-6260 CLIENT JOB NAME: Asbestos Pipe CLIENT JOB#: CLIENT DOC(S): Letter of transmittal FAX NUMBER:
MAS JOB: M31736 DATE RECEIVED: 7/25/2003 SUBMITTED BY: J Riggs, Salmon Bros. TRANSPORT: UPS RECEIVED BY: dmazzaferro CONDITION: good
MAS# CLIENT ID 001 B-1 LOCATION
002 B-2 LOCATION
VOLUME TYPE MATERIAL tri corner pipe - big
smaller ring pipe
MAS# CLIENT ID
VOLUME TYPE MATERIAL
INITIAL FILE REVIEW: SAMPLE PREP BY: SAMPLE ANALYSIS BY: COMMENT:
Materials Analytical Services, Inc. 3945 Lakefield Court
Suwanee, Georgia 30024 (770) 866-3200
DATE: DATE: DATE:
Telephone: (973)347-0013 Fax: (973) 347-0928
)
Equal Opportunity Employer
Salmon Bros., Inc.
ROAD BUILDERS
P.O. BOX 67 NETCONG, N.J. 07857
July 23, 2003
Wm. Longo Matrials Analytical Service 3945 Lakefield Court Suwanee, Georgia 30024
Re: Testing of enclosed pieces of asbestos pipe
Dear William:
Please find enclosed two pieces of pipe for testing per Mr. Moshe Maimon, Attorney at Law.
Levy, Phillips & Konigsberg LLC 520 Madison Avenue New York, New York 10022 212-605-6260
We were instructed to send you these pieces - any questions, please call Moshe Maimon at the law firm listed above.
"J" Riggs
INDUSTRIAL HYGIENE
3945 Lakefield Court Suwanee, GA 30024 PH: (770)866-3200 FAX: (770) 866-3259
SAMPLING CHAIN OF CUSTODY
Co. Name
m Address
PH: FAX:
Project Number:__ _ Project Name: Work Area Description^.
/k^fbuuL - k'p^
Project Representative:. Sampling Date:________
lof_L Sheet
Date
6/iT
Sample No. .
Sample Location
Sample Media
f/fjLX frflhKli b --
p-..2(S^) ( j>e
xf
Analysis Desired
QlM
~~
Start Time ---
Stop Time
*--
Total Time
(Minutes) --------
Average Flow Rate
(LPM)
Air Volume (Liters)
--
First Transfer By: Second Transfer By: Third Transfer By:
CHAIN OF CUSTODY , ! Initial Shipment Dale: &r/^7D i
Log-inDat4
Received By
MATERIALS ANALYTICAL SERVICES, INC. PLM ANALYSIS
Proj#-Spl#:
M31736-002
Analyst W.B. Egeland
ClientName LEVY, PHILLIPS & KONIGSBERG CiientSpI:
Location: Type_Mat: smaller ring pipe.
Date: 8/12/2003 B-2
Gross Light gray. 6" outside diameter pipe w/1/2" thick wall. Cementitious with white and blue fiber Visual: bundles throughout. No paint observed.
OPTICAL DATA FOR ASBESTOS IDENTIFICATION
Morphology Pleochroism Refract Index
Sign Extinction Birefringence
Melt Fiber Name
Wavy None 1.555/1.548 + Parallel Low No Chrysotile
Straight BIue/Dk. Blue 1.705/1.695 Parallel Mod No Crocidolite
ASBESTOS MINERALS
EST. VOL. %
Chrysotile........ ................................... Amosite............................................... Crocidolite........................................... Tremolite/Actinolite............................ Anthophyllite.......................................
OTHER FIBROUS COMPONENTS
................... 25 ..........................
Trace
NON FIBROUS COMPONENTS
Binder Effervescence: Strong.
Binder Description: Fine-grained aggregate
Comments: No starch observed
75
SECTION 4
MATERIALS ANALYTICAL SERVICES
Client Code: MASCORP
PROJECT LOG
MAS ID: Client Name; Project Name: Logged By:
M31835 Materials Analytical Services, Inc. Cutting CA Pipe JM dmazzaferro
Client Job No: Client PO: Date In:
8/6/03
TRANSPORT INFORMATION:
Submitted By: Delivery By: Received By: Condition:
Mike Mount Hand Delivery dmazzaferro good
Documents: coc
Comments for COC:
CONTACT INFORMATION:
Contact:
Richard Hatfield
Title: First Name: Last Name:
Mr. Richard
Hatfield
Suffix
Work Phone: (770) 866-3204 Other Phone: Fax: (770) 866-3259
Ext: Ext:
Page 1 of 4
M31835
# Client ID 001 P-1-MIRH 002 P-1-M1MM 003 P-1-BLANK 004 P-1-BG 005 A-O-A 006 A-O-B 007 A-O-C 008 A-O-D
,
SAMPLE INFORMATION:
Volume 13.65 13.95 0 49.14 1840 1840 1840 1895
# Client ID
Volume
SIGNATURES
RECEIVED BY: REVIEWED BY: PREPARED BY: ANALYZED BY: REPORTED BY: DEPOSED BY:
J
liftA,]/ 7Kt
(jT
M31835
# Client ID 009 A-O-E 010 P-1-A 011 P-1-B 012 P-1-C 013 P-1-D 014 A-1-A 015 A-1-B 016 A-1-C 017 A-1-D 018 A-1-E 019 A-2-A 020 A-2-B 021 A-2-C 022 A-2-D 023 ASFB-1 024 ASBF-2 001 P-1-MIRH 002 P-1-M1MM 003 P-1-BLANK 004 P-1-BG 005 A-O-A 006 A-O-B 007 A-O-C 008 A-O-D
SIGNATURES
RECEIVED BY:
REVIEWED BY:
PREPARED BY:
ANALYZED BY:
REPORTED BY:
DEPOSED BY:
SAMPLE INFORMATION:
Volume 1877 2.5 2.7 2.7 2.8
11 10
11
11
918 46.2 44 48.4 48.4
0
0 13.65 13.95 0 49.14 1840 1840 1840 1895
# Client ID
Page 2 of 4
Volume
M31835
# Client ID 009 A-O-E 010 P-1-A 011 P-1-B 012 P-1-C 013 P-1-D 014 A-1-A 015 A-1-B 016 A-1-C 017 A-1-D 018 A-1-E 019 A-2-A 020 A-2-B 021 A-2-C 022 A-2-D 023 ASFB-1 024 ASBF-2 001 P-1-MIRH 002 P-1-MIMM 003 P-1-BLANK 004 P-1-BG 005 A-O-A 006 A-O-B 007 A-O-C 008 A-O-D
SIGNATURES
RECEIVED BY:
REVIEWED BY:
PREPARED BY:
ANALYZED BY:
REPORTED BY:
DEPOSED BY:
SAMPLE INFORMATION:
Volume 1877 2.5 2.7 2.7 2.8 11 . io 11 11 918 46.2 44 48.4 48.4 0 0 13.65 13.95 0 49.14 1840 1840 1840 1895
# Client ID
Page 3 of 4
Volume
M31835
# Client ID 009 A-O-E 010 P-1-A Oil P-1-B 012 P-1-C 013 P-1-D 014 A-1-A 015 A-1-B 016 A-1-C 017 A-1-D 018 A-1-E . 019 A-2-A 020 A-2-B 021 A-2-C 022 A-2-D 023 ASFB-1 024 ASBF-2
SAMPLE INFORMATION:
Volume 1877 2.5 2.7 2.7 2.8 11 10 11 11 918 46.2 44 48.4 48.4 0 0
# Client ID
Page 4 of 4
Volume
SIGNATURES
RECEIVED BY: REVIEWED BY: PREPARED BY: ANALYZED BY: REPORTED BY: DEPOSED BY;
a,
X
TEM SAMPLE DATA
Prep SOP#: Prep Status: Sample Type: Analysis type:
MT-022 Complete Indirect Air MAS indirect
Sample Number
Sample ID
M31835
Page |l of 3
Archival Information
Slides:| 180 Filters:)
[ Bottles:J 947 [ Gld_box:| 6623
Archive Comments:! Disposal Comments:
Area
Filter Portion
Total Susp
|
Reprep Dates
Filtered Volumes in m #3 #4 #5
Filter Type:
,,f***v
TEM SAMPLE DATA
Prep SOP#: ~ Prep Status: Sample Type: j Analysis type: j
MT-022 Complete Indirect Air MAS indirect
! |
M31835
prep_date:| 8/13/03 j Prep Tech:
dmazzaferro
Archival Information
"TSlides:|"l80j Filters:^ ... Bottles:|947[ Gld_box:[~6623 ' i
Archive Comments:! Disposal Comments:
Page |2 of 3 Reprep Dates
s- i
TEM SAMPLE DATA
Prep SOP#: Prep Status: Sample Type: Analysis type:
M31835
INDUSTRIAL HYGIENE AIR SAMPLING CHAIN OF CUSTODY
Co. Name Address
3945 Lakefield Court
Suwanee, GA 30024 PH: (770)866-3200 FAX: (770) 866-3259
PH: FAX:
Ht hi BVS*
Project Number Project Name: Work Area Description: Project Representative:
/03Sampling Date:SJIt
Date Sample No. g/6 d-0 -ft . 1 ....
jl-o-c... V%=b 4 -o -fc
p-i-i3
P-i-d h^L-A.
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First Transfer By: Second Transfer By: Third Transfer By:
Sample Location A' tQ ur*;. %.E, 1
Sample Media
1K(P.
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i /imJ____ * L_ _
Ou'/sicLT&t cyj)
KH-^Lef-k.lie e Rfc4 ^ icf ^
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Analysis Desired
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__________
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CHAIN OF CUSTODY
Initial Shipment Date:
y
Total Time Average
Air
Start Stop
Flow Rate Volume
Time Time (Minutes) (LPM) (Liters)
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Received .By
INDUSTRIAL HYGIENE AIR SAMPLING CHAIN OF CUSTODY
** Co, Name
85
Address
3945 Lakefield Court
Suwanee, GA 30024 PH: (770)866-3200 FAX: (770) 866-3259
PH: FAX:
Project Number
tfi fufx - ^
Project Name:
Work Area Description:__ T_ esf
Project Representative: O.
Chamber
Sampling Date:_ g/e/o?..
Sheet
of
\
i Project Name:
Analysis Date:
Materials Analytical Services Airborne Fiber Analysis
NIOSH 7400 Issue 2; Phase Contrast Microscopy
_
CiACur 7 M/G
J>7
h -Sample # n sit PCS'
%<* /o 3 Media Type: 25 mm MCE Filter
_____ --
--
' --- --
/
--- -- T~ --1 ' -- ,-- --- -- ---
--
-- -- /--
---- ----
----- ----
---- --
--
----
-- --
/
---
--
--/
J2- --- ----
-- ----
;
-- -----
-- --
'-- --
-- --
X2 --
.--
---- ----
--- /
--- --
-- ---- -
---- -- . -----
-- ------ --
-- -- --
-- -- --
Sample ID:
$ 0~~
10
Pump Row Rate, Liters/minute (FR)
20 Sample Time, minutes CD Sample Volume, Liters (V)
30
Total Fibers Counted, Sample (FCS)
40 Total Fields Counted, Sample (FLS)
Total Fibers Counted, Blank (FCB)
50 Total Fields Counted, Blank (FLB) Area of Filter, mm2 (AF)
60 Graticule Field Area, mm2 (GFA)
/ 2 Y0
2
/OO
f J~ 77
70 Calculation.of Fiber density (E) in Fibers/square millimeter
80 90 E =
E = ((FCS/FLS)-{FCB/FLB))/GFA
! 0, V"
fibers/mm2
-- --
----
/ 100
Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
Notes:
= LEHAF)
1000 * V
C--
0^00(2
fibers/cubic centimeter
Limit of Quantitation (LOG) = 7 fibers/mm*
Materials Analytics) Services 3945 Laketieid Court
Suwanee, ga 30024 Phone (770) 866-3200
'
Pace
~
of
Project Name: Analysis Date:
Materials Analytical Services Airborne Fiber Analysis NIOSH 7400 Issue 2; Phase Contrast Microscopy
c UTTiNk C A
J ft
Sample # f? 7/^^'' OOi
Media Type: 25 mm MCE Filter
--. --
!--
. -- ---
---- --
---
f--
----
-- /
__
/1----- ------
^_ _
--
--
/
-- ---
_L -
-- -- --
-___ --
--
--
---- >
a
-- --
-- .._ -- -- -- -- -- -- -- --
--
/
-- -- Sample ID:
0" /3
-- 10
-- --
Pump Flow Rate, Liters/minute (FR)
-- -- 20 Sample Time, minutes (T) -- -- Sample Volume, Liters (V)
/ <P */0
-- *
-- -- ---
/
-- -- -- --
--- 30 -- Total Fibers Counted, Sample (FCS)
i/ * /( 2
-- 40 Total Fields Counted, Sample (FLS)
/0 o
Total Fibers Counted, Blank (FCS) -- 50 Total Fields Counted, Blank (FLB) --- Area of Filter, mm2 (AF)
^ / f o' 3)
-- 60 Graticule Field Area, mm2 (GFA) --
O~0dT
-- 70 --
Calculation.of Fiber density (E) in Fibers/square millimeter
-- -- 80
E = ((FCS/FLS)-{FCB/FLB)}/GFA
---
----
/
i i --
90 100
E = / Y. f
. fibers/mm2
Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
Notes:
G. = (E)*(AF) 1000 *V
C = 00 3
fibers/cubic centimeter
Limit of Quantitation (LOQ) = 7 fibers/mrn: Fiber counts outside the 100-1300 fibers/mrrr range have greater than ootimal vanability and are probabty biased
-Analyst: }
Reviewed By:
Materials Anatyticaf Services 3945 Lakefieid Court Suwanee, GA 30024 Phone (770) 866-3200
'
Date Date:
D
Paae ~
of
}
Project Name: Analysis Date:
Materials Analytical Services Airborne Fiber Analysis NIOSH 7400 Issue 2; Phase Contrast Microscopy
CUTTfrJ<i $
Sample# Af 3j ??
yflfo/? Media Type: 25 mm MCE Filter
Oo~?
--
---- --- ---
-- /
i .. ""1
--
-- --
--
--- --
- / --
-- / -- JL JL
--
-----
--
------
-- --
-- -- ---
/ .--
--
----
--- / --- / ---
------- -- --
--
Sample ID:
ft 0 CL
10 Pump Flow Rate, Liters/minute (FR)
20 Sample Time, minutes (T) Sample Volume, Liters (V)
30 Total Fibers Counted, Sample (FCS)
// YO //
-- -- -- ' .--
----
-- 40 Total Fields Counted, Sample (FLS)
---- Total Fibers Counted, Blank (FCB) -- 50 Total Fields Counted, Blank (FLB)
/Go O
fOo
----
--
Area of Filter, mm2 (AF)
/ -- -- 60 Graticule Field Area, mm2 (GFA)
3 fT c.pa'7 7
---- . / --
--
-- --
--
----
_-- --
_
--
--
------ `
70 80 90
Calculation,of Fiber density (E) in Ftbers/square millimeter
E = {(FCS/FLSMFCB/FLB))/GFA
E = / V. 3
fibers/mm2
--
-- ----- - 100
Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
Notes:
C--
G. = fE)*(AF) 1000 *V
$.063
fibers/cubic centimeter
Limit of Quanlitation fLOG) = 7 fibers/mrrr ' Fiber counts outside tbe 100-1300 fibers/mirr r^ige have greater than ootimal variability and are probably biased
Analyst:
Date:
Reviewed By:
Materials Analytical Services 3945 LakefiekJ Court Suwanee, GA 30024 Phone (770) 866-3200
'
Date:
Paae
"'
Of
i
Project Name: Analysis Date:
Materials Analytical Services Airborne Fiber Analysis NIOSH 7400 Issue 2; Phase Contrast Microscopy
0 C/7 <J
*?/j'Q ^0 3 Media Type: 25 mm MCE Filter
Sample#
3fS3^
__ _ ---- ---- ---- --
-- --
,,-- ---
---- --- --' --
/ ---
--- ---
-- ---
--
/ ---
--
--- -- --- -- ----
--- -- -- AJL --1
--
-- ---
--
----
----
-
x .2
-- ` ---
-- ---
----
--
/
--.
----
-- --
-- /
--
--
/
----
----
----- ----
^---
----
-- Sample ID: -- 10
/ Pump Row Rate, Liiers/minute (FR)
j
3.
20 Sample Time, minutes CD
-- Sample Volume, Liters (V)
-- --
30 Total Rbers Counted, Sample (FCS)
( 40 Total Fields Counted, Sample (FLS)
-- Total Fibers Counted, Blank (FCB)
-- 50 Total Fields Counted, Blank (FLB)
-- Area of Filter, mm2 (AF)
-- 60 Graticule Field Area, mm2 (GFA)
--
/ fr f
. , J-
// 2
/ 0O 0
/ 00
3
0 - 0O"7 "7
70
--
Calculation,of Fiber density (E) in Fibers/square millimeter
80
----
-- 90 ----.
