Synthesis Biodiesel from Palm Oil Through Interesterification Using Imobilized Lipase Enzym as Catalyst: The Effect of Amount of Biocatalyst, Mole Ratio of Reactan, Temperature to Yield

Melina Widyawati, R. Manurung, Ricky Afrianto
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引用次数: 1

Abstract

B iodiesel usually synthesized by transesterification of triglyceride and alcohol by addition of acid or base catalyst so there is could produce a waste of chemical process. Alternative process is by using biocatalyst such as enzyme to synthesize biodiesel without chemical process waste. In this research, synthesis of biodiesel from Crude Palm Oil (CPO) that through the process of degumming and methyl acetate as acyl donor has been investigated with using Lipozyme as biocatalyst . Variables in this research are amount of biocatalyst, mole ratio of reactant, and temperature, and its respond to the yield conversion of biodiesel that presented by using Response Surface Methodology (RSM). Yield raging from 15% - 68% were achived during 10 hours reaction time. The results showed that the most influential variable is amount of biocatalyst.
固定化脂肪酶催化棕榈油酯化合成生物柴油:生物催化剂用量、反应物摩尔比、温度对产率的影响
B型柴油通常是由甘油三酯和醇通过添加酸或碱催化剂进行酯交换反应合成的,因此有可能产生浪费的化学过程。替代工艺是利用酶等生物催化剂合成生物柴油,不产生化学工艺废弃物。本研究以粗棕榈油(CPO)为原料,以脂酶(Lipozyme)为生物催化剂,以乙酸甲酯为酰基供体,经脱胶工艺合成生物柴油。本研究以生物催化剂用量、反应物摩尔比、温度为变量,利用响应面法(Response Surface Methodology, RSM)分析其对生物柴油产率转化的响应。在10小时的反应时间内,收率从15%提高到68%。结果表明,对其影响最大的是生物催化剂的用量。
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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