Document 153eNg1ELX4VV8oGo0oMXxQvE

DownloadRandom document
INTERNAL CORRESPONDENCE CHEMICALS AND PLASTICS TO NAME. Cz *73an y Mr. J. F. Erdmann Mr. W. A. Mazzolini Ms. A. P. Yalcinkaya p. O. BOX 471, TEXAS CITY, TEXAS '-590 date April 9, 1979 Mr. W. T. Gray Dr. D. H. Glenn Mr. R. L. Frantz Mr. J. B. Leverton Mr. F. S. Provenzano Mr. R. J. Taylor subject March 29, 1979 Vinyl Chloride Safety Association Meeting Mew Orleans, La,________ This meeting was called based on some safety related problems that member companies had reported with their "Final Control Devices". Attached are my notes on the meeting. ^ >Lj. P D. Smith PDS/st Attachments UCC 093504 NOTES VINYL CHLORIDE SAFETY ASSOCIATION MEETING MARCH 29, 1979 NEW ORLEANS, LA. 1. I. MORNING SESSION - FINAL CONTROL DEVICES Dave Loll - Diamond Shamrock Diamond Shamrock uses carbon adsorbtion, with an incinerator as a backup, for control of VCM emissions. The carbon beds are 4' OD x 18' high and contain 5,000 pounds of carbon. Breakthrough is monitored using three thermocouples to track the heat front generated by the heat of adsorbtion. The bed is regenerated to 300F with 150 psi steam. The bed is then dried with hot nitrogen to 340F. This step is required to prevent the significant activity loss experienced with wet carbon. The bed is cooled to less than 100F with cool nitrogen and is ready for re-use. Other problems they have encountered include: 1. Hot spots due to liquid carryover. One one occasion they suspect the bed actually caught fire. 2. Corrosion, especially of the bottom support grid in vertical units. 3. Carbon carryover as a result of (2). 4. Cross-contamination of the beds due to Operator error and valve leaks. Their solutions were: 1. Deluge the hot spots internally and eliminate feed cooling to eliminate liquid. 2. Provide nitrogen purge to assure positive flow at all times. This also helped rid the system of inerts. 3. Provide Hastelloy support grids. Capital costs for the Unit were estimated to be $2 MM. UCC 093505 NOTES VC1 Safety Assoc. Meeting 2. Marcus Smith - Georgia Pacific Georgia Pacific has horizontal carbon beds with the bed effluent going to a boiler. They report channeling problems in the horizontal bed. Breakthrough is monitored with an on-line gas chromatograph. They also regenerate with steam. Drying, however, is done with the bed under a vacuum with an external heater. A nitrogen purge precedes vacuum breaking and re-use. Dave Becker - Diamond Shamrock Diamond receives wet and dry streams from various plant units and incinerates them with the VCM streams following liquid knockout. Most of the equipment is protected with 15 psi carbon rupture discs and flame arrestors. It was pointed out that Conoco and Amoco research indicated that conventional flame arrestors (Shand and Jurs, Varac) have been found to pass flame when tested. The biggest problem to date has been flame arrestors in process lines. Dick Holiday - PPG PPG uses incineration for final control. The common vendor seems to be Trane. Dick reported that PPG asked EPA what they should do if their final control device failed. They have oeen told to shutdown within 40 minutes. No other company has such a limit of any of those attending. No fines or serious citations have been reported by anyone to date. A1 Godfried - Borden Borden spent $1 - $1.5 MM to install a Trane Subex Unit which has run well. W. C. Holbrook - B. F. Goodrich Goodrich has recently installed six solvent absorbers, five of which work well. Their emissions compare well with SVR's. They declined, however, to disclose what solvent they use. Control Device Breakdown Carbon Bed 6 plants Incinerators - 9 VCM plants 15 PVC plants Solvent Absorbtion 3 plants UCC 093506 NOTES VC1 Safety Assoc. Meeting 3. II. AFTERNOON SESSION Q & A - Bob Inlincci - Georgia Pacific Bob took an oral survey on several points. The responses of interest follow: 1. Everyone is reporting massive releases, but few, if any, companies report suspected exposures if the person was not being monitored at the time. 2. The 3M badges for monitoring VCM were reported to have OSHA approval. Both Conoco and Dow are using them with good acceptance. Cost is approximately $5 per badge. 3. Of the companies present at this meeting, we were the only ones allowing women in the Regulated Area. This poses a problem for the other companies based on one statement that half the OSHA inspectors are women. 4. It is becoming more common for government agencies to employ contractors to perform inspections. The vast majority of companies required the contractor to sign a secrecy agreement concerning their process before admitting him to the plant. 5. Items mentioned in EPA inspections -- a. Leak detection procedures. b. Frequency of emergency releases (only problem has been with a plant averaging one release per month). c. Residual VCM levels after stripping. d. Definition of "leak", e.g. 25 ppm - 3 feet from the source or 1,000 ppm in contact with the source. Experience at other companies suggests this is a good place to fight for a reasonable limit. 6. All but one or two companies had been inspected at least once since October 21, 1978. III. TRUE CONFESSIONS The only incident reported was the failure of a safety valve due to stress cracking of the spring. At the time the plant had no PM or RM program. They have gone to a lower tensile strength steel for the spring and will also evaluate coatings. !V. NEXT MEETING UCC 093507 The Annual Meeting will be held in San Francisco on Sept. 13-14, 1979. Georgia-Pacific Corporation p.o. Box 629 Plaquemine, Louisiana 70764 Telephone (504) 687-6321 June 6, 1979 MEMBERS OF THE VINYL CHLORIDE SAFETY ASSOCIATION The next Vinyl Chloride Safety Association meeting will be held at the Hyatt n Union Square Hotel in San Francisco on September 13 and 14, 1979. Arrival in San Francisco should be scheduled for September 12. In order to expedite programming, please indicate on the attached form topics which would be of principle interest to you or your company. It Is necessary that these areas be limited to about five topics. Also, since this list is not intended to cover the complete spectrum of vinyl chloride safety, note any other subject of interest in space provided on the questionnaire or by separate communication. Also, with regard to potential social programming, please indicate on the attached form whether your wife plans to accompany you on your visit to San Franicsco. Those who wish to actively participate by presenting a paper, or acting as a discussion leader should contact me as quickly as possible by return mail or by telephone. Our target date for completion of a preliminary agenda has been set for the third week of July. In order that we meet this date, and that this year's meeting continues to be of safety value to those who produce and use vinyl chloride, your cooperation and assistance is requested. Very truly yours. <Jim Gabbett Program Chairman JFG:ddg Attachments ETHYL CORPORATION Maxi:r.