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采用响应面法优化连续填充床反应器中脂肪酶异丙醇解制备生物柴油。

Optimization of lipase-catalyzed biodiesel by isopropanolysis in a continuous packed-bed reactor using response surface methodology.

机构信息

Biotechnology Center, National Chung Hsing University, Taichung 40227, Taiwan.

出版信息

N Biotechnol. 2009 Oct 31;26(3-4):187-92. doi: 10.1016/j.nbt.2009.07.010. Epub 2009 Jul 29.

Abstract

Isopropanolysis reactions were performed using triglycerides with immobilized lipase in a solvent-free environment. This study modeled the degree of isopropanolysis of soybean oil in a continuous packed-bed reactor when Novozym 435 was used as the biocatalyst. Response surface methodology (RSM) and three-level-three-factor Box-Behnken design were employed to evaluate the effects of synthesis parameters, reaction temperature ( degrees C), flow rate (mL/min) and substrate molar ratio of isopropanol to soybean oil, on the percentage molar conversion of biodiesel by transesterification. The results show that flow rate and temperature have a significant effect on the percentage of molar conversion. On the basis of ridge max analysis, the optimum conditions for synthesis were as follows: flow rate 0.1 mL/min, temperature 51.5 degrees C and substrate molar ratio 1:4.14. The predicted value was 76.62+/-1.52% and actual experimental value was 75.62+/-0.81% molar conversion. Moreover, continuous enzymatic process for seven days did not show any appreciable decrease in the percent of molar conversion (75%). This work demonstrates the applicability of lipase catalysis to prepare isopropyl esters by transesterification in solvent-free system with a continuous packed-bed reactor for industrial production.

摘要

在无溶剂环境中使用固定化脂肪酶的三酰基甘油进行异丙醇解反应。本研究使用 Novozym 435 作为生物催化剂,对连续填充床反应器中大豆油的异丙醇解程度进行了模型化。响应面法(RSM)和三水平三因素 Box-Behnken 设计用于评估合成参数、反应温度(摄氏度)、流速(mL/min)和异丙醇与大豆油的底物摩尔比对通过酯交换转化为生物柴油的摩尔转化率的影响。结果表明,流速和温度对摩尔转化率有显著影响。基于脊峰最大分析,最佳的合成条件为:流速 0.1 mL/min、温度 51.5 摄氏度和底物摩尔比 1:4.14。预测值为 76.62+/-1.52%,实际实验值为 75.62+/-0.81%摩尔转化率。此外,连续酶法过程进行七天后,摩尔转化率(75%)没有明显下降。这项工作证明了脂肪酶催化在无溶剂体系中通过连续填充床反应器进行转酯化制备异丙基酯在工业生产中的适用性。

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