Document pBbJ88BR03awkVoQZJK0x50Rk
INOU TRIAL HYGIENE `FOUNDATION OF AMERICA. INC.
Mcuon Inotitut*. 4400 Firrn Avcnuc
PirrsaunOM. Pa. isaia May 5, 1966
Dr. Lee B. Grant Mtdictl Director Pittsburgh Plate Glass Company One Gateway Center Pittsburgh, Pennsylvania 15222
Dear Dr. Grant:
H-jV: THIS OOCUMENT DIO NOT COME FROM PPG FILES
Enclosed herewith are ten copies of a report of findings of an Industrial Hygiene Survey of Selected Plant Operations performed April 14-15, 1966 at the Pittsburgh-Corning Plant at Port Allegany, Pa. by Dr. Morton Corn for Industrial Hygiene Foundation. If questions should arise, feel free to contact Dsr-CaTn or me.
An invoice is enclosed.
Sincerely,
deTjcb Enclosures
Robert T. P. deTreville, M.D. Managing Director
1 BB 0007956 1
INDUSTRIAL HYGIENE FOUNDATION OF AMERICA, INC.
UOW MITRVTt
4400 flTTN AVtHVI
Dr. Lee B. Grant Medical Director Pittsburgh Plate Glass Company Otoe Gateway Center
Pittsburgh, Pennsylvania 15222
PITTSBURGH, PA.,*>o May 5. 1966
NOTE: THIS DOCUMENT DID NOT COME FROM PPG FILES
Industrial Hygiene Survey of Selected Process Operations for Pitisburgh-Corning Corp. , Port Allegany. Pa. April 14.15, 1966.
$348 96
ORIGINAL
THIS DOCUMENT WAS NOT A RECORD OF
PPG INDUSTRIES, INC. DID NOT COME FROM
IT'S FILES AND CANNOT BE AUTHENTICATED
BY PPG INDUSTRIES. INC.
L
M3B 0007957 |
INDUSTRIAL HYGIENE FOUNDATION OF AMERICA, INC. Mellon Institute, 4400 Fifth Avenue Pittsburgh, Pa. 1S213
Report on
INDUSTRIAL HYGIENE SURVEY OF SELECTED PROCESS OPERATIONS
for
PITTSBURGH-CORNING CORPORATION Port Allegany, Pennsylvania
April 14-15, 1966
u\c nfiCUt/itHT O'.D
bv SM*fWPPGF'LES
Morton Corn, Ph. D.
Robert T. P. deTreville,
Managing Director
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t*
M. D.
| BB 0007958*7
AN ASSOCIATION or INDUSTRIES orFOR the advancement HEALTHFUL working conditions
TABLE OF CONTENTS
I. Introduction
II. Recommendations
III. Threshold Limit Values of Substances Measured in this Survey
IV. Description of Sampling and Analytical Methods
V. Results and Discussion
A. Plant No. 1: Glass Block 1. Noise Measurements 2. Hood Air Velocities 3. Decorative Paint Spraying
B. Plant No. 2: Fabrication of Foam Gi.a*C'.c; 1. Mould Stripping 2. Mould Filling 3. Grinding Operations 4. Stay-Dry Pipe Cover
C. Plant No. 6: Foamthane 1. Toluene-2,4-diisocyanate Concentrations in Air
D. Plant No. 8: Unibestos
Page
1
2
4
6
3
8 8 10 10 11 11 12 12 13 14 14 16
THIS DOCUMENT WAS NOT A RECORD OF PPG INDUSTRIES. INC. DID NOT COME FROM IT'S FILES. AND CANNOT BE AUTHENTICATED BY PPG INDUSTRIES, INC.
IBB 00079S9~T
1.
