His lead operator D.
refid# p2vM0Gp2RvrKZ3oMLroB8vzgE4 pages
"Dehydrated Castor Cil Mixing Vgmish . .Lead Manganese Drier Mineral Spirits 3hk UU.30 *>852 per Gal,. 37.7U li?
refid# M4o5D0b04R5XLjrR2004RN7Jy2 pages
Electrical Hazards used in areas where it may come in contact with oils or solvents Cord for heating devices, such as electric irons and water heaters, is made with an in sulated covering which contains flame-retard ant or thermosetting compound, such as neoprene They are designed to resist high tempeiatuies and, in the case of neoprene, dampness Because the metal frames of portable elec trical equipment should be grounded, cord with a green-covered ground conductor should be used with a polarized plug and re ceptacle If plant circuits are not equipped with polarized receptacles, a third wire taped at intervals to the cord, to prevent its breaking and to prevent a tripping hazard, may be used One end of this third wire is electrically con nected to the frame of the tool, and the other end, which should be several feet longer than the cord, terminates m a spnng-type metallic clip-large enough to be clamped to a water pipe or other effective ground Extension lamps with brass shell sockets should be prohibited because the socket may become energized through contact with loose wires inside the socket, through abrasion of the insulation where the cord enters the socket, or through moisture in the socket in sulation Porcelain, composition, or rubbercovered sockets should be used Handles of portable lamp holders must be made of nonconductive material, and there should be no metallic connection between the lamp guard and the socket shell For use near exposed live parts, such as the rear of switchboards, the guard itself should be of nonconductive matenal Since extension lamps are sometimes used under conditions m which 120-volt shock may prove fatal, it is essential that safe cords and lamp holders be provided and that they be maintained in excellent condition In some plants the shock hazard of portable lamps is eliminated bv use of small portable transformers which step the lamp voltage down to 24 volts or less Special lamps for these units are rated at 75-watt capacity and give sufficient working light Test equipment Most electrical equipment is designed for safe operation under limited overload condi tions for varying penods of time Operators should be thoroughly familiar with the limita tions of their equipment and should be trained to observe and report abnormal condi tions Continued overload may introduce additional operating hazards by causing fire, short circuits, circuit failures, or machine failures Through the use of various types of electri cal testing meters, many of these conditions can be detected before they get out of control and cause damage The following types of equipment are standard and should be considered even by plants with limited budgets split-core am meter, voltmeter, ammeter, megohmmeter, ground fault indicators and locators, watt meter, industrial analvzer, recording instru ment, and specialized testing instruments The split-core ammeter can be used with out tapping into the circuit The instrument's core is slipped around one electric lead, and the scale is then read for the amount ofcurrent flow A current reading m excess of the rated full-load current may indicate an overload or a grounded motor winding When test leads are used with this instru ment, the line voltage can be checked to see if it equals the motor voltage rating This check is important because low voltage can cause excessive current flow which may result in a complete breakdown, arcing, or electrical fires Voltmeter and ammeter When the voltage and current used m a plant exceed the range of a split-core ammeter, separate instruments should be used a voltmeter to measure volt age and an ammeter to measure current When these two instruments are used, more accurate readings can be taken Also separate instruments are useful when simultaneous voltage and current readings are needed Such readings might be necessarv when tests are being made to check on voltage surges or dips and unusual power conditions while cur rent is on When the current to be measured exceeds the ammeter's range, shunts should be used for direct current measurement, and current transformers, for alternating current measure ment Likewise, when voltages exceed the voltmeter's maximum rating, resistors or potential transformers must be used to step 996
refid# Bynz4d3yGMxbxL4Qn694LQaok1 page
Inhalation may cause cancer which could lead to death., , Page 1 , .v'.
refid# Rp7ZRG3kdm0Knv0zaOmnVjMX83 pages
Also owning end operating the following, Evstn lead 0<viion, manufectwrlng Euston While lead, e Darken famous Foods Division, manufacturing Durkee*s Famous Dressing, Durham'* Cocoanut, Durkae's Margarine, Durkee'* Spices, Durkee' Shortening, Durkee's Worcestershire Sauce, etc. e Chemical 4 Figment Division, manufacturing Astrolith end Svnolith tithopenes.
refid# e5xy1Rm2m53aB3gXrZ1MGDa4p2 pages
Howxaan - (3) - August 22, 19^1 (11) We have no assurance that even sandblasting or chemical cleaning will make tanks that have contained leaded gasoline safe for use in drinking water service, and accordingly, the best statement to r&aka in relation to this is that tsnks that have contained leaded gaaolino should not be used for storage of foodstuffs or drinking water.
