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固定床反应器中固定化酶催化外消旋体动力学拆分的传质限制

Mass-transfer limitations for immobilized enzyme-catalyzed kinetic resolution of racemate in a fixed-bed reactor.

作者信息

Xiu G H, Jiang L, Li P

机构信息

Institute of Chemistry, Chinese Academy of Sciences, Beijing 100080, P.R. China.

出版信息

Biotechnol Bioeng. 2001 Jul 5;74(1):29-39. doi: 10.1002/bit.1092.

Abstract

A mathematical model has been developed for immobilized enzyme-catalyzed kinetic resolution of racemate in a fixed-bed reactor in which the enzyme-catalyzed reaction (the irreversible uni-uni competitive Michaelis-Menten kinetics is chosen as an example) was coupled with intraparticle diffusion, external mass transfer, and axial dispersion. The effects of mass-transfer limitations, competitive inhibition of substrates, deactivation on the enzyme effective enantioselectivity, and the optical purity and yield of the desired product are examined quantitatively over a wide range of parameters using the orthogonal collocation method. For a first-order reaction, an analytical solution is derived from the mathematical model for slab-, cylindrical-, and spherical-enzyme supports. Based on the analytical solution for the steady-state resolution process, a new concise formulation is presented to predict quantitatively the mass-transfer limitations on enzyme effective enantioselectivity and optical purity and yield of the desired product for a continuous steady-state kinetic resolution process in a fixed-bed reactor.

摘要

已开发出一种数学模型,用于固定床反应器中对映体的固定化酶催化动力学拆分,其中酶催化反应(以不可逆的单底物竞争米氏动力学为例)与颗粒内扩散、外部传质和轴向扩散相耦合。使用正交配置法在广泛的参数范围内定量研究了传质限制、底物的竞争性抑制、失活对酶有效对映体选择性以及所需产物的光学纯度和产率的影响。对于一级反应,从平板、圆柱和球形酶载体的数学模型中导出了解析解。基于稳态拆分过程的解析解,提出了一种新的简洁公式,用于定量预测固定床反应器中连续稳态动力学拆分过程中传质对酶有效对映体选择性、所需产物的光学纯度和产率的限制。

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