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Effect of Operating Variables and Kinetics of the Lipase Catalyzed Transesterification of Ethylene Carbonate and Glycerol

机译:脂肪酶催化碳酸乙烯酯和甘油酯交换反应的操作变量和动力学的影响

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Glycerol carbonate (GC) is a value-added product originating from the valorization of widely available glycerol (Gly), a side stream from the production of biodiesel. Here we approach the production of this chemical comparing two reactions based on the transesterification of Gly with dimethyl carbonate (DMC) and ethylene carbonate (EC). When using DMC, it was observed that the free enzyme CALB (lipase B from Candida antarctica ) gave the best results, whereas Eversa Transform (a genetic modification of Thermomyces lanuginosus lipase) performed better than the rest if EC was the reagent. With the selected catalysts, their immobilized analogous enzymes Novozym 435 and Lypozyme TL IM, respectively, were also tested. Observing that the yields for the reaction with EC were significantly faster, other operating variables were evaluated, resulting the best performance using a closed system, tert-butanol as solvent, a concentration of enzyme Eversa Transform of 3% w / w , a molar excess of EC:Gly of 9:1 and a temperature of 60 °C. Finally, several runs were conducted at different temperatures and molar ratios of EC:Gly, fitting a kinetic model to all experimental data for the reaction catalyzed with Eversa Transform. This model included the bimolecular transesterification reaction of Gly and EC catalyzed by the lipase and a reversible ring-opening polymerization of EC.
机译:碳酸甘油酯(GC)是增值产品,源自对广泛使用的甘油(Gly)的增值作用,甘油是生物柴油生产中的副产物。在这里,我们比较了基于Gly与碳酸二甲酯(DMC)和碳酸亚乙酯(EC)的酯交换反应的两个反应的方法。使用DMC时,观察到游离酶CALB(来自南极假丝酵母的脂肪酶B)效果最好,而如果使用EC作为试剂,则Eversa Transform(嗜热单胞菌脂肪酶的基因修饰)的效果要优于其他酶。使用选择的催化剂,还分别测试了它们固定化的类似酶Novozym 435和Lypozyme TL IM。观察到与EC的反应收率明显提高,评估了其他操作变量,使用密闭系统,叔丁醇作为溶剂,Eversa Transform酶浓度为3%w / w(摩尔过量)时,可获得最佳性能EC:Gly为9:1,温度为60°C。最后,在不同的温度和EC:Gly的摩尔比下进行了几次运行,使动力学模型适合所有使用Eversa Transform催化的反应的实验数据。该模型包括由脂肪酶催化的Gly和EC的双分子酯交换反应和EC的可逆开环聚合。

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