Prediction of the fixed-bed reactor behavior for biotransformation with parallel enzyme deactivation using dispersion model: A case study on hydrogen peroxide decomposition by commercial catalase

Author:

Grubecki Ireneusz1,Kazimierska-Drobny Katarzyna2

Affiliation:

1. UTP University of Science and Technology , Department of Chemical and Biochemical Engineering , 3 Seminaryjna Street, 85-326 Bydgoszcz , Poland

2. Kazimierz Wielki University , Department of Mathematics, Physics and Technical Science , 1 Copernicus Street, 85-074 Bydgoszcz , Poland

Abstract

Abstract The problems of process costs and pollution of residual waters in the textile industry require increasing attention due to the new ecological regulations and also those resulting from an economic point of view. Hence, the behavior of non-isothermal fixed-bed reactor applied for hydrogen peroxide decomposition by immobilized Terminox Ultra catalase attached onto the outer surface of glass beads was studied to determine the operational conditions at which hydrogen peroxide decomposition is most effectively. A dispersion model for bioreactor applied in this work, and verified experimentally, took into account the coupled mass and heat balances as well as the rate equation for parallel enzyme deactivation. The effect of feed temperature, feed flow rate, feed hydrogen peroxide concentration, and diffusional resistances were analysed. In the calculations the global effectiveness factor based on the external mass-transfer model developed previously was employed to properly predict the real bioreactor behavior.

Publisher

Walter de Gruyter GmbH

Subject

General Chemical Engineering,General Chemistry,Biotechnology

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. What’s new in flow biocatalysis? A snapshot of 2020–2022;Frontiers in Catalysis;2023-04-21

2. Oxygen-Generating Scaffolds for Cardiac Tissue Engineering Applications;ACS Biomaterials Science & Engineering;2022-12-05

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