Document 10OrVneKnY741pO16m7nR5ykq
i*
ANZ 0004-251
ENVIRONMENTAL SURVEY Corpus Christi
October 11-13, 1977
Prepared by:
Stanley G. Cothrin Environmental Scientist Department of Environmental ASARCO Incorporated Salt Lake City, Utah
Sciences
Report Date:
December 15, 1977
Distribution:
CBWhite HLMontague KDLoughridge DHSoutar KWNelson AJGillespie,Jr. RCBeckstead EHHaug/WTSweat Dr.CHHine MOVarner
ANZ 0004252
ENVIRONMENTAL SURVEY Corpus Christi
October 11-13, 1977
TABLE OF CONTENTS
Page
EXECUTIVE SUMMARY ........................................................................................................................ iii
1. OPERATING CONDITIONS ............................................................................................ 1
II. SAMPLING AND ANALYTICAL PROCEDURES ..................................................
A. Air.................................................................................................................................... B. Noise..............................................................................................................................
1 1
III. SAMPLING RESULTS ........................................................................................................
A. Air...............................................................................:...............................................
1. Tape Samples........................................................................................... 2. Personal Monitors..............................................................................
2 3
B. Noise..............................................................................................................................
1. Sound Level Meter............................................................................... 7 2. Noise Dosimeter.................................................................................... 8
IV. COMMENTS ................................................................................................................................
A. Sulfide Unloading and Storage............................................................10 B. Yard....................................................................................................................................11 C. Lurgi Roaster...........................................................................................................12 D. Sulfide-Oxide Leach and Purification ............................... 12 E. Sulfide Cell...........................................................................................................12 F. Sulfide Casting.....................................................................................................12 G. Oxide Storage...........................................................................................................13 H. Oxide Cell.................................................................................................................13 I. Asbestos.......................................................................................................................13 J. Respiratory Protection ........................................................................ 13 K. Biological Monitoring...................................................................................15 L. Confined Space Entry .............................................................................. 15 M. Hearing Conservation .............................................................................. 15
V. RECOMMENDATIONS...................................................................................................................16
ANZ 0004253
TABLE OF CONTENTS (continued) Page
VI. GRAPHS...........................................................................................................................................17 VII. PHOTOGRAPHS.........................................................................................................................18 VIII. ASARCO CadmiumHygiene Program......................................................................20
IX. ASARCO LeadHygieneProgram ........................................................................... 25
ANZ 0004-254-
ENVIRONMENTAL SURVEY CORPUS CHRISTI
October 11-13, 1977
EXECUTIVE SUMMARY
Personal monitor samples in the Sulfide Unloading and Storage Departments indicated potentially excessive cadmium dust exposures during DeCad dust unloading. Personal monitor samples for a sulfide unloading laborer, the sulfide front end loader operator, the sweeper operator in the Yard Depart ment, and leadman in the Oxide Storage Department exceeded the OSHA lead standard. Excessive noise exposures were measured for personnel unloading DeCad dust and the boiler tender in the Lurgi Roaster Department. All other areas of the plant were in compliance with the appropriate OSHA standards. Recommendations include: use of NIOSH/MESA-approved respir ators for personnel with potentially excessive lead and cadmium exposures; implementation of the Asarco Cadmium and Lead Hygiene Programs for exposed personnel; implementation of a written respirator program; use of personal hearing protection by personnel with excessive noise exposures and installation of engineering controls, where feasible; and implementation of a confined space entry procedure.
ANZ 0004-255
-1-
ENVIRONMZNTAL SURVEY CORPUS CHRISTI
October 11-13, 1977
I. OPERATING CONDITIONS Operating conditions were normal.
II. SAMPLING AND ANALYTICAL PROCEDURES A. Air: 1. One-hour sequential samples of airborne fugitive emissions were collected with R.A.C. Model G-2 tape samplers. The samples were analyzed for zinc, cadmium and lead by atomic absorption spectrophotometry. 2. Individual dust, fume, and mist samples were collected with M.S.A. personal monitoring devices equipped with closed-face (plastic cover in place and inlet plug removed) Gelman filter (0.8-micron pore size) cassettes. The personal monitor samples were analyzed for zinc, cadmium and lead by atomic absorption spec trophotometry. The arsenic content was determined using a modified Gutzeit method with quantitation by silver diethyldithiocarbamate procedure. Sulfuric acid mist samples were analyzed by the standard volumetric procedure as recommended by NIOSH. B. Noise: 1. Noise measurements were taken with a B&K Model 2205 Sound Level Meter using the "A" scale and "slow" response setting. The meter was calibrated with a type 4320 standard noise calibration source before and after each set of measurements. 2. Individual noise exposure data were collected using DuPont Permissible Audio Dosimeters, Model D-100, which measure noise exposures in terms of the present
ANZ 0004256
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B. Noise: (continued)
90 dBA OSHA standard. A DuPont Audio Dosimeter Readout Model R150 was utilized to decode each dos imeter memory cell and produce a reading as a percentage of the current 90 dBA standard. A DuPont Audio Dosimeter Calibrator was used to establish that the calibration on each dosimeter was within the acceptable range of +2 dBA.
