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Effects of the combined use of Thermomyces lanuginosus and Rhizomucor miehei lipases for the transesterification and hydrolysis of soybean oil

机译:羊毛嗜热霉菌和米黑根霉菌脂肪酶联合使用对大豆油酯交换和水解的影响

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The effects of the combination of immobilized lipases from Thermomyces lanuginosus (TLL) and Rhizomucor miehei (RML) on the transesterification (ethanolysis) and hydrolysis of soybean oil, a heterogeneous substrate composed of different fatty acids, were investigated. The influences on the yields of conversion of the substrate molar ratio, enzyme content, and the ratio of TLL and RML in the mixture of the bio-catalyst were analyzed using the central composite design and the response surface methodology. The optimal conditions for transesterification obtained were: substrate molar ratio of 7.5:1 ethanol:soybean oil; enzyme content of 25% (weight of oil); and 80% of TLL in the mixture of biocatalysts. For hydrolysis, the optimal conditions were: substrate molar ratio of 3:1 water:soybean oil; enzyme content of 25% (weight of oil); and 65% of TLL in the mixture of biocatalysts. Under the optimal conditions, the yields of conversion were 90% for transesterification and 95% for hydrolysis. Time courses of the reactions showed that when using the optimal mixture of lipases, the yields were higher than those obtained using only one of the enzymes, approximately 15% higher than using only TLL and more than twice than using only RML Enzyme activities remained unaltered for both transesterification and hydrolysis, even after ten reaction cycles in which the immobilized enzymes were washed with n-hexane at the end of each batch. The use of a mixture of immobilized lipases seems to be a promising technology in order to improve the enzymatic synthesis of biodiesel and hydrolysis of oils.
机译:研究了来自嗜热丝霉菌(TLL)和米热根瘤菌(RML)的固定化脂肪酶的组合对大豆油(一种由不同脂肪酸组成的异质底物)的酯交换作用(乙醇化)和水解的影响。使用中心复合设计和响应表面方法分析了底物摩尔比,酶含量以及生物催化剂混合物中TLL和RML的比例对转化率的影响。获得的酯交换的最佳条件是:底物摩尔比为7.5:1乙醇:大豆油;酶含量为25%(油重量);和80%的TLL在生物催化剂的混合物中。对于水解,最佳条件为:底物摩尔比为3:1的水:大豆油;酶含量为25%(油重量);生物催化剂混合物中TLL的65%。在最佳条件下,酯交换反应的转化率为90%,水解反应的转化率为95%。反应的时间过程表明,当使用最佳的脂肪酶混合物时,产率比仅使用一种酶获得的产率高,比仅使用TLL的酶高约15%,比仅使用RML的酶高出两倍以上。甚至在十个反应循环后,其中在每批结束时用正己烷洗涤固定化酶后,都可以进行酯交换和水解。为了改善生物柴油的酶促合成和油的水解,固定化脂肪酶混合物的使用似乎是一种有前途的技术。

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