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Candida rugosa lipase immobilized by a specially designed microstructure in the PVA/PTFE composite membrane

机译:通过特殊设计的微结构固定在PVA / PTFE复合膜中的皱纹念珠菌脂肪酶

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摘要

A composite membrane made of a hydrophobic synthetic material, PTFE, and a biocompatible material, PVA, is proposed to immobilize lipase. The structure of this composite membrane is specially designed and includes a porous PTFE layer and an ultrafiltration PVA layer. In the present study, enzymes were absorbed in pores of PTFE layer and deposited on the interface between the two layers by a filtration process. The ultrafiltration PVA layer rejects enzymes to control the enzyme loading and prevents enzymes from being dissolved into the aqueous phase. The porous PTFE layer with micrometer pores supplies a hydrophobic environment for immobilized lipases which is propitious to the activation of lipase. An immobilized lipase membrane was employed in a biphasic membrane reactor (BMR) for the hydrolysis of olive oil. The volumetric reaction rate of the BMR was used to evaluate the catalytic ability of immobilized lipase membrane. The effect of the structure of the PTFE support layer and the PVA layer, the lipase loading density and the BMR stability was investigated, and The maximum reaction rate per unit of membrane area (9.25 mu mol/h cm(2)) in experimental conditions was found to be higher than the value reported in some literature. The leakage of immobilized lipases was small and did not have a great effect on the catalytic ability when an immobilized lipase membrane was employed in the BMR. (c) 2006 Elsevier B.V. All rights reserved.
机译:提出了一种由疏水性合成材料PTFE和生物相容性材料PVA制成的复合膜,以固定脂肪酶。该复合膜的结构经过特殊设计,包括多孔PTFE层和超滤PVA层。在本研究中,酶在PTFE层的孔中被吸收,并通过过滤过程沉积在两层之间的界面上。超滤PVA层会排斥酶以控制酶的负载,并防止酶溶解到水相中。具有微米孔的多孔PTFE层为固定化脂肪酶提供了疏水环境,这有利于脂肪酶的活化。在双相膜反应器(BMR)中使用固定化的脂肪酶膜来水解橄榄油。 BMR的体积反应速率用于评估固定化脂肪酶膜的催化能力。研究了PTFE支撑层和PVA层的结构,脂肪酶负载密度和BMR稳定性的影响,并在实验条件下每单位膜面积的最大反应速率(9.25μmol / h cm(2))被发现高于一些文献报道的值。当在BMR中使用固定化脂肪酶膜时,固定化脂肪酶的泄漏很小,并且对催化能力没有很大影响。 (c)2006 Elsevier B.V.保留所有权利。

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