III. RESULTS
A. Air:
1. Tape Samplers
Depart ment
Location
Sulfide Unloading & Storage
Tripper Floor Belt Junction
Column Be tween C & D Bins
1977 Date & Starting Time
Anal ysis
Cone 1n.(mg/m^) Mean Max. Min.
No. of Hourly Samples
Percent Exceeding OSHa Limit
10/11 11:15a.
Zn Cd Pb
.91 <.04 <.04
4.55 .04 .20 <001 .16 .01
28 28 28
0 0 0
Graph No.
-- --
(Day Shift Only - DeCad Dust Unloading)
10/12
6:15a.
Cd
.10 .20 .004
9
0
1
10/12 3:20p
Zn Cd Pb
.27 <.005
.03
1.23 .02 .02 <.001 .11 .01
21 21 21
0 0 0
-- -- --
AN2 0004257
NAME DEPARTMENT 3.3, NUMBER
PERSONAL. MONITOR SAMPLES CORPUS CHS I ST I
-3-
03 TITLE RES?. USE)
1377 SAMPLING
DATE & TIME
ANAL- CONC'S
SHIFT (MIN. )
Y 3 IS < n g / s 3 >
SUlF . U N l D . GARCIA 44344275 1
CROSS 46421 It 11
CROSS 464211111
GARZA 451744931
GARZA 451744931
MUNOZ 455321437
LANDIS 462240147
SHOVEL OPER. NO
10/11 D
257
Z.n Cd Pb
LABORER SO
10/11 D
26 0
2n Cd Pb
LABORER YES
10/12 0
420
Zn Cd Pb
LABORER NO
LABORER SO
10/11 D
263
10/12 D
477
Zn Cd Pb
Zn Cd Pb
LABORER SO
10/12 D
421
Zn Cd Pb
LABORER SO
10/12 D
475
Zn Cd Pb
1.06 . 04 . 05
5.23 . 17 . 34
9.03 .39 ( . 15 (
1.68 . 02 . 06
1.03 . 05 02
1.77 . 09 . 03
1.14 . 05 . 03
ANZ 0004258
HA TIE - E3 R T J1 E N T 3.3. M J fl 3 E R
PERSONAL MONITOR SAMPLES
CORPUS C H S I 3 T I
JOB TITLE IRES?. USE)
19 7 7 S AM PL I J(G
DATE cc TIME
ANAL- COHO'M
3 H I r T emu. > Y S 13 !m/s3
SULF.UNLD. 3.ARRIENTES 453133310
YARD
LIRA 453056353
LIRA 453056353
YBARRA 449106079
LOR. ROAST TREVINO 457537392
LU A . R0 A 3 T. 3 R 0 W H 463745946
ALVAREZ 449721164
rSMT . END LDR YES
10/ 13 D
235
BELTWATCHER YES
10/11 D
242
BELTWATCHER YE3
10/12 D
410
SWEEPER OPER YES
10/12 330
2n Cd Pb
In Cd
Pb
In Cd
Pb
Zri Cd
Pb
BELTWATCHER YES
10/11 D
213
Zn Cd
Pd
BOILER TEND. H0
10/13
D
315
Cd Pb
GRADE 0 ? HO
1 0/ 13 D
237
In Cd Pi
5.13 . 09 .37 (
. 99 . 04 . 04
1.92 .03
.05
5.16 . 13 .73 ;
. 53
. i
. 03
.01 . 07
cr J
01 03
ANZ 0004.259
PERSONAL MONITOR SAMPLES CORPUS CHRIST!
NAME DEPARTMENT S.S. NUMBER
JOS TITLE (RESP. USE)
1977 SAMPLING
DATE & TIME
ANAL- CONC'N
SHIFT (MIN.) YSIS <ng/n3
SULF.LEACH FLORES 455189909
PEREZ 465249731
SULF.PURIF REYNA 454907295
CASTANEDA 454683001
SULF .CELL BENAVIDES 464141475
MARTINEZ 455127651
DALRYMPLE 458603477
CD HELPER NO
10/13 D
290
Cd
.01
CD LEADMAN HO
10/13 D
290
.01
2ND GRADE HO
10/12 D
328
.00 1
LEADMAN NO
10/12 D
323
As
. 00 1
CELL INSPECTOR 10/12 NO D
302
H2S04
.24
CELL INSPECTOR 10/12 NO D
305
As
< .001
DROSS MILL OP. 10/13
YES
D
373
Zn Cd Pb
.72 < .01 < .01
ANZ 0004260
PERSONAL MONITOR SAMPLES CORPUS C H R I S TI
-6-
NAME DEPARTMENT S.S. NJM3SR
JOS TITLE CRESP. USE)
197? SAMPLING
DATE i TIME
ANAL- CONC'N.