\cti;i?ixii Depahtjikst August 7, 1979 ^le*5 aooaess heply TO'.QOX 3 4 1 BATON ROUGE, LA 7WC21 MEMBERS OF THE VINYL CHLORIDE SAFETY ASSOCIATION Preparations for the fall meeting in San Francisco are essentially complete. Attached is a copy of the agenda reflecting the results of the recent poll of membership. Since all speakers have not been confirmed a final copy of the agenda will be available at the meeting registration desk. The meeting will be held September 13 and 14 at the Hyatt on Union Square, San Francisco. The hotel is holding a block of rooms for us for September 12 and 13. The rates range from $75 - $95 for a single and from $95 to $115 for a double. Reservations should be made by calling the hotel directly at 415 - 398-1234. Many wives are planning to accompany their husbands. There will be an interesting program planned for the ladies during the day Thursday. (Note: If your wife plans to attend please inform Oim Gabbett, Georgia Pacific, Plaquemine, La.). We will follow the usual format of registration and social hour between 8-9 a.m., Thursday, September 13. Registration fee will be $30 per person and will include the cost of lunch Thursday, A short business meeting will be held to decide, among other things, 1980 officers, location of the 1980 meeting and an up-to-date treasurers report. See you in San Francisco. Sincerely, tiles' H. G. Olson, Secretary, Vinyl Chloride Safety Association Attachment UCC 093509 VINYL CHLORIDE SAFETY ASSOCIATION MEETING AGENDA SEPTEMBER 13 & 14, 1979 HYATT ON UNION SQUARE, SAN FRANCISCO, CALIFORNIA 94108 September 13, 1979 Time A.M. 8:00 - 9:00 9:00 - 9:30 9:30 - 10:15 10:15 - 10:30 10:30 - 11:15 11:15 - 12:00 P.M. 12:00 - 1:00 1:00 - 1:45 1:45 - 2:30 2:30 - 3:00 3:00 - 3:15 3:15 - 4:00 4:00 - 4:30 4:30 - 5:00 5:00 Subject Registration 8c Coffee Social Hour Chairman's Welcome Official Business (CUT - Its contribution to business which handles toxic chemicals) Coffee Break Risk Analysis of Runaway Reaction Occurring in a Solvent Autoclave Training New Plant Forces for Safety Lunch Pros & Cons of Computer Control Relative to Safety Explosion in VCM Recovery Compressor Placing Explosive Charge on a Burning Tank Car Coffee Break Major VCM Excursions Sc How They are Handled Data Reporting on VCM Monitoring Equipment Solvent Absorption as a Final Control Device Adjourn Discussion Leader Art Gellner CertainTeed Dick Fleming Ex. Vice President Air Products D. C. Wobser Union Carbide Roy Henderson Diamond Shamrock c) B. Terwiesch Chemische Werke Hiil H. Waltemate B. F. Goodrich () W. Clark Dow Chemical G. Schaaf B. F. Goodrich Parenthesis indicate that the Subject or Discussion Leader have not been finalized at this time. UCC 093510 (2) September 14, 1979 Time 8:00 - 8:30 8:30 - 10:15 10:15 - 10:30 10:30 - 12:00 12:00 Sub.iect Chloride Stress Cracking (Update) An Update of Regulatory Agencies Activity & Their Effect on Our Industry. Including: New Regulations Present Reporting Required Present Reporting Results Other Agencies, etc. Coffee Break True Confessions Adjourn Meeting Discussion Leader J. Wallace Esso J. T. Barr Air Products & R. Laundrie General Tire J- UCC 093511 MEMBERS OF THE VINYL CHLORIDE SAFETY ASSOCIATION Attached are EPA survey forms which will provide useful informa tion at our San Francisco meeting. The data will be compiled by Jim Klupar of B. F. Goodrich. It is necessary that they be re ceived by August 31 at the address shown on the bottom of the form. Please note the company replying can remain anonymous by clipping off the top of the form before mailing. A blank form and a sample form are included. Your cooperation will be appreciated. JFG:ddg Attachments UCC 093512 VCM NESHAP SURVEY-VCM SAFETY ASSOCIATION - PERIOD 3/1/79 THRU 7/31/79 EPA REGIOnEHT. VINYL CHLORIDE PLANT 61,62 and 61.63 OXYCHLORINTION REACTOR INCINERATOR OTHER CONTROL (Describe) Total Hours of Plant Operation Hours Not in Compliance % Hours in Compliance Relief Valve Discharges No. of Releases Total Lbs. Released 2&A0______ 4o o .... ______________ II_ r zzzzm ____z_ 2.000 POLYVINYL CHLORIDE PLANT SUSPENSION DISPERSION BULK LATEX SOLUTION COPOLYMEP 1. Reactor Openings 61.64(a) Total No. of Openings No. in Compliance % in Compliance Measured or Calculated SQ 40 %0 MFfll>eE~P _____________ _____________ CfttcjJtATel? 50 44 2. Resin Stripping - 24 Hr. TWA RVCM 61.64(e) Total Days Operating Days in Compliance % in Compliance 153 / J QO __________ _____________ ______________ 100 47 47 J^Relief Valve Discharges of Reactor Discharges No. of Other Discharges Total Lbs. Released ______ I ______ I 300 _____________ _____________ _____________ I _ 50 Charcoal Liquid Incinerator Adsorber Absorber Furnace Other (Describe) 4. Monomer Recovery Discharge 61.64(d) Total Hours of Plant Operation Hours Control System Bypassed Emission Measurement Frequency Hours Non-Compliance % Hours in Compliance 36op 30 Mo'j v... 3Cs 33 5 Has your plant received a Notice of Violation or Enforcement Order 7 The period 3/1/79 thru 7/31/79 has 153 days (3,672 hours). PLEASE COMPLETE AND MAIL TO: J. A. Klupar BFGoodrich Chemical Company 6100 Oak Tree Boulevard leveland, Ohio 44131 EFORE August 31, 1979 For Further Explanation Please Call: - (216) 524-0200 ext. 7808 UCC 093513 COMPANY NAME PLANT LOCATION VCM NESHAP SURVEY-VCM SAFETY ASSOCIATION - PERIOD 3/1/79 THRU 7/31/79 EPA REGION^ * VINYL CHLORIDE PLANT 61.62 and 61.63 OXYCHLORINTION REACTOR INCINERATOR OTHER CONTROL (Describe) Total Hours of Plant Operation Hours Not in Compliance % Hours in Compliance Relief Valve Discharges No. of Releases Total Lbs. Released - POLYVINYL CHLORIDE PLANT SUSPENSION DISPERSION BULK