Document qmqVJDq0NYMnw1jeQBXnMv3dk
FILE NAME: DuPont Remington (DRM) DATE: 2020 Mar 2
DOC#: DRM025
DOCUMENT DESCRIPTION: Investigation of Asbestos Fiber Release During Discharge of Remington Shotgun Shells
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Report of Results: MVA13129
Investigation of Asbestos Fiber Release During Discharge of Remington Shotgun Shells
Prepared for:
Cooney & Conway 120 North LaSalle Street
30th Floor Chicago, IL 60602
Respectfully Submitted by
EXECUTED BY ELECTRONIC SIGNATURE
Steven P. Compton, Ph.D. Executive Director
02 March 2020
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Report of Results: MVA13129
Investigation of Asbestos Fiber Release During Discharge of Remington Shotgun Shells
Introduction
This report presents the results of a study of asbestos fiber release during discharge of vintage asbestos-containing Remington shotgun shotshells (shells). Seven (7) boxes of shells, with a total of one hundred five (105) shells, were delivered to MVA Scientific Consultants on 17 October 2019 via UPS and assigned the MVA laboratory identification numbers AE1386 through AE1392 (Figures 1 through 8). A currentlyavailable box of Remington shells was purchased on 28 October 2019 for comparison to the vintage shells and for use during setup of the experiment. This sample was assigned MVA laboratory identification number AE1446. Sample numbers and descriptions of the shell types investigated are provided in Table 1. The lot number printed on box AE1389 is difficult to read; however a photograph is provided in Figure 3. The dram equivalent amount has been torn off of box AE1392; however, the shell is a Magnum style, so therefore is it assumed to carry no more than the 4% dram listed for AE1389, a 3" long Magnum shell.
It was requested that components of the shells be analyzed for the presence of asbestos and that a study be performed to gain information about the concentration of asbestos in the air, if any, during the discharge of asbestos-containing shotgun shells. The experiment was performed on 29 October 2019. Peter Diaczuk, Ph.D., a certified firearms instructor and forensic science consultant with Pedico Research Institute, Waymart, PA oversaw handling and firing of the shotgun. Mr. Chris DePasquale, CIH, of Compass Environmental, Kennesaw, GA, collected air samples during the study with the assistance of Steven Compton, Ph.D., of MVA Scientific Consultants. Abatement contractors from Branch Environmental Inc., Watkinsville, GA assembled the chamber utilized during the experiments. Sample numbers for the air samples collected during the activities are shown in Table 2. Laboratory analyses for the study (including examination of shell components and of air samples) were performed in the MVA laboratory during the period of 17 October 2019 through 27 February 2020.
Sample Description (Shotgun Shell Basewads)
A standard shotgun shell consists of a metal base with a primer, propellant (gun powder), shot (projectile/s), a wad to separate the powder from the shot, and a plastic casing attached to the base and crimped at the opposite end to hold it all together [1]. The metal base or "head" may also contain a filler material referred to as the basewad in the 1966 patent assigned to the Remington Arms Company [2]. This report will refer to the wad separating the powder/propellant from the shot as the "powder wad" in order to avoid confusion with the basewad, shot wad (a plastic cup sometimes used to contain the shot), or overshot wad (sometimes placed over the shot before crimping the case) [3].
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Methods
One shell from each box was selected at random for analysis. Each shell tested was carefully dissected using a stainless steel razor blade. Wad components (from basewads and powder wads) were examined visually and under an Olympus SZ40 stereomicroscope at magnifications from 7X to 40X. For each component tested, a portion of the material was transferred via forceps onto a microscope slide and mounted in Cargille refractive index liquids for analysis by polarized light microscopy (PLM) using an Olympus BHSP polarized light microscope with a magnification range from 100X to 1,000X. The PLM analysis followed the analytical procedures recommended by the U.S. Environmental Protection Agency [4]. The PLM results for asbestos are given in terms of percent by volume.
During the experiments, airborne particles were collected with standard asbestos testing air filter cassettes. The air samples and two field blanks were analyzed using a combination of phase contrast microscopy (PCM) and transmission electron microscopy (TEM) asbestos testing methods, including one or more of the following: EPA AHERA method [5], ISO 10312-2019 method [6], NIOSH 7400 method [7], and NIOSH 7402 method [8]. TEM analyses were performed using either a Philips EM420 100 kV transmission electron microscope (TEM) capable of selected area electron diffraction
(E S) (SAED) and equipped with a Thermo Scientific Noran System 7 energy dispersive
spectrometry d x-ray analysis system or a Philips CM120 100 kV TEM capable of
SAED and equipped with an Oxford INCA EDS system. TEM count sheets are provided in the Appendix.
Study Site
All studies were conducted in a specially built negative air enclosure (test chamber) in an open air basement located at a farm house in rural Farmington, GA. The test chamber work area was approximately 8 ft high by 14 ft wide by 15 ft long. The study area had a High Efficiency Particulate Absolute (HEPA) air filtration device which was used to maintain air flow within the chamber and to filter the air as it was removed from the chamber before, during, and after the experiments. The HEPA unit ran at a low flow rate (approximately 314 cubic feet per minute) during each of the experiments and a high flow rate (approximately 511 cubic feet per minute) between the experiments. While inside the study area between tests, Mr. DePasquale and Dr. Compton each wore a respirator and complete head and body protective suit. Shells were fired using a Remington 1100, 12 gauge, semi-automatic shotgun mounted onto a Lead Sled DFT 2 from Caldwell Shooting Supplies and equipped with a manual trigger pull (string) to allow for remote firing of the shotgun from outside the chamber. The shotgun was positioned to fire into a custom built target manufactured from ballistic rubber and steel to ensure that the shots were safely collected.
Five stationary air sampling pumps were utilized to collect air samples before and during the experiments. Four of the pumps were used to collect air samples at different locations within the study chamber, as shown in Figure 9. Air samples collected using Pump #01 were positioned within the breathing zone of a theoretical shooter (no shooter was present in the study chamber during firearm discharge), approximately 24" behind the shell ejector port. Air samples collected using Pump #02 were positioned 12" from the
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muzzle exhaust (end of the barrel) and 36" downrange from the shell ejector port. Air samples collected using Pump #03 were positioned approximately 12" from the shell ejector port. Air samples collected using Pump #04 were set-up to replicate the position of a bystander standing three feet from the shooter. Air samples collected using Pump #05 were positioned outside of the containment within a few feet of the study chamber entry. After the experiments were conducted, the flow rate of Pump #03 had fallen outside of the acceptance range, so the results for those air samples are reported as a range based on the minimum and maximum flow rates recorded instead of an average flow rate.
The study was videotaped. During certain portions of the study, the lighting approximated Tyndall lighting and was used to improve the visibility of suspended particles in the air in the containment chamber. The light was placed outside the test chamber.
Study Design
Prior to the experiments with any asbestos-containing shells, three preliminary air samples were collected within the test chamber (in the vicinity of a shooter's breathing zone). The first preliminary air sample was collected the day before the experiments were conducted by firing five modern shells (AE1446) over a period of fifteen minutes. The air sample was collected at a flow rate of 10.0 liters per minute (LPM). This air sample was visually determined to be overloaded with gunshot residue. On the morning of the experiment, one air sample was collected for a period of 15 minutes (at 10.0 liters per minute) without any shots fired. The flow rate of the pump was reduced to a flow rate of 5.07 LPM and a second air sample was collected over a fifteen minute period while firing two modern shells (AE1446). Visual loading of the filter appeared acceptable, so these parameters served as the parameters to be used for the experiments performed on three types of Remington shells.
The first experiment performed involved firing two shells from the Remington ShurShot style shell (AE1386). One shell was discharged at the beginning of the air sampling period and a second approximately halfway into the experiment. After the pumps were turned off, the flow rate for the HEPA unit was increased to purge the air for eight minutes and the air cassettes from Test A were recovered. After returning the HEPA unit back to a lower flow rate, an air sample was collected using Pump #01 to investigate the concentration of asbestos present in the air between Test A and Test B.
After this "between-test" air sample was collected, new air cassettes were prepared for Test B and the shotgun was loaded with two shells from the Remington Magnum Express style shell (AE1392). One shell was discharged at the beginning of the sampling period and the second discharged approximately 11 minutes into the experiment after manually loading the next shell into the chamber. After the pumps were turned off, the flow rate for the HEPA unit was increased to purge the air for six minutes and the air cassettes from Test B were recovered. After returning the HEPA unit back to a lower flow rate, an air sample was collected using Pump #01 to investigate the concentration of asbestos present in the air between Test B and Test C.
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After this "between-test" air sample was collected, new air cassettes were prepared for Test C and the shotgun was loaded with two shells from the Remington Express style (AE1390). One shell was discharged at the beginning of the sampling period and the second discharged approximately halfway into the experiment. After the pumps were turned off, the flow rate for the HEPA unit was increased to purge the air for 10 minutes and the air cassettes from Test C were recovered. After returning the HEPA unit back to a lower flow rate, an air sample was collected using Pump #01 to investigate the concentration of asbestos present in the air between Test C and Test D.
After this "between-test" air sample was collected, new air cassettes were prepared for Test D and the shotgun was loaded with eight shells from the Remington Express style (AE1390). One shell was discharged at the beginning of the sampling period and at two minute intervals thereafter over a 16 minute sampling period.
Results and Discussion
Results of basewad analyses are summarized in Table 1. All seven vintage shell types analyzed contained a basewad constructed of a filler material (some combination of chrysotile asbestos and cellulose/wood fiber) and a waxy binder. The concentration of asbestos ranged from 10% to 15% on average. Asbestos was not detected in any of the powder wads. Filler materials for powder wads were composed primarily of cellulose. Photographs documenting the dissection of each shell and micrographs collected during examination of the basewads are provided in Figures 10 through 30.
Additional bulk analysis was performed on the basewad of a shell from set AE1390 after it was fired in the experiment. The fired shell shows some fracturing and spalling of the basewad, which demonstrates the effect of firing on the basewad. Gunshot residue was deposited in flakes, spheres and a partial coating, but unencapsulated chrysotile bundles were still visible. Photographs documenting the fracturing and spalling of the basewad are provided in Figures 31 and 32. The mass of recovered basewad material from an unfired AE1390 shell was measured at approximately 3.58 grams. The mass of recovered basewad material from a fired AE1390 shell was measured at approximately 3.52 grams, a difference of 0.06 grams; however, additional testing would be required to determine whether this mass difference is greater than any potential variability in mass from unfired basewads.
Still images taken from the video, provided in Figures 33 and 34, demonstrate the propagation of dust resulting from the discharge of the firearm and the ejection of the shell.
Results of NIOSH air sample analyses are summarized in Table 3. NIOSH 7400 concentrations from the breathing zone of a shooter (Pump #01) range from 0.11 to 0.23 fibers per cubic centimeter of air sampled (f/cc). These values represent concentrations from PCM analyses only and do not independently discriminate asbestos fibers from other fibers present in the air. Typically, a complementary analysis via TEM using NIOSH 7402 can be applied to establish an estimated asbestos f/cc concentration; however, in this study the NIOSH 7402 results were highly variable, with some samples indicating 0% asbestos and some indicating 100% asbestos. If the results of all air samples are combined, an average of 35% of the fibers identified by
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TEM were consistent with asbestos, thus resulting in a breathing zone range of 0.04 to 0.08 asbestos f/cc. The variability in the 7402 results can be attributed to the presence of aluminum silicate fibers in the background air and non-fibrous gunshot residue (GSR). In addition, several asbestos fibers observed via TEM were not countable under NIOSH 7402 because they were below the minimum width cutoff of 0.25 micrometers.
Aluminum silicate fibers were detected in air samples both inside and outside the test chamber (i.e. Pump #05). A micrograph and spectrum of a representative aluminum silicate fiber bundle are provided in Figure 35. The detection in air samples from outside of the containment area indicates that these fibers were present in the ambient air and were not the result of experimental testing. For NIOSH 7402 analyses, these fibers were counted as "non-asbestos" fibers since they are inconsistent with the elemental composition of chrysotile fibers under investigation in this test.
Air samples from within the testing chamber for all four experiments also contained a background of very fine non-fibrous gunshot residue particulate. A micrograph and EDS spectrum of non-fibrous GSR near a chrysotile fiber bundle are provided in Figure 36. Samples from Test D had a higher level of background GSR, due to the increased number of shots, and it is possible that some fibers were obscured by heavily-loaded non-fibrous GSR and therefore not detected.
The NIOSH 7402 analysis is designed to serve as a correction factor to PCM fiber counts obtained using NIOSH 7400. The use of the method assumes that fibers thinner than 0.25 micrometers in width cannot be detected by PCM and therefore are not counted in the 7402 TEM method, even if they are detected. Therefore, in samples such as these where such fibers and fiber bundles are prevalent, the 7402 correction factor may not be the most accurate representation.
Because of these three issues, air samples from each experiment were also analyzed using either the EPA AHERA method or the ISO 10312 method, since both methods allow for a count of true asbestos fibers without a minimum width and without counting aluminum silicate fibers from the background air.
A summary of the AHERA/ISO 10312 TEM results is provided in Table 4. Chrysotile fibers and bundles were detected by TEM in chamber air samples in each of the four experiments. Micrographs and spectra of chrysotile fibers and bundles detected in the air samples are provided in Figures 37 through 40. Airborne asbestos structure concentrations for the shooter were 1.4 str/cc and 1.0 str/cc in the first and second tests, respectively. Prior to Test C, a residual concentration of 0.6 str/cc was detected, and an increased concentration of 2.5 str/cc was detected during Test C. Prior to Test D, a residual concentration of 0.37 str/cc was detected and an increased concentration of 1.98 str/cc was detected during Test D.
Because the "between-test" air samples are averages of an ever diminishing airborne concentration (due to the active purging of air from the negative air machine), it can be assumed that the actual concentration present in the air at the start of the subsequent test must be less than the average concentration reported for the "between-test" sample. It is therefore a conservative statement to say that the baseline-corrected breathing zone concentrations are 1.4, 1.0, 1.9, and 1.6 str/cc, respectively for each of
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the four tests.
