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165results about "Preparation from carboxylic acid amides" patented technology

Process for obtaining an organic acid from an organic acid ammonium salt, an organic acid amide, or an alkylamine organic acid complex

InactiveUS6926810B2Simple and cost-effective recoveryPreparation from carboxylic acid saltsOrganic compound preparationOrganic acidHeteroazeotrope
Disclosed herein are methods for the recovery of an organic acid, such as a heat stable lactic acid, from a feed stream which contains at least one of an organic acid amide, an organic acid ammonium salt, or an alkylamine-organic acid complex. The feed stream is mixed with at least one azeotroping agent. The azeotroping agent is a hydrocarbon capable of forming at least one azeotrope with the organic acid that is produced by the thermal decomposition of the amide, ammonium salt, or complex in the feed stream. Preferably the azeotrope is a heteroazeotrope. The mixture of the feed stream and the azeotroping agent is heated to produce a vapor stream. The azeotrope is a component of the vapor stream. The vapor stream can be condensed to a liquid stream, and the organic acid is recovered in the liquid stream that is produced. When the azeotrope is a heteroazeotrope, the vapor stream can be condensed into a liquid stream, which can be separated into a first phase and a second phase. The first phase contains the highest concentration of organic acid and the second phase contains azeotroping agent. The organic acid can be further purified and/or concentrated from the separated first phase or from the liquid stream.
Owner:TATE & LYLE INGREDIENTS AMERICAS INC

Method for producing adipic acid, hexamethylenediamine hydrochloride and polyhexamethylene (di)guanidine chloride from nylon-66 through depolymerization

The invention discloses a method for producing adipic acid, hexamethylenediamine hydrochloride and polyhexamethylene (di)guanidine chloride from waste nylon-66 serving as a raw amerial through depolymerization, which is characterized by comprising the following steps of: depolymerizing the waste nylon-66 by using hydrochloric acid to obtain refined adipic acid and hexamethylenediamine hydrochloride; polymerizing the hexamethylenediamine hydrochloride and dicyandiamide (in a molar ratio of 1:1) at the temperature of between 170 and 190DEG C for 1 to 3 hours to obtain a white or pale yellow solid polyhexamethylene diguanidine chloride; and adding dicyandiamide and ammonium chloride powder in a molar ratio of 1:2 into a reactor, performing reaction at high temperature for 1 to 3 hours, slowly adding hexamethylenediamine hydrochloride powder, continuously reacting for 3 to 7 hours to obtain a white or pale yellow solid polyhexamethylene guanidine chloride. The method improves production efficiency, reduces production cost, and solves the problems of difficult separation of the product hexamethylenediamine due to depolymerization, low yield and poor benefit; and the technological process is environment-friendly, simple and convenient, and is suitable for industrial production.
Owner:NINGBO UNIV

Environment-friendly technology for preparing ketoleucine calcium in aqueous phase

The invention relates to an environment-friendly technology for preparing ketoleucine calcium in an aqueous phase. Isobutylidene hydantoin and a calcium chloride aqueous solution serve as raw materials, and water serves as a solvent. The environment-friendly technology comprises the steps that heating reflux hydrolysis is carried out on the isobutylidene hydantoin in water and industrial liquid alkali, the calcium chloride aqueous solution is dropwise added, the mixed solution is filtered, filtered liquid is collected and cooled, hydrochloric acid acidification is carried out, vacuum nitrogen displacement is carried out, caustic soda liquid is added for alkalization, cooling is carried out, the calcium chloride aqueous solution is dropwise added, calcium salt is obtained, cooling is carried out, a crude product is obtained through filtering, the crude product is refined in purification water, and a ketoleucine calcium refined product is obtained. The environment-friendly technology for preparing the ketoleucine calcium in the aqueous phase has the advantages of being easy to operate, simple in steps, high in yield coefficient, good in product quality, environmentally friendly and the like. According to the environment-friendly technology for preparing the ketoleucine calcium in the aqueous phase, the environment-friendly water is adopted as the solvent completely, the requirement of green chemistry development is met, the pollution problem is solved from the source, and the environment-friendly technology is suitable for industrialized mass production.
Owner:SHAOXING MINSHENG PHARMA

Green process of circular economy industry chain for co-production of industrial sulfanilamide and hydroxylamine products and organic acid downstream products

ActiveCN113321578ASolve the technical problems of separation and purificationHigh economic valueChlorine/hydrogen-chloride purificationOrganic compound preparationAlkaneNitroalkane
The invention provides a green process of a circular economy industry chain for co-production of industrial sulfanilamide and hydroxylamine products and organic acid downstream products. The process comprises the following steps that hydrochloric acid mixed acid is separated and purified to obtain sulfuric acid and co-produced hydrochloric acid, and the obtained sulfuric acid enters a sulfuric acid mixed acid treatment route; partial co-produced hydrochloric acid and nitroalkane are subjected to a hydrolysis reaction to obtain organic mixed acid and co-produced hydroxylamine hydrochloride, and the organic mixed acid is separated and purified to obtain co-produced organic acid; the sulfuric acid mixed acid is separated and purified to obtain organic matters and co-produced sulfuric acid; the organic matters are subjected to reactive crystallization to co-produce p-aminobenzene sulfonic acid; and partial co-production sulfuric acid and nitroalkane are subjected to a hydrolysis reaction to obtain a co-production hydroxylamine sulfate product and organic mixed acid, and the organic mixed acid is separated to obtain co-produced organic acid. According to the process, a green circular economy industrial chain of industrial sulfanilamide is realized, and meanwhile, a green circular economy industrial chain of hydroxylamine products and organic acid downstream products can be co-produced.
Owner:湖南吴赣药业有限公司
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