LATEX SOLUTION COPOLYMER 1. Reactor Openings 61.64(a) Total No. of Openings No. in Compliance % in Compliance Measured or Calculated 2. Resin Stripping - 24 Hr. TWA RVCM 61.64(e) Total Days Operating Days in Compliance in Compliance 3. RRi elief Valve Discharges No. of Reactor Discharges No. of Other Discharges Total Lbs. Released Incinerator Charcoal Adsorber Liquid Absorber Furnace Other (Describe) ki Monomer Recovery Discharge 61.64(d) Total Hours of Plant Operation Hours Control System Bypassed Emission Measurement Frequency Hours Non-Compliance % Hours in Compliance ______________ ______________ '_________ ______________ ______________ __________ __________ __________ __________ __________ __________ __________ __________ __________ __________ ___ ___ ___ ___ ___ 5. Has your plant received a Notice of Violationor Enforcement Order The period 3/1/79 thru 7/31/79 has 153 days (3,672 hours). PLEASE COMPLETE AND MAIL TO: J. A. Klupar BFGoodrich Chemical Company 100 Oak Tree Boulevard leveland, Ohio 44131 BEFORE August 31, 1979 For Further Explanation Please Call: (216) 524-0200 ext. 7808 UCC 093514 OCCUPATIONAL SAFETY AND HEALTH 1910-Subpatt G STANDARDS AND INTERPRETATIONS PART 1910 OCCUPATIONAL SAFETY AND HEALTH STANDARDS SUBPART G--OCCUPATIONAL HEALTH AND ENVIRONMENTAL CONTROL 1910.93 19 io.9.`ia 1910.94 1910.95 1910.90 1910.97 1910.98 1910.99 1910.100 Aii- contaminants. Asbestos. Ventilation. Occupational noise exposure. Ionizing; radiation. Nonionizing; radiation. Additional delay in effective date. Sources of standards. Standards organizations. 111 1910-Subpart G UCC 093515 1910.93 STANDARDS AND INTERPRETATIONS OCCUPATIONAL SAFETY AND HEALTH SUBPART G--OCCUPATIONAL HEALTH AND ENVIRONMENTAL CONTROL 1910.93--AIR CONTAMINANTS An employin''* exposure to any material listed iii table G-l. (i--li. or G-3 of this section shall he limited in accordance with the requirements of the following paragraphs of this section. (a) Table G-l: (1) Materials with names preceded by "C"--ceiling values. An employee's exposure to any material in table G-l, the name of which is preceded by a "C" (e.g., C Boron tri fluoride), shall at no time exceed the ceiling value given for that material in the table. (2) Other materials--8-hour time weighted aver ages. An employee's exposure to any mate rial in table G-l, the name of which is not preceded by "C," in any 8-hour work shift is preceded by a "C" (e.g., C Boron trifluoride). shall at no time exceed the ceiling value given for that material in the table. Table G-l Substance p.p.m.* mg./M* Acetaldehvde.............................. 200 A cot if1 acta..................... ............. 10 Acetic anhydride......................... 5 Acetone........................................ 1,000 Aeetonitrlle.................................. 40 Acetylene dichloride, see 1, 2- IMchloroethylene....................... Acetylene tetrabromide............. 1 Acrolein........................................ 0.1 Acrylamide--Skin........................ Acrylonitrile--Skin..................... 20 Aldrln-Skln................................. Allyl nlcnhol--Skin..................... 2 Allyl chloride.............................. 1 *C Allyldycldyl ether (AGE). 10 Allyl propyi disulfide................. 2 2-Aminoethanol, see Ethanol- amine....... ............................... 2-Atnlnopyrldlne......................... 0,5 Ammonia................................ 80 Ammonium sulfamate (Am- mate).......... ....................................................... n-Amyl acetate............................ 100 sit-Amyl acetate......................... 125 Aniline--Skin.............................. 5 Anisldlne (o, p-lsomers)--Skln....................... 360 25 20 2,400 70 14 0.25 0.3 45 0.28 5 3 45 12 2 38 15 525 650 19 0.5 Antimony and compounds (as Sb)............................................................... 0.5 ANTU (alpha naphthyl thiourea)........................................................ 0.3 Arsenic and compounds (as As)..................... 0.5 Arsine........................................... 0.05 0.2 Aztnphoe-methyl--Skin......... 0.2 Barium (soluble compounds). 0.6 p-Benzoqulnone, see Qulnone Benzoyl peroxide............................................. 5 Benzyl chloride........................... 1 5 Biphenyl, see Diphenyl............................ ....................... Blsphenol A, see Diglycidyl ether.................................................................................. Boron oxide...................................................... 15 C Boron trifluoride..................... 1 3 Bromine....................................... 0.1 0.7 Bromoform--Skin....................... 0.6 5 Butadiene (1.3-butadiene)........ 1,000 2,200 Butanethiol, see Butyl mer captan 2-Butanone................................... 200 590 2-Butoxy ethanol (Butyl Cel- losolve)--Skin.......................... 50 240 Butyl acetate (n-butyl acetate). 150 710 sec-Butyl acetate......................... 200 950 tert-Butyl acetate........................ 200 950 Butyl alcohol............................... 100 300 sec-Butyl alcohol......................... 160 450 tert-Butyl alcohol....................... 100 300 C Butylamine--Skin................. 5 15 C tert-Butyl chromate (as CrO)--Skin................................ 0.1 n-Butyl glycldyl ether (BGE)- 80 270 Butyl mercaptan....................... 10 35 p-tert-Butyltoluene..................... 10 60 Calcium arsenate.......................... . 1 Calcium oxide............................... . 5 'Camphor................................ 2 Carbaryl (Sevin)................................... 5 Carbon black............................................. 3.5 Carbon dioxide............................ 6,000 9,000 Carbon monoxide. 60 55 Chlordane--Skin..................... 0.5 Chlorinated camphene--Skin. 0.6 Chlorinated diphenyl oxide__ 0.5 Chlorine. 3 Chlorine dioxide......................... 0.1 0.3 C Chlorine trifluoride................. 0.1 0.4 C Chloroacetaldehyde................ 1 3 a-Chloroacetophenone (phenacylchlorlde).................. 0.05 0.3 Chlorobenzene (monochloro- benzene)................................... 75 350 o-Chlorobenzylidene maiononttrlle (OCBM)........... 0.06 0.4 Chlorobromomethane. 200 1,050 2-Chloro-1.3-butadiene, see Chloroprene..................... .