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Process optimization of lipase catalyzed synthesis of diesters in a packed bed reactor

机译:填充床反应器中脂肪酶催化二酯合成的工艺优化

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Wax esters are fine chemicals which are produced in low volume but are highly priced with varied industrial applications. They are formulated in numerous personal care products due to their excellent emollient properties. The conventional technology for the preparation of wax esters are based on reaction between long chain carboxylic acids and alcohols at high temperatures in presence of a strong catalyst. This process is unselective and the removal of used catalyst and byproducts requires several stages which increases the production cost. Enzyme technology is an alternative which is eco friendly and requires lesser stages of purification. The present study aims at the enzymatic preparation of wax esters like dibehenyl adipate and dibehenyl sebacate in presence of immobilized lipases from different microbial origin e.g., RM-IM, TL IM, NS40013 and NS 435. Various reaction parameters like temperature, reaction time, mole ratio, enzyme concentration and solvent selection were optimized. The work clearly indicates NS 435 as the most efficient enzyme and can be recycled for 20 times without significant change in product quality. Trial run was given in a packed bed bioreactor using NS435 which produced 89% and 91% of dibehenyl adipate and dibehenyl sebacate, respectively. (C) 2015 Elsevier B.V. All rights reserved.
机译:蜡酸酯是少量生产的精细化学品,但由于各种工业应用而价格高昂。由于其优异的润肤性能,它们被配制在多种个人护理产品中。制备蜡酯的常规技术是基于长链羧酸与醇在高温下在强催化剂存在下的反应。该方法是非选择性的,并且去除用过的催化剂和副产物需要几个步骤,这增加了生产成本。酶技术是生态友好的替代方法,需要较少的纯化步骤。本研究旨在在固定化脂肪酶(例如RM-IM,TL IM,NS40013和NS 435)存在的条件下,酶法制备己二酸二山hen酯和癸二酸二山be酯等蜡酯。各种反应参数,例如温度,反应时间,摩尔优化比例,酶浓度和溶剂选择。这项工作清楚地表明NS 435是最有效的酶,可以循环使用20次而产品质量没有明显变化。在填充床生物反应器中使用NS435进行了试验,该反应器分别生产89%和91%的己二酸二山di酯和癸二酸二山di酯。 (C)2015 Elsevier B.V.保留所有权利。

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