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Sulfate acidity

Reaction conditions depend on the reactants and usually involve acid or base catalysis. Examples of X include sulfate, acid sulfate, alkane- or arenesulfonate, chloride, bromide, hydroxyl, alkoxide, perchlorate, etc. RX can also be an alkyl orthoformate or alkyl carboxylate. The reaction of cycHc alkylating agents, eg, epoxides and a2iridines, with sodium or potassium salts of alkyl hydroperoxides also promotes formation of dialkyl peroxides (44,66). Olefinic alkylating agents include acycHc and cycHc olefinic hydrocarbons, vinyl and isopropenyl ethers, enamines, A[-vinylamides, vinyl sulfonates, divinyl sulfone, and a, P-unsaturated compounds, eg, methyl acrylate, mesityl oxide, acrylamide, and acrylonitrile (44,66). [Pg.109]

Fig. 1. Sulfonated and sulfated acid products viscosities after 98% conversions at varying temperatures where the vertical line indicates the maximum temperature for batch sulfonation using SO to minimi2e color deterioration lines A—C represent branched C 2 alkyl ben2ene (BAB) sulfonic acid from SO, oleum (settied), and oleum (whole mixture), respectively lines D and E, lauryl alcohol 3-ethoxylate sulfuric ester (SO ) and lauryl alcohol sulfuric ester... Fig. 1. Sulfonated and sulfated acid products viscosities after 98% conversions at varying temperatures where the vertical line indicates the maximum temperature for batch sulfonation using SO to minimi2e color deterioration lines A—C represent branched C 2 alkyl ben2ene (BAB) sulfonic acid from SO, oleum (settied), and oleum (whole mixture), respectively lines D and E, lauryl alcohol 3-ethoxylate sulfuric ester (SO ) and lauryl alcohol sulfuric ester...
Sulfated Acids, Amides, and Esters. Reaction with sulfuric acid may be carried out on fatty acids, alkanolamides, and short-chain esters of fatty acids. The disodium salt of sulfated oleic acid is a textile additive and an effective lime soap dispersant. A typical sulfated alkanolamide stmcture is CiiH23C0NHCH2CH20S03Na. Others include the sulfates of mono and diethanolamides of fatty acids in the detergent range. The presence of... [Pg.244]

Ca.ta.lysts for Acetylation. Sulfuric acid is the preferred catalyst for esterifying cellulose and is the only known catalyst used commercially for this function. The role of sulfuric acid during acetylation has been discussed (77,78). In the presence of acetic anhydride, sulfuric acid rapidly and almost quantitatively forms the cellulose sulfate acid ester (77). Even in the absence of anhydride, the sulfuric acid is physically or mechanically retained (sorbed) on the cellulose. The degree of absorption is a measure of the reactivity or accessibiUty of different celluloses. [Pg.253]

Sulfuric acid reacts with acetic anhydride to form acetylsulfuric acid (79). This reaction is favored by low temperature and high anhydride concentration. In cellulose acetylation, probably both sulfuric acid and acetylsulfuric acid exist and react with cellulose to form cellulose sulfate acid ester. [Pg.253]

The acetylation reaction is stopped by the addition of water to destroy the excess anhydride, causing rapid hydrolysis of the combined sulfate acid ester (Eig. 7). This is followed by a much slower rate of hydrolysis of the acetyl ester groups. The rate of hydrolysis is controlled by temperature, catalyst concentration, and, to a lesser extent, by the amount of water. Higher temperatures and catalyst concentrations increase the rate of hydrolysis. Higher water content slightly iacreases the hydrolysis rate and helps minimize degradation (85). The amount of water also influences the ratio of primary to secondary... [Pg.253]

Cyclic sulfates rapidly react with the fluoride ion sources to give monofluoro derivatives Thus, the 2,3-cyclic sulfate of methyl-4 6 O benzylidene p D manno pyranoside cleanly reacts with tetramethylammonium fluoride to give methyl 4,6-0-benzylidene 2 deoxy 2 fluoro-p-D-glucopyranoside-3-sulfate Acid hydrolysis followed by acetylation gives 2 deoxy 2 fluoro-P-D-glucopyranoside triacetate in 84% isolated yield [5S] (equation 38)... [Pg.215]

The mechanism for alcohol sulfation is thought to be similar to that for LAB sulfonation involving the rapid formation of a metastable pyrosulfate species which decomposes less fast but still rapidly to alkyl hydrogen sulfate ( acid sulfate ) ... [Pg.658]

However, the contributions of sulfate, acid and metals from ground and surface waters that interact with the numerous tailings and waste rock dumps located... [Pg.331]

Peptides Dodecyl sulfate acid 2%PiOH alky ihenyl Octyl 217... [Pg.305]

The first important step is that of putting the sample (unknown) into solution. For metals and alloys, strong acids, such as HCI, HNCE, or aqua regia may be used. If the material is not fully dissolved by these adds, it should be fused, either with sodinin carbonate (alkaline fusion) or potassium add sulfate (acid fusion). Care should be exercised to make certain that no portion of the unknown is volatilized and thus lost during these procedures. [Pg.95]