-- Chlorodlphenyl (42 percent Chlorine)--Skin................... . 1 Chlorodlphenyl (54 percent Chlorine)--Skin.............. .-- 0.5 t-Chloro,2,3-epoxypropane, see Epichlorhydrtn...................... . 1910.93(a)(2) 112 UCC 093516 OCCUPATIONAL SAFETY AND HEALTH 1910.93(a)(2) STANDARDS AND INTERPRETATIONS Table G-l--Continued Substance p.p.m. mg./M* 2-Chloroethanol, see Ethylene chlorohydrin............................ Chloroethylene, see Vjnyl chloride.................................... C Chloroform (trlchloro- methane)................................. . l-Chloro-l-nltropropane Chloroplcrln............................... Chloroprene (2-chloro-l,3- butadlene)--Skin................... . SO 20 0.1 25 240 100 0.7 90 Chromium, sol. chromic, chromous salts as Cr............ 0.5 Metal and insol. salts............. . l Coal tar pitch volatiles (ben zene soluble fraction) anthra cene, BaP. phenanthrene, acridine, chrysene, pyrene___ 0.2 Cobalt, metal fume and dust.. 0.1 Copper fume.............................. 0.1 I>usts and Mists..................... 1 Cotton dust (raw)..................... 1 Crag herbicide........................ Crosol (all Isomers)--Skin........ 15 22 Crotonaldehyde......................... * o Cumene--Skin........................... 60 246 Cyanide (as CN)-Skin........... 5 Cyclohexane............................... 300 1,050 Cyclohexanol............................ Cyclohexanone........................... 50 50 200 200 Cyclohexene............................... Cyclopen tadiene........................ 800 76 1,015 200 2, 4-D........................................ 10 DDT-Skin................................ DDVP, see Dichlorvos............. Decaborane--Skin..................... 0.05 0.3 Demeton--Skin........-............ 0.1 Dlacetone alcohol (4-hydroxy4-methyl-2-pentanone)........... 50 240 1,2-dlaminoetnane, see Kthylenedlamine................... Dtnzomethane............................ Diborane. Dlbutylphthalate----C o-Dlchlorobenzene. 0.2 ai 50 0.4 0.1 5 300 p-Dichlorobenzene..................... 75 450 Dlchlorodlfluoromethane......... 1,000 4,950 1,3-Dlchloro-5,5-dlmethyl hydantoln................................ 0.2 1.1-Dlchloroethane..................... 100 400 1.2-Dlchloroethylene................. 200 790 C Dlchloroethyl ether--Skin.. 16 90 Dlehloromethane. see Mpthylenechlorlde.................. Dlchloromonofluorornethane.. 1,000 4,200 C 1,1-Dlchloro-l-nltroethane... 10 50 1.2-Dlchloropropane, see Propylenedlcnlorlde. I) ichlorotetrafluoroethane......... 1,000 7,000 Dlchlorvoe (DDVP)-Skln............................ 1 I) leidrln--Skin................................................. 0.25 Dlethyiamlne.............................. 25 75 Dlethylamlno ethanol--Skin... 10 50 Diethylether, see Ethyl ether........................................... Difluorodlbromomethane........... 100 860 C Dlglyctdyl ether (DGE)........ 0.5 2,8 Dlhydroxybentene, see Hydroqulnone.................................................................. Dilsobutyl ketone...................... 50 290 Dlisopropylamlne--Skin............ 5 20 Dlmethoxymethane, see Methylal........................................................................ Dimethyl acetamide--Skin....... 10 35 Dlmethylamlne........................... 10 18 Dimethylamlnobenzene, see Xylldene........... ............................................................ Dlmethylanlllne(N-dlmethyl* aniline)--Skin.......................... 6 25 Dlmethylbenzene, see Xylene....................................... Dimethyl l,2-dibromo-2,2-dl- chloroethyl phosphate, (Dlbrom)....................................................... 3 Dlmethylformamide--Skin....... 10 30 2,6-Dlmethylheptanone, see Dilsobutyl ketone........................................................ 1,1-Dlmethylhydrazlne--Skin... 0.5 l Dlmethylph thalate.......................................... 5 Dlmethylsullate--Skin............... 1 5 Dlnltrobenzene (all isomers)-- Skin................................................................ Dinltro-o-cresol--Skin..................................... 1 0.2 Dinltrotoluene--Skin...................................... 1.5 Dioiane (Diethylene dioxide)-- Skin........................................... 100 360 Diphenyl...................................... 0.2 1 Dlphenylmethane dlteocyanate (see Methylene bisphenyl Dipro'pylene glycol methyl ether--Skin............................... D 1-sec, octyl phthalate (Dl-2ethylhexvlphthalatel........... . Endrln--Skin............................... Eplchlorhydrln--Skin................ EPN--Skin................................... 1,2-Epoxypropane, see 100 5 800 5 0.1 19 as 2,3-Epoxy-l-propanol, See Glycidol..................................... Ethanethlol, see Ethylmer- captan........................................ Ethanolamlne.............................. 2-Ethoxyethanol--Skin.............. 2-Ethoxyethylacetate (Cello- 3 200 solve acetate)--Skin................ 100 Ethyl acetate............................... 400 Ethyl acrylate--Skin................. 25 Ethyl alcohol (ethanol).............. 1,000 Ethylamlne............................. Ethyl sec-amyl ketone (5- 10 methyl-3-heptanone).......... 25 Ethyl benzene........................ Ethyl bromide....................... 100 200 Ethyl butyl ketone (3- Heptanone)......................... 60 Ethyl chloride............................. 1,000 Ethyl ether............................. Ethyl formate......................... 400 100 C Ethyl mercaptan................ 10 Ethyl silicate............................... 100 Ethylene chlorohydrin--Skin.. 5 E thylenedlamlne......................... 10 Ethylene dibromide, see 1,2- Dlbromoethane......................................... Ethylene dichlorlde, see 1,2- Dlchloroethane.......................................... C Ethylene glycol dtnltrate and/or Nltroglycerln--Skin... * 0.2 e 740 540 1,400 100 1,900 18 130 435 890 230 2,600 1,200 300 25 850 16 25 See footnotes at end of table. 113 1910.98(X2) UCC 093517 1 1910.93(a)(2) STANDARDS AND INTERPRETATIONS OCCUPATIONAL SAFETY AND HEALTH Table G-l--Continued Substance p.p.m.* mg./M* * Ethylene glycol monomothyl ether neetote, see Methyl ceHosolve iicetnt.e..................... Ethylene Inline-Skin................ Ethylene oxide........................... Ethvlldlne chloride, see 1,1- niehloroethane....................... N-F.thylmorphoHne--Skin........ 20 Ferbam........................................ Ferrovnnadlum dust.................. Fluoride (ns F)............................ Fluorine...................................... 0.1 1,000 Formic ncid............................. 5 Furfural--Skin..................... 5 Furfuryl alcohol...................... 50 Olycldol (2,3-Epoxy-l- propnnol).............................. 50 Glycol monoethyl ether, see 2-Ethoxyethanol.......................................... Guthion , see Aitnphos* methyl............................................. ............ Hafnium........................................................... Heptachlor- Skin.............................. ............ Heptane, (n-heptane).................. fiOQ llexachloroethane--skin............ 1 Hexachioronaphthaiene--Skin...................... Hexane (n-hexane)...................... 600 2-Hexanone........ ......................... 100 Hrxonr (Methyl lsobutyl ketone)..................................... 100 Sec-llexyl ncetate......................... 60 Hydrazine Skin........................ 1 Hydrogen bromide............... 3 C Hydrogen chloride.................. S Hydrogen cyanide--Skin........... 10 Hydrogen peroxide (90%).......... 1 Hydrogen selenlde...................... 0.05 Hydroqulnone................................................ . C lodino........ .............................. 0.1 Iron oxide fume.............................................. . Isoatnyl acetate........................... 100 Isoamyl alcohol..... ..................... 100 Tsnbutyl acetate........................... 150 Isobutyl alcohol........................... 100 Isophorone................................... 25 Isopropyl acetate......................... 250 Isopropyl alcohol......................... 400 Isopropylamine............................ 5 Isopropylether............................. 500 Isopropyl glycldyl ether (IGE). 50 Ketene.......................................... 0.5 Lead arsenate................................................. Lindane--Skin................................................ Lithium hydiide............................................ L.P.G. (liquified petroleum gas)............................................. 1,000 Magnesium oxide fume.................................. Maiathlon--Skin............................................ Maleic anhydride......................... 0.25 C Manganese................................................... Mesityl oxide................................ 25 Methanethtol, see Methyl mercaptan................................................... Methoxychlor.................................................. 2-Methoxyethanol, see Methyl cellosolve...................................................... Methyl aretate............................. 200 Methyl acetylene (propyne)___ 1,000 5,600 9 20 200 160 0.5 0.5 2,000 10 0.2 1,800 410 15 610 1,650 1910.93(a)(2) Methyl acetylene-propadiene mixture (MAPP)..................... 1,000 Methyl acrylate--Skin................ 10 Methylal (dlmethoxymethane).. 1,000 Methyl alcohol (methanol)........ 200 Methylamine............................... 10 Methyl amyl alcohol, see Methyl lsobutyl carblnol........ . Methyl (n-amyl) ketone (2Heptanotie).............................. C Methyl bromide--Skin........... Methyl butyl ketone, see 2- Hexanone.................................. . Methyl cellosolve--Skin............. Methyl cellosolve acetate--Skin Methyl chloroform....................... Methylcyclohexane..................... Meth y lcyclohexanol.................... 0-Meth ylcyclohexanone--Skin.. Methyl ethyl ketone (MEK), see 2-Butanone....................... Methyl formate............................ Methyl iodide--Skin................... Methyl isobutyl carbinol--Skin. Methyl isobutyl ketone, see Hexone.............. -...................... Methyl Isocyanate--Skin.......... C Methyl mercaptan-................ Methyl methacrylate.................. Methyl propyl ketone, see 2- Pentanone................................. C a Methyl styrene..................... C Methylene btsphenyl isocyanate (MDI).................... Molybdenum: Soluble compounds................. Insoluble oompounds.............. Monomethyl aniline--Skin........ C Monomethyl hydrazine-- Skin........................................... Morpholine--Skin....................... Naphtha (coaltar)....................... Naphthalene........... ................... Nickel carbonyl........................... Nickel, metal and soluble empda, as Ni............................ Nicotine--Skin............................ Nitric acid................................... Nitric oxide.................................. p-Nitroaniline--Skin.................. Nitrobenzene--Skin................... p-Nltrochlorobenzene--Skin___ Nitroethane................................. Nitrogen dioxide......................... Nitrogen trifluoride.................... Nitroglycerin--Skin.......... ....... Nltrometbane............................. 1-Nitropropane............................ 2-Nltropropane............................ Nltrotoluene--Skin.................... Nltrotrichloromethane, see Chloroplcrin............................. Octachloronaphthalene-- Skin.. Octane........................................ Oil mist, mineral....................... Osmium tetroxide..................... . Oxalic acid.................................. Oxygen difluoride....................... Ozone.......................................... . Paraquat--Skin......................... Parathlon--Skin................... ...... Pentaborane................................ 100 20 0.02 10 100 100 0.02 25 1 1 100 5 10 0.2 100 25 25 5 500 0.06 0.1 0.005 114 1,800 35 3,100 260 12 80 120 1,900 2,000 470 460 0.05 20 410 480 0.2 0.35 70 400 50 0.007 30 6 6 1 310 9 29 2 250 90 90 30 UCC 09351 OCCUPATIONAL SAFETY AND HEALTH 1910.03(a)(2) STANDARDS AND INTERPRETATIONS Table G-l--Continued Substance p.p.m.* mg./M* * Pontarhloronnphthalone--Skin.. ................ 0.5 Penlachlorophenol--Skin............ ................ * Pentane..................... ................ 1.000 2-Pentanone............ ................... 200 0.6 2,960 700 Porchloromethyl mercaptan___ 0. 1 Perchloryl fluoride...................... 3 Petroleum distillates (nnphtha). 