For a bystander, approximately three feet from the shooter, airborne asbestos concentrations were detected at levels of 0.3, 1.4, 1.3, and 0.25 str/cc. A similar conservative baseline-corrected approach as described above would suggest concentrations of 0.3, 1.4, 0.7, and <0.25 str/cc respectively.
Conclusions
Chrysotile fibers present in the basewad of vintage Remington shotgun shells make up approximately 10% to 15% (by volume) of the basewad material. Asbestos fibers from the basewad are aerosolized when the shell is discharged. Airborne asbestos fibers were detected in each of the four experiments conducted. Asbestos fiber structures present in the breathing zone of a shooter ranged from 1.0 to 2.5 str/cc (1.9 str/cc after baseline correction). For a bystander three feet from the shooter, the airborne asbestos concentration ranged from 0.25 to 1.4 str/cc. The range of fibers reported for the shooter via NIOSH 7400/7402 (fibers greater than 5 micrometers in length) is variable; however, it is estimated to be approximately 0.04 f/cc to 0.08 f/cc.
References
1. Wheeler, B. P.; Wilson, L. J. Practical Forensic Microscopy: A Laboratory Manual; Wiley-Blackwell: Chichester, 2008.
2. Daubenspeck, Benjamin K., and Edward A. Rickey. Cartridge Wad and Process for the Manufacture Thereof. US Patent 3270671, filed April 29, 1965, and issued September 6, 1966 to Remington Arms Company, Inc., Bridgeport, Conn.
3. Siler, W. What's Inside A Shotgun Shell And Why, Gizmodo https://gizmodo.com/whats-inside-a-shotgun-shell-and-why-1694115293 (accessed Apr 26, 2019).
4. U.S. Environmental Protection Agency, "Test Method EPA/600/R-93/116 - Method for the Determination of Asbestos in Bulk Building Materials." 1993.
5. U.S. Environmental Protection Agency, "Appendix A to Subpart E - Interim Transmission Electron Microscopy Analytical Methods" (AHERA), 40 CFR Part 763. Asbestos-Containing Materials in Schools, Final Rule and Notice. Fed. Reg. 52(210), 41857-41894, 1987.
6. ISO 10312:2019. Ambient Air - Determination of asbestos fibres - Direct-transfer transmission electron microscopy method. Geneva, Switzerland.
7. National Institute of Occupational Safety and Health, NIOSH 7400, "Asbestos and Other Fibers by Phase Contrast Microscopy (PCM)" - Method 7400 - NIOSH Manual of Analytical Methods, 5th Ed., U.S. Department of HHS, NIOSH Publ. 14 June 2019.
8. National Institute of Occupational Safety and Health, NIOSH 7402, "Asbestos Fibers by Transmission Electron Microscopy (TEM)" - Method 7402 - NIOSH Manual of Analytical Methods, 4th Ed., U.S. Department of HHS, NIOSH Publ. 94 126, 1994.
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Table 1. Remington 12 Gauge Shell Sample Information and Basewad PLM Analysis Results
MVA Sample ID
AE1386 AE1387 AE1388 AE1389 AE1390 AE1391 AE1392 AE1446
Description
Remington ShurShot, Power Piston, 3% Dram, 2%", LOT LCL08H516
Remington Shur Shot, New Plastic, Power Piston, "Kleanbore" Priming
3 Dram, 2%", LOT BF26C5 Remington Shur Shot, Power Piston,
"Kleanbore" Priming 3 Dram, 2%", LOT AG08A7DP Remington Magnum Express, Power
Piston, "Kleanbore" Priming 4% Dram, 3", LOT AT11P24(Smudged)
Remington Express, Power Piston, "Kleanbore" Priming
3% Dram, 2%", LOT BF22K6R Remington Express, Power Piston,
"Kleanbore" Priming 3% Dram, 2%", LOT AM21E4 Remington Magnum Express, Power Piston, "Kleanbore" Priming ? Dram, 2%", LOT AF18H2R
Remington Express XLR 2%", 1330 FPS, 1% oz.-6 Shot,
LOT CO3JC504
PLM Analysis Results
Chrysotile %
~10% (5-15%)
~10% (5-15%)
~10% (5-15%)
~15% (10-20%)
~15% (10-20%)
~15% (10-20%)
~10% (5-15%)
No Asbestos Detected
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Table 2. Remington Shell Discharge Experiments: Summary of Air Samples Collected
MVA Sample #
AE1447
AE1448
AE1449
AE1450 AE1451 AE1452 AE1453 AE1454 AE1455 AE1456 AE1457 AE1458 AE1459 AE1460 AE1461 AE1462 AE1463 AE1464 AE1465 AE1466 AE1467 AE1468 AE1469 AE1470 AE1471 AE1472 AE1473 AE1474
Description
Test Discharge of Five Modern Shells Background
Test Discharge of Two Modern Shells Test A, Pump 1 Test A, Pump 2 Test A, Pump 3 Test A, Pump 4 Test A, Pump 5
Between Tests A & B Test B, Pump 1 Test B, Pump 2 Test B, Pump 3 Test B, Pump 4 Test B, Pump 5
Between Tests B & C Test C, Pump 1 Test C, Pump 2 Test C, Pump 3 Test C, Pump 4 Test C, Pump 5
Between Tests C & D Test D, Pump 1 Test D, Pump 2 Test D, Pump 3 Test D, Pump 4 Test D, Pump 5 Field Blank #1 Field Blank #2
Volume (L)
150
150
76
31 30 34 - 42 43 76 31 31 30 34 - 42 43 76 31 31 30 34 - 42 43 76 31 33 32 36 - 44 46 81 N/A N/A
Duration (Minutes)
15
15
15
15 15 15 15 15 15 15 15 15 15 15 15 15 15 15 15 15 15 16 16 16 16 16 N/A N/A
Number and Type of Shots Discharged
5 (AE1446) Non-Asbestos 0
2 (AE1446) Non-Asbestos
2 (AE1386) ShurShot
0 (Outside Test Chamber) 0
2 (AE1392) Magnum Express
0 (Outside Test Chamber) 0
2 (AE1390) Express
0 (Outside Test Chamber) 0
8 (AE1390) Express
0 (Outside Test Chamber) N/A N/A
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Table 3. Results of NIOSH Air Sample Analyses
MVA ID
AE1450 AE1451 AE1452 AE1453 AE1456 AE1457 AE1458 AE1459 AE1462 AE1463 AE1464 AE1465 AE1468 AE1469 AE1470 AE1471 AE1473 AE1474
Description
Test A, Pump 1 Test A, Pump 2 Test A, Pump 3 Test A, Pump 4 Test B, Pump 1 Test B, Pump 2 Test B, Pump 3 Test B, Pump 4 Test C, Pump 1 Test C, Pump 2 Test C, Pump 3 Test C, Pump 4 Test D, Pump 1 Test D, Pump 2 Test D, Pump 3 Test D, Pump 4 Field Blank #1 Field Blank #2
Duration Minutes
15 15 15 15 15 15 15 15 15 15 15 15 16 16 16 16
--
--
Volume Liters 31 30 34 - 42 43 31 30 34 - 42 43 31 30 34 - 42 43 33 32 36 - 44 46 0 0
7400 F/cc 0.19 0.27 0.21 - 0.26 <LOD (0.06) 0.13 0.17 <LOD (0.06-0.08) 0.15 0.11 0.18 0.11 - 0.13 0.18 0.23f 0.31f 0.15 - 0.19f 0.19f
--
--
NA - Not Analyzed LOD - Limit of Detection NSD - No (Asbestos) Structures Detected 1Heavily Loaded, Possible Underestimate
7402 %Asb
0% 100%
NA NA 50% 33% NA NA 33% 33% NA NA 33% 22% NA NA NSD NSD
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Table 4. Results of TEM Air Sample Analyses (AHERA/ISO 10312)
MVA ID
AE1448
AE1449
AE1450 AE1451 AE1452 AE1453 AE1454 AE1455 AE1456 AE1457 AE1458 AE1459 AE1460 AE1461 AE1462 AE1463 AE1464 AE1465 AE1466 AE1467 AE1468 AE1469
AE1470
AE1471
AE1472
AE1473 AE1474
Description
Background Test Discharge of Two
Modern Shells Test A, Pump 1 Test A, Pump 2 Test A, Pump 3 Test A, Pump 4 Test A, Pump 5 Between Tests A & B Test B, Pump 1 Test B, Pump 2 Test B, Pump 3 Test B, Pump 4 Test B, Pump 5 Between Tests B & C Test C, Pump 1 Test C, Pump 2 Test C, Pump 3 Test C, Pump 4 Test C, Pump 5 Between Tests C & D Test D, Pump 1 Test D, Pump 2
Test D, Pump 3
Test D, Pump 4
Test D, Pump 5
Field Blank #1 Field Blank #2
Volume Liters 150
76
31 30 34 - 42 43 76 31 31 30 34 - 42 43 76 31 31 30 34 - 42 43 76 31 33 32
36 - 44
46
81
0 0
AHERA Str/cc NSD <0.006*
NSD <0.03*
1.4 1.3 0.4 - 0.5 0.3 NSD <0.05* NSD <0.1* 1.0 2.1 2.1 - 2.6 1.4 NSD <0.05* 0.6 2.5 1.5 1.1 - 1.4 1.3 NSD <0.05* NA NA NA
NA
NA
NA
NSD NSD
ISO Str/cc
NA
NA
NA NA NA NA NA NA NA NA NA NA NA NA NA NA NA NA NA 0.37 1.98t 0.72f 0.70 0.86f 0.25f NSD <0.05* NA NA
NSD - No (Asbestos) Structures Detected NA - Not Analyzed *Analytical Sensitivity 1Heavily Loaded, Possible Underestimate
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(a)
(b)
(c)
(d)
(e)
Figure 1. Remington 12 gauge shotgun shells in boxes, as received, samples (a) AE1386, (b) AE1387, (c) AE1388, (d) AE1389, (e) AE1390, (f) AE1391, (g) AE1392.
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(f)
(g)
Figure 2. Remington 12 gauge shotgun shells in boxes, as received, samples (a) AE1386, (b) AE1387, (c) AE1388, (d) AE1389, (e) AE1390, (f) AE1391, (g) AE1392.
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Figure 3. Remington 12 gauge shotgun shells in boxes, as received, samples (a) AE1386, (b) AE1387, (c) AE1388, (d) AE1389, (e) AE1390, (f) AE1391, (g) AE1392.
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T _
KLEANBORE" PRIMING
Rem ington.
'Power Piston"
EXPRESS
MING
"Power Piston"
PLASTIC
2 3/4 MAG NU M EXPRESS
ni
(f)
(g)
Figure 4. Remington 12 gauge shotgun shells in boxes, as received, samples (a) AE1386, (b) AE1387, (c) AE1388, (d) AE1389, (e) AE1390, (f) AE1391, (g) AE1392.
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Guaranteed to chamber, regardless of we.it (n't No
I elusive Mc.tnbore" priming helps pro
lect gun barrets, will not cause rust or
i -v.rv
U S. Pat No 3.<03,170
ti- - n -
'US.PiL No. 3,1011' t 'US, Pit. No. j u ju s '
Guaranteed
1 jammed guns or wasted scuffing or swelling, lbore" priming helps pro
Will not cause rust OT
(d)
(e)
(f)
(g)
Figure 5. Remington 12 gauge shotgun shells in boxes, as received, samples (a) AE1386, (b) AE1387, (c) AE1388, (d) AE1389, (e) AE1390, (f) AE1391, (g) AE1392.
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NOTICE
Remington guarantees the exercise of reasonable care in manufacture but assumes no further responsi bility.
REMINGTON ARMS COMPANY. INC
REMINGTON ARMS COMPANY. INC
Cutili Thri* shell! f chambers short than. h inches, juris
haisini
responsi&:i iti
WhillElon juarantctt Ihm
REMINGTON ARMS COMPANY, INC.
Remington guarantees the exercise j 1reasonable care in manufacture but assumes no further responsi-
remington ARMS COMPANY, INC.
(d)
(e)
(f)
(g)
Figure 6. Remington 12 gauge shotgun shells in boxes, as received, samples (a) AE1386, (b) AE1387, (c) AE1388, (d) AE1389, (e) AE1390, (f) AE1391, (g) AE1392.
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86 AE1387 AE1388
'*0 -j W3 *5',
TMTI Ww`O # *
AE1389 AE1390 AE1391 AE1392
v i?
$,j4:1c ;1,!jji
, 1
" E 'O -'ll
;*i
l**"
lrw "&
}|i|
ir.
JK
cj llj K x m'a 1 g jtj "..I
,
MVA13129 A E1386 - A E1392
Figure 7. Remington 12 gauge shotgun shells, as received.
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(a)
(b)
(c)
(d)
Figure 8. Representative photos of metal base and primer for each style of Remington 12 gauge shotgun shells, samples (a) AE1386, (b) AE1387, (c) AE1388, (d) AE1389, (e) AE1390, (f) AE1391, (g) AE1392. Photograph (d) of AE1389 taken under different lighting conditions. AE1389 metal base appears consistent with other shells when viewed side-by-side.
13129report030220.docx
W Ji V S 4 MCVOANSSCU|LETNATN|FT|CS
Full Service A nalyticalMicroscopy Laboratory
Page 19 of 43
Figure 9. Still image extracted from video and annotated to illustrate the location of the air samples connected to Pumps #01 through #04. Air samples collected via Pump #05
were located outside of the containment area and not pictured.
13129report030220.docx
WJi V S 4 MCVOANSSCU|ELTNATN|FT|CS
Full Service AnalyticalMicroscopy Laboratory
Page 20 of 43
Figure 10. Dissection of sample AE1386 from left to right showing: uncut, shot removed, and powder removed to reveal basewad.
Figure 11. Stereomicroscope image of basewad, sample AE1386.
