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首页> 外文期刊>Journal of the American Oil Chemists' Society >Enzymatic production of alkyl esters through alcoholysis: A critical evaluation of lipases and alcohols
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Enzymatic production of alkyl esters through alcoholysis: A critical evaluation of lipases and alcohols

机译:通过醇解酶法生产烷基酯:对脂肪酶和醇类的严格评估

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This paper focuses on a detailed evaluation of commercially available immobilized lipases and simple monohydric alcohols for the production of alkyl esters from sunflower oil by enzymatic alcoholysis. Six lipases were tested with seven alcohols, including straight and branched-chain primary and secondary alcohols. The reactions were conducted in a batch stirred reaction vessel using stoichiometric amounts of substrates under solvent-free conditions. Dramatic differences in alcoholysis performance were observed among the different lipases. For most of the alcohols, Novozym 435 produced the highest yield of FA alkyl esters, with yields well over 90% for methanol, absolute ethanol, and 1-propanol. Overall, 96% ethanol was the preferred alcohol for all lipases except Novozym 435, and ethanolysis reactions reached the maximal conversion efficiency. Increasing the water content in the system resulted in an increased degree of conversion for all lipases except Novozym 435. The secondary alcohol 2-propanol significantly reduced the alcoholysis reaction with all lipases; however, the branch-chain isobutanol was more advantageous than linear 1-butanol for Novozym 435, Lipozyme RM IM, and Lipase PS-C. Many commercial immobilized lipases are highly efficient and promising for the production of alkyl esters, offering high reaction yields and a simple operation process.
机译:本文着重于详细评估可商购的固定化脂肪酶和简单的一元醇,用于通过酶促醇解从葵花油生产烷基酯。用7种醇(包括直链和支链伯醇和仲醇)测试了6种脂肪酶。反应在间歇搅拌的反应容器中在无溶剂条件下使用化学计量的底物进行。在不同的脂肪酶之间观察到酒精中毒表现的显着差异。对于大多数醇而言,Novozym 435的FA烷基酯收率最高,甲醇,无水乙醇和1-丙醇的收率远高于90%。总体而言,除Novozym 435以外,所有脂肪酶均首选96%乙醇作为乙醇,乙醇化反应达到最大转化效率。系统中水含量的增加导致除Novozym 435以外的所有脂肪酶的转化率均提高。仲醇2-丙醇显着降低了与所有脂肪酶的醇解反应。但是,对于Novozym 435,Lipozyme RM IM和Lipase PS-C,支链异丁醇比线性1-丁醇更具优势。许多商业化的固定化脂肪酶非常高效,并有望用于烷基酯的生产,具有很高的反应收率和简单的操作过程。

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