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.. 211 Milby St* g o p Y ' OCCUPATIONAL HEALTH LABORATORIES Houston 3# Texas 'r.... y ' : -: ; ' ,, Phone CApitol 7-5708 October 19, 1955 Hr. Manfred Bowditch Lead Industries Aasn, k 2 0 Lexington Avenue New York 17, N.Y. Dear Sir We are equiped and have been running urinary leads (Dithisone) and Coproporphyria III teats for some of the local lead' industries including Lead Products Co., Houston Lead Co., Houston Battery Sales, Tex-Ford Battery Co. and Silverloy Battery Co. If you should run across someone in this area interested in obtaining this type of examination, we would appreciate being referred to them. Enclosed note OCCUPATIONAL HEALTH BULLETIN NO. 3, which we are distribut ing to the local lead plants. Sincerely, /a/ William U. Giessel, M.D. William U. Giessel, M.D. Medical Director Occupational Health Laboratories n C\ f m Oy G OCCUPATIONAL HEALTH BULLETIN NO. 3 TO : Health & Safety Department . FROM ' : Occupational Health Laboratories SUBJECT: Practical Approach To The Industrial Lead Problem CAUSE Inorganic lead Poisoning is caused by the inhalation of lead dust or fume which enters the blood stream from the lungs. II. tactically all workers in lead plants inhale lead and will become ill if enough lead is inhaled over a long enough period of time. III. The difference between lead absorption (the amount of lead in the system) and lead poisoning (onset of signs and symptoms, such as constipation, abdominal cramps, headaches, nausea and vomiting, anemia, weakness, etc.) is one of degree only. PLANT EVALUATION I. The most practical way to evaluate the inr-plant problem is to analyze each worker who has been sampling the plant atmosphere over a certain period of time, and who is excreting in his urine amounts of lead which are definitely related to the amount of lead inhaled. II. Analyze the plant atmosphere directly for lead and strive to keep the plant atmospheric lead concentration, below the maximunTallowable concentration (0.15 milli- griui?/ cu.meter of air.).. This is the amount of lead in the air that a normal worker cav. inhale during an eight"houh shift over a life time without suffering detectable damage. The maximum allowable concentration indicates the worst condition which should be tolerated by the workers. f ' III. The coproporphyrin urinary test will detect incipient lead damage before the worker develops symptoms. It is an inexpensive, rapid screening test to determine which workers should then be followed by a urinary lead examination. PREVENTION ' I. Install adequate exhaust ventilation at those positions where the workers show abnormally high lead values in urine or where the maximum allowable concentration in ' the air is constantly exceeded. '. II. Treat those workers with high urinary lead values (but without evidence of poisoning) with E.D.T.A. (Brand of Calcium Disodium Salt of Ethylene-diamine Tetraacetic Acid - RIKER). This is a "wonder drug", which will combine with the lead in the system and neutralize it and cause it to be excreted harmlessly in the urine. III. Give all workers an iron-vitamin preparation (Heptuna Plus - Pfizer) in order to prevent nutritional anemia which would predispose the harmful effects of lead on the blood count. |*70 03697 OCCUPATIONS WHICH OFFER LEAD EXPOSURE Acid finishers (glass) Actors Airplane pilots - crop dusting Amber workers Art-glass workers Artificial-flower mak ers Artificial-pearl mak ers Babbitt metal workers Babbitters Battery (dry) makers Blacksmiths Blooders (tannery) Bookbinders Bottle-cap makers Brass founders Brass polishers Braziers Brick burner s Brickmakers Broncers Browners (gun barrels) Brush makers Buffers (rubber) Burners (enameling) Cable makers Cable splicers Canners Cartridge makers Cement workers (ceramic) Chipper s Cigar makers Colohers (white) of shoes Color makers . Compositors Compounders (rubber) Cqncentrating-mill workers (lead and zinc) Copper refiners . Crayon (colored) makers Cut-glass workers Cutlery makers Decorators (pottery) Dental workers Diamond polishers Dye makers Dyers Electroplaters Electrotypers Embroidery workers Emery-wheel makers Enamelers Enamel makers Engravers (steel) Explosives