SHIFT (.MIN. )
TSIS (ng/n: >
OX.STORAGE MARTINEZ 452463416
CAVADA 464 144645
OX.LEACH
NUNEZ 459467253
OX.? UR IE.
ALEMAN 466527913
OXIDE CELL PINEDA 449731597
UN I TE 449665773
HENRV 45796673?
3ARRERRA 449732088
LOADER OPER. NO
10X12 D
31 7
Zn Po
1.12 .14 (
LEADMAN NO
10X12 D
312
Zn Pb
2.24 .29 <
LEACH LEADMAN HO
10X13 r>
30 0
2ND GRADE OP. NO
10X13 D
2o0
A3 As
.006 ( .008 (
3RD GRADE OPER 10X13 NO D
222
STR IPPER NO
10X13 D
225
Zn As
. 56 < .0 02
CELL INSPECTOR 10/13 NO D
235
CELL INSPECTOR 10/13 NO D
233
As < .007
H2S04
. 88
ANZ 0004261
Footnotes:
(1) Exceeds the current OSHA 8-hour time-weighted
average (TWA) standard.
(2) Exceeds the proposed OSHA TWA standard.
(3) Shift Notation: D Day
CURRENT STANDARDS':
Zn ZnO Cd Cd Pb As
(fume) (dust) (fume)
= 15 mg/m3 (nu = 5 mg/m^
= 0.2 mg/m3 = 0.1 mg/rn^ = 0.2 mg/m^ = 0.5 mg/nP
PROPOSED STANDARDS:
Pb As
= 0.1 mg/m3 = 0.004 mg/m^
dus
B. Noise: 1. Sound Level Meter Readings
Department
Location
Noise Level (dBA)
Sulfide Unload ing
General Area Around Car During DeCad Un loading (vibrator)
107
Tripper Belt Floor (vibrator noise)
88
OSHA Permissibl Noise Exposure Duration per Da
(Hrs./Hin.)
0/46
8+
Lurgi Roaster
Slinger Deck (slinger operating)
92-95
6/4-4/0
Sulfide Leach
Leach Tank & Burk Filter Area
82-83
By #1 Purification Tank (fan noise)
90
By #5 Purification Tank 85
8+ 8/0 8+
ANZ 0004262
1. Sound Level Meter Readings (continued)
Department Sulfide Cast Oxide Storage
Sulfide Leach
Zinc Dust Unit
Location
Noise Level (dBA)
Ingot Mold Line
87
By Oxide Grinding Mill
91-94
By Feed Bin for Oxide Grinding Mill
83
Oxide Leach Tanks
85-88
Oxide Purification Tanks
84
Three feet from Dust Chamber
98
Foot of Stairs to Operator's Platform
93
Dust Unit Operator Platform
88
-8-
OSKA Permissible Noise Exposure
Duration per Day (Hrs./Min.) 8+ 6/58-4/36 8+
8-t
8+
2/50
5/17
8+
2. Noise Dosimeter Measurements
Depart ment
Employee S.S.No.
Job (Hearing Protec tion Worn?)
1977 Date & Shift<6)
Samp ling Time (Min.)
Dosimeter Readout (Percent)
Sulfide
Cross
Laborer
Unloading 464-21-1111 No
10/12 D
402
285
Garza
Laborer
451-74-4981 No
10/12 D
417
150
Sulfide Storage
Barrientes 453-18-3910
Front-end Loader Oper.
Yes
10/13 D
285
29
Lurgi Roaster
Brown 463-74-5946
Boiler Tender
No
10/13 D
315
125
Alvarez 449-72-1164
2nd Grade Operator
No
10/13
297
55
Adjusted to 8
Hours (Percent)
340 (4)
173 (4)
49
190 (4)
89
115 d! Exceec ed
Yes
Yes
No
Yes
No
ANZ 0004263
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2. Noise Dosimeter Measurements (continued)
Depart Employee
ment
S.S.No.
Job (Hearing Protec tion Worn?)
1977
Date Shift(6)
Samp ling Time (Min.)
Dosimeter Readout (Percent)
Adjusted to 8
Hours (Percent)^
115 dBA Exceed ed ^)
Sulfide Lerma
Caster
Cast
463-82-6801 No
10/13 D
345
0
0 Yes
Ramirez 454-76-1007
Caster Helper
No
10/13 D
347
96
133*
No
Sulfide Cell
Dalrymple 458-60-3477
Dross Mill Operator
No
10/13 D
373
36
46 No
Nash 466-38-0027
Zinc Dust Unit Oper.