Another mechanism of active pigments is neutralization of corrosive substances such as sulfates, acids and chlorides resulting in maintaining a constant pH value in the coating. [Pg.210]


See other pages where Sulfate acidity is mentioned: [Pg.943]    [Pg.104]    [Pg.67]    [Pg.53]    [Pg.61]    [Pg.61]    [Pg.69]    [Pg.70]    [Pg.245]    [Pg.246]    [Pg.247]    [Pg.660]    [Pg.299]    [Pg.67]    [Pg.244]    [Pg.89]    [Pg.115]    [Pg.943]    [Pg.10]    [Pg.300]    [Pg.281]    [Pg.1137]    [Pg.50]    [Pg.58]    [Pg.58]    [Pg.66]    [Pg.67]    [Pg.242]    [Pg.243]    [Pg.244]    [Pg.316]    [Pg.292]    [Pg.10]   
See also in sourсe #XX -- [ Pg.37 , Pg.186 ]




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4,5-Dehydroascorbate 2-sulfate Dehydroascorbic acid

Acetonitrile Acid potassium sulfate

Acid Ferric Sulfate

Acid aerosols sulfates

Acid metal sulfates and selenates

Acid potassium sulfate

Acid sulfate soils

Acidic sulfate aerosols

Acidic sulfates, differentiation

Acidity sulfate soils

Acidity sulfate-supported metal oxides

Alginic acid sulfate, gelatinization

Alginic acid sulfated

Alginic acid sulfation

Amino acids complexation, copper sulfate

Ammonium sulfate Aminobenzoic acid

Ammonium sulfate, acidic

Ascorbic acid sulfate

Bile acid sulfates

Bile acid sulfates formation

Bile acid sulfates liver

Bile acid sulfates metabolism

Bile acid sulfates polarity

Bleomycinic acid Peplomycin sulfate

Calcium sulfate Dibasic acids

Calcium sulfate sulfuric acid production

Carboxylic Acids, Phosphate, Arsenate, and Sulfate

Cellulose, acid sulfate, carboxymethylation

Chenodeoxycholic acid sulfate

Chondroitin 4-sulfate major uronic acid

Chondroitin Sulfate and Hyaluronic Acid

Chondroitin sulfate effect on palmitic acid absorptio

Chondroitinsulfuric acid sulfated

Complexations, amino acids, copper sulfate

Constants sulfate complexes, acid

Copper sulfate-sulfuric acid tests

Copper-sulfate/sulfuric-acid

Dermatan sulfate major uronic acid

Determination of acid-soluble sulfates

Dimethyl sulfate acid catalysis

Diols, acid catalyzed sulfates

Eluents sodium sulfate/sulfuric acid

Fatty acid monoethanolamide sulfates

Fatty acids sulfation

Ferric sulfate-50% sulfuric acid test

Glucuronic Acid and Sulfate Conjugates of Target Analytes

Glycolic acid sulfate

Glycosaminoglycans 2-sulfated iduronic acid

Hyaluronic acid sulfate

Isopropyl acid sulfate

Keratin sulfate, hyaluronic acid

Lewis acid-catalyzed reactions copper®) sulfate

Lithocholic acid sulfate

Malonic acid, sulfate

Metal sulfates acid centers, structure

Metal sulfates acidic property

Nitric acid solutions, sulfate salts

Oxone: Peroxymonosulfuric acid, monopotassium salt, mixt. with dipotassium sulfate

Pectic acid sulfation

Phenol acid sulfate

Phenols, acid sulfates glycosides

Phenols, acid sulfates sulfate esters

Platinum acidic sulfate solution

Sodium acid sulfate

Solid acid catalysts sulfated carbons

Solid acid catalysts sulfated metal oxides

Stability constants sulfate complexes, acid

Sugar acids dermatan sulfate

Sugar acids heparan sulfate

Sugar acids heparin sulfate

Sugar sulfates acid hydrolysis

Sulfamic acid from hydroxylammonium sulfate

Sulfate Must Be Reduced to Sulfide before Incorporation into Amino Acids

Sulfate acid deposition

Sulfate acid deposition discussion

Sulfate acidic episodes

Sulfate sulfuric acid solutions

Sulfated fatty acid condensates

Sulfated fatty acid monoethanolamide

Sulfated hyaluronic acid

Sulfated zirconia acidity

Sulfates acid center structure

Sulfates s. Sulfuric acid esters

Sulfates tartaric acid

Sulfates, organic s. Sulfuric acid

Sulfates, organic s. Sulfuric acid esters

Sulfation xenobiotics with sulfuric acid

Sulfotransferase bile acid sulfation

Sulfuric acid Vinblastine sulfate

Sulfuric acid and sulfate solutions

Sulfuric acid esters dimethyl sulfate

Sulfuric acid production from calcium sulfate

Sulfuric acid sulfate

Sulfuric acid sulfated metal oxides

Sulfuric acid, reaction with diethyl sulfate

Sulfuric acid/hydrogen sulfate

Sulfuric-acid/ferric-sulfate

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