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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Optimal design of continuously stirred membrane reactors in series using Michaelis-Menten kinetics with competitive product inhibition:theoretical analysis
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Optimal design of continuously stirred membrane reactors in series using Michaelis-Menten kinetics with competitive product inhibition:theoretical analysis

机译:基于Michaelis-Menten动力学和竞争性产物抑制的串联连续搅拌膜反应器的优化设计:理论分析

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摘要

Analytical expressions were derived for the optimal design(based on the minimum of the volume of the total number of reactors)of N continuously stirred membrane reactors(CSMRs)performing the enzyme-catalyzed reaction described by Michaelis-Menten kinetics with competitive product inhibition.The influence of membrane selectivity for both substrate and product on the total dimensionless residence time of the reactors(overall volume)was determined.The optimal design of N CSMRs(variable volume reactors)was compared with equal volume membrane reactors required to achieve the same degree of substrate conversion.The effect of kinetic and operating parameters on the performance of membrane reactors was determined.Optimization results show that membrane reactors are superior to continuously stirred tank reactors(CSTRs)in series at a high substrate rejection coefficient and low product rejection coefficient,high substrate conversion and using a small number of reactors.Also a high dimensionless Michaelis-Menten constant,high dimensionless inhibition constant and low substrate concentration in the feed to the first reactor improved the performance of the membrane reactors vs.CSTRs in series.The reduction in total volume of the optimal membrane reactors compared to CSTRs in series was up to 86% for the conditions in this work.A comparison between the optimum and equal volume design of membrane reactors in series showed no major difference in total volume between the two design criteria at a practical range of operating conditions.A volume reduction up to 16% was observed for the conditions in this work.
机译:推导了N个连续搅拌膜反应器(CSMR)进行最佳设计(基于反应器总数的最小值)的分析表达式,该反应器执行了Michaelis-Menten动力学描述的酶催化反应并具有竞争性产物抑制作用。确定了底物和产物的膜选择性对反应器总无量纲停留时间(总体积)的影响。将N CSMRs(可变体积反应器)的最佳设计与达到相同程度反应所需的等体积膜反应器进行了比较优化的结果表明,在高底物截留系数,低产物截留系数,高底物截留系数的条件下,膜反应器优于连续搅拌釜反应器(CSTRs)。基质转化和使用少量反应器与串联CSTR相比,第一个反应器的进料中的Michaelis-Menten常数,高无量纲抑制常数和低底物浓度提高了膜反应器的性能。与串联CSTR相比,最佳膜反应器的总体积减少了在这项工作中达到了86%的水平。在连续运行的膜反应器的最佳和等体积设计之间的比较显示,在实际操作条件范围内,两种设计标准的总体积之间没有重大差异。在该工作中观察到%的条件。

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