--
100
E = <(FCS/FLS)-{FCB/FLB))/GrA
E= / V, ^
fibers/m m2
Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
Notes:
iEHAFI 1000 * V
'
C = d- & 0 3
fibers/cubic centimeter
Limit of Quantitation (LOG) = 7 fibers/mirr
..
mber counts outside the 100-1300 fibers/mnv range havjgreater than ooumal vanabiiity and are orobably biased
Nalyst; )
Reviewed By:
Qhfsjj0^"--.---
Matenais Analytical Services
3345 LaKefiekj Court Suwanee, GA 30024 Phone (770) 866-3200
'
Date. Date:
Paae
"'
Of
1
Project Name: Analysis Date:
Materials Analytical Services Airborne Fiber Analysis NIOSH 7400 Issue 2; Phase Contrast Microscopy
C<-> TTV^t. C f\
J~r1
Sample# /7 3 ! <$33 '6/0
J ( ^ 0j7 5 Media Type: 25 mm MCE Filter
2
/i
j
i Hi _L 7i
.X
3 7 2 i 3*2 r/ j --
3 3i y V
3 / 2$ 5
! (i i
3
Hi
2i
t ;J2
3 3 2A
X\ 1 .li
y y si
Sample ID:
ft- / ~ 3)
10
Pump FIgw Rate, Liters/minute (FR)
20 Sample Time, minutes CD
Sample Volume, Liters (V)
30
Total Fibers Counted, Sample (FCS)
40 Total Fields Counted, Sample (FLS)
Total Fibers Counted, Blank (FCS)
50 Total Fields Counted, Blank (FLB)
Area of Filter, mm2 (AF)
J 60 Graticule Field Area, mm2 (GFA)
3
/ 0 '/ 9 3T
^
/0 C J^ 0-$ d
70 Calculation.of Fiber density (E) in Fibers/square millimeter
80 E = ((FCS/FLS)-{FCB/FLB))/GFA
90 E =
3 / /. 2
fibers/mm2
100 Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
Notes:
C=
,
& = (ET(AF)
1000 *V
L/~7. 0 7*2
.
fibers/cubic centimeter
Limit of Quantitation (LOQ) = 7 fibers/mm*
"iber counts outside the 100-1300 fibere/mm" range have greater than ootimai vanabiiity and are orobably biased
^aiyst:
Date.
Reviewed By:
MatenaJs Anaiyticat Services 3945 Lakefield Court Suwanee, GA 30024 Phone (770) S66-3200
'
Date: jd (ZiQ^
Page
'
of
^ Project Name:
Analysis Date:
Materials Analytical Services Airborne Fiber Analysis NIOSH 7400 Issue 2; Phase Contrast Microscopy
L/77
(T/? ft?f(' ,j ^
Sample# hjJ/$3^ Of /
__ Media Type: 25 mm MCE Filter
7 G> 3 3*
7i
3
7
7 jri
Sample ID:
fi /' f$
7 7 /i 10
7 7 J7 A^
Pump Row Rate, Liters/minute (FR)
v < y 20 Sample Time, minutes (T)
3 Sample Volume, Liters (V)
30
Total Fibers Counted, Sampie (FCS) 40 Total Fields Counted, Sampie (FLS)
Total Fibers Counted, Slank (FCS)
50 Total Fields Counted, Blank (FLB)
Area of Filter, mm2 (AF)
60 Graticule Field Area, mm2 (GFA)
3
/0 /
3? 3
O (o q 3 X ) 0. oo~? "7
70 Calculation.of Fiber density (E) in Fibers/square millimeter
30 E = {(FCS/FLS)-{FCB/FLB))/GFA
90 E =
3 70,, 3
fibers/mm2
Notes:
100 Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
C.=(E)`(AF1
1000 *v
C--
7-3 /Iff
flbers/cubic centimeter
Limit of Quantitation (LOQ) = 7 fibers/mm2
Materials Analytical Services 3945 Lakefiefd Court Suwanee. GA 3Q024
Phone (770) 866-3200
-
'
PaaeOf
~
) Project Name:
Analysis Date:
Materials Analytical Services Airborne Fiber Analysis NIOSH 7400 Issue 2; Phase Contrast Microscopy
C
CA P/^6
h
Sample# fl 2/ <322 '
9/>o/<V
_ Media Type: 25 mm MCE Filter
/3 /$ / a3
3
2! 2 1* r LX
,.
J
J
(, y YJ3 Yh
Y*
/i
V'i r r /
23
3 /fa
3i y
Sample ID:
P~/
10
Pump How Rate, Uters/minute (FR)
20 Sample Time, minutes (T)
Sample Volume, Liters (V)
30
Total Fibers Counted, Sample (FCS)
40 Total Fields Counted, Sample (FLS)
Total Fibers Counted, Blank (FCB)
50 Total Fields Counted, Blank (FLB) Area of Filter, mm2 (AF)
60 Graticule Field Area, mm2 (GFA)
3
/0 3 3O
0 fo o
f' d- 0<i~7~7
70 Calculation, of Fiber density (E) in Fibers/square millimeter
80 E = {(FCS/FLS)-{FCB/FLB))/GFA
90 E -
L( V < /
fibers/mm2
Nates:
100 Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
1000 *v
C -- 32 7,
fibers/cubic centimeter
Limit of Quantitation (LOQ) = 7 fibere/mm2 Piber counts outside the 100-1300 fibers/mm* range,have greater than ootimal vanability and are orooabty biased
Analyst: .5
Reviewed By:
Materials Analytical Services 3945 Lakefietd Court Suwanee, GA 30024 Phone (770) 866-3200
'
Date Date: (VoW
Paae
"'
of
Project Name: Analysis Date:
Materials Analytical Services Airborne Fiber Analysis NIOSH 7400 Issue 2; Phase Contrast Microscopy
Cut) a*'6 C/I ftfC Jtl
Sample # /7 3/ljS" @93
i/fo /<n
Media Type: 25 mm MCE Filter
T 7 77 S~
Sample ID:
S' 3 c i si 3 10
s.
<c 7 Y, Pump Flow Rate, Liters/minute (FR)
7 ,3 Y
3 3 Jt 20 Sample Time, minutes (T)
4 y 7 vl Sample Volume, Liters (V)
y 30
Total Fibers Counted, Sample (FCS)
40 Total Fields Counted, Sample (FLS)
Total Fibers Counted, Blank (FCB)
50 Total Fields Counted, Blank (FLB)
Area of Filter, mm2 (AF)
j
60 Graticule Field Area, mm2 (GFA)
3
/ SO
*23 d
111
?/S
0.06 77
70 Calculation, of Fiber density (E) in Fibers/square millimeter
80 E = {(FCS/FLS)-{FCB/FLB))/GFA
90 E=
S6 V; 7
fibers/mm2
Notes:
Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
C = (E)*fAF) 1000 *V
C=
7>. Y(3
fibers/cubic centimeter
Limij of Quantitation (LOG) = 7 fibers/mm*
'
"iber counts outside tbe 100-1300 fibers/mm" range have greater than ootimai vanability and are probably biased
Analyst: .\
reviewed By:
Materials Anaiytical Services 3945 Lafcefietd Court Suwanee, GA 30924 Phone (770) 866-3200
Date Date:
/7-/0??
Paae
of
Project Name: Analysis Date:
Materials Analytical Services Airborne Fiber Analysis NIOSH 7400 Issue 2; Phase Contrast Microscopy
i CA
"3^7*7______
Sample# t~? 3^30/Y
Media Type: 25 mm MCE Filter
/ J1,
6 r3
Sample ID;
r 3 i tf 4 a Yi 10
~/
7 H Y ci
f
Pump Row Rate, Liters/minute (FR)
3 6J2
y Y 20 Sample Time, minutes (T)
jr }y^
3r
J-
j
3
6
Sample Volume, Liters (V)
? i 7i 3 3 30
Total Fibers Counted, Sample (FCS)
40 Total Fieids Counted, Sample (FLS)
Total Fibers Counted, Blank (FCS)
50 Total Fieids Counted, Blank (FLB)
Area of Filter, mm2 (AF)
60 Graticule Field Area, mm2 (GFA)
3
//
} 0(
- ( O
f00
3 if1 J
o, o d "7 7
70 Calculation, of Fiber density (E) in Fibers/square millimeter
80 E = ((FCS/FLS)-{FCB/FLB))/GFA
90 E =
^X ^y
fibers/mm2
Notes:
100 Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
G=( E)*(AF)
1000 * V
C=
X /. <$/
fibers/cubic centimeter
Limit of Quantitation (LOQ) = 7 fibers/mm* Fiber counts outside the 100-1300 fibers/mm-jenge have greater than ootrmat vanabiiity and are prooahty biased
Date,
Materials Analytical Services 3345 Lakefiefct Court Suwanee, GA 30024
Phone (770) 566-3200
'
Date:
Paae
"'
of
Project Name: Analysis Date:
Materials Analytical Services Airborne Fiber Analysis NIOSH 7400 Issue 2; Phase Contrast Microscopy
<Cc//77/v6
J /l
Sample# f7 3 / 31^ " 0/S'
7/?o/r/
_ Media.Type: 25 mm MCE Filter
/
5
r
y
3
33
2
3
y
fi
G G
H
Ci 6
y
y
r
3
7i
7a h**
Ji
Hi
y^
si
y
j>
y
J
y
if i
3
Yi
J y
y
/3
3i
Sample ID:_________ /) " / 0
10 Pump Row Rate, Liters/minute <FR)
20 Sample Time, minutes (T) Sample Volume, Liters (V)
30 Total Fibers Counted, Sample (FCS)
40 Total Fields Counted, Sample (FLS) Total Fibers Counted, Blank (FCB)
50 Total Fields Counted, Blank (FLB) Area of Filter, mm2 (AF)
60 Graticule Field Area, mm2 (GFA)
__________ __________ ______ /0
/0 l _______ 2 7 ______ 6
( ______3$ ^
67
70 Calculation.of Fiber density (E) in Fibers/square millimeter
80
90 E=
E - {(FCS/FLS)-{FCB/FLB))/GFA
S 3 0* 3
fibers/mm2
Notes:
100 Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
= (E)*(AF) 1000* V
C = 3? /, 9^ 7_________________fibers/cubic centimeter
_lmrt of Quantitation (LOQ) = 7 fTbers/mnr -iber counts outside the 100-1300 fibers/mm* rangeAave greater than ootimal vanability and are crcbably biaseo
Analvst: \!
"Reviewed By:
Materials Analytical Services 3945 Lakefietd Court Suwanee, GA 30024 Phone <770) 866-3200
'
Date Date:
(M Id (2id'b
Paae
~
Of
Materials Analytical Services Airborne Fiber Analysis NIOSH 7400 Issue 2; Phase Contrast Microscopy
Project Name: Analysis Date:
C<j ff/A/j, 0/f
ifafa______
'J Sample # f? 3/JfJS '0/
Media Type: 25 mm MCE Filter
2r
G* i-k
6i yi H . Yi o' Y
j,
.. r Yi yi
Sample ID:_______________ ~/ O
6 yi
10
H sri 2
Pump Flow Rate, Liters/minute (FR)
i H r 2 Sample Time, minutes (T)
7%
Sample Volume, Liters (V)
30
Total Fibers Counted, Sample (FCS)
40 Total Fields Counted, Sample (FLS) Total Fibers Counted, Blank (FC8)
50 Total Fields Counted, Blank (FLB) Area of Filter, mm2 (AF)
60 Graticule Field Area, mm2 (GFA)
_________ _________
//
/Of ______ / _________ ______ fp <j
Jf'F"
o. $ "7 "7
70 Calculation, of Fiber density (E) in Fibers/square millimeter
80 E = ((FCS/FLS)-{FCB/FLB))/GFA
90 E =/' j/- Y, (/fibers/mm2
Notes:
100 Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
C = lEgfAFA
1000V
c-
___ at. ft/
fibers/cubic centimeter
Limrt of Quantitation (LOG) = 7 fibers/mm*
.
- Fiber counts outside the 100-1300 fibers/mrrryange have greater than oottmal vanabrlity and are orobabiy biased
Analyst;
Date.
veviewed By:
Materials Analytical Services 3945 Lakefietd Court Suwanee, GA 30024
' Phone (770) 866-3200
'
Date: 1617. 'O'?
Paoe
"
Of
Project Name; Analysis Date:
Materials Analytical Services Airborne Fiber Analysis NIOSH 7400 Issue 2; Phase Contrast Microscopy
C0TT/sJ<* CA ft/C Tr\
Sample #
q/3*/o3 _____ Media Type: 25 mm MCE Filter
M ? / 7 ^ 5~
Q/~J
1------H7
/o 6 3S <r y
/
3 23 CH r vT si <r j>_
Sample ID:
A-/-/)
10
7 Pump Flow Rate, Liters/minute (FR) J 20 Sample Time, minutes (T)
Sample Volume, Liters (V)
30
Total Fibers Counted, Sample (FCS)
40 Total Fields Counted, Sample (FLS)
Total Fibers Counted, Blank (FCB)
50 Total Fields Counted, Blank (FLB)
Area of Filter, mm2 (AF)
60 Graticule Field Area, mm2 (GFA)
_________ _________ ______ /f_
/ G G? ^
______ 2 G _________ O ______ f Oa
3&j
G~QcT?~f
70 Calculation.of Fiber density (E) in Fibers/square millimeter
30 E = {(FCS/FLS)-{FCB/FLB))/GFA
90 E -
( 733 , /fibers/mm2
Notes:
100 Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
C = fE)*{AF) 1000* V
C = 7- 3, S'*2 3fibers/cubic centimeter
Limit of Quantitation (LOQ) = 7 fibers/mm*
piber counts outside the 100-1300 fibers/mm* range have greater than ootimal variability and are orobablv biasea
Analyst:
L. A
Date.
/
Reviewed By:
Date:
(0
Matenals Analytical Services 3945 Lakefield Court Suwanes, GA 30024 Phone (770) 866-3200
. '
Paae "
of
Project Name: Analysis Date:
Materials Analytical Services Airborne Fiber Analysis NiOSH 7400 issue 2; Phase Contrast Microscopy
Cu/TM CA P/pC- J n
Sample # ft
ihoh_______ _ Media Type: 25 mm MCE Filter
3 S'
*-- 3
7i i -2
Sample ID:
^ Y)
r7 7jr 10
i ii Sh $ 8
Pump Row Rate, Liters/minute (FR)
c 8 7 YYi-
20 Sample Time, minutes (T)
Sample Volume, Liters (V)
30 Total Fibers Counted, Sample (FCS)
40 Total Fields Counted, Sample (FLS)
Total Fibers Counted, Blank (FCB)
50 Total Fields Counted, Blank (FLB)
ofArea Filter, mm2 (AF)
60 Graticule Field Area, mm2 (GFA)
YC
/0 C J.. Ao o
foo 7f
0-Go 1 ?
70 Calculation,of Fiber density (E) in Fibers/square millimeter
80
90 E =
E = ((FCS/FLS)-{FCB/FLB))/GFA
it Y> fibers/mm2
Notes:
100 Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
= (E)*(AF) 1000* V
C=
S- YS
fibers/cubic centimeter
Limit of Quantitation fLOQ) = 7 fibers/mm; ' -r:oer counts outside the 100-1300 fibers/mm- ranee have greater than ootimal variability and are probably biased
Analyst:
) reviewed By:
Materials Analytical Services 3945 Lakefieid Court Suwanee, GA 30024 Phone (770) 366-3200
'
Date. Date:
Pace
of
Project Name: Analysis Date:
Materials Analytical Services Airborne Fiber Analysis NIOSH 7400 Issue 2; Phase Contrast Microscopy
Cft f/fe j n
Sample * M 3/ S3 f' 620
<ihh
Media Type: 25 mm MCE Filter
-5
2
n
..
7 7i si rY
3 Vi
i ~z~ Y
8
3
7i
7
Sample ID:
~3
10 Pump Row Rate, Liters/minute (FR)
20 Sample Time, minutes (T) Sample Volume, Liters (V)
30 Total Fibers Counted, Sample (FCS)
40 Total Fields Counted, Sample (FLS)
Total Fibers Counted, Blank (FCB)
50 Total Fields Counted, Blank (FLB)
Area of Filter, mm2 (AF)
60 Graticule Field Area, mm2 (GFA)
y'
/// 2^O o / Oo 3X )
7> -Q 7
i 1 ....... __U
|
70 Calculation, of Fiber density (E) in Fibers/square millimeter
80 E = ({FCS/FLS)-{FCB/FLB))/GFA
90 E=
V. 0
fibers/mm2
Notes:
100 Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
C = (EHAF) 1000 *V
C=
3 383 J
fibers/cubic centimeter
Limit of Quantitation s'LOG) = 7 fibers/mnr
"iber counts outside the 1CCM300 fibers/mm" flange have greater than ootimai vanability and are probably biasea
Analyst:
A
-reviewed By:
737
Matenals Analytical Services 3945 Lakefield Court Suwanee, GA 30024 Phone (770) 866-3200
'
Date. Date:
Pace
~
of
Project Name: Analysis Date:
Materials Analytical Services Airborne Fiber Analysis NIOSH 7400 Issue 2; Phase Contrast Microscopy
CC
?/Wo
//A' J
Sample# /7 7 / % 7J
___ Media Type: 25 mm MCE Filter
3l2
i7
yi & yi r
\ ....... r
/n 7
Sample ID:________/)- 7 - C_______
7i 7 7 10
6 S' S'
Pump Row Rate, Liters/minute (FR)
7 JL fo'S 20 Sample Time, minutes (T)
Sample Volume, Liters (V)
30
Total Fibers Counted, Sample (FCS)
40 Total Fields Counted, Sample (FLS)
Total Fibers Counted, Blank (FC8)
50 Total Fields Counted, Blank (FLB)
Area of Filter, mm2 (AF)
60 Graticule Field Area, mm2 (GFA)
U.