No
10/13 D
208
44
51**
Yes
Oxide Storage
Martinez 452-46-8416
Loader Operator
No
10/12 D
318
16
24 No
Yard
Cavada
Leadman
464-14-4645 No
Ybarra 449-10-6079
Sweeper Operator
No
10/12 D
10/12 D
313 330
24 62
37 903(5*)
Yes No
Footnotes:
* This noise exposure is suspect because the sound level meter reading in this area was 87 dBA.
** The dosimeter readout was extrapolated to four hours instead of eight because an employee only works at the zinc dust unit for four hours and is then transferred to the cell house.
(1) Readout based on elapsed sampling time.
(2) The 8-hour adjusted readout is an extrapolation of the original dosimeter reading. This extrapolation assumes that the employee will be exposed to the same noise level during the remainder of the shift when the dosimeter is not worn.
(3) The OSHA noise standard does not allow employees to be exposed to sound levels greater than 115 dBA. However, experience to date shows that most dosimeter measurements greater than 115 dBA are the result of employee mischief, i.e. shouting into the microphone of the dosimeter. Therefore, these data must be interpreted cautiously.
ANZ 0004264
-10-
Footnotes (continued)
(4) Dosimeter readouts greater than 100% indicate a violation of the OSHA noise standard. However, the accuracy of the dosimeters (as specified by A.N.S.I. Si.4 - 1971) is i 2 dBA which translates to an upper confidence limit of 133%. Therefore, only readings greater than 133% are a positive violation of the OSHA noise standard.
(5) Readings from 75% - 133% fall within the dosimeter calibration limits and may be violations of the OSHA standard.
(6) Shift Notation: D = Day
IV. COMMENTS
A. Sulfide Unloading and Storage:
Results of the tape samples obtained in the tripper floor and bin areas were all within OHSA limits for zinc, cadmium, and lead. Because sulfide unloading only occurs during day shift, a separate calculation of the tape sample results was performed for cadmium concentrations, during Columbus DeCad dust unloading on October 12, 1977. These results, which are presented graphically on Graph No. 1, show significant cadmium concentrations for the tripper floor area although they are within present OSHA standards.
One of the three personal monitor samples on the sulfide unloading crew exceeded the OSHA limit for lead on October 11, 1977. Material unloaded by this crew consisted of 3.5 hours of sulfide concentrate and one hour of Columbus DeCad dust.
One of the four personal monitor samples on the sulfide
unloading crew exceeded the OSHA limit for cadmium on
October 12, 1977. Material unloaded by this crew consisted
of 5.5 hours of DeCad dust and two hours of sulfide con
centrate. The excessive lead and cadmium samples which
were taken on two different days, were both from the same
employee (Cross). It is understood that Cross had worked
for Asarco only a few days at the time of this survey and
possibly his lack of experience in advoiding the dust had
some bearing on his exposure.
The cadmium content of
the concentrate is about 0.5% and the DeCad dust varies
from 3.8 to 5% cadmium.
NIOSH has published a criteria document for cadmium which recommends lowering the cadmium dust and fume limit to 0.04 mg/m^. Five of the seven personal monitor samples
for the unloading craw exceed this recommended limit.
ANZ 0004265
-11-
No respirators were worn by the unloading crew during sulfide concentrate unloading and only about half the crew used NI03H/MESA approved respirators during unload ing of DeCad dust. The use of a non-approved bandana during DeCad unloading is shown in Section VII, Photographs.
The number of cars of DeCad dust to be unloaded varies from month to month with six cars being the highest number to date during 1977. Six cars would take approximately three days to unload.
The personal monitor sample for the front end loader operator (Barrientes) exceeded the OSHA limit for lead. During this sample, concentrate was being pulled from bins E, P, K, R, and S. Barrientes was wearing a 3-M 8710 dust respirator. A sample for this same job was obtained during the June 1976 survey and the lead exposure was very low; however, the operator only worked for a few hours in sulfide concentrate storage,then left to work around the waste heat boiler. Also, the lead content of the dust varies from 1.1 to 3.7% for sulfide concentrate and 0.15% for deCad dust.
Audio dosimeter measurements on members of the unloading crew during DeCad dust unloading showed noise exposures considerably in excess of OSHA limits. The noise source was a vibrator placed on the car hopper. Personal hearing protection was not generally being used by members of the unloading crew. Because DeCad dust unloading occurs a few days a month at the most, personal hearing protection is the noise control method of choice. Its use must be strictly enforced.
B. Yard:
Results of the two personal monitor samples for the belt watcher (Lira) were within applicable OSHA limits; however, the cadmium concentration on October 12, 1977, during DeCad dust unloading was above the NIOSH recommended limit of 0.04 mg/m-3. The personal monitor result during DeCad dust unloading is substantiated by the day shift tape sample results shown in Graph No. 1. Lira wore a 3-M 8710 dust respirator.