refid# mBm29ErdnY6ZRrxv25d5yD1Y45 pages
Shellac TJ Red Lead 3 Benzol Products 3 Carpo (Metal Painr) Buggy Aprons 3 Fabnkoid for Railway Cars Name - Position Your Address (If Personal) Name of Concern (If Company l Address of Company BUSINESS: Manufacturer; 71 Producer; Jobber; Dealer; Consumer.
refid# QMOY6bVdvxX31ZgrVY0MwX782 pages
-f.r..tti,ti' LEAD INDUSTRIES ASSOCIATION 4a UQONOTOM *VBM MM VOMK IT, Ml T.
refid# 0JrKwOaGvQ2k62nvpJoQyXM4J3 pages
. '- Sc N 0 )"IAz.A2t> \)e.VV^wMrvCL.Vu>^ '\> ^ /^P^a ^.4* 1,^4 +Ve_ lA<f Com S^ADa^O QaiZ^ ^Afc>4er\ -s VVV 000016093 OSHA HAZARD COMMUNICATION STANDARD CARCINOGEN LIST Sources: 29 CFR 1910; NTP 1983 Report, IARC Monographs 2-Acetylaminofluorene Acrylonitrile Actinomycin D Adriamycin Aflatoxins 2-Aminoanthraquinone 4-Aminobiphenyl 1-Amino-2-methylanthraquinone Amitrole Analgesic mixtures containing phenacetin o-Anisidine and o-anisidine hydrochloride Aramite Arsenic and certain arsenic compounds Asbestos Auramine manufacture Auramine (technical grade) Azathioprine Benz(a)anthracene Benzene Benzidine Benzo(b)fluoranthene Benzo(a)pyrene Benzotrichloride Beryllium and certain beryllium compounds N,N-bis(2-chloroethyl)-2-naphthylamine (chlornaphazine) Bischloroethyl nitrosourea (BCNU) Bis(chloromethyl)ether (BCME) and technical grade chloromethyl methyl ether (CMME) 1.4- Butanediol dimethanesulphonate (Myleran) Cadmium and certain cadmium compounds Carbon tetrachloride Certain combined chemotherapy for lymphomas (including MOPP) Chlorambucil Chloroform bis-Chloromethyl ether Chlorophenols (occupational exposure to) Chromium and certain chrominum compounds Cisplatin Coke oven emissions Combined oral contraceptives Conjugated oestrogens p-Cresidine Cupferron Cycasin Cyclophosphamide Dacarbazine VVV DDT 2.4- Diaminoanisole sulfate 000016094 -i- 2,4-Diaminotoluene Dibenz(a.h)acridine Dibenz(a,j)acridine Dibenz(a,h)anthracene 7H-Dibenzo(c,g)carbazole Dibenzo(a,h)pyrene 1.2- Dibrorao-3-chloropropane (DBCP) 1.2- Dibromoethane (EDB) 3.3- Dichlorobenzidene 3,3'-Dichlorobenzidine 1,2-Dichloroethane (EDC) Dienoestrol Diepoxybutane Diethyl sulphate Di(2-ethylhexyl)phthalate Diethylstilbestrol (DES) 3,3'-Diraethoxybenzidine 4-Dimethylaminoazobenzene 3,3'-Dimethylbenzidine Dimethylcarbaraoyl chloride Dimethyl sulfate 1.4- Dioxane Direct Black 38 Direct Blue 6 Direct Brown 95 (technical grade) Epichlorohydrin Ethinyloestradiol Ethylene dibromide Ethylene oxide Ethylene thiourea Ethyleneimine Formaldehyde Hematite underground raining Hexachlorobenzene Hydrazine and hydrazine sulfate Hydrazobenzene Indeno(12,3-cd)pyrene Inorganic Arsenic Iron dextran complex Isopropyl alcohol manufacture (strong-acid process) Kepone (chlordecone) Lead acetate and lead phosphate Lindane and other hexachlorocyclohexane isomers Manufacture of magenta Melphalan Mestranol Methoxsalen with ultra-violet A therapy (PUVA) 44'-Methylenebis(2-chloroaniline) (MOCA) 4,4'-Methylenebis(n,n,-dimethyl)benz enamine Methyl chloromethyl ether Metronidazole Michler's ketone Mirex Mustard gas -2 0000X6095 2-Naphthlamine alpha-Naphthylamine Nickel and certain nickel compounds Nickel refining Nitrilotriacetic