I. Introduction
NOTE: THIS DOCUwSfcH'f ,.,D NOT COME FROM PPG Fi'T-S
This survey was undertaken at the request of Dr. Lee B. Grant, Medical
Director, Pittsburgh Plate Glass Company. Dr. Grant initially visited the
Port Allegany plant during October 25-28, 1965 and summarized plant areas
requiring further industrial hygiene assessment in a December 25, 1965 letter
to Mr. L. O. Griffith, Plant Manager. The survey reported below concen
trated on the evaluation of operations singled out by Dr. Grant, but also
included additional operations. In this report all aspects of environmental,
assessment investigated at the Port Allegany plant are discussed, with the
exception of assessment of lead exposure by analysis of urine or blood samples
obtained from workmen utilizing lead base paints. Dr. Grant will rep rt on
this phase of the survey.
Mr. Fred Van Dusen, Ceramics Engineer, Port Allegany plant,
accompanied the author during the entire survey and also assisted with several
measurements. His assistance is gratefully acknowledged.
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x JV 4 u
| BB 0007960 1
2.
II. Recommendations
A. Plant No. 1: Glass Block
1. Car protective equipment should be fitted to operators in the vicinity
of the block forming circle, fire polishing line, block sealing machinery, and
the glass tank. Noise in these zones is excessive.
2. A permanent, rigid, hinged frontpiece should be installed n the
front of the decorative paint spraying booth to replace the presently used
makeshift, cardboard frontpiece.
3. A stringent personal hygiene program should be instituted for
operators in the paint spray booth to ensure that paint on hands, fingers.
etc. is not ingested.
NOTE: THIS DOCUMENT DID. NOT COME FROM PPG FILES
B. Plant No. 2: Fabrication of Foam Glass
1. Louvers on overhead air supply hoods above the mould filling
operator should be adjusted as described in this report and then locked in
position. In this manner, dust from the mould can be prevented from
entering the face zone of the operator.
2. Ear protection equipment should be furnished to the mould filling
operator, who is exposed to brief, but regularly spaced sound level peaks
of 106 db and base levels of 98 db.
3. Two overhead 8" diameter air ducts at line 1 mould filling position
should be realigned as described in this report.
4. Ear protection equipment should be furnished to band saw and
grinder operators.
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BY PPG INDUSTRIES, INC.
. ''B7 000796]J.
5. _The use of compressed air to clean clothes and work surfaces at the grinding operation site should be discontinued and a suction source should be substituted.
6. The exhaust line to the knockout bench should be repaired. 7. Exhaust ventilation should be installed at the stay-dry pipe covering operation where asphalt fumes are generated in large quantities.
C. Plant No. 6: Foamthane
NOT COME FROM PPG FILES
1. Toluene-2, 4-diisocyanate concentrations in air did not exc ed
the recommended ceiling value. However, the amount of TDI in the air
of this plant can be greatly reduced by erecting a permanent, three-sided -
enclosure for the bun cutting operation. At present, a tagged, plastic
curtain is being used for this purpose.
D. Plant No. 8: Unibestos 1. Asbestos dust in the vicinity of the feeder operator was excessive
when measured by standard techniques. The feeder operator should wear respiratory protective equipment at all times.
2. To reduce airborne dust, a general tightening up of "housekeeping" practices should be instituted in this plant. Several specific suggestions are included in this report.
this document was n#vt a
PPG INDUSTmVc
* RECORD
BY PPG INDUSTRIES, INC.
, BB 0007962_|
4.
III. Threshold Limit Values of Substances Measured in This Survey "The threshold limit values refer to airborne concentrations of sub*
stances and represent conditions under which it is believed that nearly ail workers may be repeatedly exposed, day after day, without adverse effect. Because of wide variation in individual susceptibility, exposure of an occasional individual at or even below the threshold limit may not prevent discomfort, aggravation of a pre-existing condition, or occupational illness.
"Threshold limits should be used as guides in the control of health hazards and should not be regarded as fine lines between safe and dangerous concentrations
Threshold values for all substances measured in this survey are presented in Table 1.
