Document gv9MG5qdRvegBeOJMZa0Xq33
)-19Bor
jin APPENDB
FPG " WINCHESTER ANALYSES OF AIR SAMPLES
FOR lead in air
ETHOD OF COLLECTION: ODZ-PS-Hambrana
.'lltor with paraonal eampling pump at 2 LPM
ETHOD OF ANALYSIS: Atomic Aboorptlon
IpOCtT OCCOpy
DATE ANALYZED: 5/27/70
ANAiLYST: m. Dcoouky TLV: 0.I5 mg/M^
ample NO . i e Id Lab.
ll 63 3 --G 1 2'1 634-0
3 635-0
41 G36 --G !
5 G37-05 1
6' 630-0
7 639-0 1
6 04 O-o
9 G41-G 1
10! 642-0
11; 643-0
C/J 12
O'
1
644 -O
Total (M-*)
Date
Time Air Vol.
4/2 0/76
H
ll
9 1 50ara 10:37am 946ara 10:35am 9t53am 10:30om 9:56am
.093 .094 .009 .00G
10 j 4 Oom u 9:50am .002
10:44am M 10:00am .006
10;44om
n
10: 04om
.000
10:45am r* 10:07am .076
10:4 7 a m 1 10 i Horn .060
10:46am M 10:20ara .065
10:53am U 10 t20om .049
10:54nn O 10:30am .046
10155ara
Location
Conc.mq/M _______________ QEGEAT.QR____________________
Dook preform #19
Trace
W. D. Bowen '
mix No, 551-D Dook preform #2 mix No, 555 Dook preform #20 mix No, 555 Boole proform 1J4
Trnco Trace Trace
Robett ITcaver J. r. Ganoo Martha Ratlief
mix No, 551-D Dook preform #13
.076
George Drcn/n
mix No. 551-D Dook proform #14
.045
Ilolmca Patton
mik MPt-2?;ic: Dook preform #1G
Trace
Jamoo Morris
mix No,-551-D______ Dook preform #21
Traca
O. Y7. Turner
mix No. 551-J2
Dook preform trani - Trace
lout operator .
Dlok preform #3
.135
mix Ho, 555_________
Dlok preform i\2
Trace
Noleon Spencer Joanna Powell Sally Albert
mix No, 562-5______ Dlok preform #1
Trace
Douglas Rinard
mix No. 551-D
ConLcntlation in excess ol TLV.
ABEX-174
SCF-ABEX-1915
-196G1 '
;
I I, '
APPEND!
J. 2
fix; - irmuiESTER
; THOD or COLLECTION : filtor with personal
ANALYSES Or AIR SAMPLES for LEAd IN air ODZ-PS-ilembrana sampling pump at 2 LPM
-TiiOD or analysis. ^tontl-c Abaorption 3puctroocopy
DATE ANALYZED:
5/27/7G
ANALYST: M. Dcoouky TLV: 0.15 rag/n^
imple No \ e id Lab.
13 6413 -G
14 646 --G
Lb" 64 / --G
10 640--G
17. 64 3-G
1U 66 0--G
1/ 651-G
2 0| 052-G
! 31 653-0
11 --c(jlSA
yj________ 24 656 --G
2 `j>i 657-0
i
Total(MJ)
Date
Time
Air Vol.
Location
Cone .rog/H-
T/2 0/76 10 j ?0om
.059
Dlok Preform #7
Traco
10i50am
t\
10 t 35am
.03 7
mix No. 551 Dook preform #2
Traco
10:56a m
mix No. 555
10 j 3 7am
. 03U
Dook proform #19
Traco
it
10:57am Dlank
Dlank
mix No. 551-D Dook preform
10:40am
.034
Dook preform #4
0.0
Trace
10 t 50am
u 1:40pm .065
mix No. 551-D Dlok proform #5
.137
7 - 21pn . n 1 5 4 pm .064
?:26pm 11 1:44pm .052
mix No. 555 Dlok preform #15 mix No. 551 Dlok preform if2
.149* Traco
2 11 Opm
it 1:4 6 pm .052
mix No. 551 Dlok proform #7
2 :12 pa 2:U5pu
TCRTG
mix No. 562-5
~DTOk-prUtorm #1!