acid 4- Nitrobiphenyl 5- Nitro-o-anisidine Nitrofen Nitrogen mustard N-Nitrosodi-n-butylamine N-Nitrosodiethanolamine N-Nitrosodiethylamine N-Nitrosodimethylamine p-Nitrosodiphenylamine N-Nitrosodi-n-propylamine N-Nitroso-n-ethylurea N-Nitroso-n-methylurea N-Nitrosomethylvinylamine N-Nitrosomorpholine N-Nitrosonornicotine N-Nitrosopiperidine N-Nitrosopyrrolidine N-Nitrososarcosine Norethisterone Oestradiol-17B Oestrone Oxymetholone Phenacetin Phenazopyridine and phenazopyridine hydrochloride Phenytoin and sodium salt of phenytoin Phenoxyacetic acid herbicides (occupational exposure Polybrominated biphenyls (PBBs) Polychlorinated biphenyls (PCBs) Procarbazine and procarbazine hydrochloride Progesterone B-Propiolactone beta-Propiolactone Propylthiouracil Reserpine Saccharin Safrole Selenium sulfide Sequential oral contraceptives Soots, tars, and mineral oils Streptozotocin Sulfallate 2,3,7,8-Tetrachlorodibenzo-p-dioxin (TCDD) Thioacetamide Thiourea Thorium dioxide o-Toluidine and o-toluidine hydrochloride Toxaphene Treosulphan to) W\/ 000016096 3- - 2,4,6-Trichlorophenol Tris(aziridinyl)-para-benzoquinone (Triaziquone) Tris(l-aziridinyl)phosphine sulfide Tris(2,3-dibromopropy1)phosphate Uracil mustard Urethane Vinyl chloride VVV 000016097
refid# 4a2zaRxZek4K8w0K7aKGoajxQ5 pages
Sold through leading Industrial Distributors everywhere.
refid# B5GOEQKjD8NKg8xDB5xqY57qX1 page
Will be headed by Carl Moore, a V.P. of-National Lead.
refid# dDRwzr9Ye3Ev9o7ZQZOd56a703 pages
RUBBER ACCOUNTS ONLY Ihis-r 243138 28 01 EUCLID CHEMICAL CO C 249550 15 04 PARBOIL PAINT COMPAN C 258150 03 07 F G FINDLEY CO MILW WISC 252214 10 10 FLEXCRAFT INDUSTRIES 274681 09 02 H B FULLER CO BUFFALO N Y E 284623 41 01 GENERAL PLASTICS MFG E 289280 10 18 GILES VARNISH CO A 292300 28 01 GLEDDEN CO CLEVELAND OHIO C 325656 15 04 HASKELL CHEMICAL CO E 350630 29 05 HUGHES GLUE COMPANY 356344 03 03 IDEAL ROLLER 6 MFG CHIC I 356345 10 18 IDEAL ROLLER LONG ISLAND 356346 11 02 IDEAL ROLLER CMAMBLEE GA E 362463 10 10 INDUSTRIAL LATEX CO E 362824 44 12 INDUSTRIAL RUBBER CEMENT 364121 27 04 INTERGHEM FIN DIV CIN OHIO 364126 44 11 364928 15 02 377275 10 16 INTERCHEM FIN DIV L A CAL INTL INDUSTRIAL SALES CO JOHNS MANVILLE CORP MAN NJ 377285 10 16- JOHNS MANVILLE MANVILLE NJ 386795 09 02 KEE LOX MANUFACTURI G CO E 367720 11 02 KELLERMANN PAINT I C 396530 10 19 KIRKER CHEMICAL COMP A 400798 10 1 0 KOLKER CHEMICALCORP 422038 44 11 LEWIS RESEARCH LAB 436714 07 02 436716 10 16 LUDLOW PAPER INC WARE MASS LUDLOW PAPERS NETCONG N J A 478260 10 14 MIDDLETOWN RUBBER CO D 462918 03 07 J G MILLIGAN MILWAUKEE C 500110 43 02 MORWEAR PAINT OAKLAND CAL 504937 28 02 MUNRAY PROD DIV FANNER MF 512779 15 02 NATL LEAD CO PERTH AMBOY 512796 IS 02 NATL LEAD CO CHICAGO ILL A 514921 10 10 NATL STARCH 6 CHEM NY NY C 514921 43 02 NATL STARCH 6 CHEM NY NY E 521504 44 11 NELSON TECHNICAL 556642 44 11 PAPER PRODUCTS INC 573300 27 05 PERRY & DERRICK CINCINNATI C 573301 27 05 PERRY & DERRICK DAYTON KEN 586863 28 02 PLASTIC COATINGS CRESTON E 593045 41 01 PRESERVATIVE PAINT CO 593170 23 02 PRESSTITE KEYSTONE ENG SALES SUMMARY #3 DISTRICT PRODUCT SALES BY CUSTOMER A.