13129report030220.docx
V S 4 MVA SCIENTIFIC CONSULTANTS
Full Service Analytical Microscopy Laboratory
Page 21 of 43
Figure 12. PLM image of chrysotile asbestos fibers and bundles (white) from basewad, sample AE1386.
13129report030220.docx
WJi V S 4 MCVOANSSCU|ELTNATN|FT|CS
Full Service AnalyticalMicroscopy Laboratory
Page 22 of 43
Figure 13. Dissection of sample AE1387 from left to right showing: uncut, shot removed to reveal wads, and showing wads, casing and basewad.
Figure 14. Stereomicroscope images of basewad (left) and chrysotile bundle in basewad (right) of sample AE1387.
13129report030220.docx
WJi V S 4 MCVOANSSCU|ELTNATN|FT|CS
Full Service AnalyticalMicroscopy Laboratory
Page 23 of 43
Figure 15. PLM image of chrysotile asbestos fibers and bundles (white) from basewad, sample AE1387.
13129report030220.docx
WJi V S 4 MCVOANSSCU|ELTNATN|FT|CS
Full Service AnalyticalMicroscopy Laboratory
Page 24 of 43
Figure 16. Dissection of sample AE1388 from left to right showing: uncut, shot removed to show shot holder, and basewad.
* V M VA13129 A E 1388
A A*
2 mm
MVA13129 AE1388
m m
Figure 17. Stereomicroscope images of basewad (left) and chrysotile bundle in basewad (right) of sample AE1388.
13129report030220.docx
WJi V S 4 MCVOANSSCU|ELTNATN|FT|CS
Full Service AnalyticalMicroscopy Laboratory
Page 25 of 43
Figure 18. PLM image of chrysotile asbestos fibers and bundles (white) from basewad, sample AE1388.
13129report030220.docx
WJi V S 4 MCVOANSSCU|ELTNATN|FT|CS
Full Service AnalyticalMicroscopy Laboratory
Page 26 of 43
Figure 19. Dissection of sample AE1389 from left to right showing: uncut, shot removed to show shot holder, and basewad.
Figure 20. Stereomicroscope image of basewad (left) and PLM image of chrysotile bundle in basewad (right) of sample AE1389.
13129report030220.docx
WJi V S 4 MCVOANSSCU|ELTNATN|FT|CS
Full Service AnalyticalMicroscopy Laboratory
Page 27 of 43
Figure 21. PLM image of chrysotile asbestos fibers and bundles from basewad, sample AE1389.
13129report030220.docx
WJi V S 4 MCVOANSSCU|ELTNATN|FT|CS
Full Service AnalyticalMicroscopy Laboratory
Page 28 of 43
Figure 22. Dissection of sample AE1390 from left to right showing: uncut, shot removed to show shot holder, and basewad.
Figure 23. Stereomicroscope images of basewad (left) and chrysotile bundle in basewad (right) of sample AE1390.
13129report030220.docx
WJi V S 4 MCVOANSSCU|ELTNATN|FT|CS
Full Service AnalyticalMicroscopy Laboratory
Page 29 of 43
Figure 24. PLM image of chrysotile asbestos fibers and bundles (white) from basewad, sample AE1390.
13129report030220.docx
WJ V S 4 MCVOANSSCU|ELTNATN|FT|CS
Full Service AnalyticalMicroscopy Laboratory
Page 30 of 43
Figure 25. Dissection of sample AE1391 from left to right showing: uncut, shot removed to show shot holder, and basewad.
Figure 26. Stereomicroscope image of basewad (left) and PLM image of chrysotile bundle in basewad (right) of sample AE1391.
13129report030220.docx
WJ V S 4 MCVOANSSCU|ELTNATN|FT|CS
Full Service AnalyticalMicroscopy Laboratory
Page 31 of 43
Figure 27. PLM image of chrysotile asbestos fibers and bundles (white) from basewad, sample AE1391.
13129report030220.docx
WJi V S 4 MCVOANSSCU|ELTNATN|FT|CS
Full Service AnalyticalMicroscopy Laboratory
Page 32 of 43
Figure 28. Dissection of sample AE1392 from left to right showing: uncut, shot removed to show shot holder, and basewad.
Figure 29. Stereomicroscope image of basewad in sample AE1392.
13129report030220.docx
WJ V S 4 MCVOANSSCU|LETNATN|FTICS
Full Service A nalyticalMicroscopy Laboratory
Page 33 of 43
Figure 30. PLM image of chrysotile asbestos fibers and bundles (white) from basewad, sample AE1392.
13129report030220.docx
WJi V S 4 MCVOANSSCU|ELTNATN|FT|CS
Full Service AnalyticalMicroscopy Laboratory
Page 34 of 43
fracture
s p a lle d --------------- .
*
* * -* * "
"
1 ;
/.
fracture
'V *
' '* '
M VA13129 AE1390
' .
\ \
\ spalled
,
\ \
fra c tu re
'
Figure 31. Stereomicroscope image of basewad from sample AE1390, after firing.
^
^ -** f 'bJf
iiW
MVA13129jA1390
0.5 mm
Figure 32. Stereomicroscope image of chrysotile bundle in sample AE1390, after firing.
13129report030220.docx
WJ V S 4 MCVOANSSCU|LETNATN|FT|CS
Full Service AnalyticalMicroscopy Laboratory
Page 35 of 43
Test C - Remington Exp
-Tyndall Lighting On
Test C - Remington Exprs:
Figure 33. Still images, taken from video recording of Test C, demonstrating the propagation of dust after firing.
13129report030220.docx
WJ V S 4 MCVOANSSCU|ELTNATN|FT|CS
Full Service AnalyticalMicroscopy Laboratory
Page 36 of 43
Figure 34. Still images, taken from video recording of Test D, demonstrating the propagation of dust from the end of the spent shell.
13129report030220.docx
WJ V S 4 MCVOANSSCU|LETNATN|FT|CS
Full Service Analytical Microscopy Laboratory
Page 37 of 43
Figure 35. TEM image (above) and EDS spectrum (below) of representative fibrous silicate detected in the environment from air sample AE1454 (Test A - Pump #05).
13129report030220.docx
|1y^
| 1
V ^
^ '4
i
MCVOANSSCU|ELTNATN|FT|CS
Full Service A nalyticalMicroscopy Laboratory
Page 38 of 43
Figure 36. TEM image (above) and EDS spectrum (below) of non-fibrous gunshot residue near a chrysotile fiber bundle from air sample AE1468 (Test D - Pump #01).
13129report030220.docx
Page 39 of 43
Figure 37. TEM image (above) and EDS spectrum (below) of a chrysotile fiber from air sample AE1450 (Test A - Pump #01).
13129report030220.docx
Page 40 of 43
Figure 38. TEM image (above) and EDS spectrum (below) of a chrysotile fiber bundle from air sample AE1456 (Test B - Pump #01).
13129report030220.docx
Page 41 of 43
Figure 39. TEM image (above) and EDS spectrum (below) of a chrysotile fiber bundle from air sample AE1462 (Test C - Pump #01).
13129report030220.docx
Page 42 of 43
Figure 40. TEM image (above) and EDS spectrum (below) of a clustered chrysotile fiber bundle from air sample AE1468 (Test D - Pump #01).
13129report030220.docx
Page 43 of 43
A P P E N D IX
13129report030220.docx
WJ V S 4 MCVOANSSCU|LETNATN|FT|CS
Full Service Analytical Microscopy Laboratory
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.:
13129 AE1448
Amount Collected(l): 150 Grid Opening (mm2): 0.01
Client Sample I.D.: Instrument I.D.: Magnification: Acc. Vo tage:
Background EM420 20,800 100kV
Filter Area (mm2): Filter Type: Openings Analyzed:
385 MCE 40
Structure Structure
Lengt h (Mm)
Grid Opening Number
Type" 0.5 - 4.9
> 5.0
A10
A3-3
NSD
A3-6
NSD
A4-1
NSD
A4-3
NSD
A4-6
NSD
A5-4 NSD
A5-6
NSD
B6-4
NSD
B6-1
NSD
B5-3
NSD
B5-4
NSD
B4-6
NSD
B4-3
NSD
B3-3
NSD
B3-6
NSD
C3-3
NSD
C3-6
NSD
C4-6
NSD
C5-1
NSD
C5-4
NSD
A9
G2-6
NSD
G2-3
NSD
G3-1
NSD
G3-6
NSD
G4-4 B = Bundle C = Cluster F = Fiber M = Matrix
NSD NFDor NSD=NoFibersDetectedor NoStructuresDetected
N = No Diffraction Obtained
pC = Chrysotile, A = Amphibole
5 C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite,
TR = Tremolite, N = Non Asbestos
Analyst: Date:
Comments: Page:
MRU 11/19/19 11/20/19 013G19 1 of 2
SAEDP EDS?
Comments
Al-Si Str 01
Al-Si Str 02
Al-Si Str 03
13129report030220.docx
MVA Project #: Lab Sample I.D.:
Client Sample I.D.: Instrument I.D.: Magnification: Acc. Vo tage:
Grid Opening
A9
G4-1
G5-1
G5-3
F5-6
F5-3
F4-3
F4-4
F4-1
F3-6
F3-4
E3-4
E3-6
E4-4
E4-6
E5-4
MVA Scientific Consultants AHERA Count Sheet
13129 AE1448
Amount Collected(l): 150 Grid Opening (mm2): 0.01
Background EM420 20,800 100kV
Filter Area (mm2): Filter Type: Openings Analyzed:
385 MCE 40
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
NSD
NSD
NSD
NSD
NSD
NSD
NSD
NSD
NSD
NSD
NSD
NSD
NSD
NSD
NSD
Analyst: Date:
Comments: Page:
MRU 11/19/19 11/20/19 013G19 2 of 2
SAEDP EDS?
Comments
B = Bundle C = Cluster F = Fiber M = Matrix
NFDor NSD=NoFibersDetectedor NoStructuresDetected N = No Diffraction Obtained
pC = Chrysotile, A = Amphibole
5 C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite,
TR = Tremolite, N = Non Asbestos
13129report030220.docx
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrument I.D.: Magnification: Acc. Vo tage:
Grid Opening
E2
C3-4
C4-4
E5-3 E4-6
E3-1
E2-6
F2-3 F5-4 G6-4
G3-1
D2
B3-4
B4-6
C5-4 C4-4 C3-1
C2-6
E2-3
E3-3
E4-4 E5-4
MVA Scientific Consultants AHERA Count Sheet
13129 AE1449 Background EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
76 0.01 385 MCE 20
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
NSD
Al-001
F
X
NSD
Al-002
F
X
NSD
NSD
NSD
NSD
NSD
NSD
NSD
Al-003
C
X
NSD
NSD
NSD
NSD
Al-004
C
X
NSD
NSD
NSD
Analyst: Date: Comments: Page:
MRU 12/31/2019 015G19 1 of 1
SAEDP EDS5
Comments
N
N
Al Structure
N
N
Al Structure
N
N
Al Structure
N
N
Al Structure
B = Bundle C = Cluster F = Fiber M = Matrix
NFDor NSD=NoFibersDetectedor NoStructuresDetected N = No Diffraction Obtained
pC = Chrysotile, A = Amphibole
5 C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite,
TR = Tremolite, N = Non Asbestos
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129 AE1450 Test A - Pump 1 10,500 100kV
Instrument I.D.: G.O. Area (mm2): Openings Analyzed: Volume Collected: Filter Area (mm2):
EM420 0.01 40 31 385
Analyst: Date:
Comments: Grid Box: Page
MRU 11/11/19 - 11/14/19
013G19 1 of 2
Structure Structure Length**
W idth**
Length***
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
Comments
(pm)
E10
L3-3
1M
13.6
3.40
N
13.0
L4-1 NSD
L5-1 NSD
K5-3 NSD
Chrys <.25pm diam
K4-4 NSD
K4-1 NSD
K3-3 NSD
K3-6 NSD
K3-4 NSD
H3-1 NSD
H4-1 NSD
H4-3 NSD
G4-3 NSD
G3-4 NSD
E9
C5-3 NSD
C5-1 NSD
C4-3 NSD
C3-6 NSD
C2-3 NSD
E2-3 NSD
E3-4 NSD
E3-6 NSD
E4-4
2F
18.0
0.30
N
17.1
E5-1 NSD
E5-3 NSD
F5-1 NSD
F3-3 NSD
E8
E4-6 NSD
E5-4 NSD
F5-6 NSD
F4-1 NSD
F3-4 NSD
G3-3
NSD
G4-4 NSD
G5-3 NSD
G6-1 NSD
H6-1 NSD
*NFD or NSD = No Fibers Detected or No S tructures Detected
**On Screen Measurement
*** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix
SAED: C = Chrysotile, A = Amphibole
EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, A C = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non A sbe stos
W idth*** (pm)
3.24
0.29
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129
Instrument I.D.:
AE1450
G.O. Area (mm2):
Test A - Pump 1 Openings Analyzed:
10,500
Volume Collected:
100kV
Filter Area (mm2):
EM420 0.01 40 31 385
Analyst: Date:
Comments: Grid Box: Page
MRU 11/11/19 - 11/14/19
013G19 2 of 2
Structure Structure Length**
W idth**
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
E8
H5-4 NSD
H4-4 NSD
H3-4 NSD
Comments
Chrys <5^im
Length*** (|jm)
W idth*** (|jm)