Trace
mrca--
2 :2 0 pm
mix No. 539
M
Dlank
_JlALQli________ Dlok Preform
--2^0
.
11 2 : lOpii .042
Dlok proform f/2
Traca
2 r 32 pa
Piix No. 591. _______________________
2:21pm
.044
Dlok proform #5
.197*
2 ;44pm
mix No. 551-D
OPERATOR Louia Nicholoon
Robort Uoavor W. D. Dowen
Blank Martha Rntliof
'
Joanne Powoll
Ralph Elloaoer Sally Albart
Louio Nicholson
cunmowaiiyn-------------------- -----------
Dlank Sally Albert
Joanna Powell
'l9661
*
'
APPEND1 .0. 2
fpg ~ innainsTER ANALYSES OF AIR SAMPLES
FOR Load in Air
'THOD OF COLLECTION:ODZ-rS-Membrano filter with porconal oarapllog pomp at 2 LPH
.THOD OF ANALYSIS: Atomic Abuorption
Jpcctroocopy
,
DATE ANALYZED: 5/27/76
ANALYST: 14. Dcaouky TLV 0.15 mg/H3
- m p 1 e NO . lc Id Lab . 2 6 650-C
i 27 65 9-G
20 66 0--G
29 i |
661-0
[
JO' bG2 --G
31 663-0
J2 !I 664-0 33 .1 665--G 34 666-0
Total (M-1)
Da te
Time Air Vol.
4/21/76 101 07am
.506
2:42pm
n
10:02am
.470
2 :03oin X 10;2 Oaro .437
2 j 2 7pm
ii
10:05am
.475
2:10pm ti 10:12nru .462
2:14pm r 10:20am .442
2:16pm
u
10:23am
.459
2 :TGpin
11
11:30am
.342
2 : 3 6 pm n .243
i 5 607-0 Jb 660-0 37 66 9 --G
M 11:45am .263
1j 50pm.
u
11:3lam
.360
2:35pm 11 11i25am .255
1:45pm
Location
Conc.pq/n
Inspection and
Traco
pnekaqinq Strip finioh O.D. grinder 1(2 Lowor compounding rubber mill No. 1 Strip finish backqrindcr ,73 Disc braka insp.
Trace Traco Trace Traco
Innp.(Grouping) at . downdraft bench Lower compounding rubber mill No. 3 Uppor compounding
flr/. Uno,opg Upper compounding oowdor pumper Lowor compounding drv lino operator Upper compounding
powder pumper Upper compounding acbQ3too waighor
Traco Traco .069 Traco Traco Traco Traco
OPERATOR Jatnao Doylios Goorgo Chambers Jamoo Royaton Allan carter Eageno Krllinghara Robert Clark Marcuo Iiainea C. D. Fauver Joceph Palmer A, M. Foreman Gone Klina S, A. Dodson
(M Coii mil i a L i on an cxrom of TT.V
j
.cHigsbi
75
iI I\ `APPEND1 .0. 2 FPG - WINCHESTER
ANALYSES OF AIR SAMPLES
F0R Lead in Air METHOD OF COLLECTION: ODZ-PS-Membrane
^^oY^aEW^: al oampling pomp at 2 LPM Atomic Aboorption
5 poctroncopy
DATE ANALYZED: ANALYST: ,,
TLV ` 0.15
5/27/70
Sample No. Field Lab.
Date
Time
Total(MJ) Air Vol.
Location
.inP:,.mg/R 3 .
