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Enzymatic fatty acid ethyl esters synthesis using acid soybean oil and liquid lipase formulation

机译:酶促脂肪酸乙酯合成使用酸豆油和液体脂肪酶制剂合成

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摘要

Acid oils represent a low-cost feedstock for biodiesel synthesis. The aim of this work was to study a single-step enzymatic esterification and transesterification process for fatty acid ethyl esters (FAEEs) production employing acid oils, ethanol, and liquid lipase formulation. The effects of lipase source (CALB, Palatase 20000?L, Lipolase 100?L, and Callera Trans L), temperature and enzyme ratio were studied in the transesterification of refined soybean oil with ethanol. The highest yield esters content (97%) was obtained at 30??C with 10% vol/vol of Lipolase 100?L. The ethanolysis of acid soybean oil, using soybean oils with different acid contents (acid value (AV): 8.5, 50, and 90), was investigated using 10% vol/vol of lipase at 30??C. The highest esters content (71%) was obtained employing acid oil with AV 50 and Palatase 20,000?L. The results showed the significant performance of soluble lipases in transesterification reactions of acid oils aiming for FAEEs synthesis.
机译:酸性油代表生物柴油合成的低成本原料。 这项工作的目的是研究用于脂肪酸乙酯(福服)生产的单步酶酯化和酯交换过程,采用酸性油,乙醇和液体脂肪酶制剂。 乙醇的酯交换中研究了脂肪酶源(CALB,Palatase 20000〜L),温度和酶比的影响。 在30℃下获得最高产量酯含量(97%),其中脂溶酶100β1的10%Vol /体积。 使用10%Vol /体积的脂肪酶在30℃下使用具有不同酸内容物(酸值(AV):8.5,50和90)的酸豆油乙酸乙醇溶解。 获得最高的酯含量(71%)与AV 50和Palatase 20,000?L. 结果表明,酸性油酯化反应中可溶性脂肪酶的显着性能,旨在赋予福索合成。

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