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首页> 外文期刊>Renewable energy >Process optimization for biodiesel production from waste cooking oil using multi-enzyme systems through response surface methodology
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Process optimization for biodiesel production from waste cooking oil using multi-enzyme systems through response surface methodology

机译:使用多酶系统通过响应面法从废食用油生产生物柴油的工艺优化

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摘要

Lipase from Rhizomucor miehei (RML) and lipase B from Candida antarctica (CALB) were covalently immobilized onto epoxy-functionalized silica. In this study, we developed a multi-enzyme system to produce biodiesel with waste cooking oil and methanol. To increase the biodiesel production yield, a mixture of 1,3-specific lipase (RML) and nonspecific lipase (CALB) was used. Response Surface Methodology (RSM) and a central composite rotatable design (CCRD) was used to study the effects of four factors, CALB:RML ratio, ratio of t-butanol to oil (wt.%), water adsorbent Content (wt.%) and reaction time on the fatty acid methyl esters (FAME) yield. A quadratic polynomial equation was obtained for methanolysis reaction by multiple regression analysis. The optimum combinations for the reaction were CALB:RML ratio (3:1), t-butanol to oil (10 wt%), water adsorbent content (22.5 wt%) at the reaction time of 10 h. FAME yield of 91.5%, which was very close to the predicted value of 95.6%, was obtained. Verification experiment confirmed the validity of the predicted model. (C) 2017 Elsevier Ltd. All rights reserved.
机译:将来自Rhizomucor miehei(RML)的脂肪酶和来自南极假丝酵母(CALB)的脂肪酶B共价固定在环氧官能化的二氧化硅上。在这项研究中,我们开发了一种多酶系统,可以利用废食用油和甲醇生产生物柴油。为了提高生物柴油的产量,使用了1,3-特异性脂肪酶(RML)和非特异性脂肪酶(CALB)的混合物。使用响应表面方法(RSM)和中央复合可旋转设计(CCRD)研究了四个因素的影响,CALB:RML比,叔丁醇与油的比(重量%),吸水剂含量(重量%) )和反应时间对脂肪酸甲酯(FAME)的产率。通过多元回归分析获得了用于甲醇分解反应的二次多项式方程。该反应的最佳组合为:CALB:RML比(3:1),叔丁醇与油(10 wt%),在10 h反应时间的水吸附剂含量(22.5 wt%)。获得的FAME产率为91.5%,非常接近预测值95.6%。验证实验证实了预测模型的有效性。 (C)2017 Elsevier Ltd.保留所有权利。

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