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首页> 外文期刊>Chemical Engineering Science >Immobilized lipase-catalysed esterification and transesterification reactions in non-aqueous media for the synthesis of tetrahydrofurfuryl butyrate: comparison and kinetic modeling
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Immobilized lipase-catalysed esterification and transesterification reactions in non-aqueous media for the synthesis of tetrahydrofurfuryl butyrate: comparison and kinetic modeling

机译:在非水介质中固定化脂肪酶催化的酯化和酯交换反应,用于合成丁酸四氢糠酯:比较和动力学模型

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Immobilized lipase-catalyzed synthesis of tetrahydrofurfuryl butyrate is reported in this paper. Esterification and transesterification of tetrahydrofurfuryl alcohol (THFA) with butyric acid (BA) and transesterification with ethyl butyrate (EB) to prepare tetrahydrofurfuryl butyrate (THFB) were studied systematically including kinetic modeling. A series of immobilized lipases such as Novozym 435, Lipozyme IM 20, Pseudomonas species lipase on toyonite (PSL/Toyo), Candida rugosa lipase (CRL) on polypropylene, CRL on egg shells and CRL on celite were screened to establish that Novozym 435 was the best catalyst for both esterification and transesterification at 30degreesC. The effects of various parameters on reaction rates were studied in detail for both reactions with Novozym 435. The ping-pong bi-bi mechanism with inhibition by the substrate THFA fits the data for esterification whereas the ping-pong bi-bi mechanism with inhibition by both the reactants (THFA and EB) and both the products (THFB and ethanol) is valid for the transesterification reaction. The kinetic parameters deduced from these models were used to simulate the conversions, which are in good agreement with the experimental values. Since transesterification suffers inhibition by both the substrates and products, esterification is a better method compared to transesterification. (C) 2003 Elsevier Ltd. All rights reserved. [References: 23]
机译:本文报道了固定化脂肪酶催化的丁酸四氢糠酯的合成。系统研究了四氢糠醇(THFA)与丁酸(BA)的酯化和酯交换反应,以及丁酸乙酯(EB)的酯交换反应,制备了丁酸四氢糠酯(THFB),包括动力学模型。筛选了一系列固定化的脂肪酶,例如Novozym 435,Lipozymeme 20,在Toyonite(PSL / Toyo)上的假单胞菌属脂肪酶,在聚丙烯上的假丝酵母念珠菌(CRL),在蛋壳上的CRL和在硅藻土上的CRL,以确定Novozym 435是30℃下酯化和酯交换反应的最佳催化剂。对于使用Novozym 435的两个反应,均详细研究了各种参数对反应速率的影响。受底物THFA抑制的乒乓bi-bi机理与酯化数据吻合,而受底物THFA抑制的乒乓bi-bi机理拟合反应物(THFA和EB)以及产物(THFB和乙醇)均适用于酯交换反应。从这些模型推导出的动力学参数用于模拟转化,与实验值非常吻合。由于酯交换反应受到底物和产物的抑制,因此与酯交换反应相比,酯化反应是一种更好的方法。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:23]

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