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Hydrolysis of soybean oil by surfactant-coated lipase in organic solvents

机译:表面活性剂包覆的脂肪酶在有机溶剂中水解大豆油

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The advantages of coating surfactants onto the lipases for catalyzing lipolytic reactions in organic solvents motivated this investigation. The fatty acids obtained from hydrolysis of soybean oil are of nutritional value and are beneficial to the cardiovascular system. A lipase from Candida rugosa was used to prepare a surfactant-coated lipase (SCL) for catalyzing the hydrolysis of soybean oil. The conditions for obtaining a superior SCL, including the kind of surfactant, weight ratio of surfactant / lipase and pH of the buffer solution were investigated. These factors significantly affected the catalytic power, yield of SCL, protein content and the coverage of lipase by surfactant. The results obtained were explained by the hydrophile-lipophile balance (HLB) of the surfactant and the log P (hydrophobicity) of the organic solvent. The optimum conditions for preparing SCL for enhancing the hydrolysis of soybean oil were pH = 5.0 and weight: ratio of Span 60 and lipase = 4/1. The catalytic activity of the SCL was 3.6 fold greater than powdered Lipase. The optimum conditions for hydrolysis were investigated by varying the organic solvent as well as the temperature and pH of the milieu. SCL exhibited the highest hydrolysis rate at 37 degreesC: in a buffer solution of pH7.0 with isooctane. A conversion rate of 96.28% was reached in 12.3 hr. [References: 16]
机译:在脂肪酶上涂覆表面活性剂以催化有机溶剂中的脂解反应的优势推动了这项研究。由大豆油水解获得的脂肪酸具有营养价值,并且对心血管系统有益。使用来自皱念珠菌的脂肪酶来制备表面活性剂涂覆的脂肪酶(SCL),以催化大豆油的水解。研究了获得优异SCL的条件,包括表面活性剂的种类,表面活性剂/脂肪酶的重量比和缓冲溶液的pH。这些因素显着影响了催化能力,SCL的收率,蛋白质含量和表面活性剂对脂肪酶的覆盖率。通过表面活性剂的亲水亲油平衡(HLB)和有机溶剂的log P(疏水性)来解释所获得的结果。制备用于增强大豆油水解的SCL的最佳条件是pH = 5.0,重量:Span 60和脂肪酶的重量比= 4/1。 SCL的催化活性比粉末脂肪酶高3.6倍。通过改变有机溶剂以及环境温度和pH值来研究水解的最佳条件。 SCL在37摄氏度下具有最高的水解速率:在pH7.0的异辛烷缓冲溶液中。在12.3小时内达到96.28%的转化率。 [参考:16]

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