Document KG3KyN7oKaD6vdQOoEY2ZLnBx
CTD023042
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Industrial Hygiene Survey RIVERSIDE A/C PIPE PLANT
May 24-27, 1982
TITLE PAGE-STOCK NO 100TP
JL1__
-tedSEfiM
R eport
CertainTeed
Date July 26, 1982
SubieCt
INDUSTRIAL HYGIENE SURVEY
RIVERSIDE A/C PIPE PLANT MAY 24-27, 1982
To
Naamen Rhoades From
Peter Norris
Location and mail code
Riverside, #260 Location and mail code
1125/4
cc: F. Timpe - 2125/2B J. M. Coulon - 2125/2B J. McGinley - 2125/2B D. Hall - 2125/2B L. Megargee - Riverside, #260
Attached are the results and recommendations of the Industrial Hygiene Survey conducted on May 24-27, 1982. If you have questions or comments, please contact me.
PJN/cr Attachment
i-ta^ooa
ctD023043
CertainTeed
Date July 26, 1982
Subject
INDlJSTRIAL HYGIENE SURVEY
RIVERSIDE A/C PIPE PLANT MAY 24-27. 1982
To
Naamen Rhoades From
fid
Peter Norris..
Location and mail code
Rivers ide, // 260_ Location and mail code
1125/.4.
cc: F. Timpe - 2125/2B J. McGinley - 2125/2B D. Hall - 2125/2B L. Megargee - Riverside, #260
Attached are the results and recommendations of the Industrial Hygiene Survey conducted on May 24-27, 1982. If you have questions or comments, please contact me.
PJN/cr Attachment
CTD023044
Industrial Hygiene Survey Riverside Asbestos/Cement Pipe Plant
May 24-27, 1982
Introduction
An Industrial Hygiene Survey was conducted at the Riverside Asbestos/Cement Pipe Plant by Peter J. Norris of Corporate Health and Safety on May 24-27, 1982.
This survey was conducted to supplement the on-going in-plant asbestos fiber exposure surveillance program. Additional monitoring for total and respirable silica dust, welding fumes and noise was also performed.
This report is an employee exposure record as defined in Corporate Procedure GE003.02 and must be retained for 30 years. Upon request, this record must be made available to those Federal officials, employee designees or employees as provided for in Corporate Procedure AD011, paragraphs 7 and 8.
Appendix I of this report documents the air sampling methodologies; the analysis techniques; and the current standards used in evaluating the data. The field and in-house laboratory notes on this survey are on file in Corporate Health and Safety.
Summary
All personal exposures and environmental levels of asbestos were below the OSHA PEL of 2 fibers per cubic centimeter of air.
All respirable and total silica dust samples were found to be below the OSHA permissible exposure levels.
Sampling for Nickel, Chromium and Manganese metal fumes during welding operations were found to be less than the OSHA PELS.
A noise survey showed that the Lathe Operators, Lathe Assistants, 1/4 Tester Operator, Hydrotester Operator, Pipe Handlers, Cutoff Saw Operator, Boring Mill Operator, FM Lathe Operator, Coupling Tester and the Crusher Operator are exposed to noise levels of 90 dBA or greater and are required to wear hearing protection. Employees exposed to noise levels of 85 dBA or greater are the Machine Tender, Mandrel Handler, Press Operator, Coupling Cutoff Saw Operator and the Boilerman. These employees should be placed in a hearing conservation program and the use of hearing protection be encouraged.
CTD023045
Industrial Hygiene Survey Riverside Asbestos/Cement Pipe Plant May 24-27, 1982
Date Monday 5/24/82
Tuesday 5/25/82
Wednesday 5/26/82
Thursday 5/27/82
Manufacturing and Finishing Schedule
Manufacturing Department 1st. Shift
8"150, 666 pcs Downtime - 0 hrs
Finishing Department 1st. Shift
10"150 18"150 18"2400GS 18"FT30
8" 1 50, 11 pcs 16" 150 , 15 pcs 24" 150 , 41 pcs 24" 100 , 11 pcs 24" 150 c/s , 2 pcs Downtime - 1 hr.
10"150 24"3000D SD
21" FT 30, 70 pcs 24" FT 30, 99 pcs Downtime - 1/4 hr.
8" 150 10"150 10"200
12"150, 192 pcs 12"200, 52 pcs 12"150 c/s, 21 pcs Downtime - 1/4 hr.
12"150 24"150 24" FT
-2-
CTD023046
Industrial Hygiene Survey Riverside Asbestos/Ceraent Pipe Plant May 24-27, 1982
Asbestos
Table I shows the results of the personal samples performed on the pipe manufacturing, pipe finishing, and plant maintenance personnel. The results of the environmental/area samples are listed in Table II and a summary of the sampling results are found in Table IV.
Exposure to asbestos fibers is very well controlled in all areas of the plant and meet the present PEL of 2 f/cc. Forty-five samples or 98% were less than the proposed OSHA standard of 0.5 f/cc and thirty-three or 72% were less than the recommended NIOSH standard of 0.1 f/cc.
The in-house sampling program is being well implemented and a comparison of the plants results with this survey show good correlation.
Manufacturing Department
Housekeeping in this department is excellent. The warehouse is very well kept, no open/torn bags or loose fibers were observed in the warehouse.
Personal exposure samples were taken on all job positions in the department. A number of environmental samples were also taken to determine general airborne levels of asbestos fiber in the area.
Fiber exposure levels were found to be generally less than 0.1 f/cc and all exposures were less than 0.5 f/cc. Samples on two separate days on the Mixer Operator varied from 0.007 to 0.209 f/cc. This is not to be unexpected considering the number of tasks he performs, from staging bags for the opener, driving fork lift truck, and operating Tennant floor cleaner. He must also, on occasion, open the access doors to the bag opener to unjam the fiber bag compactor system. He was observed to wear a 3M 8710 dust respirator. While his exposure does not mandate this, it is an excellent precautionary measure considering the variety of tasks and potential for short term higher level exposures.
Air flow measurements on the hag opener conveyor entrance, portholes and access door openings were in the range of 200-250 ft/min and higher providing excellent negative pressure to minimize leakage from the system. Visual observations using smoke tubes showed excellent air movement characteristics. An environmental sample (037) taken on the bag opener ledge directly in front of the operator's control panel found no appreciable leakage occurring from the opener in normal operation.
-3-
CTD023047
Industrial Hygiene Survey Riverside Asbestos/Cement Pipe Plant May 24-27, 1982
Manufacturing Department (cont.)
While dust transport velocities from the opener to dry mixing could not be obtained due to lack of access, visible observation of the plexiglass section at the old bag dumping section shows excellent flow characteris tics.
Two environmental samples on the second level near the mixer (038) and next to the spreader (039), measured 0.76 f/cc and 0.4 f/cc, respectively. The relatively higher levels in these areas probably reflect a lower level effort of housekeeping or minor leaks in the operations. If the asbestos standard is lowered to 0.1 f/cc in the future, better fiber confinement and housekeeping in this area should be considered to reduce the general airborne fiber levels in the department.
Finishinq/Fittings Department
Housekeeping and control of asbestos fiber in this Department is excellent.
Personal exposure samples were measured on all job positions in this department. A number of environmental samples were also taken to determine general airborne levels of fiber in the area.
Fiber exposures were all less than 0.5 f/cc and most were found to be less than 0.1 f/cc. The highest levels were found on the Coupling Loader Tester, 0.253 f/cc and the Crusher Operator 0.241 f/cc. The latter employee also operates a forklift and dump truck. Environmental samples in the Finishing Department all measured less than 0.1 f/cc.
Exhaust ventilation face and capture velocity measurements on all finishing tools in operation during the survey found to meet or exceed the American Conference of Governmental Industrial Hygienists recommended practice (Ref: ACGIH Industrial Ventilation Manual - 16th Edition).
The capture efficiency of the large lathes is periodically compromised by the buildup of tailings generated in cutting. The particles or pieces generated are too large to remain airborne and settle in the entrance Reducing the capture efficiency. It is recommended that the tailings be cleaned out prior to each shift and checked during the shift and cleaned as necessary.
-4-
CTD023048
Industrial Hygiene Survey Riverside Asbestos/Cement Pipe Plant May 24-27, 1982
Respiratory Protection
Even though asbestos fiber levels are below the PEL, disposable 3M 8710 model respirators and reusable Willson 1200 model respirators are used by some employees in the plant. This is an excellent added precaution in case of any short term exposures over the present PEL. I noted a few problems in the plants respirator program which are not consistent with the OSHA regulations governing the use of respirators.
- There are no written operating procedures governing the selection and use of respirators pertaining to the plant. These should include all information and guidance necessary for their proper selection, use, and care.
- The respirators were not qualitatively fit tested to the employees who wish to wear them. This test is used to select specific types, makes, and models of negative-pressure respirators for use by individual wearers. This qualitative test shall be carried out at least annually on each individual and utilizes irritant smoke or an odorous vapor.
There is no maintenance program established to clean and sanitize the respirators, inspect and replace defective parts, and store them in a manner that will protect them against dust, sunlight, heat, excessive moisture, or damaging chemicals. These sections are required by OSHA if respirators are to be used at any location. Attached to this report is an outdated copy of the American National Standard on respiratory protection and a copy of a 3M New Products Bulletin pertaining to their 8710 models. The information which is of interest to you is still current and can be of help in complying with the regulations.
Silica
All measured silica exposures for both respirable size and total silica dust were below the OSHA PELS. The results of these samples are provided in Table III.
It should be noted that the silica sampling method measures all dust and the PEL will vary depending upon the percentage of silica in the sample. In Table III, the total or respirable dust exposure should be compared to the calculated OSHA PEL stated in the remarks column for evaluating the silica exposure. To compare with the OSHA Nuisance Dust Standard, the total or respirable dust exposure should be compared to the applicable OSHA PELS of 15 mg/m3 total dust or 5 mg/m3 respirable dust. Formulas for calculating the silica PEL are provided in Appendix I.
-5-
CTD023049
Industrial Hygiene Survey Riverside Asbestos/Cement Pipe Plant May 24-27, 1982
Silica (cont.)
The silica exposures for the Boring Mill Operator is approaching the OSHA PEL (0.82 vs. 1.0 mg/m^). The Coupling Saw Operator exposure was right at the PEL (1.25 vs. 1.3 mg/m^). Using the OSHA published procedure for compliance monitoring, we cannot state with 95% confidence level that these exposures did not exceed the PEL.
[Note: When an employee is sampled and the results analyzed, the measured exposure will rarely be the same as the true exposure due to sampling and analytical inaccuracies. To account for this in compliance monitoring OSHA uses a one-sided statistical confi dence test to be able to state with 95% confidence that the PEL was definitely exceeded - Upper Confidence Level (UCL), the PEL was not exceeded - Lower Confidence Level (LCL), or they cannot be sure it was exceeded or not. They state the Sampling and Analytical error (SAE) for silica is 0.24. To determine the UCL and LCL, first divide the concentration measured (X) by the PEL, i.e., Y = X/PEL.
The UCL (95%) = Y + SAE The LCL (95%) = Y - SAE
These formulas apply only to full shift samples. For multiple, consecutive samples a different procedure is used.
Thus for Sample 049:
Y = 0.823/1.0 = 0.823 UCL = 0.823 + 0.24 = 1.06 LCL = 0.823 - 0.24 = 0.38
Since the LCL is less than 1.0 and the UCL is greater than 1.0, OSHA would classify this as a possible overexposure, possibly take more samples, but would not issue a citation.
Our recommendation is to monitor such positions more frequently, improve housekeeping and check for and eliminate leaks in the system.
For sample 052:
Y = 1.25/1.30 = 0.96 LCL = 0.96 - 0.24 = 0.72 UCL = 0.96 + 0.24 = 1.20
-6-
CTD023050
Industrial Hygiene Survey Riverside Asbestos/Cement Pipe Plant May 24-27, 1982
The same conclusion as above for sample 049 applies. OSHA would be more prone to retest this area however, because of the higher UCL making it more probable that the PEL may be exceeded.
If the LCL exceeds 1.0, they would definitely issue a citation. If both the LCL and UCL are less than 1.0, you can be 95% confident the PEL was not exceeded.
^The same analysis can be applied to asbestos sampling using an SAE of 0.25 for full shift monitoring.]
Welding Fumes
Personal samples were performed on the plant welder, P. McGregor, to measure his exposure to welding fumes and to evaluate the effectiveness of the local exhaust ventilation system in the maintenance shop. Twice a month, P. McGregor removes the grates and hammers from the secondary crusher, and rebuilds the metal up and/or squares off the part with 3/16" x 14" manganese, nickel-chromium alloy electrodes and 3/16" x 14" chromium hardfacing overlay electrodes. Nickel, Chromium and Manganese metals are the predominate metals found in the welding rods and the secondary crusher parts. Sample 055 and 056 were analyzed for these three contaminants and were found to be less than their respective PELS. Nickel and Chromium both have a Permissible Exposure Limit of 1 mg/m^ and Manganese has a Ceiling Limit of 5 mg/m^. A Ceiling Limit refers to a limit which should never be exceeded even instantaneously.
The ventilation hood capture velocities were found to be a minimum 150 fpm at 9 inches away from the flanged duct. This is adequate exhaust ventilation for the control of welding fumes as recommended by the ACGIH Ventilation Manual.
Noise
The major sources of noise in the plant result from the various machines used to cut the pipe and fittings, i.e., Lathes, boring mill, saws, drills, various pipe testers, the crusher. Lesser noise sources are motors, gears, chain belts, and impulse noises from pipe and mandrels impacting.
The high level noises generated in the Finishing Department also raise the noise levels in Manufacturing. Reducing noise in the Finishing Department should be a first priority as it affects the most number of employees. This is no small task either technically or cost-wise. Technically, it may be beyond the capabilities of plant or group engineering and outside acoustical consulting services may be needed.
-7-
CTD023051
Industrial Hygiene Survey Riverside Asbestos/Cement Pipe Plant May 24-27, 1982
Noise (cont.)
The following discussion is intended to suggest possible measures for reducing the noise' sources in the plant. No specific recommendations are being made except a general recommendation that noise abatement efforts be increased and all efforts, including rejected suggestions be documented. The documentation, including rejections based on excessive costs is important for defending against OSHA citations. It should be noted that the OSHA regulation does not require that you engineer noise to less than 90 dBA, but rather that you do everything feasible to reduce the noise when exposures are above 90 dBA.
It should also be remembered that a reduction of 3 or more db is a signifi cant reduction because of the logarithmic decibel base.
Damping
A major source of noise in cutting operations is resonance from the vibrating saw blade. Damping of the vibration by adding mass and structural rigidity such as in Fig. 1 is a common method of reducing noise from these sources.
Silencers
The use of silencers or high velocity air exhausts is a common method for attenuating noise which may have application on the air noises from the large lathes and hydrotesters.
Isolation
Probably the most effective means of reducing the noise exposure to the most employees would be to isolate some of the noisier Finishing Department Lathes, such as the 1/4 Tester.
To minimize interference with work processes, the use of flexible curtains or transparent strip curtains made of vinyl, rubber or lead impregnated fiberglass is suggested. These are commercially available from a number of sources. Isolation for lathes, saws, etc. will not reduce the exposures to the operator, but will substantially reduce the transmission of noise to other areas of the plant. A combination of saw blade dampening and isolation could produce significant reductions to both the operator and other employees.
-8-
CTD023052
Industrial Hygiene Survey Riverside Asbestos/Cement Pipe Plant May 24-27, 1982
Sound Absorbing Ceilings Sound absorption using materials such as acoustical foams and fiberglass are particularly effective with high frequency noise, i.e., 1000 cps and above such as generated in the Finishing Department. Typically, the lathe and saw noises while cutting all pipe generate most noise at frequencies of about 1 to 2 Hz (1000 to 2000 cps). Ceilings, or panels suspended from ceilings, using good sound absorbing materials will substantially reduce noise in this type of environment. A typical installation is shown in Fig. 2.
Impulse Noises The bumping of pipes and mandrels produces impulse noises in excess of llOdb. While the number of impulses are relatively few and their contribution to the total acoustic energy entering the ear are relatively low as compared to the continuous noise sources, they are a source of hearing loss and loss of comfort in the plant. Dampening of these noises by the use of rubber guards at key impact areas is a possibility. These are a few methods of noise control but in the interim, high noise areas (greater than 90 decibels) should be posted and the use of hearing protection be required by the employees. Employees exposed to noise levels of 85dB or greater are advised to wear hearing protection, and a hearing conservation program be established to incorporate all employees who have a risk of occupational hearing impairment.
-9-
CTD023053
Industrial Hygiene Survey Riverside Asbestos/Cement Pipe Plant May 24-27, 1982
Recommendations
1. Clean out pipe tailings in the ventilation system prior to each shift on the Large Lathe lines.
2. Update the respiratory protection program to insure proper protection for the individual wearers and to comply with the OSHA regulations.
3. Resampling for silica dust should be performed to substantiate the airborne concentrations measured during this survey. Equipment and instructions will be forwarded to the plant safety manager in the near future.
4. A Hearing Conservation program should be established for employees who are exposed to noise levels of 85 dBA or greater and 90 dBA or greater for an 8 hour day.
This is contained in the elements of the unit programs found in the Corporate Safety Manual which include periodic audiometric testing, use of hearing protection, and recordkeeping. Refer to the unit programs on Hearing Conservation Occupational Noise Exposure and Audiometric Testing for details.
5. Noise abatement efforts in the finishing department should be increased and all efforts should be documented for compliance purposes. The services of an acoustical consultant should also be considered in solving these noise problems.
-10-
CTD023054
Imluntrifll llyii !* ,':irv*y
Kiv.-tnMr A/r I'lj..' I* 1 .tu l
H.y 24-2M,
TMU.K __ ]___ Personal bust HK|K*SUt rc
NO. 62
position LOCATION
(DATfc)
NAHK/AKLA
1(tf (' 1 >.')
MMllHACTUKlNG 1!U*M<TM.NT
ANALYSIS FUR /:
0 01,4pixer May 24, 1982
002/i Mixer May 25, 1902
Joe Contreras
!'
Joe Contreras
1 1
Filje'r Kibor
)
003
Machine Tender May 24,
1902
Albert Horton
Fiber
TIME
Mill
KEbULT f/cc*
TWA FOH `.AMI-I.E PLKIOt) If/cr.J
10:28aItOSp
157
j.dC
o.oi
i,h:
KhMAItKb
Wore 3M 671U Jut,t respirator 0*150 j>i j>c p:o<lucc<t
0:Of>a2:54p
4 11
2^
0.21 c?f T*
Wore 3m B71U dui.t. reap::ator
10:39a14:35p
2.16
0. 17
2^1 S'
/2>l.3lk3
6*150 j>ipc piodured
004
Press Ope lator May 24, 1902
John Peterson
Fiber
10:36a2:30p
242
0.01
J.o
%n toi<j
8*150 pipe produced
005
Mandrel Handler May 24,
1902
John Casas
Fiber
10:32a2i34p
242
0.09
{ C r' \
8*150 pipe produced
^
006 Supervisor May 24, 1982
George Bixler
007 ripe Stripper Kay 24, 1982
Glen Soncrant
008 Tray Loader May 24, 1982
Joe Ledford
Fiber Piber Fiber
10:43a2:36p
233
0.16
/' Lit ^
/--
150 pipo produced
/O 2 '2 ! ->-
10:55a2i4Pp
233
1 6"7
0.02
( 0 oL_ {&
8*150 pipe produced
10:49a2:40p
231
0.01
o 0-:3
0 -631-8
6*150 pipe produced
009
Tray Loader/ Truck Operator May 24, 1982
Harry Cole
Fiber
10:52a2:40p
220
0.07
l-^
8*150 pipe produced
010 Relief May 24, 1982
Ed Renfro
ribfer
FINISHING DEPARTMENT
011
Lathe Operator tl May 26, 1962
Oavid Pas 11las
Fiber
012
Hydro Tester/ Lathe Aset, Kay 26, 1902
George Ray
j Fiber
11:05a2:4 Ip
216
6:07s):06p
\
\ \ 8i16a-
y 3:06p
419 400
0.09
Relieved: ' Mandrel Handier
1105 - 1125 Press OjieraLor 1125 - 1145 Machine Tender 1145 - 1200 Forklift Operator/ Warehouse Cleanup 1200 - 100 Mixer Operator 100 - 300
a
0.07
?.23kc| 0*150 Type II pipe finished
0.03
, B"150 Typ. II plpo
b| 3,' / 2> ' (ifinl.hcd
*f/cC' fibers per cubic c<ntlatr of lr
CTD023055
Inituiii i lal Hy!i
:;>m v'y
HlwrnMr A/r I'I|h> II.ml
May 24-/M, 1*JM2
TMil.1. __1
For Him al inirtt Fx|,:inr,fi
NO. 02
POSITION ROTATION (PATH)
NAML/AKLA
A
r*M aJ
ANALYSIS FOR
013
Hydro Tester/ ri|H* Handler May 20, 1902
Avery Albert
ri A
FLtf/r
T1MK
MIN
8:02a3 :0 Ip
KKSULT
,/ec
IVA FOU SAMPI-L
KFHAKMi
f
/ C' <7 a t
i(j> ' 0& Z- | *7-
Lathe Line 11
8MS0 fimshej
11 j>1j>c
00 0
<cr-
&--
0 14 Nil** Handler May 26, 1902
Richard Ajnaro
i
1
01S Inspector May 27, 1902
Benny Granjlllo
1________________
010 017
Suixrvieor Kay 27, 1982
1/4 Tester*
t
Operator
Hay 20, 1982
Roger Schielke
1 1 Jeff bobbt
FlKer
Fi^er Fiyr Fiiior
8:05a3:00p
415
0.04
If 1,0'l
/Lathe Line 11
Vi a',5 Tvi- n pipe
finifihod
j 7:29a- 451 i 3i 00p
0.17 ^3. Si $ ZT^1"0 u"* "
j 7:25a- 455
^ 0.004
3:00p
| 6:12a- 411 3:03p
0.14
IIQ9
^ 0*150
018
Boring Mill <2 Operator Hay 27, 1982
Phil Dobbs
019A|Cutoff Saw
Operator 11 t (2 Hay 26, 1982
Greg Pal<xnara
02< FH Lathe
Larry Gil
/ nO May 26, 1982
Qhu__________
0^" Fittings
j \t- iCluer ^ Hay 26, 1982
Brian Taylor
ov
(MM Fittings
^ \ Maker 0* Hay 26, 1982
0^
Chris Hamilton
\/ l
Fi^r
Fi^r
!
F^r
j
Pib^r
'
!
F*(w>r
/
7"20a3:0 Ip
461
l-^o
0,06
6*150 T
l9-9o%^
7:32a10:46a
196
0.05
rty11:45a- l'l 0.0,
2:52p
Z3 7?^.,50
U plpo
0.045
and 10*200 Type II pipe. 751 of time on 12 Cutoff Saw.
;z5,op-
7:45a2:55p
430
0.01
2,02-
7:50a11:55a
S4S|.W -s
11:55a 2t57p
\-Yi
762
0.04
a 4?^
0:29a10:48p
11:55a2t58p
< 1163 0.07 a is
7. 18`Sevor
3$ ,1/1 ^'7^*rlou" P'r*5
0.045
/$,
^ *$"7^3-7^rious pipa
0.06S
Core Drill, Stone Hinge Drill
3V\mU4 .
CTD023056
1 ii.luut f ia1 Hy ii i-no Suivcy KlvrlfMn A/C Wp* Plant May /4-ill, |mm,'
TMH.I. )Vt niinnl Punt KxjmnuroB
NO. 82
POSITION LU'ATION
lu`TE'
NAKE/AKKA
iv ;.[' ?'!
Coupling
Janet Biveno
; ^.Tesler/LoaJer L ' Hay 26, 19U2
(
' `1 '
opy/
' , ' C-'
p> '
ANALYSIS POI
TIME
LcJ'C.
^^
Fil>er
\
7; 57a12 ` 4 7p
H1N
RESULT
/V[ l(-\J {/cc
290
/ 0*14
$0-'
1 4&
1VA TOR
JIAHI'U.
KWAKKS
PEKIuO If/iT)
. rA *
TTT77rT7w75 ~Y, /l757a - 910 a
/ 0 "7 '^2'^""Loader In Shipping
0.15
Yard
---------------------------------------
/
V>
12i47p- 137 | ,( 0*16
3;04p
j" '/
J
. 1147a - J04p
^Coupling to end of ' ' 10*200 pljK! on lathe
line #2
C\2& Coupling
Tcator/Loader a Hay 27, 1902 C3'l(-
Janet Bivens
Fiber
OZS^Forklift
' . Cp
Operator May 26, 1902
Anzy Sanders
1 Fiber
1 |
ouK
0/ ' '
Gel Crusher
/ , f /Operator f' Way 27, 1982
Tony Silv
MAINTENANCE DEPARTMENT
Electrician ,r Kay 25, 1962
Ren Swank
Tiber
! Fiber
Ojl^Kachinist
P -
Kay 25, 1982
0l4 Boiler
/ , Operator ' `y Hay 2S, 1982
Joe KcFann Don Keuton
Fiber
Fiber
\ j
7t35a2t5Up
443
0
0.25
^
t
1 k J735a - 930a ` Coupling Tester
930a - 1015a Loader 1015a - 258p Coupling Tester 8*150 T Pipe
7i38a11t52p
252
0
0.01
1l:52a2156p
00
0.01
' . -u
^ / "* --Roams around entire
0*01
*
__
'{ . 1 bl-C.^
plant and pipe yard., Trucks various nice for the day*
12:25p3*13p
168
0*24
. p'r.-i*.'
I ,50 '^
n ^
J1
,,,, .
4 ) s' t
Forklift operator Dump truck operator .Ibo
1
7t40a3!00p
440
0*01
i.i&
.p
Roams throughout the pl*nt
| 7i30a- 451
0>01
-j
j
,,0'p
1, 1f7
J Remains in shop
J 7i35a- 431
0*004
Time spent in machine
2*46p
9/j /'0
U 7 \Jp'l'l^P \ J
shop. Boiler Rocra, and autoclave area*
CTD023057
Jn-tm.l i till 1ly.| I ctic Mu v.y RUvimM.- A/f I'lpc Flnut May 24-.'M, 1 'Hi
TAW J- 11 Ktwi roiwMwit at lAi'iL Levels
NO. 02
POSITION LCCATIOH
(DATL)
NAKfcl/ARF.A
. ANALYSIS K>R
yf
Awbostny bag Wd 1 CtlOUbC May 27, 1902
Area
^
i ' ft
;
Fiber
r/t-
Asbestos bag Wdl'choUSC Kay 27, 1902
At Cd
^
< Next to bag Opener May 24, 1982
Area
(
! ! ii
1\
J03lf Mixing 3, f Kay 24, 1982
Area
(1^9^ Karuf acturing May 27, 1982
Area
Fiber
Fiber
j
Fiber
Fiber
<T0.4 Manufacturing
May 27, 1982
// /
Area
044^ Finishing Fittings Gluer May 27, 1982
Area
^Jk.% ~lf-
Finishing Area May 27, 1982
Area
$4^^FiniBhl ng
_} iL
Between lathes 1 May 27, 1982
Area
lci A i
Maintenance May 29, 1982
Area
045 Maintenance May 25, 1982
Area -
^04^
Forklift Maintenance May 25, 1982
Area
04T
^iA(
Fortllft Maintenance May 25, 1982
Area
J
Fiber
Fiber
Fiber
Fiber
rioter
j
Fiber
r|L | l
1
JTljtl
timk
KIN
kl.MILT
v />/ . ' f/cc
7:00a2; 28p
448
0.14
/
1, 2 *'>
TWA Km f.AMI'U: ru<uu>
(f/cci
KHMAkKS
--fTrTts--
, 1? ft?*
Center of ntoi.ige area. 5* off I lur. 4 of.cn y.irawr door sire opening'. Into warehouse
7:09a2:24p
444
0. 14
/-. 0
Far end of blew age area. 5* of i f 1 o<u .
' 4 open garage door size openings into warehouse
11:15a2:44p
209
j , fa ^
0.05
5
Top of ledge next to
fUMl
11:20a2:49p
209
0.76
s
im-Lj'n
Mixing area, 2nd level next to stairs
7i 12a-
:2 3 Op
438
(%
0.4
<Jk. uvj'7
Hanging 5* off floor opposite spreader tray. Area where Machine Tender roams
7:10a2:32p
o
442
0.02
oi7^
7:38a- 4 39 2: S7p
/' (eft)
0.03
o2
Hanging 5' off floor underneath pipe return. Opposite safety office
Top of cabinet next to Fittings Gluer bench
7:16a2:34p
438
0.01
i fc'i
/0
7i40a2:S5p
435
0.01
^Top of 6oda machine cutoff saw running
5f off floor between 12 4 13 lathes. 11 lathe running
7:35a- 444
0.002
2:S9p
ft o' "2-
^/
/
-Side of tool cage
center of machine shop
7:35a2t56p
443
7:52a309p
437
^0.003 J , ^ ft l
Top of cabinet on wall nearest Finishing area
5' off floor directly
~ over workbench next
to forklift pit
7:55a3:09p
434
0.001
[-3
Top of cabinet by door which had been welded hut
CTD023058
Industrial Hygiene Survey Riverside A/C Pipe Plant
October 24-28, 1983
(IHS 83-25)
TABLE III Sample Results for Oust
SAMPLE
NO. 83-
POSITION LOCATION
(DATE)
NAME/AREA
ANALYSIS FOR
TIME
MIN
RESULT
0*5
Coupling Sew
Operator (10/27/83)
D. Cooley
Respirable Oust
Silica
y.<>.
r-
#1 Boring Mill 1st Shift (10/27/83)
J. Janes ) | 0
Respirable Oust
"'Silica
Fittings Maker 1st Shift (10/27/83)
C. Hamilton:1'
>
Respirable Dust
Silica
11:3Sa 31 top
215
<0.09 mg/m?
not performed
11:43a 3i 12p
209
0.12 mxj/a?
not performed ---
11:41a 3:51p
214
<0.093 eg/e3
V.. not performed
REMARKS
CTD023059
tn1<i>t i i*l Ily-jh-iH* Iurvi-y MN1ayvi2t n4-l2<Mlt', AAVM' I.1*11Plant
tmiu: III
lYroonal Uur.l Kx|<ui(H on, Knv11 .1 Ihiit |.iA>eJo,
I'oiruHt.i) KK|voiiure t* Welding Purwn
POSITION
NO. 82
UCATlUN (HATE)
Cutoff Srtw
i-
.
11 a 12 Hay' 25,
1982
NAME/AKEA
ANALYSIS PUW
iVc-.i;<xrX-
Greg Paloraara 3ft Respirable Dust.
-- Silica
TIME HIN
KLSULT
JN, y
TWA K)R SAMPLK PI.KIOI)
KEMAhKS
7: 10a2(4 Bp
420 y \rn-~-
0.23 mg/m3 Q.\b r(, y
Not performed
30 mln. lunch, left left plant 24* - 12 lathe 10* - 1 lathe Obllr 1 imt 0.51 mg/m3
noring Mill 12 rHtf('< May 2S, 1982 < --ffso Boring Hill M12ay 26, 1982
Phil Dobbs Itr Total Dust
7:15a2 > 50p
I.4"cY-TS/
0.B2
mg/m3 0. 3%*<
8* class 150 T
2(cfir Silica
/(,*? 28* 0.l -1 torl b OSHA limit-1.0 cg/m3
Phil Dobbs Zl
Respirable Dust
7:43a10:50p
T7-7 6
0.26 ngt /m3
f Q fyb-- ^ plant for lunch 8" class 150 T
Hotjjcr-ftrt^edu------- ~~jf
Respirable Dust
11:50a2iS3p
,m in(>
0.17 9/n3
,
O'-^rJy
OSHA 0.51
limitog/m3
' - Silica
Not performed
Coupling Sav Hay 25, 1962 1 OV1 fi <
Large PM o">Al Lathe
Dennis Cooley y V, Total Dust
Silica
Mrry Gil
Total Dust
Silica
7:22a- 450
1.2 Kg/n3 / 0 0-j\ 8" cl.es 150 CG
2:49p j if.
/'*v S' machine cuts
1' 1/
- ^y 7 couplings at once
/,' --/,7-
21% '
/'> , 1. jl 7r7rrS'.xL OyS'HA limit-1.3 mg/m3
72::5222pa- 450 j ,<^0.49 mg/m3 () , Li
18* Sewer
Not performed
OSKA limit 1.53 mg/m3
Mixing May 25,
i1 o5^t
OJSWWe!elder
0i^fn K*"ay 26, o fa A t OUL^i
0 bl A (
Total Dust
Silica
Paul McGregor s+Nickel
itfir Chromium
SH 4 Manganese
Zf\ Nickel Chromium
sw4 Kanganeso
8:01a- 432 1.38 mg/m3 /, 3*13p Z,d>2'
I'Ofls 5'9%
q^
2nd level next to C stairs
llmit-5.1 ag/m3
12i52p- 110
2,0
0.22 mg/m3 0.14 g/m3
^ Building up grates ^^^^teacnodnhdaamrmyercsruosfhtehre
0.72 m,/1/<?.V^Y'0OSHA Limit!
2t42p 0.10 mg/m3 13 k IA0^ Nickel - 1 ng/m3
3150p
0.07 mg/m3
AXP^ Chromium - 1 mg/m3
0.62 mg/m3g"^ 3^Kan^*ne8C*^ m9/"11
CTD023060
In d u s tr ia l H ygiene
sam ple v o id e d due to o v e rlo a d in g
o o
A <M
Oo
ZO
O 0 A \u o
Z
10 10 CN rr m
cm
A\
0
Z
ion
o
AU \
0 4-1 2
x>
(0 0
Ao
0 2 in
mom
CN
4J
e <0
0) a
>14J 0) c > fl) h3i e0) wu
0) o 00 CN 0) 00 A Ov
T3 CN -1-1 I
AO
O \
zO 4-1 CN
TT
ro-
o
p" o
o oo o
zo ^
^ 10
V0
CN
O' c
P p
C0 0) 4J
eO 43
u 4-f
(0 3 aC
a> id QS
0
O' c
c <d
H c
x: 0)
to H
pc
d H
<d
pH S
jj c <d rH
CTD023061
CertainTeedEI
CERTAINTEED CORPORATION
Diagram 1
PAGE NOISE SURVEY SHEET REF. 0.0002 MICROBAR
ijATE:
ZH.M2
JOB DESCRIPTION:
PLANT: RlVPfiSfOE A|C pipe
CONDITIONS: INSTRUMENT: MICROPHONE: CALIBRATOR:
AJ0^-M4L Bk h-t 1^
STA. NO. TIME
5/a</
EMPLOYEE M/VU=C OP67?Af&/2 @
Bag, opeM^
2 AlLCV , M^CHIWE -TFMD6A
3 PfiESS OPERATE 4 HfirUDtSEL HArlUOLeA
5 , meM S7H=en/ office
G Pipe stripped
7 TKMt LOfirOlttCi
5 QarDuctr- dcm \ie
T'AlPC.EY PLUidfibR PUmP
ENGINEER:
PROTECTOR: ft A M
CALIBRATION
DATE:
.I
NETWORK
OCTAVE CENTER FREQ. (Hz.)
PEAK
A LIN. HOLD 31.5 63 125 250 500 IK 2K 4K 8K 16K
85ft28430
Vi
7ft' lb <60-
7ft
ftl
5
r\c{ Rel
dorwJe.^
knneJ
m
--
CTD023062
CertainTeedH
CERTAINTEED CORPORATION
Diagram 2
PAGE NOISE SURVEY SHEET REF. 0.0002 MICROBAR
DATE: MA'f 24-Z.f, |C>8X PLANT: JOB DESCRIPTION:
RlMCRSItiE A/C PIPE
CONDITIONS:
ENGINEER: pJjv,oRR.s
INSTRUMENT: S K 2209
MICROPHONE:
PROTECTOR:
CALIBRATOR:
STA. NO. TIME
1
EMPLOYEE
`A TE5TEF? , JEEP PoBiJS
feu
CALIBRATION )U1
Co-7 BEFORE 83-8
DATE:
mv 2W, 1^2 AFTER
NETWORK
OCTAVE CENTER FREQ. (Hz.)
PEAK
A LIN. HOLD 31.5 63 125 250 500 IK 2K 4K 8K 16K
8-7-
J02
V-
2
lathe assistant, lathe
\oi
OPERATO* ^"ISOPIPE^
97|07
3
v.
WVDRo tester
(&' 15oPiPe\
n-
KLL
4 ?/a& Pipe ham clews
14
5
5/25
C&U5HER. , IWSiQe CUT SIDE BAJimR
ZARQlEg
104-
iio
89B2-
(\lkk\MH P`P^
G ^25
1
LATHE ASSISTANT, LAT-HE
96-
iC>8
CPE 6 ATD A
85I02.
