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Cupric dichloride

SYNS COPPER BICHLORIDE COPPER(2+) CHLORIDE COPPER(II) CHLORIDE CUPRIC CHLORIDE CUPRIC DICHLORIDE... [Pg.384]

Alioi658 CCRIS 6883 Coclor Copper bichloride Copper chloride Copper chloride (CuCl2) Copper dichloride Copper(2- ) chloride Copper(ll) chloride Copperfll) chloride (1 2) Coppertrace Cupric chloride Cupric dichloride EINECS 231-210-2 HSDB 259 ... [Pg.164]

Cupric dichloride. See Copper chloride (ic) Cupric dinitrate. See Copper nitrate (ic)... [Pg.1101]

The synthesis of dithieno[3,2-3 2, 3 -<7]thiophene 15a has also been accomplished using a combination of the methods described by De Jong et al. and Brandsma . In this approach, 3-bromothiophene 298 was lithiated and the 3-lithiothiophene 308 species reacted with sulfur dichloride to give di(3-thienyl)sulfide 309. Ring closure of 309 was effected using -butyllithium followed by addition of cupric chloride to yield dithieno[3,2-3 2, 3 -. [Pg.675]

Aliphatic and aromatic sulfides undergo desulfurization with Raney nickel [673], with nickel boride [673], with lithium aluminum hydride in the presence of cupric chloride [675], with titanium dichloride [676], and with triethyl phosphite [677]. In saccharides benzylthioethers were not desulfurized but reduced to toluene and mercaptodeoxysugars using sodium in liquid ammonia [678]. This reduction has general application and replaces catalytic hydrogenolysis, which cannot be used [637]. [Pg.86]

Occluded hydrogen is more reactive chemically than the normal gas. Hydrogenated palladium precipitates mercury and mercurous chloride from an aqueous solution of the dichloride, without any evolution of hydrogen. It reduces ferric salts to ferrous potassium ferricyanide to ferrocyanide chlorine water to hydrochloric add iodine water to hydriodic acid 2 chromates to chromic salts ceric to cerous salts whilst cupric, stannic, arsenic, manganic, vanadic, and molybdic compounds are also partially reduced.3... [Pg.181]

CHARACTERIZATION OF ALCOHOLS 4-(4-Nitrophcnylazo)benzoyl chloride. CHLORINATION Antimony(V) chloride. t-Butyl hypochlorite. 1-Chlorobenzotri-aznle. N-Chloropolymaleimide. Cupric chloride. lodobenzene dichloride. Sulfur-yl chloride. Titanium tetrachloride. Tri-chloramine. [Pg.582]

Consider the case of cupric chloride. Under many circumstances of a general nature, such as reactions using solutions of the compound, the name cupric chloride or, better still, copper dichloride suffices. If referring especially to the hydrated solid salt, either cupric chloride dihydrate or copper dichloride dihydrate is used. The full structure of the crystalline hydrated chloride is known, and if matters involving this structure were being dealt with, then the full name should be given as frans-copper dichloride dihydrate H20 Cl... [Pg.7]

Chlorination (-Butyl hypochlorite. N-Chiorosuccinimide. Cupric chloride. Dibenzoyl peroxide. Dimethylformamide. Phosphorus pentachloride. Phosphorus trichloride. Selenium oxychloride. Sodium chlorate. Sulfuryl chloride. Tetra- -butylammonium iodotetrachloride. N,2,4,6-Tetrachloroacetanilide. Thionyl chloride. Trichloromethanesulfonyl chloride. Triphenylphosphine dichloride. [Pg.656]

Chlorination /-Butylhypochlorite. Catechyl phosphorus trichloride. N-Chlorosuccinimide. Cupric chloride. N,N-Diethyl-l,2,2-trichlorovinylamine. Iodobenzene dichloride. Mesyl chloride. Sulfuryl chloride. [Pg.513]

Copper sulfate Cresol Cupric chloride, 5% Cupric chloride, 50% Cyclohexane Cyclohexanol Dibutyl phthalate Dichloroacetic acid Dichloroethane (ethylene dichloride) 300 149... [Pg.202]

Cupric sulfate anhydrous Cupric sulfate pentahydrate 1,1-Dichloroethane Dimethyl behenamine Ethylene dichloride Formic acid Manganese sulfate (ous) Mesityl oxide Nitric acid Pine (Pinus palustris) tar Pine (Pinus palustris) tar oil Polyethylenepolyamine Sodium oleate Sulfurous acid ore flotation agent... [Pg.5495]

Ethylene is reacted with dry hydrogen chloride (HCl) and either air or pure oxygen over a supported cupric chloride catalyst in a fluidized bed to produce ethylene dichloride (EDC) and water by the vapor phase reaction... [Pg.430]

In the oxychlorination processes a mixture of ethylene, air and hydrogen chloride is passed over a catalyst of cupric chloride on an inert support at 250—315°C. Ethylene dichloride is obtained in about 90% yield and is then dehydrochlorinated (and the hydrogen chloride recycled). In some processes, which operate at higher temperatures, the ethylene dichloride is cracked in situ so that vinyl chloride is obtained in a one-stage operation. The overall oxy chlorination reaction may be represented as follows ... [Pg.87]

Butyric Acid, 200 F Calcium Chlorate, 150 F Calcium Chloride, 200 F Carbon Tetrachloride, boiling Chloracetic Acid, 125 F Chlorinated Water, 150 F Chlorine Dioxide, 150 F Chlorine, Wet, 150 F Chlorobenzene, 175 F Chromic Acid, 30%, ambient Citric Acid, 200 F Copper Sulfate, 200 F Cupric Chloride, 200 F Dichlorobutane, 200 F Dimethyl Formamide, 200 F Diethyl Sulfate, 200 F Ethyl Alcohol, toiling Ethyl Ether, toiling Ethyl Nitrate, toiling Ethylene Dichloride, 1.50 F Fatty Acids, 200 F... [Pg.34]

In the late 1950s processes for producing ethylene dichloride from ethylene by oxychlorination rather than by direct chlorination were developed. In these processes ethylene is treated with a mixture of oxygen and hydrogen chloride in the presence of a catalyst consisting of a mixture of cuprous and cupric chlorides ... [Pg.93]

Ferrous Chloride Iron (II) Chloride Iron Dichloride Blue Vitriol Copper Sulfate Cupric Sulfate... [Pg.3489]


See other pages where Cupric dichloride is mentioned: [Pg.262]    [Pg.1597]    [Pg.878]    [Pg.1037]    [Pg.262]    [Pg.1597]    [Pg.878]    [Pg.1037]    [Pg.634]    [Pg.68]    [Pg.426]    [Pg.617]    [Pg.159]    [Pg.43]    [Pg.635]    [Pg.23]    [Pg.192]    [Pg.200]    [Pg.201]    [Pg.192]    [Pg.200]    [Pg.201]    [Pg.29]    [Pg.217]    [Pg.270]   
See also in sourсe #XX -- [ Pg.4 , Pg.262 ]




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