800 Phenol--Skin....... ....................... 6 p-Phenylene diamine--Skin........ ................. Phenyl ether (vapor).................. 1 Phenyl other-biphenyl mixture (vapor)....................... 1 Phonylethylone, see Styrene....... 0.8 13.6 2,000 19 0.1 7 7 Phenyl glycidyl ether (POE)... Phenylhydraslne--Skin............. 10 6 60 22 Phosdrjn (Mevinphos )-- Skin............................................. ......... 0.1 Phosgene (carbonyl chloride)... 0. I 0.4 Phosphine.................................... 0.3 0.4 Phosphoric acid............................ ...... 1 Phosphorus (yellow).................... ........... 0.1 Phosphorus pentachloride........... ......... 1 Phosphorus pentasulflde............. ......... 1 Phosphorus trichloride............... PhthaliC anhydride..................... 0.6 2 3 12 Picric acid--Skin.......................... ......... 0.1 Pival (2-Plvalyl-l,3- indandlone)............................... ......... 0.1 Platinum (Soluble Salta) as Pt................................................ I'ropargyl alcohol--Skin............ ......... 0.002 1 ................. Propane........ ........................... 1,000 n-propyl acetate.......... -............. 200 1,800 840 Propyl alcohol............................. 200 600 n-Propyl nitrate.......................... 26 110 Propylene dichloride.................. 78 360 Propylene imine--Skin.............. 2 6 Propylene oxide.......................... 100 240 Propyne, see Methylacetylene.. Pyrethrum................................... _________ 6 Pyridine....................................... & 15 Quinone........................................ 0.1 o. 4 RDX-Skln................................. ........... 1.6 Rhodium, Metal fume and dusts, as Rh............................. Soluble salts............................. Ronnel.......................................... Rotenone (commercial).............. Selenium compounds (as Se)___ Selenium hexafluoride.............. ................. ................ ............. ................ ................ 0.06 0.1 0.001 10 6 0.2 0.4 Silver, metal and soluble com pounds...................................... Sodium fluoroacetate (1080)-- Skin........................................... Sodium hydroxide....................... Ptlbine.......................................... Stoddard solvent....................... Strychnine.................................... Sulfur dioxide.............................. Sulfur hexafluoride...................... Sulfuric acid................................. Sulfur monochloride....... ............ Sulfur pentafluoride.................... Sulfuryl fluoride.......................... Systox, see Demeton .............. 2.4.5T........................... .............. Tantalum.................................... TE Dp-Skin.............................. Tellurium................................... ............... ................ ............. 0. 1 600 ............... 6 1,000 "*"i..... 0.026 6 0.01 0.08 2 0.5 2,960 0.16 13 6,000 e 0. 26 20 10 6 0.2 0.1 Tellurium hexafluoride.............. 0.02 0.2 TEPP--Skin.................................................... 0.08 C Terphenyls......... .................. 1 9 1.1.1.2-Tetrachloro-2,2-difluoro- ethane........................ 600 4,170 1.1.2.2-Tetrachloro-l,2-dlfluoro- ethane......................... 600 4,170 1.1.2.2-Tetiachloroethane--Skin Tetrachloroethylene, see Per- 6 36 chloroethylene....................................... .......................... Tetrachloromethane, see Carbon tetrachloride...................................................................... Tetrachloronaphthalene--Skin..................... 2 Tetraethyl lead (as Pb)--Skin...................... 0.076 Tetrahydrofuran........................ 200 690 Tetramethyi lead (as Pb)-- Skin............................................... Tetramethyi succinonitrile-- Skin.......................................... 0.6 3 Tetranitromethane...................... 1 8 Tetryl (2,4,6-trinltrophenyl- methylnitramlne)--Skin.................................... 1.6 Thallium (soluble com pounds)--Skin as T1.......................................... 0.1 Thiram.......... ......................................................... 6 Tin (inorganic cmpds, except oxides......... ................................................... 2 Tin (organic cmpds).............................................. 0.1 C Toluene-2,4-diisocyanate........ 0.02 0.14 o-Toluidine--Skin....................... 6 22 Toxaphene, see Chlorinated camphene........................................................................... Tributyl phosphate............................................... 6 1.1.1-Trlcnloroethane see Methyl chloroform............................................................ 1.1.2-Trichloroethane--Skin....... 10 48 Tltaniumdloxide.............................................. 16 Trtchloromethane, see Chloro form.................................................................................... Trichloronaphthalene--Skin................................ 8 1.2.3-Trichloropropane................ 80 300 1,1,2-Trichloro 1,2,2-trlfluoro- ethane..... .......... 1,000 7,600 Trtethylamine............................. 28 100 Trlfluoromonobromomethane... 1,000 6,100 2.4.6-Trinitrophenol, see Picric acid..................................................................................... 2.4.6-Trinitrophenylmethyl* Trinitrotoluene--Skin..................................... 1.6 Trlorthocresyl phosphate............................... 0.1 TTiphenyl phosphate...................................... 3 Turpentine................................... 100 860 Uranium (soluble compounds)...................... 0.08 Uranium (insoluble compounds).................. 0.28 C Vanadium: VjOjdust................. 0.5 VjOjfume...................................................... 0.1 Vinyl benzene, see Styrene................................................ "C Vinyl chloride...................... 600 1,300 VJnylcyanide, see Acrylonitrile................................. . Vinyl toluene............................... 100 480 Warfarin............................................................ 0.1 Xylene (xylol)............................. 100 485 Xylidlne--Skin............................ 5 28 Yttrium..................................................... ...... 