LAnfe
o peaATT r
(2H,l
Pipe")
85IC4
05
%* lOf,
91102
101
n
95
82
83 18
45170
Refill 5k -.
CTD023063
CertainTeedH
CERTAINTEED CORPORATION
PAGE NOISE SURVEY SHEET REF. 0.0002 MICROBAR
0ATE: MAH 2-2i, ^82. JOB DESCRIPTION:
CONDITIONS:
INSTRUMENT: MICROPHONE: CALIBRATOR:
BfK dfU
PLANT:
STA. NO. TIME
b
EMPLOYEE PHD20 TESTE ft Pif> (4AiUDLe^
HlVEKSlOG. 4-/C PiP
ENGINEER: ?J MORRIS
PROTECTOR:
UHLIDI
DATE:
Foam.
BEFORE R38
NETWORK PEAK
A LIN. HOLD 31.5 63
& q? 92qo
OCTAVE CENTER FREQ. (Hz.) 125 250 500 IK 2K 4K 8K
16K
CTD023064
Diagram 3
CertainTeed H
CERTAINTEED CORPORATION
NOISE SURVEY SHEET REF. 0.0002 MICROBAR
Mfi-y 2S', 1^82
JOB DESCRIPTION:
Curs
CONDITIONS:
PLANT: Rivetewe AjC
sectioiuq of pipe
CuTTIMe, ft"
tSQ
P&
? 19
ENGINEER: pJW0RR/S
INSTRUMENT: MICROPHONE:
. Of K
fc i
PROTECTOR:
CALIBRATOR:
gt ^
STA. NO. TIME
EMPLOYEE
NETWORK A LIN.
CALIBRATION DATE:
PEAK HOLD 31.5 63
BEFORE
AFTER q3.8
OCTAVE CENTER FREQ. (Hz.)
125 250 500 IK 2K 4K 8K
16K
1 V25 CuroPP SAiX> opizfirTOd C*?) flfi'lSb Pi pc'!
85iL2_
7
0
s.
*z * l .
. CTD023065
CERTAINTEED CORPORATION
Diagram 4
PAGE NOISE SURVEY SHEET REF. 0.0002 MICROBAR
DATE: IM4C| 2^-21. ^Z PLANT:
JOB DESCRIPTION: CONDITIONS: INSTRUMENT:
v/frjgftrt-s
MOMAL
RIVERSIDE A|c P |p
ENGINEER: Pj
MICROPHONE: CALIBRATOR:
B`K
STA. NO. TIME
EMPLOYEE
1 CCUPUMC, TFSTFtf ZM 3U
4 Ldfqe. Drill 0)dA SduA
5 Ccf Drills
6 Stc>mp timers. pi2m_
FM LATHE.
6io"Pf(c;OAc Pipe^i
8 DcdllUC, fHtLC 42-
ISO)
tfi" MILL ( [&"s-33flo) (o CoUPLlMCi SAtQ /'ft" I5D
PROTECTOR: fdAM
CALIBRATION DATE:
BEFORE 93-8
NETWORK
OCTAVE CENTER FREQ. (Hz.)
PEAK
A LIN. HOLD 31.5 63 125 250 500 IK 2K 4K 8K 16K
)85-
97
% )9$-
n\ S* IL 6 JGT2-
3AA U-T 4F U.H5 -s
IOC ULD eo
93
Bg
%
%<w
3F-
y>
fii
9l85
CTD023066
CertainTeedB
CERTAINTEED CORPORATION
Diagram 5
PAGE NOISE SURVEY SHEET REF. 0.0002 MICROBAR
jATE: ...
,
PLANT:
AUq tr, IWZ_ _ _ _ _ _ _ _ _ D. tAMFElZS OfflC(F
JOB DESCRIPTION:
BAalGimiD lOoiSF urvpi.t ui ftcfoterP
r~ t
, __ ,
fod daotoMemc cgn^
CONDITIONS:
__________________________________________________________________ ENGINEER: p-- &JpgfilS
INSTRUMENT: MICROPHONE:
~ t ..
-
ThK 221S
PROTECTOR:
CALIBRATOR:
6f ^
STA. NO. TIME
MOD' lilC
EMPLOYEE
OfflCC IdcbM fsv 1
-MzUc T<sK^
4lt-(l(0-
CALIBRATION
. BEFORE <B ?
DATE:
Z S MA-4SZ AFTER a? &
NETWORK
A
274s_
LIN.
49ri
OCTAVE CENTER F.REQ. (Hz.) PEAK HOLD 31.5 63 125 250 500 IK 2K 4K 8K
4l- 3t- 51- 27JS3_ JiL 52
28- 2a- 13 13 37
16K
Ma at fw.tLiM /WJirml^ 0dtiutc Savil SfLs >\/
Aiu iCMilsif,
Wtvl5
4|)(?^r\^lY. ~b 6^ 2A.(-fd
fjtf\SeAVcJlvv\
rvutwi'
4o 40 4-7 57 ^
CTD023067
Figure 1
Example
An automatic tooth culler for cir cular saw blades produces intense resonance sound.
Control measure
A urethane rubber coating clamped to the saw blade damps the resonance.
resonance in the blade
rubber
sheet metal (as large diameter as possible)
reinforcements
CTD023068
Figure 2
SOUND MOVEMENT INDOORS ABSORPTION
........... ^E2
Thick, porous layers absorb
both high and low frequency
sound
Porous material through which air can be pressed often makes a good sound absorbant. Examples of such materials include felt, foam rubber, foamed plastic, textile fibers and a number of sintered metals and ceramic materials. If the pores are closed, the absorption
is slight. Thin porous absorbants handle high tones. For good effpcts below 100Hz, the thicknesses required may become impractical. Low frequency absorption is improved with the aid of an air gap behind the absorbant.
Principle
CTD023069
Example
A workshop with intense low frequency noise is provided with absorbants that are effective for low tones. One part of the shop contains space for hanging absorp tion baffles, which provide good low frequency absorption and are easily in
stalled. A traverse leaves no room for baffles in the other part of the shop. Instead, horizontal absorbant panels are installed above the traverse, 8 inches from the ceiling, to improve the low frequency absorption.
CTD023070
SOUND MOVEMENT INOOORS ABSORPTION
E5
Sound shields may be
combined with sound
V
T1*
High frequency noise can be reduced by using a shield. The shield is more effective the taller it is and the closer it is placed to the source. The ef-
Principle
feet of a shield is considerably reduced if the ceiling is not sound absorbant.
CTD023071
line with slight noise
line with intense noise
Example
In an auto plant with several assembly lines, the work on one line is noisier than the other. Grinding work on the bodies produces a shrieking, high frequency sound, disturbing everyone in the plant.
Control measure i
The other lines are protected from the grinding noise by means,of shields on both sides of the line and soundabsorbing baffles suspended above the open area.
CTD023072
Industrial Hygiene Survey Riverside Asbestos/Cement Pipe Plant May 24-27, 1982
Appendix I Sampling and Analytical Procedures
and Current Standards
Asbestos
Personal and environmental samples were collected on Millipore 0.8 micro meter cellulose ester filters with DuPont P4000 and P2500 sampling pumps. The pumps were calibrated within the flow rate range of 1.5 - 2.0 1pm.
Analysis was conducted according to the USPHS/NIOSH Membrane Filter Method for Evaluating Airborne Asbestos Fibers (P&CAM 239). Fibers were counted on a Nikon model 96982 phase contrast microscope at 400X magnification.
The current OSHA standard in 29 CFR 1910.1001 states an 8 hour time weighted average to which any employee may be exposed shall not exceed two fibers, longer than 5 micrometers, per cubic centimeter of air (f/cc). Also, no employee shall be exposed at any time to airborne concentrations in excess of 10 fibers, longer than 5 micrometers, per cubic centimeter of air.
, Silica Dust
Total and respirable dust samples were obtained on MSA FWS-B polyvinyl chloride filters. DuPont P4000 and P2500 air sampling pumps were utilized for area and personal samples and were calibrated at 2.0 liters per minute before and after each sampling period. Gravimetric analysis was accomplished on a Cahn C-25 electro-balance according to methods given in the OSHA Industrial Hygiene Field Operators Manual, April 2, 1979. The percent free silica (quartz, cristobalite, tridymite) in the airborne dust samples were analyzed by the National Loss Control Service Corporation (NATLSCO of Long Grove, IL.). The method utilized for this analysis was the NIOSH Manual of Analytical Methods, 2nd Edition, P&CAM #259. This method utilized the redeposition of the particulate material onto a silver membrane filter followed by X-ray diffraction scan for silica peaks.
The OSHA acceptable limiting for total silica dust and respirable silica dust in the air is given by the formulae below.
Silica (total):
30 mg/m^____ % Si02 + 2
Silica (respirable):
10 mg/m^____ % Si02 + 2
CTD023073
Industrial Hygiene Survey Riverside Asbestos/Cement Pipe Plant May 24-27, 1982
Welding Fumes (Nickel, Chromium, Manganese) Personal samples were collected on Millipore 0.8 micrometer cellulose ester filters with a DuPont P2500 sampling pump. The pump was calibrated at a flowrate of 1.5 liters per minute before and after each sampling period. Analysis is performed by NATLSCO following the NIOSH Manual of Analytical Methods, 2nd Edition, Validated Methods, S206 (Nickel); S352 (Chromium); and S5 (Manganese). The analytical procedure involves acid digestion of the filter matrix and analysis by atomic absorption spectroscopy. These metals are limited to the following airborne concentrations.
- Nickel, 1 rng/m^, TWA - Chromium, 1 mg/m^, toa - Manganese, 5 mg/m^. Ceiling
Noise A Bruel and Kjaefc 2215 sound level meter was used to obtain sound pressure level measurements. This instrument was calibrated before and after each day1s measurements. The permissible exposure (OSHA 29 CFR 1910.95) ranges between 90 decibels for an 8 hour day through 115 decibels for a maximum duration of 1/4 hour per day.
CTD023074
1 # __ APPENDIX II
New Safety Products from 3M
March 1,1981
3M Disposables can be Face Fit too!
Face-fit of negative pressure respirators has recently become a popular and important subject. We would like to bring you up-to-date on the methods available to fit test 3M respirators to meet current requirements.
Quantitative
Fit Testing
Quantitative fit testing of negative pressure respirators used for protection against lead aerosols became a requirement on March 1,1980 per the lead standard 1910.1025.
When performing quantitative fit testing the area of interest is the face-to-respirator seal. Therefore, it is desirable to
minimize the amount of test media that can enter the
respirator through filter penetration. With a dual cartridge respirator, the normal practice is to replace the filter cartridge with high efficiency particulate filter (HEPA) cartridges. To accomplish the same result, 3M has available special fit test respirators, the 8710Q, 9900Q, 9910Q, and
9920Q. These respirators are of the same construction as their
numerical counterparts except that special higher efficiency filter material is used to reduce filter penetration during quantitative fit testing.
For convenience of testing, the fit respirators are supplied with a probe in place ready for attachment in the fit test booth.
For performing quantitative fit testing of the 3M Gas and Vapor respirators, the #8735 QNFT Kit is available.
fcNSHfll-Sira
Qualitative
Fit Testing
OSHA Directive CPL 2-2.29 issued October 27,1980 clarified the requirement and enforcement of qualitative fit testing. To comply with this requirement, 3M has available the 3M 9912 Qualitative Fit Test Kit. The kit provides a simple and quick method of testing respirator fit. A test atmosphere is provided by a nebulizer that creates an aerosol mist of saturated sodium saccharin. If a leak is present, it is detected as an extremely sweet taste. The 9912 Kit provides an
excellent method of fit testing without the hazards of the irritant smoke test, i.e., eye and respiratory irritation.
If a customer insists on using irritant smoke as a test agent, we recommend that the Q-series fit test respirators be used (with the test prob& plugged). The higher filter efficiency of the Q series, will reduce the filter penetration. For the proper method of irritant smoke testing refer to "A Guide To Industrial Respiratory Protection" by John Pritchard, NIOSH Publication, No. 76-189.
LWiotaUAA.
Occupational Health and Safety Products Divlslon/3M 220-7W3M Center
St. Paul, MN 55144
CTD023075
r ANSI
L\ '
American National Standard
practices for respiratory protection
i
i
CTD023076
ANSI Z88.2-1969
ANSI Z8& 2-1969
American National Standard Practices for Respiratory Protection
Sponsor
U. S. Department of the Interior Bureau of Mines
Approved August 11, 1969
American National Standards Institute, Inc
CTD023077
American National Standard
An American National Standard implies a consensus of those sub stantially concerned with its scope and provisions. An American National Standard is intended as a guide to aid the manufacturer, the consumer, and the general public. The existence of an American National Standard does not in any respect preclude anyone, whether he has approved the standard or not, from manufacturing, marketing, purchasing, or using products, processes, or procedures not conforming to the standard. American National Standards are subject to periodic review and users are cautioned to obtain the latest editions.
CAUTION NOTICE: This American National Standard may be revised or withdrawn at any time. The procedures of the American National Standards Institute require that action be taken to reaffirm, revise, or withdraw this standard no later than five years from the date of publication. Purchasers of American National Standards may receive current information on all standards by calling or writing the American National Standards Institute.
f''
Published by American National Standards Institute, Inc , 1430 Broadway, New York, New York 10018
Copyright 1969 by the American National Standards Institute, Inc No portion of this publication may be quoted or reproduced in any form without
the written permistion of the American National Standards Institute.
Printod in USA A3C1080/62S
e
Foreword
(This Foreword is not part of American National Standard Practices for Respiratory Protection, Z88.2-196T)
This is a revision of the respiratory protection portion of American National Standard Safety Code for Head, Eye, and Respiratory Protection, Z2.1-1959. The United States Department of the Interior, Bureau of Mines, which acted as cosponsor of Z2.1-1959, accepted sponsorship of the proj ect on respiratory protection when it was deemed advisable to separate the portions of that Z2.1 standard. A Z88 Standards Committee was organized and met on September 24, 1963, to review the section of Z2.1-1959 dealing with respiratory protection. The Committee decided to revise and rewrite that section. The fifth draft of the proposed standard was submitted to letter ballot and accepted by the Z88 Committee on May 2, 1969. It was approved as an American National Stan dard on August 11.
Since questions may arise from time to time concerning interpretation of this standard, an Inter pretation and Review Committee has been established, to provide for the uniform handling of doubtful cases. Anyone using this standard and desiring an interpretation may communicate with the Standards Institute. The Committee will also review new developments in respiratory protection and determine the need for revision or supplementation of this standard.
Suggestions for improvement gained in the use of this standard will be welcome. They should be sent to the American National Standards Institute, 1430 Broadway, New York, N.Y. 10018.
The Z88 Standards Committee had the following personnel at the time it approved this standard.
Robert H. Schutz, Chairman
Francis X. Worden, Secretary
Organization Represented American Conference of Governmental Industrial Hygienists American Foundrymen's Society................................................ American Gas Association ..........................................................
American Industrial Hygiene Association .................................
American Insurance Association ................................................
American Mutual Insurance Alliance........................................
American Petroleum Institute ....................................................
American Society of Mechanical Engineers............................. American Society of Safety Engineers......................................
American Welding Society .......................................................... Association of American Railroads ............................................ Electronic Industries Association................................................
General Services Administration ................................................ Industrial Medical Association.................................................... Industrial Safety Equipment Association...................................
International Association of Fire Chiefs..............................
International Association of Governmental Labor Officials National Safety Council.........................................................
Telephone Group..................................................................... U. S. Atomic Energy Commission........................................
Name of Representative
E. C. Hyatt
..William B. Huelsen
T. L. Powers H. W. Becker (Alt)
E. C. Hyatt W. H. Revoir (Alt)
Robert R. Conroy Victor Bohn (Alt)
J. A. Houghton Frederick H. Deeg (Alt)
W. E. Carroll J. F. McKenna (Alt)
Thomas R. Curran
.Richard H. Burr Harold Ritchie (Alt)
.A. D. Brandt
..D. P. Russell
F. X. Worden James J. Sullivan (Alt)
Lane Parsons
*
Ernest M. Dixon
Eugene W. Merry Benjamin Smilg Harley N. Trice Charles N. Sumwait (Alt) Howard M. Weiss (Alt)
.Raymond J. Brady Donald M. O'Brien (Alt)
.Martin Slotkin
..H. H. Fawcett Julian B. Olishifski (Alt)
..F. X. Worden
..Carl G. Welty, Jr Humphery Gilbert (Alt)
CTD023079
Organization Represented U. S. Coast Guard ...................................... U S. Department of Agriculture....... U. S. Department of the Army............
U. S. Department of the Interior........
U. S. Department of Labor....................
U. S. Department of the Navy .............
U. S. Public Health Service (Liaison)
Individual Member ....................................
Name of Representative
Norman W. Lemley Rolland M. Waters
Robert A. Duguid Harry H. Ackerman (Alt)
Robert H. Schutz E. J. Kloos (Alt) G. Walker Daubenspeck John O'Neill (Alt) Samuel H. Barboo, Jr N. E. Rosenwinkel (Alt) .Howard E. Ayer Charles H. Powell (Alt) .William E. Clark
The subcommittee which prepared the final draft on this standard had the following personnel.
H. H. Ackerman Raymond J. Brady
R. H. Burr
Carl G. Welty, Jr, Chairman
H. H. Fawcett E. C. Hyatt W. H. Revoir
CTD023080
Contents
SECTION
1. Introduction .....................................................................................................
PAGE
7
2. Definitions....................................................................................................................................................... 7
3. Recommended Requirements for Codes.................................................................................................. 9
4. Classification of Respiratory Hazards....................................................................................................... 11
5. Classification, Description, and Limitations ofRespirators................................................................ 11
6. Selection of Respirators.............................................................................................................................. 13 6.1 Approved or Accepted Respirators................................................................................................ 13 6.2 General Considerations .................................................................................................................... 13 6.3 Nature of the Hazard....................................................................................................................... 13 6.4 Extent and Location of Hazard.................................................................................................. 22 6.5 Work Requirements and Conditions ........................................................................................... 22 6.6 Employee Acceptance and Face Fit.............................................................................................. 23
7. Use of Respirators.....................................................................................................
23
7.1 Operating Procedures..................
23
7.2 Issuance of Respirators.................................................................................................................... 23
7.3 Use in Dangerous Atmospheres ..................................................................................................... 23
7.4 Training and Education in Proper Use....................................................................................... 24
7.5 Facepiece Fit Tests and Procedures........................................................................................... 24
8. Maintenance and Care of Respirators.................................................................................................... 25 8.1 General ................................................................................................................................................ 25 8.2 Inspection .......................................................................................................................................... 25 8.3 Cleaning and Disinfection............................................................................................................. 25 8.4 Repair ................................................................................................................................................ 26 8.5 Storage ................................................................................................................................................ 26
9. Special Problems .......................................................................................................................................... 26 9.1 Corrective Lens with Full Facepiece............................................................................................. 26 9.2 Eyewear with Half-Mask Facepiece............................................................................................. 26 9.3 Respirator Use in Low Temperatures........................................................................................... 26 9.4 Respirator Use in High Temperatures......................................................................................... 27 9.5 Communications................................................................................................................................ 27 9.6 Nonconventional Respirators ........................................................................................................ 27
10. Evaluation of Respirator Program Effectiveness.................................................................................. 27 10.1 General ................................................................................................................................................ 27 10.2 Wearer Acceptance............................................................................................................................ 28 10.3 Examination of Respirators in Use ............................................................................................. 28 10.4 Evaluation of Protection Afforded ................................................................................................ 28
11. References to Other Codes, Standards, and Manuals......................................................................... 28
Appendix Respirator Approval and Acceptance Listings......................................................................... 30
Tables
Table 1 Classification of Respiratory Hazards According to TheirBiological Effect ................... 10
Table 2 Classification of Respiratory Hazards According toTheirProperties which Influence
Respirator Selection........................................................................................................................ 12
Table 3 Classification and Description of Respirators by Mode of Operation.......................... 14-15
Table 4 Capabilities and Limitations of Respirators.......................................................
16-17
Table 5 Color Code for Gas Mask Canisters.......................................................................................... 18
Table 6 Guide for Selection of Respirators ........................................................................................... 19
CTD023081
American National Standard Practices for Respiratory Protection
1. Introduction
This standard sets forth accepted practices for respirator users. It provides information and guidance on the proper selection, use, and care of respirators and sets forth recommended re quirements suitable for adoption into regula tions governing their use.
1.1 Scope. The scope of this standard includes safe practices and requirements for using res pirators for protection of the respiratory system from inhalation of particulate matter, noxious gases and vapors, and oxygen deficiency. Ex cluded are 1) underwater protection, 2) highaltitude aircraft oxygen systems, and 3) pro tection against military munitions. Although the standard does not cover engineered protective measures (for example, ventilation), exposure control shall be accomplished as far as is fea sible by accepted engineering methods before considering or instituting use of respirators.
12 Purpose. The standard is intended to pro vide guidance that will assist respirator users in safeguarding health and life through proper selection and use of respirators. Use of respira tors implies that the wearer needs protection from an atmosphere that might threaten his life or health. Therefore, it is imperative that the level of protection needed be determined and provided in both normal and emergency condi tions of use, particularly if exposure to the at mosphere could be immediately dangerous to life or health. Use of respirators in atmospheres that are dangerous to life or health is discussed in 6.3.
1.3 "Shall" and "Should". The provisions of this standard are mandatory in nature where the word "shall" is used and advisory in nature where the word "should" is used.
1.4 Exceptions. Exceptions to the requirements in Section 3, Recommended Requirements for Codes, may be granted by competent authority, provided that an equally acceptable mode and degree of protection is afforded.
2. Definitions
abrasive-blasting respirator. See respirator.
aerodynamic diameter. The diameter of a unit density sphere having the same settling velocity as the particle in question of whatever shape and density.
air-line respirator. See respirator.
air-purifying respirator. See respirator.
air-regulating valve. An adjustable valve used to regulate airflow to the facepiece, helmet, or hood of an air-line respirator,
air-supply device. A hand- or motor-operated blower for the hose mask, or a compressor or other source of respirable air for air-line and abrasive-blasting respirators.
approved. Tested and listed as satisfactory by an authority having jurisdiction, such as U.S. Department of the Interior, Bureau of Mines, or U.S. Department of Agriculture,
breathing tube. A tube through which air or oxygen flows to the facepiece, helmet, or hood,
canister (air-purifying). A container filled with sorbents and catalysts that remove gases and vapors from air drawn through the unit. The canister may also contain an aerosol (particu late) filter to remove solid or liquid particles,
canister (oxygen-generating). A container filled with a chemical which generates oxygen by chemical reaction.
cartridge. A small container filled with air-puri fying media.
catalyst. In respirator use, a substance which converts a toxic gas (or vapor) into a less-toxic gas (or vapor).
chemical-cartridge respirator. See respirator.
contaminant. A harmful, irritating, or nuisance material that is foreign to the normal atmo sphere.
corrective lens. A lens ground to the wearer's individual corrective prescription,
detachable coupling. A device by means of which the respirator wearer, without using hand-
7
CTD023082
Z88.2
AMERICAN NATIONAL STANDARD PRACTICES
tools, may detach the air-supply line from that part of the respirator worn on the person or from the air-supply source.
disinfection. The destruction and removal of pathogenic organisms, especially by means of chemical substances.
dust. See Table 2.
exhalation valve. A device that allows exhaled air to leave a respirator and prevents outside air from entering through the valve.
eyepiece. A gastight, transparent window(s) in a full facepiece through which the wearer may see.
facepiece. That portion of a respirator that covers the wearer's nose and mouth in a half mask facepiece or nose, mouth, and eyes in a full facepiece. It is designed to make a gas-tight or dust-tight fit with the face and includes the headbands, exhalation valve(s), and connec tions for air-purifying device or respirable-gas source or both.
filter respirator. See respirator.
filter. A fibrous media (canned or uncanned) used in respirators to remove solid or liquid particles from the airstream entering the res pirator enclosure,
fog. See Table 2.
full facepiece. See facepiece.
fume. See Table 2.
gas. An aeriform fluid which is in the gaseous state at ordinary temperature and pressure.
gas mask. See respirator.
half-mask facepiece. See facepiece.
head harness, a device for holding the facepiece securely in place on the wearer's head.
helmet. A device that shields the eyes, face, neck, and other parts of the head.
hood. A device that completely covers the head, neck, and portions of the shoulders.
hose mask. See respirator.
immediately dangerous to life or health. In cluded are conditions that pose an immediate threat to life or health and conditions that pose an immediate threat of severe exposure to con taminants such as radioactive materials which are likely to have adverse delayed effects on health.
inhalation valve. A device that allows respirable air to enter the facepiece and prevents exhaled
air from leaving the facepiece through the intake opening.
irrespirable. Unfit for breathing,
mist. See Table 2.
MPC. Maximum permissible concentration. These concentrations are set by the National Committee on Radiation Protection. They are recommended maximum average concentrations of radionuclides to which a worker may be ex posed, assuming that he works 8 hours a day, 5 days a week, and 50 weeks a year,
particulate matter. A suspension of fine solid or liquid particles in air, such as dust, fog, fume, mist, smoke, or sprays. Particulate matter sus pended in air is commonly known as an aerosol,
pneumoconiosis-producing dust. Dust, which when inhaled, deposited, and retained in the lungs, may produce signs, symptoms and find ings of pulmonary disease.
resistance. Opposition to the flow of air, as through a canister, cartridge, particulate filter, or orifice.
respirable. Fit to be breathed,
respirator. A device designed to protect the wearer from inhalation of harmful atmospheres. See Section 5, Classification, Description, and Limitations of Respirators,
self-contained breathing apparatus. See res pirator.
sorbent. A material which removes toxic gases and vapors from air inhaled through a canister or cartridge,
spray. See Table 2.
supplied-air respirator. See respirator.
supplied-air suit. A one- or two-piece suit that is impermeable to most particulate and gaseous contaminants and is provided with an adequate supply of respirable air.
TLV. Threshold limit value. A table of these values and accompanying precautions is pub lished annually by the American Conference of Governments' Industrial Hygienists,
toxic dust. Dust that may be harmful to the respiratory system or to other parts of the body through passing from the respiratory tract into the blood stream.
valve (air or oxygen). A device which controls the direction of air or oxygen flow or the rate and pressure at which air or oxygen is delivered, or both.
8
CtD023083
FOR RESPIRATORY PROTECTION
Z88.2
vapor. The gaseous state of a substance that is solid or liquid at ordinary temperature and pressure.
window indicator. A colorimetric indicator for gas mask canisters which denotes the service life for a particular gas.
3. Recommended Requirements for Codes
3.1 Purpose. This section includes recom mended requirements for authorities consider ing establishment of respirator regulations or codes. The following recommended requirements are supplemented by recommended practices in subsequent sections of this standard.
3.2 Permissible Practice. In the control of those occupational diseases caused by breath ing air contaminated with harmful dusts, fogs, fumes, mists, gases, smokes, sprays, or vapors, the primary objective shall be to prevent atmo spheric contamination. This shall be accom plished as far as feasible by accepted engineer ing control measures (for example, enclosure or confinement of the operation, general and local ventilation, and substitution of less toxic mate rials). When effective engineering controls are not feasible, or while they are being instituted, appropriate respirators shall be used pursuant to the following requirements.
3.3 Employer Responsibility
3.3.1 Respirators shall be provided by the employer when such equipment is necessary to protect the health of the employee.
3.3.2 The employer shall provide the respira tors which are applicable and suitable for the purpose intended.
3.3.3 The employer shall be responsible for the establishment and maintenance of a respiratory protective program which shall include the gen eral requirements outlined in 3.5.
3.4 Employee Responsibility
3.4.1 The employee shall use the provided res piratory protection in accordance with instruc tions and training received.
3.4.2 The employee shall guard against dam age to the respirator.
3.4.3 The employee shall report any malfunc tion of the respirator to the responsible person.
3.5 Minimal Acceptable Program
3.5.1 Written standard operating procedures governing the selection and use of respirators shall be established.
3.5.2 Respirators shall be selected on the basis of hazards to which the worker is exposed. See Section 4, Classification of Respiratory Hazards.
3.5.3 The user shall be instructed and trained in the proper use of respirators and their limita tions. See 7.4 and 7.5.
3.5.4 Where practicable, the respirators should be assigned to individual workers for their ex clusive use.
3.5.5 Respirators shall be regularly cleaned and disinfected. Those issued for the exclusive use of one worker should be cleaned after each day's use, or more often if necessary. Those used by more than one worker shall be thor oughly cleaned and disinfected after each use. See 8.3.
3.5.6 Respirators shall be stored in a con venient, clean, and sanitary location. See 8.5.
3.5.7 Respirators used routinely shall be in spected during cleaning. Worn or deteriorated parts shall be replaced. Respirators for emer gency use such as self-contained devices shall be thoroughly inspected at least once a month and after each use. See 8.2.
3.5.8. Appropriate surveillance of work area conditions and degree of employee exposure or stress shall be maintained. See 6.3.4 and 10.4.
3.5.9 There shall be regular inspection and evaluation to determine the continued effec tiveness of the program. See Section 8, Mainte nance and Care of Respirators, and Section 10, Evaluation of Respirator Program Effectiveness.
3.6 Program Administration. The plant or company industrial hygiene, health physics, safety engineering, or fire department shall ad minister the program in close liaison with the plant medical department. Responsibility for the program shall be vested in one individual. In small plants having no formal industrial hy giene, health physics, safety, fire, or medical department, the respirator program shall be administered by an upper-level superintendent, foreman, or other qualified individual respon sible to the principal manager. The administra tor shall have sufficient knowledge of the subject to properly supervise the program.
9
CTD023084
Z88.2
Table 1 Classification of R espiratory Hazards According to T h e ir B iological Effect
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CTD023085
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Z88.2
3.7 Medical Limitations. Persons should not be assigned to tasks requiring use of respirators unless it has been determined that they are physically able to perform the work and use the equipment. The local physician shall deter mine what health and physical conditions are pertinent The respirator user's medical status should be reviewed periodically (for instance, annually).
3.8 Approval. Approved or accepted respirators shall be used when they are available (see Sec tion 6, Selection of Respirators). The respirator furnished shall provide adequate respiratory protection against the particular hazard for which it is designed in accordance with stan dards established by competent authorities. The U. S. Department of the Interior, Bureau of Mines, and the U. S. Department of Agriculture are recognized as such authorities. (See Ap pendix, Respirator Approval and Acceptance Listings.) Although respirators listed by the U.S. Department of Agriculture continue to be ac ceptable for protection against specified pesti cides, the U. S. Department of the Interior, Bureau of Mines, is the agency now responsible for testing and approving pesticide respirators.
4. Classification of Respiratory Hazards
4.1 Introduction. The purpose of this section is to list and briefly describe various categories of respiratory hazards that might be encountered and which may require use of respirators. The information provides a general background for relating the guidance in subsequent sections to the type of hazard encountered. Management, however, will find it necessary to consult refer ences on industrial.hygiene and toxicology and perhaps expert individuals to develop the nec essary comprehensive information on specific airborne contaminants.
Respiratory hazards for the purpose of this standard, are classified as follows:
(1) oxygen deficiency (2) gas and vapor contaminants
(a) immediately dangerous to life or health (b) not immediately dangerous to life or
health (3) particulate contaminants (dust, fog, fume, mist, smoke, and spray)
(a) immediately dangerous to life or health (b) not immediately dangerous to life or
health
(4) combination of gas, vapor, and particu late contaminants
(a) immediately dangerous to life or health (b) not immediately dangerous to life or
health
Respirators may afford some protection against high temperature atmospheres. See 9.4. Further information on the hazards of and use of respirators in high temperatures is presented in a National Fire Protection Association pub lication, Breathing Apparatus for The Fire Service, published in 1966.
4.2 Classification and Description of Respira tory Hazards. The basic respiratory hazards listed in 4.1 are classified in Table 1 according to expected biological effects of the contami nants. Many respirators, particularly air-puri fying respirators, are designed and selected on the basis of chemical and physical properties of the air contaminants. Therefore, gas, vapor, and particulate contaminants are also presented in Table 2 according to their physical and chemical properties.
Particle size distribution and solubility are important parameters for particulate contami nants. Particles smaller than 5 microns in aero dynamic diameter more readily reach the lungs and are more readily dissolved and absorbed into the bloodstream or deposited on lung tissue. The solubility of the material usually deter mines whether the resulting toxic effect, if any, is in the lungs or other organs. Particles larger than 5 microns aerodynamic diameter are gen erally trapped in the upper respiratory tract, cleared, and swallowed with possible subsequent absorption from the gastrointestinal tract, de pending on their solubility.
5. Classification, Description, and Limitations of Respirators
5.1 Introduction. The purpose of this section is to provide a description of the various types of respirators, their limitations, and capabilities, as a background for subsequent sections which discuss their selection, use, and maintenance.
Respirators fall into the following general classifications, according to mode of operation:
(1) atmosphere-supplying respirators (a) self-contained (b) hose-mask (c) air-line (d) combination self-contained and hosemask or air-line
11
CTD023086
Z88.2
AMERICAN NATIONAL STANDARD PRACTICES
(2) air-purifying respirators (a) gas and vapor (gas mask and chemical cartridge) (b) particulate (dust, fog, fume, mist, smoke, and sprays) (c) combination gas, vapor, and particu late
(3) combination atmosphere-supplying and air-purifying respirators
5.2 Classification, Description and Limita tions of Respirators. This information is pre sented in two tables. Table 3 covers the classi fication and description of respirators according to the general classifications in 5.1. Table 4 covers capabilities and limitations of respirators arranged to correspond to the subject headings in Table 3.
More detailed information on specific types of respirators can be obtained from respirator manufacturers and from the Respiratory Protec tive Devices Manual published by the American Industrial Hygiene Association and the Ameri can Conference of Governmental Industrial Hygienists in 1963.
The canister color code table from American National Standard Identification of Gas Mask Canisters, K13.1-1967, is provided in Table 5. The code indicates the colors assigned to canis ters to identify the types of atmospheric con taminants against which they will protect.
5.3 Respirable Air and Oxygen for Self-Con tained Breathing Apparatus and Hose-Type Respirators. Compressed air, compressed oxy gen, liquid air, and liquid oxygen used for res-
Table 2
Classification of Respiratory Hazards According to Their Properties which Influence Respirator Selection
Cas and Vapor Contaminants
Inert: They do not react with other substances under most conditions and create a respiratory hazard by displacing air and producing oxygen deficiency (for example, helium, neon, argon).
Acidic: Substances that are acids or that react with water to produce an acid. In water they produce posi tively charged hydrogen ions. They taste sour and many are corrosive to tissues (for example, hydrogen chloride, sulfur dioxide, fluorine, nitrogen dioxide, acetic acid, carbon dioxide, hydrogen sulfide, and hydrogen cyanide).
Alkaline: Substances that are alkalies or that react with water to produce an alkali. When in water solu tions, they result in the production of negatively charged hydroxyl ions (OH'). They taste bitter, and many are corrosive to tissues (for example, ammonia, amines, phosphine, arsine, and stibine).
Organic: These are the compounds of carbon. Examples are saturated hydrocarbons (methane, ethane, butane), unsaturated hydrocarbons (ethylene, acetylene), alco hols (methyl alcohol, propyl alcohol), ethers (methyl ether, ethyl ether), aldehydes (formaldehyde), ketones (dimethyl ketone), organic acids (formic acid, acetic acid), halides (chloroform, carbon tetrachloride), amides (formamide, acetamide), nitriles (acetonitrile), isocyanates (toluene diisocyanate), amines (methylamine), epoxies (epoxyethane, propylene oxide), and aromatics (benzene, toluene, xylene).
Organometallic: Compounds in which metals are chemi cally bonded to organic groups (for example, ethyl silicate, tetraethyl lead, and organic phosphates).
Hydrides: Compounds in which hydrogen is chemically bonded to metals and certain other elements (for example, diborane and lithium hydride).
Particulate Contaminants
Particles are produced by mechanical means by the disintegration processes of grinding, crushing, drilling, blasting, and spraying; or by the physiocheiriical re actions such as combustion, vaporization, distillation, sublimation, calcination, and condensation. Particles are classified as follows:
Dust: A solid mechanically produced particle with sizes varying from submicroscopic to visible or macroscopic.
Spray: A liquid mechanically produced particle with sizes generally in the visible or macroscopic range.
Fume: A solid condensation particle of extremely small particle size, generally less than one micron in diam eter.
Mist: A liquid condensation particle with sizes ranging from submicroscopic to visible or macroscopic.
Fog: A mist of sufficient concentrate to perceptibly obscure vision.