rmCDATTlD
30 670-G 4/21/76 111 38am .360 2 1 3 7 pm
Upper compounding dry line operator
Trace
J 9 671-0
" 1:4 5 pm .102 2:39pm
Uppar compounding asbestos weigher
Trace
<1 0 672-C
" 1: 5 0 pm .052 2:25 pm
Lover compounding dry line operator
Trace
4 1 67 3K]
4 j 00 pm 6 :4 Opm
.287
strip finish ripper No. 2
Trace
-12 6 14 --G
" 4:11pm .347 7:00pm
Compound helper (coni screening)
.040
413 675-G 4/22/76 4:53pra
.250
Grouping-Mezzanine Trace
7 : 03 ptn
4 4 6 7 G --G 4/21//6 4:23 pm 1 6:30pm
.267
Plant 3\vceper 2nd shift
Trace
45 677-0 4/22/76 10r3lJpm .250 l 12:45am
Maintenance oper. 3rd shift
Traco
4 6 678-0 4/23/76 9:53am
.222
Disc Drake Preforr Trace
4|7 679-0 1
11:40am M 9:57am .214
11 :45ora
No. 3 Disc brako prefair No. 1
Trace
.1) 6U0-C
" 10:O'Jam .100
Blok Finish I.D." Trace
i 4 y G01-C
111 49arn
1
10:10am
7201
]1:49am
Crindcr No, 1 Dlok finish Durr Chamfer No. 2
Trace
JsllZI
" iLi55m_ - .227____ r.-lac hralm-orflfori ____Trace
11:47am
No. 2
(') Coiu.ciii 1 a 1 on in excess of TLV.
C. M. Jonea 5. A. Dodson A . M. Foreman Robert Dean Clwood flentz Holmea curl Winifred Henry Paul Jonoo R. L. Dove William Moreland Donald Arnold Ed Farroil DouctIos Clark
)-19661
APPEND!
0. 3
PPG - HUiwiIESTER
IETH0D OF COLLECTION :0D^"I'^*I'QrJOnQl
ANALYfSES OF AIR SAMPLES FOR Methyl Ethyl Ketono
oD'mpllrvg pump vith activated charcoal absorption tubas
iCTHOD OF analysis: Gaa Chromatography
,
5/G/76
DATE ANALYZED: couky
TLV
.ample No. 'ield Lab.
Date
Time
Total(M3) Air Vol. Location
Cone .n'g/W"
OPERATOR
1 630-G 4/23/76 9 :49am
.024
10:20am
Blok finish printer No. 2
3.13
Richard Rennor
2 631-0 1 3 632-0
i
| j
M 9 :43ara .03 10 :23om
n 10101am .03 10:39am
Strip finish hand printer No. 2
2.17
Strip finish printer machine
NO. 10
59.23
Calvin Fox Stephen Michael
l1
l !
i*
f
\ ' i % * *\ 1 n 1 r\ r* >r o ( r* n
C rp T \ f
70 --3
Ponting rcquircD-cnts in locations whore excessive fiber lcvelo ere prccent ere not being observed. Caution signs should be pooted at all approaches to areas con taining excessive concentrations of airborne asbestos fibers. This is an OSHA requirements as set forth in the Code of Federal Regulations, and is listed heroin as a repeat recommendation dating back to our survey reports of August 14-18, 1972, October 2-6, 1972, and September 10-14, 1973 .
7C-9
Employees are not being notified of their own excessive exposure to airborne asbestos so that they can taka appropriate protective measures whether it be through the consistent use of respirators or core careful work habits. Employees should be notified in writing of their personal exposure as soon as practicable, but not later than 5 days of the finding. They shotild also be advised of the corrective action being taken. This is an OSEA requirement as s-et forth in the Code of Federal Regulations, and is listed herein as a repeat recommen dation dating back to our survey reports of August 14--18, 1972, October 2-6, 1972, and/ September 10-14, 1973.
DISCUSSION
During the survey, two or more short term samples were collectec at each of several operators, particularly in Book and Blok Preform, to obtain averages of levels throughout the day. These particular locations are listed below with the actuc 1 and averaged values.
LOCATION
ACTUAL LEVELS f jbcrs/ml
AVERAGE fibers/ml
Book Preform #19 Book Preform it2 Book Preform *4 Blok Preform 4-5 Blok Preform Blok Preform -77
.
3.78 and 4.26 4.41 and 6.G5 3.56 and 6.55 3.74 , 3.01, and 7.10, 4.41, and 5.42 and 6.75
5.19 5.33
4.02 5.63 5.05 5.65 5.61 6.1
It would have been ideal rf 5 separate samples could have bean taken at each location for purposes of closer averaging and to comply with OSHA sampling requirenents . However, in this instance, time vos United since Done asbestos counting was
dona on site la addition to sample collection. The above data do show fluctuations, but none arc cortrcnc, and it i3 apparent that the averages are reasonably representative of actual 8 bom time weighted exposure levels. The short tern method of samp ling Is necessary when airborne particulate concentrations are elevated. Prolonged sampling at some locations overloads the filter, preventing accurate identification and sizing of fibers during microscopic examination, then this happens, erroneous fiber levels of from 10 to 100 times below actual concentrations may be reported.
