首页> 外文期刊>Journal of molecular catalysis, B. Enzymatic >Enzymatic esterification between n-alcohol homologs and n-caprylic acid in non-aqueous medium under microwave irradiation
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Enzymatic esterification between n-alcohol homologs and n-caprylic acid in non-aqueous medium under microwave irradiation

机译:微波辐射下非水介质中n-醇同系物和n-辛酸之间的酶促酯化反应

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摘要

The enzymatic esterification between n-alcohol homologs and n-caprylic acid catalyzed by lipozyme RM IM (LRI) in microwave field was investigated. Some interesting findings were obtained. The optimum reaction temperature slightly shifted from that in enzymatic esterification by conventional heating. n-Alcohol homologs used in this experiment showed substrate specificity in terms of the odd and even carbon numbers. THF expressed abnormal solvent effect. Whereas in the contrastive enzymatic esterification by conventional heating, the above mentioned substrate specificity and solvent effect were not observed. All the above phenomena could be explained by both thermal and non-thermal effect of microwave on enzyme and substrates. Further investigation revealed that microwave irradiation reduced the apparent activation energy of the enzymatic reaction according to Arrhenius equation, which is considered as one of the causes increasing initial reaction rate. (c) 2005 Elsevier B.V. All rights reserved.
机译:研究了脂酶RM IM(LRI)在微波场中对正丙醇和正辛酸之间的酶促酯化反应。获得了一些有趣的发现。最佳反应温度与常规加热下酶促酯化反应的温度略有不同。在该实验中使用的正醇同系物以奇数和偶数碳数显示了底物特异性。 THF表现出异常的溶剂作用。而在通过常规加热进行的对比酶促酯化中,未观察到上述底物特异性和溶剂作用。所有上述现象都可以通过微波对酶和底物的热和非热作用来解释。进一步的研究表明,微波辐射根据Arrhenius方程降低了酶促反应的表观活化能,这被认为是提高初始反应速率的原因之一。 (c)2005 Elsevier B.V.保留所有权利。

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