______ i |
70 Calculation.of Fiber density (E) in Ftbers/square millimeter
80 E = {(FCS/FLS)-{FCB/FLB))/GFA
90 E =7 7f. 7
fibers/mm2
Notes:
100 Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
a = (EriAFi
' 1000 *v
C =_________ ^ ^ 7J7
fibers/cubic centimeter
-mri oi Quantitation (LOC! = 7 fibers/mm* -;ber counts outs ide the "GO ` 300 fTbers/mrrr range have greater than ootimal vanability and are orobably biased
Analyst:
j
. ^viewed By:
Matenais Artayticai Services 3945 Lafcefteid Court Suwanee. GA 30024 Phone (770) 86S-3200
'
Date. Date:
a(p f zlr&
Paae
of
Materials Analytical Services Airborne Fiber Analysis "v NIOSH 7400 Issue 2; Phase Contrast Microscopy
Project Name: f uC/j ///f Th
Sample# fl 3/SJS'
Analysis Date: *{/2 /o ~3 Media Type: 25 mm MCE Filter
:--
5 Vi Hi & yi
~7
i i /i
2
}
H t1* 5H
Hi V rV
/ ar
jr ^// 26
r
r r
Sample ID:
/} '2 "/)
10
Pump Row Rate, Liters/minute (FR)
20 Sample Time, minutes (7)
Sample Volume, Liters (V) 30
Total Fibers Counted, Sample {FCS) 40 Total Fields Counted, Sampie (FLS)
Total Fibers Counted, Blank (FCB)
50 Total Fields Counted, Blank (FLB) Area of Filter, mm2 (AF)
60 Graticule Field Area, mm2 (GFA)
//____________
/o 2
2H o
( OO
Oc~7~7
70 Calculation, of Fiber density (E) in Fibers/square millimeter
80 E - ((FCS/FLS)-{FCB/FLB))/GFA
90 e =
5$ i, T
fibers/mm2
Notes:
100 Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
G- = (E)*(AF)
1000 *v
c= 7. W7
fibers/cubic centimeter
Limit of Quantitation (LOQ) = 7 fibers/mirr
Piber counts outside the 100-1300 fibers/mm%range have greater than ootimal vanability and are probably biased
Analyst:
0at-
reviewed By:
Materials Analytical Services 3945 Lakefietd Court Suwanee, GA 30024 Phone (770) 866-3200
Oate: (Q lz{d? Paae
of
)
Project Name:
Analysis Date:
Materials Analytical Services Airborne Fiber Analysis NIOSH 7400 Issue 2; Phase Contrast Microscopy
Curr^C, CA
<Tn
Sample# fl 1/?
~ 63 3
Media Type: 25 mm MCE Filter
:-- --
---
-- -- -- --
---
-- --
J __
. i--
----
--
-
---
--
-- --
-- -- ---
---
-- ~
-
-- --
-- --
--
--
_
--
--
--
--
--
-- .--
--
-- -
--- --
-- --
--
--
--
--
---
Sample ID:
- -- 10
--- --
Pump Flow Rate, Liters/minute (FR)
--- 20 Sample Time, minutes (T)
.-- Sample Volume, Liters (V)
0
-- -- 30
. --
._ Total Fibers Counted, Sample (FCS)
-- 40 Total Fields Counted, Sampfe (FLS)
6 / 0 0
-- Total Fibers counted. Blank (FCB)
-- --
-- 50 Total Fields Counted, Blank (FLB)
-- Area of Filter, mm2 (AF)
- -- 60 Graticule Field Area, mm2 (GFA)
0.0617
----
-- - -- 70
Calculation.of Fiber density (E) in Fibers/square millimeter
----
-- --- 80
-- --
E = <(FCS/FLS)-{FCB/FLB))/GFA
--- -- -- <-
90
E= ------/-I-/-07----<---7------------------------- fibers/mm2
-- - -- 100 Calculation of Fiber Concentration (Cj in Fibers/cubic centimeter
Notes:
& = JEHAD 1000* V
c = J///9
fibers/cubic centimeter
Limit of Quantitation (LOQ) = 7 fibers/mm* Fiber counts outside the 10CM300 fibers/mmra'" range have greater than ootima! vanability and are crobably biaseo
Analyst:
tsj aJJ
Date.
reviewed By:
Date:
jO 1^6^
Materials Analytical Services 3945 Lakefieid Court
Suwanee, GA 30024 Phone (770) 866-3200
'
Paae
"'
of
Materials Analytical Services Airborne Fiber Analysis NIOSH 7400 Issue 2; Phase Contrast Microscopy
Project Name: cu ttva, c C/) ffte Oft
Sample # /7 3/ ^~ ^
Analysis Date:
j/)o/)3
Media Type: 25 mm MCE Filter
----
- ---
Sample ID:
00'- %
--- --
--
--------- . -- '\ ) ----
.-- --
-- ---
--
-- -- --
------
-- --
---
-- ---
___ ------
-- ---
__ -- ----
-- --
---. --
---
-- --
--
-- ---
-- ---
----
-- ---- -----
--- --
--
--`
-- --
10 Pump Row Rate, Liters/minute (FR)
20 Sample Time, minutes (T) Sample Volume, Liters (V)
30 Total Fibers Counted, Sample (FCS)
40 Total Fields Counted, Sample (FLS) Total Fibers Counted, Blank (FCS)
50 Totai Fields Counted, Blank (FLB) Area of Filter, mm2 (AF)
60 Graticule Field Area, mm2 (GFA)
Q
Q
71T <jo'7>
70 Calculation.of Fiber density (E) in Fibers/square millimeter
-- --
-- --
------
--
-- *--
SO
E - ((FCS/FLS)-{FCB/FLB))/GFA
'-- '--
-- --
-- --
-- 90
--- T '---
E= -------A--- Sl-0--.-----^-----7-----------------------:----------------- fibers/mm2
'-- ---
--
-- 100
Calculation of Fiber Concentration (C) in Fibers/cubic centimeter
j
Notes:
G. = (E)*(AF)
1000 *V
C = A^//?
fibers/cubic centimeter
Limit of Quantitation (LOO) = 7 fibers/mirr Fiber counts outside the 100-1300 fibers/mm- ige have greater than ootimal variability and are probabfy biases
Analyst:
Ihj, a
__________________
Date
!
, reviewed By:
____
Date:
Materials Analytical Services 3345 Lakefield Court
Suwanee, GA 30024 Phone (770) 866-3200
'
Paae
"
Of
MAS Indirect TEM ANALYSIS M31835-000
I CLIENT NAME: Materials Analytical Services, Inc.
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type; Grid Acceptance/Loading
0 Liters MCE 47mm
0.45
1297
indirect Air
MAS indirect
YES
0%
CLIENT SAMPLE ID: I lab blank
Date Analyzed:
8/19/2003
Analyst: Scope Number: Accelerating Voltage:
Jayme Calian 4 100
Indicated Mag:
25
Screen Mag:
20
Grid box Number:
6623
Str < Sum: Str & 5um:
Total str: Str / cc > 5:
0 0 0 #Error
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: 102 #4: 105
Average Grid Size: Total Area Analyzed:
0.010557 0.106
Str#:
SquarelD:
E9-I6 J7 G6 F7 C6
E10-I5 J3 G2 E7 CIO
Type:
Structure:
NSD NSD NSD NSD NSD NSD NSD NSD NSD NSD
Length
Width
Morph:
SAED:
M31835 000 Sample Comments:
EDS:
MAS Indirect TEM ANALYSIS M31835-005
| CLIENT NAME: Materials Analytical Services, Inc.
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type:
1840 Liters MCE 47mm 0.45 1297 Indirect Air MAS indirect
Grid Acceptance/Loading YES
1%
'
CLIENT SAMPLE ID: { A-O^A
Date Analyzed: Analyst:
Scope Number: Accelerating Voltage;
8/19/2003 Jayme Callan
4 100
Indicated Mag: Screen Mag:
Grid box Number:
25 20 6623
Str < 5um: Str s 5um:
Total str: Str / cc > 5:
0 0 0 0.0000
[
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: 102 #4: 106
Average Grid Size: Total Area Analyzed:
0.010608 0.106
Str#:
SquarelD:
K7-G6 F3 D1 J1 13
D7-F7 C5 B3 A7 D9
Type: -
Structure:
NSD NSD NSD NSD NSD NSD NSD NSD NSD NSD
Length
Width
Morph:
SAED:
M31835 005 Sample Comments:
EDS:
MAS Indirect TEM ANALYSIS M31835-006
1 CLIENT NAME: Materials Analytical Services, Inc.
Sample Area/Volume: Filter Type: Pore size:
Effective Filter Area: Sample type: Analysis type:
1840 Liters MCE 47mm 0.45 1297 Indirect Air MAS indirect
Grid Acceptance/Loading YES
1%
. CLIENT SAMPLE ID: | A-O-B
Date Analyzed: Analyst:
Scope Number: Accelerating Voltage:
8/19/2003 Jayme Calian
4 100
Indicated Mag: Screen Mag:
25 20
Grid box Number:
6623
|
Str < Sum: Str ;> 5um:
Total str: Str/cc>5:
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: 102 #4: 105
Average Grid Size: Total Area Analyzed:
0.010557 0.106
Str#:
SquarelD:
D6-G6 G4 13 B6 A4
E6-F1 H2 F7 E9 C6
Type:
Structure;
NSD NSD NSD NSD NSD NSD NSD NSD NSD NSD
Length
Width
Morph:
SAED:
M31835 006 Sample Comments:
EDS:
MAS Indirect TEM ANALYSIS M31835-007
| CLIENT NAME; Materials Analytical Services, Inc.
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type: Grid Acceptance/Loading
1840 Liters MCE 47mm
0.45
1297
Indirect Air
MAS indirect
YES
1%
CLIENT SAMPLE ID: | A-O-C
Date Analyzed:
8/19/2003
Analyst: Scope Number: Accelerating Voltage:
Jayme Callan 4 100
Indicated Mag: Screen Mag:
Grid box Number:
25 20 6623
j
Str < Sum: Str 2: Sum:
Total str; Str / cc > 5:
0 0 0
0.0000
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: 102 #4: 106
Average Grid Size; Total Area Analyzed:
0.010608 0.106
SquarelD:
B7-G5 D4 C7 A5 E8
B6-A6 H8 19 J10 J7
Type:
Structure:
NSD NSD NSD NSD NSD NSD NSD NSD NSD NSD
Length
Width
Morph:
SAED:
M3183 5 007 Sample Comments:
EDS:
]
MAS Indirect TEM ANALYSIS M31835-008
CLIENT NAME: Materials Analytical Services, Inc.
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
1895 Liters MCE 47mm 0.45 1297 Indirect Air
Analysis type:
MAS indirect
Grid Acceptance/Loading YES
1%
CLIENT SAMPLE IP:
A-O-D
Date Analyzed:
8/19/2003
Analyst:
Jayme Callan
Scope Number: Accelerating Voltage:
Indicated Mag:
Screen Mag:
Grid box Number:
Str < 5um: Str ^ Sum:
Total str: Str / cc > 5:
0 0 0
0.0000
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: 102 #4: 106
Average Grid Size: Total Area Analyzed:
0.010608 0.106
KV KX KX
Stiff:
SquarelD:
A2-I9 J7 G1 D2 B3 A3-
A4-D5 A7 E7 El
Type:
Structure:
NSD NSD NSD NSD NSD NSD NSD NSD NSD NSD
Length
Width
Morph:
SAED:
M31835 008 Sample Comments:
EDS:
MAS Indirect TEM ANALYSIS M31835-010
CLIENT NAME: Materials Analytical Services, Inc.
Sample Area/ Volume: Filter Type:
23 Liters
MCE 47mm
Pore size:
0.45
Effective Filter Area: Sample type:
Analysis type:
1297 Indirect Air MAS indirect
Grid Acceptance/Loading YES
1%
CLIENT SAMPLE ID:
P-1-A
Date Analyzed: Analyst:
Scope Number: Accelerating Voltage:
8/19/2003 Jayme Callan
4 100
Indicated Mag: . Screen Mag:
Grid box Number:
25 20 6623
Str < Sum: Str & Sum:
Total str: Str / cc > 5:
29
10
39 978.1738
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: 102 #4: 106
Average Grid Size: Total Area Analyzed:
0.010608 0.106
KV KX KX
r
Str#: 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19
20 21 22 23 24 25 26 27 28
SquareE): Type:
Bl-HS C
C J3 c
c
c c
F3 c
c c
c
D4 c
c
c c
c
B6 B2-B5
c c
c
c
c c
c
c
c
c
A4 c c
c
1
Structure:
M-F F F NSD C-B C-B F F B F F B F B M-F F B M-F F F B C-B M-B B B F F B
Length
1.90 1.80 2.00 2.10 4.00 4.00 18.00 2.00 15.00 8.00 4.80 1.80 1.70 430 2.10 0.80 1.90 1.00 1.40 0.60 , 19.40 7.10 2.00 5.60 5.60 0.90 3.00 14.10
" Width
0.05 0.05 0.20 0.05 1.00 0.25 0.10 0.05 1.70 0.40 0.10 0.05 0.05 130 0.05 0.05 0.20 0.05 0.05 0.05 0.50 0.40 0.40 1.10 0.40 0.10 0.05 0.50
'" Morph:
X X X X X X X X X X X X. X X X X X X X X X X X X X X X X
1 SAED:
X X X X X X X X X X X X X X X X X X X X X X X X X X X X
EDS: Print out
Print out
Print out
------1
MAS Indirect TEM ANALYSIS M31835-010
CLIENT NAME: Materials Analytical Services, Inc.
29
CB
1.90
30 C2 c
F
1.00
31 c F 1.60
32
c M-F
0.80
33 El c
F
1.60
34 c F 1.60
35
cB
14.80
36
c M-F
2.20
37 12 c
B
4.10
38
cB
13.00
39
c C-F
1.80
0.40 0.05 0.10 0.10 0.10 0.05 0.50 0.05 0.20 1.10 0.05
CLIENT SAMPLE ID: |
P-t-A
XX
XX
X X Print out
XX
XX
XX
XX
XX
XX
XX
X X Print out
M31835 010 Sample Comments: 1
-
MRTERIRLS RNRLYTICRl SERVICE: uu? soh; . 00kev = S
TUE
j [
j
|
ii
i
i
>
Si
i
>Cjl
--- 1
,\
T
1 ...Jj......L
kApi ii f1 1
' f1 : !?i!1 Ifiu!fr-* illjjjaiuitt,Lilli > . 00
j
.............
1
i j
w
il ..a
it
U___HitJLLUL fill! 1 ifilii li mirniL : il li'Fffl1:1' ujuuujl "r'; f
1.040
MH I b.RlHLS HNhLYTIChL GERVIuEG
C u r soh s 0.000 K&V =
1
TUE i9-RUG-03 1S:S
M G_
d.
i ! -ll
i| ! si
!i . li
j \\
i 11..........
...
Sill. hl;kr
[ *l y
U.S0
Nh-ii
M31S35-810 CHETSOTILE
L i s
i u i < in ! 4i i
V r '-<
. ..
i r. ! an nil i i ;
i . E:4 33
MRTERIRLS RNRLYTICRL SERVICES Uuhsoh' 0.000KeV = 0
1
1
1 i MI
ij
: :
TUE i9-RUG-S3 i7;07
i1 1]
(
?
\
.......... li-i-i.A
i/I
1 f. fi
ifrr/i
-n
ii i ^T>Lh-L-TlAwiCm-,
iTLrpJ.arjL-n-L,
0.00
NH-ii
M3i835-01 CHRTS07ILE
............. ]
iiV> ii i i r. , r .iJLiti
l...................
s. In rft rt-fl 11 l.
^,rv,
VFS = 64
10.240
25
MRTERIRL5 RNRLVTICRL SERVICES Cuhsoh: 0.000k0V = 0
TUE 19-RUG-03 17:15
I
Mn ...,1....
[1|
\|
.
:
0.000
...i i... i
\. k.Ji
NH -- li
M31835-010 CHRTSOTILE
i .- f?f 1H . < L'.u r1-',-
,,
Vr b - i co
10. id-4
17
MhTElRIhLE HNhiLYTlL'hiL TM-ERVXL'E!z:' Cursor- J 0.000kev = 0
lUE ly-HUU-0:
----
CT
G
i, i
ft .
....................1
i
i
J-
L.........
..............A------
Iw!
!
jk
k>.000
NH-ii
M-41 -- 10 UHRTSOTXLE
i..............
r 1:1j ; -i
,
;
VFb = iciU
1@.240
' 2i
MAS Indirect TEM ANALYSIS M31835-011
j CLIENT NAME: Materials Analytical Services, Inc.
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type: Grid Acceptance/Loading
2.7 Liters MCE 47mm
0.45
1297
Indirect Air
MAS indirect
YES
1%
CLIENT SAMPLE ID: {
P-1-B
Date Analyzed: Analyst:
8/20/2003 Jayme Calian
Scope Number: Accelerating Voltage:
4 100
Indicated Mag:
25
Screen Mag:
20
Grid box Number:
6623
1
Str < 5um: Str a Sum:
Total str: Str / cc > 5:
19
21 182.018$
/cc
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: 102 #4: 105
Average Grid Size: Total Area Analyzed:
0.010557 0.106
]
Str#:
1 2 3 4 5 6 7 8 9
10 11 12 13 14 15 16 17 18 19 20 21
SquarelD: Type:
D2-E2 G4 C C c HI c c c 13 c IS c c
D1-E2 C4 c c c c B1 c c E4 c
c c c c c 16
Structure:
NSD B M-B F F B B F M-B M-F NSD F M-B F F F B C-F M-F F B NSD F NSD
Length
2.00 0.80 3.00 0.70 10.00 6.80 3.90 1.70 1.00
0.60 1.00 2.20 3.80 1.80 2.10 4.00 2.00 2.10 2.00 0.50 uo
Width
0.20 0.15 0.10 0.05 0.40 0.30 0.05 0.15 0.05
0.05 0.20 0.10 0.20 0.05 0.30 0.10 0.10 0.10 0.20 0.05 0.10
Morph:
X X X X X X X X X
X X X X X X X X X X X X
SAED;
EDS:
X X. X X X X X X X
Print out
X X Print out X X X X X X X X X X Print out
M31835 Oil Sample Comments:
MAS Indirect TEM ANALYSIS M31835-011
[ CLIENT NAME: Materials Analytical Services, Inc.
