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Synthesis of Rapeseed Biodiesel Using Short-Chained Alkyl Acetates as Acyl Acceptor

机译:使用短链烷基乙酸盐作为酰基受体的合成油菜籽生物柴油

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In this study, we conducted experiments using a response surface methodology to determine the optimal reaction conditions for the enzymatic synthesis of biodiesel from rapeseed oil and short-chained alkyl acetates, such as methyl acetate or ethyl acetate, as the acyl acceptor at 40 °C. Based on our response surface methodology experiments, the optimal reaction conditions for the synthesis of biodiesel were as follows: methyl acetate as acyl acceptor, catalyst concentration of 16.50%, oil-to-methyl acetate molar ratio of 1:12.44, and reaction time of 19.70 h; ethyl acetate as acyl acceptor, catalyst concentration of 16.95%, oil-to-ethyl acetate molar ratio of 1:12.56, and reaction time of 19.73 h. The fatty acid ester content under the above conditions when methyl acetate and ethyl acetate were used as the acyl acceptor was 58.0% and 62.6%, respectively. The statistical method described in this study can be applied to effectively optimize the enzymatic conditions required for biodiesel production with short-chained alkyl acetates.
机译:在该研究中,我们使用响应表面方法进行实验,以确定从菜籽油和短链烷基乙酸盐的生物柴油的酶促合成的最佳反应条件,例如乙酸乙酯或乙酸乙酯,作为40℃的酰基受体。基于我们的响应表面方法实验,对生物柴油合成的最佳反应条件如下:乙酸甲酯作为酰基受体,催化剂浓度为16.50%,乙酸甲酯摩尔比为1:12.44和反应时间19.70小时;乙酸乙酯作为酰基受体,催化剂浓度为16.95%,油 - 乙酸乙酯摩尔比为1:12.56,反应时间为19.73小时。当使用乙酸甲酯和乙酸乙酯作为酰基受体时,脂肪酸酯含量分别为58.0%和62.6%。可以应用该研究中描述的统计方法以有效地优化生物柴油生产所需的酶促条件,用短链烷基乙酸酯。

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