Smoke: A system which includes the products of incom plete combustion of organic substances in the form of solid and liquid particles and gaseous products in air* Smoke is usually of sufficient concentration to percep tibly obscure vision.
12
CTD023087
FOR RESPIRATORY PROTECTION
Z88.2
piration shall be of high purity. Oxygen shall meet the requirements of the United States Pharmacopoeia for medical or breathing oxygen. Breathing air shall meet at least the require ments of the specification for Grade D breathing air as described in Compressed Gas Association Commodity Specification G-7.1-1966.
Compressed oxygen shall not be used in supplied-air respirators or in open-circuit selfcontained breathing apparatus that have pre viously used compressed air. Compressed air might contain low concentrations of oil. When high-pressure oxygen passes through an oil- or grease-coated orifice, an explosion or fire may occur.
Breathing air may be supplied to respirators from cylinders or air compressors. Cylinders shall be tested and maintained in accordance with applicable Department of Transportation or Interstate Commerce Commission Specifica tions for shipping containers. Compressors shall be constructed and situated so as to avoid entry of contaminated air into the system and suitable in-line air purifying sorbent beds and filters installed to further assure breathing air quality. A receiver of sufficient capacity to enable the respirator wearer to escape from a contaminated atmosphere in event of compressor failure, and alarms to indicate compressor failure and over heating shall be installed in the system (see 6.3.2). Air-line couplings shall be incompatible with outlets for other gas systems to prevent inadvertent servicing of air-line respirators with nonrespirable gases or oxygen.
Breathing-gas containers shall be marked in accordance with American National Standard Method of Marking Portable Compressed Gas Containers to Identify the Material Contained, Z48.1-1954; Federal Specification BB-A-1034a, June 21, 1968, Air, Compressed for Breathing Purposes; or Interim Federal Specification GGB-00675b, April 27, 1965, Breathing Apparatus, Self-Contained. Further details on sources of compressed air and its safe use will be found in Compressed Gas Association Pamphlet G-71968.
6. Selection of Respirators
6.1 Approved or Accepted Respirators. When ever possible, approved or accepted respirators shall be used. Respirator approval and accept ance tests and listings and selection of other than approved or accepted respirators are dis cussed in the Appendix.
6.2 General Considerations. The multiplicity of hazards that may exist in a given operation requires careful and intelligent respirator selec tion. This selection is made even more complex by the many types of respirators available. Each type has its limitations, areas of application, and operational and maintenance requirements.
The selection of a proper respirator for any given situation requires consideration of the following factors: 1) nature of the hazard (see Section 4); 2) extent of the hazard; 3) work re quirements and conditions; and 4) characteris tics and limitations of available respirators (see Section 5).
-Tafele 6 is a quick reference^guidlf for the selection^Of-t^piratory^protection appropriate to the type anjDaegregof hazard. The Table providesjjwtfimal guidanceJ"however, and shall be used along with other information, such as that given in this standard and in directions provided by respirator manufacturers.
When there is doubt about the concentration of oxygen or hazardous material present in the atmosphere, only those respirators listed as suitable for respiratory protection against oxy gen deficiency shall be used. Any erring in the selection of respirators shall be on the safe side.
6.3 Nature of the Hazard. The chemical and physical properties, toxicity, and concentration of the hazardous material shall be considered in respirator selection (see Section 4 for classifica tions and discussion of respiratory hazards).
6.3.1 Oxygen-Deficient Atmospheres. Only respirators that provide an independent, respira ble atmosphere shall be used in oxygen-deficient atmospheres. Normally, a self-contained breath ing apparatus, hose mask with blower, or air line respirator with auxiliary self-contained air supply is used for this purpose. Air-line respira tors without auxiliary air supply shall be used only with the precautions outlined in 6.3.2.
An attendant shall be standing by at the entrance to the oxygen-deficient atmosphere at all times with proper communications and res cue equipment in case of an emergency. See 7.3 for use of respirators in oxygen-deficient atmo spheres.
6.3.2 Immediately Dangerous Atmospheres. If it is probable that atmospheres immediately dangerous to life or health may occur, then both the normally expected inward leakage (see 6.3.3) and the reliability of the respirator shall
13
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Z88.2
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CTD023089
FOR RESPIRATORY PROTECTION
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4d1 .gy au CTD023090
Z88.2
Table 4 C apabilities and Lim itations of Respirators
AMERICAN NATIONAL STANDARD PRACTICES
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16
CTD023091
>
*
Combination Atmosphere-Supplying and A ir-P urifying Respirators
T h e advantages and disadvantages, expressed above, of the m ode o f operation being used w ill govern. T h e mode w ith the greater lim ita tio n s (a ir-p u rify in g m ode) w ill m a in ly determ ine the overall capabilities and lim ita tio n s o f the re sp ira to r since the w earer m ay fo r some reason fa il to change the m ode o f opera tio n even though conditions would require such change.
FOR RESPIRATORY PROTECTION
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17
CTD023092
Z88.2
AMERICAN NATIONAL STANDARD PRACTICES
be given full consideration. In oxygen-deficient atmospheres with no toxic materials, inward leakage is normally not a problem unless the leakage exceeds a few percent. It is essential that, in highly toxic atmospheres, inward leak age, if any, be minute. See 6.3.2.1 and 7.3 for use of respirators in immediately dangerous at mospheres.
6.3.2.1 Respirators Recommended for Im mediately Dangerous Atmospheres. The U. S. Bureau of Mines and responsible industrial hy giene and safety organizations recommend the following respirators, listed in decreasing order
with regard to the protection they offer the wearer, for use in atmospheres immediately dan gerous to life or health. These atmospheres in clude those which are oxygen deficient or where high concentrations of gases or vapors exist:
(1) pressure-demand open-circuit or pres sure-type closed-circuit self-contained breathing apparatus
(2) combination pressure-demand air-line res pirator with auxiliary self-contained air supply
(3) combination constant-fiow air-line res pirator with auxiliary self-contained air supply
Table 5 Color Code for Gas-Mask Canisters (ANSI K13.I-1967)
Atmospheric Contaminants to be Protected Against Acid gases Hydrocyanic acid gas
Chlorine gas
Organic vapors Ammonia gas
Colors Assigned* White
Whitd with Vi-inch green stripe completely around the canister near the bottom
White with Vi-inch yellow stripe completely around the canister near the bottom
Black
Green
Acid gases and ammonia gas
Carbon monoxide Acid gases and organic vapora Hydrocyanic acid gas and
chloropicrin vapor
Green with H-inch white stripe completely around the canister near the bottom
Blue
Yellow
Yellow with Vi-inch blue stripe completely around the canister near the bottom
Acid gases, organic vapora, and ammonia gaaes
Brown
Radioactive materials, except ing tritium and noblr gases
Particulates (dusts, fumes, mists, fogs, or smokes) in combination with any of the above gases or vapors
All of the above atmospheric contaminants
Purple (Magenta)
Canister color for contaminant, as designated above, with Vi-inch gray stripe completely around the canister near the top
Red with Vi-inch gray stripe completely around the canister near the top
`Cray shall nut Iw assigned as the main color for a canister designed to remove acids or vapors.
NOTH: Orange shall he used as a complete body, or stripe color to represent gases not included ' in this table. The user will need to refer to the canister label to determine the degree of protection the canister will afford.
18 CTD023093
FOR RESPIRATORY PROTECTION
Z88.2
(4) demand-flow open-circuit or closed-circuit self-contained breathing apparatus (where there may be a negative pressure in the breathing system at any time)
(5) combination demand-flow air-line res pirator with auxiliary self-contained air supply
(6) hose mask with blower When self-contained breathing apparatus or hose masks with blowers are used in atmo spheres immediately dangerous to life or health, standby men must be present with suitable res cue equipment.
6.3.2.2 Other Respirators Which May Be Used under Certain Conditions in Atmospheres Immediately Dangerous to Life or Health. Air line respirators are not approved or recom mended for use in immediately dangerous at mospheres because no respiratory protection is provided if the air supply fails. However, if
routine protection or operational designs pre clude use of the recommended types of respira tors which workers should wear, the following air-line respirators may be considered, provided an adequate flow of respirable air is maintained. These are listed in decreasing order with regard to the protection they provide for the wearer.
(1) pressure-demand air-line respirator with full facepiece
(2) continuous-flow air-line respirator with full facepiece, helmet, hood, or suit
(3) demand-flow air-line respirator with full facepiece
(4) pressure-demand air-line respirator with half-mask facepiece (only for atmospheres that do not cause eye irritation or injury)
(5) continuous-flow air-line respirator with half-mask facepiece (only for atmospheres that do not cause eye irritation or injury)
Ou
Guide for Selection of Respirators
Hazard
Respirator (See Note 1.)
Oxygen Deficiency
Self-contained breathing apparatus. Hose mask with blower. Combination air-line respirator with auxiliary self-contained air supply or an air-storage
receiver with alarm.
Gaa and Vapor Contaminants Immediately dangerous to life or health. (See Note 2.)
Self-contained breathing apparatus. Hose mask with blower. Air-purifying, full facepiece respirator with chemical canister (gas mask). Self-rescue mouthpiece respirator (for escape only). Combination air-line respirator with auxiliary self-contained air supply or an air-storage
receiver with alarm.
Not immediately dangerous to Air-line respirator.
life or health.
Hose mask without blower.
Air-purifying, half-mask or mouthpiece respirator with chemical cartridge.
Particulate Contaminants
Immediately dangerous to life or health. (See Note 2.)
Self-contained breathing apparatus. Hose mask with blower. Air-purifying, full facepiece respirator with appropriate filter. Self-rescue mouthpiece respirator (for escape only). Combination air-line respirator with auxiliary self-contained air supply or an air-storage
receiver with alarm.
Not immediately dangerous to life or health.
Air-purifying, half-mask or mouthpiece respirator with filter pad or cartridge. Air-line respirator. Air-line abrasive-blasting respirator. Hose mask without blower.
-
Combination gaa, vapor, and particulate contaminants Immediately dangerous to life or health. (See Note 2.)
Self-contained breathing apparatus. Hose mask with blower. Air-purifying, full facepiece respirator with chemical canister and appropriate filter
(gas mask with filter).
Self-rescue mouthpiece respirator (for escape only). Combination air-line respirator with auxiliary self-contained air supply or an air-storage
receiver with alarm.
Not Immediately dangerous to life or health.
Air-line respirator. Hose mask without blower.
Air-purifying, half-mask or mouthpiece respirator with chemical cartridge and appro priate filter.
NOTE 1: For details on descriptions, capabilities, and limitations of respirators, refer to Tables 3 and 4.
NOTE 2: For details on use of respirators In hazardous atmospheres, see 6.3.2 and 7.3.
19 CTD023094
Z88.2
AMERICAN NATIONAL STANDARD PRACTICES
(6) demand-flow air-line respirator with half mask facepiece (only for atmospheres that do not cause eye irritation or injury)
Pressure-demand or continuous-flow air-line respirators with full facepiece provide the wearer with a degree of respiratory protection equal to that afforded by a positive pressure self-con tained breathing apparatus as long as an ade quate flow of respirable air is maintained. Also, a demand-flow air-line respirator with full facepiece would be equivalent to a demand-flow open-circuit or closed-circuit self-contained breathing apparatus as long as an adequate supply of respirable air is maintained.
Persons using air-line respirators in atmo spheres immediately hazardous to life or health shall be equipped with safety harnesses and safety lines for lifting or removing persons from hazardous atmospheres or other and equivalent provisions for the rescue of persons from haz ardous atmospheres shall be used. A standby man or men with suitable self-contained breath ing apparatus shall be at the nearest fresh air base for emergency rescue.
Before a person is permitted to wear an air line respirator in a hazardous atmosphere, an industrial hygiene, health physics, or safety en gineering department representative or a qual ified industrial hygienist, health physicist, or safety engineer shall be responsible for com pliance with the following:
(1) Air-line hose from a compressor or cylin der air supply shall be protected from damage, including cutting, kinking, crushing, or burning. In some cases an armored hose shall be used. Hose couplings shall be protected against dis connection. Trailing air-line hose shall be ar ranged to minimize tripping and to permit ready escape.
(2) The cylinder containing the air supply for an air-line respirator shall be tested for oxy gen concentration and carbon monoxide content and shall be respirable. All air shall meet the minimum specification for Type I, Grade D gaseous air of the Compressed Gas Association Commodity Specification for Air, G-7.1-1966. The air supply in the cylinder shall be adequate for completion of the work and escape. Oxygen must never be used with air-line respirators.
(A) The compressor for supplying air shall be equipped with necessary safety and standby devices. A breathing air-type compressor shall be used. An air-storage receiver shall also be
provided to furnish the wearer with an adequate supply of escape air if the compressor fails to operate. A compressor shutoff alarm and nec essary aerosol and vapor and gas filters shall also be incorporated into the system.
If an oil-lubricated compressor is used, it shall have a high-temperature or carbon monox ide alarm, or both. If only a high-temperature alarm is used, the air from the compressor shall be frequently tested for carbon monoxide to in sure that it meets the specifications in 6.3.2.2 (2).
(4) The wearer shall be properly trained in the use of the air-line respirator and shall be well-informed of the hazard. A standard operat ing procedure shall be prepared for each situa tion for which air-line respirators are employed in atmospheres immediately hazardous to life or health, and air-line respirator users shall be thoroughly familiar with this procedure.
(5) Continuous-flow air-line respirators are designed for maximum comfort with a minimum airflow that will adequately protect the wearer in a non-hazardous atmosphere. However, they are capable of providing adequate airflow to protect the wearer in a hazardous atmosphere. This adequate airflow is obtained when the air flow control valve is fully open.
The recommended minimum airflows for use of air-line respirators in hazardous atmospheres are five cubic feet per minute to tight fitting facepieces and seven cubic feet per minute to loose fitting hoods or helmets. Persons wearing supplied-air suits shall follow the manufacturer's instructions concerning minimum airflow.
For further information on furnishing com pressed air to air-line respirators, refer to Com pressed Gas Association Pamphlet G-7-1968. See 7.3 concerning safe procedures during use of respirators in atmospheres immediately danger ous to life or health.
6.3.3 Not Immediately Dangerous Atmo spheres. If immediately dangerous atmospheres are not present or will not occur, then the con sequences of respirator failure are lessened and emphasis can be placed on other factors such as long term protection, convenience, cost, com fort, and wearer acceptance. These factors should be weighed one against another since they are not always compatible. However, long term protection should be given priority over all other factors.
20
CTD023095
FOR RESPIRATORY PROTECTION
Z88.2
Long term protection is determined primarily by the amount of inward leakage of atmospheric contaminants during normal usage of the res pirator. The various types of respirators are grouped below according to the increasing amount of inward leakage one might expect during their routine use. Group 1
Supplied-air suit Pressure-demand full facepiece open-circuit and
air-line devices Pressure-type full facepiece closed-circuit self-
contained breathing apparatus Continuous-flow full facepiece air-line respirator Air-line respirator with loose-fitting hood gath
ered around the waist Hose-mask with blower and full facepiece mask Group 2
Demand-type full facepiece open-circuit selfcontained breathing apparatus
Demand-type full facepiece air-line respirator Pressure-demand half-mask air-line respirator Group 3
Continuous-flow half-mask air-line respirator Demand-type half-mask air-line respirator Air-line respirator with loose-fitting hood gath
ered around the neck Group 4
Air-purifying respirator with blower and with full facepiece or hood gathered around the waist
Group 5
Air-purifying respirator with blower and with half-mask facepiece or hood gathered around the neck
Group 6
Hose mask without blower Air-purifying full facepiece respirator without
blower Group 7
Air-purifying half-mask respirator without blower
Mouthpiece respirator The negative pressure produced in the face-
piece of many respirators (some in Groups 2 and 3 and all in Groups 6 and 7) during inhala tion will cause inward leakage of ambient air if leaks exist. The amount of inward leakage ex pected for various types of respirators is vaguely understood and is related to the facepiece-toface seal and leakage of various components in cluding air-purifying units. For Group 1, in ward leakage will normally be infinitesimal or
nonexistent. For Groups 2, 3, 4, and 5, inward leakage will normally be minute. In Group 6, inward leakage with a good facepiece-to-face seal and with ideal wearing conditions may be as low as 0.1 percent In practice, however, this low level leakage is usually not attained due to poor facepiece-to-face fit and adverse wearing conditions such as face movements and beard growth. For Group 7, inward leakage with good facepiece-to-face fit and ideal wearing condi tions may be as low as 1 percent. This leakage level, however, is seldom attained for reasons similar to those cited for devices in Group 6. It is, therefore, important (particularly for devices in Groups 6 and 7) that due consideration be given to potential inward leakage in selecting devices.
Experience has demonstrated that not all persons can obtain a satisfactory facepiece-toface seal with a single full facepiece or half-mask air-purifying respirator. Therefore, to provide an adequate facepiece-to-face seal on a variety of facial features, it may be necessary that two or more models of full facepiece or half-mask respirators be available. When an individual can be fitted with two or more respirators, he should be permitted to select the most comfortable device. See 7.5 for a discussion of face fit tests and procedures.
6.3.4 Monitoring of Air Contaminants. Eval uation of contaminant concentration to which a person wearing a respirator may be exposed is an integral part of an effective respirator pro gram. Air sampling data are important in the selection of the proper respirator and should include: 1) identification of the contaminant; 2) nature of the hazard; and 3) concentration at the breathing zone. The dat^ are also helpful in estimating the possible levels of exposure that may have occurred during use of respirators.
In an air monitoring program, sampling should be carried out over at least one cycle of operation and, preferably, over several cycles when production activity varies. Normally, samples should be collected at the worker's breathing zone. However, where necessary, gen eral air samples should be collected in the vicinity of the operation. The sampling period will be determined by the sensitivity of the analytical method and the acceptable contami nant concentration.
It is important that representative samples be obtained. The number of samples to be taken depends on the variation in contaminant
21
CTD023096
Z88.2
AMERICAN NATIONAL STANDARD PRACTICES
generation rate during the operation. Sampling data should permit estimation of the worker's time weighted exposure. The peak contaminant concentration should also be estimated to as sure that the respirator selected will provide adequate protection against high transient air concentrations.
Breathing zone sampling is important since significant variations in concentrations are noted between general air and the worker's breathing zone. Use' of personal or lapel air samplers is encouraged since they have been shown to more closely identify the true exposure.
Although it is recognized that in emergency situations air sampling cannot be carried out as outlined above, every reasonable effort shall be made to evaluate conditions of exposure and to provide appropriate respiratory protection. Where a high hazard potential exists, a conserv ative estimate should be made.
6.3.5 Unusual Hazards. Unusual factors can add new dimensions to a hazardous situation and should be anticipated in selecting respira tors. Some examples are provided here.
6.3.5.1 Absorption through or Irritation of the Skin. Some airborne contaminants are ex tremely irritating to the skin (for example, ammonia and hydrochloric acid) while others are capable of being absorbed through the skin and into the blood stream with serious, possibly fatal, results. Hydrocyanic acid gas and many of the organic phosphate pesticides, such as parathion, malathion, and tetraethyl-pyrophosphate (TEPP), will penetrate the unbroken skin. A facepiece or hood respirator will not afford com plete protection against these contaminants. If the concentration is high, or if exposure is pro longed, a full body-covering suit of impermeable material shall be worn with respiratory protec tion. A facepiece may not be required if the suit is leakproof and adequately ventilated.
6.3.5.2 Radiation of Skin and Whole Body. The respirator may not protect the skin or whole body against radiation from airborne con centrations of certain radionuclides including noble gas radionuclides and other relatively bio logically inert gases.
6.4 Extent and Location of Hazard. The ex tent of the hazard in space and time and its physical location shall be considered in respira tor selection. They include the length of time protection will be needed, entry and exit times, accessibility of a fresh air supply, and the ability
to use air lines or move about freely while wear ing the respirator.
The location of the contaminated area in respect to a possible source of respirable air requires special consideration. In using a hose mask, air-line respirator, or abrasive-blasting respirator, the distance that the wearer can go into a contaminated atmosphere is limited by the length of hose connected to the source of respirable air. Furthermore, the presence of the hose requires that he enter and leave the area by the same route unless the device is equipped with an auxiliary air cylinder, chemical canister or cartridge, or particulate filter appropriate for use in withdrawal. While wearing a self-con tained breathing apparatus or a gas mask, a person may leave the contaminated area by any exit, but he should make certain that the device will afford protection until he reaches respirable air, taking into account possible delays.
6.5 Work Requirements and Conditions
6.5.1 Work Time. Work time usually deter mines the length of time for which respiratory protection is needed, including the time neces sary to enter and leave a contaminated area. A self-contained breathing apparatus, gas mask, or chemical-cartridge respirator provide respira tory protection for relatively short periods, whereas the hose mask with blower, air-line respirator, and abrasive-blasting respirator pro vide protection for as long as the facepiece is supplied with adequate respirable air. Particu late-filter respirators can provide protection for long periods, without need for filter replacement, only if the atmospheric particulate loading is low. Therefore, for protracted periods of use, the hose mask with blower and air-line respira tors offer definite advantages. They also cause less discomfort than air-purifying respirators.
Some respirators have a means for indicating the remaining service life. Some type of warning is available for all self-contained breathing ap paratus and some gas masks. This may be a pressure gage, timer, audible or physical alarm, or window indicat nr in the canister. The user should understand the operation and limitations of each type of warning device. Most other gas masks and chemical-cartridge respirators have no indicator of remaining service life. Canisters and cartridges should be changed according to the manufacturer's directions.
6.5.2 Activity of Wearer. The work area to be covered, work rate, and mobility required of
22
CTD023097
FOR RESPIRATORY PROTECTION
Z88.2
the wearer in carrying out his work should be considered in respirator selection.
Air-purifying respirators present minimal in terference with the wearer's movement. Supplied-air respirators with trailing hoses severely restrict the area the wearer can cover and pre sent a potential hazard where the trailing hose can come in contact with machinery. Self-con tained breathing apparatus present a size and weight penalty which may restrict climbing and movement in tight places.
The wearer's work rate determines his res piratory minute volume, maximum inspiratory flow rate, and inhalation and exhalation breath ing resistance. The respiratory minute volume is of great significance in self-contained and air line respirators operated from cylinders since it determines their operating life. Useful life under moderate work conditions may be one-third that under rest conditions.
Peak airflow rate is important in the use of constant-flow air-line equipment. The air-supply rate should always be greater than the peak inspiratory flow rate to maintain the respiratory enclosure under positive pressure.
High breathing resistance of air-purifying respirators under conditions of heavy work can result in distressed breathing.
6.5.3 Vision. All facepieces will restrict, to some degree, the wearer's vision. This may in crease accident potential. Other problems in clude wearing of prescription glasses and fogging of the respirator lens (see 9.1, 9.2, and 9.3).
6.5.4 Communications. Effective speech com munication may be required in jobs for which the respirator is being selected. Section 9.5 pro vides information in this subject.
6.5.5 Temperature Extremes. The ability to cope with stress caused by temperature ex tremes is especially important in emergency situations when only immediately available res pirators can be used. See 9.3 and 9.4 for further details on use of respirators in temperature ex tremes.
6.5.6 Eye Protection. Where required, fullfacepiece respirator eyepieces and eye protection worn with half-mask facepieces shall meet the pertinent requirements of American National Standard Practice for Occupational and Educa tional Eye and Face Protection, Z87.1-1968.
6.6 Employee Acceptance and Face Fit. These factors are of prime importance in respirator
selection. The wearer's acceptance of a particu lar respirator depends on the lack of facepiece discomfort, interference with vision, weight of the device, breathing resistance, and individual physical condition and psychological factors. The ability to form a good facepiece-to-face seal depends on respirator design and facial features, and is usually the most important factor in obtaining proper protection with an air-puri fying respirator, particularly of the half-mask type. See 7.5 for a discussion of face-fit tests and procedures.
7. Use of Respirators
7.1 Operating Procedures. Standard proced ures shall be developed for respirator use. These should include all information and guidance necessary for their proper selection, use, and care. Possible emergency and routine uses of respirators should be anticipated and planned for.
7.2 Issuance of Respirators. The correct res pirator shall be specified for each job. The res pirator type is usually specified in the work pro cedures by a qualified individual supervising the respiratory protective program. The individual issuing them shall be adequately instructed to insure that the correct respirator is issued. Each respirator permanently assigned to an individual should be durably marked to indicate to whom it was assigned. This mark shall not affect the respirator performance in any way. The date of issuance should be recorded.
7.3 Use in Dangerous Atmospheres. Written procedures shall be prepared covering safe use of respirators in dangerous atmospheres that might be encountered in normal operations or in emergencies. Personnel shall be familiar with these procedures and the available respirators.
In areas where the wearer, with failure of the respirator, could be overcome by a toxic or oxygen-deficient atmosphere, at least one addi tional man shall be present. Communications (visual, voice, or signal line) shall be maintained between both or all individuals present. Plan ning shall be such that one individual will be unaffected by any likely incident and have the proper rescue equipment to be able to assist the other(s) in case of emergency. See 6.3.1 and 6.3.2 for guidance on selection of respirators for use in dangerous atmospheres.
23 CTD023098
Z88.2
AMERICAN NATIONAL STANDARD PRACTICES
7.4 Training and Education in Proper Use. For safe use of any respirator, it is essential that the user be properly instructed in its selection, use, and maintenance. Both supervisors and workers shall be so instructed by competent persons.
Minimum training shall include the following:
(1) Instruction in the nature of the hazard, whether acute, chronic, or both, and an honest appraisal of what may happen if the respirator is not used.
(2) Explanation of why more positive con trol is not immediately feasible. This shall in clude recognition that every reasonable effort is being made to reduce or eliminate the need for respirators.
(3) A discussion of why this is the proper type of respirator for the particular purpose.
(4) A discussion of the respirator's capabil ities and limitations.
(5) Instruction and training in actual use of the respirator (especially a respirator for emergency use) and close and frequent super vision to assure that it continues to be properly used.
(6) Classroom and field training to recog nize and cope with emergency situations.
(7) Other special training as needed for spe cial use.
Training shall provide the men an oppor tunity to handle the respirator, have it fitted properly, test its facepiece-to-face seal, wear it in normal air for a long familiarity period, and, finally, to wear it in a test atmosphere.
7.5 Facepiece Fit Tests and Procedures. Every respirator wearer shall receive fitting in structions including demonstrations and prac tice in how the respirator should be worn, how to adjust it, and how to determine if it fits properly. Respirators shall not be worn when conditions prevent a good face seal. Such con ditions may be a growth of beard, sideburns, a skull cap that projects under the facepiece, or temple pieces on glasses. Also, the absence of one or both dentures can seriously affect the fit of a facepiece. The worker's diligence in ob serving these factors shall be evaluated by periodic checks.
To assure proper protection, the facepiece fit shall be checked by the wearer each time he puts on the respirator. This may be done by
following the manufacturer's facepiece-fitting instructions such as these two simple field tests:
(1) Positive Pressure Test. Close the exhala tion valve and exhale gently into the facepiece. The face fit is considered satisfactory if a slight positive pressure can be built up inside the facepiece without any evidence of outward leakage of air at the seal. For most respirators, this method of leak testing requires that the wearer first remove the exhalation valve cover and then carefully replace it after the test.
(2) Negative Pressure Test. Close off the inlet opening of the canister or cartridge(s) by covering with the palm of the hand(s) or by replacing the seal(s), inhale gently so that the facepiece collapses slightly, and hold the breath for ten seconds. If the facepiece remains in its slightly collapsed condition and no inward leakage of air is detected, the tightness of the respirator is probably satisfactory.
Potential users of respirators should also be required to test their facepiece fit by wearing the respirator under realistic test conditions. A concentration of 100 parts per million isoamyl acetate vapor (obtained by vaporizing 17.3 milli liters of isoamyl acetate for each 1,000 cubic feet of room volume) may be prepared in a special chamber, a small plastic enclosure, or in a vacant room. If the person wearing the respirator can enter and remain in this test atmosphere without detecting the odor of isamyl acetate, he has a good fit. If he detects the odor, he should retreat to fresh air, readjust the facepiece, and repeat the test. If leakage is still noted, it can be concluded that this particular respirator will not protect the wearer. The wearer should not continue to tighten the headband straps until they are un comfortably tight, simply to achieve a gas-tight face fit. If fitted too tightly, the wearer will not wear the respirator or will wear it fitting com fortably loose and will not have a gas-tight seal.
Particulate-filter respirators can frequently be adapted for use with chemical cartridges and may also be tested for face fit in isoamyl acetate.
To check the fit of a respirator equipped with a high-efficiency particulate filter, an irritant smoke tube (glass tube 12 centimeters long by 1 centimeter diameter, filled with stannic chlor ide-impregnated pumice) produces a very irritating smoke when air is blown through it. The smoke is directed at the facepiece seal and leakage is indicated by irritation of the throat and lungs. (When testing half-mask facepieces,
24
CTD023099
FOR RESPIRATORY PROTECTION
Z88.2
do not direct the smoke into the eyes and in struct the wearer to keep his eyes closed during the test.) Freshly produced smoke particles from this tube range from less than 0.1 to 3 mi crons in diameter. The glass tube is scored at each end for easy breaking. A squeeze bulb with a short rubber tube aspirates air through the tube; visible smoke is immediately formed by contact with moisture in the air. The irritant is hydrochloric acid absorbed on the particulate. A similar smoke is produced with a sulfur trioxide or titanium tetrachloride tube.
Several methods of determining facepiece fit are described in detail in the Respiratory Pro tective Devices Manual, published by the Amer ican Industrial Hygiene Association and the American Conference of Governmental Indus trial Hygienists in 1963.
8. Maintenance and
Care of Respirators
8.1 General. A program for maintenance and care of respirators shall be adjusted to the type of plant, working conditions, and hazards in volved, and shall include the following basic services:
(1) inspection for defects (including a leak check)
(2) cleaning and disinfecting
(3) repair
(4) storage Equipment shall be properly maintained to retain its original effectiveness.
8.2 Inspection. All respirators shall be inspected routinely before and after each use. A respirator that is not routinely used but is kept ready for emergency use shall be inspected after each use and at least monthly to assure that it is in satis factory working condition.
Self-contained breathing apparatus shall be inspected monthly. Air and oxygen cylinders shall be fully charged according to the manu facturer's instructions. It shall be determined that the regulator and warning devices function properly.
Respirator inspection shall include a check of the tightness of connections and the condition of the facepiece, headbands, valves, connecting tube, and canisters. Rubber or elastomer parts shall be inspected for pliability and signs of de terioration. Stretching and manipulating rubber
or elastomer parts with a massaging action will keep them pliable and flexible and prevent them from taking a set during storage.
A record shall be kept of inspection dates and findings for respirators maintained for emer gency use.
8.3 Cleaning and Disinfection. Routinely used respirators shall be collected, cleaned, and dis infected as frequently as necessary to insure that proper protection is provided for the wearer. Each worker should be briefed on the cleaning procedure and be assured that he will always receive a clean and disinfected respira tor. Such assurances are of greatest significance when respirators are not individually assigned to workers. Respirators maintained for emer gency use shall be cleaned and disinfected after each use.
The following procedure is recommended for cleaning and disinfecting respirators:
(1) Remove any filters, cartridges, or canis ters.
(2) Wash facepiece and breathing tube in cleaner-disinfectant or detergent solution (see following paragraphs). Use a hand brush to fa cilitate removal of dirt.
(3) Rinse completely in clean, warm water.
(4) Air dry in a clean area.
(5) Clean other respirator parts as recom mended by manufacturer.
(6) Inspect valves, headstraps, and other parts; replace with new parts if defective.
(7) Insert new filters, cartridges, or canis ters; make sure seal is tight.
(8) Place in plastic bag or container for stor age.
Cleaner-disinfectant solutions are available that effectively clean the respirator and contain a bactericidal agent. The bactericidal agent is generally a quaternary ammonium compound. The respirator may be immersed in the solution, * rinsed in clean, warm water, and air dried.
Alternatively, respirators may be washed in a liquid detergent solution, then immersed in: 1) a hypochlorite solution (50 parts per mil lion of chlorine) for 2 minutes; 2) an aqueous iodine solution (50 parts per million of iodine) for 2 minutes; or 3) a quaternary ammonium solution (200 parts per million of quaternary ammonium compounds in water with less than 500 parts per million total hardness).
25
CTD023100
283.2
AMERICAN NATIONAL STANDARD PRACTICES
Different concentrations of quaternary am monium salts are required to achieve a disin fecting solution with waters of varying hardness. Also, dermatitis may occur if the quaternary ammonium compounds are not completely rinsed from the respirator. The hypochlorite and iodine solutions are not stable; they age rubber parts, and are corrosive to metallic parts. There fore, immersion times should not be extended and the disinfectants shall be thoroughly rinsed from the respirator parts.
Strong cleaning and disinfecting agents can damage respirator parts. Temperatures above 185 degrees Fahrenheit and vigorous mechanical agitation should not be used. Solvents which affect elastomer or rubber parts should be used with caution.
Respirators may be contaminated with toxic materials (that is, organic phosphate pecticides and radionuclides). If the contamination is light, normal cleaning procedures should provide satisfactory decontamination; if heavy, a sepa rate decontamination step may be required be fore cleaning.
For complete decontamination against phos phate pesticides, the respirator should be washed with alkaline soap and rinsed with 50 percent alcohol (ethyl or isopropyl).
Respirators used to protect against radioac tive contaminants should be decontaminated to levels not exceeding 100 disintegrations per min ute per 100 square centimeters fixed alpha and 0.2 millirad per hour of beta-gamma above background at contact. There should be no detectable removable activity using standard swipe techniques.
8.4 Repair. Replacement or repairs shall be done only by experienced persons with parts designed for the respirator. No attempt shall be made to replace components or to make ad justment or repairs beyond the manufacturer's recommendations. Reducing or admission valves or regulators shall be returned to the manufac turer or to a trained technician for adjustment or repair.
8.5 Storage. After inspection, cleaning, and necessary repair, respirators shall be stored to protect against dust, sunlight, heat, extreme cold, excessive moisture or damaging chemicals. Respirators placed at stations and work areas for emergency use should be stored in compart ments built for the purpose, be quickly acces sible at all times, and be clearly marked. Rou
tinely used respirators, such as dust respirators, may be placed in plastic bags. Respirators should not be stored in such places as lockers or tool boxes unless they are in carrying cases or cartons.
Respirators should be packed or stored so that the facepiece and exhalation valve will rest in a normal position and function will not be impaired by the elastomer setting in an ab normal position.
Instructions for proper storage of emergency respirators, such as gas masks and self-contained breathing apparatus, are found in "use and care" instructions usually mounted inside the carrying case lid.
9. Special Problems
9.1 Corrective Lens with Full Facepiece. Pro viding respiratory protection for individuals wearing corrective glasses is a serious problem. A proper seal cannot be established if the temple bars of eye glasses extend through the sealing edge of the full facepiece. As a temporary mea sure, glasses with short temple bars or without temple bars may be taped to the wearer's head. Wearing of contact lenses in contaminated at mospheres with a respirator shall not be allowed.
Systems have been developed for mounting corrective lenses inside full facepieces. When a workman must wear corrective lenses as part of the facepiece, the facepiece and lenses shall be fitted by qualified individuals to provide good vision, comfort, and a gas-tight seal.
9.2 Eyewear with Half-Mask Facepiece. If corrective spectacles or goggles are required, they shall be worn so as not to affect the fit of the facepiece. Proper selection of equipment will minimize or avoid this problem.
9.3 Respirator Use in Low Temperatures. Ma jor problems in the use of full facepieces at low temperatures are poor visibility and freezing of exhalation valves. All full facepieces are de-' signed so that the incoming fresh air sweeps over the inside of the lens to reduce fogging. Otherwise, it would be impossible to wear a full facepiece in ordinary room temperatures with out severe fogging. Antifog compounds can be used to coat the inside of the lens to prevent fogging at room temperatures and down to tem peratures approaching 32 degrees Tahrenheit. However, below zero degrees Fahrenheit, anti fog compounds will not prevent severe fogging.
26 CTD023101
FOR RESPIRATORY PROTECTION
Z88.2
Full facepieces are available with nose cups that direct moist exhaled air through the ex halation valve. A properly fitted nose cup should provide satisfactory or adequate visibility at temperatures down to --30 degrees Fahrenheit.
At very low temperatures, the exhalation valve may collect moisture and freeze open, al lowing the wearer to breathe contaminated air, or freeze closed, preventing normal exhalation. The Bureau of Mines has published two pam phlets on this subject: Performance of OpenCircuit Self-Contained Breathing Apparatus at --25 F, R.I. 7077 (1966), and Low-Tempera ture Performance of Compressed-Oxygen Closed-Circuit Breathing Apparatus, R.I. 7192 (1968). Dry respirable air shall be used with self-contained breathing apparatus or air-line respirators at low temperatures. The dewpoint of the breathing gas shall be appropriate to the ambient temperature.
