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Chitosan-immobilized lipases for the catalysis of fatty acid esterifications

机译:壳聚糖固定化脂肪酶催化脂肪酸酯化

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摘要

Lipases from Candida rugosa,Pseudomonas fluorescens and Candida antarctica B were immobilized onto chitosan and glutaraldehyde-pretreated chitosan powders.The prepared biocatalysts were assayed in the direct esterification of oleic acid and ethanol to produce the ethyl oleate.In order to maximize ester production and avoid solvent-related costs(the solvent itself,solvent recovery and solvent recycle),the synthesis of ethyl oleate was performed in a solvent-free system.The different structures of the lipases chosen for the catalysis led to very different activity levels,with C.antarctica B derivatives being the most active ones.The parametric study performed revealed that the best operation conditions for ester synthesis are found at mild temperatures(35-45 °C),and in"biphasic systems"(two liquid phases),generated upon addition of relatively high quantities of water to the mixture of substrates.The reduction of the concentration of water in the organic reactive phase of biphasic systems favored ester synthesis,with higher ester yields in the first hours of reaction than those measured in systems with no added water.In the optimum conditions mentioned the biocatalyst resulting from the immobilization of lipase from C.antarctica B onto untreated chitosan powder led to 75% conversion of the fatty acid in 24 h of reaction.The stability of this catalyst also proved to be very attractive with five consecutive 24 h uses with a residual activity of 90-95%.
机译:将皱纹假丝酵母,荧光假单胞菌和南极假丝酵母B的脂肪酶固定在壳聚糖和戊二醛预处理的壳聚糖粉末上,在油酸和乙醇直接酯化反应中制备的生物催化剂用于生产油酸乙酯,以最大程度地产生酯并避免与溶剂有关的成本(溶剂本身,溶剂回收和溶剂循环),油酸乙酯的合成是在无溶剂的系统中进行的。选择用于催化的脂肪酶的不同结构导致活性水平大不相同。南极B衍生物是最活跃的衍生物。进行的参数研究表明,酯合成的最佳操作条件是在温和的温度(35-45°C)和“双相体系”(两个液相)中生成的。两相体系有机反应相中水的浓度降低有利于酯的合成,与在不加水的体系中测得的反应相比,反应的第一小时具有更高的酯收率。在最佳条件下,提到的将C.antarctica B中的脂肪酶固定在未经处理的壳聚糖粉末上的生物催化剂占75%在24小时的连续反应中,该催化剂的稳定性也非常吸引人,连续使用24小时,残留活性为90-95%。

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