1 Zinc chloride fume........................................... 1 Zinc oxide fume............................................ . 5 Zirconium compounds (as Zr)....................... 5 1970 Addition. Parts of vapor or gas per million parts of contami nated air by volume at 25 C. and 760 mm. Hg pressure. ` Approximate milligrams of particulate per cubic meter of air. 115 1910.93(a)(2) a UCC 093519 1010.93(a)(2) STANDARDS AND INTERPRETATIONS OCCUPATIONAL SAFETY AND HEALTH Table G-l--Continued Substance p.p.m* mg./M* * (No footnote "c" Is used to avoid contusion with celling value notations.) d An atmospheric concentration of not more than n.(v> p.p.m., or personal protection may be necessary to avoid headache. r As sampled by method that does not collect vapor. t For control of general room air, biologio monitoring Is essential for personnel control. (b) Table (1-2: (1) 8-hour time weighted average*. An employee's exposure to any material listed in table (1-2, in any H-hour work shift of a 10-hour work week, shall not exceed the 8hour time weighted average limit given for that material in the table. (2) Acceptable ceiling concentration*. An employee's exposure to a material listed in table G-2 shall not exceed at any time dur ing an 8-hour shift the acceptable ceiling concentration limit given for the material in the table, except for a time period, and up to a concentration not exceeding the maximum duration and concentration allowed in the column under "acceptable maximum peak above the acceptable ceiling concentration for an 8-hour shift." (3) Example. During an 8-hour work shift, an employee may be exposed to a concentration of Benzene above 25 p.p.m. (but never above 50 p.p.m.) only for a maximum period of 10 minutes. Such exposure must be compen sated by exposures to concentrations less than 10 p.p.m. so that the cumulative exposure for the entire 8-hour work shift does not exceed a weighted average of 10 p.p.m. Material Table G-2 8-bour time weighted Acceptable ceiling Acceptable maximum peak above the acceptable celling concentra tion for an 8-hour shut. Concentration Maximum duration (Z37.29-1970). 10 p.p.m............. 25 p.p.m............. 60 p.p.m____ ... 10 minutes. 2 Mg./M*............... 5 Mg./M*............... 25mS-/M*............. 80 minutes. 0.1 mg./M* 3 mg./M*............. 0.2 mg./M*.......... 0.6 mg./M*........... 20 p.p.m............. 30 p.p.m............. 100 p.p.m........... Do. 10 p.p.m............. 25 p.p.m............. 200 p.p.m........... 5 minutes In any * hours. 20 p.p.m............. SOp.pan............. 60 p.p.m__ ____ 6 minutes. . 50 p.p.m............. . lOOp.pjn........... 200 p.p.m........... 5 minutes in any 3 hours. . 3 p.p.m............... 5 p.p.m............... 10 p.pnn............. 30 minutes. 2.5 mg./M*______ Lead and its inorganic compounds (Z87.ll- 0.2 mg./M*. 1900). Methyl chloride (Z37.18-1969)....................... 100 p.p.m........ 200 p.p.m___ Methylene Chloride (Z37.3-1969).................. 500p.p.m........ 1,000p.p.m.. Organo (alkyl) mercury (Z37.30-1909)......... 0.01 mg./M ... 0.0* mg./M *_. Styrene (Z37.15-1909)..................................... 100 p.p.m........ 200 p.p.m___ Trichloroethylene (Z37.19-1967)............................do.. .do.. Tetrachloroethylene (Z37.22-1987)........................do. -do. Toluene (Z37.12-1967).................................... 200 p.p.m........ SOOp.pmi. Hydrogen sulfide (Z37.2-1966)................................................... 20p.p.m.. Mercury (Z37.8-1971).................................................................. 1 mg./lOM . Chromic acid and chromates (Z37.7-1971)....................................... do *........ 300 p.p.m... 2,000 p.p.m. 600 p.p.m. 300 p.p.m. ........do....... 600 p.p.m.. 50p.pju... 5 minutes in any 3 hours, 6 minutes In any 2 hours. 5 minutes in any 3 hours. 5 minutes in any 2 hours. . 6 minutes in any 3 hours. . 10 minutes. . 10 minutes one only If no other measin able exposun occurs. 1810.93(b)(3) u* UCC 093520 OCCUPATIONAL SAFETY AND HEALTH 1910.93(c) STANDARDS AND INTERPRETATIONS (c) Table G-3: An employee's exposure to any material listed in table G-3, in any 8-hour work shift of a 40-hour work week, shall not exceed the 8-hour time weighted average limit given for that material in the table. Table Q-3--Mineral Dusts Substance Mppcf Mg/M* Silica: Crystalline: Quartz (respirable)............... 250 lOmg/M*m %SIO*+5 Quartz (total dust)................................... Crlstoballte: Use H the value calculated from the count or mass formulae for quartz. Tndymtte: Use H the value calculated from the for mulae for quartz. Amorphous, Including natural dlatomaceous earth.................. 20 %S10*+2 30mg/M* %S,0,+2 SOmg/M* %SlOt lllcates (less than 1% crys talline silica): Mica............................................... 20 Soapstone...................................... 20 Talc (non-asbestos-form)... 20" Talc (fibrous). Use asbestos limit............................... Tremollte (see talc, fibrous) Portland cement.......................... 50 Graphite (natural).................. 15 Coal dust (respirable fraction less than 6% SlOi)..................................... 2.4mg/M or For more than 5% SiOt............................... lOmg/M* lert or Nuisance Dust: Respirable fraction............... Total dust............................. %S10H-2 15 Smg/M> 50 15mg/M* Note: Conversion factors-- mppcfX35.3mi)llon particles per cubic meter -particles per c.c. * Millions of particles per cubic foot of air, based on Impluger samples counted by light-held technics. ' The percentage of crystalline silica In the formula Is the amount determined from air-borne samples, ex cept In those Instances In which other methods have been shown to be applicable. 