High-pressure connections on self-contained breathing apparatus may leak because of metal contraction at low temperatures. The connec tions should not be overtightened since they may break when the temperature returns to normal.
9.4 Respirator Use in High Temperatures. A man working in areas of high ambient or radiant temperature is under stress. Any additional stress resulting from use of respirators should, therefore, be minimized. This can be done by se lecting and using respirators having minimum weight and breathing resistance. Supplied-air respirators and hoods and suits having an ade quate supply of cool breathing air are recom mended. Further information on use of respira tors in high temperatures may be found in Breathing Apparatus for the Fire Service, pub lished by the National Fire Protection Associa tion in 1966.
9.5 Communications. Although conventional respirators distort the human voice to some extent, the respirator exhalation valve usually provides a pathway for some speech transmis sion over short distances in relatively quiet areas. Talking can induce facepiece or compo nent leakage and therefore should be limited while wearing a respirator, especially those with half-mask facepieces.
Mechanical speech transmission devices called speaking diaphragms are available as an inte gral part of some respirators. These consist of a resonant cavity and diaphragm which amplify
sound in the frequency range most important to speech intelligibility. The diaphragm acts as a barrier to the ambient atmosphere. It should be carefully handled and protected by a cover to prevent puncture.
Various methods of electronically transmit ting s|>eech from the respirator are available. These utilize a microphone connected to a tele phone or radio transmitter. Usually the micro phone is mounted in the facepiece, while the amplifier, power pack, and loudspeaker or trans mitter are attached to the exterior of the mask, carried on the body, or are remotely located.
Respirators with electric or electronic speech transmission devices having an integral or bodyattached battery power supply should be used with caution in explosive atmospheres. Sealed power sources should be checked for integrity of seals. Connecting cables from microphones inside the facepiece shall have gas-tight seals where they emerge from the facepiece. When the loudspeaker diaphragm is part of the barrier between the respirator wearer and the ambient atmosphere, it shall be frequently inspected for leakage and should be adequately protected from puncture or rupture. The assembly of an electronic or electrical speech transmission de vice into a respirator shall be avoided if it re sults in a center of gravity and moment of iner tia such that the mask may be dislodged from the face during wearer activity in a toxic en vironment. Removal of speech transmission de vices may allow contaminant leakage into the facepiece.
9.6 Nonconventionai Respirators. Special res pirator designs, such as "neck respirators'' for persons having a tracheotomy, may present problems not commonly encountered with con ventional respirators. Therefore, the manufac turer should be consulted for special guidance or precautions.
10. Evaluation of Respirator Program Effectiveness
10.1 General. Feedback on how a respirator program is functioning is necessary if manage ment is to maintain effective respiratory pro tection. Program improvements and elimination of deficiencies cannot be effected unless the pro gram is monitored and evaluated on a continu ing basis. The following techniques are used in evaluating the effectiveness of respirator pro grams.
27
CTD023102
Z88.2
AMERICAN NATIONAL STANDARD PRACTICES
10.2 Wearer Acceptance. The effectiveness of a respirator program can be largely determined by the degree of worker acceptance. Numerous factors affect the worker's acceptance of respira tors. These include comfort, ability to breathe without objectionable effort, adequate visibility under all conditions, provisions for wearing pre scription glasses if necessary, ability to commu nicate, ability to perform all tasks without un due interference, and confidence in the facepiece fit. Failure to consider these factors is likely to reduce cooperation of the wearers in promoting a satisfactory program. How well these problems have been overcome can be determined by ob serving wearers during normal activities and by soliciting their comments.
10.3 Examination of Respirators in Use. Res piratory protection is no better than the respira tor in use, even though it is worn conscien tiously. Frequent random inspections shall be conducted by a qualified individual to assure that respirators are properly selected, used, cleaned, and maintained.
10.4 Evaluation of Protection Afforded. When respirators are worn in toxic atmospheres, the individual should be provided appropriate peri odic laboratory tests. These may include urine, blood, or fecal analyses and other techniques to determine the intake and excretion of toxic sub stances. The findings of these tests, when corre lated with other exposure data (especially air sampling data, as described in 6.3.4) for wearers of such equipment, can serve as an indication of the effectiveness of the program. Positive evi dence of exposure shall be followed up to deter mine any relationship to inadequate respiratory protection and need for additional engineering controls.
Nasal or facepiece interior smears, or both, usually will detect any significant penetration of radioactive contaminants into the facepiece.
11. References to Other Codes,
Standards and Manuals
11.1 American National Standards Institute. When any of the following American National Standards is superseded by a revision approved by the Standards Institute, the revision shall apply.
11.1.1 American National Standard Identifi cation of Gas Mask Canisters, K13.1-1967
11.1.2 American National Standard Method of Marking Portable Compressed Gas Contain ers To Identify the Material Contained, Z48.11954
11.1.3 American National Standard Practice for Occupational and Educational Eye and Face Protection, Z87.1-1968
11.1.4 American National Standard Safety Guide for Respiratory Protection against Radon Daughters, Z88.1-1969
11.2 Compressed Gas Association
11.2.1 Commodity Specification for Air, Spe cification G-7.1, 1966
11.2.2 Compressed Air for Human Respira tion, Pamphlet G-7, 1968
11.3 Interstate Commerce Commission; U.S. Department of Transportation
11.3.1 Code of Federal Regulations, Title 49, Parts 71-90, Rules and Regulations for the Transportation of Explosives and Other Dan gerous Articles
11.4 U.S. Department of the Interior, Bureau of Mines. See A2.1 in the Appendix to this Standard.
11.4.1 Schedule 13E, Self-Contained Breath ing Apparatus, Code of Federal Regulations, Part II, Subchapter B, Chapter 1 of Title 30.
11.4.2 Schedule 14F, Gas Masks, Code of Fed eral Regulations, Part 13, Subchapter B, Chap ter 1 of Title 30.
11.4.3 Schedule 19B and Amendments to Schedule 19B, Supplied-Air Respirators, Code of Federal Regulations, Part 12, Subchapter B, Chapter 1 of Title 30.
11.4.4 Schedule 21B, Filter-Type Dust, Fume, and Mist Respirators, Code of Federal Regula tions, Part 14, Subchapter B, Chapter 1 of Title 30.
11.4.5 Schedule 23B, Nonemergency Gas Res-* pirators (Chemical-Cartridge Respirators In cluding Paint-Spray Respirators), Code of Fed eral Regulations, Part 14a, Subchapter B, Chap ter 1 of Title 30.
11.4.6 Performance of Open-Circuit Self-Con tained Breathing Apparatus at --25 F. R.I. 7077, 1966.
11.4.7 Low-Temperature Performance of Com pressed-Oxygen Closed-Circuit Breathing Ap paratus. R.I. 7192,1968.
28
CTD023103
FOR RESPIRATORY PROTECTION
11.4.8 Information Circular 8281 (October 1, 1965 and annual supplements). Respiratory Protective Devices approved by the U.S. Bu reau of Mines.
11.5 U.S. Department of Agriculture 11.5.1 Respiratory Devices for Protection
Against Certain Pesticides, ARS-33-76-2. Feb ruary 1966 (addendum March 1, 1966).
11.6 General Services Administration 11.6.1 Federal Specification BB-A-1034a
(June 21, 1968). Air, Compressed for Breath ing Purposes.
11.6.2 Interim Federal Specification GG-B00675b (April 27, 1965). Breathing Apparatus, Self-Contained.
Z88.2
11.7 American Industrial Hygiene Associa tion and American Conference of Govern mental Industrial Hygienists.
11.7.1 Respiratory Protective Devices Man ual, 1963.
11.8 National Fire Protection Association 11.8.1 Breathing Apparatus for the Fire Serv
ice, 1966.
11.9 American Conference of Governmental Industrial Hygienists
11.9.1 Threshold Limit Value of Air-Borne Contaminants for 1968, Recommended and In dexed Values. (1968 or latest revision.)
11.9.2 Documentation of Threshold Limit Values, 1962. (1962 or latest revision.)
29 CTD023104
Appendix
Respirator Approval and Acceptance Listings
(This Appendix is not a part of American National Standard Practices for Respiratory Protection, Z88.2-1969, but is included for information purposes only.)
Al. Approved or Listed Respirators
The Department of the Interior, Bureau of Mines, and the Department of Agriculture pub lish frequently revised lists of respirators. Sam ples of these have been tested and found to pro vide satisfactory respiratory protection against specific hazards or contaminants.
Al.l Respirators Approved by the Depart ment of the Interior, Bureau of Mines. A list of respirators approved by the Department of the Interior, Bureau of Mines, may be obtained from the Superintendent of Documents, U.S. Government Printing Office, Washington, D.C. 20402.
AO Respirators on Lists Published by the Department of Agriculture. A list of respira tors for respiratory protection against certain pesticides may be obtained from the Depart ment of Agriculture, Pesticide Chemicals Re search Branch, Beltsville, Maryland 20705.
A2. Requirements for and Tests of Respirators
Requirements and testing procedures for res pirators have been established and published by the Department of the Interior, Bureau of Mines, and the Department of Agriculture.
A2.1 Department of the Interior, Bureau of Mines, Requirements and Tests. Requirements for approval of most types of respirators used have been established. These requirements are published as the Department of the Interior, Bureau of Mines, schedules. A current list of these schedules appears in Section 11, Refer ences. These schedules are frequently revised and each subsequent revision is assigned a suc ceeding terminal letter (for example, schedule 19B is a revision of schedule 19A).
Copies of the most recent schedules may be obtained from the Publications Distribution Section, Department of the Interior, Bureau of Mines, 4800 Forbes Avenue, Pittsburgh, Penn sylvania 15213.
The Department of the Interior, Bureau of Mines, approval on a respirator continues in ef fect even though the schedule under which the respirator was approved has been revised one or more times. If the user wishes to check the minimum performance he may expect from an approved respirator, he should consult the schedule which was in effect when the approval was granted. Certain respirators are upgraded by the manufacturer to meet the requirements of more recent schedules. In general, each sched ule revision makes the requirements more se vere. A complete list of schedules and their effective dates, and a list of schedules under which each respirator has been approved, will be found in the Bureau's list of approved res pirators.
Responsibility for testing and approval of pesticide respirators has been transferred to the Department of the Interior, Bureau of Mines.
A2.2 Department of Agriculture Require ments and Tests. The Department of Agricul ture previously established requirements and tests for respirators intended to provide respira tory protection during the application and han dling of pesticides. The requirements and tests are described in a publication of tests and re quirements for respirators designed to provide respiratory protection against pesticides. The publication may be obtained from the Depart ment of Agriculture, Pesticide Chemicals Re search Branch, Beltsville, Maryland 20705.
In the Department of Agriculture's tests, pes ticides were dispersed as water sprays, oil sprays, or dry dusts to simulate formulations used in field applications. Chemical cartridges were tested for one hour and gas mask canisters for four hours. Insect bioassay methods were used to determine the efficiency of canisters and cartridges.
The Department of Agriculture did not eval uate facepiece fit of chemical-cartridge respira tors or gas masks. It did not test respirators for protection against rodentirides, herbicides, and fungicides.
30
CTD023105
APPENDIX
A3. Selection of Other Than Approved or Listed Respirators
For special purposes the user may need to select a respirator which has not been submitted to the Department of the Interior, Bureau of Mines, or to the Department of Agriculture for testing, or cannot be tested by these agencies because it is outside their approval or testing authority. Among these are special-purpose res pirators for which user demand does not warrant submitting the devices for testing or approval.
Z88.2
The user should compare unapproved respira tors with similar approved or listed devices to evaluate the facepiece and other parts to assure himself that the manufacturer, or other reliable organization, has tested the filters, cartridges, or canisters, that they are adequate for the re quired service, and that quality control during manufacture can be expected. He should make or have made suitable tests of the respirators' effectiveness which, as far as feasible, simulate tests made by the official testing agencies.
31 CTD023106
American National Standards
The standard in this booklet is one of more than 10,000 standards approved to date by the American National Standards Institute. The Standards Institute provides the machinery for creating voluntary stan dards. It serves to eliminate duplication of standards activities and to weld conflicting standards into single, nationally accepted standards under the designation "American National Standards." Each standard represents general agreement among maker, seller, and user groups as to the best current practice with regard to some specific problem. Thus the completed standards cut across the whole fabric of production, distribution, and consumption of goods and services. American National Standards, by reason of Institute procedures, reflect a national consensus of manufacturers, consumers, and scientific, technical, and professional orga nizations, and governmental agencies. The completed standards are used widely by industry and commerce and often by municipal, state, and federal governments. The Standards Institute, under whose auspices this work is being done, is the United States clearinghouse and coordinating body for voluntary standards activity on the national level. It is a federation of trade associations, techni cal societies, professional groups, and consumer organizations. Some 1000 companies are affiliated with the Institute as company members. The American National Standards Institute is the United States member of the International Organization for Standardization (ISO) and the Interna tional Electrotechnical Commission (IEC). Through these channels U.S. stan dards interests make their positions felt on the international level. American National Standards are on file in the libraries of the national standards bodies of more than 60 countries.
American National Standards Institute, Inc 1430 Broadway
New York, N.Y. 10018
CTD023107
F ollow -up
Certainieed
Dale
December 21, 1982
Subiect
FOLLOWUP SAMPLING FOR INERT NUISANCE DUST AND SILICA DUST RIVERSIDE A/C PIPE PLANT
To
Naaman Rhoades
From
Peter J. Norris
Location and mail code
Riverside, 260
Local ion and mail code
1125/4
cc: F. Timpe - 1125/2B J. Coulon - 2125/2B J. McGinley - 2125/2B D. Hall - 2125/2B L. Megargee - Riverside, 260
Attached are the results of additional dust sampling performed by Larry Megargee in conjunction with the May, 1982 Industrial Hygiene Survey (IHS 82-15). If you have any questions or com ments, please contact me.
PJN/cr Attachment
CTD023108
Industrial Hygiene Followup Sampling Riverside A/C Pipe Plant
October 2 - November 7, 1982
The purpose of the additional sampling was to reproduce and validate the silica dust levels found during the May 24-27, 1982 Industrial Hygiene Survey (IHS 82-15). At that time using the published OSHA procedure for compliance monitoring, it was found that the 30" - Boring Mill Operator and the Coupling Saw Operator were potentially overexposed to silica. It was then recommended that these areas including the other pipe finishing operations be resampled. The results of the resampling performed by Larry Magargee of the Riverside plant are listed in Table I. Table II shows a comparison of dust levels between the two surveys. Fifteen samples were collected, 8 total and 7 respirable, and the results indicate that all silica and nuisance dust exposures were below their respective PELS.
CTD023109
Industrial Hygiene Survey Riverside A/C Pipe Plant October 2 - November 7, 1982
Cutoff Saw 1 a 2 Coupling Cutoff Boring Mill - 30"
Boring Mill - 42" 1/4 Lathe FM Lathe Fitting Maker
Table II Personal Exposure Comparison
10/2 - 11/2/82 Survey
<0.001 0.36 0.06
-R -T -T
0.09 - R 0.59 - T (16.8% Si02)
0.02 - R 0.47 - T ( 16.1% Si02)
0.05 - R 0.26 - T
0.08 - R 0.62 - T
<0.001 - R 0. 15 - T
0.05 - R 0.33 - T (8.7% Si02)
All levels are in units of mg/m3
R - respirable dust,
T - Total dust
5/82 Survey 0.23 - R
1.2 - T (21% Si02>
0.82 - T (28% Si02)
0.26 - R 0.17 - R
0.49 - T
CTD023110
Indu'd rl.tl Hycjicji-- Survey i;, vi ri. i (K* A/r 1-1 fm Plant Octolxir ? - Uovci.'Imt 2, 19H2
TABLE I Personal Exposures to Total t. Reepirab1*' bust and Silica
NO. 02
POSIfUM LOCATION
(DATE)
ANALYSIS FOR
t'/ : /t-sr.'J
057 Saw Operator
VCi/.'J-rff-. 11/1/82
SLeven Atencio Respirable Dust _________________________
Silica
ofr/n
o?' O
7:55a-
250
12:05p
a <0.001 mg/m* _______________
*
oO^ Finished: "V'"' 0" 150 - 1/4 lengths R"159.- 1/4 lengths
10" 150 - random lenglhs' Wore 3H 8710 respirator
/ /'i.'sA f
Saw Operator 11/2/82
Steven Atencio Total bust
3A
Saw Operator John Clauson 3A*otal Dust
10/11/82
..Silica
7:D4a2:45p
411 'Q
<?, &
0.36 mg/ra3 & '
2- finished:
less than detectable
.0.2. if
6" 150 - 1/4 lengths "ISO - 1/2 lengths, ranuOMS
Wore 3M 8710 respirator
8:00a-
310
ItlOp -i'O
0.06 mg/ra3 4 ___________________
*
^/yfiAJinished: O 21" 3300 - Randoms
8*150 - 1/4 lengths, randoms
Coupling Cutoff Operator 10/11/82
08i Coupling / .A Cutoff
/>7 1 Operator 10/28/82
aiiA,
Dennis Cooieyj^ Respirable Dust
xSl lica
34-
Dennis Cooley
Total Dust
Silica
7:40a-
260
12:00p 1'7
0.09 rag/m3 6^/
Finished: 24* 35 - coupling
Blanks (255) 12"150 - coupling
Blanks (19)
8:00a-
300
1:OOp / t p
/7
0.59 mg/m3 0
Finished:
6" - 150 couplings C (25G2 pcs)
16.8 t
Sometimes wore 3M 8710
>(+A$8
respirator OSIIA Limit
=
1.6 mg/m3
^^^iWJ^'^Boring Hill
A Operator-30" 11/2/82
P. Dobbs ^'^3
Respirable Dust
8s02a- . 360 2:02p^'C>
0.02 mg/m3 r Q
Finished:
^/*/
6" 150 couplings
7 (82B pcs)
W&S Boring Mill ^ , Operator
' 10/20/82
0^^ 1
P. Dobbs y/\ Total Dust Silica
z&A-
^P<T`A*'' Boring Hill
0 ,J
Operator-42" 11/21/82
Jim James ^^
Respirable Dust 4*'//
8:01a2:00p
359
0.47 mg/m3 ' 3^/
16. 1 % . ocC
Finished: 8" 150 couplings (951 pcs)
Sometimes wore 3H 8710 respirators during cleanup OSHA Limit " 1,7 mg/m3
/-7
8:05a-
390
2:35p
0.05 mg/m3 + 0 %f
6
Finished: 24" 35 couplings
(208 pc s)
Boring Mill - -t/Vt Operator-42"
t/29/82
07 7*,
Jim James
Total bust
'3b Silica 4-
8:05a-J ^390 2:35p a'
0.26 mg/tn3 0 ._d
less than detectable
^
0
Finished:
-
24" 35 couplings
(27U pcs)
* Sample weight too snail for Silica analysis to be performed.
CTD023111
ln<1u>t rial II y<J i *<*< Sutvey Kl vi-i * I'S- A/C Ripe Nant October 2 - November 2, 19B2
TMILC ___ I Personal Kxposuren lo Total < Respirable Dust and Silica
NO. 82
POSITION LOCATION
(DATE)
Mfo 1/4 Lathe
* -alOper-itor 0 "*{o/20/B2
NAKE/AKEA
ANALYSIS FOR
k<>i%{r/L
J. Dobbs
Respirable Dust
TIME
MIN
RESULT
rfPfiK)
8: 10 a3 s 20p
430
{,1
0.08 mg/nr*
REMARKS
*0^^ 6
Finished: 6"150 - 1/4 FM (145 pcs)
1/4 Lathe q n Operator
10/29/82
Ofoflf
A Col* *
FM Lathe
Operator 10/29/82
J. Dobbs Larry Gii
Total Oust Silica
Respirable Dust 5^-tica/''
FM Lathe
-./) Operator 0 ** 10/21/82
'
Larry Gil Q Total Dust
a*)
Fittings Maker 11/2/82
Chris
'?/?
Hamilton
Respirable Dust
AFittings
^^H^haker (-' 11/1/82
0^^
Chris Hamilton
JA Total Dust
Silica
zeA'
8:02a-
396
2; 38p e<* O
,o
0.62 mg/w*
less than detectable
OtH^f 3 Finished: , 8"150 - 1/4
0 ( 175 pcs )
^ An
JJoro *** 0710
MEO respirator
7:58a- , .,392
2:32p '*7
<0.001 mg/m* < ,00/
'''"If
Finished: 24* 2400 Se^cr 1/2 MEO (10 pcs) 24* FT 35/150 PAD-19 (11 pcs) 12* FT 60 X 40 PAD-18 (2 pcs) Wore 3M 8710 respirator
6:10a-
398
2:48p A.O
/(7
7:50a-
418
2:43p
0.15
,//fc
0.05 wg/m* ,
a
Finished: 16*150 1/4 MEO (24 pcs) 14-150 1/4 KEO (10 pcs)
Glues 6-150 x 1" TBIC (80 pcs)
8:00a-
435
3:15p Jk ,0
T-. 0
0.33 mg/m* o 0
8.7 %
Finished: 12m 150 X t* C.B. TNDS (36 pcs) Drilled 6"150 TBIC X 1" (100 pcs) OSHA Limit - 2.8 mg/m*
* Sample weight too small for Silica analysis to be performed.
CTD023112
DertairtTasd
Dale
10/7/83
lubiecl
Corporate Industrial Hygiene Recommendation Status Report
To
0. H. Kittilstad
From
D. R. Flall/ev
1125/4
Location and mail cckIo
2125/2B
Per your August 12, 1983; attached are Corporate Industrial Hygiene reconmendations updates for the following P&PG and VBPD plant locations:
A/C
Hillsboro, TX Riverside, CA
PVC Cameron Park, CA Eads, TN McPherson Pipe, Blend and Vinyl, KS McPherson Fab/I.M., KS Social Circle, GA Waco, TX
Polymer
Lake Charles, LA
VBPD
Hagerstown, MD
This report has been compiled from information presently on file and/or direct ccrmunications with plant personnel.
The next update will be forwarded to you by December 31, 1983. Should you have any questions, contact me.
Attachments
CTD023113
RIVERSIDE A/C PIPE PLANT Recommendations F/u
IHS, 4/80 IHS, 5/82
1. A review and upgrading of the present Respirator Program . should be made. (IHS 4/80, 5/82)
Status:
Basic program in place, will be upgraded. Respirator program guidelines to be established by Group Health and Safety, will be issued to the plant by 10/82. This being done to ensure a proper mechanism is set in place to address various aspects of proper res pirator use and care. Guidelines will be consistent with those outlined in two NIOSH publications. Respiratory Protection...An Employer's Manual and Respiratory Protection...A Guide for the Employee. (6/82, DRH)
Status:
Plant continues to use present programs. Group guidelines have yet to be established due to other priorities -- project appears near top of 1984 objectives. (10/83, DRH)
2. Until noise levels are reduced to acceptable limits, all employees whose job positions were found to exceed 100% should be required to wear hearing protection and be provided an annual audiometer exam. Several types of protectors should be made available. These machines and job positions should be posted as required hearing protection areas. (IHS, 4/80)
Status:
A Hearing Conservation Program is being established; total development and implementation to be achieved by 12/31/82. Protectors are presently made available and are required in specific areas. Signs will be ordered and will be posted when received. (6/82, DRH)
Status:
Signs posted throughout Finishing Department and at primary crusher; mandatory hearing protector use, enforced. Several types of hearing protective equipment made available to employees. Employees have viewed "Sound Advice". Considered complete. (10/83, DRH)
CTD023114
Riverside A/C Pipe Plant Recommendations F/u
Page 2
3. Clean out pipe tailings in the ventilation system prior to each shift on the Large Lathe Lines. (IHS, 5/82)
Status:
Plant has-on-going procedure for cleaning chips and sticks from dust hoods. Chips/dust from as few as 4 large pipes reaches accumulation level noted by P. Norris. Engineering looking into possibilities to improve dust hood design. (10/83, DRH)
4. Resampling for silica dust should be performed to substantiate the airborne concentrations measured during this survey. Equipment and instructions will be forwarded to the plant safety manager in the near future. (IHS, 5/82)
Status: Complete. Refer to 12/21/82 memo, P. Norris to N. Rhoades, this subject. (10/83, DRH)
5. A Hearing Conservation program should be established for employees who are exposed to noise levels of 85 dBA or greater and 90 dBA or greater for an 8-hour day. (IHS, 5/82)
Status:
Refer to item #2 above. Presently following Cal-OSHA regulations, copies of which are posted and made available to employees. Considered complete. (10/83, DRH)
6. Noise abatement efforts in the finishing department should be increased and all efforts should be documented for compliance purposes. The services of an acoustical consultant should also be considered in solving these noise problems. (IHS, 5/82)
Status:
For present, mandatory use of hearing protectors is the practical solution. Long term, the recommendation has been discussed, however, no engineering solutions have been taken, nor consulting services contracted. Cost factors being considered. (10/83, DRH)
CTD023115
06/13/1994 15:03:37 Page:
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RESULTS MG/M3
NICKEL
CHROMIUM
MG/M3 MANGANESE
0.10 0.22 SUBT.
0.067 0.14 SUBT.
0.62 0.72 SUBT.
COMMENTS:
METHOD! METALS-ATOMIC ABSORPTION, SILICA-X-RAY DIFFRACTION. ALL CAPS WERE OFF OF ONE HALF OF FILTERS.
Respectfully submitted,
Joan A. Wronski, Manager Environmental Sciences Laboratory ACCREDITED BY THE AMERICAN INDUSTRIAL HYGIENE ASSOCIATION
NC137-1A 10*1 KIM
CTD022945
PRINTED IN USA
AEV1SCO
i
Hardfacing Alloys Composite Electrodes
AMSCO'S "PAIR FOR WEAR"
NICRO MANG - X-53
NICRO MANG
Buildug and Joining Manganese Steel Parts
By tar the most universally preferred and used electrode for welding manganese steel -- buildup, repair or join ing. This electrode has weldor appeal plus in all positions, with light, non-popping slag producing top quality de posits with absolutely no cracking. Use Nicro Mang instead of stainless for all joining of manganese to car bon and alloy steels -- deposits can be cut with a torch.
See S/A Nicro Mang (page 5) tor semi-automatic welding.
X-53
Superior General Purpose^Hgj^gjjflg Overlay
Again -- weldor appeal with highest deposition efficiency -- no slag, good buildup, minimum penetration for good bonding. Use on AC or DC reverse or straight -- for speed 1/4" is 18" long. Order with Nicro Mang -- bene fit from quantity prices.
See S/A 53 (page 5) lor semi-automatic welding.
NICRO MANG
Tip -- Silver Coated Only AC-DC 14% Manganese, Nickel-Chromium alloyed Deposit hardness average: 200 Brinell work hardening
up to 500 BHN Standard Package* -- 50 lbs. Type -- Extrude Coated Composite AWS--ASTM Spec: E Fe Mn-A
PRICES PER LB.
5/32" x 14" i 3/16" x 14"
so. 490 lb*. $ .90
.81
500. 1990 lb*.
$ .83
.74
2000 lb*. % .76 .67
1/4" x 18"
.80
.73
.66
5/16" x 18"
.80
.73
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AMSCO 60
' -V ciJik
Not^d for its ease of handling -- coating is extruded on this rod>not dipped -- gives steady, even arc acfrbn. Use for multi-layer buildup on heavy impact hardfdcing jobs. Put it on straight polarity and watch it goj/ Applications: Ncrusher ports, rolls, imppretors, hammers, bucket lips, teetn\tractor parts, dredge parts.
AMSCO 60
For Heavy Impact -- I Tip -- Copper Coated Only AC or DC Sf^hight and Reverse Chrome-Manganese Monensrkjc Steel Deposit Hardness---Re 50 Standard Package^-- 50 lbs. Type -- Extrude Coated Composites
X-53 Tip -- White
vj.
Coated Only AC-DC 15% Chromium, with carbon and molybdenum.
Deposit Hardness Average: 51 -56 Rockwell C -- 495-555 Brinell
Standard Package* -- 50 lbs. Type -- Extrude Coated Composite
I X-53
5/32" x 14" / 3/16" x 14"
PRICES PER LB.
so. 490 lb*. $ .88
.85
soo. 1990 lb*.
1 .83
.80
2000 lb*. $ .81
.75
1/4" x 18"
.83
.78
.73
5/16" x 18"
.83
.73
CD
AMSCO 40
One of the original Amsco composites, 40 is still popular
for its ability to weld edges and' out-of-positigri( still
maintaining high efficiency.
/
Applications: bucket teeth and lips, pulverizer hammers,
shredder knives, njixer blades, Muller tires^
AMSCO 40
For Moderate Impact ahd Abrasi
Tip -- Red
\/
Coated Only AC or DC Sttgi^ht or Reverse
Chrome-Moiy High Carbpnkon
Deposit Hardness -- Rco4
Standard Package* -- 50 lbs.
Type -- Extrude Cpated Composite
PRICES PER LB.
AMSCO 60
5/52" x 14"
/ 1/4"
x 14" x 18"
Under 500 lbs.
$ .70 .66 .65
\ 500 tbs. & ever
\ $ 66
\ -62
\.6I
AMSCO 40 | //32" x 14"
/ 3/16" x 14"
1/4" x 18"
PRICES PER LB.N
Under 500 lb*. 'v 500 lb*. & ever
$ .94 .89
Y % -88 -A*
.89
.83
Combine Nicro Mang, X-53. Amsco 60, Amsco 40, Amsco Super 20, Thernjblloy 4, Superchrome and Tube Chromeloce lo receive quan
tity prices. AMSCO Nicro Mang X-53. 40 and 60 available in 10 lb. box at .03/lb. extra, except 1/4" and 5/16" which aro in 50 lb. boxes only.
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CTD022968
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CTD022971
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CTD022972
Csrts.iriiesdE]
CERTAINTEED CORPORATION
PAGE NOISE SURVEY SHEET REF. 0.0002 MICROBAR
DATE:?r Ma^.^
ELANT:
^/HiT^iZS office
t
JOB DESCRIPTION'
. (Zotyw
,,. Pot
/KjLDioruerrzu t^stiog,
conditions.
(Lcvt^ecfoir^ 4irav^ iorn <x*-A u/cul ,
INSTRUMENTMICROPHONE:
(X-v^0 rs^-c V7 ( IjL p,; u
u V/^ft-LkC.
PROTECTOR:
engineer.
CALIBRATOR:
STA. NO. TIME
h&>' mr
EMPLOYEE koom. -f}* /UuA*\ 0 rv-tf-t/L
4cS"Ak^
CALIBRATION.,.
-
DATE:
1C fUa^ fT'
BEFORE If AFTER ^q
NETWORK
OCTAVE CENTER FREQ. (Hz.)
PEAK A LIN. HOLD 31.5 63 125 250 500 IK 2K 4K 8K 16K
ft'
40 r<
H.I'
Jfc; ?i' 27' /S' 3L/ Vi
Z*>' fF 32
13
13 n
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CTD022973
^etEet.v|6 PIUS
WORKING SCHEDULE - WEEK STARTING MONDAY, Way 2h, 1982 ( 1 Day Work Week - Monday thru F `day )
MANUFACTURING DEPARTMENT
7:00 AM to 3:00 PM *
Sw-.jervisor: Bixlsr
l'jo Horton ` Renfro dHO Contreras-Ann.Phys. 1:30 P.M.
5/2U
O Peterson ` 33 Casas (T-3id)
123 Soncrant k'lO Cole '.}$ Ledford
3:00 PM to 11:00 PM Supervisor: Voightlander
105 Morales 10)4 Cantrell-Pers.Med.Lv. 171 Harron (T-Bid) 1R7 Richardson 12 9 Hastings 259 Reyes 19U Saniga 3)r5 Plaza 358 Bryant (T)
11:00 PM to 7:00 AM Supervisor: Garcia
122 Windsor 108 Aeschliimn 170 Morgan 333 Brady (T-Bid) 3iiR. Eaves 352 G.i lie land 233 Chavez 3hh Martinez
' Day Shift to Renort at 6:00 A.M. 5/2U
130 VanderTweel
339 Bastiaans
7:00 AM to 3:30 PM Supervisor:Schielke
Is Hamrton 159 Stanfield `, C Pasillas
Bey 13? Amaro j37 Butts-Medical Leave 3)46 Suarez y>Z Avery (T-Bid) J60 Palor.era
BOILER OPERATORS (Maint.)
362 Bolter SHIFT MECHANICS (Maint.)
3lt2 Jenny Finishing department
7:00 AM to 3:30 PM Supervisor: Price 107 Sanders 115 Silva 118 Gil 131 Cooley 132 Hamilton 161 Ja 1 es 162 Taylor 212 Boyd 239 Bivens 295 Dobbs , P. 323 Dobbs, J.
255 Heuton
363 King
3:30 PM to 12:00 PM Supervisor: Herrera llii Galvin 282 Evans-Vac. 5/2U 286 Coooer 288 Steward 307 Tho/npkins 322 Aska-f 32JU Alien-Vac.5/2U & 31 33U Claus on 351 Villalpando (T) 351: Hagerman (T)
116 Wilson .2 6 Garcia
matrtlna.n'q: department 8:00 AM to 4:30 PM Supervisor: Drisld.ll 111 Perry 112 McFann 121 Stee n 166 Svfank 17h Chute
20 Caron 2li7 Mojeske ?7 Darnell 280 McGregor 3n6 George 309 W dttaker 36)4 Baray
QUALITY ODNTROL DEPARTMENT Supervisor: Beeson 8:00 AM to 4:30 PM 109 Granillo
GENERAL HELPED 8:00 AM to 4:30 PM Supervisor: Shockley 36I Feaster *
* Report to Manufacturing
138 Goodwin
ShTPPInG/RECETVTNGTEPTT" 8:00 AM to 4:30 PM Supervisor: Glover 10ft Wall 135 Corral 167 Eonseca 180 Atoncio - Vac. 5/2U
CTD022974
PIPE r CHINE REPORT
ftSIZE
CLASS
^<T<?
NO. PCS. MFR'D
COMMENTS
3RD SHIFT
A//
/lfi(9Ar (PnnjO
poT/ilOol+u* 2/ ry***'
TMT/fCCE> &AfS<r< 7b/*
2/9 -72%
2// Neiopsdr-1/i. //as.
TONI '
muPER
//?.??
~*X~j 72>s< /J. ?/
/t3 9s.z
/ ?.
NO. PCS. MFD
TOTAL FEET
DAILY TOTALS
BROUGHT FORWARD
ow
ACCUMULATED
TOTALS
77777 #/?&?// PS79?/
TOTAL WEIGHT
SM0S0 <33oPPS7 6776370
TOTAL EXTD. STANDARD COST
TOTAL FIBER BLENDS
TOTAL FIBER BATCHES
D A
L Y
//syofy/iy
<z 3rye
y/ 3f
A C
?/???/&
U M.
~i~/eee&>
OAILV YIELD
OAILV VARIATION
ACCUMULATED VARIATION
7/U?t s WBiMk GROSS HOURS peerDAILY
$
NET HOURS
TONS
03.70 c7$P.03
/>/?/*
TONS raMj
HR
9.SS
0/7.7
396.00ACCUM. 376.00 see.?,/ 7 9,0/
%%r/3/ XtWt> '333-03
CONTROL NO.
DATE
PZ
(7
FINISHING DEPARTMENT
PRODUCTION RECAP ______________
?G. TONS 7 J 2. 33 33PP.// FIN- T0NSZ6f-6f DIFF. * VTC. 3-f ~~j*43.3
<P 9/f.
SIZE AND CLASS DESCRIPTION
SHIFT if I FOREMAN
&//,
SHIFT if 2 FOREMAN
CPG. & FTGS. FOREMAN
/^rys -r
TOTAL
P/S0S*
(/?&* Z***)
//ssS '/?'
' s7
20P
ZP/STD/* /fast*/?
/<s
/3U,
33 7pstS
/?2ffr?V
/falcons /*t/?o
/<73 ?oa /, s /fxttocs ^ &L /7/^rso 3/ gZL
37 V36.r
\ ^\
//rrfo /p/i^c? /7rr 7o '/p A/Vo .
'/ /Pats?) / p />/ //rr6o /^/v^
/far pc /k /^n
/fX6 35 u/yv^
7pc 63/e
~C ^/SP.V
/;;r 7*Ap7.r /
V/3
/ppr 770 ?OP<D
<777, S' 33
726 76 P2?