As indicated in Appendix No. 1, booh and blok preform samples continued to show elevated fiber levels, especially when re lated to the 2 fiber limit scheduled for adoption by OSHA in. July. Since ventilation changes have not resulted in notice able reduction from levels of December 16-20, 1574, it is apparent that sources or points of najor dust release at each blob and book, preform unit have not been adequately ventilated. Host past survey reports have stressed the need for proper exhaust enclosure of the mix buggies and hand transfer portions of the processes. This need is again reiterated. Xt is our understanding that engineering controls are to be installed at the mix buggy locations in Blok Preform in the near future. These plans should also include Book Preform where hooding installations have helped to reduce scattering and spillage, but have had moderate effect cn airborne fiber concentrations.
A recent Industrial Hygiene Eurvey at Salisbury-FPG bas dis closed preform fiber levels ranging from 0.5 to 1-5 fibers/d. One or two locations were above 2 ffbors/nl, but the reasons for tha excursions were easily pinpointed and were attributable solely to poor work practices. The mix buggies and weigh scales are provided with exhaust ventilation at the Salisbury plant which appears to be containing effectively airborne asbestos levels, at least to the 2 fiber level. It Ih sugccstcc that FPG-hTincbester inspect tbs nix buggy enclosures at Salisbury and consider adopting some cr all of their principles of asbestos containment.
There appears to be no clear pattern of aebsstos exposure os it relates to the type of nix being used at the individual work station. Careless work hobrts and/or excessive scatter ing of the nix can be assured to be a factor, but there are no pronounced variations except for airborne lead levels withru the eurvey data to cupport this contention. The operator at blok preform No. 5 was selected for sampling because c the
presence of csbcstoa mix on floors, equipment, end clothing,
end excessive dust generation during ccooping and weighing.
The lovols during three different sampling periods were 8.74
fibers/ml, 3.01 fLbers/ml, and 5.19 fiber c/ml. These voluoa
do not vary significantly from those encountered at core
fastidious blok preform operations. This lack of effect of
parsonal variables tends to further indicate that tbe source
of excessive asbestos exposure is common in origin. Remain
ing, heavy sources of exposure at t-oth book and blok preform
are the mix buggies and the manual operations associated there
with.
'
In relation to the airborne lead results in Appendix No. 2, excursions above the 0.15 r*gAi3 Threshold Limit Value uera confined to two locations in Blok Preform. One of the loca tions was blok preform No. 5 (cample No. 25) which, sa pre viously stated, was selected for sampling because of excessive duct generation and poor housekeeping conditions. This opera tor also worked at Elok Preform No. 3 during the morning hours (sarcoLc No. 10) where airborne lead levels were high (.135 mg/l^) but not above the Threshold Limit Value. It
would be aaviscable to provide this operator with instructions as to proper work habits and the need for consistent good housekeeping.
Throughout tha plant, it was observed that only a few people were waaxing respirators. in known exposure areas, only one man was so equipped. This operator's respirator was not worn continuously during dusty operations, but was only worn when the operator himself felt that protection was warranted. I inspected the respirator after the operator had deposited it on a dusty ledge, and found it to be dirty, and smudged both Inside and out, and tha filter was thoroughly caked with asbestos fibers and particulates.
It is imperative that a respiratory protection program be established in the plant v'vereby all exposed employees are provided with and required to wear approved, properly main tained respiretory protection. This recommendation has been sot forth in several previous reports. Although respirators are provided on a voluntary basis within the plant, this is not sufficient since virtually ail of the exposed employees remain unprotected. To have any positive or lasting effeens the program must be implemented cn a mandatory basin. In addition, the employees should ko thoroughly instructed in the use of the equipment, end a central maintenance; program should bo established.