CLIENT SAMPLE ID;
P-1-B
M,H S bRlMUb HNHLV i I UHL bERVlUEb Cur-so*--" 0.000 Kev = 0
WED 20-RUG-S3
i-i
0 . 00
jj:
NR-il
'--^.UrAiJ'ATh.-,....,, L|rJ|n|j.||.Tn- ): Vr b =
10
MH ! ERlHLb HNRLVTIuhL bERVIuE: Cijhso^s 0.0Q0ke'v' = 0
JEu b!--HUU-Q'4 7 J 3i
0 . 0
Nip _ -i ^ fi:i 1 b`45 -011 CHhlYbOT i LE
VFb - fo4
10.24
MRTERXflLS HNhLY ! IUflL bERVILtb Cursor 0.@00K.eV = S
WED 20-RUG-03 0a! 03
MAS MIndirect TEM ANALYSIS 31835-012
| CLIENT NAME: Materials Analytical Services, Inc.
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type: Grid Acceptance/Loading
2.7 Liters MCE 47mm
0.45
1297 Indirect Air MAS indirect
YES
1%
. CLIENT SAMPLE ID: P-1-C
Date Analyzed:
8/20/2003
Analyst: Scope Number: Accelerating Voltage:
Jayme Callan 4
100
Indicated Mag: Screen Mag:
25 20
Grid box Number:
6623
|
Str < Sum: Str a 5um:
Total str: Str/cc>5:
28 5 33 455.0470
[
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: 102 U4i 105
Average Grid Size: Total Area Analyzed:
0.010557 0.106
Str#: SquarelD: Type:
A4-F4
1 D5 C
2 C7 c 3c 4 E8 c 5c 6c . 7 G10 c 8c 9c 10 c 11 c 12 c 13 c 14 c IS c 16 B4-A4 c 17 c IS c 19 c 20 c 21 c 22 c 23 c 24 D6 c 25 c 26 F8 c 27 D9 c
Structure: NSD M-F
C-F F F B B F M-F F F F F F F M-B B F B B B B B F F B F
Length
1.00 2.00 1.70 1.80 4.00 2.10 13.00 0.70 2.80 1.80 1.00 1.60 1.90 1.70 1.60 1.80 1.70 3.90 1.60 2.10 4.00 3.90 1.90 1.60 18.00 3.00 0.80
Width
0.10 0.10 0.05 0.05 0.15 0.20 0.40 0.05 0.15 0.05 0.10 0.05 0.05 0.05 0.10 0.10 0.10 0.15 0.10 0.10 0.30 0.10 0.10 0.05 0.10 0.15 0.05
Morph:
X X X X X X X X X X X X X X X X X X X X X X X X X X X
SAED:
EDS:
X Print out X X X X X X X X X X Print out X X X X X X X X X X Print out X X X X X X
MAS MIndirect TEM ANALYSIS 31835-012
CLIENT NAME: Materials Analytical Services, Inc.
28
CB
1.80
29
CF
17.00
30 J8 c
B
6.10
31
c M-F
2.10
32
cB
7.90
33
cF
3.00
0.20 0.20 0.60 0.10 1.80 0.05
CLIENT SAMPLE ID:
P-1-C
XX
XX
XX
X X Print out
XX
XX
M31835 012 Sample Comments:
MBTERIRLS RNRLVTICRL SERVICES Cursor; .S0Rev = 0
a
WED 2-RUG-3 03:18
MRTERIRLS RNBLVTICRL SERVICES Cuhsof': 0.0SKeV = 0
fi
M G 111
w) 111
0.000
NH-11
hl-J'l o35 --0 i d uHkVSOT IL
Pi >0 --Pj
u
i
Ii
10.24 3
%;
MRTERIRLS RNRLYTICRL SERVICES Cuf-sof-: . 000KeV =
WED i-hUG-03 S 5 40
0.0
NR-
-i
j.
.1
j.
-13iac5-0i'd. uHKYbO I ILc
vr fe4
i. ci-4*-
MATERIALS ANALYTICAL SERVICES Cursor 0.000keV' =
d --HUU--0L 08:56
G l'
!
.! |
c
1 i
|i fi li
dim....... 1..M
-iJuAiu
!i i i n 4 i
t
0.00
NH-i1
M31835-012 CHRYSOTILE
,|
, J!
1 III IFl/l
-Jvrfovivm-.
VFS =64
Til i( Lin i i (I
10.24 82
\ 1
MAS MIndirect TEM ANALYSIS 13 835-013
CLIENT NAME: Materials Analytical Services, Inc.
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type:
2.8 Liters MCE 47mm
0.45 1297 Indirect Air MAS indirect
Grid Acceptance/Loading YES
1%
CLIENT SAMPLE ID:
P-1-D
Date Analyzed:
8/20/2003
Analyst:
Jayrne Callan
Scope Number: Accelerating Voltage:
4
100
Indicated Mag: Screen Mag:
25 20
Grid box Number:
6623
Str < Sum: Str a 5um:
Total str: Str / cc > 5:
35 7 42 611.3599
[
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: 102 #4: 106
Average Grid Size: Total Area Analyzed:
0.010608 0.106
KV KX KX
c
Sti#:
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28
SquarelD: Type:
D5-B9
C
c c
E10 AS
C7 E6 D4-B7
c
c c c c c c c c c c c c c c c c c c c c c c c c
Structure:
B NSD C-F B C-B M-F B F F M-B M-B F B B F F B F F M-B F M-F C-B F M-B F F F
Length
2.00 4.30 1.80 9.80 6.00 0.70 4.10 3.00 2.00 13.80 2.00 1.00 9.80 1.80 1.80 1.00 2.20 2.00 3.90 1.70 1.20 1.40 5.80 3.90 2.20 1.80 2.20 0.80
Width
0.20 0.10 0.20 0.40 0.40 0.05 0.20 0.05 0.05 0.30 0.15 0.05 0.20 0.10 0.05 0.05 0.40 0.05 0.05 0.15 0.10 0.05 0.20 0.10 0.20 0.05 0.05 0.05
Morph:
X X X X X X X X X X X X X X X X X X X X X X X X X X X X
SAED:
X X X X X X X X X X X... X X X X X X X X X X X X X X X X X
EDS: Print out
Print out
Print out
MAS MIndirect TEM ANALYSIS 31835-013
CLIENT NAME: Materials Analytical Services, Inc.
29
CF
0.70
30 C F 1.70
31 C2 C
S
4.10
32
CB
3.70
33
C C-F
1.90
34 C F 1.00
35 FI c
M-F
2.00
36 c F 0.80
37 c F 1.00
38 G7 c
B
16.00
39
c C-B
6.20
40 H4 c
M-B
3.80
41
cF
1.80
42 c F 1.70
0.05 0.10 0.15 0.20 0.10 0.05 0.10 0.05 0.05 0.40 0.30 0.20 0.05 0.05
CLIENT SAMPLE ID: ]
P-1-D
XX
X X Print out
XX
XX
XX
XX
XX
XX
XX
XX
XX
X X Print out
XX
XX
M31835 013 Sample Comments:
MFiTERIRLS RNRLYTICRL SERVICES C u f- s o t-i 0.00 K eV =
WED 20-RUG-S3 09 2 09
ii
..........
ic........
1
I i
f f
jw
f'-rm'iT-'-ni'rTVu-.
0.000
r'-iri --:
1
r'SO ILE
......... ".I! 1
c
J
/I 1
i f:
il.
1
k,
Aa:imiTli.^rViii-|j
10.24
h
Mi-iTERlHLb RNHLY i IChiL SERVIuEe Cuhsoi' i 0,000KeV = 0
WED 20-RUG-S3 09! 31
0.00B
NR --11 M31335-013 CHRYSOTILE
vF'zd = 32
10.240 IS
!
KRTERIRLS RNRLYTICRL SERVICES Cuhsoh: .00KV = 0
v-itD 20--Hijij --03 Qy44-
t( }J |
i
i i|
!J
i !!
i
11 ... L;i
f? --i i--ii: L_iwuki.jibiliiL*;11!) i 1 i
i
.1 , i! ill lill i
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0.000
Nh -- ii
M2i225 --0i 2- L-HRYsO ! IL.2.
1
!.[.... i.s
I!i iOiiifh"
i \\ fll
ujlLul-L
Vr S = 22
10.24
25
MRTERIRLS RNRLYTICRL SERVICES U i~ ir U!' ' ! 0.000KfV - 0
WED 20-RUG-03
0.000
NH-il M31S35-013 CHRYSOTILE
VFS = fc-4
i.240 15
MHTERlHLh RNRLtTICHL IzjER'v'lUEi Cursor: S.000KeV = 0
WED E'0--HlJU""0C 1010-4
Jr-s G"
it i.i....u.iULLri.JMai ,.i `IJ
\ i-
}: .'-J----. J if/it ! ist ? AJ&LU^cMa
|
i^wrVrV^-'f-ri
0.000
Nh -- 11
Vi- 3
10.240
M31333 --Si,-3 CHRVSOTXL3
MAS MIndirect TEM ANALYSIS 31835-014
| CLIENT NAME: Materials Analytical Services, Inc. .
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type: Grid Acceptance/Loading
11 Liters MCE 47mm
0.45
1297
Indirect Air
MAS indirect
YES
1%
CLIENT SAMPLE ID: |
A-1-A
Date Analyzed:
8/20/2003
Analyst: Scope Number: Accelerating Voltage:
Jayme Callan 4 100
Indicated Mag:
25
Screen Mag:
20
Grid box Number:
6623
Str < Sum: Str Sum:
Total str: Str/ cc> 5:
84 17 101 377.9316
/cc
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: #4:
Average Grid Size: Total Area Analyzed:
0.010608 0.106
Str#:
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28
Square: Type:
D5-H8
C C C C C C
C C C C
C C B8 C C C C C C C C D6 C
C C C C C
C C
Structure:
B B F M-B B B F M-F B F B F F B C-F B F B F F F M-F F B F B B C-F
Length
2.80
11.00
2.10 1.00 1.80 2.10 1.60 1.60 1.00 1.90 1.60 1.00 230 18.00 0.80 4.00 3.90 10.20 1.00 0.80 1.80 1.80 10.10 2.00 1.60 17.00 2.20 1.90
Width
030 0.20 0.10 0.10 0.15 0.20 0.10 0.05 0.15 0.05 0.20 0.10 0.05 1.80 0.10 0.60 0.10 0.40 0.05 0.10 0.05 0.05 1.90 0.20 030 1.90 0.60 0.20
Morph:
X X X X X X X X X X X X X X X X X X X X
,x
X X X X X X X
SAED:
X X X X X X X X X X X X X X X X X X X X X X X X X X X X
EDS: Print out
Print out
Print out
MAS MIndirect TEM ANALYSIS 31835-014
CLIENT NAME: Materials Analytical Services, Inc.
29
CB
6.20
30
CB
26.20
31
CF
2.00
32
CF
4.10
33
CF
1.50
34 C
35 c 36 c 37 c 38 c 39 c 40 c 41 c 42 A5 c 43 c 44 c 45 c 46 c 47 c 48 c 49 E4 c 50 c 51 c 52 c
M-B B B F B B F B C-B F M-B F F B
F F F
B B
2.10 5.00 2.30 2.10 10.00 4.10 0.60 6.10 4.00 1.50 6.00 5.70 0.60 17.70 3.70 2.00 1.50 3.90 1.70
53 c
54 c 55 c 56 c 57 c 58 D4-D6 c 59 c 60 c 61 c 62 c
C-F F B F M-F B F C-B B M-B
1.80 2.00 0.80 2.10 2.00 2.20 2.10 2.00 1.70 1.90
63 c
64 c 65 c 66 c 67 c 68 c
69 c
70 c 71 c 72 c 73 c 74 c 75 c 76 c 77 B4 c
M-F B F B M-F B F F B C-B F B F F B
1.00 4.00 1.70 9.90 1.80 4.30 1.00 1.50 19.00 1.90 1.60 2.40 2.00 1.00 1.80
0.20 1.80 0.05 0.05 0.05 0.50 0.20 0.35 0.10 0.40 0.40 0.05 0.25 0.30 0.05 0.20 0.05 0.05 1.60 0.10 0.05 0.05 0.15 0.15 0.05 0.05 0.10 0.20 0.10 0.20 0.30 0.30 0.05 0.15 0.10 0.20 0.05 1.80 0.05 0.60 0.10 0.05 0.50 0.10 0.10 0.20 0.05 0.05 0.20
CLIENT SAMPLE ID:
A-1-A
XX
XX
X X Print out
XX
XX
XX
XX
XX
XX
XX
XX XX
X X Print out XX XX
XX
XX XX XX
XX
XX XX
X X Print out
XX
XX
XX
XX XX
XX
XX
XX
XX
X X Print out
XX
XX
XX
XX
XX
XX
XX
XX
XX
X X Print out
XX
XX
XX
XX
XX
XX
MAS MIndirect TEM ANALYSIS 31835-014
CLIENT NAME: Materials Analytical Services, Inc.
78
CF
1.80
79
C M-F
2.00
80
C M-F
1.70
81
CB
3.80
82
CF
0.70
83
CB
1.00
84
cB
1.50
85 Cl c
C-B
3.20
86 18 c
M-B
1.70
87
cF
0.80
88
cF
6.00
89
cB
2.00
90
cB
9.00
91
cF
1.70
92
cF
2.20
93
cF
1.80
94 J6 c
B
1.90
95
cF
0.80
96
cF
0.80
97
cF
1.60
98
cF
3.80
99
cF
0.70
100 c F 1.50
101 c B 2.10
0.05 0.05 0.05 0.15 0.05 0.20 0.15 0.60 0.20 0.05 0.15 0.20 0.20 0.05 0.20 0.05 0.30 0.05 0.05 0.05 0.10 0.05 0.05 0.20
CLIENT SAMPLE ID: |
A-1-A
XX
XX
XX
X X Print out
XX
XX XX
XX
XX
XX
XX
XX
XX
X X Print out
XX
XX
XX
XX
XX
X X '
XX
-
XX XX
X X Print out
|
M31835 014 Sample Comments: 1________________
MRTLRIHLb HNHLYTI UHL binRV I Utb Cuf-Sur ! 0.000KeV = 0
1
i
i j
n y ..A.... i
cEc
2:......
!=T*
ifi
i
ML
jimsauuwk
j
0.000
H.-s'1 '"`vj-H--014 U-MRYb'UTJ.LE
WED U0-HUU~0:
0:30
1
i
i
1 liZUiavA
10.24 ly
MRTERIRLS RrNnRrLlYyTtIiCcRrLl services
Vuhsc`f~ . 00SReV =
WED _-'i7S--H* !i --i
10
.00
NH-ii M31835- 14 CHRYSOTILE
MRTERIRLS RNRLYTICRL SERVICES Cui-'-sor"' 0.000 keV = 0
WED 20 --HUU --03 i 0 5 44
*P* (
Mf
u|
.............................
\.......... 1 \ f \1 Li 1
I: i
iAv.
0.00
NR--il
-----* --` --** JTl'wV.
M31835-014 CHRYSOTILE
. ,/v. . -
Vt-
<r ;t
A :V cr
I.24
}
MRTERIRLS RNfiLYTICRL SERVICES Cursor-; 0.000K0V = 0
NED E'0-hUu-
10 5 5ti
! : ; ; ";.............. '> I : : : : : : : ! ': \
\
MRTERIRLS RNRLYTICflL SERVICES C u l-'soh ' 0.000k eV = 0
WED 20-RUG~33 11804
0.000
n
iWJ
NR-i 1 M31S35-014 CHRYSOTILE
L,
1
10.24S
MHTERlHLh HNhLYTIUHL bfcKVlL'bS Cu!-5or: 0.000KeV = S
WED 20--HUiJ-0'< i i 115
L ..j _ .__
P"urr' T |
_L r-i i
!
! "?iPi Ij
'll.
0.000
WR-ii M31835-014 CHRVSOTILE
j
j .........|
, j:
128
10.24 34
MHTtrRlHLh. RHNWhRLLVYTTIIUCHRL SEK'v'IUEb Cursoh: 0.000keV = 0
WED
-RUG-03
M, G Ti
j4
n:l ! !i i ij Jfti
ii
ii ;|
iE
J 1....|
i _____Ji L. /:
iltir; i
S.bfrnYi'iTtYU. L'L^iYf.TLUJ.r.rA
0.00
NH-11
M3i835-0i4 CHRY50TILE
J
1 .............. | Vi
h> f !
, . l|
( A
j
.J.tf Fi kc
n r.tfIXFr
VFb = 64
,i
. /\
MRTERIRLS RNRLYTICRL SERVICES iJuhsof"- .Q0KeV -
WED :0 -HUu
1 i : 30
................. M 0
c I
!
!
