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Ferric acetates iodid

Incompot (of all salts of morphine) Alkalies, tannic acid, iodic add, potassium permanganate, borax, chlorates, ferric chloride, iodides, lead acetate, magnesia, spirit nitrous ether, mercury bichloride, gold salts. [Pg.989]

A number of methods have been proposed for the detection of rancidity. The determination of active oxygen consists of dissolving the fat in a suitable medium such as chloroform and acetic acid, adding potassium iodide, and titrating the liberated iodine with a standard thiosulfate solution (16, 20). This is perhaps the most widely used method at the present time. Another procedure which has been proposed for the detection of peroxides employs ferrous ammonium sulfate and ammonium thiocyanate in acetone. The resulting red color of ferric thiocyanate is measured spectrophotometrically, and is said by the authors to yield more reproducible results than do the usual titration methods (21). [Pg.56]

Chemical Reactions. Mannitol is regenerated by treatment of the hexanitrate with Amm sulfide (Ref 6), iron in acet ac (Ref 7), ferric chloride (Ref 14), or with hydrogen iodide... [Pg.31]

To make a peroxide test, place a few milligrams of sodium iodide, a trace of ferric chloride, and 2-3 ml. of glacial acetic acid in a test tube and carefully add 1-2 ml. of the ether solution. [Pg.56]

Magnesium powder. Ferric oxide. Aluminum powder Potassium permanganate, Adamantane, Bromine, Sodium sulfite. Hydrochloric acid. Glacial acetic acid. Aluminum foU, Toluene, Methylene iodide. Acetonitrile, Tetrahydrofuran, Sodium hydroxide. Acetone, Magnesium sulfate. Aluminum chloride. Chloroform... [Pg.337]

Synonym Ammonia Water Amfbnioformaldehyde Ammonium Acetate Ammonium Acid Fluoride Ammonium Amidosulfonate Ammonium Amidosulphate Ammonium Benzoate Ammonium Bicarbonate Ammonium Bichromate Ammonium Bifluoride Ammonium Carbonate Ammonium Chloride Ammonium Citrate Ammonium Citrate, Dibasic Ammonium Decaborate Octahydrate Ammonium Dichromate Ammonium Disulfate-Nickelate (II) Ammonium Ferric Citrate Ammonium Ferric Oxalate Trihydrate Ammonium Ferrous Sulfate Ammonium Fluoride Ammonium Fluosilicate Ammonium Formate Ammonium Gluconate Ammonium Hydrogen Carbonate Ammonium Hydrogen Fluoride Ammonium Hydrogen Sulfide Solution Ammonium Hydroxide Ammonium Hypo Ammonium Hyposulfite Ammonium Iodide Ammonium Iron Sulfate Ammonium Lactate Ammonium Lactate Syrup Ammonium Lauryl Sulfate Ammonium Molybdate Ammonium Muriate Ammonium Nickel Sulfate Ammonium Nitrate Ammonium Nitrate-Urea Solution Ammonium Oleate... [Pg.21]

Determination of the Hydroperoxide. Glacial acetic acid (30 ml.) containing 0.0005% ferric chloride hexahydrate and 5 ml. saturated potassium iodide solution was added to an aliquot of the hydroperoxide solution which had been flushed with nitrogen. The mixture was stored in the dark for 10 minutes, diluted with water (50 ml.), and the liberated iodine was titrated with sodium thiosulfate solution using starch as indicator. [Pg.156]

Most Williamson reactions proceed by the 8 2 mechanism, but there is evidence (see p. 446) that in some cases the SET mechanism can take place, especially with alkyl iodides. Secondary alcohols have been converted to the corresponding methyl ether by reaction with methanol in the presence of ferric nitrate nonahy-drate. Vinyl ethers have been formed by coupling tetravinyl tin with phenols, in the presence of cupric acetate and oxygen. " The palladium-catalyzed coupling of vinyl triflates and phenols has also been reported. ... [Pg.531]