Maintenance is on important phneo of c.ny control procedure, and 1b aa true for respirator: os it is for ventilation equip-- rivent. No matter her; woll a rorpirator is designed, hew good it3 perforcanco, it cannot give satisfactory protection unless it i3 maintained in good condition. This la one of the moat frequently neglected factors, particularly with routinely used respirators. The operations of a maintenance program, including frequent inspections, cleaning, replacing, or re pairing worn or deteriorated parts, and storage, should be centralized. They should also be supervised carefully by a responsible and capable person since proper care and niaintensnce requires a thorough knowledge of the devices.
All routinely used respirators should be inspected frequently. Tha tightness of connections 3hould be checked, as well as the condition of the facepiece. exhalation and inhalation valves, connecting tubes and/or cartridges, and cannisters.
Respirators should be cleaned after each use, and they should be collected at a central point at the end of each shift for cleaning and inspection. Each employee's respirator should bear some sort of identification, such as his initials or clock number. When a worker receives a respirator, he should be briefed on the cleaning procedure and assured that he will always get the same device. If the respirators are serviced between shifts, only one respirator per worker is needed. If the cleaning is done during a shift, each worker will require two respirators. Tfhen not in use, the respirators should be stored in clean cabinets at convenient locations in the work area. As long as each respirator is assigned to only one person, there is no reason to require special sterilizing. Scrubbing with warm water and soap, rinsing, and air drying is adequate. When tha respirator is used by only one indivi dual, a practical method of cleaning is as follows*
1. Remove the filter or cartridge and discard. o
2. Wash m detergent or soap in warm water.
3. Rin3Q completely in clean, warm water.
4. ,? ir drv the device m e clean area.
5. Inspect the valves, beadstraps, end other pareaf replace with nr; parts if defective.
6. Insert new filters or cartridges; make Gure tho coal
Is tight.
7. Place in a plastic bag for storaga.
After cleaning, inspection, and necessary repair, the respira tors should be stored ir. dust proof containers, away from sun light, heat, extreme cold, and excessive moisture. Plastic bags are adequate for routinely used respirators. They chould not be stored in clothes lockers or tool boxes, care should be talcen to see that they arc packed or stored so that the rubber facepiece and exhalation, valve will rest in a normal position end function will not be impaired by the rubber set ring in a bent or twisted position.
CCKCLU5IOMS
Housekeeping had been improved at several locations through out the plant, particularly in Lower and Upper Compounding. Further improvement is needed in Elok and Book Freform.
Significant asbestos exposures are limited to two departments where design and installation of exhaust equipment are under way. Efforts choulc bs concentrated or. ventilating mix buggies and ancillary manual operations In both Ecok and Elck Preform. Interim protection in the form of respirators should be provided for the operators. Use of the devices should be a condition of employment in these two areas.
Isolated asbestos exposures at Disc Brake Inspection and the dry line operation in Lower Compounding require engineering control. Interim protection in the form of respirators should be provided for the operators.
I would like to thank Bob Erov.-n and Charles Hallory for their considerstior. and support during the courte of the survey.
G/3 0/76
t'.. D-vid Indo atria1
Cert_f
ABEX CORPORATION INDUSTRIAL HYGIENE SURVEY
GLOSSARY
cfm
- cubic feet per minute
Daily noise
dose
- A numerical expression of the total noise exposure an employee receives during the day. If the daily noise dose exceeds 1.00, the noise exposure to the employee is excessive.
dBA
- Decibels symbol denoting the relative intensity of
sound pressure levels (re: 0.0002 iyne/square cent:
meter)
.
f pm GRA mg/M^
* - feet per minute -- General Room Atmosphere -- milligrams per cubic meter of air
MS#
-- Medical Study No.
jpcf NIOSH approved
-- million particles per cubic foot of air
-- Approved by the National institute for Occupational Safety and Health
OBZ ppm
-- Operator's Breathing Zone -- parts per million by volume
PS -- Personal Sample
TLV Ventilation-
-- Threshold Limit Value for an 8 hour daily exposure
f
-- The terms ventilated,*ventilating, or exhaust impl^ the use of mechanical means such as a fan for air movement unless otherwise noted.
CONVERSION CHART DAILY NOISE DOSE/8 HOUR EXPOSURE
TO dBA/8 HOUR EXPOSURE
Daily Noise Dose/8 hr.