1 As determined by the membrane filter method at 430xphase contrast magnification. " Both concentration and percent quartz for the appli cation of this limit are to be determined from the fraction passing a size-selector with the following characteristics: * Containing < l% quartz; If > l% quartz, use quartz limit. (d) Computation formulae: (1) (i) The cumulative exposure for an 8-hour work shift shall be computed as follows: c.t. + c.r + ... c,r. E ------------------------------------------8 where: E is the equivalent exposure for the working shift. C is the concentration during any period of time T where the concentration remains constant. T is the duration in hours of the exposure at the concentration C. The value of E shall not exceed the 8-hour time weighted average limit in table G-l, G-2, or G-3 for the material involved. (ii) To illustrate the formula prescribed in subdivision (i) of this subparagraph, note that isoamyl acetate has an 8-hour time weighted average limit of 100 p.p.m. (table G-l). Assume that an employee is subject to the following exposure: Two hours exposure at 150 p.p.m. Two hours exposure at 76 p.p.m. Four hours exposure at 50 p.p.m. Substituting this information in the for mula, we have 2 x 150 + 2 X 76 + 4 X 50 ----------------------------------------- = 81.25 p.p,m. 8 Since 81.25 p.p.m. is less than 100 p.p.m., the 8-hour time weighted average limit, the exposure is acceptable. (2) (i) In case of a mixture of air contaminants an employer shall compute the equivalent exposure as follows: where: Em is the equivalent exposure for the mixture. C is the concentration of a particular contaminant. L is the exposure limit for that contaminant, from table G--1, G--2, or G--3. 117 1910.93(d)(2)(i) UCC 093521 1910.93(d)(2)(l) STANDARDS AND INTERPRETATIONS OCCUPATIONAL SAFETY AND HEALTH The value of E,,, shall not exceed unity (I). Since Em is less than unity (1), the expoure combination is within acceptable limits. (ii) To illustrate the formula prescribed in subdivision (i) of this subparagraph, con sider the following exposures: () To achieve compliance with paragraph (a) through (d) of this section, administrative or engineering controls must first be determined and implemented whenever feasible. When such controls are not feasible to achieve full Actual con- 8-hour time compliance, protective equipment or any crntration weighted other protective measures shall be used to Material of 8-hour exposure avrrnjre exposure limit keep the exposure of employees to air contami nants within the limits prescribed in this sec tion. Any equipment and/or technical Acetone (Tnble G-l) 500 p.p.m. 1,000 p.p.m. 2-Rutanone (Table G-l) 45 p.p.m. 200 p.p.m. measures used for this purpose must be approved for each particular use by a compe Toluene (Table G-2) 40 p.p.m. 200p.p.mt.ent industrial hygienist or other technically qualified person. Whenever respirators are used, their use shall comply with 1910.134. Substituting in the formula, we have: 500 45 40 1,000 200 200 E. = 0.500 + 0.225 + 0.200 E- = 0.925 1910.93a--ASBESTOS (a) Definitions. For the purpose of this section. (1) "Asbestos" includes chrysotile, amosite, crocidolite, tremolite, anthophyllite, and actinolite. (2) "Asbestos fibers" means asbestos fibers longer than 5 micrometers. (b) Permissible exposure to airborne concen trations of asbestos fibers. (1) Standard affective July 7, 1972. The 8-hour time-weighted average airborneconcentrations of asbestos fibers to which any employee may be exposed shall not exceed five fibers, longer than 5 micrometers, per cubic centimeter of air, as determined by the method prescribed in paragraph (e) of t his section. (2) Standard effective July 1, 1976. The 8-hour time-weighted average airborne concentra tions of asbestos fibers to which any employee may be exposed shall not exceed two fibers, longer than 5 micrometers, per cubic centimeter of air, as determined by the method prescribed in paragraph (e) of this section. (3) Ceiling concentration. No employee shall be exposed at any time to airborne concentra tions of asbestos fibers in excess of 10 fibers, longer than 5 micrometers, per cubic cen timeter of air, as determined by the method prescribed in paragraph (e) of this section. (c) Methods of compliance. (1) Engineering methods. (i) Engineering controls. Engineering con trols, such as, but not limited to, isolation, enclosure, exhaust ventilation, and dust 19l0.93e(c)(l)(i) 118 TJCC 0935i# INTERNAL CORRESPONDENCE UC 149- 2. CHEMICALS AND PLASTICS TO (NAME) Dr. R. J. Anderson, 312 COMPANY Mr . M. E. Eisenhour LOCATION Dr * D. H. Glenn Mr. J. L. Hockersmith Mr. J. B. Leverton Dr. W. R. Manning, 511 Mr. W. A. Mazzolini Mr. C. E. Moyer Mr. F. S. Provenzano Mr. M. E. Sutherland, 511 Mr. G F. Tacquard Mr. R. J. Taylor Mr. R. N. Wheeler, 514 Suspension Vinyls Staff From: R. L. Frantz P, O. BOX 471, TEXAS CITY, TEXAS 77590 date October 31, 19 77 subject vinyl Chloride Safety Association Meeting - October 6 & 7, 1977 Valley Forge, Pennsylvania This regular meeting of the Association had a record attendance of eighty-three members from virtually all of the domestic VCM and PVC producers as well as representatives from several foreign countries, including Canada, Mexico, U.K., Germany, Italy and Norway. Union Carbide was represented by Mr. R. N. Wheeler and the writer. A complete attendance list will be mailed to me; if any of you are interested in receiving a copy, let me know. The first item on the agenda was a discussion of the physiological effects of VCM by Dr. R. W. McBurney, a physician from Diamond Shamrock. Some highlights of his presentation were: VCM is a relatively non-toxic chemical - it can cause narcosis and even death by asphyxiation. It is detoxified in the liver. Its target is the lining of small blood vessels and can cause Raynaud's phenoma by plugging up the blood vessels in the end of the fingers which can lead to AOL (loss of bone structure in the end of the fingers). It can also cause cirrhosis of the liver, enlargement of the spleen and of course angiosarcoma of the liver. Angio is Greek for worms (small blood vessels) and sarcoma is cancer. All of these effects are rare. VCM is a very weak carcinigen - only one in 3400 of those who've had prolonged, extended high exposure to VCM developed angiosarcoma. It is not a risk for workers ex posed to from one to twenty-five ppm (his opinion, of course), VCM is picked up in the blood and transferred to the liver and lungs is excelled through the lungs. A question from Herm Waltenrate of B. F. Goodrich to Dr. McBurney was of perhaps more interest than Dr. McBurney's answer. It was "Is it more likely to get angio sarcoma from ingestion than from breathing?" The answer was "No". It was pointed out that there have been sixty-four deaths attributed to angiosarcoma over the last twenty-five years. UCC 093523