workers Farmers . Galvanizers Reclaimers (rubber) Garage workers Red-lead workers Gardeners Refiners (metal) Gasoline blenders Riveters Glass finishers Roofers Glass mixers Rubber workers Glass polishers Sagger makers Glaze dippers (pottery) Sandpaperers (enameling Glaze mixers (pottery) and painting auto Glost-kiln workers bodies, etc.) Gold refiners Screen workers (lead and Oinders (metals) zinc smelting) Grinders (rubber) Sheet metal workers Incandescent-lamp makersi Shellackers Ink makers Shellac makers ` Insecticide makers Shot makers Japan makers Silk weighters Japanners Slip makers (pottery) Jewelers Slushers (porcelain enam Junk--metal refiners eling) Labelers (paint cans) Solderers Lacquerers Solder makers Lacquer makers Sprayers (trees) Lead burners Stainers (shoes) Lead-foil makers Stereotypers Lead miners Storage-battery makers Lead-pipe makers Sulphuric-acid workers Lead-salts makers Table turners (enameling) Lead smelters Tannery workers Linoleum makers Temperers Linotypers Tetraethyl lead makers Linseed-oil boilers Textile printers Litharge workers Tile makers Lithographers Tin-foil makers Lithotransfer workers Tinners Match factory workers Toy makers Metallizers Transfer workers (pottery) Mirror silverers Type founders Mixers (rubber) Type melters Molders (foundry) Varnishers Monotypers Varnish makers Musical instrument Wall-paper printers makers Welders Nitric-acid workers White-lead workers Nitroglycerin makers Wood stainers Painter s Zinc miners Paint makers Zinc smelters Paint removers Paperhangers TABLE II Paper makers from: Patent-leather makers '(Occupation Hazards & Petroleum refiners Diagnostic Signs - Photograph retouchers United States Dept, of Labor Pipe Fitters Bulletin #41 -- Revised, 1942 Plumbers United States Dept, of Labor Polishers Maurice J. Tobin, Secy. Pottery workers Page - 49) Printers * 2- FOIL.OW-UP I. Periodic re-examination is necessary to detect those workers abnormally sensi tive to lead (even, when the M.A.C. is not being exceeded), to observe the results of treatment with E.D.T.A., and to detect early any possible break-down in ventilation procedure, and to detect previously unsuspected exposures. II. It is vitally important to examine all new employees since many will come from other lead plants where they may have absorbed excessive amounts of lead and then have been released from employment. .` STANDARDS FCR SAFEGUARDING THE HEALTH OF THE INDUSTRIAL LEAD WCRKER (a) Threshold limits for concentrations of injurious lead dust in the workroom air (M.A.C.)-- 0o15 milligrams/ cubic meter of air. (b) The biological threshold limit of lead in urine: NORMAL RANGE: 0.00 - 0.08 mgm. lead/liter of urine. SIGNIFICANT RANGE: 0.08 - 0.15 mgm. lead/liter of urine. DANGER RANGE: 0.17 mgm. (or greater)/liter of turine. (c) Pretoxicosis screening test (Urinary coproporphyrin I H test): For the detection of subtle metabolic changes in the body before injury of serious proportions has developed. ' (d) Prophylactic and antidotal agents are available. ) / t!No substance is so toxic that it cannot be used . . . no substance is so nontoxic that it should be used without caution.M James A. Sterner, M. D. IMPORTANT LEAD COMPOUNDS Lead metal: found .chiefly alloyed with antimony, tin, or copper. Litharge, PbO: used especially in storage battery manufacturing. Red lead, Fb^O^: used in paint3 and storage batteries, lead dioxide, Fb02*. used in chemical industry. Lead carbonate, 2FbC03 PbCOH^: white lead, used in paints. Lead sulfate, PbSO^: a paint pigment. Lead Titanate, P b T ^ : a paint pigment. ' .' Lead acetate, Pb(02^ 02)2* The most, common water-soluble compound of lead Lead arsenate, Pb3(AsO^)2: A common insecticide. Lead chloride, FbC^: probably formed when fluxes are used with .heated lead. Lead silicate, F b S ^ : present in glasses and vitreous enamels. Lead chromate, PbCrO^: used in yellow and green pigments. Lead borate, ( B O /i employed in certain plastics. / Lead sulfide, PbS: occurs naturally as galena. 1 Lead tetraethyl, ^ ^ 2%)^: used in gasoline. TABLE I from; Chemistry of Industrial Toxicology by Hervey B. Elkins John Wiley & Sons, Inc., New York Chapman & Hall, Limited, London, 1950 page 49