*NFD or NSD = No Fibers Detected or No S tructures Detected **On Screen Measurement *** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification) Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix SAED: C = Chrysotile, A = Amphibole EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, A C = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non A sbe stos
13129report030220.docx
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrument I.D.: Magnification: Acc. Vo tage:
Grid Opening
E10
H4-3
H3-3
G3-6
G6-3
F4-4
E9
E4-6
E5-3
C5-4
C4-4 B4-6
MVA Scientific Consultants AHERA Count Sheet
13129 AE1450 Test A - P1 EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
31 0.01 385 MCE 10
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
AlSi01
F
X
AlSi02
B
X
AlSi03
F
X
001
B
X
AlSi04
F
X
002
B
X
003
B
X
004
B
X
005
F
X
006
F
X
007
M
X
008
F
X
009
M
X
010
F
X
011
F
X
AlSi05
F
X
AlSi06
F
X
Analyst: Date: Comments: Page:
MRU 1/2/2020 013G19 1 of 1
SAEDP N N N C N C C C
C C C C C N
EDS5 N N N C N C C C C C C C C C
N N
Comments
B = Bundle C = Cluster F = Fiber M = Matrix
NFDor NSD=NoFibersDetectedor NoStructuresDetected N = No Diffraction Obtained
pC = Chrysotile, A = Amphibole
5 C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite,
TR = Tremolite, N = Non Asbestos
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129 AE1451 Test A - Pump 2 10,500 100kV
Instrument I.D.: G.O. Area (mm2): Openings Analyzed: Volume Collected: Filter Area (mm2):
EM420 0.01 40 30 385
Analyst: Date:
Comments: Grid Box: Page
MRU 2/3/2020
016G19 1 of 2
Structure Structure Length**
W idth**
Length***
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
Comments
(pm)
A6
K3-6 NSD
K3-3 NSD
K4-1 NSD
K4-4 NSD
K4-6 NSD
K4-3 NSD
K5-1 NSD
K5-4 NSD
H5-4 NSD
H4-6 NSD
H4-4 NSD
H4-1 NSD
H3-3 NSD
H3-6 NSD
A7
B3-1 NSD
B3-4 NSD
B2-6 NSD
C2-4 NSD
C2-6 NSD
C3-1 NSD
E2-1 NSD
E5-4 NSD
F4-6 NSD
F4-1 NSD
F3-3 NSD
G3-6 NSD
K4-3 NSD
B6
H5-1 NSD
H4-6 NSD
G4-1 NSD
G5-3 NSD
G6-4 NSD
F6-4
NSD
F4-6 NSD
E3-6 NSD
C2-6 NSD
C3-3 NSD
*NFD or NSD = No Fibers Detected or No S tructures Detected
**On Screen Measurement
*** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix
SAED: C = Chrysotile, A = Amphibole
EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, A C = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non A sbe stos
W idth*** (pm)
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129
Instrument I.D.:
AE1451 G.O. Area (mm2):
Test A - Pump 2 Openings Analyzed:
10,500
Volume Collected:
100kV
Filter Area (mm2):
EM420 0.01 40 30 385
Analyst: Date:
Comments: Grid Box: Page
MRU 2/3/2020
016G19 2 of 2
Structure Structure Length**
W idth**
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
B6
C4-3
1B
7.5
0.40
CC
C5-4 NSD
B5-4 NSD
Comments
Length*** (|jm)
7.1
W idth*** (|jm)
0.38
*NFD or NSD = No Fibers Detected or No S tructures Detected **On Screen Measurement *** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification) Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix SAED: C = Chrysotile, A = Amphibole EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, A C = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non A sbe stos
13129report030220.docx
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrument I.D.: Magnification: Acc. Vo tage:
Grid Opening
E1
H4-4
H5-1
G4-4 G3-4
F3-3
D1
B3-4
C4-4
C3-3
E3-1
E4-4
MVA Scientific Consultants AHERA Count Sheet
13129 AE1451 Test A - P2 EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
30 0.01 385 MCE 10
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
NSD
001
F
X
AlSi01
B
X
AlSi02
F
X
002
F
X
003
M
X
004
M
X
NSD
005
M
X
006
F
X
007
M
X
008
B
X
009
B
X
010
M
X
Analyst: Date: Comments: Page:
MRU 1/2/20-1/6/20 015G19 1 of 1
SAEDP EDS5
Comments
C
N
N
N
N
C
C
C
C
C
C
C
C
C
C
C
C
C
C
C
B = Bundle C = Cluster F = Fiber M = Matrix
NFDor NSD=NoFibersDetectedor NoStructuresDetected N = No Diffraction Obtained
pC = Chrysotile, A = Amphibole
5 C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite,
TR = Tremolite, N = Non Asbestos
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrument I.D.: Magnification:
Grid Opening
B5
K5-6
K4-1 K3-3 H3-3
H4-3
B4
K4-6
K3-4
H3-3
H4-4
G4-3
13129 AE1452 Test A - P3 EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
34-42 0.01 385 MCE 10
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
AlStr01
M
X
Al-SiStr02
B
X
NSD
NSD
001
M
X
002
M
X
NSD
NSD
003
F
X
NSD
NSD
004
M
X
Analyst: Date: Comments: Page:
MRU 1/6/2020 015G19 1 of 1
SAEDP N N
EDS5 N N
Comments
C
C
C
C
C
C
C
C
" B = Bundle
NFDor NSD=NoFibersDetectedor NoStructuresDetected
C = Cluster
N = No Diffraction Obtained
F = Fiber
M = Matrix
pC=Chrysotile, A=Amphibole
5C=Chrysotile, AM=Amosite, CR=Crocidolite, AC=Actinolite, AN=Anthophyllite
TR=Tremolite, N=NonAsbestos
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrument I.D.: Magnification: Acc. Vo tage:
Grid Opening
A5
E3-6
E4-3
E5-1
F5-4
F4-4
A4
G4-3
F4-3
E5-4
E4-4
E3-3
13129 AE1453 Test A - P4 EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
43 0.01 385 MCE 10
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
NSD
NSD
001
M
X
002
M
X
AlStr001
M
X
AlStr002
M
X
AlStr003
M
X
NSD
NSD
NSD
003
M
X
NSD
NSD
Analyst: Date: Comments: Page:
MRU 1/6/20-1/7/20 015G19 1 of 1
SAEDP EDS5
Comments
C
C
N
N
N
N
N
C
C
B = Bundle C = Cluster F = Fiber M = Matrix
NFDor NSD=NoFibersDetectedor NoStructuresDetected N = No Diffraction Obtained
pC = Chrysotile, A = Amphibole
5 C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite,
TR = Tremolite, N = Non Asbestos
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrument I.D.: Magnification: Acc. Vo tage:
Grid Opening
A1
K3-4
H6-1
H5-1
H4-3
G3-1
A2
K5-1
K4-1
H3-3
H4-4
G4-3 G3-3
13129 AE1454 Test A - P5 EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
76 0.01 385 MCE 10
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
Al-Si01
M
X
Al-Si02
B
X
NSD
Al-Si03
B
X
NSD
NSD
NSD
NSD
NSD
Al-Si04
B
X
Al-S-05
M
X
NSD
NSD
Analyst: Date: Comments: Page:
MRU 1/7/2020 015G19 1 of 1
SAEDP N
EDS5 N N
N
Comments
N N
B = Bundle C = Cluster F = Fiber M = Matrix
NFDor NSD=NoFibersDetectedor NoStructuresDetected N = No Diffraction Obtained
pC = Chrysotile, A = Amphibole
5 C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite,
TR = Tremolite, N = Non Asbestos
13129report030220.docx
MVA Project #: Lab Sample I.D.: Client Sample I.D.:
Instrument I.D.: Magnification: Acc. Vo tage:
Grid Opening
A6
C3-3
C4-4
E5-6
E4-4
E3-3
A7
K3-4
K4-4
K5-1
H4-4
H3-3
13129 AE1455 Between A&B EM420 20,800 100kV
Structure
Number
NSD NSD
NSD
NSD
NSD
NSD
NSD NSD
NSD
AlStr01
MVA Scientific Consultants AHERA Count Sheet
Amount Collected(l): 31
Grid Opening (mm2): 0.01
Filter Area (mm2):
385
Filter Type: Openings Analyzed:
MCE 10
Structure Type"
Lengt h (Mm)
0.5 - 4.9
> 5.0
B
X
Analyst: Date: Comments:
Page:
MRU 1/7/2020 015G19
1 of 1
SAEDP EDS?
Comments
N
N
B = Bundle C = Cluster F = Fiber M = Matrix
NFDor NSD=NoFibersDetectedor NoStructuresDetected N = No Diffraction Obtained
pC = Chrysotile, A = Amphibole
5 C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite,
TR = Tremolite, N = Non Asbestos
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129 AE1456 Test B - Pump 1 10,500 100kV
Instrument I.D.: G.O. Area (mm2): Openings Analyzed: Volume Collected: Filter Area (mm2):
EM420 0.01 40 31 385
Analyst: Date:
Comments: Grid Box: Page
MRU 11/12/2019
013G19 1 of 2
Structure Structure Length**
W idth**
Length***
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
Comments
(pm)
D10
K3-3 NSD
K4-3 NSD
K5-1 NSD
H5-3 NSD
H4-6 NSD
H3-3 NSD
H2-6
1F
19.0
2.00
N
18.1
G2-3
1.5 F
80.0
4.00
N
76.2
G3-4 NSD
G4-1 NSD
G4-6 NSD
G5-3 NSD
Chrys <5
H6-1
2B
50.5
0.50
CC
48.1
3C
14.0
0.50
CC
13.3
4B
25.0
0.30
CC
23.8
G6-6 NSD
D9
H6-1 NSD
H5-1 NSD
H4-6 NSD
H4-4 NSD
H3-3 NSD
G3-3 NSD
G4-4 NSD
G5-6 NSD
G6-3 NSD
F6-1 NSD
F5-1 NSD
F4-1 NSD
F3-1 NSD
D8
K4-4 NSD
Chrys <5
K3-3 NSD
H2-3 NSD
H3-6
NSD
H4-4 NSD
H5-4 NSD
Chrys <5
H6-4 NSD
G6-4 NSD
Chrys <5
*NFD or NSD = No Fibers Detected or No S tructures Detected
**On Screen Measurement
*** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix
SAED: C = Chrysotile, A = Amphibole
EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, A C = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non A sbe stos
W idth*** (pm)
1.90 3.81
0.48 0.48 0.29
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129
Instrument I.D.:
AE1456 G.O. Area (mm2):
Test B - Pump 1 Openings Analyzed:
10,500
Volume Collected:
100kV
Filter Area (mm2):
EM420 0.01 40 31 385
Analyst: Date:
Comments: Grid Box: Page
MRU 11/12/2019
013G19 ~ 2 of 2
Structure Structure Length**
W idth**
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
D8
G5-4 NSD
G4-1
5F
6.9
0.80
N
G3-6 NSD
F3-1 NSD
F5-6 NSD
Comments
Length*** (|jm)
W idth*** (|jm)
6.6
0.76
*NFD or NSD = No Fibers Detected or No S tructures Detected **On Screen Measurement *** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification) Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix SAED: C = Chrysotile, A = Amphibole EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, A C = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non A sbe stos
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrument I.D.: Magnification: Acc. Vo tage:
Grid Opening
D10
K3-3
H4-3 H3-3
H2-4
G4-6
D9
C6-6
C5-4
C4-6
E3-3
F5-1
13129 AE1456 Test B - P1 EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
31 0.01 385 MCE 10
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
001
C
X
002
C
X
003
M
X
NSD
004
C
X
005
C
X
NSD
006
M
X
007
C
X
NSD
NSD
NSD
008
C
X
Analyst: Date: Comments: Page:
MRU 1/7/2020 013G19 1 of 1
SAEDP C
EDS5 C C C
C
C
C
C
C C
Comments
C
B = Bundle C = Cluster F = Fiber M = Matrix
NFDor NSD=NoFibersDetectedor NoStructuresDetected N = No Diffraction Obtained
pC = Chrysotile, A = Amphibole
5 C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite,
TR = Tremolite, N = Non Asbestos
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129 AE1457 Test B - Pump 2 10,500 100kV
Instrument I.D.: G.O. Area (mm2): Openings Analyzed: Volume Collected: Filter Area (mm2):
EM420 0.01 40 30 385
Analyst: Date:
Comments: Grid Box: Page
MRU 2/3/2020
016G19 1 of 2
Structure Structure Length**
W idth**
Length***
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
Comments
(pm)
A1
B5-3 NSD
B5-1 NSD
B4-4 NSD
B3-6 NSD
C3-3 NSD
C4-1 NSD
C4-3 NSD
C5-6 NSD
C6-3 NSD
E6-1 NSD
E5-4 NSD
E4-3 NSD
F4-3 NSD
G5-3
11
10.5
1.20
NN
10.0
A2
A5-4 NSD
A4-6 NSD
B4-3 NSD
B5-4 NSD
B5-3 NSD
C6-1 NSD
C5-6 NSD
C5-4 NSD
C4-3 NSD
E4-3 NSD
E5-6
22
5.3
0.75
CC
5.0
E6-4 NSD
F5-3
33
8.5