THIS OOvUMEhT WAS NOT A RECORD OF PPG INDUSTRIES, INC. DIO NOT COME FROM IT'S FILES AND CANNOT BE AUTHENTICATED BY PPG INDUSTRIES, INC.
J BB 0007963 | * Extracted from the Preface, Threshold Limit Values for 1965. American
Conference of Governmental Hygienists, 1014 Broadway, Cincinnati 2, Ohio.
Table 1
Threshold Limit Values For Substances Measured In This Survey-
Substance
ppm* mg/m3** MFPCF***
Asbestos (less than 1% crystalline silica)
Lead
0.2
Toluene-2, 4-diisocyanate
0. 02 (Ceiling Value)
Broad-band (600-4800 cps) Noise ****
85 db.
note-, this DOCUMENT wo not COME FROM PPG FILES
**** See Industrial Noise Manual, 2nd Ed. American Industrial Hygiene Association, 14125 Prevost, Detroit, Michigan, 1966, Ch. 7.
*** Millions of Particles Per Cubic Foot.
** Approximate milligrams of particulate per cubic meter of air.
* Parts of vapor or gas per million parts of air by volume at 25 C and 760 mmHg pressure.
+ Based on values adopted in 1965 by the American Conference of Governmental Industrial Hygienists.
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I 0007964*J
Th*-air sampling and measurement techniques used to assess the environment during this study are described below. Asbestos Dust
A midget impinger containing 10 ml. of demineralized, distilled water was used to collect dust in air sampled at 0. 1 cfm for ten minutes. Samples were agitated prior to withdrawing drops of suspension for microscopic exami nation in a Dunn Cell. Particles less than ten microns in projected ar a diameter were counted by viewing the sample with an objective lens of 0. 65 N. A. (10 X) and a 15 X Ocular. Approximately 200-300 particles were counted in twodifferent sample withdrawals. The counting standard deviation was estimated to be (N), 1 '/2 where N is the total count for the sample. A blank count was made on the distilled water. Dust concentration in the air, expressed as millions of particles per cubic foot (mppcf), was calculated from the sample volume, liquid collection reservoir, and sample and blank dust counts. The techniques used adhered to United States Public Health Service and Asbestos industry recommended procedures, * Lead
Lead in air as particulates from paint spraying was sampled at 27 cfm by using an electrostatic precipitator. * An HA Millipore filter paper was aLso used. Total particulate weight was determined by direct weighing of samples on a microbalance (+ 0.01 mg). Lead was determined by assuming the airborne material lead content to be that of the bulk paint (45-51% by weight).
"Method for Determining Asbestos Dust Concentration." Asbestos Textile
Institute, Pompton Lakes, New Jersey, 1964.
,,*
* Del Electronics Corporation, Mt. Vernon, New York.
| BB 0007965 |
Toluene .2 ^4-diisocyanate A Unico* TDI Analysis in Air Kit was used. Air is drawn at 0. 1 cfm
through 10 mi. of absorber solution in a midget impinger. The absorber s lution is analyzed in the field by colorimetric methods** and the resultant color is compared to a set of permanent color standards. Sound Intensity
A General Radio Company*** sound level meter. Type 1551 C, with ceramic microphone was used. All measurements were made on the instrument C-scale. The instrument was calibrated in the anechoic chamber at the Graduate School of Public Health, University of Pittsburgh.
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*** West Concord, Massachusetts 01781.
| 8B 0007966 |
** Marcali, K.: "Microdetermination of TDI in the Atmosphere. "
Anal. Chem. 29, 552 ( 1957).
^0
* Union Industrial Equipment Company, 150 Cove Street, Fall River, Mass.
3.
