膜污染条件下间歇式渗滤工艺的多目标优化

Martin Jelemenský, Ayush Sharma, M. Fikar, R. Paulen
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引用次数: 0

摘要

本文研究了存在污垢的一般间歇过滤过程的多目标优化问题。污染是膜分离过程中的主要问题之一,它会导致膜面积的减小,从而导致过滤速率的降低。优化问题考虑了最小时间和最小稀释剂操作目标的加权组合。采用数值方法(正交配置法)和解析方法(庞特里亚金最小原理)对考虑污染的过滤过程进行了优化求解。通过文献中的实例分析,说明了优化操作的特点和经济效益。
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Multi-objective optimization of batch dialfiltration processes in the presence of membrane fouling
This paper deals with a multi-objective optimization of a general batch diafiltration process in the presence of fouling. Fouling, as one of the major problems in the membrane separation process, causes the decrease in the membrane area and thus the decrease in the filtration rate. The optimization problem considers a weighted combination of objectives for minimum-time and minimum-diluant operation. We apply numerical (orthogonal collocation) and analytical (Pontryagins minimum principle) methods to obtain the optimal operation of diafiltration process when fouling is considered. A case study from literature highlights the properties and economical benefits of the optimal operation.
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