The personal monitor sample for the sweeper operator (ybarra) exceeded the OSHA limit for lead and approached the OSHA limit for cadmium dust of 0.2 mg/m^. The operator wore a 3-M 8710 dust respirator. The audio dosimeter measurement of 90% for Ybarra is in the potential noise violation range for audio dosimeters and correlates well with the June 1976 survey measurement of 117%. It is recommended that the sweeper exhaust ventilation system and filters be thoroughly checked and maintained for optimum performance and that a quieter muffler be installed. In the interim, proper respiratory and hearing protection must be worn.
ANZ 0004266
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C. Lurgi Roaster:
All personal monitor samples were within applicable OSHA limits.
The audio dosimeter measurement for the boiler tender (Brown)
showed a positive violation of the OSHA noise standard. The
excessive noise exposure is primarily caused by use of an
air lance for blowing dust off the boiler coils. No hearing
protection was worn by Brown. The feasibility of using lower
pressure air should be investigated with personal hearing
protection used as interim control.
The audio dosimeter
measurement of 89% for the second grade operator (Alvarez)
is in the potential noise violation range. The noise source
for this exposure is unknown; however, a potential source
would be the roaster slinger which generates sound pressure
levels of 92-95 dBA.
D. Sulfide-Oxide Leach and Purification:
Arsenic trioxide is added to process tanks in the Oxide Leach and Purification Departments and the Sulfide Purification Department. A picture of the point of addition in the Sulfide Purification Department is shown in Section VII, Photographs. This picture shows AS2O3 spillage around the point of addition.
Personal monitor samples for arsenic in these departments showed levels well below the current OSHA standard. The samples on the oxide side were above the proposed OSHA limit of 0.004 mg/m^, however. It is recommended that all employees using As203 be instructed as to the importance of handling this material to avoid dust generation and spillage.
E. Sulfide Cell:
All personal monitor samples were within applicable OSHA limits.
The audio dosimeter measurement for the zinc dust unit operator (Nash) showed his noise exposure to be within the OSHA noise standard because of the utilization of administrative control which limits his exposure time at the dust unit to four hours per shift.
F. Sulfide Casting:
The audio dosimeter measurement for the caster helper (Ramirez) during casting of ingots showed a noise exposure of 133% which is a positive violation of the OSHA noise standard; however, the noise measurement for the caster (Lerma) showed no noise exposure in excess of 90 dBA. Also, sound level meter measure ments for this area were below 90 dBA. Therefore, the dosimeter result for Ramirez is suspect.
ANZ 0004267
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G. Oxide Storage:
The personal monitor sample for the leadman (Cavada) exceeds the OSHA limit for lead and the sample for the loader operator (Martinez) exceeds the proposed OSHA limit for lead. Neither employee sampled wore respiratory pro tection. The lead content of the oxide dust is about 3(4%.
The source of excessive lead exposure for the leadman is unknown because it is understood that this employee spends the majority of his time in the control room.
H. Oxide Cell:
Because of an employee complaint about excessive smoke from furnace charging ports, a personal monitor sample was obtained from the third grade operator (Pineda). The sample result for zinc of 0.56 mg/m^ was well below the OSHA limit of 5 mg/m^ for zinc oxide fume. A photograph of an Ajax furnace charge port showing the visible emissions is shown in Section VII, Photographs.
I. Asbestos:
All employees who may have any potentially measurable expo sure to asbestos fibers receive the OSHA required medical examinations at the plant.
Three uses of asbestos at the plant are relining of furnace launders, cutting of asbestos cloth for gaskets, and the use of asbestos rope on the "cold guns" at the Lurgi Roaster precipitator. The asbestos rope is used to fill in the hole where the "cold gun" rod extends through the precipitator roof and also as gasket material for access covers. Calcium silicate is used to cement the rope in place.
OSHA obtained personal monitor samples during use of asbestos rope at the precipitator, but the plant has not received any sampling results to date. Because the asbestos rope use had been recently completed at the precipitator, D.O.E.S. personnel were unable to obtain air samples at this operation.
J. Respiratory Protection:
Respiratory protection, in general, and respirator programs, specifically, were discussed with plant personnel. A copy of the El Paso written respirator program was presented to and discussed with plant personnel at the time of the survey. It is recommended that a written respirator program similar to the El Paso program be developed for the Corpus Christi Plant because the El Paso program is brief, yet it covers all the OSHA requirements. Because "disposable" type respir ators will probably be used exclusively at Corpus Christi and only a few personnel need to wear respirators, the required written program and training should be relatively simple to implement.
ANZ 0004268
The OSHA compliance officer's guide for evaluating respirator programs accepts adherence to the respirator manufacturer's instructions in the place of fit testing. Because the dis posable type respirators are not amenable to positive or negative pressure tests and the irritant smoke test is probably not justified for the type of exposure noted during this survey, it is recommended that the manufacturer's instructions be incorporated in the training sessions.