JZS'
Vs3-
/?/
*/2c. ' */,,
*Z/3 3
/?/ 37
73L /r
/S7 /s'
' 3<5 '
<?/'
/3 '
/s'
3
TOTAL TONS
SHIFT ill
"
CTD022976 1
r* SHIFT 92 /M. 77 FITTINGS /P.37
/PSvA^i--
^ /#<rfa 7/tk
size & CLASS
.ONO. PCS. MFR'O COMMENTS
1ST SHIFT
PIPE I CHINE REPORT
&-ISQ \\
LjapycOcaotL
\-iSC> IS tbovova ISmimutp^
MACHINE NO.
Ol
M<W ^S.
7777
24.-lSO^\
"7'.OS>
TO "7
t^ovsig ~3a>NA\KAOT^S
~?C*X4\ To &'.CZ.*VNG
*3-tna .P'e.cc c.w*kaci>e^ Os'_'ap>.vj.v * *v<ls>'7 i--\00^>-S>VCJTVAe.TVC^^-
t&BPl Pi 1^9 55/
TxJ3(Formula NO.
2Z <22
RAW
TOTAL USAGE (LB/.)
MATERIALS 1ST SHIFT 2NO SHIFT 3RD SHIFT
C&G 3
C&G 4
RAW MATERIAL USAGE TOOATILAVL STACUNONOSITATRD ESXTATCENONOSOATEROD ACCTUUOMSDAUGALTEAETED
<T^ &C CB*VT=>Ife/L \ 50.
-------- ----OT-a*v-
C&G5
SHIFT HOUR
^rw.^xAyy
AK 7700 9F00 63/6 %yo
TAOENSS
S7IL 111
7/6/5 % >^i/
47 PM/7 373/0 3660 97/0 31 77c?6 6777 50/0 74//0
///(* wet, 3936 3367 77737/
&SIZE
NO. PCS. COMMENTS
^
//s 7643 3964 7674 64//
2ND SHIFT
CLASS
MFR'D
arloo 108 P/ffE Lnnjd {j/r*r><A
/#/<*/ y?#? Jim 7P367 7/m 77/7 76666 $3557 mo 7676
"
/Sf
rSc-RAp ~ --
HI FT TONS
lOUR
CDROTTOWIIMMSNEES:: A
V,lf ^m
NETTIME:
ft
O
As
FELT NO
HOURS
TOP 773/9 JO'A OT 31X9.7 tHVv
^<// ^ &/*/
.
CEMENT /MO 66?// Sf.'SfL /S332U
SILICA pm/ 37075 3/776 ///9?7
FINES ?sz? 976/. 97S7 47/67,
c rD022977
|JM 1DAILY
TOTAL
BROUGHT FORWARD
9M9 mm
7/0 &Aj
P'--?/994
..... 1.
ACCUM.
Wmm* 3?i 3/6>/f r'nim/rnwmh
jail
SIZE S CLASS
IS/oc
NO. PCS. MFRD
COMMENTS
/?
3RD SHIFT
/o/
diftafc T/oO/7
Z^rno //
Z/'^72P.
NO PCS MFO
TOTAL FEET
OAILV TOTALS
30/
S9/3
BROUGHT FORWARD
79307 66699/
accumulated
TOTALS
665
65-/9641
total weight
TOTAL EXTD. STANDARD COST
60636/
66766/6
?/66367
3ZJL
Hirr HOUR rengt?
73,50 m
/jo/// <>//
'/ft c* - .
total fiber blends
TOTAL fiber batches
D A
1
6470s
L Y
A C
7059/6/
u
M.
777/63/
7/6 S 7
/'Pe 0'H3
DAILY YIELD
DAILY VARIATION
7/3.67 fo s
w/mm. GROSS HOURS NET HOURS
DAILY 04.06 66.07
ACCUMULATED VARIATION
//:
s &///
TONS
TONS HR
73/
66577 m $7/6
ACCUM. /MOO 679.00 359/3/ 906
CONTROL NO. DATE
FINISHING DEPARTMENT PRODUCTION RECAP
^g. tons <2/93./7 SS9/ 34 FIN. TONS 3.3/ 3<2ot7.?P DIFF.t
3?,?S%
SIZE AND CLASS DESCRIPTION
9SHIFT 1
FOREMAN
cQp/e/A-e
9SHIFT 2
FOREMAN
/k/r-S&rm*.
A/S0/* /> S&f PSS2/* /*/$&'
/P/sz>A 'sjf'
i
//&/* /#*,/' /W /fsL&e&s
/
^
f,
<7 / Jf 73
Pa/ 40 A/0/?CS
o7P3#<?ot> so P/? /A* /y?&ooA so toy/? /<PX200ODSO SO/Oz
/??--
tvs' <443 4
2 3/3/>?7 A?7
/
CPG. & FTGS. FOREMAN
TOTAL
9/a / r S~2f /A* */rz *y#s
(P /
#?P.S' 'fy7j9 5~JS~ c7/~? 336,7 26* /9???
'py
7/3' Ofoo'
2 /
* `
c-rD022978
TOTAL TONS (73,%/ SHIFT tl/oU,?? SHIFT 92 /J2? ^Z^FITTINGS 9,/Z
______________
/os-6JL
'J * / l
SIZE & CLASS
a ^I,COMMENTS
1ST SHIFT
'~7QIF>tF>F Lqqvc
lMS
fcsCNA/Vs^ \ \ M\KAQTSL
TO B,'.Z4Atv1
CVL. CUIXMGI
^lVsre.T,/CS.
^ 2 U ff |(fl
SHIFT HOUR
m 7X2 X/X.v^
QpP^vEci=a i-*{a3^P2Ag-pFTs3.C^ >
PELT HO
1773VS '32$
SIZE fc
CLASS
NO. PCS. MFR'D
COMMENTS
Q
cLTft-so /03 Pipe Look
2}"fT-SO 73
2ND SHIFT
Good
PIPE r CHINE REPORT NAgvV ?Jr> tVS>S^//v-
/7C,
ScAAp C7)I ____ _ QCKO SS
=
FELT NO
--
HOURS
}tON;
t PEN
7mm
NET
r\
TIME: Q
77zn HC'X 13/y? 7 ~3&YL
!^j:/ % xm cmaOb&M^Ul
sCiLzAeSS&
NO. PCS. M FR O
COMMENTS
Q
3RD SHIFT
tx&rjp /XL
XeeAr t* to
ylsjjs. Xf'
<-e*r< *>*.t
*a< (stoAZ.)
NO PCS. MFO.
TOTAL FEET
DAILY TOTALS
X//
j/,xs
BROUGHT FORWARD
/,%r
ACCUMULATED
TOTALS 90/19
2//S/7
total weight
7/xx.sy 76/81f\l
TOTAL EXTtJ. STANDARD COST
*
TOTAL FIBER BLENDS
TOTAL FIBER BATCHES
D l JZJ?7 A
Ac
y/pm/X
L Y
X XX/? /
u
M. y/xs/yx
//SJ3 /i/t/Z ^ XX 7
/-cP6XO
xm
DAILY YIELD
OAILY VARIATION
accumulatedVahiation
Sc./ZAP--'^r
f. 8TIME
7/Mm/DNS
PEP i
DOWN
TIMC^
NET
\^(LV2
TT,,IM.E:.rO
773/9 XrX/
y]^/V97
v*zm /iVmA'FydL
/7TX>XZ~4XS7/7.7/9q
^
//////Jo/a S wmm. GROSS HOURS
DAILY
XXxy
s
NET HOURS
TONS
TONS MR
23. PS' 2/4.9/
X//XC
lVXI
1
V
ACCUM.
3S2/.7X 900
/
/a K
JS J2&/30 XX *&.//
sJj/dS7-
X-f *
CTD022979
CONTROL NO. 3<7 /*?/
DATE 37 /\ S*c/ S'7
V
FINISHING DEPARTMENT PRODUCTION RECAP
M.9/"pG. tons FIN. tons 3&Jo_ 3Sf<?,SlS DIFF t / /4/, 77 - 22 L 72
9<?./7 fc
SIZE AND CLASS DESCRIPTION
SHIFT // 1 FOREMAN 3eO/e//^
<P 4soos* 3/3
<4/2// /<7/s*? tT/s/?/ 3/37'
///</
p/s#/* 0*4
'*).___________
Z/7/2z>/ /3f' M*,
2<f *9?
7/7/7// 7z./7/2 3pjo/ ^47
"///? /3
// 9
3///(? 0 /7/0
y/?r<?o ////*/
74j0000 s/> 73
7/7x7Moot so COY/f ///x < >
7/f ' . ' 777/7 xr <s
/SY C> " "
3Zceef if) 72 7Y /Jzoom SO YrfA
SHIFT // 2 FOREMAN
z33 ////
#37 ///#/
CPG. & FTGS . FOREMAN
'OOr/r 323
0^2.3 /*//3
6~ 3 / 3 7 /
TOTAL
s#z /7/C, 7/7/' 27 <S 2 9/33 333
2/ 2?? 3/7' S3 3/7 32, S~ /3' 37 ' ST 7{ '3 7 71 7` /
TOTAL TONSJfUfs HI FT ill 373/SHIFT
/?S^-eC--
,
UILFU4130U _____________i________ FITTINGS 7. 73
72/ /sot/4 7J&L
SI7C ft CLASS
"CInO- PCS-
I MFfi'O COMMENTS
1ST SHIFT
g\F*S^.L-QQVC<SQQ>
fe-zoaca.
PIPE I^CHINE REPORT
o\MACH'NC NO
DTE I /TT's hA&v za>,\S)sa.^^
s'J3/S S^f
24 1.2VFORMULA1 NO.
&H
RAW
TOTAL USAGE (LBS.)'
MATERIALS tST SHIFT 2NO SHIFT 3RD SHIFT
RAW MATERIAL USAGE
Daily TOTAL
1 UNIT STANDARD COST
EXTENOEO
STANDARD COST
ACCUMULATED USAGE
TO OA1C
C ft G 3 C&G4 C& G S
1
|
AK 9yyy ?// fl&G P3W\
ir 3/yy 5/00 /&s7t? s4a<?\ //X /S?/0 Zaoo P/62 /0&(?\
/?// /?/>/ SM 4S0\ 7979 M2 7 //// fM?\
.1
/5-Q 2g^
12/ro % /&
Pipe L
<4 GaOrJ.
7S/s/
3/P?/ A2&41- STS'f?
ffi'/c J/SP7 P??3? my/ s/n\
>/yCEMENT S2//k SM3/_ 7/06f /3S7?i --
3SSILICA 37/72 /7?S6 9/09/
FINES /P3/2> /3/S.Z 63/6 3/0//
SoAJp ~
SHIFT HOUR
a^t'a/ienu 22HJ33317.L66- Ml HP imll77,12 Ui
CROSS TIME;
DOWN TIME:
NET TIME.
s
FELT NO.
773tf
87??
:ek
iZLaoua.
DAILY
TOTAL /PM? MM 6/'7??_ 3/9/32
BROUGHT FORWARD
WKm.m. 4?'/M?6
ACCUM.
7307/7$ Mmm
WKit
ftSIZE
CLASS
[/2AT
NO. PCS. M Ffi'D
COMMENTS
3RD SHIFT
/rt Geo*?
2 i 7 /^. -- S*Sc*T` SJiCt. v6Z
S?m
NO. PCS. MFD.
TOTAL FEET
TOTA*. WEIGHT
TOTAL EXTD. STANDARD COST
DAILY TOTALS
SJJ-
9//S s/se/e
BROUGHT FORWARD
M9/9 /p/yyr/ PMS/S/,
2/67/ py/762ACCUMULATED TOTALS
SM/MS/2
*
TOTAL
1 S'G//7 CFIBER BLENDS 1 /MSMS?TOTAL
SMSS/ a. /P./SSfSFIBER BATCHES
D
A1
L Y
A
/ 7 7,7
^//: ' ''
| /re
//&<%/
,xOAILV YIELD
OAILV VARIATION
ACCUMULATED VARIATION
/*><'
i Sc. rt-rt/!. -/- ^'-3~Q //9M s wm/m. GROSS HOURS
s
NET HOURS
TONS
TONS HR
yV//, TJf
Hirr HOUR
- VV30/2 w
TIME: DOWN
TIME: NET
TIME:
yp, ^ZP//j.//j.dL
77J '? &JS n$&?Z Z&-
<?M0DAILY ///S' /SS93 Kit, &//.0,
ACCUM. S9P./P/?
S/S7. p 9 y/s
136 <?/ S3r //>6 `f&/*ss-/z
' P3/.S>S'
CTD022981
CONTROL NO.
DATE cPS6 '/// 3/
~l
FINISHING DFJ ARTMENT PRODUCTION RECAP
MFG . TONS /<f, 93 73j/ ffU IN. TONS</37, 4# . 7/37 6^ DIFF.i 7L 30, $ 7 ~~//6. P .
976 "> <P o/ 0
SIZE AND CLASS DESCRIPTION
SHIFT It 1 FOREMAN
oCcS/// ///</e
SHIFT It 2 FOREMAN
T/c*/*-
CPC. & FTGS . FOREMAN
6/zs-p
TOTAL
/S0/ '//77*9
/
(90O&&c r)
/o^/SOS 763 '
'
34/&7 63
?4/sd^ 6e_ <*.
Se
<3> P6
/r 3?
p#o6 666'
3/7/30 6'<3 34^730 66
/SZ
23f?
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CTD022989
RIVERSIDE A/C PTPE PLANT FITTINGS AREA
RIVERSIDE A/C PIPE PLANT CUT 017 F SAWS
POSITION Saw Operator 01 (I) Saw Operator 02 (I)
LOCATION
SOUND PRESSURE LEVEL (dBA)
B-D 4-6 B-D 1-3
ESTIMATED dBA
DOSIMETER-TWA
dBA
80 85
90
REMARKS
89.2
)0.1
Saw Operators Rotate From 01 to 02
i CTD022991
IVERSIDE A/C PIPE PLANT FINISHING LINES
POSITION
LOCATION
SOUND PRESSURE LEVEL (dBA)
Lathe Operator Line #1 A-B 5-6
(0 2,
\/ Lathe Operator Line #2 A-B 3-5 Lathe Operator Line #3 A-B 2-3
<(S - I 0 V
O'jVi' ' I
Lathe Assistant Line itt l
A-B 2-3
<\o - 107-
Inspector Line #1
B-E 5-6
Inspector Line #2
B-E 3-5
Inspector Line #3
B-E 2-3
Hydrotester Operator Line it 1
Hydrotester Operator Line it2
C-D 5-6 C-D 3-5
`fe - 10 1
Hydrotester Operator Line H3
C-D 2-3
Pipe Handler Line //I Pipe Handler Line it2
D-E 5-6 D-E 3-5
n-'is-
Pipe Handler Line it3
v/ \ Tester Operator
General Helper r \ Truck Driver (4)
D-E 2-3 C-D 6-7 A-E 1-7 A-E 1-7
"2-^0 $1- lt>7-
\)&AJLcJo"U
Crusher Operator (1) A 5-7
ESTIMATED dBA
DOSIMETER-TWA
dBA
80 85
90
REMARKS
>90
94.7 3 Lathe Operator1' Rotate Between Lines
94.3
89.7
>90 >90
>90
3 Inspectors Rotate Between Lines 88.1
94.5 3 Hydrotester Operators Rotate Between Lines
91.8
85-90 85-90
90.3
85-90
94.2 99.0
6 Pipe Handlers Rotate Between Lines
91.6
I
; 1
CTD022992
RIVERSIDE A/C PIPE PLANT .ISCELLANEOUS JOB POSITIONS
POSITION Loader (1)
Truck Operator (2)
Shipping Clerk (I) Shipping
Supervisor (1) Storekeeper (1) Lab Inspector (1) Q. C. Engineer (1) V/ Boiler Operator v/ Mechanic (10) v/ Electrician (2) Vi Machinist (1) Oiler (1) Maintenance
Supervisor (1) Industrial/Safety
Engineer
LOCATION Shipping
SOUND PRESSURE LEVEL (dBA)
Shipping
Shipping
Shipping
ESTIMATED dBA
DOSIMETER-TWA
dBA
80 85
90
REMARKS
<85
85.0
<85 <85
Shipping Lab Pit.General Boiler Rm. Maintenance Maintenance Maintenance Pit.General Pit.General
<85 <85 <85
<85 <85
86.9
<85
87.8 82.8
Pit.General
<85
CTDO22993
RIVERSIDE A/C '1PE PLANT PTPE MAC'ilNE
1
POSITION
LOCATION
SOUND PRESSURE LEVEL (dBA)
Mixer Operator (3)
E 7-9
lachit^ Tender (3)
B-D 6-9
Press Operator (3)
D 6-7
Mandrel Handler (3)
B6
Pipe Stripper (3)
A-E 4
Trav Loader (3)
A-E 2
Relief Operator (3) ] A-E A-9
Truck Operator (2)\y A-E 1-A
Manufacturing Supervisor (4)
A-E 1-9
95''^'3(^O'l ^
\J(Ul oJfjkj
ESTIMATED dBA
DOSIMETER-TWA
dBA
80 85
90
REMARKS
78.7 90.4 84.1 87.5 88.2 61.7 89.6
84.2 86.9
fcr
CTDO22994
CertairifeedB
PLANT HftME
EMPLOYEE NAME
INDUSTRIAL HYGIENE MON|-~>RING DATA SHEET
r
LOCuIaa SAMPLE TAKEN BY
DATE OF TEST
T rtWnj
l,s" S'z
PEPARTMENT/UNE
f O-bACuTOi
JOB TITLE/EENNVV1IRRCONMENTAL LOCATION
MANUFACTURING PRODUCT
S&UJ 0 fltA(drO</_______ \
finishing 2, 10 ** Uu*/
CONTAMINANT
SAkWUNG METHOD
SAMPLING MEDIA
FIBERGLASS __ASBESTOS_________________________ " TOTAL DUST S'___SIUCA_ DUST______________________ ~Q __ASPHALT_FUMES________ _ _VTN TL_ CHLORIDE_(MONOMER)_ _ _FORMALDEHYDE_________________
IQ_>_"Inol__________ ~______
" PCB
__NOISE_
OPEN FACE
CLOSED FACE 0_ _CYCLONE_______________________
CLOSED^ FACE_________________ '___ ' CHARCOAL_ TUBE______________ " ___ IMPWGERS^ TWO JN JERJES_ [_~SILICAL[ GEL_~_"___________ ' FLOR1SIL TUBE
___ CLOSED. FACE_________________ ' AUDIO DOSIMETER
0.8*1 MCEF, MnlJWTBF FILTER
'X2 1(7 PVC~ FILTER
_ GLASS^fIBERSL\TR ^1EM FILTH ~ 750~mg_^ JCHARCOAL_________ "
___SODIUM JISULFITE____________' ^ 300_mt SILICA GEL_________
~TS0 mg. SKC FLORISL TUBE . GLASS _FIBER_FILTER_______
80dbi_ 85dba 0dbi
n DUPONT W R4000 PUhP
n DUPONT U R2S00 PUNS*
n DUPONT L-i p200a PUM>
EQUIPMENT Q MSA ljpump
-1 DUPONT D376
i DUPONT 0381 J DOSIMETER
EXHAUST SYSTEMS/REMARKS
FUNCTIONING NORMALLY
OUTSIDE TEMP
lo
CMTRL PUMP NO SERIAL NO
Ek.
NOT FUNCTIONING NORMALLY
WIND DIRECTION
WEATHER CONDITIONS
WIND VELOCITY
SUNNY
S' FOG
O'' CLOUDY B'''HUMID SHOWERS SNOW
RAIN PTLY. CLOUDY
SAKPLE NO.
13
MILITARY TIME
TOTAL MINS
(fllO M H58
\.-nf
VOLUME LITERS
Sit .Hi
ANALYSIS RESULT
o. I8fci
AIRBORNE CONCENTRATION
o.2iH
DIO P^LOYEE WEAR RESPIRATOR?
ET" YES
NO
DOS SERIAL
IF SOMETIMES WHEN?
net
t
RESPIRATOR MAKE Bt MODEL
3M Fuo
START (TIME!
STOP
TOTAL MIN
,8HB..gBRR % COWVXITTKP BBA HVIL
PLOYEE WEAR HEARING PROTECT?1
YE5
NO
SOMETIMES
UuvyL [v-CSD-|/3o
IF SOMETIMES WHEN?
COMMENTS/SKETCHES
2f'
s-
MAKE A MODEL
}(jU
01-16-0056 12/81
CTD022995
CertairfleedH_____
PLANT NAME
INDUSTRIAL HYGIENE MONITORING DATA SHEET
LOC NO. - _SAMPt- TAKEN BY
DATE OF TEST
?Wo<iiS
7f
fx
EMPLOYEE NAME
DEPARTMENT/LI NE
TUI lUW
JOB TITLE/ENVIRONMENTAL LOCATION
/V\ll'
$ 2-
MANUFACTURING PRODUCT Ill'll*. C
CONTAMINANT
< _____________ _______c cua
SAMPLING METHOD
ist>r SAMPLING MEDIA
FIBERGLASS asbestos TOTAL DUST
SILICA DUST asphalt fumes VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
D NOISE Q
OPEN FACE
ty CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE 1MPINGERS. TWO IN SERIES SILICAL GEL FLOR1SIL TUBE CLOSED FACE C AUDIO DOSIMETER
0.8(1 MCEF, MILUPORE FILTER
O' 5(1 PVC FILTER
GLASS FIBER-SILVER MEM FILTH 150 mg. CHARCOAL SODIUM BISULFITE 300 mg. SILICA GEL 150 mg. SKC FLOR1SD. TUBE CLASS FIBER FILTER
80dbt 85dba U 90dbi
rj DUPONT w R4000 PU*r
n DUPONT LJ P2S00 PUMP
n DUPONT P200A PUMP
EQUIPMENT
r-i MSA lj PUMP
n DUPONT D376 DOSIMETER
p DUPONT D38] ^ DOSIMETER
EXHAUST SYSTEMS/REMARKS
ir/ FUNCTIONING 01 NORMALLY
n NOT FUNCTIONING LJ NORMALLY
WEATHER CONDITIONS
OUTSIDE TEMP
WIND DIRECTION
WIND VELOCITY
SUNNY (9^CLOUDY '0'' HUMID
no
r
MFH
S' FOG
SHOWERS SNOW
CNTRL NO.
"41
PUMP T<, SERIAL NC
rWl\
SMPLE NO.
MILITARY TIME
START
STOP
m<v
TOTAL MINS
LPM/CC i.t, nS
VOLUME UTERS
n.7.61
ANALYSIS RESULT
<5. fabl **8
RAIN PTLY CLOUDY
AIRBORNE CONCENTRATION o.sn
ZM, Si( L
flshtf- Hl.1 1,0 Aic i>n (i ------------- -----------3---------
DIO EHV>LOYEE WEAR RESPIRATOR?
YES
O' NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
IF SOMETIMES WHEN?
RESPIRATOR MAKE A MODEL
(TIME)
STOP
TOTAL MIN KCAD OUT NBIUL1 8hr corr %
DID EKPLOYEE WEAR HEARING PROTECTS
YES
i/ NO
SOMETIMES
IF SOMETIMES WHEN? COMMENTS/SKETCHES
^roU*, ^jOl
MAKE A MODEL
clXL d. [uu^L
"bud Culvouux > 5Tre iyji.
I *S ' Ccru-p l*vo^.
^ K Xconls/ (
01-16-0056 12/81
CTD022996
CertainTeedH
Ft-ANT NAME 1
EMPLOYEE NAME ~pL'l PqU^
INDUSTRIAL
(j<
HYGIENE
us a?.
MONITORING DATA
SAMP^ TAKEN BY
SHEET
DATE OF TEST
Z&> it
PEPARTMENT/UNE
Fwmyii
JOS TtTLE/ENVIRONMENTAL LOCATION
Aull #7n-
MANUF'ACToUFRING PRODUCT
& tlcu-i,
(
CONTAMINANT
FIBERGLASS __ASBESTOS.___ ' TOTAL DUST O' SILICA DUST _ _ _ASPHALTJFUMES_________________
_VIN YL_ CHLORipj_(MONOMER^ " FORMALDEHYDE
__PHENOL_ Q PCB
__NOISE_
SAM*LING METHOD
OPEN FACE
CLOSED FACE JET --CYCLONE______ ' CLOSED FACE '
CHARCOAL^ TUBE______________ ' IMPINGERS, TWO IN SERIES
SILICAL^ GEL________ " FLORISIL TUBE
_CLOSED_FACE______ ' AUDIO DOSIMETER
SAMPUNG MEDIA
0.8^ MCEF, MEUPORE FILTER
5*4 PVC FILTER
CLASS FIBER-SILVER MEM FILTH 150 mg. CHARCOAL D___SODIUM J]SIJLFITE_ 300 mg. SILICA GEL~
ISO mg. SKC FLORISIL TUBE D GLASS _FIBER_FILTER_______
80dba ** 8Sdbt U 90dba
UPONT
* n DUPONT
R4000 PUMP
u P2500 PUKff
n DUPONT ^ p200a pump
n DUPONT d376 u DOSIMETER
n DUPONT d381 LJ DOSIMETER
EXHAUST SYSTEMS/REMARKS
ry FUNCTIONING w NORMALLY
OUTSIDE TEMP
(9 S"
CNTOL PUW NO. SERIAL NC
ini
NOT FUNCTIONING NORMALLY
WIND DIRECTION
WEATHER CONDITIONS
WIND VELOCITY
SUNNY
B" FOG
Q"CLOUDY (E7 HUMID SHOWERS SNOW
`S'" RAIN PTLY. CLOUDY
SAMPLE NO.
Ml LITARY TIME
6 3Pj mi /DSP..
LUD_ ML
TOTAL MINS
m
in
i.u
_L2L
VOLUME LITERS
szz.or
ANALYSIS RESULT
o. oKSw Q -OS5u^
AIRBORNE CONCENTRATION
0-T.leS V*.* o. n 1
DID D^LOYEE WEAR RESHRATORT
^SYO?
lpi< h>r hJ
IF SOMETIMES WHEN?
6- in
RE9*IRATOR MAKE ft MODEL
YES
NO
SOMETIMES
CNTRL NO QOS SERIAL
CELL
START
(TIME)
STOP
TOTAL MIN mao out gULt 8HR CORK % eown.r.BB.LvL
DIP EKSLOYEE WEAR HEARING PROTECT?*
YES
NO
Uuv
SOMETIMES
.{&>
, 7<U&_
IF SOMETIMES WHEN?
COMMIMENE1NTS/SKETCHES pLt
MAffi ft MODEL
ie-Vvis.
u^i
01-16-0056 12/81
CTD022997
CertainTeedH_____
INDUSTRIAL HYGIENE MONITORING DATA SHEET
____________PLANT NAME__________________________________ LOC NO.
SAM>- TAKEN by_______
DATE OF TEST
Kt ? Nomi tS n.
EMPLOYEE NAME
DEPARTMENT/UNE
X TlTLE/ENV1RONMENTALLOCATION
1pfu-/) 1
Sms'
MANUFACTURING PRODUCT f'liALstuuv.Cj
CONTAMINANT
SAMPLING METHOD
i?o______________ a* SAMPLING MEDIA
FIBERGLASS ASBESTOS O TOTAL DUST O' SILICA DUST asphalt fumes
a vinyl chloride (monomer)
formaldehyde PHENOL PCB
NOISE D
OPEN FACE
& CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE IMPINGERS, TWO IN SERIES SILICAL GEL FLORISIL TUBE CLOSED FACE AUDIO DOSIMETER
0.8M mcef, MUJJPORE filter
O' 5m fvc filter
GLASS FIBER-SILVER MEM FILTEf 150 rag. CHARCOAL SODIUM BISULFITE 300 mg. SILICA GEL 150 rag. SKC FLORISIL TUBE GLASS FIBER FILTER
80dba G 85dba D 90dba
LJf-l DUPONT R4000 PUMP
LJn DUPONT P2500 PUMP
n DUPONT p200a pump
nEQUIPMENT MSA pump
n DUPONT D376 dosimeter
n DUPONT d381
lj dosimeter
r*/FUNCTIONING ^ NORMALLY
nLJ NOT FUNCTIONING NORMALLY
EXHAUST SYSTEMS/REMARKS
WEATHER CONDITIONS
OUTSIDE TEMP
no
WIND DIRECTION
WIND VELOCITY K*H
SUNNY [S' FOG
O' CLOUDY
HUMID
SHOWERS SNOW
%CNTRL PUMP NO. SERIAL NG
SAMPLE NO.
' ' I, f ft jq.b
MILITARY TIME
START
STOP
COlS
TOTAL MINS
tf5'l
LPM/CC
VOLUME UTERS
fc> 1.19
ANALYSIS RESULT
1.
RAIN PTLY. CLOLDY
AIRBORNE CONCENTRATION
l.l r
DIO EMPLOYEE WEAR RESPIRATOR?
S/ YES NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
IP SOMETIMES WHEN?
h___ 661/4 fel' 1.3 *" RESPIRATOR MAKE & MODEL 3M %lLO
(TIME)
STOP
TOTAL MIN READ OUT RESULT 8hr corr %
DID EMPLOYEE WEAR HEARING PROTECT?
YES
NO SOMETIMES
IF SOMETIMES WHEN? COMMENTS/SKETCHES
MAKE A MODEL
CTD022998
01-16-0056 12/81
CTD022999
CertairfleedB
PLANT NAME
EMPLOYEE NAME
INDUSTRIAL HYGIENE MONITORING DATA SHEET
LOC NO.
SAMPL- TAKEN BY_______
P
DATE OF TEST
Z'i
fz
DEPARTMENT/UNE
JOB TITLE/ENVIRONMENTAL LOCATION
Miviia^
fWtc*,
MANUFACTURING PRODUCT
^ Lf.^J
CONTAMINANT
SAMPLING METHOD
FIBERGLASS ASBESTOS TOTAL DUST
SILICA DUST ASPHALT FUMES VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
NOISE
OPEN FACE
S'" CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE IMPINGERS, TWO IN SERIES SILICAL GEL
D FLORISIL TUBE
CLOSED FACE AUDIO DOSIMETER
n DUPONT U R4000 PUMP
-yOUPONT "P2500 PUMP
f\DUPONT U P200A PUMP
EQUIPMENT
n MSA UPUMP
SAMPLING MEDIA
0.8(l MCEF, M1LUP0RE FILTER
O' 5(1 PVC FILTER
GLASS FIBER-SILVER MEM FlLTES 150 mg. CHARCOAL SODIUM BISULFITE 300 mg. SILICA GEL 150 mg. SKC FLORISIL TUBE GLASS FIBER FILTER
80db SSdba 90dba
("1DUPONT D376 ^ DOSIMETER
i-i DUPONT 0381 LJ DOSIMETER
EXHAUST SYSTEMS/REMARKS
fj FUNCTIONING ^ NORMALLY
n NOT FUNCTIONING LJ NORMALLY
WEATHER CONDITIONS
OUTSIDE TEMP
WIND DIRECTION
WIND VELOCITY
~~)0 af
T'.CNTRL PUMP NO. SERIAL NO
SAMPLE NO.
MILITARY TIME
START
STOP
urn
TOTAL MINS
SUNNY
Ef FOG
CLOUDY 'O'' HUMID
SHOWERS
SNOW
LPM/CC
VOLUME LITERS
ANALYSIS RESULT
unr f 0 31* CfbOl
2.0.5 2-
LIT *,
G RAIN PTLY. CLOUDY
AIRBORNE CONCENTRATION
1.314, *-)LJ
DID EMPLOYEE WEAR RESPIRATOR?
YES
NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
IF SOMETIMES WHEN?
>iCn
6m fa ' SM
RE9*IRATOR MAKE ft MODEL1'
(TIME)
STOP
TOTAL MIN HAS OUT RtWLI ftHR CORR %
DID EMPLOYEE WEAR HEARING PROTECTT
YES
NO
SOMETIMES
IF SOMETIMES WHEN? COMMENTS/SKETCHES
MAKE A MODEL
01-16-0056 12/81
CTD023000
ffanrifeedH
- PLANT NAME
MwXSik Mc
EMPLOYEE NAME
^ce
CprXfa.S
INDUSTRIAL HYGIENE MQNr^RING DATA SHEET
M
LOC NO.
SAKPl__ TAKEN BY
DATE OF TEST
Is. Umius
ZM (VU^j, ?2.
DEPARTMENT/U NE
JOB TITLE/ENVIRONMENTAL LOCATION
I'M net* faueAc.Je' < f Irmt^Wr-
MANUFACTURING PRODUCT
CONTAMINANT
SAMPLING METHOD
fiberglass
^ASBESTOS_________________
TOTAL DUST Q_J?"JCA_ DUST_____________________
ASPHALT FUMES_______________ _g _ _VINYL_ CHLORlpJ_(MONOMER^
_ ALDEHYDE_________________ PJENOL___________________________
PCB
_
"
NOISE
ay OPEN FACE
a CLOSED FACE
____CYCLONE_____________________ | ___ CLOSED_ FACE_________ L " ___ CHARCOAlT TUBE______________ " IMPINGERS^ TWO JN JERIES^ '___ ILICAL_ GEL___________________ " FLORISIL TUBE
___ CLOSED^ FACE__________________ " AUDIO DOSIMETER
n DUPONT LJ R4000 puw
jJqU ljp2500 pump
n DUPONT u p200a pump
EQUIPMENT
SAMPLING MEDIA
By 0.8M MCEF, MEiiPORE FILTER
" IjaFVc" FILTER
____GLAS^FIBER^LVER MEM FILTH ____J,SoJngT ^CHARCOAL n SODIUM JISULFJTE_____" ' O _300Jjjjk SILICA GEL_________ ' 150 mg. SKC FLORISIL TUBE _ GLASS _FIBER_FILTER________
80dba 85dba 90dba
, DUPONT D376
1 DUPONT D381 1 DOSIMETER
EXHAUST SYSTEMS/REMARKS
pi FUNCTIONING LJ NORMALLY
OUTSIDE TEfcP
7^-So
NOT FUNCTIONING NORMALLY
WIND DIRECTION
WEATHER CONDITIONS
WIND VELOCITY
SUNNY ES> FOG
GT CLOUDY S^HUMIO SHOWERS SNOW
O RAIN PTLY. CLOUDY
CNTRL NO. SERIAL NO
001 HISS'
f\l1
MILITARY TIME
TOTAL MINS
n>o.<.. lL
LPM/CC
2,c U
VOLUME LITERS
3 z^.n
ANALYSIS RESULT
Ml
AIRBORNE CONCENTRATION.
0.007 f/c
DID EMPLOYEE WEAR REEWRATOR7
S( SOMETIMES
IF SOMETIMES WHEN?
(tf\ II ufU-*ju.
RESPIRATOR MAKE & MODEL
$T7 io
__^TART^i_JTIME|^^^TOPi><^_ rOTA^flN SSR2^SS&U ^felB^EQBEL
DIP EKPLOYEE WEAR HEARING PROTECT*
YES
p SOMETIMES
IF SOMETIMES WHEN?
-make; a mppsi
COMMENTS/SKETCHES
tcL fr. IWiI a/U\
" JWUt-
\y-
cV\_
wWJoi L
-
Tt^A<x^ piiro-v ciimxt
tqeXxLcJkn 0^ Ik&oMavSK^ ^ '2
-- p(a.G->-v CwiWajoV,
wy UoAjl o-y,
*' Sluts lokit-5
^
f.fn Cii_j
^ <TD 2
vOWl Vs, VI ^ - Mcwyu
^ ^ $ r\w n 1^0Wi . AfV <Y\
01-16-0056 12/81
CTD023001
2fsb'2ro|j?* Uflvt4^ tlay\
01-16-0056 12/81
CTD023002
CertairifeedB
PLAWT NAME
INDUSTRIAL Me
HYGIENE _L3S.g?..
MONI^RING DATA
BAMPI-- TAKEN BY
P J hlCA/lUi
SHEET
M
PATE OF TEST
1M sz
EMPLOYEE NAME
DEPARTMENT/LINE
VW/'iow
JOB TITLE/ENVIRONMENTAL LOCATION
33
Sr*,f
MANUFACTURING PRODUCT
15D
CONTAMINANT
FIBERGLASS O' ASBESTOS D TOTAL DUST __SiUCA_ DUST_____ ASPHALT FUMES _ _VIN VL_ CHLORIDE_(MONOMER}_ ~D__FpRMALDEHYDE_________________
__P_HENOL___________________________ PCB
_ NOISE a"
SAIVLING METHOD
is/ open face
CLOSED FACE _ _CYCLONE______
CLOSED FACE'
p___ CHARCOAL_ TUBE______________ " ___ IMPINGERSa TWO _IN _SERIES_ " SILICAL GEL
FLORISIL TUBE _ CLOSED. FACE______ ' AUDIO DOSIMETER
SAMPLING MEDIA 0.8m MCEF, MILUrORE FILTER
SM PVC FILTER
GLASS FIBER-SILVER MEM F1LTEI ISO mg. CHARCOAL ____SODIUM BISULFITE____________ P____SIUCA_GE_L_________________ ~' ISO mg. SKC FLORISIL TUBE ~" p GLASS _fiberJFILTER________
80dba O SSdba U 90dba
J R4000 PUfcT
pryi>UPONT wp2500 pump
n DUPONT LJ p200a pump
1 DUPONT D376 J DOSIMETER
-i DUPONT D381 J DOSIMETER
n FUNCTIONING UJ NORMALLY
OUTSIDE TEMP
H-st>
NOT FUNCTIONING NORMALLY
WIND DIRECTION
EXHAUST SYSTEMS/REMARKS
Lav
WEATHER CONDITIONS
WIND VELOCITY
SUNNY
O' FOG
'^CLOUDY
HUMID
SHOWERS SNOW
RAIN PTLY. CLOUDY
CNTRL NO. SERIAL NO
003 y2L
SAMLE NO.
