生物催化与声化学在油酸乙酯生产中的结合

Natália Alves de Almeida, I. G. Rosset
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引用次数: 0

摘要

脂肪酸烷基酯(faae)是一类天然中性脂类,可由游离脂肪酸(FFAs)与短链醇在酶催化下酯化而产生。在这项研究中,评估了脂肪酶在没有共溶剂的情况下,利用生物催化和超声(超声)相结合的方法,在油酸与乙醇的酶促酯化反应中的应用。考察了脂肪酶类型、酶用量、反应时间、乙醇水合水平和酶周转等因素对酶促合成油酸乙酯的影响。在10% (w/w)的条件下,南极脂肪酶在不到10 h的时间内提供95%以上的产率。使用含水乙醇(5%的水)的产量略有下降,但仍保持在90%以上的油酸乙酯产量。C. antarctica脂肪酶在经过10个反应循环后仍未表现出效率损失。生物催化与超声辐射相结合可获得较高的产率,表明这两种手段的结合可能是酶促合成油酸乙酯的良好选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combination of biocatalysis and sonochemistry in the ethyl oleate production
Fatty acid alkyl esters (FAAEs) are a family of natural neutral lipids and can be produced cleanly and sustainably by esterification of free fatty acids (FFAs) with short chain alcohols using enzymatic catalysts. In this study, it was evaluated the use of lipases in enzymatic esterification of oleic acid with ethanol using the combination of biocatalysis and sonochemistry (ultrasound) in the absence of co-solvents. Reaction parameters, such as type of lipase, amount of enzyme, reaction time, alcohol hydration level and enzyme turnover were evaluated for the enzymatic synthesis of ethyl oleate. C. antarctica lipase provided yields above 95% in less than 10 h with 10% (w/w) of lipase. The use of hydrous ethanol (5% of water) showed a slight drop in yield but remained above 90% of ethyl oleate production. C. antarctica lipase showed no loss of efficiency even after 10 reaction cycles. The combination of biocatalysis and ultrasound radiation provided a high yield, showing that the combination of these tools may be a good choice for the enzymatic synthesis of ethyl oleate.
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