Respirators currently in stock at Corpus Christi are:
Respirator
NIOSH/MESA Approved for:
MSA Custom Comfo II with Type S Filter
Toxic Dust, Fume
MSA Custom Comfo II with GMA Cartridge
Organic Vapors
AO R2090N
Toxic Dust
MSA Dustfoe 66
Toxic Dust
3-M 8710
Pneumoconiosis Producing Dust
The 3-M 8710 respirator is currently used for all dust expo sures although it is only approved by NIOSH/MESA for pneumo coniosis producing dusts such as asbestos, silica and coal dust. It is recommended that the 3-M 9900 or 3-M 9910 toxic dust respirators be used in place of the 3-M 8710 because they meet both the toxic and pneumoconiosis producing dust approvals. The 3-M Company also has an approved disposable organic vapor respirator with particulate pre-filter available which could be used by painters.
Del-Monox air purifiers (see Section VII, Photographs) are used at air supplied respirator outlets to protect the respirator user against carbon monoxide. These units convert carbon monoxide that may be present in the air supply to carbon dioxide. The plant air compressor is equipped with a high temperature control; however, carbon monoxide alarms or frequent testing for carbon monoxide is not performed as required by the respirator standard 1910.134(d) (2) (ii). It is this writer's opinion that the Del-Monox units are better than carbon monoxide alarms or frequent testing; however, in order to present possible citations, a request will be made to the OSHA national office for an opinion on the suitability of the Del-Monox purifiers. The use of appropriate and NIOSH/MESA-approved respirators should be mandatory for the crew unloading DeCad dust, the sulfide storage loader operator, and the sweeper operator. Respirator use is recommended for
the oxide storage loader operator and the leadman, and for both belt watchers in sulfide storage.
ANZ 0004269
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K. Biological Monitoring:
Because of potentially excessive cadmium exposures, it is recommended that the Asarco Cadmium Hygiene Program be initiated for the unloading crew, loader operator, yard and roaster belt watchers in sulfide storage, and the sweeper operator.
The Asarco Lead Hygiene Program should be initiated for the loader operator and leadnan in oxide storage, sulfide storage loader operator, and the sweeper operator.
Contact Dr. R. D. Putnam at D.O.E.S. for instructions concerning program implementation.
L. Confined-Space Entry:
Leach and purification tanks must be entered periodically for maintenance. Because of the potential hazards associated with confined-space entry, it is recommended that the plant develop a confined-space entry procedure.
OSHA does not have confined-space entry standards for general industry; however, OSHA is in the process of promulgating standards for this procedure. A written procedure should require as a minimum the following steps:
1. Isolation of the vessel by positive blanking off of process lines.
2. Drainage and washing out of hazardous materials.
3. Introduction of forced air ventilation prior to and during entry of the vessel.
4. Evaluation (testing) of the atmosphere inside the vessel prior to entry.
5. Positioning of an outside observer immediately adjacent to the vessel at all times.
M. Hearing Conservation:
All plant personnel currently receive a pre-employment and annual audiometric examination.
Because of potentially excessive noise exposures, the wearing of personal hearing protection must be strictly enforced for the sulfide unloading crew during DeCad unloading, the sweeper operator and the Lurgi Roaster boiler tender.
The feasibility of installing a quieter muffler on the sweeper and using lower pressure air in the air lance used for the boiler tender's duties should be investigated.
ANZ 0004270
-16
V. RECOMMENDATIONS
The use of NIOSH/MESA-approved respirators should be mandatory for personnel unloading DeCad dust, the sulfide storage loader operator, and the sweeper operator. Respirator use is recommended for the oxide storage loader operator and leadman, and both beltwatchers in sulfide storage.
B. The Asarco Lead and Cadmium Hygiene Programs should be implemented as discussed in Section IV.K.
C. A written respirator program which includes training should be implemented as discussed in Section IV.J.
D. The use of personal hearing protection should be mandatory for personnel unloading DeCad dust, the Lurgi Roaster boiler tender,and the sweeper operator.
E. A quieter muffler should be installed on the sweeper and lower pressure air should be used for the boiler tender's lance, if feasible.
F. A written confined-space entry procedure should be developed and used for the Leach and Purification Departments.
SGC/mcs Attachments
S1 Environmental Scientist
ANZ 0004271
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VII. PHOTOGRAPHS
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Sulfide Unloading Department Wearing non-approved bandana during DeCad dust unloading.
Sulfide Purification Department AS2O3 spillage at purification tank.
ANZ 0004273
VII. PHOTOGRAPHS
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Oxide Cell Department
Zinc oxide fume escaping from Ajax Furnace charge port.