V. Results and Discussion A. Pisa* No. 2: Glass Block Production 1. Noise Measurements Table 2 is a summary of results of sound intensity measurements per
formed in the vicinity of block forming and spraying operations. The results indicate that noise levels are very high and are beyond the threshold of damage risk, even when the polishing operation is OFF. A stringent criterion for sound intensity is 85 db when sound is measured on a broad band basis (C-scale), as it was in this survey. An industry-wide level is 95 db, which is less stringent. The levels measured in the vicinity of glass block operations exceeded even the less stringent criterion. Therefore, ear protection must be furnished to operator in the Glass Block plant if the possibility of hearing damage is to be eliminated. At present the risk is greatest in the vicinity of block forming.
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I BB 0007967 |
\
Table 2 Summary of Sound Levels in the Vicinity of Selected
Glass Block Plant Operations*^
9.
Sample Number
1
2 3 4
5 6 7
8 9 10 11 12
Location of Measurement
Sound Intensity, Decibels
Two feet from Forming Circle on line 4 between Operator Room and polishing stage (Polishing Operation OFF)
99
Same as (1), but Cooling Air ON and Flame Polishing Gas ON
103-105
Between lines 3 and 4 (Polishing Operation OFF)
100
Same as (3), but Cooling Air ON and Flame
i^
Polishing Gas ON
O
102
Midway between No. 3 and 4 lines near Forming Circle (Polishing Operation OFF)
U_
CD Q_ 101 CL.
Same as (5), but Cooling Air and Flame Polishing Gas ON
o O 102-103 o 2E
Approximately 2 feet from Operator near No. 3 line
Adjoining belt exit, No. 3 line
Near Glass Tank wall (background)
Between lines 2 and 3 at Sealing Operation, at Operator's side
99
Entry to storage room at end of belt No. 4 near Sealing Area (Polishing Operation OFF)
98
Vinyl Spraying of Block Edges 2 feet from No. 3 line operation, next to operator
92
*Ail measurements-------
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~
" "<FWW W - - " * -*- -- '
iDry bulb temperature = 88#F.; Wet bulb temperature = 77 #F. ; Relative
humidity = 61%.
Hr*..,-
PP1PHOGInSIIMNLTD0MUvISC.bTTiRvmI.ErtAoSr, INWCA.SDINDON_T_O_AT CROEMCOERFDROuOMrF
IT S FILES AND CANNOT BE AUTHENTICATED
BY PPG INDUSTRIES, INC.
^
1 BB 0007969 -------------------------
2. Hood Air Velocities, Vinyl Edge Spraying
10.
Ai^vtlocities in the No. 3 line operation varied from 150 to 1,000 fpm from side^lttxy to rear hood entry, indicating satisfactory ventilation control
of vapors in this operation. Large particles cannot be exhausted and protection of the eyes was accomplished by the use of safety goggles. This operation does not require any modification to afford further operator protection.
3. Decorative Paint Spraying NOTE: THIS DOCUMENT DID NOT COME,FROM PPG FiLESS
Air velocities at the makeshift hooo'caYronTpiece (cardboard) were measured and air samples for particulates in air were obtained. The men had fabricated a 13" x 18" cut-out in a flat section of cardboard used to cover the hood face. The cardboard did a good job of control: air velocities at the open ing were 500-600 fpm. A rigid hinged door faceplate, rather than the cardboard now in use, should be attached to the spray booth.
Particulate concentration in the breathing zone of the operator, based on a Millipore filter sample and an electrostatic precipitator sample, was 0.3 - 0.4 mg/m^. The enamel used contained 45 - 51 % lead oxide so that the
lead in the air was not in excess of the threshold limit value of 0.2 mg/m^. It appeared to me that a more serious problem in this operation is the
extensive paint contamination on hands and clothing which results from cleaning spray guns (which plug every 4-5 blocks) and extending hands into the box. Without a very rigid personal hygiene program, the operator could easily ingest a large quantity of lead picked up by contamination.
THIS TS m D^OTCOME^ROM frs nuSo cannot be authenticated
BY PPG INDUSTRIES, INC.
7~BB 0007969 I
11,
fftJYfe:B. Plant No. 2: Fabrication of Foam
THIS DOCUMENT DID
1. Mould Stripping
NOT COME FROM PPG FILES
The mould stripping operation has been a source of minor eye injuries.