1.10
NN
8.1
A3
H2-6 NSD
H3-6 NSD
H4-3 NSD
G6-1 NSD
G5-3 NSD
G4-3
NSD
G3-4 NSD
F3-1 NSD
F4-1 NSD
F5-4 NSD
*NFD or NSD = No Fibers Detected or No S tructures Detected
**On Screen Measurement
*** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix
SAED: C = Chrysotile, A = Amphibole
EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, A C = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non A sbe stos
W idth*** (pm)
1.14
0.71 1.05
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129
Instrument I.D.:
AE1457 G.O. Area (mm2):
Test B - Pump 2 Openings Analyzed:
10,500
Volume Collected:
100kV
Filter Area (mm2):
EM420 0.01 40 30 385
Analyst: Date:
Comments: Grid Box: Page
MRU 2/3/2020
016G19 2 of 2
Structure Structure Length**
W idth**
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
A3
E6-4 NSD
E4-4 NSD
C4-1 NSD
Comments
Length*** (|jm)
W idth*** (|jm)
*NFD or NSD = No Fibers Detected or No S tructures Detected **On Screen Measurement *** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification) Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix SAED: C = Chrysotile, A = Amphibole EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, A C = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non A sbe stos
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrum ent I.D.: Magnifienation: Acc. Vo tage:
Grid Opening
B6
K4-4
K5-3 H6-1 H5-4
G4-4
B7
B5-4
B4-4
C3-3
C4-4 E4-4
13129 AE1457 Test B - P2 EM420 20,800 100kV
Amount Collected(l |: Grid Opening (mm2): Filter Area (mm2): Filter Ty pe: Openin gs Analyzed :
30 0.01 385 MCE 10
Structure Number
Structure Type"
Lengt h (Mm) 0.5 - 4.9 > 5.0
001
M
X
002
B
X
003
B
X
NSD
004
M
X
005
B
X
006
F
X
007
C
X
AlSi01
M
X
008
M
X
009
M
X
010
M
X
011
F
X
012
M
X
013
M
X
014
M
X
015
M
X
016
B
X
Analyst: Date: Commenits: Page:
MRU 1/7-1/16/20 015G19 1 of 1
SAEDP C C C
EDS5 C C
Comments Close to gridbar
C
C
C
C
C
C
N
N
C
C
C
C
C
C
C
C
C
C
B = Bundle C = Cluster F = Fiber M = Matrix
NFDor NSD=NoFibersDetectedor NoStructuresDetected N = No Diffraction Obtained
pC = Chrysotile, A = Amphibole
5 C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite,
TR = Tremolite, N = Non Asbestos
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrument I.D.: Magnification:
13129 AE1458 Test B - P3 EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
34-42 0.01 385 MCE 10
Structure Structure
Lengt h (Mm)
Grid Opening Number
Type" 0.5 - 4.9
> 5.0
C6
G4-4
001
F
X
002
M
X
G3-3
003
M
X
004
M
X
005
M
X
006
F
X
F2-3
007
M
X
008
F
X
F3-3 SiAlStr01
F
X
009
M
X
010
C
X
011
F
X
E4-4
012
M
X
013
C
X
014
M
X
C7
H3-1
015
B
X
016
F
X
017
B
X
018
M
X
H4-4
019
B
X
020
B
X
G4-4
021
M
X
022
M
X
G3-3
NSD
F3-3 Al-SiStr02
F
X
" B = Bundle
NFDor NSD=NoFibersDetectedor NoStructuresDetected
C = Cluster
N = No Diffraction Obtained
F = Fiber
M = Matrix
pC=Chrysotile, A=Amphibole
5C=Chrysotile, AM=Amosite, CR=Crocidolite, AC=Actinolite, AN=Anthophyllite
TR=Tremolite, N=NonAsbestos
Analyst: Date: Comments: Page:
MRU 1/16/20 015G19 1 of 2
SAEDP C
C C N C
C
EDS C C C C C C C C N C C C C C C C C
Comments
C C C C C
N
N
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrument I.D.: Magnification: Acc. Vo tage:
Grid Opening
C7
F3-3
13129 AE1458 Test B - P3 EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
34-42 0.01 385 MCE 10
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
023
M
X
Analyst: Date: Comments: Page:
MRU 1/16/20 015G19 2 of 2
SAEDP
EDS5 C
Comments
" B = Bundle
NFDor NSD=NoFibersDetectedor NoStructuresDetected
C = Cluster
N = No Diffraction Obtained
F = Fiber
M = Matrix
pC=Chrysotile, A=Amphibole
5C=Chrysotile, AM=Amosite, CR=Crocidolite, AC=Actinolite, AN=Anthophyllite
TR=Tremolite, N=NonAsbestos
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrument I.D.: Magnification: Acc. Vo tage:
Grid Opening
D6
K4-4
K5-4
H5-4 H4-6
G4-4
D7
C5-4
C4-4
E3-3 E4-4
F3-3
13129 AE1459 Test B - P4 EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
43 0.01 385 MCE 10
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
001
M
X
002
B
X
003
M
X
004
M
X
005
M
X
006
M
X
007
M
X
008
B
X
009
M
X
010
B
X
AlSi01
F
X
AlSi02
F
X
011
M
X
012
M
X
013
F
X
AlSi03
M
X
014
M
X
015
C
X
016
M
X
Analyst: Date: Comments: Page:
MRU 1/16 - 1/17/20 015G19 1 of 1
SAEDP C C
C C N N
EDS5 C C C C C C C C C C N N C C C N C C C
Comments
B = Bundle C = Cluster F = Fiber M = Matrix
NFDor NSD=NoFibersDetectedor NoStructuresDetected N = No Diffraction Obtained
pC = Chrysotile, A = Amphibole
5 C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite,
TR = Tremolite, N = Non Asbestos
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrument I.D.: Magnification: Acc. Vo tage:
Grid Opening
E6
E4-4
E3-4 F3-3
F4-4
G4-1
E7
G4-4
G3-4 F3-3
F4-4
E4-4
13129 AE1460 Test B - P5 EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
76 0.01 385 MCE 10
Structure Number
Structure Type"
Lengt h (Mm) 0.5 - 4.9 > 5.0
Al-Si01
M
X
Al-Si02
M
X
NSD
NSD
NSD
NSD
Al-Si03
M
X
NSD
NSD
NSD
Analyst: Date: Comments: Page:
MRU 1/17/20 015G19 1 of 1
SAEDP
EDS'5 N N
Comments
N
" B = Bundle
NFDor NSD=NoFibersDetectedor NoStructuresDetected
C = Cluster
N = No Diffraction Obtained
F = Fiber
M = Matrix
pC=Chrysotile, A=Amphibole
5C=Chrysotile, AM=Amosite, CR=Crocidolite, AC=Actinolite, AN=Anthophyllite
TR=Tremolite, N=NonAsbestos
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrument I.D.: Magnification: Acc. Vo tage:
Grid Opening
A9
C4-4
E5-6
E4-4
E3-4
F3-3
B9
C5-4
C4-4
E3-6 E4-6 F5-1
13129 AE1461 Between B&C EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
31 0.01 385 MCE 10
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
NSD
NSD
001
F
X
NSD
NSD
002
M
X
003
M
X
004
M
X
NSD
Al-Si 01
B
X
005
M
X
Analyst: Date: Comments: Page:
MRU 1/17/20 015G19 1 of 1
SAEDP EDS'5 Comments
C
C
C
C
C
C
C
C
N C
" B = Bundle
NFDor NSD=NoFibersDetectedor NoStructuresDetected
C = Cluster
N = No Diffraction Obtained
F = Fiber
M = Matrix
pC=Chrysotile, A=Amphibole
5C=Chrysotile, AM=Amosite, CR=Crocidolite, AC=Actinolite, AN=Anthophyllite
TR=Tremolite, N=NonAsbestos
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129 AE1462 Test C - Pump 1 10,500 100kV
Instrument I.D.: G.O. Area (mm2): Openings Analyzed: Volume Collected: Filter Area (mm2):
EM420 0.01 40 31 385
Analyst: Date:
Comments: Grid Box: Page
MRU 11/12/19 - 11/13/19
013G19 1 of 2
Structure Structure Length**
Width**
Length***
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
Comments
(pm)
C10
H2-3 NSD
H3-1
0.5 F
10.0
0.30
N
Chrys <5gm
9.5
H3-6 NSD
H4-3 NSD
H5-4 NSD
H6-1 NSD
G6-1 NSD
Chrys <0.25gm W
G5-4
1.5 F
5.9
0.30
N
5.6
G4-3 NSD
G3-1 NSD
F3-3 NSD
F4-3 NSD
F5-3 NSD
F6-1 NSD
C9
C2-3 NSD
Chrys <5gm
C3-1 NSD
Chrys <0.25gm W
C4-3 NSD
C5-4
2F
75.0
0.30
N
71.4
C6-4 NSD
E6-4 NSD
Chrys <5gm
E4-4 NSD
E3-1 NSD
E2-6 NSD
F2-6
3C
7.5
0.50
CC
7.1
F4-4 NSD
F5-4 NSD
G3-1 NSD
C8
B3-6 NSD
B4-6 NSD
B5-4 NSD
C5-1 NSD
C4-4 NSD
C3-3
NSD
C2-6 NSD
E3-3 NSD
E4-4 NSD
E5-6 NSD
*NFD or NSD = No Fibers Detected or No Structures Detected
**On Screen Measurement
*** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix
SAED: C = Chrysotile, A = Amphibole
EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non A sbestos
W idth*** (pm)
0.29 0.29
0.29 0.48
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129
Instrument I.D.:
AE1462 G.O. Area (mm2):
Test C - Pump 1 Openings Analyzed:
10,500
Volume Collected:
100kV
Filter Area (mm2):
EM420 0.01 40 31 385
Analyst: Date:
Comments: Grid Box: Page
MRU 11/12/19 - 11/13/19
013G19 2 of 2
Structure Structure Length**
W idth**
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
C8
F5-4 NSD
F4-4 NSD
F3-3 NSD
Comments
Length*** (|jm)
W idth*** (|jm)
C8
B3-6 NSD
B4-6 NSD
B5-4 NSD
C5-1 NSD
C4-4 NSD
C3-3
NSD
C2-6 NSD
E3-3 NSD
E4-4 NSD
E5-6 NSD
*NFD or NSD = No Fibers Detected or No Structures Detected
**On Screen Measurement
*** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix
SAED: C = Chrysotile, A = Amphibole
EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non A sbestos
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrum ent I.D.: Magnifienation: Acc. Vo tage:
13129 AE1462 Test C - P1 EM420 20,800 100kV
Amount CoNected(l |: Grid Opening (mm2): Filter Area (mm2): Filter Ty pe: Openin gs Analyzed :
31 0.01 385 MCE 10
Structure Structure
Lengt h (pm)
Grid Opening Number
Type"
0.5 - 4.9
> 5.0
C10 G5-4
Al-Si01
F
X
G2-3
Al-Si02
F
X
Al-Si03
F
X
001
M
X
Al-Si04
F
X
F2-6
002
M
X
003
M
X
004
M
X
F3-6
005
M
X
006
M
X
007
M
X
008
M
X
E5-1
009
M
X
010
B
X
C9
C4-3
011
B
X
012
M
X
013
M
X
Al-Si05
F
X
014
M
X
015
F
X
C5-6
Al-Si06
F
X
C6-4
016
M
X
E5-6
017
F
X
E4-1
018
M
X
B = Bundle C = Cluster F = Fiber M = Matrix
019
M
X
NFDor NSD=NoFibersDetectedor NoStructuresDetected
N = No Diffraction Obtained
pC = Chrysotile, A = Amphibole
5 C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite,
TR = Tremolite, N = Non Asbestos
Analyst: Date: Commenits: Page:
MRU 1/20/20 013G19 1 of 2
SAEDP N N N N
C C C C
C
N
EDS5 N N N C N C C C C C C C C C C C C N C C N C C C C
Comments
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrument I.D.: Magnification: Acc. Vo tage:
Grid Opening
C9
E4-1
13129 AE1462 Test C - P1 EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
31 0.01 385 MCE 10
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
020
M
X
Analyst: Date: Comments: Page:
MRU 1/20/20 013G19 2 of 2
SAEDP
EDS5 C
Comments
" B = Bundle
NFDor NSD=NoFibersDetectedor NoStructuresDetected
C = Cluster
N = No Diffraction Obtained
F = Fiber
M = Matrix
pC=Chrysotile, A=Amphibole
5C=Chrysotile, AM=Amosite, CR=Crocidolite, AC=Actinolite, AN=Anthophyllite
TR=Tremolite, N=NonAsbestos
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129 AE1463 Test C - Pump 2 10,500 100kV
Instrument I.D.: G.O. Area (mm2): Openings Analyzed: Volume Collected: Filter Area (mm2):
EM420 0.01 40 30 385
Analyst: Date:
Comments: Grid Box: Page
MRU 2/3/2020 - 2/4/2020
016G19 1 of 2
Structure Structure Length**
W idth**
Length***
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
Comments
(|Jm)
B1
E3-4 NSD
F4-4 NSD
F3-4
1B
8.1
0.60
CC
7.7
F2-1 NSD
G2-6 NSD
G3-3 NSD
H4-6 NSD
H3-1 NSD
H2-3 NSD
H2-6 NSD
K2-3 NSD
K3-1 NSD
K4-3 NSD
K6-1 NSD
B2
C3-4
2F
12.0
0.30
NN
11.4
E2-6 NSD
E3-4 NSD
G2-3 NSD
G4-4 NSD
G4-6 NSD
H5-4 NSD
H4-6 NSD
H4-4 NSD
K3-6 NSD
K4-4 NSD
K4-1 NSD
K4-6 NSD
B3
C5-6 NSD
E5-4 NSD
E4-3 NSD
E4-6 NSD
G2-4 NSD
H2-1
3
B
21.5
0.30
NN
20.5
H3-4 NSD
H5-4 NSD
H6-1 NSD
K3-6 NSD
*NFD or NSD = No Fibers Detected or No Structures Detected