0.50 1.00-fOSHA MAX.
1.14 1.33 1.50
1.71 2.00 2.28 2.67 2.99 3.43 .. 4.00 4.57 5.33 6.01 6.83 8.00 ` 8.88. 10.00 11.42 13.33 16.00 17.17 20.00 22.85 26.66" 32.00
dBA/8 85
LIMIT----------) 90 91 92 93 94 95 96 97 98 99
100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115
r.
`
'
Permissible Employee Work Exposure Time
16 hours _ 8 hours
7 hours ' 6 hours
5.33 hours 4.67 hours 1 hours 3% hours 3 hours 2.67 hours 2.33 hours . ; 2 hours 1.75 hours 1.50 hours 1.33 hours 1.17 hours 1.00 hours _ 0.-90: hours 0.80 hours 0.70 hours 0.60 hours 0.50 hours 0.45 hours ' 0.40 hours 0.35 hours 0.30 hours Less than 0.25 "
I9GG1 '
i.> '
I' _ AFP)?
X MO. 1
FPG - WixjCHCnTCR
ANALYSES OF AIR SAMPLES FOR ASBESTOS
njOD OF COLLECTION : ODZ-P5_ incmbinna .ltcr with poracnal sampling pump at 2LPM
TJIOD OF ANALYSIS:
ciroccopy
I
inple NO . c 1 d Lab .
Da Le
1!1 G33-G 4/2 0/76
1 G34-G
!
311 63 5 --G
i M
4 636 --G
5i 63 ;-g 1 G 6 3 0-0
II
7 639-0
$4
U 640-0 9 641--G
II II
10 642-0
M
11 64 3 -G
n
121 644-0
1
n
COhtra.t
Total(m3)
Time Air Vol.
9150am
.093
10 137an
9 :46arn
.094
10:35an 9:53am 10 :3Cair
.009
9:56am
.006
10:40om 9 :58am
.092
10:44am
10iOUam
10:44am
10:04aro
.006 .000
10:45om 10:07am
.076
10:47am 101 11am
.068
10:46am
10:20am
10i53am
10:20om 10; 54ain
.065 .049
10:30am .046
101 55am
Location
fibcra/ml Cone.
Book preform #19 mix Ho. 551-D Doolc preform 02 mix No, 555 Book preform 1'20 mix No. 555 Doolc preform <14 mix Ho. 551-D Book preform <lrl3 mix Ho. 551-D Book praform ^14 mix No. 27C Book preform ftl6 mix Ho. 551-D Book preform fJ21 mix Ho. 551-D Dook preforn-tranoient operator Blok preform =(15 mix No. 555 Dlok preform #2 mix No.562-5 Blok preform <|-1 mix Mo. 551-D
3.70* 4.41* 2.91* 3.50* 3.97* 7.12* 4.70* 5.96* 9.10* 0.74*
7.10*
6.98*
DATE ANALYZED: 5/27-20/70 ANALYST: M. Desouky TLV: 2 f iboro/ml >5/j in length
(effoctivo 7/76)
OPERATOR
W. D. Bowen
Robert Leaver
I
i
,
i ii
J. F. Ganoo Martha Ratliof Georgo Brov/n
i
;
i
,
Holmoo Patton
Jornoo MorriG
0. N. Turner
Noloon Spencer Joanna Powell
Sally AlbarL
Douglas Rinard
( A \ ( , ^ n oni ni inn in exposa of TT.V .
I
' 9661 !
,
0'
APPENDIX . 1
PPG - NHICUESTER ANALYSES OF AIR SAMPLES POR ASDESTOS
/niOD OF COLLECTION: ODZ-PS - ilombrano Liter with pornonal campling pump at 2 LPH
:thod OF ANALYLxS: Phono Contraot Lcroncopy
'
1
unple No. j
i.eld T.nVi.
Date
13 645-G 4/2 0/76
1 1<J 646--G
u
15 647 -G i
16 64CJ-G 17 64 9--0
M t
10\ 650-0
19 651-0 !
20 652 -C
u II *1
tr~ 653-0
n
22 654-0
o i f, r r -c 24i 656-G
25 | G 5 7 --G
M 1)
H
Total (M-^)
Time Air Vol.
