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Enzymatic production of biodiesel from insect fat using methyl acetate as an acyl acceptor: Optimization by using response surface methodology

机译:使用乙酸甲酯作为酰基受体从昆虫脂肪中酶法生产生物柴油:使用响应面方法进行优化

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摘要

Black soldier fly larvae (BSFL) are oleaginous insects that can assimilate organic waste for fat accumulation, and thus serve as an alternative feedstock for biodiesel production. In lipase-catalyzed transesterification, enzymes are deactivated by excess methanol. To address this obstacle, methyl acetate is suggested as an alternative acyl acceptor to methanol. In this study, methyl acetate was first used in the enzymatic production of biodiesel with BSFL as a triglyceride source. The interesterification of BSFL fat with methyl acetate was catalyzed using Novozym 435 as an efficient immobilized lipase. Response surface methodology was used to optimize the reaction and establish a reliable mathematical model for prediction. A maximum biodiesel yield of 96.97% was reached at a reaction time of 12 h, molar ratio of methyl acetate to fat of 14.64: 1, enzyme loading of 17.58%, and temperature of 39.5 degrees C. Under these optimal reaction conditions, Novozym 435 could be reused for up to 20 cycles "without loss in enzyme activity. The properties of BSFL biodiesel were also investigated and all met the European standard EN 14214. This study indicates that the enzymatic interesterification of BSFL fat with methyl acetate is a promising and ecofriendly method for green fuel production.
机译:黑战士蝇幼虫(BSFL)是一种油性昆虫,可以吸收有机废物以积累脂肪,因此可以用作生产生物柴油的替代原料。在脂肪酶催化的酯交换反应中,酶会因过量的甲醇而失活。为了解决这个障碍,建议使用乙酸甲酯作为甲醇的替代酰基受体。在这项研究中,乙酸甲酯首先用于以BSFL作为甘油三酸酯来源的酶法生产生物柴油。使用Novozym 435作为有效的固定化脂肪酶催化BSFL脂肪与乙酸甲酯的酯交换反应。响应面方法用于优化反应并建立可靠的数学模型进行预测。在12小时的反应时间,乙酸甲酯与脂肪的摩尔比为14.64:1,酶负载为17.58%,温度为39.5摄氏度的条件下,生物柴油的最高收率为96.97%。在这些最佳反应条件下,诺维信435可以重复使用多达20个循环,而不会降低酶的活性。还研究了BSFL生物柴油的特性,并且均符合欧洲标准EN14214。这项研究表明,BSFL脂肪与乙酸甲酯的酶促酯交换反应是一种有前途且环保的技术绿色燃料生产的方法。

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