ANZ 0004274
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ASARCO CADMIUM HYGIENE PROGRAM
Dust and fume control by exhaust ventilation and other means is the best way of preventing employees from inhaling amounts of cadmium which could in time accumulate in the body and cause illness. When control of air contaminants is not feasible, approved respirators, properly fitted and worn, will effectively prevent inhalation of contaminants. Ordinarily, respirators are required only a part of the time on ASARCO Jobs.
As a further safeguard against the excessive intake and accumula tion of cadmium, either by inhalation or by ingestion through careless ness in personal hygiene, measurements of cadmium in urine can be done. The toxicological effects of cadmium are not completely understood. Injury to the kidney and lungs has been reported, however, and there fore tests for cadmium in the blood, protein in the urine, and spirometric measurement of pulmonary function are also recommended.
Biological monitoring is the general term applied to periodic measurements of metals and other substances in body fluids. A program of biological monitoring for lead has been carried on by ASARCO for 30 years. It has been a generally successful program and has revealed much that was not known about absorption and excretion of lead. A similar program has been in operation for cadmium, but because much less is known about cadmium than lead, many diagnostic tests are being used to provide the maximum health protection and to gather more infor mation. This program, along with allied policies on respirator-wearing
\
indoctrination, and actions to be taken on discovery of excessive absorption, is given on the following pages..
ANZ 0004275
New Employee Indoctrination 1. The simple facts of cadmium dust or fume intake into the body by inhalation and/or ingestion shall be explained carefully to each new employee before he is assigned to work involving possible exposure to cadmium.
2. The care, use and effectiveness of dust and/or fume respira tors shall be explained.
3. The manner by which the fit of the respirator face-piece may be tested for air leakage shall be explained and the employee shall be asked to demonstrate the method to be sure he under stands it.
4. His supervisor must explain to the new employee as specifi cally as practicable when and why his respirator must be worn in the course of his duties.
Biological Monitoring Program 1. Blood samples and urine samples (taken on the same day) for cadmium determination shall be collected and sent to the Department of Environmental Sciences (D.O.E.S.) once per year from all hourly employees and all supervisor employees whose duties are carried on in whole or in part in areas of poten tial cadmium exposure. The annual samples should normally be collected at the time of an employee's annual physical examination (if annual examinations are given). All urine
ANZ 0004276
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samples will be tested for total urinary protein by turbidity with trichloroacetic acid. Hemoglobin will be measured in all blood tests.
2. Blood samples and urine samples (same day) for cadmium deter minations and protein excretion shall be collected at least every three months from all employees, including supervisors, working in areas or on tasks known to involve exposure to air borne, cadmium-bearing dust and/or fume. It is also recom mended that spirometric tests be given every two years. This should be done at least 10 days after the last respiratory tract infection and one hour after last smoking.
3. Blood and urine samples for determination of cadmium and urine samples for the measurement of specific and/or total protein excretion -shall be collected at the time of the pre-employment physical examination and 30 days after beginning work. There after, sampling shall be done according to the exposure classi fication of the employee. Pre-employment blood tests for a deficiency in serum alpha-antitrypsin may be useful in detecting individuals who are likely to develop emphysema with or without smoking cigarettes excessively or being occupationally exposed to airborne lung irritants.
4. Urine samples having a cadmium concentration above 50 micrograms showing the presence of light chains or having total protein values over 150 mg/L shall be followed up by repeat samples, collected as soon as possible after the results are received, to assure the validity of the original results.. Repeat samples
ANZ 0004277
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not received by the D.O.E.S. laboratory within three weeks after they were requested will be routinely brought to the attention of the plant manager.
Action to be Taken on Excessive Absorption Levels
1. Confirmed urine cadmium levels between 50 and 100 micrograms per liter, i.e., two (2) consecutive samples:
a. This must be followed as soon as possible by an investi gation of an employee's work habits to discover the pos sible sources of exposure.
b. The department head and plant superintendent must be informed of the indicated excessive absorption so that corrective action may be taken.
c. The employee and/or his supervisor must be informed of the indicated excessive absorption so that their observa tions can be used in formulating corrective actions that can be simply taken.
d. If it is determined by the management that no corrective action is feasible or that the corrective action taken is not adequate, as indicated by a failure of urine cadmium levels to be reduced to 30 micrograms per liter or less in a sample taken 30 days later, the employee shall be trans ferred to a job of known lesser effective exposure and shall not resume his original job until his urine cadmium level is 30 micrograms per liter or less.
ANZ 0004278
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2. Confirmed urine cadmium levels over 100 micrograms per liter: a. This is grounds for removing the employee from effective exposure to cadmium-bearing dust and/or fume, until the employee's urine cadmium drops to 30 micrograms per liter or less.
b. Follow steps "a" through "c" under number 1., above, in order to determine and correct the circumstances that lead to excess exposure.