10 i2 0am 10:50am 10i35am 10i56am 10i37am 10:57am 13 lank 10:4 0am 10:58om 1:40pm 2:21pm 1:54pm 2 :2 6 pm 1:44pm 2:10m 1:46pm 2 :12 pn 2 105pm 2:20pm
n] ank
2 clOpra 2:32 pn 2 :21pm 2 :4 4 pm
i 059 .037 .038 Blank . 0J4 . 0G5 .064 .052 .052 .040 clank
.042
.0-44
Location
f i)?ers/rol
Cone.
Blok praform ;7
5.42*
mix No. 551 Book preform #2
6. US*
mix No. 555 Book preform #19
4.26*
mix No. 551-D Book Preform Book preform <.V4
Blonk G.55*
mix No. 551-D Blok preform #5
3.01*
mix No. 555
Blok praform #15
4.06*
mix 1X5. 551
Blok preform #2
4*41*
mix No. 551 Blok preform #7
6.76*
prLx No. 56?c5-------------
Blok preform #11
11.47*
mix No, .539
_
nlok preform ...
Dlok preform #2
Dlnnk
5.33*
Rix no. 551 .
_
Blok preform 115
5.10*
mix No. 55l~D
DATE ANALYZED :5/27-20/76 ANALYST: M. Dccouky TLV: 2 iiboro/ml >5p in length
(offoctivo 7/76)
OPERATOR Louia Nicholoon
Robert Wanvor
W. D. Dowan
Blank Martha natlief
Joanna Powell
Ralph E1oo3gc
Sally Albort
Louia Nicholoon
Glen Llewellyn
Blank
Sally Albort
Joanna Powoll
Concentration m excess of TLV.
D-1I9GG1
APrENDX 0. 1
FPG - WINCHESTER ANALYSES OF AIR SAMPLES
FOR
ASBESTOS
lETHOD or COLLECTION: OGZ-PS -{'iQicbxanQ filter with pccoonal oampling pump at 2 LPH
1ETH0D OF ANALYSIS: Phase Contrast itict oocopy
DATE ANALYZED 5/27-20/7G ANALYST: II. DGQOulcy TLV 2 fiboro/ml >5u Ln lcngt
(aCfoctivo 7/7G)
Sample No. - , X i a Tj
i G G50-G
2,7 059-G
2|U GG 0--G
2 b GG ] ~C
10 G62 -G 1
Jll G6 3-G
32 664 -G
33 565-G
3 4 jGG~G
3 5 667 ~G
36 pG0~G
1
37 3G9-G
Date
4/2I/7C
U It
rt
"
It
it " It " 1'
U
Total (M-1)
Time Air Vol.
10 t 07m
2 :4?pui 10:02ar 2 103pm 10j20ar
.506
.470 .437
2 :?7pm
10:05or ?i10pm
10 :12nr
2 : .I4pm 10:20or 2 :16|tm 10:230[ 2:26pn
ll:30on
2 :36 pm
11:40on
.475
.4G2 .442 .459 .342
.243
1:43 prfl
11:45an 1:50pm
11 i31nn 2 : 35m 11i35orr
. 2G3 .300 .255
1:45pm
Location
fibers/ral
cone.
________________OBcruLTCin______
inopaction and packaging Strip finish O.D. grinder i'P Lender compounding rubber mill No. 1 Strip finish bnckqrindor >',)3 Dice braka inop.
0.70 0.50 1.01 0.14 3.07*
Jamoo Bayliao Goorge Chambers Jaroco Royston Allan Cartar Cugono Willingham
Inap.(Grouping) at downdraft bench Lower Coinpounding Rubber Mill llo. 3 Upper compounding
Dry Lino Opor.
Uppor compounding powder pumper . . Lovrar compounding ppv Lino ora, ...
Uppor Compounding
pc^dci; pumper Uppor compounding AobeotoQ \A3ighor
0.62 0.66 0.34 0.30 4.53*
0.71
1.45
Robart Clark Marcus Lioinoa C. B. Fauvor Joseph Painter A. M. Foreman
Gono Kllno
S. A. Dodoon
1 (M
concent. ration m exces3 of TLV.