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An overview on the recent advances in the transesterification of vegetable oils for biodiesel production using chemical and biocatalysts

机译:使用化学和生物催化剂的植物油酯交换用于生物柴油生产的最新进展概述

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摘要

Biodiesel, chemically defined as monoalkyl esters of long chain fatty acids, are derived from renewable feed stocks like vegetable oils and animal fats. It is produced by both batch and continuous transesterification processes in which, oil or fat is reacted with a monohydric alcohol in the presence of a catalyst. The conventional method of producing biodiesel involves acid and base catalysts to form fatty acid alkyl esters. Downstream processing costs and environmental problems associated with biodiesel production and byproducts recovery have led to the search for alternative production methods and alternative substrates. Enzymatic reactions involving lipases can be an excellent alternative to produce biodiesel through a process commonly referred to as alcoholysis, a form of transesterification reaction or through an interesterification reaction. In order to increase the cost effectiveness of the process, the enzymes are immobilized using a suitable matrix. The use of immobilized lipases and whole cells may lower the overall cost, while presenting less downstream processing problems. Main focus of this paper is to discuss the important parameters that affect the biodiesel yield, various immobilization techniques employed, mechanisms and kinetics of transesterification reaction and the recent advances in continuous transesterification processes.
机译:生物柴油,化学上定义为长链脂肪酸的单烷基酯,衍生自可再生原料,例如植物油和动物脂肪。它是通过间歇和连续酯交换过程生产的,在这种过程中,油脂在催化剂的存在下与一元醇反应。生产生物柴油的常规方法涉及酸和碱催化剂以形成脂肪酸烷基酯。与生物柴油生产和副产物回收相关的下游加工成本和环境问题导致人们寻求替代的生产方法和替代的底物。涉及脂肪酶的酶促反应可以通过通常称为醇解,酯交换反应形式或酯交换反应的方法生产生物柴油,是一种极好的选择。为了增加该方法的成本效益,使用合适的基质将酶固定。固定化脂肪酶和全细胞的使用可以降低总成本,同时减少下游加工问题。本文的主要重点是讨论影响生物柴油收率的重要参数,采用的各种固定化技术,酯交换反应的机理和动力学以及连续酯交换过程的最新进展。

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