得到单取代山梨糖酯

G. S. Grigoryan, A. Malkhasyan
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引用次数: 0

摘要

多元醇酯近年来被广泛应用于医药、化妆品、食品、卫生、科技等各个领域。这是由这组物质的特定物理和化学性质保证的。多元醇是由单糖加氢得到的多羟基醇。这些化合物存在于天然糖中,在食品中用作膳食甜味剂。具有羧酸的多元醇酯在功能上可分为几个基团。因此,饱和羧酸酯С12-С18 -取代度从4:1到6:1主要是粘稠和坚硬的人造油,因此,用于医药,制药和美容。在工程上,多元醇酯主要用作机床、汽车和航空工业的高温润滑油。含有C4-C12羧酸或不饱和羧酸的多元醇酯通常是用于软膏、化妆品制剂等的液体或软油。取代度从1:1到3:1的多种多元醇酯尤其广泛地用作乳化剂、稳定剂、消泡剂、分散剂和洗涤剂。我们以前的研究主要集中在获得取代度最大的类油酯。以甘露醇、山梨醇、木糖醇和赤藓糖醇为例,获得了大量酯类样品,并确定了酯化反应、产物分离和分析的最佳条件。在这项工作中,我们设定了一个目标,研究获得山梨醇和山梨醇单取代酯的模式,这是非离子乳化剂和洗涤剂的兴趣。特别是,欧亚经济共同体的技术法规允许使用乳化剂:E491 -山梨糖单硬脂酸酯,E492 -山梨糖三硬脂酸酯,E493 -山梨糖单月桂酸酯,E494山梨糖单油酸酯,E495山梨糖单白璧酸酯。山梨醇单棕榈酸酯或span 40乳化剂是一种片状的黄褐色蜡。它由山梨醇一酐和二酐的混合物组成。它的液晶结构类似于皮肤的自然结构,容易吸收水分并有效滋润皮肤,将营养物质和药用物质深入皮肤。
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OBTAINING MONO-SUBSTITUTED SORBITAN ESTERS
Polyol esters have recently been widely used in various fields: medicine, cosmetics, food industry, sanitation, science and technology. This is ensured by the specific physical and chemical properties of this group of substances. Polyols are polyhydric alcohols obtained by hydrogenation of monosaccharides. These compounds are found in natural sugars and are used in food and as dietary sweeteners. Esters of polyols with carboxylic acids are functionally divided into several groups. Thus, esters of saturated carboxylic acids С12-С18 - with a degree of substitution from 4:1 to 6:1 are mainly thick and hard artificial oils and, accordingly, are used in medicine, pharmacy and cosmetology. In engineering, polyol esters are mainly used in the machine tool, automotive and aviation industries as high temperature lubricating oils. Polyol esters containing C4-C12 carboxylic acids or unsaturated carboxylic acids are generally liquid or soft oils for use in ointments, cosmetic preparations, and the like. A variety of polyol esters with a degree of substitution from 1:1 to 3:1 are particularly widely used as emulsifiers, stabilizers, defoamers, dispersants and detergents. Our previous studies have focused on obtaining oil-like esters with the maximum degree of substitution. Using the examples of mannitol, sorbitol, xylitol, and erythritol, numerous samples of esters were obtained and the optimal conditions for esterification reactions, isolation, and analysis of the obtained products were worked out. In this work, we set a goal to study the patterns of obtaining monosubstituted esters of sorbitol and sorbitan, which are of interest as nonionic emulsifiers and detergents. In particular, the technical regulations of the Eurasian Economic Community allow the use of emulsifiers: E491 – sorbitan monostearate, E492 – sorbitan tristearate, E493 – sorbitan monolaurate, E494 sorbitan monooleate, E495 sorbitan monopalmite. Sorbitan monopalmitate or span 40 emulsifier is a flaky yellowish brown wax. It consists of a mixture of mono- and dianhydrides of sorbitan. Its liquid crystal structure is similar to the natural structure of the skin, easily absorbs water and effectively moisturizes the skin, transfers nutrients and medicinal substances deep into the skin.
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