**On Screen Measurement
*** Calculated A ctual Measurement (On Screen Measurement X 10,000/Magnification)
Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix
SAED: C = Chrysotile, A = Amphibole
EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, A C = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non A sbe stos
W idth*** (|Jm)
0.57
0.29
0.29
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129 AE1463 Test C - Pump 2 10,500 100kV
Instrument I.D.: G.O. Area (mm2): Openings Analyzed: Volume Collected: Filter Area (mm2):
EM420 0.01 40 30 385
Analyst: Date:
Comments: Grid Box: Page
MRU 2/3/2020 - 2/4/2020
016G19 2 of 2
Structure Structure Length**
W idth**
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
B3
K3-4 NSD
K3-1 NSD
K2-6 NSD
Comments
Length*** (|jm)
W idth*** (|jm)
*NFD or NSD = No Fibers Detected or No S tructures Detected **On Screen Measurement *** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification) Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix SAED: C = Chrysotile, A = Amphibole EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, A C = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non A sbe stos
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrum ent I.D.: Magnifienation: Acc. Vo tage:
Grid Opening
A10
B3-4
C2-6
C3-3
C4-4 E3-1
B10
K4-4
H3-3
H4-6 H5-6
G4-4
13129 AE1463 Test C - P2 EM420 20,800 100kV
Amount CoNected(l |: Grid Opening (mm2): Filter Area (mm2): Filter Ty pe: Openin gs Analyzed :
30 0.01 385 MCE 10
Structure Structure
Lengt h (pm)
Number
Type" 0.5 - 4.9
> 5.0
Al-Si01
F
X
001
F
X
002
M
X
Al-Si02
F
X
003
M
X
NSD
004
M
X
005
F
X
006
M
X
NSD
007
M
X
008
M
X
NSD
009
F
X
010
F
X
011
M
X
012
M
X
Analyst: Date: Commenits: Page:
MRU 1/20/20 015G19 1 of 1
SAEDP N C C
C
EDS5 N C C N C
Comments
C
C
C
C
C C
C C C C
B = Bundle C = Cluster F = Fiber M = Matrix
NFDor NSD=NoFibersDetectedor NoStructuresDetected N = No Diffraction Obtained
pC = Chrysotile, A = Amphibole
5 C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite,
TR = Tremolite, N = Non Asbestos
13129report030220.docx
MVA Project #: Lab Sample I.D.: Client Sample I.D. Instrument I.D.: Magnification:
Grid Opening E10 H3-3
H4-3 G5-4
G4-1 F3-6
D10 E4-4
E5-4 F6-6 F5-6
G4-6
MVA Scientific Consultants AHERA Count Sheet
13129 AE1464 Test C - P3 EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
34-42 0.01 385 MCE 10
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
001
M
X
SiStr01
M
X
002
M
X
SiStr02
F
X
003
B
X
004
M
X
SiStr03
F
X
Al-SiStr04
X
X
005
B
X
Al-SiStr05
F
X
006
M
X
Al-SiStr06
F
X
007
M
X
Al-SiStr07
F
X
008
M
X
009
M
X
010
F
X
011
M
X
Al-SiStr08
F
X
Al-SiStr09
M
X
Al-SIStr-10
M
X
Al-SiStr11
F
X
012
M
X
Analyst: Date: Comments: Page:
MRU 1/21/20 015G19 1 of 1
SAEDP N C N C C N C
N
EDS'5 C N C N C C N N C N C N C N C C C C N N N N C
Comments
" B = Bundle
NFDor NSD=NoFibersDetectedor NoStructuresDetected
C = Cluster
N = No Diffraction Obtained
F = Fiber
M = Matrix
pC=Chrysotile, A=Amphibole
5C=Chrysotile, AM=Amosite, CR=Crocidolite, AC=Actinolite, AN=Anthophyllite
TR=Tremolite, N=NonAsbestos
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrum ent I.D.: Magnifienation: Acc. Vo tage:
13129 AE1465 Test C - P4 EM420 20,800 100kV
Amount Collected(l |: Grid Opening (mm2): Filter Area (mm2): Filter Ty pe: Openin gs Analyzed :
43 0.01 385 MCE 10
Structure Structure
Lengt h (pm)
Grid Opening Number
Type" 0.5 - 4.9
> 5.0
E10
H4-4
001
M
X
Al-Si01
F
X
H3-3
002
M
X
003
M
X
G3-3
004
M
X
005
M
X
G4-4
Al-Si02
F
X
006
F
X
Al-Si03
F
X
Al-Si04
F
X
F4-3
Al-Si05
F
X
Al-Si06
M
X
E9
E4-3
007
M
X
008
F
X
009
M
X
E5-3
Al-Si07
F
X
Al-Si08
F
X
F5-6
Al-Si09
F
X
010
M
X
Al-Si10
F
X
011
F
X
012
M
X
F4-3
013
M
X
014
B
X
B = Bundle C = Cluster F = Fiber M = Matrix
Si11
F
X
NFDor NSD=NoFibersDetectedor NoStructuresDetected
N = No Diffraction Obtained
pC = Chrysotile, A = Amphibole
5 C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite,
TR = Tremolite, N = Non Asbestos
Analyst: Date: Commenits: Page:
MRU 1/21/20 016G19 1 of 2
SAEDP C
C C C
EDS5 C N C C C C N C N N N N C C C N N N C N C C C C N
Comments
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrument I.D.: Magnification: Acc. Vo tage:
Grid Opening
E9
G5-4
13129 AE1465 Test C - P4 EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
43 0.01 385 MCE 10
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
Si12
F
X
Al-Si13
F
X
015
B
X
Analyst: Date: Comments: Page:
MRU 1/21/20 016G19 2 of 2
SAEDP
EDS5 N N C
Comments
" B = Bundle C = Cluster F = Fiber M = Matrix
NFDor NSD=NoFibersDetectedor NoStructuresDetected N = No Diffraction Obtained
pC = Chrysotile, A = Amphibole
5 C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite,
TR = Tremolite, N = Non Asbestos
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrument I.D.: Magnification: Acc. Vo tage:
Grid Opening
D10
B4-6
C4-6
C5-4
E6-6
E5-4
D9
H5-6
H4-4
G4-6 G5-3 F5-4
13129 AE1466 Test C - P5 EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
76 0.01 385 MCE 10
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
NSD
NSD
NSD
NSD
NSD
NSD
Al-Si01
F
X
Al-Si02
F
X
Al-Si03
F
X
NSD
Al-Si04
F
X
Analyst: Date: Comments: Page:
MRU 1/20/20 016G19 1 of 1
SAEDP EDS5
Comments
N N N
N
B = Bundle C = Cluster F = Fiber M = Matrix
NFDor NSD=NoFibersDetectedor NoStructuresDetected N = No Diffraction Obtained
pC = Chrysotile, A = Amphibole
5 C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite,
TR = Tremolite, N = Non Asbestos
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS
Air Sam ple Analysis Sheet
MVA Project# 13129________ Amount Collected(L): 31
Analyst:
JMS
MVA Sample# AE1467_______ Grid Opening (mm2): 0.01
Date: 1/14 - 1/15/20______
Client I.D.: Between C&D
Filter Area (mm2): 385
Page:
1 of 1
Instrument: Philips CM120
Filter Type: MCE
Comments:
Magnification: 23,900
Openings Analyzed: 10
Method: ISO 10312 _____ x
Acc. Voltage: 100kV
Level of Analysis: CMQ (C)
or ASTM D6281
Level of Analysis: N/A
Number of Structures
Structure Length* Width*
Grid Opening Primary Total
Class Type
(cm)
(cm)
(A)
Comments
Length** (pm)
W idth** (pm)
C10 B5-1
1
MD10 5.7 1.60 SAED observed,
2.4
0.67
1
CMQ MF
5.7
0.20
unable to image
2.4
0.08
C4-3 NSD
E5-4 NSD
E5-3 2
MD10 8.9 0.50 unable to observe
3.7
0.21
2
CMQ MF
8.9 0.10
SAED pattern
3.7
0.04
G5-1 NSD
C9 C6-4 NSD
C5-4 NSD
E3-6 3
3 CMQ F
2.1 0.20 no SAED observed
0.9
0.08
G3-3 NSD
K3-6 NSD
*On Screen Measurement ** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129 A E 1468 Test D - Pump 1 10,500 100kV
Instrument I.D.: G.O. Area (mm2): Openings Analyzed: Volume Collected: Filter Area (mm2):
EM420 0.01 40 33 385
Analyst: Date:
Comments: Grid Box: Page
MRU 11/13/19 - 11/14/19
013G19 1 of 2
Structure Structure Length**
W idth**
Length***
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
Comments
(pm)
B10
B2-3 NSD
B3-6
1
5.8
0.50
N
5.5
B4-4 NSD
B5-1 NSD
C5-3 NSD
C4-6 NSD
C3-3 NSD
Chrys <5pm
E3-4 NSD
E4-4 NSD
E5-3 NSD
F5-4 NSD
F4-6 NSD
F3-3 NSD
G4-1 NSD
B9
C2-4 NSD
C3-6 NSD
C4-4 NSD
E4-3 NSD
E3-4 NSD
E2-3
2C
17.0
0.80
C C Coated with GSR
16.2
F2-3 NSD
F3-6 NSD
F4-4 NSD
F5-6 NSD
F6-4 NSD
G5-3 NSD
G4-4 NSD
B8
E3-6 NSD
E4-4 NSD
E5-6
3F
5.2
0.50
N Chrys <.25pm Diam.
5.0
E6-4 NSD
F6-1 NSD
F5-6
NSD
F4-1 NSD
F3-6 NSD
G2-3 NSD
G3-4 NSD
*NFD or NSD = No Fibers Detected or No S tructures Detected
**On Screen Measurement
*** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix
SAED: C = Chrysotile, A = Amphibole
EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, A C = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non A sbe stos
W idth*** (pm)
0.48
0.76
0.48
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129
Instrument I.D.:
AE1468
G.O. Area (mm2):
Test D - Pump 1 Openings Analyzed:
10,500
Volume Collected:
100kV
Filter Area (mm2):
EM420 0.01 40 33 385
Analyst: Date:
Comments: Grid Box: Page
MRU 11/13/19 - 11/14/19
013G19 2 of 2
Structure Structure Length**
W idth**
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
B8
G4-1 NSD
G4-6 NSD
H4-1 NSD
Comments
Length*** (|jm)
W idth*** (|jm)
*NFD or NSD = No Fibers Detected or No S tructures Detected **On Screen Measurement *** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification) Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix SAED: C = Chrysotile, A = Amphibole EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, A C = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non A sbe stos
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS Air Sample Analysis Sheet
MVA Project# 13129
Amount Collected(L) 33
Analyst: MRU
MVA Sample# AE1468
Grid Opening (mm2) 0.01
Date: 1/27/2020 -
Client I.D.: Test D - P2
Filter Area (mm2) 385
Page: 1 of 2
Instrument: Philips EM420
Filter Type MCE
Comments: 013G19
Magnification: 21,200
Openings Analyzed 10
Method: ISO 10312
Acc. Voltage: 100kV
Level of Analysis CDQ (C)
or ASTM D6281
Level of Analysis N/A
Number of Structures
Structure Length* Width*
Grid Opening Primary Total
Class Type
(cm)
(cm)
(A)
Comments
Length** (pm)
B10 C3-3 1
NAM MD11 55.5 4.00
26.2
1 NAM MF 55.5 0.20
26.2
2
CDQ CD+0 14.0 12.00
6.6
2 CDQ CB 2.6 0.20
1.2
3 CDQ CB 2.5 0.30
1.2
4 CMQ CB 2.2 0.20
1.0
5
CMQ CF
1.4 0.15
0.7
6
CMQ CF
1.2 0.20
0.6
7 CMQ CR+0 12.5 8.50
5.9
3
NAM MD10 8.0 4.80
3.8
8 NAM MF 4.2 0.30
2.0
4
NAM MD10 3.0 2.60
1.4
9 NAM MF 3.0 0.40
1.4
E3-3 5
10 NAM F
8.0 0.60
3.8
6
11 NAM F
17.3 0.20
8.2
7
12 NAM B
2.0 0.25
0.9
E4-3 8
13 NAM B 147.0 1.00
69.3
9
14 CMQ B
14.2 0.10
6.7
10
15 NAM CC+0 7.5 0.20
3.5
F5-6
11
16 NAM CC+1 35.0 15.00
16.5
F4-4
12
CDQ MD10 7.5 2.80
3.5
17 CDQ MB 5.0 0.30 Coated in GSR
2.4
13
18 NAM F
3.0 0.20
1.4
14
CDQ MD10 2.3 1.20
1.1
19 CDQ MF 2.0 0.10
0.9
B9 B4-4 15
20 NAM F
3.6 0.40
1.7
16
21 NAM F
6.7 0.20
3.2
17
CDQ MD30 5.2 3.10
2.5
22 CDQ MB 2.5 0.30
1.2
23 CMQ MB 2.0 0.10
0.9
24 CMQ MB 1.9 0.10
0.9
18
25 NAM F
2.0 0.10
0.9
B5-4 19
26 CDQ B
8.5 0.30
4.0
20
CMQ MD10 1.9 1.40
0.9
27 CMQ MF 1.7 0.10
0.8
21
28 NAM F
17.0 0.20
8.0
22
29 NAM F
6.8 0.30
3.2
23
CMQ MD10 8.3 5.30
3.9
*On Screen Measurement
** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
1/28/2020
Width** (pm)
1.89 0.09 5.66 0.09 0.14 0.09 0.07 0.09 4.01 2.26 0.14 1.23 0.19 0.28 0.09 0.12 0.47 0.05 0.09 7.08 1.32 0.14 0.09 0.57 0.05 0.19 0.09 1.46 0.14 0.05 0.05 0.05 0.14 0.66 0.05 0.09 0.14 2.50
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS Air Sample Analysis Sheet
MVA Project# 13129
Amount Collected(L) 33
Analyst: MRU
MVA Sample# AE1468
Grid Opening (mm2) 0.01
Date: 1/27/2020 -
Client I.D.: Test D - P2
Filter Area (mm2) 385
Page: 2 of 2
Instrument: Philips EM420
Filter Type MCE
