Lipase in biodiesel production

Onyinyechukwu J. Chioke, C. Ogbonna, C. Onwusi, J. Ogbonna
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引用次数: 4

Abstract

Although fossil fuels have been serving mankind for several centuries, their exploration and use bring about several environmental problems. Besides, fossil fuels are neither renewable nor sustainable. There is therefore a need to search for renewable alternatives which are sustainable and environmentally friendly. Biodiesel, chemically known as methyl ester, is a renewable and sustainable biofuel used to run diesel engines and it is mainly produced by transesterification through either chemical or enzymatic catalysis. Enzyme catalyzed transesterification has several advantages over chemical catalysis. However, enzyme production and purification are expensive and the inability to recycle these enzymes has limited their application in large scale bioconversion processes. This review highlights some of the strategies employed to reduce the cost of lipase catalzsed transesterificaion, some important feed stocks used in biodiesel production, methods of processing biodiesel, and advantages of enzymatic transesterification over chemical catalyzed transesterification. The properties and sources of lipase enzymes used in enzyme catalyzed transesterfication are also highlighted and discussed. Factors that affect enzyme catalyzed transesterification are also discussed. It also highlights the possible methods of solving the problems encountered in enzymatic transesterification.   Key words: Biodiesel, transesterification, lipase, enzymes, catalysis, immobilization.
生物柴油生产中的脂肪酶
尽管化石燃料已经为人类服务了几个世纪,但它们的开发和使用带来了一些环境问题。此外,化石燃料既不可再生,也不可持续。因此,有必要寻找可持续和环境友好的可再生替代品。生物柴油,化学上称为甲酯,是一种可再生和可持续的生物燃料,用于运行柴油发动机,它主要是通过化学或酶催化的酯交换反应生产的。与化学催化相比,酶催化酯交换有几个优点。然而,酶的生产和纯化是昂贵的,并且这些酶无法回收,限制了它们在大规模生物转化过程中的应用。本文综述了降低脂肪酶催化酯交换成本的一些策略,生物柴油生产中使用的一些重要原料,生物柴油的加工方法,以及酶催化酯交换相对于化学催化酯交换的优势。重点讨论了用于酶催化酯交换的脂肪酶的性质和来源。讨论了影响酶催化酯交换反应的因素。它还强调了解决酶促酯交换过程中遇到的问题的可能方法。关键词:生物柴油,酯交换,脂肪酶,酶,催化,固定化
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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