The flow of air from overhead hoods downward over the operator appeared to
re-entrain dust upward from the mould to the operator's eye. It is believed
that the reason for variations in severity of incidence of these injuries at
different stations is related to the adjustment of air louvers on the overhead
hoods. Thus, at Station No. 1 air velocities were 4560 - 6000 fpm at the face
of the slotted 3 ft. x 1 1/2 ft. hood. At Stations 2-4, air velocities at the
face were 1500 -4000 fpm. No. 2 Station had lowest hood face air v locities.
The reason for these variations is that the resistances of the ventilation lines
are varied by the men as they adjust the louvers. The remedy to this situation
is to lock the louvers in position after adjustment by engineering personnel.
At Station 1 the louvers were adjusted in a series of test positions to
see if air could be directed both downward at the operator's back and forward
towards the oven and over the roller table. These cursory studies were made
in the presence of Mr. Van Dusen. It appeared that by proper adjustment of
louvers, with some set perpendicular to the floor and some at approximately
45* to the floor, the air could be effectively used to keep dust from the opera
tor's face.
The only alternative I can suggest to the above simple solution, is the
installation of suction sources below the knockout table. I believe the present
situation can be remedied by simple louver adjustment without recourse to
IT'S FILES AND CANNOT BE AUTHENtIcATe'd
BY PPG INDUSTRIES, INC,
3L
--
major engineering of the facility. If simple louver adjustment and redirection
of air reaq in too little air reaching the operator's back, there is sufficient
r air at each hood to extend the hood to face dimensions of 2 1/2 ft. x 3 ft.
2. Mould Filling
Sound intensity levels at the filling operation were 98 - 106 db, which are
excessive. The 106 db level was intermittent, occurring only during the filling
cycle (approximately 1 second), but ear protection should be utilized by the
operator.
Two overhead 8" diameter air ducts at line 1 filling position are
poorly located. Air is directed at the floor, with the resulting upward flow
of dust. The jet should be lowered and aligned parallel to the floor.
3. Grinding Operations
NOTE: THIS DOCUMENT DID NOT COME FROM PPG FILES
Hood air velocities at the grinders for V^block face and side cuts were
greater than 1000 fpm, indicating excellent control. An exhaust duct under
the knockout bench at the grinding site was not operative because of a connection
break on the floor. This is a poor location for the duct. It should be relocated
(overhead entry) or someone should be responsible for checking the connection
in the present site. However, dust was well under control at this location.
Installation of exhaust control on the band saw would further improve the operation
Sound intensity level at the band saw was 92 db: at the grinder it was
94 db. In my opinion, continuous exposure to levels in excess of 85 db is an
unnecessary risk. These men should wear a form of ear protector.
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t ` 4' ' S
J_BB_000797]~j
13.
In-this area the men used compressed air to "dust-off" surfaces and
themselvcS^W^A ay: jet is an excellent dust disperser and housekeeping would ** * -r-t
be improved if an industrial vacuum cleaner, rather than an air jet, was used
for this purpose. 4. Stay-Dry Pipe Cover
In this operation a synthetic asphalt, Kendex 4230, is rolled on the
foam glass pipe sections. A condensed liquid fume rises from the hot, w t
rollers and is often in the breathing zone of the operator. An air sample
(Millipore filter) obtained at the breathing zone of the operator indicated a concentration of 5. 1 mg/m^. Unfortunately, the ingredients in Kendex 4230
could not be determined and it is not possible to assess the health hazard of
this exposure. The fume from the operation also impairs visibility in the
shop. It is recommended that side-slot suction ventilation be utilized at this
site. The slot air velocity will decrease to 10% of its value one diameter
from the face so the tar wheel and exhaust slot must be in close proximity.
The saturated vapors from this operation will condense on any cold
surface, including an exhaust slot. Frequent cleaning of a hood exhausting
asphalt fumes is the only way to ensure good performance .