Comments: 013G19
Magnification: 21,200
Openings Analyzed 10
Method: ISO 10312
Acc. Voltage: 100kV
Level of Analysis CDQ (C)
or ASTM D6281
Level of Analysis N/A
Number of Structures
Structure Length* Width*
Grid Opening Primary Total
Class Type
(cm)
(cm)
(A)
Comments
Length** (pm)
B9 B5-4 23
30 CMQ MF 8.2 0.10
3.9
C5-4 24
31 NAM F 35.2 0.20
16.6
C4-4 25
32 NAM F 27.5 0.20
13.0
26
33 NAM F
11.8 0.60
5.6
F5-4 27
34 NAM B 26.0 0.20
12.3
28
35 NAM B 48.0 0.50
22.6
29
36 NAM B 23.3 0.40
11.0
30
37 NAM F
12.5 0.10
5.9
31
CDQ MD10 4.1 1.50
1.9
38 CDQ MB 3.7 0.20
1.7
32
CMQ MD10 3.7 1.30
1.7
39 CMQ MF 2.8 0.10
1.3
1/28/2020
Width** (pm)
0.05 0.09 0.09 0.28 0.09 0.24 0.19 0.05 0.71 0.09 0.61 0.05
*On Screen Measurement ** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129 AE1469 Test D - Pump 2 10,500 100kV
Instrument I.D.: G.O. Area (mm2): Openings Analyzed: Volume Collected: Filter Area (mm2):
EM420 0.01 40 32 385
Analyst: Date:
Comments: Grid Box: Page
MRU 2/4/2020
016G19 1 of 2
Structure Structure Length**
W idth**
Length***
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
Comments
(|Jm)
C1
K4-1 NSD
H2-6 NSD
H3-1 NSD
H4-4
0.5 B
25.5
0.30
NN
24.3
G5-3 NSD
G4-6 NSD
G3-3
1.5 B
43.8
0.30
NN
41.7
G2-3 NSD
F3-6 NSD
F5-4
2.5 B
6.0
0.30
NN
5.7
F6-4 NSD
E5-6 NSD
E3-4 NSD
C5-6 NSD
C2
B3-6 NSD
C5-1 NSD
C4-4 NSD
C3-6 NSD
E2-6 NSD
E3-3 NSD
F4-3
3.5 B
9.7
0.80
CC
9.2
F3-3 NSD
F2-3 NSD
G2-6 NSD
G3-1 NSD
G5-6 NSD
H4-1
4.5 B
7.0
0.60
NN
6.7
C3
B3-4 NSD
B5-1 NSD
C4-4 NSD
C3-4 NSD
E2-1 NSD
E4-3
NSD
F5-1 NSD
H2-4 NSD
H3-4 NSD
H4-1 NSD
*NFD or NSD = No Fibers Detected or No Structures Detected
**On Screen Measurement
*** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix
SAED: C = Chrysotile, A = Amphibole
EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, A C = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non A sbestos
W idth*** (|Jm)
0.29 0.29 0.29
0.76
0.57
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129
Instrument I.D.:
AE1469
G.O. Area (mm2):
Test D - Pump 2 Openings Analyzed:
10,500
Volume Collected:
100kV
Filter Area (mm2):
EM420 0.01 40 32 385
Analyst: Date:
Comments: Grid Box: Page
MRU 2/4/2020
016G19 2 of 2______
Structure Structure Length**
W idth**
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
C3
K4-4 NSD
K3-6 NSD
K2-3 NSD
Comments
Length*** (|jm)
W idth*** (|jm)
*NFD or NSD = No Fibers Detected or No Structures Detected **On Screen Measurement *** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification) Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix SAED: C = Chrysotile, A = Amphibole EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, A C = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non A sbestos
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS Air Sample Analysis Sheet
MVA Project# 13129________ Amount Collected(L): 32_____
Analyst:
JMS
MVA Sample# AE1469_______ Grid Opening (mm2): 0.01
Date: 1/21 - 1/27/20
Client I.D.: TD, P2________
Filter Area (mm2): 385
Page:
1 of 2
Instrument: Philips CM120
Filter Type: MCE
Comments:___________
Magnification: 23,100________
Openings Analyzed: 10
Method: ISO 10312
Acc. Voltage: 100kV________
Level of Analysis: CMQ (C)
or ASTM D6281
Level of Analysis: N/A
(A)
Number of Structures
Structure Length* Width*
Grid Opening Primary Total Class Type (cm) (cm)
Comments
Length** (|jm)
B10 B3-6 1
NAM MD11 46.2 3.20
20.0
1 NAM MB 46.2 0.40
20.0
2
NAM MD11 33.2 3.60
14.4
2
NAM MB 33.2 0.30
14.4
3
CMQ MD11 18.1 2.20 unable to observe
7.8
3 CMQ MB 18.1 0.20
SAED pattern
7.8
4
NAM MD11 18.6 4.40
8.1
4
NAM MB 18.6 0.40
8.1
5
NAM MD11 25.3 2.90
11.0
5
NAM MF 25.3 0.30
11.0
E2-3 6
CMQ MD11 10.4 4.10 unable to observe
4.5
6 CMQ MF 10.4 0.20
SAED pattern
4.5
7
NAM MD11 35.6 3.10
15.4
7
NAM MF 35.6 0.40
15.4
8
NAM MD11 27.7 2.00
12.0
8
NAM MF 27.7 0.60
12.0
F3-1
9
NAM MD11 182.8 5.30
79.1
9
NAM MF 182.8 0.50
79.1
10
NAM MD10 8.5 1.10
3.7
10 NAM MF
8.5
0.20
3.7
11
NAM MD10 8.7 1.30
3.8
11
NAM MF
8.7
0.40
3.8
F5-6 12
NAM MD10 7.0 1.90
3.0
12 NAM MF
7.0
0.40
3.0
13
CMQ MD10 4.0 3.10 unable to observe
1.7
13 CMQ MF
4.0
0.20
SAED pattern
1.7
14
NAM MD11 56.3 3.00
24.4
14 NAM MF 56.3 0.30
24.4
C5-4 15
NAM MD11 60.7 13.70
26.3
15 NAM MF 60.7 0.30
26.3
16
NAM MD10 8.5 4.90
3.7
16 NAM MF
8.5
0.70
3.7
17
NAM MD11 43.1 2.90
18.7
17 NAM MF 43.1 0.30
18.7
18
CMQ MD10 2.1
1.10
0.9
18 CMQ MF
2.1
0.30
0.9
B9 E2-3 19
NAM MD10 31.9 3.90
13.8
19 NAM MF 31.9 0.20
13.8
*On Screen Measurement
Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
13129report030220.docx
x
Width** (|jm) 1.39 0.17 1.56 0.13 0.95 0.09 1.90 0.17 1.26 0.13 1.77 0.09 1.34 0.17 0.87 0.26 2.29 0.22 0.48 0.09 0.56 0.17 0.82 0.17 1.34 0.09 1.30 0.13 5.93 0.13 2.12 0.30 1.26 0.13 0.48 0.13 1.69 0.09
MVA SCIENTIFIC CONSULTANTS Air Sample Analysis Sheet
MVA Project# 13129________ Amount Collected(L): 32_____
Analyst:
JMS
MVA Sample# AE1469_______ Grid Opening (mm2): 0.01
Date: 1/21 - 1/27/20
Client I.D.: TD, P2________
Filter Area (mm2): 385
Page: 2 of 2
Instrument: Philips CM120
Filter Type: MCE
Comments:___________
Magnification: 23,100________
Openings Analyzed: 10
Method: ISO 10312
Acc. Voltage: 100kV________
Level of Analysis: CMQ (C)
or ASTM D6281
Level of Analysis: N/A
(A)
Number of Structures
Structure Length* Width*
Grid Opening Primary Total Class Type (cm) (cm)
Comments
Length** (|jm)
B9 E2-3 20
NAM MD11 87.0 7.10
37.7
20 NAM MF 87.0 0.20
37.7
21
CMQ MD11 18.4 2.40 unable to observe
8.0
21 CMQ MF 18.4 0.30
SAED pattern
8.0
C4-1 22
NAM MD11 49.9 7.20
21.6
22 NAM MF 49.9 0.30
21.6
23
NAM MD10 8.4 1.00
3.6
23
NAM MF
8.4
0.30
3.6
24
NAM MD10 11.4 1.30
4.9
24 NAM MF 11.4 0.40
4.9
C5-4 25
NAM MD11 11.5 1.10
5.0
25 NAM MF 11.5 0.10
5.0
26
CMQ MD11 17.3 2.50 unable to observe
7.5
26 CMQ MF 17.3 0.10
SAED pattern
7.5
H5-1 27
NAM MD10 13.0 2.10
5.6
27 NAM MF 13.0 0.20
5.6
H3-1 28
NAM MD11 30.1 4.60
13.0
28 NAM MF 30.1 0.10
13.0
29
NAM MD11 110.0 2.30 Fiber wraps around
47.6
29 NAM MF 110.0 0.30 difficult to measure
47.6
30
NAM MD11 84.1 3.90
36.4
30 NAM MF 84.1 0.30
36.4
31
NAM MD11 64.9 2.90
28.1
31 NAM MF 64.9 0.40
28.1
32
NAM MD11 18.0 2.90
7.8
32 NAM MF 18.0 0.50
7.8
x
Width** (|jm) 3.07 0.09 1.04 0.13 3.12 0.13 0.43 0.13 0.56 0.17 0.48 0.04 1.08 0.04 0.91 0.09 1.99 0.04 1.00 0.13 1.69 0.13 1.26 0.17 1.26 0.22
*On Screen Measurement Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS
Air Sample Analysis Sheet
' roject# 13129
Amount Collected(L): 36 - 44
Analyst:
MRU
ample# AE1470_______ Grid Opening (mm2): 0.01
Date: 1/28/2020
ent I.D.: Test D P3
Filter Area (mm2): 385
Page: 1 of 1
rument: Philips EM120
Filter Type: MCE
Comments: 016G19
fication: 21,200
Openings Analyzed: 10
Method: ISO 10312
Voltage: 100kV
Level of Analysis: CDQ (C)
orASTM D6281
Level of Analysis: N/A (A)
Number of Structures
Structure Length* Width*
Opening Primary Total
Class Type
(cm)
(cm)
Comments
Length** (|jm)
B4-4 1
1
NAM B
16.5 0.50
7.8
2
CMQ MD10 3.8 1.50
1.8
2 CMQ MF 3.8 0.15
1.8
3
3 NAM F 20.2 0.20
9.5
4
4 NAM F 27.5 0.60
13.0
C3-6 5
CDQ MD20 6.3 3.00
3.0
5 CDQ MF 3.9 0.15
1.8
6 CMQ MB 2.3 0.30
1.1
6
7 NAM B 69.5 0.75
32.8
C4-6 7
8 NAM F 37.0 0.30
17.5
8
9 NAM F 75.5 0.20
35.6
E4-4 9
10 NAM F
6.5 0.30
3.1
10
NAM MD11 28.5 11.00
13.4
11 NAM MF 17.5 0.20
8.3
11
12 NAM F
3.8 0.20
1.8
F5-6 12
13 CDQ B
6.3 0.15
3.0
G4-3 13
14 NAM F
2.1 0.20
1.0
F4-1 14
NAM MD11 13.0 12.10
6.1
15 NAM MF 12.1 0.20
5.7
15
CMQ MD10 5.0 3.20
2.4
16 CMQ MF 2.2 0.10
1.0
F3-3 16
17 NAM B 160.0 0.60
75.5
17
18 NAM B
4.1 0.20
1.9
18
CDQ MD10 1.8 0.50
0.8
19 CDQ MF 1.8 0.10
0.8
E4-4 19
20 NAM F
2.5 0.15
1.2
E5-4 20
NAM MD10 5.0 2.10
2.4
21 NAM MF 3.1 0.20
1.5
21
CDQ MD10 5.5 1.60
2.6
22 CDQ MF 2.1 0.10
1.0
22
23 NAM F
12.3 0.20
5.8
23
CDQ MD10 3.6 3.10
1.7
24 CDQ MF 3.6 0.20
1.7
Width** (|jm)
0.24 0.71 0.07 0.09 0.28 1.42 0.07 0.14 0.35 0.14 0.09 0.14 5.19 0.09 0.09 0.07 0.09 5.71 0.09 1.51 0.05 0.28 0.09 0.24 0.05 0.07 0.99 0.09 0.75 0.05 0.09 1.46 0.09
een Measurement lated Actual Measurement (On Screen Measurement X 10,000/Magnification)
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS Air Sample Analysis Sheet
MVA Project# 13129_______
Amount Collected(L): 46
Analyst: MRU_______________
MVA Sample# AE1471
Grid Opening (mm2): 0.01
Date: 1/29/2020 -
1/30/2020
Client I.D.: Test D P4
Filter Area (mm2): 385
Page: 1 of 1
Instrument: Philips EM120
Filter Type: MCE
Comments: 016G19
Magnification: 21,200
Openings Analyzed: 10
Method: ISO 10312 ___________
Acc. Voltage: 100kV
Level of Analysis: CDQ (C)
or ASTM D6281
Level of Analysis: N/A
Number of Structures
Structure Length* Width*
Grid Opening Primary Total
Class Type
(cm)
(cm)
(A)
Comments
Length** (|jm)
Width** (|jm)
E7 H3-1 1
1 NAM B 110.0 0.60
51.9
0.28
2
NAM MD11 37.0 5.20
17.5
2.45
2 NAM MB 33.5 0.30
15.8
0.14
G3-3 3
3 NAM B 103.5 0.50
48.8
0.24
G4-3 4
4 NAM B
8.5 0.40
4.0
0.19
5
5
NAM B
11.5 0.20
5.4
0.09
F4-6 6
NAM MD10 10.3 4.20
4.9
1.98
6 NAM MB 7.2 0.40
3.4
0.19
E5-6 7
7 NAM B
7.3 0.30
3.4
0.14
8
CMQ MD11 15.1 11.00
7.1
5.19
8 CMQ MB 14.7 0.25
6.9
0.12
D7 H4-4 9
9
NAM B
10.8 0.30
5.1
0.14
10
10 NAM B
8.4 0.30
4.0
0.14
G3-3 11
CMQ MD10 2.6 0.70
1.2
0.33
11 CMQ MF 1.8 0.20
0.8
0.09
F4-6 12
CMQ MD10 5.2 3.10
2.5
1.46
12 CMQ MB 4.1 0.20
1.9
0.09
13
13 NAM B
4.4 0.30
2.1
0.14
14
14 NAM F
16.0 0.30
7.5
0.14
E5-4 15
15 NAM B 31.8 0.70
15.0
0.33
16
16 NAM B
12.1 0.40
5.7
0.19
C4-4 NSD
*On Screen Measurement ** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS
Air Sample Analysis Sheet
MVA Project# 13129
Amount Collected(L) 81
Analyst: JMS
MVA Sample# AE1472
Grid Opening (mm2) 0.01
Date: 1/27/2020
Client I.D. TD, P5
Filter Area (mm2) 385
Page: 1 of 1
Instrument Philips CM120
Filter Type MCE
Comments:
Magnification 23,100
Openings Analyzed 10
Method: ISO 10312
Acc. Voltage 100kV
Level of Analysis N/A (C)
or ASTM D6281
Level of Analysis N/A
Number of Structures
Structure Length* Width*
Grid Opening Primary Total
Class Type
(cm)
(cm)
(A)
Comments
Length** (Mm)
E6 H5-4 NSD
G5-1 NSD
F6-4 NSD
E4-4 NSD
B4-4 NSD
D6 H3-1 NSD
E2-3 NSD
E4-6 NSD
F6-4 NSD
H6-1 NSD
x
Width** (Mm)
*On Screen Measurement ** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129 AE1473 Field Blank #1 10,500 100kV
Instrument I.D.: G.O. Area (mm2): Openings Analyzed: Volume Collected: Filter Area (mm2):
EM420 0.01 40 N/A 385
Analyst: Date:
Comments: Grid Box: Page
MRU 11/19/2019
013G19 1 of 2
Structure Structure Length**
Width**
Length***
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
Comments
(-m )
E7
B3-4 NSD
C2-6 NSD
C5-6 NSD
E5-3 NSD
E4-3 NSD
E3-3 NSD
F2-3 NSD
F3-3 NSD