:___ i
;1
>... \\ 1!: l H ! 44 ilf:l iLli ilL, 1
|.,4U^
4 II (iifili !
0.00
WH-11
M31S35-014 CHRYSOTILE
4............
:
s
. ~4L,,..u 4
)P .
ft
i J
!i
iiliuJ
\ Hi
|4,!| rlii`
,h1!i il,l
11 i i n HU
VFS = 64
10.24
17
MRTERIRLS RNflLYTICRL SERVICES Uursoh! S. 000ReV = 0
WED 20-RUG-03 1 1 : 3S
........ J.... MI G
I k! -........1 Ji i* i r,4 Lil-Ur-Lul'.
--A-U.L1.J.L
0.Q00
NR-11
M31835-Si4 CHRYSOTILE
j
:
i
.............1
VFS = 64
c;
T
i.240 13
sL*
- ........
MRTERIRLS RNRLYTICRL SERVICE:
Cuhso^: 0.0Q0kev - 0
_M
u
iT
J i;
i
1i
,)
i
i i,
NED 2-RUG-03 11:51
.it |
........... :.............jf
y
1 M.
a
0.00
NH--11
J!
.. .I: 1
i
..............J...........
.l.\ .4. ,11. X. 1
4
l
;j
;
.. T
R
:
l Li
i tu-JUrMr 10.240
iRTERIRLS RNRLYTICRL SEF ?VT CP<
_ Uf 'SOH to . totor\0V =
WtD 2 --HUG-to
2:01
h
4I1*!,I l\
3
k\ Pm'; i
0.000
NH-11
M31835-014 CHRYSOTILE
L
''Fto = 64
iLQi y
10.240
2
MAS MIndirect TEM ANALYSIS 31835-015
CLIENT NAME: Materials Analytical Services, Inc.
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type:
10 Liters MCE 47mm
0.45 1297 Indirect Air MAS indirect
Grid Acceptance/Loading YES
1%
CLIENT SAMPLE ID:
A-1*B
Date Analyzed:
8/20/2003
Analyst:
Jayme Callan
Scope Number: Accelerating Voltage:
4 100
Indicated Mag: Screen Mag:
25 20
Grid box Number:
6623
Str < Sum: Str ^ Sum:
Total str: Str/ cc > 5:
94 20 114 1222.7198
fee
t
Number of grids: 2 Number of openings: 4
#1: 101 #2: 103
#3: 102 #4: 106
Average Grid Size: Total Area Analyzed:
0.010608 0.042
KV KX KX
c
Stiff: 1 2 3 4 5 6 7 8 9 10 11 12 13 14 IS 16 17 18 19
20 21 22 23 24 25 26 27 28
SquarelD: Type:
B4-C2 C
C
C
C
C
C
C
C
C
C
C
C
c c c c c c c c c c c c c c c c
Structure:
B F F B F M-B M-F B F B Fj F F B F F B B C-F B B B F F B M-F F F
Length
12.00 1.80 1.90 3.00 1.80 2.00 230 1.95 1.80 1.90 1.70 2.10 3.00 0.90 0.80 1.60 3.90 9.70 2.00 1.60 2.20 1.90 4.00 0.90 6.20 7.80 050 2.00
Width
035 0.10 0.05 0.20 0.10 0.15 0.05 0.20 0.15 0.05 0.05 0.20 0.20 0.10 0.05 0.05 0.20 0.10 0.05 0.10 0.20 0.15 0.05 0.05 0.20 0.15 0.05 0.05
Morph:
X X X X X X X X X X X X X X X X X X X X X X X X X X X X
SAED:
X X X X X X X X X X X X X X X X X X X X X X X X X X X X
EDS: Print out
Print out
Print out
MAS MIndirect TEM ANALYSIS 31835-015
CLIENT NAME: Materials Analytical Services, Inc.
29 C
30 c 31 c 32 c 33 c 34 c 35 c 36 c 37 c 38 c 39 c 40 c 41 E7 c 42 c 43 c 44 c 45 c 46 c 47 c 48 c 49 c 50 c 51 c 52 c 53 c 54 c 55 c 56 c 57 c 58 c 59 c 60 c 61 c 62 c 63 c 64 c 65 c 66 BIO c 67 c 68 c 69 c 70 c 71 c 72 c 73 c 74 c 75 c 76 c 77 c
F B B C-F B B F M-F M-F B F M-B B M-F B B F B C-F F C-B F B B M-B F F C-F F F F F C-F F F M-F B B F B C-F M-B F F M-B B F F M-B
1J0O 7.90 8.00 1.60 1.90 7.70 0.90 1.00 6.00 7.70 1.00 0.80 1.60 1.70 10.00 6.10 4.00 4.00 2.10 0.70 1.00 2.20 1.80 1.70 2.00 1.60 2.80 3.60 1.60 1.80 1.50 2.10 1.70 1.60 1.80 0.60 0.80 8.00 0.60 6.00 0.70 12.00 2.00 0.60 2.30 1.60 1.00 2.00 1,70
0.10 0.20 0.40 0.15 0.20 0.20 0.10 0.05 2.00 0.80 0.05 0.15 0.15 0.05 0.30 0.30 0.05 0.40 0.15 0.05 0.05 0.10 0.15 0.20 0.15 0.05 0.05 0.10 0.05 0.05 0.05 0.05 0.10 0.05 0.05 0.05 0.05 0.20 0.05 0.20 0.05 0.20 0.05 0.05 0.15 0.20 0.05 0.05 0.10
CLIENT SAMPLE ID:
A-1-B
XX
XX
X X Print out
XX
XX
XX
XX
XX
XX
XX
XX
XX
X X Print out
XX
XX
XX
XX
XX
XX
XX
XX
XX
X X Print out
XX
XX
XX
XX
XX
XX
XX
XX
XX
X X Print out
XX
XX
XX
XX
XX
XX
XX
XX
XX
X X Print out
XX
XX
XX
XX
XX
XX
MAS MIndirect TEM ANALYSIS 31835-015
| CLIENT NAME: Materials Analytical Services, Inc.
78 C
79 c 80 c 81 c 82 c 83 c 84 c 85 c 86 c 87 c 88 c 89 c 90 c 91 c 92 J10 c 93 c 94 c 95 c 96 c 97 c 98 c 99 c 100 c 101 c 102 c 103 c 104 c 105 c 106 c 107 c 108 c 109 c 110 c 111 c 112 c 113 c 114 c
M-B C-B M-B C-F F F F B B C-B M-F C-B B B B M-B B M-F B F B F M-F B F B B M-F B B B M-B F B B F C-F
3.70 4.00 4.10 0.90 1.60 2.00 1.50 4.30 3.60 6.20 2.00 4.00 8.00 15.70 2.10 2.20 2.00 1.80 5.70 1.90 23.80 1.00 2.00 1.90 4.10 1.50 1.80 1.70 8.20 2.00 1.70 3.20 1.80 2.20 2.20 2.40 2.00
0.40 0.10 0.20 0.10 0.05 0.05 0.05 0.30 0.20 0.20 0.20 0.20 0.50 0.40 0.10 0.10 0.15 0.05 0.20 0.10 0.50 0.05 0.10 0.15 0.20 0.20 0.10 0.05 0.30 0.10 0.10 0.15 0.05 0.15 0.20 0.05 0.05
CLIENT SAMPLE ID: |
A-1-B
XX
XX
XX
X X Print out XX
XX
XX
XX
XX XX
XX
XX XX
X X Print out ,
XX XX XX
XX
XX XX X .X
XX
XX X X Print out
XX
XX
XX
XX
XX
XX
XX
X
x.
X X
X X Print out XX
XX
XX
M31835 015 Sample Comments:
|
|
MRTERIRLS RNRLVTICRL SERVICES Cur-sor-s 0.00QkeV = 0
NED 2-RUG-S3
11
f
t\
.11.. n.... :*} ;
0.000
Nfi-li H31S35-015 CHRYSOT:
u
h
1 ! 1U : | \: !i ^ ^TTuL-l"f'LT / ; iVr!-.1-. llVi^V^
VF
10.
MRTERIRLS RNRLYTICRL SERVICES C u r s o r s . 000 k V = 0
lj------------------
j
| _______^
t M U
WED 20-RUG-03 13;17
1 '< l i
f; ....A- A
.00
c r"
......
?.
1 r
ilk
NH-11
-vivdW...^ "fcrrnt lifiUm4*b!1. l.K t, . .1 ____
............;
4
J
|3 ->!
..i ,i .
VFS = 128
13.240
MRTERIRLS RNRLYTICRL SERVICES Cuhsoh: G.Q40keV = 0
WED 20-RUG-03 i3:34
U 0.00
i..i
hkfffl
r
tS
h if
8..... A|I|,,^|,^ | n *,* |t,|> *tViWA^rr*n Whi{i1..............*|V ,|JifVli' -tO_!__M
\t
V'FE = b4
, d: fVl
u3vl
i.24G
MRTERIRLS RNRLVTICRL SERVICES Cursori .04keV = 0
NED 20-RUG-03 13:42
1 t --01 tD UHRY'SOTILt
MATERIALS ANALYTICAL SERVICES
Cursors 0.S40KE-V = 0
'
WED 2S-AUG-03 13:4S
M G.....2"
I ..
_L 0.000
30
| r
tv`4; ;`h
M31835-015 CHRYSOTILE
S., ji- ii-jiL jW10.24
MRTERIRLS HNhLYTicrl SERVICES
Uuhsoi^-' 2 0.040KeV
f7i
'll.'
f!t
WED 20 --HUi--0-^i i4-"33
)
\
MRTERIRLS RNRLYTICRL SERVICES Cur-stth s 0.04KeV = 0
WED 2-RUG-03 14:01
.00 13
nij-- 2y M31S35-015 CHEYSOTILE
Vrb = Ifc
10.24
hiHTLRIHLL HNHLY i I UHL bERVICinH Uuhsor 0.040KeV = 0
10
0.00
CU-29
VFS = 64
10.240
MRTERIRLS RNRLYTICRL SERVICES Cut-so!": 0.04keV = 0
WED 20-RUG-03 14s15
M
....U i
, I. tjj
.1i.. ^]hj.
0.000
' 1
j :j
:. [
.
CU-29 Me 1 yes --Id L-HRYSOTXLE
i,
hk : > I n. ( M
y/l
VFS = 64
10.4
MhTEKIHLIzj HNhL'tTIUHL bERViL'E'-' Cuhsor! 0.040KeV = 0
NED 20-RUG-3 14
\ /
MhfTbiRIHL HNhLYTIUHL GERv Ufc.S Cursors 0.04@keV = 0
WtL) ^-E'JJ-SY 14
M5 GI
)
"UT UI : irl4,'
0.00S I-i
;*
uU-kiS
lj\ ,
J i ^-..A-rrt-rk
10 . id40
)
MRTERIRLS RNRLVTICRL SERVICES
L'llrSuK' ' .40K0V = 0
tEiill
WED id--HUU--0-D 14
-ri*-i 000
Hd:iH:<wt-13 uHRVsOT 1LE
n~ - 10.24
MAS M -Indirect TEM ANALYSIS 31835 016
CLIENT NAME: Materials Analytical Services, Inc.
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type: Grid Acceptance/Loading
11 Liters MCE 47mm
0.45
1297
Indirect Air
MAS indirect
YES
1%
CLIENTSAMPLE ID:
A-1-C
Date Analyzed: Analyst:
Scope Number: Accelerating Voltage:
8/20/2003 Jayme Callan
4 100
Indicated Mag: Screen Mag:
25 20
Grid box Number:
6623
Str < 5um: Str > Sum:
Total str: Str / cc > 5:
114 10 124 317.S896
/cc
Number of grids: 2 Number of openings: 7
#1: 101 #2: 103
#3: 102 #4: 106
Average Grid Size: Total Area Analyzed:
0.010608 0.074
KV KX KX
Str#: SquarelD: Type:
1 D2-G8 C 2C 3C 4C 5C 6C 7C 8C 9C 10 C 11 C 12 C 13 c 14 17 C 15 C 16 C 17 C 18 C 19 C
20 C
21 C 22 C 23 F4 C 24 C 25 c
26 c
27 c 28 c
Structure:
C-B B F B C-B M-F F F B B F F B B B F M-B F B M-B B B M-F F F F B M-F
Length
10.00 1.90 1.20 2.00 1.80 2.00 4.00 1.00 1.90 4.50 1.60 0.70 6.20 16.30 4.20 0.50 2.00 1.70 1.70 2.00 5.70 1.90 1.00 1.60 0.70 1.00 3.70 0.50
Width
0.20 0.18 0.05 0.20 0.15 0.05 0.20 0.05 0.20 0.20 0.05 0.05 0.10 1.00 0.60 0.10 0.50 0.05 0.20 0.20 0.20 0.20 0.20 0.05 0.05 0.05 0.25 0.05
Morph:
X X X X X X X X X X X X X X X X X X X
X X
X X X X X X X
SAED:
X X X X X X X X X X X X X X X X
X
X X X
X
X X X
X
X X X
EDS: Print out
Print out
Print out
MAS M -Indirect TEM ANALYSIS 31835 016
CLIENT NAME: Materials Analytical Services, Inc.
29
CF
3.60
30
C M-F
0.70
31
CF
0.70
32
C M-B
1.80
33
CF
0.90
34
C C-F
3.70
35 C
36 c 37 c 38 El c 39 c 40 c 41 c 42 c 43 c 44 c 45 c 46 e 47 c 48 c 49 c 50 c 51 c 52 c 53 c 54 c 55 C5 c 56 c 57 c 58 c 59 c 60 c 61 c 62 c 63 c
M-F B B B B C-F M-F C-F M-F B NSD B B
F
F M-F B C-F M-B F B F B
F
F M-B B B M-F
1.50 2.50 2.00 6.00 1.60 1.60 1.60 1.00 1.60 1.70 0.80 5.90 6.30 2.40 1.60 1.70 2.00 4.00 1.20 1.80 2.00 0.80 4.00 1.60 1.70 2.50 3.80 6.00 1.80
64 c 65 c 66 E2-F1 c 67 c 68 c 69 c
B B F F M-F F
6.30 1.80 1.60 0.60 1.00 1.40
70
cB
3.90
71
cB
3.90
72 c F 0.60
73 c F 1.60
74
cF
0.80
75
cF
0.90
76 c F 1.00
77
c M-B
1.60
0.20 0.05 0.05 0.10 0.05 0.10 0.05 0.20 0.10 0.20 0.10 0.05 0.15 0.05 0.05 0.20 0.05 0.20 0.20 0.05 0.05 0.15 0.15 0.05 0.20 0.50 0.20 0.15 1.00 0.10 0.05 0.15 0.15 0.40 0.10 0.10 0.20 0.05 0.05 0.05 0.10 0.30 0.15 0.05 0.10 0.05 0.10 0.05 0.10
CLIENT SAMPLE ID:
A-1-C
XX
XX
X X Print out
XX
XX
XX
XX
XX
XX
XX
XX
XX
X X Print out
XX
XX
XX
XX
XX
XX
XX
XX
XX
X X Print out
XX
XX
XX
XX
XX
XX
XX
XX
XX
X X Print out
XX
XX
XX
XX
XX
XX
XX
XX
XX
X X Print out
XX
XX
XX
XX
XX
XX
MAS M -Indirect TEM ANALYSIS 31835 016
CLIENT NAME: Materials Analytical Services, Inc.
78
C C-B
1.80 .
79
CF
1.00
80
CF
0.80
81
CB
2.00
82
cF
1.80
83
cF
1.60
84
cF
1.90
85
cF
1.60
86
c M-F
0.50
87
cB
1.60
88
c M-B
4.20
89
cB
3.60
90
c C-F
0.60
91
c M-B
3.00
92
c C-B
5.20
93 D3 c
F
1.70
94
cB
1.90
95
cF
030
96
cB
1.00
97
cF
0.70
98
cB
3.80
99
cF
0.70
100 c B 1.60
101
cB
3.00
102 c B 2.00
103 c F 2.40
104 c F 1.60 105 c B 0.60 106 c F 1.70
107 c F 1.60
108 c F 0.90
109 c B 1.80
110 c .F 1.80
111
c M-F
1.60
112 c B 1.70
113 c F 230
114
c M-F
1.50
115 c F 1.80
116 c B 2.10
117
c C-F
230
118
c M-B
1.20
119
c M-B
3.60
120 c B 2.10
121 c B 2.00
122 c F 1.80
123 c B 2.20 124 c F 3.80
0.20 0.10 0.05 0.15 0.05 0.05 0.05 0.10 0.05 0.10 0.20 0.20 0.05 0.50 0.20 0.05 0.15 0.05 0.20 0.05 0.20 0.05 0.15 0.15 0.15 0.05 0.10 0.20 0.05 0.05 0.03 0.40 0.05 0.10 0.15 0.05 0.05 0.05 0.15 0.05 0.20 0.10 0.15 0.20 0.10 0.15 0.10
CLIENT SAMPLE ID: |
A-1-C
XX
XX XX
X X Print out
XX
XX
XX
XX
XX
XX
XX
XX
XX
X X Print out
XX
XX
XX
XX
XX
XX XX
XX
XX
X X Print out
XX
XX
XX
XX
XX
XX
XX
XX X ' . X
X X Print out
XX
XX
XX
XX
XX
XX
XX
XX
XX
X X Print out
XX
XX
XX
MAS M -Indirect TEM ANALYSIS 31835 016
MRTERIRLS RNRLVTICRL SERVICES Cuhsoh s Q.S4GKev -
Jv--1~) 20--j--jl_iH--L02 |1 2->4-
i\ f
t'i
t Sii (jj t: 111
. k irfl
-.