refid# DG1Q5g0bogOXYENOee8zaDzrB1 page
- Ground Water & Drinking Water https://safewater.zendesk.com/hc/en-us/articles/211402638-5-How-does-dioxin-get-into-my-drinking-water- 2/3 2/10/2017 ...Viruses (enteric) ...Xylenes (total) ...Facts, Figures, and Databases ...Filters/Home Water Treatment Units (HWTUs) (Household) Private Walls Lead and Copper Local Drinking Water Quality LT2/Stage 2 Rule Other ...Public Notification (PN) Source Water Protection/UIC Program Tap Water Testing ' -- Water Utility (PWS) Compliance/Issues 5.
refid# oDbXQnzd63qzZ3Op14DZ6mZvX3 pages
IfGr = Grashof modulus, dimensionless (IVg, = D'p*l}&tg/p*). hp = average unit thermal convective conductance from the leading edge of surface to the position x, Btu per (hour) (square foot) (Fahrenheit degree). ha = local unit thermal convective conductance, at the position x from the leading edge of surface, Btu per (hour) (square foot) (Fahrenheit degree). k = thermal conductivity, Btu per (hour) (square foot) (Fahrenheit degree per foot thickness). 1 = a dimension of the system, feet, m = a subscript denoting mean.
refid# KR06dX5e870LnLQr1JbMxQv6K1 page
A summarv of reports of experimental evidence and practical experience in the petroleum industry recites that no significant increase in fire safety is gained by the use of spark-resistant hand tools in the presence of gasoline and other hydrocarbon vapors However, some materials such as carbon disulfide, acetylene, and ethyl ether have very low ignition energy requirements For these, and similar materials, the use of special tools designed to minimize the danger of sparks in hazardous locations can be recog nized as a conservative safety measure Leather-faced, plastic, and wood tools are free from the friction-spark hazard Health Hazards Toxic effects Flammable liquids and their vapors may create health hazards from both surface con tact and inhalation of toxic vapors Irritation results from the solvent action of many flam mable liquids on the natural skin oils and tissue A toxic hazard of varying degree exists in practically all cases, depending on the con centration of the vapor See Chapter 42, "Elements of Industrial Toxicology " Some flammable vapors are heavier than air and will flow into pits, tank openings, con fined areas, and low places m which they con taminate the normal air and thus cause a toxic as well as explosive atmosphere Oxygen de ficiency occurs in closed containers, such as a tank which has been closed for a long time and in which rusting has consumed the oxy gen All containers should be aired and tested for toxic and flammable atmosphere before any entry Combustible gas indicators Unless tests prove otherwise, flammable and toxic mixtures should be assumed to be present m all tanks which have contained or have been exposed at any time to flammable liquids Tests for flammable vapor-air mix tures in tanks and other vessels may be made by making a chemical analysis of samples or by using a combustible gas indicator The most commonly used combustible gas indicator is an instrument operating on the principle that when a mixture of flammable vapor and air is passed over a heated electric filament, the resistance of the filament will be increased m direct proportion to the amount of combustible vapor present The imbalance of the Wheatstone bridge is read on the galvanometer, usually as the percent age of the lower flammable limit of a calibra tion substance such as hexane In a vapor concentration of less than the lower explosive limit (LEL), the needle will be on scale In a vapor concentration be tween LEL and the upper explosive limit (UEL), the needle will remain off scale above 100 per cent In a vapor concentration above the UEL, the needle will swing rapidly off scale and then drop back to zero Oxygen deficiency will produce unreliably low read ings A combustible gas indicator should be used only by experienced persons, and the opera tor should follow the manufacturer's instruc tions on balancing the unit For an accurate determination, the reading should be cor rected from the graph for the specific gas present in the atmosphere being tested Manufacturers supply correlation graphs for many combustible gases The operator can check it by placing sev eral drops of the flammable liquid in a small jar, shaking it a few times to permit evapora tion, and then holding the sample hose of the instrument m the mouth of the jar and press ing the aspirator bulb the required number of times If there is any question as to the in dicator's accuracy, it should be calibrated against a standard or returned to the manufac turer for checking The sampling hose should be kept where flammable liquid, steam, or water will not be drawn into the instrument Any of these sub stances would put it out of service Hot vapors also may affect the indicator if they condense inside Lead contamination can be encountered when sampling leaded gasolines and can be avoided by use of special high temperature filaments A tank, tested before being cleaned, may be found vapor-free However, if it contains sludge or scale, flammable liquid and vapor 'US Department of Commerce, Office of Tech nical Services SparkmgCharactenstics and Safety Hazards of Metalltc Materials Technical Report No NCF-T-1-57, PB 131131 1019
refid# bBkq5bvp7oXpd91RN6rp8QXqy1 page