5. Accoustic Tile Spraying
T5 Ut :i,C;
Hood face air velocities at this oper
* , nm
ILES
Control was satisfactory,
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0007$
14.
C. Plant No. 6: Foamthane 1. Tofane-2,4-diisocyanate (TDI) Concentrations in Air Table 3 is a summary of TDI concentrations based on air sampling in this plant. All measured air concentrations of TDI were less than the ceiling value recommended by the American Conference of Governmental Industrial Hygienists (0.02 ppm).
The operation which requires further control is hot wire cutting. At present the men have erected a flexible plastic curtain enclosure for the operation. This enclosure should be a rigid one enclosing three sides of the work bench from hood rim to floor. This recommendation is based n measured air velocities at this site. Five feet from the ground, in front of the work bench, velocities were 50 - 75 fpm, which is comparable to room air veloci ties. Seven feet from the ground 100 fpm velocities were found. These velocities are low and are probably due to air leakage into the plastic enclosure at ground level in the rear of the work bench
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| BB 0007973 |
15.
Sample 1
2
3
4
5 6 7
Table 3
Concentrations of Toluene-2,4-diisocyanate in
Air, Plant No. ^rr.
DOCUMENT DID
NOT C OMEjjjQM PP"GfiLEi
Location
Concentration ppm
Breathing zone of operator (foam formation)
<0.01
Breathing zone of operator 1; Bun cutting at end of belt (wall side)
0.01
o o
a--
Breathing zone of operator 2; Bun cutting (center of room side)
Breathing zone of operator; Hot wire cutting
0.01
Breathing zone of operator; Band saw
<0. 01
Repeat Sample 4, wire cutting
0.01
Ho o
V
Background sample
Sampling performed on April 14, 1966, 1:30 - 3:00 p.m.
BY PPPPGn ,NDustcraiensn.o1tNBc;E T'bb 000222---
D. Plant No. 8: Unibestos DufljNn this plant was sampled and assessed using the midget impinger
techniques which are still standard practice in the United States. It sh uld be stressed that these techniques are undergoing transition and leave much be be desired, but they have been used for many years and are still the basis for recommended threshold limit values. Table 4 is a summary of the results of three air samples obtained in the plant. The concentration of dust in the breathing zone of the feeder is excessive. The feeder wore a respirator and this practice, if voluntary, should be compulsory.
. .,t c; \* mnwo DOCUMENT DID Table 4 not come from PPG files
Concentrations of Asbestos in Air of Unibestos Plant*
Sample
1 2
3 -
Location
Breathing zone of Sawyer
Breathing zone of Feeder
Background Dust in Vicinity of Feeding Operations
** Millions of Particles Per Cubic Foot * Sampling performed on April 14, 1966, 4:00 -5:30 p.m.
MPPCF** 1.40.1 11.5*0.8 2.3-- 0.4
BY pPPpSr Tin.ZU, STRIES, INCB.l
^ * ' *** I Bb""00 07 9 7 5~ 7
17.
Housekeeping procedures in this plant should be greatly improved for
they und
,y contribute to the airborne dust. Some of the observed pro-
cedures, which should be modified or discontinued, are listed below.
1. Shoveling scrap material from storage bin to feed bins.
2. Feed bin conveyor belt returns (Lines 1 and 2) are not enclosed
and material drops to the floor, thus creating dust.
3. Line 1 cyclone hopper at entry to the conveyor belt leaks.
4. Material drops from the fan entry feed line conveyor belt to a
55 Gal. drum, dispersing dust as it falls.
Air velocities at the feed bin faces varied from 50 - 90 fpm in the-
Dll bin to 130 - 170 fpm in the scrap bin. These velocities are too low for-
effective control of dust at this site.
Air velocities above the cutting saw bed were 150 -200 fpm and
appeared to be effectively controlling generated dust.
j BB 0007976 1