/ ,
4
MHTERlHLb HNhLY!IUHL btRvIUEb L- U 'f- B O r * 0.0-fKt'V' = 0
NED id-j-iUU-03
cr .-j,-.
X':
H
A i f!
-mlAik/l huJ; ;h
0.00 d!0
OJ-2S M31S35 -016 CHEVSOTILE
| jj . Itivrrnh!.^ 1 'Vr 10.340
}
MhTERIRLS fiNRLVTICRL SERVICES Cursors .84KeV =
THU 21-RUG-03 7iIS
.0 3
CU-2H M3i835-816 CHRYSOTILE
VFS = 64
MRTERIRLS RNRLYTICRL SERVICE Cui'soh s 0.S40K&V = 0
THU i --HUh-- S3 0 ? s ES
1
c
i
|
\ l ME
\ GI
ic:
.......
,
t>.
\
1 \
ij
T
)
i ii
sjL U
1
c
i 1i r -! !i
U........|t,IMF
t
t *] tt ii i ii
ii * : ift
1.
irt t
t.............. i i/ j ii*..............
I l\i
ALij,,dnL.<Jj&fiTLidJ&JiLi*ii ^Wi
____i.U__Ac
,
0.000
UU-U
Sb4 10.^40
M31S35-S16 CHRYSOTILE
)
MhTEkIRLS HNhLVTIuhL hfcKVTuEH C u h s o r-i 0.04S K eV = 0
THU >1-HUG-U 07iL2
MRTERIRLS RNRLYTICRL SERVICE': Cursor-! 0.040KeV = 0
THU 21-RUG-S3 7 s42
Mid
0.000 21
ftiMA UU-2H M31835-016 CHEVSOTILE
d.'.ri_J.iJ.L=-.ijS j.ttiA
10.24
MRTERIRLS RNRLYTICRL SERVICES Cut'-sof*- . 04KeV =
21-RUG-3 07:42
M31835-01b CHRYSOTILE
MRTERIRLS RNRLYTICRL SERVICE: Cursors 0.40keV = 0
THU 21-RUG-03 0?s5S
"U |l|
l-.H-fi
0.000 er i--i
CU-2S
jj.
svuerro - iico
1Q.240
!
MRTERIRLS RNRLYTICRL SERVICES Cursor-: 0.040keV = 0
;i* i!; H[
i
il
i
THU 21-RUG-03 0S:03
I .................... St '
i
M in
i.................. ; li jj
ct ::
r-i l~"i!
t
l
f{
i
...... 3
...........'U
.............. - 1 JI
ij
f| r
il.......... U' ,jtj
1 ! ikiL
till............il.ii
il
0.00U
CU-29
jlImjll
20 M31835-016 CHRYSOTILE
! ! ! ! 1 li i
|
.....................1 J................... Vc
.....................1
.
t!
iil 1 1
i. ;
iii!l 1
li
f< iil1:
[ ilitli 0 ! li HR il HI--IL. Ji.
i i:
/FS =
As71
j
MRTERIRLS flNRLYTICRL SERVICES L'L-iHsqH * 0.040kev ~ 0
THU 21-RUG-03 8:15
0.00 i/
CU-29 M31835-01S UHRYbO!iLt
VPS = 32
10.240
MRTERIRLS ENRLVTICGL SERVICE: Cursor-: .04k&V = 0
THU 2i-RUG-S3 S 5 2
. 00G
IS'
M31S35- IS CHRYSOTILE
I
v r-
10.240
MRTERIRLS RNRLYTICRL SERVICES Cuf'-soh: 0.04KeV =
hUu~4 So ' idy
\ !
MflTERIRLS RNFILYTICRL SERVICES Cuhsohi 0.Q40keV = 0
WtD ii0-HUC-0C 15! id
t*
iy
`i.jJ_k...-frrrrW.-,i-y.
_L
ii k
ft
[L.---44Lh!~3Hnj.-..
MAS Indirect TEM ANALYSIS M31835-017
| CLIENT NAME: Materials Analytical Services. Inc.
Sample Areal Volume: Filter Type: Pore size:
Effective Filter Area: Sampletype:
Analysis type: Grid Acceptance/Loading
11 Liters MCE 47mm
0.45
1297
Indirect Air
MAS Indirect
YES
1%
CLIENT SAMPLE ID: |
Date Analyzed: Analyst:
Scope Number: Accelerating Voltage:
Indicated Mag: Screen Mag:
Grid box Number:
8/21/2003 Jayme Callan
4 100 25 20 6623
Str < 5um: Str Sum:
Total str: Str/ cc>5:
32 10 42 222.3127
lec
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: 102 #4: 106
Average Grid Size: Total Area Analyzed:
0.010608 0.106
KV KX KX
]
1 Sti#:
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 IS 19 20 21
22 23 24 25 26 27
............................
1 ' .............
SquarelD: Type: Structure:
Length
B2-C4
B9 E10 H7
FI B2-H5
E7 A9
C C c c
CR C C C C
CR C C C C C C C C c c c
c c c c c c
F B F F B F B F F F C-B B B B F B F B B F B NSD B F B B M-B M-B
1.70 6.90 2.00 1.80 12.00 7.90 0.80 1.60 1.50 1.60 3.70 25.00 14.50 2.10 1.20 18.00 3.60 6.00 9.80 1.70 12.00
2.40 1.60 2.30 1.70 1.70 1.00
. Width
0.05 0.20 0.10 0.05 1.60 0.10 0.20 0.20 0.05 0.10 0.20 0.20 4.50 0.20 0.05 0.15 0.20 0.20 0.20 0.05 0.40
0.40 0.05 0.25 0.10 0.15 0.15
..... ......................
Morph:
SAED:
X X X X X X X X X X X X X X X X X X X' X X
X X X X X X X X X X X X X X X X X X X X X
XX XX XX XX XX XX
EDS: Print out Print out Print out
Print out
i
MAS MIndirect TEM ANALYSIS 731835-01
CLIENT NAME: Materials Analytical Services, inc.
28
C C-F
1.50
29
C M-F
2.20
30
cB
2.00
31
cF
1.00
32
cB
1.70
33
cF
4.00
34 C5 c
M-F
1.00
35
c M-F
1.80
36 c F 1.60
37 c 38 E2 c
B F
3.00 3.80
39
cB
2.20
40
cB
4.10
41
cB
3.90
42
cB
7.80
0.05 0.20 0.20 0.05 0.10 0.05 0.05 0.05 0.05 0.40 0.05 0.10 0.10 0.20 0.20
CLIENT SAMPLE ID: [
A-1-0
XX
XX
XX X X Print out XX
XX
XX
XX XX
XX XX
XX
XX
X X Print out XX
M31835 017 Sample Comments:
I
"I
MRTERIRLS RNRLYTICRL bERV'IUE: Uu soh = 9.040KeV 0
III
3
u
THU 2i-HUU--03 0S'42
i i
1
5i
j j
|H
. ci G
I ............. L
i
fl .
I ji!ii k i
i up LLLLJIIBII
nil i im\
0.000
CU-2S
25 M31835-017 CHRYSOTILE
. |i
1
s1!
i|
1
ii |
j; i1
j
1 |1
ikiL
SkiioliUJXLLiL
VFS = 32
10.240
"'l
MATERIALS RNRLYTICRL SERVICE^ Cuhsor 0.00Kev = 0
X i
THU 21-RUG-03 08 s46
NOG1DOLITE
MATERIALS ANALYTICAL SERVICES CuhsoT- s C . IS Lev =
3.00
r-.iCJ_< -!
! Si J J.
CHRVSOTILE
UFS = 64
13.240
MRTERIRLS RNRLYTICRL SERVICES Cuf-soh: 0.160keV = @
i
THU 21-RUG-03 0S:14
M i
Il ;
t
l; ii
0.00
..n
'!: -1
NH -- 1 i
.!.................
--- I^L.LnViVJLU-lLL^L-jj.JUII U I if Vrb = &-4
2-U
10.U40
)
MATERIALS ANALYTICAL SERVICES Cur-so.1--' S. iSSKeV = 0
'HU L'l-RUu-03 Qy
M
5-
JuJLjIi
0.0SS 04
jh
ir y! !Lla
t\ j JLLAll-lAr;y,i!.rHir^ijA^Y,ryr---.li-.'--- L_U_.lLhJAi-------------------------------
\ |n L
bjuf^Jftti=4L-j-AWA
NH-ii M3io45"SIT CHRYSOlIL
VFS = 64
10.40
* '\i
\
MRTERIflLS RNRLYTICRL SERVICED Cursor: Q.iSQkeV = 0
*l ii ?-!
El
II
II
i{
y
[4 |4 :Wl:
0.S00 37
NH-ii M31S35-17 CHRYSOTILE
THU 2i-RUG-03 9 s38
U
J&jrmUA. fuw-
1 jljj
j ( i)J!;
v'b S = SH
IS. 240
)
MAS Indirect TEM ANALYSIS M31835-019
CLIENT NAME: Materials Analytical Services, Inc.
Sample Area/ Volume: Filter Type:
46.2 Liters MCE 47mm
Pore size:
0.45
Effective Filter Area:
1297
Sample type:
Indirect Air
Analysis type:
MAS indirect
Grid Acceptance/Loading YES
1%
CLIENT SAMPLE ID:
A-2-A
Date Analyzed:
8/21/2003
Analyst:
Scope Number: Accelerating Voltage:
Indicated Mag:
Screen Mag:
Grid box Number:
Str < Sum: Str Sum:
Total str: Str / cc > 5:
12 15.8795
/cc
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: 102 #4: 106
Average Grid Size: Total Area Analyzed:
0.010608 0.106
KV KX KX
3
t Str#:
1 2
3 4 5 6 7 8 9 10
11 12
SquarelD: Type:
B6-H1 C
C
El D10
G8
J10 B7-D9
c c c c c c c
F7 H4
E3 c B6 c
Structure: B F NSD F M-B F M-F F F F F NSD NSD F B
Length 2.30 1.70
1.60 430 1.80 5.20 0.40 6.00 1.00 0.60
1.20 13.90
Width 0.15 0.05
0.05 0.20 0.10 0.30 0.05 0.05 0.05 0.05
Morph: X X
SAED; X X
XX XX XX XX XX XX XX X .X
EDS: Print out
0.05 X 0.80 X
X Print out X
M31835 019 Sample Comments:
MAS Indirect TEM ANALYSIS M31835-020
CLIENT NAME: Materials Analytical Services, Inc.
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type:
44 Liters MCE 47mm
0.45 1297 Indirect Air MAS indirect
Grid Acceptance/Loading YES
1%
CLIENT SAMPLE ID: | A-2-B
Date Analyzed: Analyst:
8/21/2003 Jayme Callan
Scope Number: Accelerating Voltage:
4 100
Indicated Mag:
25
Screen Mag:
20
Grid box Number:
6623
Str < 5um: Str a Sum:
Total str: Str/cc>5:
10 22.3387
/cc
c
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: 102 #4: 105
Average Grid Size; Total Area Analyzed:
0.010557 0.106
KV KX KX
]
Str#: SquarelD: Type:
1 D7-C4 C
2 B6 C
D10 H8
3 14 c 4c
D6-A6
5 D6 c 6c 7c 8c 9c 10 B4 c
G3
J5
Structure:
B C-B NSD NSD
F
F
NSD B B C-B B B C-F NSD NSD
Length 3.60 9.00
0.50 1.00
16.00 3.70 4.00 20.00 12.20 1.50
Width 0.20 0.20
Morph: X X
SAED: X X
EDS: Print out
0.05 0.05
0.25 0.15 0.30 0.40 0.80 0.10 .
X X
X X X X X X
X X
X X X X X X
M31835 020 Sample Comments:
MHTEHlHLlb HN'riLYTlURL SERVIUEb Cuhsof-J 0.i60KeV = 0
THU 21-RUG-03 15:35
:....... i
,i
/! 1
/
Ii
it-
III i\ i'iw \`\{
0. G0
NH-i 1
M3i835-S20
^pysoTIL:
u
A
: f :i
<!
:l
r-r-O-1 ',J,A JU.UH i
: jk !
'k-Jj.
10.240
MRTERIRLS RNRLVTICRL SERVICES Cursor-: C.lSBKev = 0
THU 21-RUG-03 15:55
13.240
MAS Indirect TEM ANALYSIS M31835-021
CLIENT NAME: Materials Analytical Services, Inc.
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type:
48.4 Liters MCE 47mm 0.45 1297 Indirect Air MAS indirect
Grid Acceptance/Loading YES
1%
CLIENT SAMPLE ID: j A-2-C
Date Analyzed: Analyst:
Scope Number: Accelerating Voltage:
8/22/2003 Jayme Callan
4 100
indicated Mag: Screen Mag:
25 20
Grid box Number:
6623
Str < Sum: Str Sum:
Total str: Str / cc > 5:
6 2 8 10.1539
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: 102 #4: 105
Average Grid Size: Total Area Analyzed:
0.010557 0.106
KV KX KX
]
Str#:
1
2
3 4
5
6
7 8
SquarelD: Type:
A9-H9
J7 C 13 C4 C
c A7 c
c
B9-H9
16
G2 c
E4
B2 c c
Structure:
NSD B NSD F B B B NSD NSD F NSD B B
Length
1.00
2.00 2.30 6.10 2.40
1.00
0310 17.00
Width
0.10
0.10 0.20 0.15 0.10
Morph:
X
X X X X
SAED:
EDS:
X Print out
X X X X
0.05 X
0.10 X 0.20 X
X
X X
M31835 021 Sample Comments:
\
HH i ERlHLb HNhLYTIuhL `-'ERv'ICEb UuhSOr! 0.QSkeV =
*RI 22-HUG-3 07:33
L j:
jL [kfftvi'h*:
0.000
FE-2S
3 M31S35-2i CHRVSOTILE
,,
J
i.24
\ >}
MAS Indirect TEM ANALYSIS M31835-022
CLIENT NAME: Materials Analytical Services, Inc..
Sample Area/ Volume: Filter Type:
48.4 Liters MCE 47mm
Pore size:
0.45
Effective Filter Area:
1297
Sample type:
Indirect Air
Analysis type:
MAS indirect
Grid Acceptance/Loading YES
1%
CLIENT SAMPLE ID: j A-2-D
Date Analyzed: Analyst:
8/22/2003 Jayme Caiian
Scope Number: Accelerating Voltage:
4 100
Indicated Mag:
25
Screen Mag:
20
Grid box Number:
6623
Str < 5um: Str a Sum:
Total str: Str/cc>5:
11 1 12 5.0526
[
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: 102 #4: 106
Average Grid Size: Total Area Analyzed:
0.010608 0.106
KV KX KX
Str#: SquarelD: Type:
1 D10-D8 C 2C
3c 4 H10 c
17
5 C5 c 6 FI c 7 D9-C5 c 8 B9 c
9 CR 10 C
F8 11 H6 C 12 13 C
Structure:
M-B F C-F F NSD M-F B M-B F F B NSD B M-F
Length 1.60 0.80 1.50 1.60
2.20 3.90 5.80 0.80 1.80 2.10
1.90 0.60
Width 0.05 0.05 0.05 0.10
0.15 0.45 0.20 0.05 0.20 0.10
0.20 0.10
Morph: X X X X
X X X X X X
X X
SAED: X X X X
X X X X X X
X X
EDS: Print out
Print out Print out
M31835 022 Sample Comments:
iRTERIRLS RNRLYTICRL SERVICES lui-sof'! 0. G00keV = 0
FRI EiV--RUU--0b 0b * i i
M I -4 i
.u
0-000
i-E-bi:
3 ' . J
i:\ - '1 ~'p
MHT'czRXHLb HNhLYTiL'HL
L.uf'sQf*' * & . 8bQ K eV ~ 0
hRI 22-HUG"0'.< 08 s 37
\.p\i E f| ] 1 ' ` ^ ! j-
3.08 896
FE-26 M31835-022 CHRVSOTILE
:i
uylI'n, 'VvYI ,,i! :;
VF'-' - 25b
: 4J H iY lL`i,Lir,.ii7'jr>V,a
10.24'8
MHTER1 RLb HNhiLYT IURL 3iz.KV I LE2< Cuhsoh 0. 140KeV = 0
rRI 22--MUG--0- 03:2:
... W Chu ! i;
r
kA..J ll
8.00
30
NH-li M31133-5 -022 L'RUU I U'w'L i TE
:............ k.....
k
A --r.-jH
10.24
MAS Indirect TEM ANALYSIS M31835-023
CLIENT NAME: Materials Analytical Services, Inc.
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area:
0 Liters MCE 47mm
0.45 1297
Sample type: Analysis type:
Indirect Air MAS indirect
Grid Acceptance/Loading YES
1%
CLIENT SAMPLE ID:
ASFB-1
Date Analyzed: Analyst:
Scope Number: Accelerating Voltage:
8/19/2003 Jayme Callan
4 100
Indicated Mag: Screen Mag:
Grid box Number:
25 20 6623
|
Str < Sum: Str 2 Sum:
Total str: Str/ cc> S:
0 #Error
/cc
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: 102 #4: 106
Average Grid Size: Total Area Analyzed:
0.010608 0.106
]
SquarelD:
D10-E4 B3 A6 D7 F8
D9-H6 J5 G8 C7 B4
Type:
Structure:
NSD NSD NSD NSD NSD NSD NSD NSD NSD NSD
Length
Width
Morph:
SAED:
M31835 023 Sample Comments:
MAS Indirect TEM ANALYSIS M31835-024
CLIENT NAME: Materials Analytical Services, Inc.
