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首页> 外文期刊>African Journal of Biotechnology >Enzymatic epoxidation of biodiesel optimized by response surface methodology
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Enzymatic epoxidation of biodiesel optimized by response surface methodology

机译:响应面法优化生物柴油的酶促环氧化

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摘要

During the enzymatic epoxidation of biodiesel, stearic acid was selected as oxygen carrier. Enzyme screening and the load of stearic acid were investigated. The effects of four main reaction conditions including reaction time, temperature, enzyme load, and mole ratio of H2O2/C=C-bonds on the epoxy oxygen group content (EOC) of epoxidized biodiesel were analyzed. Response surface methodology (RSM) was employed to study and optimize the reaction variables in the enzymatic epoxidation ofbiodiesel. A second-order model satisfactorily fitted the data (R2?= 0.9893), with non-significant lack of fit. A higher EOC (6.40?± 0.20%)?of epoxidized?biodiesel?was obtained at the optimum conditions of 55.4°C, 3.91% enzyme load (relative to the weight of?biodiesel), 2.93:1 mole ratio of H2O2/C=C-bonds, and 7.3 h. The relationship between initial reaction rate and temperature was also established, and the activation energy (Ea) of the enzymatic epoxidation is 16.03 KJ/mol.
机译:在生物柴油的酶促环氧化过程中,选择了硬脂酸作为氧气载体。研究了酶的筛选和硬脂酸的负载。分析了反应时间,温度,酶负荷,H2O2 / C = C键的摩尔比这四个主要反应条件对环氧化生物柴油中环氧基团含量(EOC)的影响。响应面法(RSM)用于研究和优化生物柴油酶促环氧化反应的变量。一个二阶模型令人满意地拟合了数据(R2α= 0.9893),而没有显着缺乏拟合。在55.4°C的最佳条件,3.91%的酶负载(相对于生物柴油的重量),2.93:1的H2O2 / C摩尔比的条件下,可获得较高的EOC(6.40%±0.20%)%的环氧化生物柴油。 = C键,和7.3小时。建立了初始反应速率与温度之间的关系,酶促环氧化的活化能(Ea)为16.03 KJ / mol。

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