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Copper® chloride anthracene

Ammoniacal copper sulfate Anthracene Cadmium chloride Potassium ferricyanide printing, cellulosic textiles p-Phenylenediamine dihydrochloride printing, plasticized fabrics 2-Hexanone printing, security Benzidine dihydrochloride printing, textile industrial Propylene glycol alginate printing, textiles... [Pg.5573]

The initial drum inventory conducted in 1979 found 17 051 drums on the surface, including 11 628 empty ones. The EPA analyzed the property and creek and found 140 chemical substances. The chemicals found most often and in the highest concentrations were xylene, methyl ethyl ketone, methylene chloride, acetone, phthalates, anthracene, toluene, fluoranthene, alkyl benzene, vinyl chloride, dichloroethylene, and aliphatic acids. Polychlorobi-phenyls were detected in low concentrations and several metals including barium, zinc, copper, strontium, magnesium, and chromium were detected in concentrations exceeding background levels. [Pg.2804]

Safety Commission Consumer Products Copper (Cu) Corrosives Corticosteroids Cosmetics and Personal Care Products Cotinine Coumarins Creosote Cresols Cromolyn Cumene Cumulative Risk Assessment Cyanamide Cyanide Cyanogen Chloride Cyclodienes Cyclohexamide Cyclohexane Cyclohexene Cyclophosphamide Cyclosporine Cyfluthrin Cypermethrin Cysteine Cytochrome P-450 "2,4-D (2,4-Dichlorophenoxy Acetic Acid)" Limonene Dalapon DDT/DDE/DDD Decane DEBT (Diethyltoluamide) DEE Deferoxamine DEHP (Di-Ethyl Hexyl Phthalate) Delaney Clause Deltamethrin Deodorants Detergent Developmental Toxicology Dextromethorphan Diazepam Diazinon Diazoxide Dibenzofuran " Dib enz [a, h] anthracene" Dibromochloropropane Dibutyl phthalate Dicamba Dichlone Dichlorobenzene Dichloroethanes "Dichloroethylene, 1,1-"... [Pg.2999]

Anthracene (Fig. 23) has also been polymerized using a method similar to that for the preparation of polyparaphenylene and polynaphthalene. A composite electrolyte of copper(II) chloride and lithium hexafluoroarsenate produced polyanthracene with a conductivity of 10" S cm" [362,372]. An electrolyte of lithium hexafluoroarsenate and NiCl2[P(allyl)2Ph]2, which has successfully produced polyparaphenylene, gives polyanthracene with a conductivity of 1.2 x 10" S cm" [369]. Elemental analysis, nuclear magnetic resonance, and infrared results are consistent with polyanthracene. [Pg.805]

Published information on characterization of seven different materials has been gathered from the literature to serve as a guide to the use of existing analytical techniques. These seven materials are copper, silicon, gallium arsenide, potassium chloride, zinc sulfide, anthracene, and trace element glasses. Collectively they represent an extremely broad spectrum of analytical problems and illustrate both strong and weak points in the application of the present state of the art of measurement of composition. [Pg.416]


See other pages where Copper® chloride anthracene is mentioned: [Pg.17]    [Pg.201]    [Pg.759]    [Pg.71]    [Pg.1867]    [Pg.255]    [Pg.125]    [Pg.22]   
See also in sourсe #XX -- [ Pg.15 ]




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