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type:
0 Liters MCE 47mm
0.45 1297 Indirect Air MAS indirect
Grid Acceptance/Loading YES
1%
CLIENT SAMPLE ID: | ASBF-2
Date Analyzed: Analyst:
Scope Number: Accelerating Voltage:
8/19/2003 Jayme Callan
4 100
Indicated Mag: Screen Mag:
Grid box Number:
25 20 6623
Str < 5um: Str Sum:
Total str: Str / cc > 5:
0 0 6 #Error
Number of grids: 2 Number of openings: 10
#1: 101 #2: 103
#3: 102 #4: 105
Average Grid Size: Total Area Analyzed:
0.010557 0.106
KV KX KX
Filter used 1/2
Dilution 30
Dilution Factor 6.666667
Detectcc: Total cc:
#Div/0l #Error
Sti#: SquarelD:
C9-F2 D2 H9
C10-D7 E8 G8 <56 14 J2 D2
Type:
Structure:
NSD NSD NSD NSD NSD NSD NSD NSD NSD NSD
Length
Width
Morph:
SAED:
EDS:
M31835 024 Sample Comments:
SECTION 5
MATERIALS ANALYTICAL SERVICES
Client Code: |mASCORp]
PROJECT LOG
MAS ID: Client Name: Project Name: Logged By:
M31850________ _____________ Materials Analytical Services, Inc. Cutting CA Pipe JM dmazzaferro
Client Job No: Client PO: Date In:
8/6/03
TRANSPORT INFORMATION:
Submitted By: Delivery By: Received By: Condition:
Mike Mount Hand Deliver dmazzaferro good
Documents: COC Comments for COC:
CONTACT INFORMATION:
Contact:
Richard Hatfield
Title: First Name: Last Name:
Mr. Richard
Hatfield
Suffix
Work Phone: (770) 866-3204 Other Phone: Fax: (770) 866-3259
Ext: Ext:
Page 1 of 1
M31850
# Client ID 001 F-1-RH 002 F-1-MM 003 F-2-MM 004 F-2-RH
SAMPLE INFORMATION:
Volume 56 . 60 67 50
# Client ID
Volume
SIGNATURES RECEIVED BY: REVIEWED BY: PREPARED BY: ANALYZED BY: REPORTED BY: DEPOSED BY:
INDUSTRIAL HYGIENE AIR SAMPLING CHAIN OF CUSTODY
WMAS. Co. Name Address
3945 Lakefieid Court Suwanee, GA 30024 PH: (770)866-3200 FAX: (770) 866-3259
PH: FAX:
Project Numbers Project Name: Work Area Description' Project Representative'^ Sampling Date
C,fi
C hn-i^h r:r
Sheet <2* of
First Transfer By: Second Transfer By: Third Transfer By:
TEM SAMPLE DATA
Prep SOP#:
MT-017
Prep Status:
Complete
Sample Type:
Fabric
Analysis type:|_____ Dust
Sample Number
Sample ID
)000 flab blank
"If-""
002 lF-1-MM
I
003 IF-2-MM
|004 1F-2-RH*
M31850
prep_date: 8/13/03 J Prep Tech:
dmazzaferro
Archival Information
Slldes| 180 i Fllters:[
Bottles:! 9461 Gidd._box: 6622
Archive Comments;!"^
Disposal Comments: j*
Area
Filter TotBl Portion Susp
#1
#2
Reprep Dates
Filtered Volumes In m #3 #4 #5
Filter Type:
j 56 Hsjrt2j
1| 250
1....67 I|.cm2j i/jl........ 1) 250
JLQ.. !|cm2J "|1___,i|.21J
TEM DUST ANALYSIS
Materials Analytical Services, Inc. Cutting CA Pipe JM
M31850 000 -- *------------
Client Sample ID:
lab blank
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type: Grid Acceptance
0 cm2
MCE 47mm 0.45 1297 Fabric Dust YES 1 /,
Date Analyzed: Analyst:
Scope Number: Accelerating Voltage:
Indicated Mag: Screen Mag: GrId_box:
8/28/2003 Jayme Callan
4 100 KV 25 KX 20 KX 6622
Str <5mn: Str >5um: Total Str:
0 0 0
Volume Filtered
100 ml
Dilution Factor
2
Number of grids: 2 Number of openings: 10
Str / sqr ft Str/sqrft >=5
#1: 101 #2: 103
#3: #4:
0.000E+00 O.OOOE+OO
Average Grid Size: 0.010557 Total Area Analyzed: 0.106
Str / cm2 0.000E+00 Str/cm2 >=5 O.OOOE+OO
Str#: SquarelD: A2-C4
Type:
Structure: NSD
Length
Width
Morph:
SAED:
EDS: Photo: Sketch:
D2 NSD
HI NSD
J9 NSD
F8 NSD
A1-F4
NSD
C2 NSD A5 NSD E7 NSD G6 NSD
.
... ..
.
M31850 000
TEM DUST ANALYSIS M31850 001
Materials Analytical Services, Inc. Cutting CA Pipe JM
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type: Grid Acceptance
56 cm2 MCE 47mm
0.45 1297 Fabric Dust YES 1 %
'
Client Sample ID:
Date Analyzed: Analyst:
Scope Number: Accelerating Voltage:
Indicated Mag: Screen Mag: GrId_box:
F-1-RH
8/28/2003 Jayme Callan
4 100 KV 25 KX 20 X 6622
Str <5um: Str 5um: Total Str:
Volume Filtered
Dilution Factor
0 0 0
100 ml 2.5
Number of grids: 2 Number of openings: 10
Str / sqr ft Str / sqr ft >=5
#1: 101 #2: 103
#3: 102
Average Grid Size: 0.010608
#4: 106 Total Area Analyzed: 0.106
0.000E+00 0.000E+00
Str / cm2 O.OOOE+OO Str/cm2 >=5 O.OOOE+OO
nrirnri yrifl--Mriym-iyriyiwiWiWiyiihyHHMMynrrmr>yirMriiri^
Str#: SquarelD: Type:
Structure:
B1-C5
NSD
Length
Width
Morph:
SAED:
EDS: Photo: Sketch:
B2 NSD
E4 NSD
F7 NSD
19 NSD
B2-H5
NSD
F4 NSD
E7 NSD
C4 NSD
110 NSD
M3185Q 001
TEM DUST ANALYSIS M31850 002
Materials Analytical Services, Inc, Cutting CA Pipe JM
Client Sample ID:
F-1-MM
Sample Area/ Volume: Fitter Type: Pore size:
Effective Filter Area: Sample type: Analysis type:
Grid Acceptance
60 cm2 MCE 47mm
0.45
1297
Fabric
Dust
YES
1%
Date Analyzed: Analyst:
Scope Number Accelerating Voltage:
Indicated Mag: Screen Mag: Grfd_box:
8/28/2003 Jayme Callan
4 100 KV
25 KX 20 X 6622
Str <5um: Str ;>5um: Total Str:
0 0 0
Volume Filtered
100 ml
Dilution Factor
2.5
Number of grids: 2 Number of openings: 10
Str / sqr ft Str/sqrft >=5
#1: 101 #2: 103
#3:(l02 #4:jl05
Average Grid Size: 0.010557 Total Area Analyzed: 0.106
0.000E+00 0.000E+00
Str / cm2 0.000E+00 Str / cm2 >=5 0.00OE+00
SquarelD: C5-B1
Type:
Structure:
NSD
A2 NSD
C4 NSD
A5 NSD
D1 NSD
C4-I9
NSD
G10 NSD
DS NSD
B6 NSD
C4 NSD
Length
Width
Morph:
SAED:
EDS: Photo: Sketch:
'
M31850 002
TEM DUST ANALYSIS M31850 003
Materials Analytical Services, Inc. Cutting CA Pipe JM
Client Sample ID:
F-2-MM
Sample Area/ Volume: Filter Type:
67 cm2 MCE 47mm
Date Analyzed: Analyst:
8/28/2003 Jayme Call an
Pore size:
0.45
Scope Number:
4
Effective Filter Area:
1297
Accelerating Voltage:
100 KV
Sample type:
Fabric
Indicated Mag:
25 KX
Analysis type:
Dust
Screen Mag:
20 KX
Grid Acceptance
YES
1%
Grid box:
6622
..................................... ................................................................................................................................................................................................................... -............................................................................................................................ -...................................... .................................. --
Str < 5um: Str >5um: Total Str:
12 4 16
Volume Filtered
10 ml
Number of grids: 2 #1: 101 Number of openings: | 10 j #2: 103
#3: 102
Average Grid Size: 0.010557
#4: 105 Total Area Analyzed: 0.106
Str / sqr ft 6.815E+07
Str / cm2 7.335E+04
Dilution Factor
25
Str/sqrft >=5 1.704E+07
Str/cm2 >=5 1.834E+04
Hnwiromr Str#:
1
SquarelD: D1-E9
Type: C
Structure: F
Length 1.00
Width 0.05
Morph: X
SAED: X
EDS: Photo: Sketch: 0
2
CB
14.20
0.40
X
X
V G10 c
/
4 16 c
5 D5 c
F F F
2.40 X.80 3.50
0.05 0.15 0.20
X X X
X X X
J4
6 D2-G2 c
NSD B
6.00 0.40 X
X
J6
7 H8 c 8c 9c 10 c 5.7 C7 c 12 c ' .,) 13 E5 c 14 c
NSD F F F F B B B C-B
1.95 0.05 4.20 0.05 1.60 0.05 3.60 0.03 4.00 0.15 5.70 0.20 8.20 0.20 2.10 0.15
X X X X X X X X
X o X X X X 0 X 0 X X
'
ns i
16
CF CF
1.00 0.05
X
2.10 0.05
X
X X
M31850 003
MRTERIRLS RNRLYTICRL SERVICES
Luhsoh 5 0 . ic'S0KV = 0
1
?t ?! C!
THU
-RUG -
05; 58
-------- 1 1
!
\i
li
\....... i............................
1j
]
i
Ci <
;i
i
1 j ii ik
R >i
1 !1
|f
t
nI i l\
UJ\ k
a_ p_!
ii i Jl
?!
f
..............{
k 1
i 1
.I ^V-N-f'Vt ikfrlj. -AUJr'fh-rrr!vA,rnl.ul-hr^l
1 r ! [
i ,, frZlh^Vn^. j,?
p *"*
. j r 1. ...........
MRTbRlHLb HNMLYixUHL bERVIUbb
Cursor- ' S . 2`o0Ks?V ~ 3
THU 2S-RUG-0: 0t
H !h
11
r : \tl l I :v\i , ,
*
i-.....ItliflK i'l&ljj! ;j iLj^jrraU^
0 3S3
|
.
hjh-'Jik.
T:`
, III
l l5j
I ,|J&
5 = 64
TEM DUST ANALYSIS M31850 004
Materials Analytical Services, Inc. Cutting CA Pipe JM
Sample AreaI Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type: Grid Acceptance
50 cm2 MCE 47mm
0.45 1297 Fabric Dust YES 1 %
Client Sample ID:
Date Analyzed: Analyst:
Scope Number: Accelerating Voltage:
Indicated Mag: Screen Mag: Grid box:
F-2-RH
8/28/2003 Jayme Calian
4 100 KV
25 KX 20 kx 6622
Str < 5um: Str 5um: Total Str:
21 5 26
Volume Filtered Dilution Factor
10 ml 25
yfffffffrwrrfmymwtrirtrnrmr Sti#: SquarelD: Type:
1 B4-F4 C
Number of grids: 2 Number of openings: 10
Str/sqrft Str/sqrft >=5
#1: 101 #2: 103
#3: 102
Average Grid Size: 0.010557
#4: 105 Total Area Analyzed: 0.106
1.484E+08 2.854E+07
Str / cm2 1.597E+05 Str/cm2 >=5 3.072E+04
Structure:
F
Length 2.20
Width 0.40
Morph: X
SAED: X
EDS: Photo: Sketch: 0
2
CF
1.90 0.05 X
X
)3 c 4 H2 c
B
F
1.00 0.15 3.80 0.05
X X
X X o
5
cF
2.10 0.05
X
X
6 15 c
F
3.30 0.05 X
X
7
c C-F
1.70 0.03
X
X
8
cB
4,40 0.15
X
X
9
cF
2.00 0.05 X
X
10
cB
2.00 0.10 X
X
11 J7 c
F
1.00 0.05 X
X 0
12 c
13 mo c 14 c )l5 c 16 A4-J4 c
F
C-F
B B F
4.10 0.10 2.00 0.10 5.70 0.40 4,80 0.15 2.00 0.20
X X X X X
X X X X X
17 C }\
18 C
19 C 20 m C 21 32 C 22 C 23 C
24 11 C
25 C
26 FI C
B
F F
B B B
F F
B B
2.00 1.20 2.20 9.00 3.00 8.20 2.00 1.80 8.30 13.00
0.15 0.05 0.05 0.15 0.20 0.20 0.10 0.05 0.40 0.40
X X X X X X X X X X
X X X X X X X X X X
M31850 004
''if-- i hRT--i; PKjj-->j V' riL:pL
Ju-schJ e.260Kev = 3
HU iiic-
--3-3 3fo > 4 j_
ti
0GS
Vv^r':" U.-.'--r'n:
,-V.Jw .Wi-m
CU-29
M3iS50-004 CHRYSOTILE
.! !>
.{
!\ jJW:
Hi
MRTERIRLS RNRLYTICRL SERVIC Cur-sot"; 0.260KeV = 0
HUu->: 07:0i
t....r \\
0.00
dh
i3iS5S-004 CHRYSOT
llh
l ddft
i . Y40>
MKTE'H I Hl_E HNHLV'i i UHL. EENV' I UEb e!
H
--r ]
i j|
i i If 1
0.000 24
uu --yy M3i850-004 CHRVSOTILE
'HU 28-RUC
\
t
hii
! h"
vHE - 1io
SECTION 6
MATERIALS ANALYTICAL SERVICES
Client Code: |MASCORP|
PROJECT LOG
MAS ID: Client Name: Project Name: Logged By:
M31851 Materials Analytical Services, Inc. Cutting CA Pipe JM dmazzaferro
Client Job No: Client PO: Date In:
8/6/03
TRANSPORT INFORMATION:
Submitted By. Delivery By: Received By: Condition:
Mike Mount Hand Deliver dmazzaferro good
Documents: COC Comments for COC:
CONTACT INFORMATION:
Contact:
Richard Hatfield
Title: First Name: Last Name:
Mr. Richard
Hatfield
Suffix
Work Phone: (770) 866-3204 Other Phone: Fax: (770) 866-3259
Ext: Ext:
Page 1 of 1
M31851
# Client ID
001 DS-B 002 DS-1
003 DS-2
SAMPLE INFORMATION:
Volume
0
. 80 80
# Client ID
Volume
SIGNATURES RECEIVED BV: REVIEWED BY: PREPARED BY: ANALYZED BY: REPORTED BY: DEPOSED BY:
TEM SAMPLE DATA
Prep SOP#: Prep Status: Sample Type: Analysis type:
MT-003 Complete
Dust Dust
Sample Number
Sample ID_____________
000 |lab blank
001 iDS-B
002 |DS-1 003 fc)S-2
M31851
Page |i of i
^pre^-da^J^^s^s/os^j^PrepTech^
dmazzaferro
Slides:!
Archival Information
Filters:)
j Bottles:) 946] Gid_box:J 6615
Reprep Dates
Archive Comments:! Disposal Comments:
Area
Filter Total Portion Susp
TMoT3Ti/)i
i)
H Dilution Factors
Filtered Volumes in m
#1
#2 #3
#4 #5 Filter Type:
30 Hg
I'?-) p-| ""^Sl
1 MCE47mm ISHH
3.333 H
|H
iH
iH
ir-r-r-mn -r..... 1297 it&ESS&j
1 - 0...Jlsna2J
. I 100
30 II
H Dilution Factors 3.333 li
IIS Ilf !il
B li ill
|| MCF. 47mm HH ........If n 'I'mMlaH
g| 1297 iMffli
1 80 I)cm2l 1/M
!) 100
1 L..J.0...Jl_cjji2j 1/|1_____
10 H 30 || H R9H isj MCE 47mm 91111!
10 n 3.333 jS W Iff HJ 1297 iyHB
10 9 3'333 111 il 11 1297
INDUSTRIAL HYGIENE AIR SAMPLING CHAIN OF CUSTODY
iV\AS. Co. Name Address
3945 Lakefield Court
Suwanee, GA 30024
PH; (770)866-3200 FAX: (770) 866-3259
PH; FAX;
Project Number; Project Name: Work Area Description Project Representative: Sampling Dale:___ ^
tfi
Ch
Sheet <2* of
ef
TEM DUST ANALYSIS
Materials Analytical Services, Inc. Cutting CA Pipe JM
Sample Area/ Volume: Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type: Grid Acceptance
0 cm2
MCE 47mm
0.45
1297
Dust
Dust
YES
1%
M3185I 000
Client Sample ID:
Date Analyzed: Analyst:
Scope Number: Accelerating Voltage:
Indicated Mag: Screen Mag: Grld_box:
lab blank
8/25/2003 Jayme Callan
4 100 KV
25 KX 20 KX 6615
M31851 000
TEM DUST ANALYSIS M31851 001
Materials Analytical Services, Inc. Cutting CA Pipe JM
Sample Area/ Volume; Filter Type; Pore size:
Effective Filter Area; Sample type:
Analysis type: Grid Acceptance
0 cm2
MCE 47mm
0.45
1297
Dust
Dust
YES
1%
Client Sample ID:
Date Analyzed: Analyst:
Scope Number: Accelerating Voltage:
Indicated Mag: Screen Mag: Grid_box:
DS-B
8/25/2003 Jayme Call an
-4 100 KV 25 KX 20 KX 6615
Str <5mn: Str ^5um: Total Str:
Volume Filtered
Dilution Factor
0 0 0
30 ml 3.333333
Number of grids: 2 Number of openiugs: 10
Str / sqr ft Str/sqrft >=5
#1: 101 #2: 103
#3: 102 #4: 105
Average Grid Size: 0.010557 Total Area Analyzed: 0.106
0.000E+00 O.OOOE+OO
Str / cm2 0.000E+00 Str/cm2 >=5 0.000E+00
Sti#: SquarelD: B4-C3
Type:
Structure:
NSD
D7 NSD
A10 NSD
E> NSD
J3 NSD
B3-B9
NSD
F10 NSD
J7 NSD
H4 NSD
E4 NSD
Length
Width
Morph: ''
SAED:
EDS: Photo: Sketch:
.