MILITARY TIME
bill. 10 n-
TOTAL MINS
I'b'c
Z.oif
VOLUME LITERS
ANALYSIS RESULT -
X 32-H. z-
AIRBORNE RATION
c_g
DID EMPLOYEE WEAR RESPIRATOR?
YES frf
SOMETIMES
DOS SERIAL
START
IF SOMETIMES WHEN?
RESPIRATOR MAKE Ar MODEL
[TIME1
STOP
TOTAL MIN S5fiSL2&&fiSfiiU 8hr corr % COMVEWTKP
UCVKL
PLOYEE WEAR HEARING PROTECT*
YES
s' NO
SOMETIMES
Oh L^l f"/ uv\A OjVOv
|-j,
t?,f ^
IF SOMETIMES WHEN?
COMMENTS/SKETCHES
Ovt. (a l"V\ i YIIa (^yYCi .
v iHca^s
ud tuj vU f'f'
MAKE ft MODEL
^
l
<*sul ckjitAh
CM\A!u\ Yv'C
C
01-16-0056 12/81
CTD023003
CertairifeedM
PUNT NAME
EMPLOYEE NAME
INDUSTRIAL HYGIENE MONt^RING DATA SHEET J
SWL- TAKEN BY
PATE OF TEST
f. AltfULA- 24 ri~
DEPARTMENT/ UNE
JOB TITLE/ENVIRONMENTAL LOCATION
acJw
MANUFACTURING PRODUCT
V'\&
CONTAMINANT
P FIBERGLASS _Q'__ASBESTOS_________________________
o Total dust __ SILICA_ DUST______________________
D _ IaSFHALT_FUMES_ ~__________
_ I T" yjnyi chlorideJmonomer^
" _ "form aldehyde_________________ "phenol_______________ ~__________
"q pcb
_ NOISE_
SAILING METHOD
'O'' OPEN FACE
CLOSED FACE _CYCLONE_______________________ '___ CLOSED_ FACE_____________ ____ ' CHARCOAL_ TUBE_____ " ' IMPINGERS^ TWO JN _SERl|s_ "___ SILICAI^ CEL_______________ ' FLORISIL- TUBE _CLOSED^ FACE__________________ " AUDIO DOSIMETER
SAMPLING MEDIA
E3/ 0.8M MCEF, MILUPORE FILTER
" IfT PVC" FILTER
___ GLASS^ TMERflLVER MEM FILTEJ _D_"_l50_mg1"cHARCOAL "_______" ILI sodium jTsulfjte________ "
" J0p_mg^ JILICA_GEL~______ ISO mg. SKC FLORtSO. TUBE ___ GLASS _FIBER_FILTER________
"80dba 85dba 90dba'
n DUPOMT u P4000 PUM>
jwtlLIPONT "pTSOO pump
n DUPONT P200A pump
qmsa 1-1 PUMP
EXHAUST SYSTEMS/WEMARKS
n FUNCTIONING LJ NORMALLY
n NOT FUNCTIONING ^ NORMALLY
hp(--
1 DUPONT D376 DOSIMETER
t DUPONT D381 J DOSIMETER
-- L*i~ b_ Lwv',
OUTSIDE TEMP
WIND DIRECTION
WIND VELOOTY
.F
CNTRL PUMP NO SERIAL NO
SAKFLE NO.
MILITARY TIME
START
STOP
(M
C.r3?
W Hlb
/r?3k
NVH
TOTAL MINS
G SUNNY Q FOG
Cf CLOUDY B HUMID
SHOWERS O SNOW
RAIN PTLY. CLOUDY
LPM/CC 0.0
VOLUME LITERS
W
ANALYSIS RESULT
ttrtf.Y*
AIRBORNE CONCENTRATION
6.0/2 4/t<-
DID EKTLOVEE WEAR RESPIRATOR?
YES
NO SOMETIMES
DOS SERIAL
START
IF SOMETIMES WHEN?
RESPIRATOR MAKE A MODEL
{TIME)
STOP
TOTAL MIN HABgumyU frlRWftftft COHVgWTKB nm* LEVEL
DID P^LQYEE WEAR HEARING PROTECTS
YES
NO SOMETIMES
IF SOMETIMES WHEN?
COMMENTS/SKETCHES
/*j
, MAKS-ft M9PEL
JL it AdCnsS
ppt t^^aJwrc. (kv Jife 15
Com pJUd-ctcJJ (
uuvp, <wi IWASUAXS clitXMehv' oJ~
&J-L,
, ll^|acf Mite fvor*- Pip-^ (//U'VjliA.Lj CL^CUUff
(X-nJ Cuwvo^cv'
fcA_(
01-16-0056 12/81
CTD023004
CeroMfeedBI_____
PLANT NAME
nuvsM
ioL*
EMPLOYEE NAME
Casa^
INDUSTRIAL HYGIENE MONITORING DATA SHEET ~M
LOC NO. SAMPL-. TAKEN BY_____
DATE OF TEST
(? (J<rvvu)
IX Mcuuyi-l.
DEPARTMENT/UNE
JOG TITLE/ENVIRONMENTAL LOCATION
MANUFACTURING PRODUCT
ft4fr.fcUd.A- [ /^VuAatd OpL\uJie\J
ISO
CONTAMINANT
'
FIBERGLASS ASBESTOS
TOTAL DUST SILICA DUST ASPHALT FUMES VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
NOISE
SAkVLING METHOD
B" OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE IMPINGERS, TWO IN SERIES SILICAL GEL FLOR1SIL TUBE CLOSED FACE AUDIO DOSIMETER
SAMPLING MEDIA
O' 0.8n MCEF. wn J JPORF FILTER
Sjl PVC FILTER
GLASS FIBER-SOLVER MEM FILTH ISO mi. CHARCOAL SODIUM BISULFITE 300 mi. SILICA GEL ISO mi. SKC FLORBU. TUBE GLASS FIBER FILTER
80dt 85dba G SOdba
n DUPONT U R4000 PUMP
rrvOUPONT ^P2S00 pump
n DUPONT u p200a pump
EQUIPMENT
pi ^ u pump
fl DUPONT 0376
dosimeter
rn DUPONT 0381
u dosimeter
EXHAUST SYSTEMS/REMARKS
n FUNCTIONING NORMALLY
n NOT FUNCTIONING LJ NORMALLY
WEATHER CONDITIONS
OUTS1DC TEMP
If' F
WIND DIRECTION
WIND VELOCITY
WH
SUNNY
S' FOG
S' CLOUDY ET HUMID
SHOWERS
SNOW
%CNTRL PUMP NO. SERIAL NO
SAKPLE NO.
MILITARY TIME
START
STOP
TOTAL MINS
LPM/CC
VOLUME LITERS
ANALYSIS RESULT
00 fo/ar
NM37-
Hl'J W 1. BBS 456.17 43670.77
Ht
RAIN PTLY. CLOUDY
AIRBORNE CONCENTRATION
6.0? -f/cc.
DID EMPLOYEE WEAR RESPIRATOR?
YES
NO SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
IF SOMETIMES WHEN?
&RESPIRATOR MAKE MODEL
(TIME)
STOP
%TOTAL MIN HEAD'OUT REBUll 8hr corr
DID EMPLOYEE WEAR HEARING PROTECT*
D YES
S/'nO
G SOMETIMES
IF SOMETIMES WHEN?
I/
Wk VtWvd U/oalfe* oj
COMMENTS/SKETCHES
|(ku,
Ukiv (ofv lli<
MAKE A MODEL
^)* iiAAVtS " M.5C
Coy^^xM^ Ou^v
WtMt
f^cmA ivvttad
^lls
IjlAal
a t^faJ noik- M
C>Ptev i"> ps.
^ivtif <*> aavi v'aJ CLwi (wth^
01-16-0056 12/81
CTD023005
ii
1
CertairifeedB
PtAMT NAME
INDUSTRIAL
HYGIENE CM9,
MONITORING DATA
SAMPL- TAKEN BY
r (Oo/ihs
SHEET &
DATE OF
tH N\ p-z_
EMPLOYEE NAME
DgPARTMENT/UNE
-ilfl/ygL. fel t Ul J06 T1TLE/IENVIRONMENTAL LOCATION
MANUFACTURING PRODUCT
f1 \iisn.
CONTAMINANT
, FIBERGLASS d ASBESTOS TOTAL DUST SILICA DUST ASPHALT FUMES VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
NOISE
8AKVUNG METHOO
5K OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE IMPINGERS. TWO IN SERIES SILICAL GEL FLORISIL TUBE CLOSED FACE AUDIO DOSIMETER
SAMPLING MEDIA ax 0.8*! MCEF, MUJJPORE FILTER
S*l PVC FILTER
o GLASS FIBER-SILVER MEM FILTH ISO mg. CHARCOAL SODIUM BISULFITE 300 mg. SaiCA GEL 150 mg. SKC FLORISIL TUBE GLASS FIBER FILTER
80db 85dba D 90db>
li
11
i
lO
D
1
n DUPONT U R4000 PUMP
d\DUPONT P2S00 PUW>
n DUPONT ^ p200a pukb
EQUIPMENT
EXHAUST SYSTEMS/REMARKS
rn DUPONT D376 LJ DOSIMETER
1 DUPONT 0381 J DOSIMETER
FUNCTIONING NORMALLY
OUTSIDE TE*S
NOT FUNCTIONING NORMALLY
WIND DIRECTION
WEATHER CONDITIONS
WIND VELOCITY
SUNNY FOG
CLOUDY HUMID SHOWERS SNOW
RAIN PTLY. CLOUDY
CNTRL NO.
0 0(o
PUMP tIALNC
7C0*>b
SAM*LE NO.
MILITARY TIME
M3_
TOTAL MINS
V>3
LPM/CC
Lb'll,
VOLUME UTERS
ANALYSIS RESULT
AIRBORNE CONCENTRATION
PIP EK^LOYEE WEAR RESPIRATOR?
IF SOMETIMES WHEN?
RESPIRATOR MAKE * MODEL
YES
NO SOMETIMES
CNTRL NO DOS SERIAL
CELLSTART (TIME)
STOP
TOTAL MIN heapoutmwi 8HR CORR % fflKBTU BSft bSYft
DID EMPLOYEE WEAR HEARING PROTECT
YES
d NO
SOMETIMES
Vcvvi^l(y (CT^iwvS ^vovu^lvovik
IF SOMETIMES WHEN? COMMENTS/SKETCHES
MAKE A .MODEL
01-16-0056 12/81
CTD023006
klM
C&VUi^l MV. ^-/OvA cW**' s^n-u
01-16-0056 12/81
fV'Of? ^ P'f^
[rdfi MjtU
u
CTD023007
CertairifeedW
PLANT NAME
fAwASic^
INDUSTRIAL HYGIENE MONI~>RING DATA SHEET
LOC NO.
SAMPl. taken by
DATE OF TEST
"f-J /IfrVlAo
ZH fHCUft f-z.
EMPLOYEE NAME
DEPARTMENT/LINE
\ns ) Hi kcT-fl
JOB TITLE/ENVIROhMENTAL LOCATION
MANUFACTURING PRODUCT
_'w-be.Am, 0
CONTAMINANT
FIBERGLASS __ ASBESTOS^________________________
TOTAL DOST ___ SIUCA. DUST_____________________ __ASPHALT_FJLIMES_________________ " VIN YL_ CHLORIDE_(MONOMER)_ _ _ _FORMALDEHYDE_________________ _Q _ _HInol_ _ ~___________________
a pcb
__NOISE_ "
D
<c" \SO
SAMPLING METHOD
m/ OPEN FACE
CLOSED FACE ____CYCLONE_______________________ '___ CLOSED^ FACE_____________ ___ " [ CHAJtCOAL_ TUBE______ 2 ' ___ IMPINGERsT two JN ..SERIES. '___ SiyCAL_GEL___________________ ' FLORISIL TOBE .___ CLOSED. FAC.E_________________ ' AUDIO DOSIMETER
SAMPUNS MEDIA
<0'" 0.8II MCEF, MLUFORE FILTER
IfTpvc" FILTER
JD___GLASS^FIBBRaLVER MEM FILTH ____ 150_mg;_ CHARCOAL ~ JD SODIUM .BISULFITE. "_______ ' JD _300_m|:. JILICAGEL-_______ ' 150~mg. SKC~FLORBnTTUBE P CLASS _FIB_ER_FILTER_______
80db> 85dba U 90db>
kvOufont "R4000 PUhP
n DUPONT UR2500 pump
n DUPONT up200a pump
qmsa 1-1 PUMP
1 DUPONT D376 J DOSIMETER
n DUPONT d381 1-1 DOSIMETER
EXHAUST SYSTEMS/REMARKB
FUNCTIONING
NOT FUNCTIONING NORMALLY
WEATHER CONDITIONS
OUTSIDE TEMP
WIND DIRECTION
7 c '<it> f
WIND VELOCITY
SUNNY 0" FOG
CLOUDY (E-'HUMID p SHOWERS SNOW
CNTRL PUMP NO. SERIAL NO
SAMPLE NO.
Ml LITARY TIME
TOTAL MINS
VOLUME LITERS
ANALYSIS RESULT
RAIN PTLY. CLOUDY
AIRBORNE CONCENTRATION
QQj ^o?
lo}p_
2.o & 1
O.0O0t%}/(1J
DID EMPLOYEE WEAR RESPIRATOR?
YES CNTRL NO
NO SOMETIMES
START
IF SOMETIMES WHEN?
RESPIRATOR MAKE & MODEL
(TIME)
STOP
TOTAL MIN WAPOUTH--UL1 8hr cqrr % COHYMTKB BM8 LEVEL
DIO EMPLOYEE WEAR'HEARING PROTEC IT
YES
53/NO
SOMETIMES
lito' nti
IF SOMETIMES WHEN?
COMMENTS/SKETCHES
Iu^wAa-.
MAKE A MODEL
M.0v\cltw -Mcrvei <i^s
b dClAca GyiIia. ^0
1 xes*
(jPutldivV^vy,'7
bLJlcatn "
ftojS <Qjyy\e
^ Si ! 1 Cc.
Uxuj,
01-16-0056 12/81
CTD023008
CertairifeedM
^ PPLL^ATNfTT nNAME
KUj&S'uL
EMPLOYEE NAME
INDUSTRIAL HYGIENE MONr^RING DATA SHEET
M
IOC NO.
SAMP... TAKEN BY
PATE OF TEST
t J rttJUcO
Vi /Rg-^ Yu
PEPARTMENT/UNE
HtIAALv CiAj.---------------
1 nTLE/eMyiWONMEKTAL LOCATION
l.frJtA /TVuudZ. OfUeX'
MANUFACTURING PRODUCT
b \st?
CONTAMINANT
SAMPLING METHOD
FIBERGLASS 'ey ASBESTOS
TOTAL DUST SILICA DUST ASPHALT FUMES VINYL CHLORIDE (MONOMER) a FORMALDEHYDE
PHENOL o PCB
NOISE
OK OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE
CHARCOAL TUBE
a IMPINGERS, TWO IN SERIES a SILICAL GEL D FLORISIL TUBE CLOSED FACE
D AUDIO DOSIMETER
EQUIPMENT
n DUPONT U R4000 PUI*>
t DUPONT J P2500 PUK
n DUPONT LJ p200a pump
SAMPLING MEDIA 0.8/i MCEF, MEUPORE FILTER
5fi PVC FILTER
GLASS FIBER-SILVER MEM FILTH a ISO mg. CHARCOAL a SODIUM BISULFITE
300 mg. SILICA GEL ISO mg. SKC FLORISIL TUBE GLASS FIBER FILTER
80db 85dba U 90dba
1 DUPONT D376 J DOSIMETER
i DUPONT D381 J DOSIMETER
EXHAUST SYSTEMS/REMARKS
r-i FUNCTIONING LJ NORMALLY
OUTSIDE TEMP
NOT FUNCTIONING NORMALLY
WIND DIRECTION
WEATHER CONDITIONS
WIND VELOCITY
.SUNNY
FOG
0O' CLOUDY
HUMID
SHOWERS SNOW
RAIN PTLY. CLOUDY
CNTRL PUMP NO. SERIAL NO
60*1 Eu-E
SAMPLE NO.
M-3f/
MILITARY TIME
/oS> 1W
TOTAL MINS
VR
LPM/CC
l.\y
VOLUME LITERS
mu,
ANALYSIS RESULT
o
AIRBORNE CONCENTRATION
DIO EMPLOYEE WEAR RESPVRATOR7
IF SOMETIMES WHEN?
RESPIRATOR MAKE & MODEL
YES
0 NO
SOMETIMES
CNTRL NO DOS SERIAL
CELLSTART (TlMEl
STOP
TOTAL MIN mabbut
8HR CDBH
WHVKITTM 81k UYB.
DID EMPLOYEE WEAR HEARING PROTECTS
YB
E NO
SOMETIMES
0-iniAi
Wo-js <4z V'iu ^
IF SOMETIMES WHEN?
MAKE A MODEL
COMMENTS/SKETCHES
LuAck ati - ii if
'Tim
[xiwu |v<xm
Cujl a^J-oclcd^. Uccitafj ^ Vrec^s
/>
01-16-0056 12/81
CTD023009
------
1
_)
0
.3 ___
CertairifeedH
HurtPJLATNT NAME
INDUSTRIAL
HYGIENE
LOC NO.
MONITORING DATA
SAKffL, TAKEN BY
{|\)ortis
SHEET
DATE OF TEST
EMPLOYEE NAME
DEPARTMENT/LINE
'dc!'
JOB TITLE/ENVIRONMENTAL LOCATION
MANUFACTURING PRODUCT
V lso
CONTAMINANT
SAKVLING METHOD
SAKPUNG MEDIA
FIBERGLASS
OPEN FACE
Sk ASBESTOS TOTAL DUST SILICA DUST ASPHALT FUMES VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
NOISE
CLOSED FACE CYCLONE CLOSED FACE
D CHARCOAL TUBE
IMPINGERS, TWO IN SERIES SILICAL GEL FLORISIL TUBE
D CLOSED FACE
AUDIO DOSIMETER
fjDUPONT
U P4000 PUM*
n DUPONT U P2S00 PULP
n DUPONT U P200A PUMP
EQUIPMENT
n MSA U PUMP
0.811 MCEF, MILUFORE FILTER
5/1 PVC FILTER
GLASS FIBER-SILVER MEM F1LTEI 150 mg. CHARCOAL SODIUM BISULFITE 300 mg. SILICA GEL 150 mg. SKC FLORISIL TUBE GLASS FIBER FILTER
SOdba SSdba 90dba
n DUPONT D376 U DOSIMETER
n DUPONT D38I lj DOSIMETER
EXHAUST SYSTEMS/REMARKS
n FUNCTIONING LJ NORMALLY
OUTSIDE TEMP
CNTRL PUKff* NO. SERIAL NC
01 o
n NOT FUNCTIONING 1-1 NORMALLY
WEATHER CCMDITIONS
WIND DIRECTION
WIND VELOCITY MPH
SUNNY
i FOG
S/ CLOUDY Cf HUMID
SHOWERS SNOW
SAMPLE NO.
UvT
MILITARY TIME
START
STOP
110'S
TOTAL MINS
vlb
LPM/CC
7..oM3
VOLUME UTERS
wi.n
ANALYSIS RESULT
rQhr 17. <*'
RAIN PTLY. CLOUDY
AIRBORNE CONCENTRATION
1
DIO EMPLOYEE WEAR RESPtRATOR?
YES
NO n SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
IF SOMETIMES WHEN?
(TIME)
STOP
TOTAL MIN
DID EK#*LOYE WEAR HEARING PROTECTS
YES d/NO
SOMETIMES
IF SOMETIMES WHEN?
lios- ins ins - INf
iVtaK-t^L/L (
COMMENTS/SKETCHES
?v<s$
0 j2JLa
{ - 1 IQ o
RE3*IRATOR MAKE ft MODEL 8hr corr * MAKE ft MODEL
fW - I $1TD
fftl6-jAA.f~Wt
^^U<4trV
CKO ^ htJOSf^ViS.
01-16-0056 12/81
CTD023010
CertainTeedH
RLAMT NAME
INDUSTR1AL HYGIENE MONITORING DATA SHEET
to
IOC NO.
SAMP.. TAKEN BY
PATE OF TEST
P.J< KcrwJ
&
EMPLOYEE NAME
PEPARTMENT/UNE
'Pi-uoic1 Pavliks
JOB TITLE/ENVIRONMENTAL LOCATION
MANUFACTURING PRODUCT
Id-PrC___Q^.ZAr*)&J A I
B" ISD T-c^^jr
CONTAMINANT
FIBERGLASS sy asbestos TOTAL DUST ___ SILICA_ DUST______ asphalt"fumes
_VJNYL_ CHLORIpJ_(MpNOMER^ _ _ _FORMALDEHYDE_________________
_ _PHENOL___________________________ ~G PCB
_ _NOISE_ "
SAMPLING METHOD
0/ OPEN FACE
CLOSED FACE CYCLONE _ .CLOSED, FACE____
' CHARCOAL TUBE IMPINGERS^ TWO JN _SEWES_
' SILICAL GEL FLORISIL TUBE ___ CLpSED_FACE______
' AUDIO DOSIMETER
SAMPLING MEDIA
Ck O.SM MCEF, MILUPORE FILTER
5/i PVC FILTER
GLASS FIBER-SILVER MEM FILTEf 150 mg. CHARCOAL P___SODIUM .BISULFITE^ P___JOO^m^ SILICA_GEL_
150 mg. SIX FLORISIL TUBE GLASS _FIBER_FILTER________
80dba G 85dba G 90dba
i DUPONT 3 R4000 PUl*
n DUPONT u P2500 PUK
n DUPONT ^ P200A PUMP
-i DUPONT D376 J DOSIMETER
i DUPONT d38I J DOSIMETER
7 FUNCTIONING NORMALLY OUTSIDE TEMP
n NOT FUNCTIONING LJ NORMALLY
WIND DIRECTION
EXHAUST SYSTEMS/REMARKS
WEATHER CONDITIONS
WIND VELOCITY
SUNNY
l\sFoa
QkCLOUDY " HUM1D SHOWERS SNOW
STRAIN PTLY. CLOUDY
CNTRL PUMP NO. SERIAL NC
01/ 4m
SAMPLE NO.
MIUTARY TIME
NHTb oton J5Ufc.
TOTAL MINS
VOLUME LITERS
tPo.tb
ANALYSIS RESULT
AIRBORNE CONCENTRATION
O.
DID P^LOYEE WEAR RESPIRATOR?
YES
*/nO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
IF SOMETIMES WHEN?
RESPIRATOR MAKE & MODEL
(TIME)
STOP
TOTAL MIN wAOOUrwgw.T 8HR CORR % cowvcttid m* uvb.
DID EMPLOYEE WEAR HEARING PROTECTY
YES
SOMETIMES
|xiaJ CvlmomJt (ie^iWiow
IF SOMETIMES WHEN7
COMMENTS/SKETCHES
iwj
.
l* if I- [llkcL- \ Wu<xk
MAKE ft MODEL
01-16-0056 12/81
CTD023011
Certairifeedl
PLANT NAME KUrC/LSl^
EMPLOYEE NAME frtViy. Cafe'S
INDUSTRIAL HYGIENE MONITr*RING DATA SHEET
Co
LOC NO-
SAMP^ TAKEN BY_______
DATE OF TEST
?.. I/I
26 ?2,
<? <-i
DEPARTMENT/LINE
HH 'l
{juJ/is-4.
4t 1
JOB TITLE/ENVIRONMENTAL LOCATION '
MANUFACTURING PRODUCT
<s" izv
ic
1- viLp (tlo\
j LaMr-t /kaitu*~i
1
_________________________________________________________________________
CONTAMINANT / *7VlU4
SAMPLING METHOO
SAMPLING MEDIA
FIBERGLASS ASBESTOS TOTAL DUST SILICA DUST ASPHALT FUMES VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
NOISE
OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE IMPINGERS. TWO IN SERIES SILICAL GEL FLORISIL TUBE CLOSED FACE AUDIO DOSIMETER
EQUIPMENT
n DUPONT
U P4000 PUKtf>
n DUPONT LJ P2500 PUMP
n DUPONT U p200a PUMP
n MSA U PUMP
0.8M mcef, mbxifore filter
5m PVC FILTER
GLASS FIBER-SILVER MEM F1LTEI 150 mg. CHARCOAL SODIUM BISULFITE 300 mg. SILICA GEL 150 mg. SKC FLORISIL TUBE GLASS FIBER FILTER
80db 85db> U 90dba
n DWONT D376 DOSIMETER
n DUOMT D381 LJ DOSIMETER
EXHAUST SYSTEMS/REMARKS
n FUNCTIONING LJ NORMALLY
OUTSIDE TEMP
n NOT FUNCTIONING LJ NORMALLY
WIND DIRECTION
WEATHER CONDITIONS
WIND VELOCITY
SUNNY
Q'-'CLOUDY
^ HUMID
&" RAIN
Q^
CNTOL NO.
PUMP % SERIAL NG
SAfcPLE NO.
Q\\ Wll
MILITARY TIME
START
STOP
KSH
TOTAL MINS
O^-FOG
LPM/CC /.nr
SHOWERS SNOW
VOLUME UTERS
ANALYSIS RESULT
V^lo-tF
f{klh*.
PTLY. CLOUDY
AIRBORNE CONCENTRATION
o. 02i {u. '
DID EKFLOYEE WEAR RE9VRATORT
YES
NO SOMETIMES
CNTRL NO DOS SERIAL
CELL
IF SOMETIMES WHEN?
RESPIRATOR MAKE ft MODEL
START (TIME)
STOP
TOTAL MIN RCAD OUT RESULT 8hr corr %
DID EMLOYE WEAR REARING PROTECTT
O'" yes
NO
SOMETIMES
(jdb- hiuitvJ, '
<Li o (<. 5 k*.
IF SOMETIMES WHEN? COMMENTS/SKETCHES
MAKE ft MODEL
XTVJ^jA
Mil c-w
S^fpkSlKiCfce,i'' rCffl-L h
idvcuxt
01-16-0056 12/81
CTD023012
CertainTeedB_____
PLANT NAME
Z\uus ede.
INDUSTRIAL
HYGIENE
LOC NO.
MONITORING DATA ____-SAMPw_ TAKEN BY
'P.J /Wli
SHEET
DATE OF TEST
Zk /Mcllj
EMPLOYEE NAME M Ud-4'
DGPARTMENT/U NE
lofL (ju*
JOB TITLE/BNVWONMENTAL LOCATION
MANUFACTURING PRODUCT
_f jU.____________b ViiIao T/ck* /
< ______________________
?"
1 t tiadi-e/i
CONTAMINANT
SAKVLING METHOD
i.n>
to SAMPLING MEDIA
i
FIBERGLASS ASBESTOS TOTAL DUST SILICA DUST ASPHALT FUMES VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
NOISE
n OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE D CHARCOAL TUBE IMPINGERS, TWO IN SERIES SILICAL GEL FLOR1SIL TUBE CLOSED FACE AUDIO DOSIMETER
"rVDUPONT R4000 nJM>
UI-I DUPOWT P2500 PUMP
n DUPONT
P200A pump
EQUIPMENT
n "SA
lj pump
0.8|i MCEF, M3LUPORE FILTER
S#i PVC FILTER
GLASS FIBER-SILVER MEM FILTEI ISO mi. CHARCOAL SODIUM BISULFITE 300 mg. SILICA GEL ISO mg. SKC FLORISIL TUBE GLASS FIBER FILTER
80dba 8Sdba O 90dbi
n DUPONT 0376
dosimeter
n DUPONT D381
dosimeter
EXHAUST SYSTEMS/REMARKS
r/ FUNCTIONING " NORMALLY
n NOT FUNCTIONING u NORMALLY
WEATHER CONDITIONS
OUTSIDE TEKP
WIND DIRECTION
WIND VELOCITY
SUNNY S'-'CLOUDY O^HUMID
U F
CKFOG
SHOWERS SNOW
CNTRL PUMP NO. SERIAL NO
SAMPLE NO.
MILITARY TIME
START
STOP
TOTAL MINS
LPM/CC
VOLUME LITERS
ANALYSIS RESULT
tin?
A^5T> 6 2(0- iSb |
Tft, 1/3 6*8. 0t
+/M
(STRAIN PTLY, CLOUDY
AIRBORNE CONCENTRATION
0. oss-p-fet.
DIO EKPLOYEE WEAR RESPIRATOR?
YES
El no
sometimes
IF SOMETIMES WHEN?
CNTRL NO DOS SERIAL
CELL
START (TIME)
STOP
TOTAL MIN
REOTRATOR MAKE A MODEL 8hr corr %
DID EKPLOYEE WEAR HEARING PROTECT?1
IF SOMETIMES WHEN?
MAKE A MODEL
YES
& NO
SOMETIMES
COMMENTS/SKETCHES
f&V 'ho /VU-lAlA-fts.
node dry
^ilcLe-l k
0'S
htlpu .
ho-vwveu i ia<=i
Cvit^iuj finished ff"
01-16-0056 12/81
CTD023013
CertairifeedB
rUWT HftME.
INDUSTRIAL HYGIENE MONITORING data sheet
uJ
LOC NO._____ SAMPL TAKEN BYDATE OF TEST
p.j. no*sis
"tlXcoiyj 9 ?,
EfcffLOYEE NAME
ich>*J-------- &n. Qa6
JOB TITLE/ENVIRONMENTAL LOCATION
PEPARTMENT/L1NE MANUFACTURING PRODUCT
Pi ^liA-
150 Type
CONTAMINANT
SMVUNG METHOD
SAMPLING MEDIA
FIBERGLASS <BC -ASBESTOS_______________________ ' TOTAL DUST _SILICA DUST____________________ ' __ASPHaLt_FUMES________________ ' _ \TNYL~ CHLORIDEJMONOMERI ' _ .formaldehyde________________ Q .FHENOL_________________________ PCB
NOISE.
O
O'" OPEN FACE
CLOSED FACE _CYCLONE_____________________ '___ CLOSED^ FACE_______________ " ' CHARCOAL. TUBE. ~ ~______ ' ___ IMPMGERS^ TWO JN _SERJES_ " CT I SILICA!^ GEL^ ~___ ~_________ " FL0R1SIL TUBE
cLoseii face______________
AUDIO DOSIMETER
GF*' 0.8*1 MCEF, MQXIPORE FILTER
" S*T PVC" FILTER
_Q__ GLASS_FDRjLVER MEM F1LTEI
___ L5?ITMj.I:Barcpal~_~~~'
___ SODIUM JKULFITE_________ ___ JOcTmiL JILICA_GEL______ "iitfnig. SKC FLORKL TUBE ___ GLASS FIBER.FILTER______
80dt~ SSdba 90db
<*"ryrDPU0P0O0NPTUW
n DUPONT U P2S00 PUMP
n DUPONT UJ p200a puk0>
EQUIPMENT
dmsa PUMP
r-i DUPONT D376 UJ DOSIMETER
i DUPONT D3S1
1 DOSIMETER
EXHAUST SYSTEMS/REMARKS
n FUNCTIONING Ui NORMALLY
n NOT FUNCTIONING U NORMALLY
WEATHER CONDITIONS
OUTSIDE TEMP
WIND DIRECTION
WIND VELOCITY
B F
CNTRL
PUMP
NC SERIAL NC
SAMPLE NO.
MILITARY TIME
START
STOP
TOTAL MINS
SUNNY
JB' FOG
B" CLOUDY [O-'HUMID SHOWERS SNOW
LPM/CC
VOLUME UTERS
ANALYSIS RESULT
oiM 1
/STD I.U m.i
O'RAIN PTLY. CLOUDY
AIRBORNE CONCENTRATION
0
DID EMPLOYEE WEAR RESPIRATOR?
YES
wy NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
IP SOMETIMES WHENT
RESPIRATOR MAKE ft MODEL
START
(TIME!
STOP
%TOTAL MIN madoutrebuli 8HR CQHB
eanv^
DID E^LOYEE WEAR HEARING PROTECTS
YES
SOMETIMES
CLvoJ vk fJt
U_st I
0M&.
IF SOMETIMES WHEN?
MAKE ft MODEL
COMMENTS/SKETCHES
ILa^O.J' HCLt-C ptfTVV (rWA. Ir^ F\01VC fvOYVL (o-'H'VCS
C ^cdci,
01-16-0056 12/81
CTD023014
CertainTeedl
INDUSTRIAL HYGIENE MON' 'RING DATA SHEET
-nt
PLAWT NAME_______
iiuw\(U
me no.
SAMPLE TAKEN BY
f A&W&
PATE OF TEST
11 OAu^
EMPLOYEE NAME
DEPARTMENT/LINE
ygi/ut(
>B TITLRP<V!RONMENTAL LOCATION
MANUFACTURING PRODUCT
CONTAMINANT
a FIBERGLASS & ASBESTOS
TOTAL DUST SILICA DUST
_ _ASPHALT_FUMES________________
Q _ "^3lPJ_(??pNOMER^
" FORMALDEHYDE _ phenol_
~d PCB
NOISE
LUJ
SAMPLING METHOD
xy OPEN FACE
i M-t- -t I
SAKVUNG MEDIA
0.: MCEF, MttJJPORE FILTER
a CLOSED FACE
D_ CYCLONE
CLOSED^ FACE____
D_ "charcoal tube"
_ IMPINGERS^ TWO JN _SERIES_
SILICAL GEL
D FLORISIL TUBE
_ CLOSED^FACE_____
AUDIO DOSIMETER"
5/i PVC FILTER
GLASS FIBER-SILVER MEM FlLTEI ISO mg. CHARCOAL D SODIUM _BISULFITE_ D jq0_mg^ JILICA_GEL_
ISO mg. SKC FLORISIL TUBE GLASS FJBER FILTER______
80dba 85dba 90dba
r--i DUPONT up4000pum>
r-yOUPONT wp2500 pump
n DUPONT LJ P200A PUMP
EQUIPMENT
DUPONT D376 J DOSIMETER
t DUPONT 0381 J DOSIMETER
EXHAUST SYSTEMS/REMARKS
<n/FUNCTIONING NORMALLY
OUTSIDE TEMP
y>
CNTOL
PUMP
NO. SERIAL NC
oiT m.
NOT FUNCTIONING NORMALLY
WIND DIRECTION
WEATHER CONDITIONS
WIND VELOCITY
SUNNY
D^pog
^KcLOUDY Vf HUMID
SHOWERS SNOW
RAIN PTLY. CLOUDY
SAMPLE NO.
MILITARY TIME
cm'9\ 1sl
TOTAL MINS
US I
7,<ra
VOLUME LITERS
1o7-
ANALYSIS RESULT
AIRBORNE CONCENTRATION
o ,on y -flu.
DID EMPLOYEE WEAR RESPIRATOR?
IF SOMETIMES WHEN?
RESPIRATOR MAKE A MODEL
YES
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
tTIMEI
STOP
TOTAL MIN WKAOOur RMULi 8HR CORR % cowveirrM n* lml
PIP EMPLOYEE WEAR HEARING PROTECTT
YES C$/NC
SOMETIMES
A of f'5'/m^c-fov
IF SOMETIMES WHEN? COMMENTS/SKETCHES
fyxuA1? tmcnMvl `tb-
l
\o%
fyliKSatJ-
MAKE A MODEL
i r-t.
