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利用废食用油作为原料,通过脂肪酶催化工艺提高脂肪酸甲酯的产量。

Improving fatty acid methyl ester production yield in a lipase-catalyzed process using waste frying oils as feedstock.

机构信息

Scientific and Technological Bio-resource Nucleus, Universidad de La Frontera, Casilla 54-D, Temuco, Chile.

出版信息

J Biosci Bioeng. 2010 Jun;109(6):609-14. doi: 10.1016/j.jbiosc.2009.12.001. Epub 2009 Dec 24.

Abstract

The application of waste frying oil (WFO) mixed with rapeseed oil as a feedstock for the effective production of fatty acid methyl esters (FAME) in a lipase-catalyzed process was investigated. The response surface methodology (RSM) was used to optimize the interaction of four variables: the percentage of WFO in the mixed feedstock, the methanol-to-oil ratio, the dosage of Novozym 435 as a catalyst and the temperature. Furthermore, the addition of methanol to the reaction mixture in a second step after 8 h was shown to effectively diminish enzyme inhibition. Using this technique, the model predicted the optimal conditions that would reach 100% FAME, including a methanol-to-oil molar ratio of 3.8:1, 100% (wt) WFO, 15% (wt) Novozym 435 and incubation at 44.5 degrees C for 12 h with agitation at 200 rpm, and verification experiments confirmed the validity of the model. According to the model, the addition of WFO increased FAME production yield, which is largely due to its higher contents of monoacylglycerols, diacylglycerols and free fatty acids (in comparison to rapeseed oil), which are more available substrates for the enzymatic catalysis. Therefore, the replacement of rapeseed oil with WFO in Novozym 435-catalyzed processes could diminish biodiesel production costs since it is a less expensive feedstock that increases the production yield and could be a potential alternative for FAME production on an industrial scale.

摘要

研究了将废食用油(WFO)与菜籽油混合作为原料,通过脂肪酶催化作用有效生产脂肪酸甲酯(FAME)的应用。采用响应面法(RSM)优化了四个变量的相互作用:WFO 在混合原料中的百分比、甲醇与油的比例、Novozym 435 作为催化剂的用量和温度。此外,在 8 小时后向反应混合物中添加甲醇可有效抑制酶抑制。使用该技术,模型预测了达到 100% FAME 的最佳条件,包括甲醇与油的摩尔比为 3.8:1、100%(wt)WFO、15%(wt)Novozym 435 和在 44.5 摄氏度下孵育 12 小时,搅拌速度为 200 rpm,并通过验证实验证实了模型的有效性。根据模型,WFO 的添加提高了 FAME 的产量,这主要是由于其单酰基甘油、二酰基甘油和游离脂肪酸(与菜籽油相比)的含量较高,这些都是更适合酶催化的底物。因此,用 WFO 替代 Novozym 435 催化工艺中的菜籽油可以降低生物柴油的生产成本,因为 WFO 是一种较便宜的原料,可提高产量,并且可能是工业规模生产 FAME 的潜在替代品。

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