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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

机译:使用分散模型预测与平行酶去激活的生物转化的固定床反应器行为:商业过氧化氢酶过氧化氢分解的案例研究

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摘要

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.
机译:由于新的生态法规,纺织工业中残余水域的过程成本和污染污染的问题需要越来越受到关注,也是由经济的观点产生的。因此,研究了附着在玻璃珠的外表面上的固定的末端超氧化氢酶应用于过氧化氢分解的非等温固定床反应器的行为,以确定过氧化氢分解最有效的操作条件。在该工作中应用的生物反应器的分散模型,并通过实验验证,考虑了耦合质量和热余量以及平行酶去激活的速率方程。分析了进料温度,进料流速,进氧化氢浓度和扩散抗性的影响。在计算中,采用了基于先前开发的外部传质模型的全局效力因子妥善预测真实的生物反应器行为。

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