01-16-0056 12/81
CTD023015
CertainTeedH
PLANT NAME
fll'MA&dc
EMPLOYEE NAME
INDUSTRIAL HYGIENE MON 'RING DATA SHEET LOC NO. SAMPLE TAKEN BY_____ ____ PATE OF TEST
P. X vIcaam
DEPARTMENT/UNE
fkCHr Irl W
S^UielU-c
X& TITLE/ENVIRONMENTAL LOCATION
MANUFACTURING PRODUCT
i lJLpsi \J[SoV
1
[/.i-ffc. * (
CONTAMINANT
SAKVLING METHOD
FIBERGLASS
Sy OPEN FACE
& ASBESTOS
TOTAL DUST SILICA DUST
CLOSED FACE CYCLONE
ASPHALT FUMES
CLOSED FACE
VINYL CHLORIDE (MONOMER) CHARCOAL TUBE
FORMALDEHYDE
r IMPINGERS, TWO IN SERIES
PHENOL
SILICAL GEL
PCB
FLORISIL TUBE
CLOSED FACE
NOISE
D AUDIO DOSIMETER
EQUIPMENT
r-i DUPONT U P4000 PUM
Wf)UPONT a P2500 PUMP
n DUPONT u P200A PUMP
n MSA U PUMP
SAMPLING MEDIA CK 0.8)i MCEF, MUJJPORE FILTER
Sji PVC FILTER
GLASS FIBER-SILVER MEM FlLTEI ISO mg, CHARCOAL SODIUM BISULFITE 300 ms- SILICA GEL ISO mg. SKC FLORISIL TUBE GLASS FIBER FILTER
80dbs 85dba 90dba
n Dt^ONT D376 DOSIMETER
q DIPONT D381 LJ DOSIMETER
EXHAUST SYSTEMS/REMARKS
^/FUNCTIONING ^ NORMALLY
n NOT FUNCTIONING LJ NORMALLY
WEATHER CONDITIONS
OUTSIDE TEMP
GO
F
WIND DIRECTION
WIND VELOCITY KVH
SUNNY B'-'FOG
SyCLOUDY '0" HUMID
SHOWERS SNOW
CNTRL
PUMP
%
NO. SERIAL NO
mt
(pM
SAMPLE NO.
MILITARY TIME
START
STOP
Ilf I'StD
TOTAL MINS
LPM/CC
VOLUME LITERS
qo3.n5
ANALYSIS RBULT
RAIN PTLY. CLOUDY
AIRBORNE CONCENTRATION
0. V
DID EKPLOYEE WEAR RESPIRATOR?
YES
NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
IF SOMETIMES WHEN?
(TIME)
STOP
TOTAL MIN
DID EMPLOYEE WEAR HEARING PROTECTS
YES
Q^no
G sometimes
IF SOMETIMES WHEN? COMMENTS/SKETCHES
RESPIRATOR MAKE & MODEL
%8hr corr
MAKE A MODEL
01-16-0056 12/81
CTD023016
CertainTeedH
FLAHT, NAME,.
diyfAuic
INDUSTRIAL HYGIENE MON! RING DATA SHEET
I/O
LOC NO._____ SAMPLE TAKEN BY
DATE OF TEST
P.J. 7b
EMPLOYEE NAME
4^ MLRONMENTAL LOCATION
% Ted-*.,
(inr
DEPARTMENT/LINE MANUFACTURING PRODUCT
CONTAMINANT
SAMPLING METHOD
FIBERGLASS QK _ASBESTQS____ ~D TOTAL DUST SILICA DUST D _ _ASPHALT_FUMES_______________ " __VIN YL_ CHLORipj_(MONOMER^ " _ _?orm aldehyde_______________ *_ PHENOL_________________________ " PCB
NOISE
OPEN FACE
C CLOSED FACE
D CYCLONE
_ CLOSED^ FACE____
' CHARCOAL TUBE" Q___IMPINGERS^ TWO JN _SERIES_
" D SILICAL GEL FLORISIL TUBE
_ CLOSED_ FACE______ ' AUDIO DOSIMETER
EQUIPMENT
UPONT R4000 PUKP
J P2S00 pump
J p200a pump
CMSA ^ PUMP
SAMPLING MEDIA
(p 0.8M MCEF, MniJPORE FILTER
ijUPVc" FILTER
GLASS FIBER-SILVER MEM FlLTEI D___ 150 mg. CHARCOAL P__ SODIUM .BISULFITE___ D__ J00 mg. SILICA GEL
150 mg. SKC FLORISIL TUBE GLASS F^BER FILTJR_______
80dba 85dba 90db
1 DUPONT D376 J DOSIMETER
1 DUPONT D381 J DOSIMETER
EXHAUST SYSTEMS/REMARKS
n FUNCTIONING LJ NORMALLY
OUTSIDE TEMP
NOT FUNCTIONING NORMALLY
WIND DIRECTION
WEATHER CONDITIONS
WIND VELOCITY
sunny
Kk FOG
(Becloudy Ek humid SHOWERS SNOW
Derain PTLY. CLOUDY
CNTRL
PUMP
NO. SERIAL NO
on
SAMPLE NO.
MILITARY TIME
Dili, /SOI
TOTAL MINS
!L
/.&
VOLUME LITERS
ANALYSIS RESULT
`joZOLO
AIRBORNE CONCENTRATION
o.iyjtyf*
DIP EKPLOYEE WEAR RE3FIRATOR7
IF SOMETIMES WHEN?
RES*!RATOR MAKE ft MODEL
YES
NO SOMETIMES
C^RL_NO DOSRIAL_
&i ART ^TIME| ^ b^QP^
^ TOTAL^Ml^N NtADOUTREivu
DID EMPLOYEE WEAR HEARING PROTECTS
YES
NO
SOMETIMES
#M ,LoAc
(AoSV>\-U
IF SOMETIMES WHEN?
MAKE ft MODEL
btiA. KUxl/A
COMMENTS/SKETCHES
^ T'ivWa' 2--107. &8>
aJc
,
ln(
01-16-0056 12/81
CTD023017
CertairifeedB
rtfINDUSTRIAL HYGIENE MONI RING DATA SHEET
/ PLANT N|AME__________________________________ LOC NO.
SAMPLE TAKEN BY_______
DATE OF TEST
... ___ feiias jL
f-J.
Z7
EMPLOYEE NAME
DEPARTMENT/LINE
V
PU \ 1
JOB TITLE/ENVIRONMENTAL LOCATION
MANUFACTURING PRODUCT
(Vnac, [Vi111 ft %
F"6 UGJiA- tSVT
CONTAMINANT
FIBERGLASS &___ ASBESTOS^______________________
total" dust
__S1UCA_ DUSJ____________________ " _ _ASPRALT_FUMES________________ JO ,, _VJNYL_ CHLORIDEJMONOMER^ _ _ FORMALDEHYDE________ ~_____
PHENOL_________________________ ~PCB
_ _ _NOlSE_
SAMPLING METHOD
\sy OPEN FACE
CLOSED FACE ___ CYCLONE____________________ '___CLOSED, FACE________________" " ___CHARCOAL_ TUBE____________ " ___IMPINGERS^ TWO JN _SERIES_ [ _ _5?yAL_ GEl^"______________ FLORISIL TUBE ___ CLOSED^FACE________________ ' AUDIO DOSIMETER
SAMPLING MEDIA
Gy 0.8m mcef, mqjjpore filter
" 1m pvc" FILTER
___ GLASS^ D^R^VER MEM FlLTp ____ IS0~mg. .CHARCOAL__________" ____SODIUM jaSULFITjf_________ " ____ JwTmgTllLICAGEL_________' D ISO mg. SKC FLORISIL TUBE
GLASS _FIBER_FILTER_______
80dba 85dba 90dba
n DUPONT U R4000 PUIP
rVDUPONT w P2S00 pump
n DUPONT ljp200a pump
EQUIPMENT
n MSA 1-1 PUMP
i DUPONT 0376 J DOSIMETER
i DUPONT D381 J DOSIMETER
EXHAUST 8YSTEMS/REMARKS
^ FUNCTIONING NORMALLY
OUTSIDE TEMP
n NOT FUNCTIONING LJ NORMALLY
WIND DIRECTION
WEATHER CONDITIONS
WIND VELOCITY
SUNNY O' FOG
Kcloudy
HUMID SNOW
RAIN PTLY. CLOUDY
CNTRL PUMP NO. SERIAL NC
016 bm
SAMPLE NO.
MILITARY TIME
fj5>1 5120 [W
TOTAL MINS
Ml* I
JJl
VOLUME LITERS
$75.1
ANALYSIS RESULT
*V7Z oj Mili*.
AIRBORNE CONCENTRATION
6 oId {c<_
DIO P*LOYEE WEAR RESPIRATOR?
YES
^ NO
SOMETIMES
IF SOMETIMES WHEN?
RE9IRATOR MAKE ft MODEL
CNTRL NO DOS SERIAL _^CELL__ __START_^T[ME|_^CTO^><i>i TOTAL_Mj^N NUBOUTRgi^
JSHXfiBZSB^SAMKEL
DID EKSMjOYEE WEAR HEARING PROTECT*
YES
ST NO
SOMETIMES
IF SOMETIMES WHEN7 COMMENTS/SKETCHES
MAKE ft MODEL
01-16-0056 12/81
CTD023018
CertainTeedH
INDUSTRIAL HYGIENE MONf 'RING DATA SHEET
A
NAME
1UpW5 t'J 6
EMPLOYEE NAME .fti
TITLE/ENVIRONMENTAL LOCATION
me no.
SAMPLE TAKEN BY
PATE OF TEST
Pjfl OlVl 5
24 ^2.
DEPARTMENT/UNE
CiumsL.
MANUFACTURING PRODUCT
S(UJ ^ "2-
*\
CONTAMINANT
FIBERGLASS O' ASBESTOS TOTAL DUST _D__SIUCA_ DUSJ____ G ASPHALT FUMES _ __VINYL_ CHLOJUDE_(MONOMERj_ _ _ FORMALDEHYDE_______________ _ _PHENOL_________________________ PCB
_Q NOISE
"
S'1 iso 1q|1
SAfcVLING METHOD
CB^ OPEN FACE
CLOSED FACE CYCLONE
_ CLOSED, FACE__
" "CHARCOAL TUBE*
_ IMPINGERSX TWO JN _SERIES_ `n SIL1CAL GEL
FLORISIL TUBE CLOSED^FACE_____
"AUDIO DOSIMETER
^^
SAMSUNG MEDIA
SK 0.8^ MCEF, MUUFORE FILTER
5m PVC FILTER
GLASS FIBER-SILVER MEM FlLTEi 150 mg. CHARCOAL
n__ SODIUM _B1SULFJTE_
' loo mg. SILICA GELTM
150 mg. SKC FLORISIL TUBE CLASS _FIB_ER_FILTE R_______
80dba 85dba U 90dba'
r-i DUPONT
u R4000 PUPxP
6 P2500 PUMP
n DUPONT
LJ p200a pump
EQUIPMENT
n MSA
LJPUMP
DUPONT D376
1 DUPONT 0381 J DOSIMETER
r~r FUNCTIONING
" NORMALLY
OUTSIDE TEMP
kr
NOT FUNCTIONING NORMALLY
WIND DIRECTION
EXHAUST SYSTEMS/REMARKS
WEATHER CONDITIONS
WIND VELOCITY
SUNNY
Or FOG
GKcloudy Q^humid
G SHOWERS SNOW
O' RAIN
PTLY. CLOUDY
CNTRL
PUMP
NO SERIAL NO
01 I G>t33
D10
SANFLE NO.
MILITARY TIME
Min
ML.
A;5/cy WlC
TOTAL MINS
m
/, ?
JjJL
VOLUME
LJTERS
ANALYSIS RESULT
57iW 3 SX 3 /rsio
AIRBORNE CONCENTRATION
g.o4S//(
6, 0V 4\JH Cc-
DIO EK^LOYEE WEAR RESPIRATOR?
Q/ ye
G NO
SOMETIMES
DOS SERIAL
START
IF SOMETIMES WHEN?
RESPIRATOR MAKE A MODEL
5ft SI l.o
(TIME!
STOP
TOTAL MIN RKBOUTIHWI.T 8HR CORR % figTIYBrns BSft LBYP.
DID ESLOYEE WEAR HEARING PROTECT!-
YE5
NO
SOMETIMES
(-AAacIv o^A I I ' ffb
------------------ttyr f
l`H:f -
i loXc kll
IF SOMETIMES WHEN?
MAKE R MODEL
COMMENTS/SKETCHES
j)vi \Ai OmAo rw>JH C'
t^ W fU
'K-*- O^fb-lUIrv.
01-16-005b 12/81
CTD023019
CertainTeedl
PLANT NAME
r?i iaUS i ie.
EMPLOYEE NAME
i'(
INDUSTRIAL HYGIENE MON! 'RING DATA SHEET
IQ
LOC NO.
SAWLE TAKEN BY
DATE OF TEST
I'W/lS 7J& & 2-
DEPARTMENT/LINE
p-i Y\msGl ACj'
JOO TITLE/ENVIRONMENTAL LOCATION
Pm (mW.
MANUFACTURING PRODUCT
CONTAMINANT
SAJffUNG METHOD
FIBERGLASS S' ASBESTOS TOTAL DUST SILICA DUST asphalt FUMES VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
NOISE
n OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE IMPINGERS, TWO IN SERIES S1L1CAL CEL FLORISIL TUBE D CLOSED FACE AUDIO DOSIMETER
O^bUPONT
^R4000 PUMP
m/uPONT U"KP2500 PUMP
pi DUPONT
LJ P200A PUMP
EQUIPMENT
pi MSA LJ PUMP
SAMHJNG MEDIA
0.8p MCEF, MHJJFORE FILTER
5p PVC FILTER
GLASS FIBER-SILVER MEM FlLTEf ISO mg. CHARCOAL D SODIUM BISULFITE 300 mg. SILICA CEL ISO mg. SKC FLORISIL TUBE GLASS FIBER FILTER
SOdbi 85dba U 90dba
pi DUPONT D376 *-* DOSIMETER
pi DUPONT D381 DOSIMETER
EXHAUST 9Y6TEMS/REMARKS
jr-/ FUNCTIONING W NORMALLY
pi NOT FUNCTIONING
1-1 NORMALLY
WEATHER CONDITIONS
OUTSIDE TEkV>
6 S'
f
WIND DIRECTION
WIND VELOCITY *0H
D sunny Uy FOG
B"cloudy ""humid SHOWERS SNOW
CNTRL NO.
PUMP SERIAL NO
%
SAA*LE NO.
MILITARY TIME
START
STOP
TOTAL MINS
LPM/CC
VOLUME LITERS
ANALYSIS RESULT
0>'
W3o(.
(nyf
n$< tf?
2.0T- & fcY. (*
Vi
<G""rain
PTLY. CLOUDY
AIRBORNE CONCENTRATION
0.oO5C//cX0
DIO EKFLOYEE WEAR RESPIRATOR?
2 YES
NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
IF SOMETIMES WHEN?
ARESPIRATOR MAKE MODEL sue
(TIME!
STOP
TOTAL MIN RIAfi OUT RESULT 8hr corr %
DID EMPLOYEE WEAR HEARING PROTECT?1
YES
NO
SOMETIMES
IF SOMETIMES WHEN? COMMENTS/SKETCHES
MAKE A MODEL
01-16-0056 12/81
CTD023020
COMMENTS/SKETCHES
01-16-0056 12/81
CTD023021
CertairifeedH
PLANT NAME
Riha?`J<
EMPLOYEE NAME
INDUSTRIAL HYGIENE MONI RING DATA SHEET
to
LOC NO.
SAMPLE TAKEN BY
DATE OF TEST
p JWiS
76
DEPARTMENT/LINE
tl
JOB TITLE/ENVIRONMENTAL LOCATION
V\Yl l
MANUFACTURING PRODUCT
^/MuTU S'
do^y
CONTAMINANT
SAKA.ING MEtTHhOoDdI
fiberglass _?^_asbesJ2s.___________________________
TOTAL DUST _ SIUCA_ DUST____________________ _ _ _ASPHALT_F_UMES_______________ _ _ _VIN YL_ CHLORIDE__(MONOMER}_
_ FORMALDEHYDE_______________ __PHENOL_________________________ " PCB
_ _ _NOISE_
Os' OPEN FACE
CLOSED FACE ___ CYCLONE_____________________ ' ___CLOSED^ FACE________________" " CHARCOAL_ TUBE____________ [ ___IMPINGERS^ TWO JN JERIES^ "___SILICAL_ GEL_________________ FLORISIL TUBE ____LOSED_ FACE________________ ' AUDIO DOSIMETER
EQUIPMENT
n DUPONT UP4000 PUft*
n DUPONT u P2500 pump
J p200a pump
8AKPUNG MEDIA
U^ 0.8M MCEF, MHUPORE FILTER
'* *5/7"PVC* FILTER
___ GLASS_flB^^LVER MEM _F1JLTEI ____ l 50_mg^ _CHARCOAL_________ * _ SODIUM _BISULFITE__________' a J00_mg1 _S|LICA_GEL________ *
G ISO mg. SKC FLORISIL TUBE
D__ GLASS _FIBER__FILTE R________
80dbs 85dba U 90dba
\ DUPONT 0376 J DOSIMETER
1 DUPONT D381 J DOSIMETER
EXHAUST SYSTEMS/REMARKS
r-i FUNCTIONING 1-1 NORMALLY
n NOT FUNCTIONING LJ NORMALLY
WEATHER CONDITIONS
OUTSIDE TEMP
WIND DIRECTION
WIND VELOCITY
SUNNY CLOUDY HUMID
FOG
SHOWERS SNOW
F MSH
CNTRL
PUMP
T/. SAMPLE NO.
NO. serial nc
cnA 4^
MILITARY TIME
START
STOP
M?
TOTAL MINS
/SI
LPM/CC
/. 76 f
VOLUME UTERS
m-ii
ANALYSIS RESULT
OTd
HSl <?
<h&
nj>
l.lbX
-oo Z211S.U /A'lk
RAIN PTLY. CLOUDY
AIRBORNE CONCENTRATION
0. oui l`t-
O.Ofc? 1 tc
DID EKff>LOYEE WEAR RESPIRATOR?
IF SOMETIMES WHEN?
RESPIRATOR MAKE At MODEL
YES
NO
SOMETIMES
CNTRL NO DOS
AL
_^_STA__^TOP__a_a fOTAL^MIN rkabov^bq^
DID EMPLOYEE WEAR HEARING PROTECTS
YES
NO
SOMETIMES
Luwd\ ,6V
IF SOMETIMES WHEN? COMMENTS/SKETCHES
MAKE ft MODEL
itu- (Uull
01-16-0056 12/81
CTD023022
Certairifeedl
PLANT NAME
EMPLOYEE NAME
INDUSTRIAL HYGIENE MONI RING DATA SHEET
kJ
LOC NO.
SAMPLE TAKEN BY
P J. Ylou ii
DATE OF TEST
26 i"L.
PEPARTMENT/U NE
JOB TITLE/ENVIRONMENTAL LOCATION
Tl4t<v
MANUFACTURING PRODUCT
1
a
y y_ CONTAMINANT
FIBERGLASS ASBESTOS TOTAL DUST SILICA DUST ASPHALT FUMES VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
NOISE
SAMPLING METHOD
S' OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE IMPINGERS, TWO IN SERIES SILICAL GEL
a FLORISIL TUBE
CLOSED FACE AUDIO DOSIMETER
SAMPLING MEDIA
S' 0.8J/ MCEF, MOUPORE FILTER
5*1 PVC FILTER
GLASS FIBER-SILVER MEM FILTEF 150 mg. CHARCOAL SODIUM BISULFITE 300 mg. SILICA GEL 150 mg. SKC FLORISIL TUBE GLASS FIBER FILTER
80dba 85dba U 90dba
1
ID
1
n DUPONT U R4000 PUKff*
ryOUPONT ^p2SOO pump
(--1 DUPONT LJ P200A PUMP
EQUIPMENT
i-i DUPONT D376 LJ DOSIMETER
n DUPONT D381 LJ DOSIMETER
n FUNCTIONING LJ NORMALLY
OUTSIDE TEMP
n NOT FUNCTIONING LJ NORMALLY
WIND DIRECTION
EXHAUST SYSTEMS/REMARKS
WEATHER CONDITIONS
WIND VELOCITY
SUNNY
O' FOG
EKCLOUDY '<1 HUMID SHOWERS SNOW
RAIN FTLY. CLOUDY
CNTRL PUMP NO. SERIAL NO
o'vV o'V'l
L
SAMPLE NO.
MILITARY TIME
fmn oin Kl^ [\Mn
TOTAL MINS
P(v
137
i.tof
f.fos
VOLUME LITERS
SIYH< tin-il
ANALYSIS RESULT
TlU/.S"
MbL*
AIRBORNE CONCENTRATION
o. I B~? f cc
o. tsr Q
U _______ 1
DID EKPLOYEE WEAR RESPIRATOR?
YES O'7NO
SOMETIMES
DOS SERIAL
IF SOMETIMES WHEN?
RESPIRATOR MAKE & MODEL
START (TIME)
STOP
TOTAL MIN MAOOUTRWLl 8HR CORR cowvgrrtD bma uvn
DID EKffLOYEE WEAR HEARING PROTECT?'
YES
ID/NO
SOMETIMES
UbVCt
vcId.
^i
(JH1
IF SOMETIMES WHEN?
COMMENTS/SKETCHES
- N 1 Idb, Ccr^fiu-^
_MAKE ft MODEL
ZsJLdlQ )t> ')$0>
iiH ^ a.'u
^L
01-16-0056 12/81
CTD023023
CertairifeedW
PLANT NAME
Kimilic
EMPLOYEE NAME
INDUSTRIAL HYGIENE MONf ^RING DATA SHEET
LOC NO.
SAMPL* TAKEN BY
DATE OF TEST
A J- fl(jVlL0
27
VI-
DEPARTMENT/LINE
JOB TITLE/ENVIRONMENTAL LOCATION
MANUFACTURING PRODUCT
fiuimstunc'
i' i
"~r
3 % CXCiM t&> &C
CONTAMINANT
SAMPLING METHOD
FIBERGLASS & ASBESTOS TOTAL DUST SILICA DUST ASPHALT FUMES VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
NOISE
ty OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE IMPINGERS, TWO IN SERIES S1L1CAL GEL FLORIS1L TUBE CLOSED FACE AUDIO DOSIMETER
n DUPONT U R4000 PUfcP
fXDUPONT ^ P2S00 PUMP
n DUPONT u P200A PUMP
EQUIPMENT
n MSA LJ PUMP
SAMPLING MEDIA
r/ 0.8fl MCEF, MILUPORE FILTER
5*i PVC FILTER
GLASS FIBER-SILVER MEM FILTH P ISO mi. CHARCOAL SODIUM BISULFITE 300 mg. SILICA GEL 150 mg. SKC FLORISIL TUBE GLASS FIBER FILTER
80dba SSdba 90dbl
n DUPONT D376
DOSIMETER
r-i DUPONT D381 LJ DOSIMETER
EXHAUST SYSTEMS/REMARKS
r-/ FUNCTIONING V NORMALLY
n NOT FUNCTIONING LJ NORMALLY
WEATHER CONDITIONS
OUTSIDE TEMP
WIND DIRECTION
WIND VELOCITY
(gb F
CNTTIL NO.
PUMP
t/p
SERIAL NO
SAMPLE NO.
MILITARY TIME
START
STOP
MPH
TOTAL MINS
SUNNY KfOG
\Sy CLOUDY O' HUMID SHOWERS SNOW
LPM/CC
VOLUME LITERS
ANALYSIS RESULT
oVS fj ifov
44}
W ziwfc'/fc f/klk
RAIN PTLY. CLOUDY
AIRBORNE CONCENTRATION
0-252, -flee,,
DIO EMPLOYEE WEAR RESHRATOR?
IF SOMETIMES WHEN?
YES
NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
(TIMEI
STOP
TOTAL MIN
DID EMPLOYEE WEAR HEARING PROTECT?1
YES
NO
SOMETIMES
Lo/tyet. \!3o - yo:/i
IF SOMETIMES WHEN? COMMENTS/SKETCHES
to-'e> &<UL,IC fr> 0-7
RESPIRATOR MAKE A MODEL 8hr corr % MAKE S MODEL
01-16-0056 12/81
CTD023024
CertairiTeedB
name
EMPLOYEE NAME
INDUSTRIAL HYGIENE MONI~ ~>RING DATA SHEET
LOC NO.
MlTLt TAKEN BY
V. J. yiortis
DATE OF TEST
fXiL
DEPARTMENT/LINE
Pwual? Live*
'ENVIRONMENTAL LOCATION
f'OtfL U fa QMAfiJrin
A-U proJiujh
kCTURIING PRODUCT
* euJ"
CONTAMINANT
C i u^i
SAMPLING METHOD
FIBERGLASS 5/ ASBESTOS
TOTAL DUST SILICA DUST
_ asphalt fjjmes_________________ ~a _ _VJS_YL_ CHLORipE_(MONOMER^ _ _ _FORMALDEHYDE_______________ _ _ _PHENOL_________________________ " PCB
_ NOISE
D OPEN FACE
CLOSED FACE _ CYCLONE
" CLOSED^ FACE____
C_ "CHARCOAL TUBE
IMPINGERS^ TWO JN SERIES " SILICAL GEL
FLORISIL TUBE _ - CLOSED^ FACE______
AUDIO DOSIMETER
SAMPLING MEDIA
0.8*1 MCEF, MHUPORE FILTER
5/i PVC FILTER
GLASS FIBER-SILVER MEM F1LTEI D__ J50 mg. CHARCOAL _D__ SODIUM _BISULFITE___ 300 mg. SILICA GEL
ISO mg. SKC FLORISIL TUBE GLASS _FIBER_FILTER_______
~80db SSdb 90db
i DUPONT
J P4000 PUMP
r-yOUPONT ^p2500 pump
n DUPONT 1-1 p200a pump
EQUIPMENT
Q MSA LJ PUMP
i DUPONT 0376 J DOSIMETER
i DUPONT D3B1 i DOSIMETER
EXHAUST SYSTEMS/REMARKS
PUNCTIONING
OUTSIDE TEMP
6f
NOT FUNCTIONING NORMALLY
WIND DIRECTION
WEATHER CONDITIONS
WIND VELOCITY
SUNNY
O' FOG
"CLOUDY OKhUMID SHOWERS SNOW
O''RAIN PTLY. CLOUDY
CNTRL PUMP
NO. SERIAL NO
iff 5M
<pp
SAMPLE NO.
MILITARY TIME
mi mi Wei
^st>Y ffS^ Nfh
TOTAL MU NS
LPM/CC
2, o g.P
VOLUME LITERS
rtf
ANALYSIS RESULT
3WOH 5V+S.<J\
AIRBORNE CONCENTRATION
O.ocfVeilc-c
Q.oijnflcjc
DIO EMPLOYEE WEAR RESPIRATOR?
YES
NO
SOMETIMES
CNTRL NO ^^^SRIAL_ __CELL__
DID EMPLOYEE WEAR HEARING PWOTECTT
YES
NO
SOMETIMES
(hi
CTHa
; (cvJf
IF SOMETIMES WHEN?
RESPIRATOR MAKE A MODEL
TOTAL_MIN jjuoouTRnyjJ
IF SOMETIMES WHEN?
MAKE A MODEL
COMMENTS/SKETCHES
01-16-0056 12/81
CTD023025
CertainTeedH
PI ANT NAME
'fhmuJie,
Tdiu|
EMPLOYEE NAME
|va
INDUSTRIAL HYGIENE MONPuRING DATA SHEET
LOC NO.
SAMPLE TAKEN BY
DATE OF TEST________
Pj Ajtms
2 1 Moff s-z
DEPARTMENT/UNE
JOB TITLE/ENVIRONMENTAL LOCATION
MANUFACTURING PROOUCT
Cvuslia Op-tAcJ**'-'
CONTAMINANT
SAKPLING METHOD
FIBERGLASS & ASBESTOS TOTAL DUST SILICA DUST ASPHALT FUMES VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
NOISE
ffi'' OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE IMPINGERS. TWO IN SERIES SIL1CAL GEL FLORISIL TUBE CLOSED FACE AUDIO DOSIMETER
n DUPONT
UP4000 PUMP
rryOUPONT
^P2S00 PUMP
r-i DUPONT
U P200a PUMP
EQUIPMENT
pi MSA LJPUMP
SAMPLING MEDIA
Sr 0.8m mcef, mhupore filter
Q $n PVC FILTER
GLASS FIBER-SILVER MEM FILTEf 150 mg. CHARCOAL SODIUM BISULFITE 300 mi. SILICA CEL 150 mg. SKC FLORISIL TUBE GLASS FIBER FILTER
80dba 85dbi 90dba
r-| DUPONT D376 ^ DOSIMETER
t-i DUPONT D381 lj DOSIMETER
EXHAUST SYSTEMS/REMARKS
ra/FUNCTION!NG
NORMALLY
r-i NOT FUNCTIONING
LJ NORMALLY
WEATHER CONDITIONS
OUTSIDE TEMP
WIND DIRECTION
WIND VELOCITY
SUNNY KXCLOUDY B" HUMID
tS-lo ,,F
NSH
Sr PCX!
SHOWERS SNOW
CNTRL NO.
PUMP % SERIAL NO
SAMPLE NO.
MILITARY TIME
START
STOP
TOTAL MINS
LPM/CC
VOLUME UTERS
ANALYSIS RESULT
fetos'
Msn
m\
Is" 15
l. stnr 3o* leit
JJJUL
RAIN PTLY. CLOUDY
AIRBORNE CONCENTRATION o,7qi t(a_
DID EMPLOYEE WEAR RE91RATOR?
YES
NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
IF SOMETIMES WHEN?
(TIME)
STOP
TOTAL MIN
DID EMPLOYEE WEAR HEARING PROTECT*
YES
NO
SOMETIMES
IF SOMETIMES WHEN?
COMMENTS/SKETCHES
if
RESPIRATOR MAKE ft MODEL 8hr corr % MAKE A MODEL
f-L
01-16-0056 12/81
CTD023026
1" 1
CertairifeedB
JNAME_ ttuil EMPLOYEE NAME
INDUSTRIAL HYGIENE MONI' ''RING DATA SHEET
LOC NO.
SAMPLE TAKEN BY
DATE OF TEsT
i? J, yVw/>^-5~ flAo^
QgPARTMENT/UNE
JOB TITLE/ENVIRONMENTAL LOCATION
Cktk
MANUFACTURING PRODUCT
1
CONTAMINANT
fiberglass E ASBESTOS
a TOTAL DUST SILICA DUST a asphalt fumes VINYL CHLORIDE (MONOMER) FORMALDEHYDE
PHENOL PCB
NOISE
SAkPUNG METHOD
OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE
IMPINGERS. TWO IN SERIES
SILICAL GEL a FLORISIL TUBE
CLOSED FACE AUDIO DOSIMETER
SAKPUNG MEDIA
cK 0.8/i MCEF, MEUPORE FILTER
5m PVC FILTER
GLASS FIBERSLVER MEM FILTEI 150 mg. CHARCOAL
SODIUM BISULFITE 300 mg. SILICA GEL 150 mg. SKC FLORISIL TUBE
GLASS FIBER FILTER
80dbi 85db 90dbi
il
1D O
1
n DUPONT up4000 punr
rVVpbPiu2<SPnOOnONppTuump
n DUPONT LJ p200a pump
EQUIPMENT
dmsa
UPUMP
1 DUPONT d376 J DOSIMETER
EXHAUST SYSTEMS/REMARKS
FUNCTIONING NORMALLY
OUTSIDE TEMP
no
CNTRL NO.
$yi
PUMP HAL NO
(o IQ ^
n NOT FUNCTIONING LJ NORMALLY
WIND DIRECTION
WEATHER CONDITIONS
WIND VELOCITY
SUNNY FOG
O'^CLOUDY On HUMID SHOWERS SNOW
SAM>LE NO.
mu
MILITARY TIME
61VD /SOD
TOTAL MINS
44 o
VOLUME UTERS
ANALYSIS RESULT
1 DUPONT D381 J DOSIMETER
RAIN PTLY. CLOUDY
CONCENTRATION
o.oewytUL.'
DIO P*>LOYEE WEAR RESPIRATOR?
YES
O''NO
SOMETIMES
IF SOMETIMES WHEN?
RESPIRATOR MAKE a MODEL
.qCTLttg. POSTAL _____CELL---------------- START____ [TIME]______STOP_____ TOTAL MIN adqut,,W^ 8HR CORR % comnnrr^ d^l^
PIP EMPLOYEE WEAR HEARING PHOI CCI !
YES
Vi NO
SOMETIMES
(.v*
IF SOMETIMES WHEN7
COMMENTS/SKETCHES
Cb-\ iSvjhdit- -
MAKE A MODEL
01-16-0056 12/81
CTD023027
CertairifeedB
PLANT NAME
INDUSTRIAL HYGIENE MONr^RlNG DATA SHEET
ubs ?.. SAMP^- TAKEN BY
Pj h)<MM
DATE OF TEST
IVlCuL^ *7-
EMPLOYEE NAME
DEPARTMEWTfUNE
jOC fV\c. fern-
JOB TITLE;ENVIRONMENTAL LOCATION
pP\a (M in'sf-
MANUFACTURING PRODUCT
fAcixvi { CKaOL,
CONTAMINANT
SAKVL.ING METHOD
FIBERGLASS O' ASBESTOS TOTAL DUST _S_ILICA_DUSJ____ ASPHALT FUMES _ VJNYL_ CHLORIDE_(MONOMER]_ Id _ _F_ORMALD_EHYDE________________ _D_ _P_HENOL_________________________ ' PCB
__NOlS_E_
a
ay OPEN FACE
CLOSED FACE CYCLONE
___CLOSED_ FACE____ ' CHARCOAL TUBE
_ IMPINGERS^ TWO JN _SEJUES_
" SILICAL GEL FLORISIL TUBE CLOSED^ FACE____ AUDIO DOSIMETER*
EQUIPMENT
n DUPONT u R4000 PUKS*
n DUPONT LJ P2500 pump
n DUPONT LJ p200a pump
SAMPLING MEDIA
SY 0.8m MCEF. M1LUPORE FILTER
5M PVC FILTER
GLASS FIBER-SILVER MEM FILTH ISO mg. CHARCOAL ___ SODIUM .BISULFITE___ D__ 300 mg^ _SILICA GEL
ISO mg. SIX FLORISIL TUBE GLASS _FIBER_FILTER________
80dba 85dba 90dba
1 DUPONT D376 J DOSIMETER
-> DUPONT D381 J DOSIMETER
EXHAUST SYSTEMS/REMARKS
n FUNCTIONING NORMALLY
OUTSIDE TEMP
10
CNTRL PUMP NO. SERIAL NO
oil mil
NOT FUNCTIONING NORMALLY
WIND DIRECTION
WEATHER CONDITIONS
WIND VELOCITY
SUNNY
GJ^fog
B-'cloudy eT humid SHOWERS SNOW
RAIN Q PTLY. CLOUDY
SAX*>LE NO.
MlUTARY TIME
mo ML
TOTAL MINS
151
tin
VOLUME LITERS
ANALYSIS RESULT
AIRBORNE CONCENTRATION
0. oo^/cc.
DID EMPLOYEE WEAR REgtRATOR?
YES
GK NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
IF SOMETIMES WHEN?
RESPIRATOR MAKE ft MODEL
STAH I (TIME)
iTOP
rOTALJ^IN rimovtreij^ 8HR CORR % cowvEffgg
UfYi
DID EMPLOYEE WEAR HEARING PROTECT?*
YES
O' NO
SOMETIMES
IF SOMETIMES WHEN? COMMENTS/SKETCHES
'Wits ^
MAKE ft MODEL
01-16-0056 12/81
CTD023028
__
1
1_____
CertainTeedM
PLANT NftMK
EMPLOYEE NAME
INDUSTRIAL HYGIENE MONI* RING DATA SHEET
LOC NO.
SAfffLE TAKEN BY
P J /)<rvu4
_PATE OF TEST
2-rh^cu^ 2z.
PEPARTMENT/Ll NE
JOB TITLE/ENVIRONMENTAL LOCATION
<0>O \ 1 <?V O ^yojpi/
MANUFACTURING PROOUCT
CONTAMINANT
FIBERGLASS 5K ASBESTOS TOTAL DUST SILICA DUST ASPHALT FUMES D VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
SAJbfPUNG METHOD
O' OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE IMPINGERS, TWO IN SERIES SILICAL GEL FLOR1SIL TUBE CLOSED FACE AUDIO DOSIMETER
SAMPLING MEDIA
0.811 MCEF, MHUFORE FILTER
5fi PVC FILTER
GLASS FIBER-SILVER MEM F1LTEI 150 ms- CHARCOAL SODIUM BISULFITE 300 ms. SILICA GEL ISO ms- SKC FLORSIL TUBE GLASS FIBER FILTER
80dba 85dba U 90dba
1 1 1 1 1 1 1 1 1 1 1 1
wV i!'
o2 !