F4-3 NSD
F5-4 NSD
G4-4 NSD
G3-6 NSD
G3-4 NSD
G3-1 NSD
G2-3 NSD
G2-6 NSD
H2-3 NSD
H3-1 NSD
H4-1 NSD
K3-3 NSD
D7
E3-1 NSD
E3-3 NSD
E4-1 NSD
E4-6 NSD
E5-1 NSD
E5-6 NSD
F6-1 NSD
F5-6 NSD
F5-1 NSD
F4-3 NSD
F4-4 NSD
F3-6 NSD
F3-3
NSD
G2-3 NSD
G2-6 NSD
G3-1 NSD
G4-1 NSD
*NFD or NSD = No Fibers Detected or No Structures Detected
**On Screen Measurement
*** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix
SAED: C = Chrysotile, A = Amphibole
EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non Asbestos
Width*** (-m )
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129 AE1473 Field Blank #1 10,500 100kV
Instrument I.D.: G.O. Area (mm2): Openings Analyzed: Volume Collected: Filter Area (mm2):
EM420 0.01 40
385
Analyst: Date:
Comments: Grid Box: Page
Structure Structure Length**
Width**
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
D7
G4-6 NSD
G5-4 NSD
H5-1 NSD
Comments
MRU 11/19/2019
013G19 2 of 2
Length*** (-m )
Width*** (-m )
*NFD or NSD = No Fibers Detected or No Structures Detected **On Screen Measurement *** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification) Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix SAED: C = Chrysotile, A = Amphibole EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non Asbestos
13129report030220.docx
MVA Scientific Consultants AHERA Count Sheet
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Instrument I.D.: Magnification: Acc. Vo tage:
Grid Opening
E7
F3-3
E5-4
E6-6
C6-4
C5-4
D7
H5-1
H4-4
G4-4
G5-1
F5-4
13129 AE1473 Field Blank #1 EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2): Filter Area (mm2): Filter Type: Openings Analyzed:
N/A 0.01 385 MCE 10
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
NSD
NSD
NSD
NSD
NSD
NSD
NSD
NSD
NSD
NSD
Analyst: Date: Comments: Page:
MRU 1/21/20 013G19 1 of 1
SAEDP EDS5
Comments
" B = Bundle
NFDor NSD=NoFibersDetectedor NoStructuresDetected
C = Cluster
N = No Diffraction Obtained
F = Fiber
M = Matrix
pC=Chrysotile, A=Amphibole
5C=Chrysotile, AM=Amosite, CR=Crocidolite, AC=Actinolite, AN=Anthophyllite
TR=Tremolite, N=NonAsbestos
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129 AE1474 Field Blank #2 10,500 100kV
Instrument I.D.: G.O. Area (mm2): Openings Analyzed: Volume Collected: Filter Area (mm2):
EM420 0.01 40 N/A 385
Analyst: Date:
Comments: Grid Box: Page
MRU 11/19/2019
013G19 1 of 2
Structure Structure Length**
Width**
Length***
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
Comments
(-m )
E6
C3-1 NSD
C3-3 NSD
C4-3 NSD
C5-4 NSD
E6-1 NSD
E6-4 NSD
E5-4 NSD
E5-1 NSD
E4-3 NSD
E4-1 NSD
E4-4 NSD
E3-3 NSD
E3-1 NSD
F2-3 NSD
F2-6 NSD
F3-6 NSD
F4-1 NSD
F4-6 NSD
F5-4 NSD
F5-6 NSD
D6
E6-4 NSD
E5-3 NSD
E5-4 NSD
E4-6 NSD
E4-3 NSD
E3-3 NSD
F3-1 NSD
F3-6 NSD
F4-1 NSD
F4-3 NSD
F5-3 NSD
F6-1 NSD
G6-1
NSD
G6-4 NSD
G5-3 NSD
G5-1 NSD
G4-3 NSD
*NFD or NSD = No Fibers Detected or No Structures Detected
**On Screen Measurement
*** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification)
Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix
SAED: C = Chrysotile, A = Amphibole
EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non Asbestos
Width*** (-m )
13129report030220.docx
MVA SCIENTIFIC CONSULTANTS NIOSH 7402 COUNT SHEET
MVA Project #: Lab Sample I.D.: Client Sample I.D.: Magnification: Acc. Voltage:
13129 AE1474 Field Blank #2 10,500 100kV
Instrument I.D.: G.O. Area (mm2): Openings Analyzed: Volume Collected: Filter Area (mm2):
EM420 0.01 40 N/A 385
Analyst: Date:
Comments: Grid Box: Page
Structure Structure Length**
Width**
Grid
Opening
Number* Type
(cm)
(cm)
SAED EDS
D6
G4-4 NSD
G3-6 NSD
G2-6 NSD
Comments
MRU 11/19/2019
013G19 2 of 2
Length*** (-m )
Width*** (-m )
*NFD or NSD = No Fibers Detected or No Structures Detected **On Screen Measurement *** Calculated Actual Measurement (On Screen Measurement X 10,000/Magnification) Structure Type: B = Bundle, C = Cluster, F = Fiber, M = Matrix SAED: C = Chrysotile, A = Amphibole EDS: C = Chrysotile, AM = Amosite, CR = Crocidolite, AC = Actinolite, AN = Anthophyllite, TR = Tremolite, N = Non Asbestos
13129report030220.docx
MVA Project #: Lab Sample I.D.: Client Sample I.D. Instrument I.D.:
Magnification:
Grid Opening
E6
H5-6
H4-4
G4-6
G5-3
F5-4
D6
F5-6
F4-4
G4-4
G5-1
F5-4
MVA Scientific Consultants AHERA Count Sheet
13129 AE1474 Field Blank #2 EM420 20,800 100kV
Amount Collected(l): Grid Opening (mm2):
Filter Area (mm2): Filter Type:
Openings Analyzed:
N/A 0.01 385 MCE 10
Structure Structure
Lengt h (Mm)
Number
Type" 0.5 - 4.9
> 5.0
NSD
NSD
NSD
NSD
NSD
NSD
NSD
NSD
NSD
NSD
Analyst: Date:
Comments: Page:
MRU 1/21/20 013G19 1 of 1
SAEDP EDS?
Comments
" B = Bundle
NFDor NSD=NoFibersDetectedor NoStructuresDetected
C = Cluster
N = No Diffraction Obtained
F = Fiber
M= Matrix
pC=Chrysotile, A=Amphibole
5C=Chrysotile, AM=Amosite, CR=Crocidolite, AC=Actinolite, AN=Anthophyllite,
TR=Tremolite, N=NonAsbestos
13129report030220.docx
Chain of Custody, Remington Exposure Simulation (12 gauge)
n ivi
f\ 13^
/}E \!> W
Shell Description Green 12 gauge 2 3/4 inch shell111/8 oz #6 shot 3 1/4 oz dram equivalent Green 12 gauge 2 3/4 inch shell111/8 oz #6 shot 3 1/4 oz dram equivalent Green 12 gauge 2 3/4 inch shell111/8 oz #6 shot 3 1/4 oz dram equivalent Green 12 gauge 2 3/4 inch shelIl111/8 oz #6 shot 3 1/4 oz dram equivalent Green 12 gauge 2 3/4 inch shelIl111/8 oz #6 shot 3 1/4 oz dram equivalent Green 12 gauge 2 3/4 inch shelIl111/8 oz #6 shot 3 1/4 oz dram equivalent Green 12 gauge 2 3/4 inch shelIl111/8 oz #6 shot 3 1/4 oz dram equivalent Green 12 gauge 2 3/4 inch shelIl111/8 oz #6 shot 3 1/4 oz dram equivalent Green 12 gauge 2 3/4 inch shelIl111/8 oz #6 shot 3 1/4 oz dram equivalent Green 12 gauge 2 3/4 inch shelIl111/8 oz #6 shot 3 1/4 oz dram equivalent Red 12 gauge 2 3/4 nch she! oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #6 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #8 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #6 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #6 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #6 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #6 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #6 shot 3 oz dram equivalent Red 12 gauge 2 3/4 nch shel oz #6 shot 3 oz dram equivalent
Remington Box ID BP/LCL08H516 BP/LCL08H516 BP/LCL08H516 BP/LCL08H516 BP/LCL08H516 BP/LCL08H516 BP/LCL08H516 BP/LCL08H516 BP/LCL08H516 BP/LCL08H516 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/BF26C5 BP/AG08A7DP BP/AG08A7DP BP/AG08A7DP BP/AG08A7DP BP/AG08A7DP BP/AG08A7DP BP/AG08A7DP BP/AG08A7DP BP/AG08A7DP
CC Box #
1 1 1 1 1 1 1 1 1 1 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2
3 3 3 3 3 3 3 3 3
Page 1 of 3
Chain of Custody, Remington Exposure Simulation (12 gauge)
31^
_____ Red 12 gauge 2 3/4 inch shell 1 oz #6 shot 3 oz dram equivalent
BP/AG08A7DP
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 4 1/2 oz dram equivalent
BP/AT11P24
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 41/2 oz dram equivalent
BP/AT11P24
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 41/2 oz dram equivalent
BP/AT11P24
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 41/2 oz dram equivalent
BP/AT11P24
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 41/2 oz dram equivalent
BP/AT11P24
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 41/2 oz dram equivalent
BP/AT11P24
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 4 1/2 oz dram equivalent
BP/AT11P24
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 41/2 oz dram equivalent
BP/AT11P24
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 41/2 oz dram equivalent
BP/AT11P24
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 41/2 oz dram equivalent
CC (3dKW-b Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 4 1/2 oz dram equivalent
BP/AT11P24 BP/AT11P24
l Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 41/2 oz dram equivalent
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 41/2 oz dram equivalent
BP/AT11P24 BP/AT11P24
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 41/2 oz dram equivalent
BP/AT11P24
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 41/2 oz dram equivalent
BP/AT11P24
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 41/2 oz dram equivalent
BP/AT11P24
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 41/2 oz dram equivalent
BP/AT11P24
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 41/2 oz dram equivalent
BP/AT11P24
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 4 1/2 oz dram equivalent
BP/AT11P24
Green 12 gauge 3 inch shell 1 7/8 oz #2 shot 41/2 oz dram equivalent
BP/AT11P24
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.3 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.3 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
c c 0 < ^ 7 G re en 12g aug eJ3!4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
/3 r
^ reen 12 auge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
) 2 ' v Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Green 12 gauge 2 3/4 inch shell 11/4 oz #7.5 shot 3 3/4 oz dram equivalent BP/BF22K6R
7
Page 2 of 3
Chain of Custody, Remington Exposure Simulation (12 gauge)
____________ Green 12 gauge 2 3/4 inch shell
Green 12 gauge 2 3/4 inch shell
Green 12 gauge 2 3/4 inch shell
Green 12 gauge 2 3/4 inch shell
Green 12 gauge 2 3/4 inch shell
CC Doc#9 Green 12 gauge 2 3/4 inch shell
ftznH
Green 12 gauge 2 3/4 inch shell Green 12 gauge 2 3/4 inch shell
Green 12 gauge 2 3/4 inch shell
Green 12 gauge 2 3/4 inch shell
_________ Green 12 gauge 2 3/4 inch shell
Green 12 gauge 2 3/4 inch shell
Green 12 gauge 2 3/4 inch shell
C C frof- f c l v Green 12 gauge 2 3/4 inch shell
Green 12 gauge 2 3/4 inch shell Green 12 gauge 2 3/4 inch shell
11/4oz#7.5 shot 3 3/4 oz dram equivalent 11/4oz#7.5 shot 3 3/4 oz dram equivalent 11/4oz#7.5 shot 3 3/4 oz dram equivalent 11/4oz#7.5 shot 3 3/4 oz dram equivalent 11/4oz#7.5 shot 3 3/4 oz dram equivalent 11/4oz#7.5 shot 3 3/4 oz dram equivalent 11/4oz#7.5 shot 3 3/4 oz dram equivalent 11/4oz#7.5 shot 3 3/4 oz dram equivalent 11/4oz#7.5 shot 3 3/4 oz dram equivalent 11/4oz#7.5 shot 3 3/4 oz dram equivalent 11/4oz#7.3 shot 3 3/4 oz dram equivalent 11/2 oz #2 shot 11/2 oz #2 shot 11/2 oz #2 shot 11/2 oz #2 shot 11/2 oz #2 shot
BP/BF22K6R BP/AM21E4 BP/AM21E4 BP/AM21E4 BP/AM21E4 BP/AM21E4 BP/AM21E4 BP/AM21E4 BP/AM21E4 BP/AM21E4 BP/AM21E4 BP/AF18H2R BP/AF18H2R BP/AF18H2R BP/AF18H2R BP/AF18H2R
Total Shells 105
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Page 3 of 3