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1,3-Regiospecific Ethanolysis of Soybean Oil Catalyzed by Crosslinked Porcine Pancreas Lipase Aggregates

机译:交联猪胰腺脂肪酶聚集体催化的豆油溶液的1,3-再生乙酸盐

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摘要

The preparation of crosslinked aggregates of pancreatic porcine lipase (PPL-CLEA) was systematically studied, evaluating the influence of three precipitants and two crosslinking agents, as well as the use of soy protein as an alternative feeder protein on the catalytic properties and stability of the immobilized PPL. Standard CLEAs showed a global yield (CLEA' observed activity/offered total activity) of less than 4%, whereas with the addition of soy protein (PPL:soy protein mass ratio of 1:3) the global yield was approximately fivefold higher. The CLEA of PPL prepared with soy protein as feeder (PPL:soy protein mass ratio of 1:3) and glutaraldehyde as crosslinking reagent (10 mol of aldehyde groups/mg of total protein) was more active mainly because of the reduced enzyme leaching in the washing step. This CLEA, named PPL-SOY-CLEA, had an immobilization yield around 60% and an expressed activity around 40%. In the ethanolysis of soybean oil, the PPL-SOY-CLEA yielded maximum fatty acid ethyl ester (FAEE) concentration around 12-fold higher than that achieved using soluble PPL (34 h reaction at 30 degrees C, 300 rpm stirring, soybean oil/ethanol molar ratio of 1:5) with an enzyme load around 2-fold lower (very likely due to free enzyme inactivation). The operational stability of the PPL-SOY-CLEA in the ethanolysis of soybean oil in a vortex flow type reactor showed that FAEE yield was higher than 50% during ten reaction cycles of 24 h. This reactor configuration may be an attractive alternative to the conventional stirred reactors for biotransformations in industrial plants using carrier-free biocatalysts. (C) 2018 American Institute of Chemical Engineers
机译:系统地研究了胰腺猪脂肪酶(PPL-CLEA)的交联聚集体的制备,评价了三种沉淀剂和两个交联剂的影响,以及使用大豆蛋白作为替代饲养蛋白的催化性能和稳定性固定化的ppl。标准包显示全球产量(CLEA观察到的活动/提供的总活动)小于4%,而添加大豆蛋白(PPL:大豆蛋白质质量比为1:3),全球收率约为5倍。用大豆蛋白制备的PPL的CLEA作为进料器(PPL:大豆蛋白质质量比为1:3)和戊二醛作为交联试剂(10摩尔醛基/总蛋白的总蛋白质),主要是由于酶浸出的降低次数洗涤步骤。这种名为PPL-SOY-CLEA的CLEA的CLEA的固定产量约为60%,表达的活性约为40%。在大豆油的乙溶解中,PPL-eyoy-CLEA产生的最大脂肪酸乙酯(祝福)浓度约为12倍,比使用可溶性PPL(34h反应在30℃,300rpm搅拌下,豆油/乙醇摩尔比为1:5),酶载荷率约为2倍(很可能由于游离酶灭活)。涡旋流动型反应器中乙二醇乙醇分解中PPL-SOY-CLEA的操作稳定性表明,在24小时的十个反应循环期间茯苓产量高于50%。这种反应器构型可以是使用载体生物催化剂的工业厂中的用于生物转移的常规搅拌反应器的吸引力。 (c)2018美国化学工程研究所

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