3. Confirmed presence of light chains or excess protein excretion, i.e., urinary total protein values over 150 mg/L in two con secutive samples: a. The employee should be examined by the plant physician as soon as possible.
b. Medical evaluation may dictate a reduction or termination of exposure to cadmium-bearing dust and/or fume.
c. If medical opinion indicates that cadmium exposure is sus pect, follow steps "a" through "c" under number 1., above, to determine and correct the circumstances that lead to excess exposure.
4. Hemoglobin levels of 12.5 grams percent or less must be followe by a medical exmination promptly, regardless of the level of cadmium absorption indicated by a blood sample.
February 18, 1975
K. W. Nelson Vice President Environmental Affairs
ANZ 0004279
November 1, 1971
ASARCO LEAD HYGIENE P ROC-RAM
Dust and fume control by exhaust ventilation and other means is the best way of preventing employees from inhaling amounts of lead which could in time accumulate in the body and cause illness. When control of air contaminants is not feasible. Bureau of Minesapproved respirators, properly fitted and worn, will effectively prevent inhalation of contaminants. Ordinarily, respirators are required only a part of the time on ASARCO jobs.
As a further safeguard against the excessive intake and accumu lation of lead, either by inhalation or by ingestion through care lessness in personal hygiene, measurements of lead in blood and urine can be done. Such measurements will show, well in advance of any possible illness, when lead intake is rising and approaching levels of potential health effects. Biological monitoring is the general term applied to body fluid measurements.
A program of biological monitoring has been carried on by ASARCO for 25 years. It has been a generally successful program and has revealed much that was not known about absorption and excre tion of lead, but it must be revised now in some details in order to conform more closely to anticipated legal requirements. The revised program, along with allied policies on respirator-wearing indoctrination, and actions to be taken on discovery of excessive absorption, is given on the following pages.
ANZ 0004280
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?;ev; Employee indoctrination
1. The simple facts of lead dust or fume intake into the body by inhalation and/or ingestion shall be explained carefully to each new employee before he is assigned to work involving possible lead exposure.
2. The care, use and effectiveness of dust and/or fume
respirators shall be explained.
3. The manner by which the fit of the respirator face-piece may be tested for air leakage shall be explained and the employee shall be asked to demonstrate the method to be sure he understands it.
4. His supervisor must explain to the new employee as specifically as practicable when and why his respirator must be worn in the course of his duties.
Biological Monitoring program 1. Blood samples and urine samples (same day) for lead determinations shall be collected and sent to the Depart ment of Environmental Sciences once per year from all hourly employees and from all supervisory employees whose duties are carried on in whole or in part outside the main office. The annual samples should normally be collected at the time of an employee's annual physical examination. Hemoglobin in addition to lead will be measured in all blood samples.
ANZ 0004281
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2. Blood samples ano urine samples (same day) for lead determinations shall be collected at least every three months from all employees, including supervisors, working in areas or on tasks known to involve exposures to airborne, lead-bearing dust and/or fume. An employee may be removed from the quarterly sampling list only after it has been shown, by three consecutive quarterly blood and urine samples that his lead absorption is consistently minimal, i.e., blood lead levels are below 50 micrograms per 100 grams of whole blood and urinary lead levels are be lev; 120 micrcgrams per liter.
3. Blood and urine samples for lead determinations shall be collected at the time of the pre-employment physical examination and 30 days after beginning work. Thereafter, quarterly sampling shall be done until it is shown the employee can be placed on the annual sampling list.
4. Blood samples found to have a lead concentration above 80 micrograms per 100 grams and urine samples having a lead concentration above 200 micrograms per liter shall be followed up by repeat samples, collected as soon as possible after the results are received, to assure the validity of the original results.
5. Special samples may be obtained and sent to the Environ mental Sciences Laboratory at any time there is doubt about the lead absorption status of an employee.
ANZ 0004282
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Action to be Taken on Excessive Absorption Levels
1. Confirmed blood lead levels above 80 or urine levels above 200 or a rising trend approaching those levels must be followed as soon as possible by an investiga tion of an employee's work and work habits to discover the possible sources of exposure.
2. The department head and plant superintendent must be informed of the indicated excessive absorption so that corrective action may be taken.
3. The employee and/or his supervisors must be informed of the indicated excessive absorption so that their obser vations can be used in formulating corrective actions that can be simply taken.
4. If it is determined by the management that no corrective action is feasible or that the corrective action taken is not adequate, as indicated by a failure of blood lead levels to be reduced in samples taken within 30 days, the employee shall be transferred to a job of known lesser effective exposure and shall not resume his ori ginal job until his blood lead level is reduced to 60 micrograms per 100 grams or less.
5- Hemoglobin levels of 12-5 grams percent or less must be
followed by a medical examination promptly, regardless
of the level of lead absorption indicated by a blood
sample.
v;. Nelson
ANZ 0004283