1
1
ID
n DUPONT U R4000 PUM>
ryOUPONT "P2S00 PUMP
pi DUPONT p200a pump
EQUIPMENT
1 DUPONT d376
n DUPONT 0381 LJ DOSIMETER
EXHAUST SYgTEMS/REMARKS
FUNCTIONING NORMALLY
OUTSIDE TEMP
no
CNTRL PUMP NO. SERIAL NO
IM. ~70Tfc
n NOT FUNCTIONING LJ NORMALLY
WIND DIRECTION
WEATHER CONDITIONS
WIND VELOCITY
SUNNY
S^FOG
"CLOUDY EXHUMID
RAIN PTLY. CLOUDY
SAMPLE NO.
MILITARY TIME
m't' p~n^
TOTAL MINS
oil
l iiC
VOLUME UTERS
1to,n
ANALYSIS RESULT
AIRBORNE CONCENTRATION
0*Op^l t-jcc
DIO EMPLOYEE WEAR RCaHRATORT
YES
O' NO
SOMETIMES
CTTTRL NO DOS SERIAL
CELLSTART
IF SOMETIMES WHEN?
RESPIRATOR MAKE A MODEL
(TIMEI
STOP
8TOTAL MIN w*DOtmigULT HR COBS % cowvwrm bm lvi
DID EMLOYEE WEAR HEARING PROTECT!-
IF SOMETIMES WHEN?
YES
0" NO
SOMETIMES
31*
2ottv
COMIMMENTS/SKETCHES
SLf
X-
ay<-
MAKS.ft MPPEL
01-16-0056 12/81
CTD023029
CertainTeedl
PLANT NAME
&<KAS(.[e
INDUSTRIAL HYGIENE MONf "RING DATA SHEET
LOC NO-
SAMPLE TAKEN BY
DATE OF TEST
?. J /Uopi^iS
7-1
EMPLOYEE NAME
DEPARTMENT/UNE
Aft a
JOB TITLE/ENVIRONMENTAL LOCATION bJmbcn\iL
MANUFACTURING PRODUCT
<uicfks Uci
________________
CONTAMINANT
1
^ SAAVLING METHOD
FIBERGLASS K/ ASBESTOS TOTAL DUST
D SILICA DUST
ASPHALT FUMES VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
NOISE
O' OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE IMPINCERS. TWO IN SERIES
D SILICAL gel
FLORISIL TUBE CLOSED FACE AUDIO DOSIMETER
jVDUPONT up4000 pu**>..
n DUPONT ^ P2500 pump
n DUPONT ljp200apunv>
EQUIPMENT
r- l*8* PUMP
SAKPUNG MEDIA D 0.8/1 MCEF, MEUPORE FILTER
S/x PVC FILTER
GLASS FIBER-SILVER MEM FILTH 150 mg. CHARCOAL SODIUM BISULFITE 300 mg. SILICA GEL 150 mg. SKC FLORISIL TUBE GLASS FIBER FILTER
SOdba 85dba 90dba
H DUPONT D376 1-1 DOSIMETER
n DUPONT d38J dosimeter
EXHAUST SYSTEMS/REMARKS
[-/FUNCTIONING ^ NORMALLY
n NOT FUNCTIONING LJ NORMALLY
WEATHER CONDITIONS
OUTSIDE TEMP
(g0 F
WIND DIRECTION
WIND VELOCITY
MM
SUNNY
CX FOG
CKCLOUDY O' HUMID SHOWERS SNOW
CNTTtL PUMP NO. SERIAL NO
SAMPLE NO.
MILITARY TIME
START
STOP
TOTAL MINS
LPM/CC
VOLUME LITERS
ANALYSIS RESULT
0^5 Wit
fJW
mi61M>
HW /.ins' 9r.or 11*151.1
RAIN PTLY. CLOUDY
AIRBORNE CONCENTRATION
)./?, /{ cc.
DIO EMPLOYEE WEAR RESTRATOR7
YES
NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
IF SOMETIMES WHEN?
RESPIRATOR MAKE ft MODEL
(TIME)
STOP
%TOTAL MIN READOUT RESULT 8hr cohr
DID EPiVUOYEE WEAR HEARING PRO'I EC IT
YES
NO
SOMETIMES
b
IP SOMETIMES WHEN?
COMMENTS/SKETCHES
< f,J ft
(U-i.
MAKE ft MODEL
4" /^UCx-^ Iw Sl^C
t?pc\\aV
01-16-0056 12/81
CTD023030
CertairifeedH
name
________ fZms'Jc
EMPLOYEE NAME
w
INDUSTRIAL HYGIENE MONI' RING DATA SHEET
rM
IOC NO.
SAMPLE TAKEN BY
DATE OF TEST
p. J. CJoi'/i S
2 7 nic^
DEPAftTMENT/LlNE
JOB TITLE/ENVIRONMENTAL LOCATION
MANUFACTURING PRODUCT
9 Hu
`yotACysz hap
CONTAMINANT
FIBERGLASS Q__ASBESTOS_______________________ " TOTAL DUST _silica_ DUST____________________ " _ _ASPHALT_FUMES_______________ " _ _VJNYL_ CHLORIDE_(MONOMERj_ IQ _ _FORMALDEHYDE____"_________ _ .PHENOL_________________________ " PCB
_ NOISE
'
SAILING METHOD
XX OPEN FACE
CLOSED FACE
_CYCLONE_____________________ CLOSED^FACE____________
_ CHARCOAL_ TUBE_____ ^ _ IMPINGERS^ TWO JN .SERIES^ _____ SILICAL_ GEL___________ ~___ " FLORISIL TUBE Q___ CLOSED^FACE________________ ' AUDIO DOSIMETER
rVDUFONT " R4000 PUKE*
n DUPONT
u P2S00 pump
n DUPONT *"* P200A pum>
EQUIPMENT
qMSA LJ PUMP
EXHAUST SYgTEMS/REMARKS
SAMPLING MEDIA
0.8ti MCEF, MUJJPORE FILTER
" IjTPVC" FILTER
___ GLASS_ nB^^LVER
F1LTEJ
150~mg^_CHARCOAL_________ '
_C_ SODIUM .BISULFITE__________ '
___ jqp mg^ SILICA GEL_________ '
ISO mg. SKC FLORISIL TUBE
___ GLASS _FIBER_FILTER_______
80dba 85dba U 90dba
1 DUPONT D376
i DUPONT D381 J DOSIMETER
ry FUNCTIONING ^ NORMALLY
NOT FUNCTIONING NORMALLY
WEATHER CONDITIONS
OUTSIDE TEKP
WIND DIRECTION
WIND VELOCITY
SUNNY -"CLOUDY Q^HUMID
(it!
F
MPH
Cfr^FOG
SHOWERS SNOW
CNTRL PUMP NO. SERIAL NO
SAKPLE NO.
MILITARY TIME
START
STOP
TOTAL MINS
LPM/CC
VOLUME LITERS
ANALYSIS RESULT
0j<o %\ <1
mil010<
hhh
Art
feu. IfV ilLX.f
RAIN PTLY. CLOUDY
AIRBORNE CONCENTRATION
DID EKPLOYEE WEAR RESPIRATOR?
IF SOMETIMES WHEN?
RESPIRATOR MAKE A MODEL
YES
NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
(TIME)
STOP
TOTAL MIN Wdout^mum BHR CORR % comvcttkp omm. lm.
DID EKPLOYEE WEAR HEARING PROTECT*?1
YES
NO
SOMETIMES
IF SOMETIMES WHEN? COMMENTS/SKETCHES
.-MAKE ft MPPEL
'Coa Z* t/)
01-16-0056 12/81
CTD023031
Certairifeedl
PLANT NAME
EMPLOYEE NAME
INDUSTRIAL HYGIENE MONI RING DATA SHEET
LOC NO.
SAMPLE TAKEN BY
f.Ji flaW
PATE OF TEST
vk
fr
DEPARTMENT/LINE
1
JOB TITLE/ENVIRONMENTAL LOCATION
MANUFACTURING PRODUCT
he.*.~h f\>
^M-cl
Cov.kt>f ipaxiA
CONTAMINANT
FIBERGLASS ASBESTOS TOTAL DUST SILICA DUST ASPHALT FUMES VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
NOISE
SAKVUNG METHOD
D OPEN FACE
D CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE IMPINGERS. TWO IN SERIES SILICAL GEL O FLORISIL TUBE CLOSED FACE AUDIO DOSIMETER
SAMPLING MEDIA
0.8m mcef, milufore filter
5PVC FILTER
CLASS FIBER-SILVER MEM FILTH 150 mg. CHARCOAL SODIUM BISULFITE 300 mg. SaiCA GEL ISO mg. SKC FLORISIL TUBE GLASS FIBER FILTER
SOdba 85dba U 90db>
n DUPONT
U R4000 PUK*>
n DUPONT
U P2500 PUMP
n DUPONT LJ p200a pump
EQUIPMENT
p MSA
lj pump
n DUPONT D376
dosimeter
p DUPONT D38! lj dosimeter
EXHAUST SYSTEMS/REMARKS
rV'FUNCTIONING " NORMALLY
p NOT FUNCTIONING LJ NORMALLY
WEATHER CONDITIONS
OUTSIDE TEMP
WIND DIRECTION
WIND VELOCITY
SUNNY S'"CLOUDY EK HUMID
~l i' ' Sfl F
ISH
D"POG
SHOWERS SNOW
CNTRL
PUMP
% SAMPLE NO.
NO. SERIAL NO
fH
srvri
fJ HHs
MILITARY TIME
START
STOP
ttaT i
TOTAL MINS
W
LPM/CC
VOLUME UTERS
ANALYSIS RESULT
/63/0 77
RAIN PTLY. CLOUDY
AIRBORNE CONCENTRATION
o. (xir/kts * l)
DID EKFLOYEE WEAR RE9IRATOR?
IF SOMETIMES WHEN?
RESPIRATOR MAKE ft MODEL
res
NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
(TIME)
STOP
%TOTAL MIN RUB OUT RKSULl 8hr corr
DID EMPLOYEE WEAR HEARING PROTECIT
YES
NO
SOMETIMES
IF SOMETIMES WHEN? COMMENTS/SKETCHES
MAKE ft MODEL
01-16-0056 12/81
CTD023032
CertairifeedB
- PLANT NAME
INDUSTRIAL HYGIENE MONI RING DATA SHEET
T-A
1XJC NO.
SAMPLE TAKEN BY
DATE OF TEST
2k mcuj. pz
EMPLOYEE NAME
Akk
JOB TITLE/ENVIRONMENTAL LOCATION
IMk^Ci
Lc'-'ef
fn S rn->--s
OEPARTMENTi'LlNE MANUFACTURING PRODUCT
CONTAMINANT
SAXVLING METHOD
Q'"' O G D
FIBERGLASS ASBESTOS TOTAL DUST SILICA DUST ASPHALT FUMES VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
NOISE
O' OPEN FACE
CLOSED FACE CYCLONE closed face CHARCOAL TUBE IMPINGERS. TWO IN SERIES SILICAL GEL FLORISIL TUBE CLOSED FACE AUDIO DOSIMETER
n DUPONT up4000 pum>
n DUPONT up2S00 pump
n DUPONT u p200a pump
EQUIPMENT
n MSA u pump
SAXWJNG MEDIA 0.8p MCEF, MRUFORE FILTER
Sji PVC FILTER
GLASS FIBER-SILVER MEM FILTH ISO mg. CHARCOAL SODIUM BISULFITE 300 mg. SILICA GEL ISO mg. SKC FLORISIL TUBE GLASS FIBER FILTER
SOdtu a 85dba U 90dba
`n DUPONT D376 dosimeter
r-j DUPONT 038l lj dosimeter
EXHAUST SYSTEMS/REMARKS
n FUNCTIONING LJ NORMALLY
n NOT FUNCTIONING LJ NORMALLY
WEATHER CONDITIONS
OUTSIDE TEMP
WIND DIRECTION
WIND VELOCITY
SUNNY S^LOUDY
HUMID
7 >' 'Iso F
Q/POG
SHOWERS SNOW
CNTRL
PUMP
% SAKVLE NO.
NO. SERIAL NO
MILITARY TIME
START
STOP
TOTAL MINS
LPM/CC
VOLUME UTERS
ANALYSIS RESULT
Inv MW
10<?
l.t*
Mint.*!
RAIN PTLY CLOUDY
AIRBORNE CONCENTRATION 0. 757//to
0
DIO EXPLOYEE WEAR RESPIRATOR?
YES
NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
IP SOMETIMES WHEN?
(TIME!
STOP
TOTAL MIN
DID EX*>LOYEE WEAR HEARING PROTECT*
YES
NO
SOMETIMES
IF SOMETIMES WHEN? COMMENTS/SKETCHES
RESPIRATOR MAKE A MODEL 8hr corr % MAKE A MODEL
01-16-0056 12/81
CTD023033
CertainTeedH
PLANT NAME
RirtAi'lJc
INDUSTRIAL HYGIENE MONI RING DATA SHEET
LOC NO.
SAMPLE TAKEN BY
DATE OF TEST
p.l tmM
VI tVUuz Vb
EMPLOYEE NAME
DEPARTMENT/UNE
Are<\
JOB TITLE/ENVIRONMENTAL LOCATION
UJeX iwa
A
MANUFACTURING PRODUCT
AvTCi UutlCAJL Tcwi-t*.
"
OONrAMINArtt
0 SAMPLING METHOD
SAKPUNG MEDIA
FIBERGLASS O' ASBESTOS TOTAL DUST SILICA DUST ASPHALT FUMES VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL D PCB
NOISE
&K OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE IMPINGERS. TWO IN SERIES SILICAL GEL FLORISIL TUBE CLOSED FACE AUDIO DOSIMETER
W 0.8JI MCEF, MILUPORE FILTER
5|i PVC FILTER
GLASS FIBER-SILVER HEM F1LTEI ISO ml. CHARCOAL SODIUM BISULFITE 300 mi. SILICA GEL ISO mi. SKC FLORISIL TUBE GLASS FIBER FILTER
80dba 85dba U 90dba
n DUPONT
U R4000 PUM>
n DUPONT
U P2SOO PUl*>
n DUPONT
P200A PUMP
EQUIPMENT
|-| MSA
PUMP
n DUPONT D376
DOSIMETER
n DUPONT D381
DOSIMETER
EXHAUST SYSTEMS/REMARKS
Q
'^TM",N<5
itou1
t 1v51W5
(loiui
WEATHER CONDITIONS
OUTSIDE TEMP
WIND DIRECTION
F
WIND VELOCITY
ISH
SUNNY } FOG
CLOUDY DKhUMID SHOWERS SNOW
RAIN PTLY. CLOUDY
1CNTRL PUMP NO. SERIAL NO
SAMPLE NO.
MILITARY TIME
START
STOP
TOTAL MINS
LPM/CC
VOLUME UTERS
ANALYSIS RESULT
AIRBORNE CONCENTRATION
' tils'
0 Ws 1430 *(?? /. V* no-it 3 loun.t 0. Hoi -ffcc. f/Alh,
DIO EMPLOYEE WEAR RESPIRATOR?
YES
D NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
IF SOMETIMES WHEN?
RESPIRATOR MAKE ft MODEL
(TIMEI
STOP
TOTAL MIN RIAO OUT RESULT 8hr cohr %
DID EMPLOYEE WEAR HEARING PROTECTT
G YES
NO
SOMETIMES
1-fziAjU^ f \^x\r ^
Cl^Uid-CtC-pL U-W-tS <*'''
IF SOMETIMES WHEN?
COMMENTS/SKETCHES
Sfvtcd.i^. -W~|.
MAKE ft MODEL
CLa-cc..
5^6 Id ^ U<dcAJtcJa
^
01-16-0056 12/81
CTD023034
Certairifeedl
PLANT NAME
'Diimutle
EMPLOYEE NAME /Ua
INDUSTRIAL HYGIENE MONISHING DATA SHEET
LOC NO.
SAWl taken by_____
P J. (Oo-vuo
DATE OF TEST
27
DEPARTMENT/UNE
JOB TITLE/ENVIRONMENTAL LOCATION
\lfc\ OAJiCy
MANUFACTURING PRODUCT
H'.bL______Mfi.tiO'V./
___ K^tUfr
CONTAMINANT 1
SAKVL1NG METHOD
BK
FIBERGLASS ASBESTOS TOTAL DUST
silica dust
asphalt fumes
VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
NOISE
OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE IMPINGERS. TWO IN SERIES SILICAL GEL O FLOR1SIL TUBE CLOSED FACE AUDIO DOSIMETER
ryBUPONT
MR4000 PUK*>
n DUPONT U P2500 PUMP
n OUPONT p200a pump
EQUIPMENT
1 MSA
^pump
EXHAUST SYSTEMS/REMARKS
SAMPLING MEDIA
0.8p MCEF, MnllfORF FILTER
5/J PVC FILTER
GLASS FIBER-SILVER MEM FILTH ISO mi. CHARCOAL SODIUM BISULFITE 300 ms. SILICA GEL ISO mg. SKC FLORdL TUBE GLASS FIBER FILTER
SOdba SSdba U 90dba
n DUPONT 0376 `-`dosimeter
r-j DLPONT o381
uj DOSIMETER
rV FUNCTIONING M NORMALLY
n NOT FUNCTIONING U NORMALLY
WEATHER CONDITIONS
OUTSIDE TEMP
WIND DIRECTION
WIND VELOCITY
SUNNY
(Q^tLOUDY QKhUMID
P RAIN
____________ko_________
tm*
CQ/FOG
SHOWERS G SNOW
PTLY. CLOUDY
CNTRL
PUMP
% SAK*LE NO.
NO. SERIAL NO
<tcl
MILITARY TIME
START
STOP
OHO
im
TOTAL MINS
LPM/CC
44 > %onC
VOLUME UTERS
w.'W
ANALYSIS RESULT
t&irt.Yf
AIRBORNE CONCENTRATION
0- U 1*7(sMats' f
DIO EMPLOYEE WEAR RESPIRATOR?
YES
NO
SOMETIMES
CNTRL NO 006 SERIAL
CELL
START
IF SOMETIMES WHEN?
(TIME)
STOP
TOTAL MIN
DID Efc*>LOYEE WEAR I-CARING PROTECTM
YES
NO
SOMETIMES
r W tffj
IF SOMETIMES WHEN?
COMMENTS/SKETCHES
UidtAAJjjL
RESPIRATOR MAKE a MODEL ftHR CORR % MAKE a MODEL
01-16-0056 12/81
CTD023035
CertainTeedB
S\ PLOT NAME
KiW/lSt e/d-
EMPLOYEE NAME
INDUSTRIAL HYGIENE MONI^RING DATA SHEET
LOC NO,
SAMP.- TAKEN BY
P-J. HctwjO
DATE OF TEST
17 rha^cU*
DEPARTMENT/U NE
(\rto
JOB TITLE/ENVIRONMENTAL LOCATION
Fi 1 IMA
MANUFACTURING PRODUCT
ku i Li< ^
\
CONTAMINANT
V
a FIBERGLASS
ASBESTOS
TOTAL DUST
SILICA DUST
D ASPHALT FUMES
VINYL CHLORIDE (MONOMER)
FORMALDEHYDE
PHENOL
PCB
NOISE
SAMPLING METHOD
OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE
IMPINGERS. TWO IN SERIES SILICAL gel FLORISIL TUBE
CLOSED FACE
AUDIO DOSIMETER
' SAMPLING MEDIA
dr O.fyi MCEF, MEUFORE FILTER
5fi PVC FILTER
GLASS FIBER-SILVER MEM BLTEI 150 mg. CHARCOAL
SODIUM BISULFITE 300 mg. SILICA GEL ISO mg. SKC FLORISIL TUBE GLASS FIBER FILTER
SOdba 85dba U 0dba
ii
DlDi
a^as^MP
n DUPONT u P2500 PUMP
n DUPONT LJ P200A PUMP
EQUIPMENT
qMSA
'-`pump
1 DUPONT d376
n DUPONT d38I ^ DOSIMETER
O' FUNCTIONING NORMALLY
OUTSIDE TEMP
(lO
CNTFIL
PUMP
NO. SERIAL NC
3-
n NOT FUNCTIONING LJ NORMALLY
WIND DIRECTION
EXHAUST SYSTEMS/REMARKS
WEATHER CONDITIONS
WIND VELOCITY
SUNNY '"'fog
E* CLOUDY -S^HUMId" SHOWERS SNOW
RAIN PTLY. CLOUDY
SAMPLE NO.
MILITARY TIME
AWV) Mil nil
TOTAL MINS
ll~M
VOLUME LITERS
ANALYSIS RESULT
11UL?
AIRBORNE CONCENTRATION
t>.0 2-(*S
----- m
DIO EI^LOYEE WEAR RE^TRATOR?
YES
O NO
SOMETIMES
SERI AL
CELL _
. _START
IF SOMETIMES WHEN7
RE91RATOR MAKE A MODEL
(TIME]
aiv#
rOTALWN gUDOVTMiyy
OID K#LOVEE WEAR HEARING PROTECT!*
YES
NO
SOMETIMES
IF SOMETIMES WHEN?
COMMENTS/SKETC=HHEB5S
T
Ccrufh^
/
MAK5 ft MPPEk
Of
I
tu-di <{
iWU-iftS
BL-
tA 01-16-0056 12/81
o
G>r DyI/;
CTD023036
Certairifeedl
PLANT NAME li-tieisule
INDUSTRIAL HYGIENE MONITORING DATA SHEET JCL
LOC NO-
SAMPw TAKEN BY_______
DATE OF TEST
Pj ricru^o
zn.
EMPLOYEE NAME
DEPARTMENT/UNE
/ _________________________________________________
JOB TITLE/ENVIRONMENTAL LOCATION
MANUFACTURING PRODUCT flFUtlS^UllA.
fatcT6
V
CONTAMINANT
SAMPLING METHOD
FIBERGLASS B/ ASBESTOS D TOTAL DUST SILICA DUST ASPHALT FUMES VINYL CHLORIDE (MONOMER) O FORMALDEHYDE PHENOL PCB
NOISE
S' OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE IMP1NGERS. TWO IN SERIES SILICAL GEL FLORISIL TUBE CLOSED FACE AUDIO DOSIMETER
>v6upont LTFI000 PWP
n dupont U P2500 PUMP
n dufont U P200* PUMP
EQUIPMENT
n MSA PUMP
SAMPLING MEDIA KJ''' 0.8p MCEF, MILLIFORE FILTER
Sfl PVC FILTER
GLASS FIBER-SILVER MEM FILTEf 150 rag. CHARCOAL SODIUM BISULFITE 300 mg. SILICA GEL ISO mg. SRC FLORISIL TUBE GLASS FIBER FILTER
80dt 85db& 90db>
n dupont d376 DOSIMETER
n oupont d381 ^ DOSIMETER
EXHAUST SYSTEMS/REMARKS
^ FUNCTIONING ^ NORMALLY
n NOT FUNCTIONING U NORMALLY
WEATHER CONDITIONS
OUTSIDE TEMP
WIND DIRECTION
WIND VELOCITY
SUNNY O-CUOUDY B^KUMID
IlD.!e
CNTRL NO.
PUMP % SERIAL NO
SAKPLE NO.
MILITARY TIME
START
STOP
WH
TOTAL MINS
O'"FOG
SHOWERS SNOW
LPM/CC
VOLUME UTERS
ANALYSIS RESULT
^11
ms 37
6111,
M34 Hit
U1
RAIN PTLY. CLOUDY
AIRBORNE CONCENTRATION
OOf?iJ/cc^ u
DIO EMPLOYEE WEAR RESPIRATOR?
YES
NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
IF SOMETIMES WHEN?
RESPIRATOR MAKE ft MODEL
(TIME)
STOP
%TOTAL MIN MADOUTRUUL1 8hr corr
DID EMPLOYEE WEAR HEARING PROTECT?
YES
NO
SOMETIMES
IF SOMETIMES WHEN? COMMENTS/SKETCHES
MAKE ft MODEL
01-16-0056 12/81
CTD023037
Certairifeedl
PLWT NAME
INDUSTRIAL HYGIENE MONISHING DATA SHEET T*
SAMP-- TAKEN BY
-Bftir; <?r Tty
f. J W(A
W fh&y n
EMPLOYEE NAME
QEPAWTMENT/UNE
Arr^i
JOB TITLE/ENVIRONMENTAL LOCATION
MANUFACTURING PRODUCT
tCodt** *? I
? I c^ftu S
.It
CONTAMINANT
FIBERGLASS & asbestos_________________________
`total dust
_SIL|CA_ DUSJ______________________ " _ _ASPHALT_FUM ES_ _ "_______ " _ "__VTNyL chlorlde_(monomerI
IQ _ .FORMALDEHYDE_________________
__PHEHOL_____________~____________ " PCB
____ NOISE_
SAMPLING METHOD
10/ OPEN FACE
CLOSED FACE ____CYCLONE_______________________ ' ___ closer face_______________ ~ " ___ CHARCOAL_ TUBE______________ " ___ IMPINGERS^ TWO JN JERIES~ " ~SIUCAL_ GEL______________ " FLOR1SIL TUBE ____ CLOSED^ FACE__________________ " AUDIO DOSIMETER
SAMPLING MEDIA
<2r 0.8p MCEF, MILIJFORE FILTER
1/Tpvc'FILTER
____GLASS^FIBER^LVER MEM FILTE) _D~ _ 750_mg^^:haRCOAL II_II JD_ SODIUM _BISULFITE___________"
'^"lM_gt_SIUCA_GEL______ "
ISO mg. SKCFLORISIL TUBE D GLASS_FIBER FILTER_______
" G~80dba Cf?Sdb G 90dba'
DUPONT P2500 PUMP
n DUPONT '-i p200a pukp
MSA
UPUMP
i DUPONT D376 J DOSIMETER
1 DUPONT d381
EXHAUST SYSTEMS/REMARKS
rV FUNCTIONING NORMALLY
n NOT FUNCTIONING LJ NORMALLY
WEATHER CONDITIONS
OUTSIDE TEMP
WIND DIRECTION
WIND VELOCITY
SUNNY ''CLOUDY O' HUMID
(aP
CNTRL
PUMP
\ SAMPLE NO.
NO. SERIAL NO
MILITARY TIME
START
STOP
hVH
TOTAL MINS
O' FOG
SHOWERS SNOW
LPM/CC
VOLUME LITERS
ANALYSIS RESULT
Nmn\ Men
ftlMo
Vv
.c i
-:
6 ?7^.4<4 /
RAIN PTLY. CLOUDY
AIRBORNE CONCENTRATION
0, oOtey'J/i^..
U
DID EMPLOYEE WEAR RESPIRATOR?
YES
NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
IF SOMETIMES WHEN?
RESPIRATOR MAKE ft MODEL
(TIME)
STOP
TOTAL MIN *ap out *gw.T 8HR CQRB % cowycrrm
uvel
DID EMPLOYEE WEAR HEARING PROTECTS
IF SOMETIMES WHEN?
YES
NO
SOMETIMES
COMMENTS/SKETCHES
(3UxXs fv-
5T ^
T43 loJUs. *l
MAKE ft MODEL
01-16-0056 12/81
CTD023038
1__ 1-------- -
CertairifeedB
W-ANT NAME
EMPLOYED NAME
INDUSTRIAL HYGIENE MONIT">RING DATA SHEET
LOC NO.
SAMP*. TAKEN BY
PATE OF TEST
P fJoiuni
tf
PEPARTMEMT/UNE
JOB TITLE/ENVIRONMENTAL LOCATION
Area
MANUFACTURING PRODUCT
CONTAMINANT
FIBERGLASS
0/ ASBESTOS
TOTAL DUST SILICA DUST asphalt fumes VINYL CHLORIDE (MONOMER) FORMALDEHYDE PHENOL PCB
NOISE
SAMPLING METHOD
OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE Q IMPINGERS, TWO IN SERIES D SILICAL GEL FLORISIL TUBE CLOSED FACE O AUDIO DOSIMETER
SAMPLING MEDIA
0.8M MCEF, MEJJFORE FILTER
5M PVC FILTER
GLASS FIBER-SILVER MEM F1LTEI 150 mg. CHARCOAL SODIUM BISULFITE 300 mg. SILICA GEL 150 mg. SKC FLORISIL TUBE GLASS FIBER FILTER
SOdba SSdba U 90dba
1
11
1
1
n DUPONT u R4000 PUMP
n DUPONT u P2S00 PUM>
1 DUPONT J p200a pump
EQUIPMENT
n
LJ PUMP
<1 DUPONT D376 J DOSIMETER
i DUPONT d381
EXHAUST SY9TEMS/REMARKS
n FUNCTIONING ^ NORMALLY
OUTSIDE TEMP
10
n NOT FUNCTIONING ^ NORMALLY
WIND DIRECTION
WEATHER CONDITIONS
WIND VELOCITY
SUNNY
O' FOG
''CLOUDY v0' HUMID SHOWERS SNOW
RAIN PTLY CLOUDY
CNTFIL PUMP NO. SERIAL NC
W<>
'&sl
SAMPLE NO.
MILITARY TIME
M ^ inn. MIL 6i ir
TOTAL MINS
vvy
m
2. QSu hb
VOLUME LITERS
7ifl.8
ANALYSIS RESULT
AIRBORNE CONCENTRATION
(lio
i. D0^/
Jzotu.- 72-0 ousry
DIO EMPLOYEE WEAR RESWRATOR7
YES
NO
SOMETIMES
DOS SERIAL
START
IF SOMIETIMES WHENt
RESPIRATOR MAKE A MODEL
(TIMEI
STOP
%TOTAL MIN READOUT BIllILl 8HR CORR
CQHmwB BAA Utva.
PIP EMPLOYEE WEAR HEARING PROTECTS
YES
NO
SOMETIMES
IF SOMIETIMES WHENt COMMENTS/SKETCHES
SVsi
Scic
T col i
MAKE A MODEL
1^
lVVcuLv
t \5>p
01-16-0056 12/81
CTD023039
1--1
O l1D 1i ll
CertarrifeedB
PLANT NAME
EMPLOYEE NAME
INDUSTRIAL HYGIENE MONr~>RING DATA SHEET
uk m,
SAMPl- taken by
PATE OF TEST
V NoIMa
z& tyioju^
PARTMENT/UNE
JOB TITLE/ENVIRONMENTAL LOCATION
MANUFACTURING PRODUCT
(kfA_____
CONTAMINANT
Mm1 iwft
SAMPLING METHOD
FIBERGLASS
& ASBESTOS
&
TOTAL DUST
SILICA DUST
ASPHALT FUMES VINYL CHLORIDE (MONOMER)
a
FORMALDEHYDE PHENOL
1
PCB
NOISE
OPEN FACE
CLOSED FACE CYCLONE CLOSED FACE CHARCOAL TUBE IMPINGERS. TWO IN SERIES SILICAL GEL FLORISIL TUBE CLOSED FACE AUDIO DOSIMETER
SAM*LING MEDIA
K 0.8fX MCEF, MRUFORE FILTER
Sfl PVC FILTER
GLASS FIBER-SILVER MEM FlLTF* 150 mg. CHARCOAL SODIUM BISULFITE 300 mg. SILICA GEL 150 mg. SKC FLORISIL TUBE GLASS FIBER FILTER
80dba 85dba 90dba
ry^UPONT Cjrp4000 PUfc*>
n FUNCTIONING LJ NORMALLY
OUTSIDE TW
no
CNTRL PUMP NO. SERIAL NO
i ^ V. 5* cl khilS
jp2S00 puk
n OUPONT u p200a pump
dmsa LJPU*
EXHAUST SYSTEMS/REMARKS
NOT FUNCTIONING
I DUPONT 0376
-> DUPONT D381 J DOSIMETER
WIND DIRECTION
WEATHER CONDITIONS
WIND VELOOTY
SUNNY
''FOG
S^CLOUDY CKHUMID SHOWERS SNOW
RAIN PTLY. CLOUDY
SAKfLE NO.
MILITARY TIME
01L 1M. ^MV7 01
TOTAL MINS
2.q-> i. ns
VOLUME LITERS
ANALYSIS RESULT
non
AIRBORNE CONCENTRATION
0.00? {-111, o.aoi -tftt.
PIP EI^LOYEE WEAR REgfRATOR?
IF SOMETIMES WHEN?
RESPIRATOR MAKE A MODEL
YES
NO
SOMETIMES
CNTRL NO DOS SERIAL
CELLSTART [TIME)
STOP
TOTAL M|N bao out
8HR CQRR % eowvmm aba lkvp.
DID E**(jOYE WEAR HEARING PROTECT?'
YES
NO
SOMETIMES
pud. escojxe
iVcUel
IF SOMETIMES WHEN? COMMENTS/SKETCHES
MAffi ft MPPEL
b*nK-Ue>LcL
fJ<? \pcv^ Id
^
(Vsc 1?oy
4 rtf
1'7-ip io v ^LJr.
01-16-0056 12/81
CTD023040
CertairifeedM
INDUSTRIAL HYGIENE MONnRING DATA SHEET
PLAWT NAME
LSS HS-
TAKEN BY
PATE OF TEST
(klrO[<>iU
/ItCUui
EMPLOYEE NAME
OEFARTMENT/UNE
VhluJ fUt,(a/Av
AA-fluc
JOB TITLE/ENVIRONMENTAL LOCATION
MANUFACTURING PRODUCT
OV\ cxusUeg. UcJcS
CONTAMINANT
FIBERGLASS ___ASBESTOS_______________________ " TOTAL DUST ___ SlUCADUSJ____________________ _ _A_SPHALT_FUMES______________ " _ _VTN YL_ CHI^RmEJ^ONOMER^ " _ FORMALDEHYDE_______________
"phenol____________________________ PCB
_NO!SE__________
*
SAMSUNG METHOD
OPEN FACE
CLOSED FACE ___ CYCLONE_____________________ ___CLOSED^ FACE________________~ ' ___CHARCOAL_ TUBE____________ " ___IMPINGERS^ TWO JN JERIES^ "_I?L1CAL^ GEL_"_~"________ FLOR1SIL TUBE ___ CLOSED_FACE________________ AUDIO DOSIMETER
D face Uctf
SAMPLING MEDIA
0.8^ MCEF, MILUPORE FILTER
" 1m PVC" FlIffR
D__GL^FTBBR^LVER MEM FIL/TEI
___i5cfW .CHARCOAL____~____' ___SODIUM JISULFJTE___________ '
D__pOOrng^ SILICA GEL_________ '
150 mg. SKC FLORESDL TUBE _ GLASS _FJBER_RLTE R_______
80dba 85dba 90dba
ryDUPONT *Sp4tt PUt
rV FUNCTIONING NORMALLY
OUTSIDE TEMP
n DUPONT LJ P2S00 pump
n DUPONT LJ p200a puk*
dmsa
^ PUMP
1 DUPONT 0376
NOT FUNCTIONING NORMALLY
WIND DIRECTION
EXHAUST SYSTEMS/REMARKS
Local okmjjJ' froJk
WEATHER CONDITIONS
WIND VELOCITY
SUNNY
O' FOG
&"CLOUDY & HUMID SHOWERS SNOW
i DUPONT 0381
RAIN PTLY. CLOUDY
NO. SERIAL NO
CfET
SAMPLE NO.
U Kb H rb-S'
MILITARY TIME
START
STOP
HZv mi- /sro-
TOTAL MINS
tfitv
2. CD 2,<ro
VOLUME LITERS
Jlk.
J) t.
(j'J - fl.olf)
DID EKTLOYEE WEAR RESPIRATOR?
O.fcZ >4
IF!SOMETIMES WHEN?
ANALYSIS RESULT
AIRBORNE CONCENTRATION
NJi 0,2-2. n^fi
(tl/3_IT' /A^j /
RESPIRATOR MAKE & MODEL
YES
O' NO
SOMETIMES
CNTRL NO DOS SERIAL
CELL
START
{TIME)
STOP
TOTAL MIN RKAB OUT RK1UL1 8hr corr %
-
DID M>LOYEE WEAR HEARING PROTECT?
Q YE5
t/ HO
SOMETIMES
IF SOMETIMES WHEN? coMments/sketches
MAKE & MODEL
""*5
Ivl i Cm f o cL^
($5 $J2. (Qo}t<) CxvJ
kOMJlU? Hm 2 CAmsI^i
VhctocxAu.
fcrttA hv
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cffJr dU fyuMj.
L (.LvcXgjs; Oxmcu^.
CocWlj tuiA
\iAe\\Mx4 tud Od-duuj
'B feu) S' Uyixcul
01-16-0056 12/81
CTD023041
fjP T 0 3 fy ^ ri< d j
T~ 'S')
n
P
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dZ p
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RIH01
In d u s tr ia l Hygiene Survey: 82PT03 PIPE & PLASTICS-EPG RIVERSIDE
IH AIR Sequence
06/14/1994 14:29:20 Page:
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ASBESTOS MONITORING DATA SHEET N ^ ^
PLANT
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