Benzalacetone has been obtained in small yield by drv distillation of a mixture of calcium acetate and calcium cinnamate (1) by heating the sodium derivative of cinnamaldehyde with methyl iodide (2) by heating cinnamaldehyde and methyl alcohol with zinc chloride (2) by heating acetone and benzaldehyde with acetic anhydride or zinc chloride (3). It is also formed when styrene and acetyl chloride are condensed by means of stannic chloride and the product is treated with diethylaniline (4) and when the vapors of cinnamic acid and acetic acid are passed together over ferric oxide at 470-490° (5). The only practical method, however, consists in condensing benzaldehyde and acetone by means of dilute aqueous alkali (6). [Pg.210]

The early work on this compound was confused by Pschorr s failure to recognize its phenolic nature. He noted the alkali-soluble nature of the methiodide and the production of a mono-acetyl derivative, but concluded, on account of the apparent insolubility of the parent base in alkali, that fission of the cyclic ether fink occurred during the reactions of the base with acetic anhydride and methyl iodide [7]. That /3-ethylthiocodide is indeed a phenol was demonstrated by Morris and Small [3] it gives coloured solutions with alcoholic ferric chloride and readily couples with diazonium salts in alkaline solution to give red dyes moreover it is soluble in alkali, though not readily so, being a very weakly acidic phenol. [Pg.245]

D-mannopyranose), as demonstrated by paper electrophoresis, and (c) boric acid.106,114 Levoglucosan (6) does not itself show any tendency to form either similar anionic complexes392-395 or complexes with boric acid and its derivatives106,301,394,396,397 nevertheless, complexes with methanolic sodium acetate and potassium398 or sodium iodide,387 and with alkali hydroxides have been described.397,399,400 A zinc-ferric complex of levoglucosan of undefined structure,401,402 and complexes of levoglucosan esters with Lewis acids, have been prepared. [Pg.55]

Ethers Acetyl p-toluenesulfonate. Boron tribromide. Boron trichloride. Boron trifluoride etherate—Acetic anhydride. Ferric chloride. Methylmagnesium iodide. Pyridine hydrochloride. Sodium borohydride. Sodium iodide. [Pg.513]

Copper hydroxide (ic) Copper iodide (ous) Cupric sulfate anhydrous Ferric chloride Ferric chloride hexahydrate Ferrous sulfate anhydrous L-Glutamine Griseofulvin L-Histidine Iodine Iron ammonium citrate Manganese acetate (ous) Manganese chloride (ous), tetrahydrate Manganese citrate (ous) Phenothiazine... [Pg.5238]

Chemicals used in the quality control analyses in the shieided glove box (SGB) and ventilation hoods of the Quality Control Laboratory involve small (less than a liter) quantities of some acidic and basic chemicals, including ammonium thiocyanate, stannous chloride, sulfuric, nitric, and hydrochloric acids, ferric sulfate, carrier solutions, ethyl acetate, sodium nitrite, chloroform, sodium hydroxide, and potassium iodide. Material Safety Data Sheets for any processes implemented in the HCF are reviewed in accordance with the SNL ES H Manual to identify any carcinogens or other hazardous materials. Operations in the SGB for preparation of various Mo-99 product dilution samples would require a small bulk supply of sodium hydroxide (0.1 N NaOH). Quality control analysis sample preparation operations require small bulk supplies of the above chemicals. Workers performing quaiify control analysis use chemical handling procedures as required by the Sandia ES H Manual. [Pg.103]


See other pages where Ferric acetates iodid is mentioned: [Pg.219]    [Pg.292]    [Pg.149]    [Pg.142]    [Pg.210]    [Pg.212]    [Pg.393]    [Pg.292]    [Pg.109]    [Pg.201]    [Pg.464]    [Pg.694]    [Pg.695]    [Pg.982]    [Pg.558]    [Pg.40]    [Pg.21]    [Pg.851]    [Pg.210]    [Pg.212]    [Pg.393]    [Pg.133]    [Pg.259]    [Pg.816]    [Pg.245]    [Pg.142]    [Pg.114]    [Pg.114]    [Pg.142]    [Pg.468]    [Pg.582]   
See also in sourсe #XX -- [ Pg.155 ]




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