'
)
M31851 001
TEM DUST ANALYSIS M31851 002
Materials Analytical Services, Inc. Cutting CA Pipe JM
Client Sample ID:
DS-1
ample Area/ Volume: Filter Type: Pore size:
Effective Filter Area; Sample type:
Analysis type: Grid Acceptance
Str < 5um: Str >5um: Total Str:
73 63 136
Volume Filtered Dilution Factor
10 ml 10
SO cm2 MCE 47mm
Date Analyzed: Analyst:
8/25/2003 Jayme Callan
0.45
Scope Number:
4
1297
Accelerating Voltage:
100 KV
Dust
Indicated Mag:
25 KX
Dust
Screen Mag:
20 KX
YES
1%
Grid_box:
6615
-------------------------------------------------------------------------------------------------------- ------r--I-"-r-----------------------------------------------------------------------------------------------------rrr-r
Number of grids: 2 #1: 101 #3: 102
Average Grid Size: 0.010608
Number of openings: 2 #2: 103 #4: 106 Total Area Analyzed: 0.021
Str/sqrft 9.656E+08 Str / sqr ft >=5 4.473E+08
Str / cm2 1.039E+06 Str/cm2 >=5 4.814E+05
rfr^ffrtYrti-nrnTirririririww Str#: SquareDD:
1 C3-II4
Type: C
Structure: F
Length 1.40
Width 0.10
Morph: X
SAED: X
EDS: Photo: Sketch: 0
2
CB
10.50
0.40
X
X
)3
cB
20.00
0.10
X
X
4
c
F . 1.70
0.10
X
X
5
c C-F
17.00
0.10
X
X
6
cF
5.90 0.05
X
X
7
cF
2.00 0.05
X
X
8
cF
4.20 0.05
X
X
9
cF
5.80 0.05
X
X
10
cB
2.10 0.15
X
X
11
cF
2.00 0.05
X
X 0
12
c M-B
2.00 0.05
X
X
13
cF
3.80 o.os; X
X
14
cF
6.40 0.05
X
X
A
15
c NSD
3.80 0.05
X
X
16
CR F
8.10 0.20
X
X 0
\17 18 19 20 21 22 23 24 25 26 27 28
> 30 31 32 33 34 35 36 37 38 39 40
> / 41
42
CF C C-B
c C-F c C-F c C-F cF cF cF c _F cB cF cB cF cF cF cF c .B cF c M-F cF c C-F cF cF cF c C-F cF
5.40 58.40 12.00 3.80 13.80 2.30 3.00 3.60 5.70 5.70 11.40 8.00 0.60 1.80 2.00 1.40 8.10 1.80 6.10 8.20 18.00 7.90 3.00 2.40 1.90 8.00
0.04 0.20 0.10 0.05 0.05 0.05 0.05 0.05 0.05 0.10 0.05 0.15 0.05 0.05 0.05 0.05 0.15 0.05 0.05 0.05 0.05 0.05 0.10 0.05 0.05 0.10
X X X X X X X X X X X X X X X X X X X X X X X X X X
X
X
X
X X s X X X X X X CD X
X X X s X
X X X [~1 X X X X
X X 0 X
I 43 C
44 C 45 C 46 C 47 C 48 C 49 C 50 C 51 C 52 C 53 C
54 c ) 55 c
56 c 57 c 58 c 59 c 60 c 61 c 62 c 63 C5 c 64 c 65 c 66 c
\
67 c 68 c
F C-F M-F B F F F F _F F F B F F B F F C-F F B B F F C-F F F
1.80 9.00 3.90 6.10 3.80 3.00 10.20 2.10 3.70 1.60 4.30 2.00 3.90 3.90 3.80 6.30 2.10 6.70 6.00 1.70 7.90 2.00 1.70 5.70 7.00 3.00
0.05 0.05 0.10 0.30 0.05 0.10 0.10 0.05 0.05 0.05 0.05 0.15 0.05 0.05 0.15 0.05 0.05 0.05 0.05 0.10 0.15 0.05 0.1' 0.05 0.05 0.05
X X X X X X X X X X X X X X X X X X X X X X X X X X
X X X
X X
X X X X 0 X X X
X X. X X X X
X 0
X X X X X
X D
X
1 69 ) 70 71 72 73 74 75 76 77 78 79 80
)81 82 83 84 85 86 87 88 89 90 91 92 93 94
C C-F CF CF CB CB CB GB CF C .F C C-B C C-F CF CF CB CF CF CF C C-B CF CB CF CF C M-F C C-F C C-B CF
7.00 2.00 3.80 5.20 2.00 7.70 7.40 5.90 3.70 16.00 5.90 8.10 14.00 2.40 6.10 4.00 2.00 6.10 2.00 16.40 19.00 2.20 6.40 12.20 6.10 6.40
0.05 0.05 0.05 0.15 0.15 0.30 0.10 0.10 0.05 0.20 0.05 0.05 0.05 0.10 0.05 0.05 0.05 0.15 0.05 0.20 0.05 0.05 0.05 0.10 0.10 0.05
X X X X X X X X X X X X X X X X X X X X X X X X X X
X X X 0 X X X X X X X X X X m X X X X X X X
X D
X X X X X
* 95 j
96 97 98 99 100 101 102 103 104 105 106 )l07 108 109 110 111 112 113 114 115 116 117 118 119 120
CB
CF C C-F
CB CB CB
CF C M-F
CF
CF CF CF CF
CF CF CB CF CB CF CB CF
c M-F
cF
cF cF cF
23.90 3.90 14.00 4.00 3.00 7.90 3.60 2.00 2.40 6.30 3.80 4.30 4.00 1.80 4.20 5.90 1.80 19.80 20.00 5.30 2.00 7.90 1.90 3.80 6.10 5.80
0.20 X
0.05 X
0.05 X
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122 123 124 125 126 127 128 129 130 131 132 J'm3 134 135 136
CF CF CF CF CB CF CF C C-F C .F CF CF CF CB C F' CF CF
2.00 2.20 2.00 7.90 11.90 1.80 2.00 2.10 8.10 7.60 2.10 2.30 8.50 3.80 4.00 1.90
0.05 0.05 0.05 0.05 0.10 0.05 0.05 0.05 0.10 0.05 0.05 0.05 0.15 0.10 0.05 0.05
X X X X X X X X X X X X X X X X
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TEM DUST ANALYSIS M31851 003
Materials Analytical Services, Inc. Cutting CA Pipe JM
Sample Area/ Volume; Filter Type: Pore size:
Effective Filter Area: Sample type:
Analysis type: Grid Acceptance
80 cm2 MCE 47mm
0.45
1297
Dust
Dust
YES
1%
Client Sample ID:
Date Analyzed: Analyst:
Scope Number: Accelerating Voltage:
Indicated Mag: Screen Mag: Grld_box:
DS-2
8/25/2003 Jayme Callan
4 100 KV 25 KX 20 KX 6615
Str < Sum: Str >5urn: Total Str:
89 16 105
Volume Filtered Dilution Factor
10 ml 10
Number of grids: 2 Number of openings: 2
Str / sqr ft Str/sqrft >=5
#1: 101 #2: 103
#3: 102
Average Grid Size: 0.010608
#4: 106 Total Area Analyzed: 0.021
7.455E+08 1.136E+08
Str /cm2 8.024E+05 Str / cm2 >=5 1.223E+05
Sti#: SquarelD: Type: 1 E3-C6 C
Structure: B
Length 2.40
Width 0.15
Morph: X
SAED: X
EDS: Photo: Sketch: 0
2
CF
2.10 0.05
X
X
)3
cF
2.30 0.05
X
X
4
c
F . 4.10
0.05
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X
5
cF
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X
X
6
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1.00 0.05
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X
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cF
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0.05
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X
8
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X
9
cB
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11
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X
X
14
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M31851 003
1 16 17 18 19 20 21 22 23 24 25 26 27
) 29 30 31 32 33 34 35 36 37 38 39
CF CF
cF cF cB cF cB cF c .F cF cF cB cF cB cB cF cF cB cB cB cB cB cF cF cF
M31851 003
1.80 1.60 5.80 1.40 3.80 2.00 3.40 3.90 4.10 10.20 3.70 1.90 1.60 2.10 8.20 2.30 2.90 1.90 2.20 7.80 5.70 2.20 1.60 4.00 2.00
0.05 0.03 0.05 0.10 0.10 0.10 0.40 0.05 0.05 0.20 0.05 0.20 0.03 0.20 0.40 0.05 0.05 0.15 0.20 0.20 0.20 0.20 0.05 0.03 0.03
X X X X X X X X X X X X X X X X X X X X X X X X X
X
X
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X
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X
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X
X
X
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X
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' 1i 41
42
C C
43 C
44 C
45 C
45 c
47 A1 c
48 c
49 c
50 c
51 c
52
"\ S3
c c
54 c
55 c
56 c
57 c
58 c
59 c
60 c
61 c
62 c
63 c
64 c
65 c
B F B B F .F F B .F B F F B F B F F B F B F B C-F F F
M31851 003
1.80 2.10 2.30 2.00 2.10 4.00 1.60 8.40 1.60 4.30 6.00 2.30 2.00 1.40 8.00 18.20 1.80 6.00 1.50 16.20 10.00 7.70 1.00 1.60 1.00
0.20 0.05 0.20 0.20 0.05 0.10 0.05 0.30 0.10 0.20 0.03 0.05 0.20 0.05 0.50 0.10 0.05 0.20 0.05 0.50 0.05 0.60
0.05,
0.05 0.05
X X X X X X X X X X X X X X X X X X X X X X X X X
X 0 X X X X X a X X X X X 0 X X
X
X X X X X X X 0 X X X a x
! 66 )
67 68 69 70 71 72 73 74 75 76 77 '^78 79 80 81 82 83 84 85 86 87 88 89 /90
CB
cB cF cB cB cF cB cF c .B cF cB cF cF cF cB cF cB cF cF cB cF cB cF c C-F cB
M31851 003
1.50 1.80 1.80 2.20 7.40 1.90 2.00 3.40 41.50 1.60 2.30 2.00 1.60 1.70 4.20 1.70 2.10 1.50 1.00 2.50 2.40 4.10 2.10 1.90 2.00
0.15 0.15 0.10 0.10 0.15 0.03 0.05 0.05 0.60 0.05 0.20 0.05 0.05 0.03 0.15 0.05 0.20 0.10 0.03 0.10 0.05 0.10
0.10.
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X X X X X X X X X X X X X X X X X X X X X X X X X
X X X
X X
X 0 X X X X X X
X X X X 0 X X X X X X X X X
1 91 92 93 94 95 96 97 98 99 100 101 102
J; 103 104 105
CF c M*F GF C C-F CB CF CF CF CB CF CB CB cF cF cF
1.60 0.05 1.50 0.05 1.40 0.03 1.00 0.03 2.80 0.10 1.60 0.05 3.60 0.05 1.80 0.10 1.80 0.15 1.50 0.03 2.00 0.20 4.00 0.20 1.80 0.05 1.00 0.05 2.00 0.05
X X X X X X X X X X X X X X X
X 0 X X X X X X X X X X 0 X X X X
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SECTION 7
MAS.
Dust Counting Method
Cell Field Count
Average Field Count Average Blank Field Count
0.20 = AFC
j = ABFC
Average Net Field Count
= ANFC
Field Area (sq. mm)
| 0.251 - FA
Volume of Sample (ml)
jAdditional Dilution Factor
100.00 =SV 1 = DF
Cell Depth (mm)
| zm=cd
Cell Factor
4000| - CF
1000/( field area) x {ceil depth)
Air Volume Sampled (cu.ft.)
1.76 = AV
Project Name JM AC Pipe Project Number
Sample Number
Sample Location Blank
Dust Concentration
#VALUE!
particles per cubic foot
Dust Concentration = ANFC x CF x SV x DF / AV
`MAS.
Dust Counting Method
Cell Field Count 11 2 0.5 1.5 1.5]
Average Field Count
1.30 = AFC
Average Blank Field Count | -
Average Net Field Count 1
"020] = ABFC Tio|=ANFC
Field Area (sq. mm)
1 "025| = FA
Volume of Sample (ml) | 100.00] = SV
^Additional Dilution Factor |
T] = DF
Cell Depth (mm)
| T] = CD
Cell Factor
| 4000| = CF
1000/( field area) x (cell depth)
Air Volume Sampled (cu.ft.)
J "T75| = AV
Project Name JM AC Pipe Project Number
Sample Number Background Sample Location IWA - Area Background
Dust Concentration
| 251,429 1 particles per cubic foot
Dust Concentration = ANFC x CF x SV x DF / AV
;MAS.
Dust Counting Method
Cell Field Count | 445 48.5
57.5
52 SIS]
Average Field Count
51.00 = AFC
Average Blank Field Count | 0.20| = ABFC
Average Net Field Count | 5080]= ANFC
Field Area (sq. mm)
| 0.251 = FA
Volume of Sample (ml)
100.00| = SV
Additional Dilution Factor 1
T| = DF
Cell Depth (mm)
| T] = CD
Cell Factor
| 4000| = CF
1000/( field area) x (cell depth)
Air Volume Sampled (cu.ft.)
| 0.50| = AV
Project Name JM AC Pipe Project Number
Sample Number
Sample Location IWA-Personnel
Dust Concentration
1 40,640,000 | particles per cubic foot
Dust Concentration = ANFC x CF x SV x DF / AV
**MAS
Dust Counting Method
Cell Field Count
EE na
na
Average Field Count
]na na
#DIV/0! = AFC
Project Name JM AC Pipe Project Number
Average Blank Field Count | 0,20| = ABFC
Average Net Field Count | #DIV/0! | = ANFC
Field Area (sq. mm)
1 0.25| = FA
Sample Number P-1-MI-RH Sample Location IWA - Personnel
Volume of Sample (ml) | 100.00| = SV
^Additional Dilution Factor |
1| =DF
Cell Depth (mm)
| l| =CD
Cell Factor
| 40001 = CF
1000/( field area) x (cell depth)
Air Volume Sampled (cu.ft)
|na | = AV Pump Failed
Dust Concentration
\ #DIV/0! | particles per cubic foot
Dust Concentration = ANFC x CF x SV x DF / AV
SECTION 8
THT Lines with Ease
>N DE DEUX POINTS:S LIGNES DROITES
'AS CON FACIUDAD
:k/ RIGGER
dental Starts
EC VERROUILIAGE DESiCURITE ' DEMARRAGEINTEMPESTIF
TN CIERRE DE SEGURIDAD: UES ACC1DENTALES
Lower
nt Pending) ^
i When ^ in Cut-Offs
tNFERIEUR DE TYPE ANTIBLOCAGE - REDUITLES ACCROCHAGES NAGE DES MATERIAUX MINCES
NTIENGANCHES (PATENTE >S ENGANCHES CUANDO E TROCEADO ESTRECHOS
Depth T"
ES PTH
:UR VISIBLE A S'ASSURER RAPIDEMENT COUPE ID DE VISTA POSTERIOR: 7 LA PROFUNDIDAD
R RDS
Dust Port
Evacuation dubran de sc/e ORIFICIO PARA POLVO
On-Tool Wrench
RANGEMENT DE LA CLE SUB LA MACHINE Area para almacenar llaves de TUERCA EM LA HERRAM1ENTA
Rk-
CONTENTSi 5400 CIRCULAR SAW 20 TOOTH STEEL BLADE BLADE WRENCH
CONTEND: SCIE CIRCULAIRE 5m *LAME EN ACIERi 20 DENTS vCLEDELAME
i rCONTENIDO: SIERRA CIRCULAR SW I iHOJA'DE SIERRA DE 20 D1ENTES = iuVE DE TUERCA PARA HOJA
CARACTERISTIQUES DO MODELS 5400 TENSION 120 V, 50-60 Hz INTENSITY 12 A ' VITESSE 4 600 TR/MIN
ESPECIFICACIONES DEL MODELO 5400 V120VCA, S0-60 Hz A12A RPM4 600
2a3HPmm 12 Amp Motor
i/4" S/(/LSAW
Two Point Line of Sight
Cut Straight Lines with Ease
Safety Lock/Guarded Trigger
Minimizes Accidental Starts
Anti-Snag Lower Guard
(Patent Pending} Reduces Snags When Making Narrow Cut-Offs
Rear View Depth Adjustment
Quickly Assures Desired Cut Depth
o 11 li39725ll02008li 11 6
99
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