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Arsenic chloride tartaric acid

B. Pelletier23 obtained an antimony phosphide by the action of molten antimony on metaphosphoric acid with or without admixed carbon. B. Pelletier, and G. Landgrebe obtained a phosphide by the action of phosphorus on molten antimony, although W. Ramsay and R. W. E. Mclvor could obtain a product with only 1546 per cent, by direct action. The last-named prepared antimony monophosphide, SbP, by the action of phosphorus on a soln. of antimony tribromide in carbon disulphide. M. Ragg could not prepare the monophosphide by this process, nor by the action of phosphine on tartar emetic, or antimony trichloride. The phosphide prepared by the fusion processes is a brittle, white mass with a crystalline fracture the precipitated product is a red powder insoluble in carbon disulphide, ether, and benzene. O. Ruff found that phosphorus reacts with antimony chloride in the presence of aluminium chloride—vide supra, arsenic oxyphosphide. [Pg.851]

Incompat Acids, alkalies, alum, ammonia water, amyl nitrite benzoates betanaphthol, phenol, calomel, chloral hydrate, copper sulfate, ferric chloride ferrous sulfate chromium trioxide (chromic acid), cinchona alkaloids, hydrocyanic acid iodides iodine Lead subacetate mercuric chloride, orthoform potassium permanganate, resorcinol, sod. bicarbonate sod. salicylate (in powder) soln arsenic and mercury iodide, spirit nitrous ether (unless prescribed with sod, bicarbonate), syrup ferrous iodide, tartar emetic tannic acid, thymol, urethane, infusions of catechu, cinchona, rose leaves and uva ursi tinctures of catechu, ferric chloride, cinchona, hamanielis iodine, kino, and rhubarb. [Pg.113]


See other pages where Arsenic chloride tartaric acid is mentioned: [Pg.694]    [Pg.818]    [Pg.102]    [Pg.167]    [Pg.767]    [Pg.64]    [Pg.310]    [Pg.659]    [Pg.695]    [Pg.815]   
See also in sourсe #XX -- [ Pg.2 , Pg.479 ]




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