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Superstructure optimization for the synthesis of chemical process flowsheets: Application to optimal hybrid membrane systems

机译:化学过程流程图合成的上层结构优化:在最佳混合膜系统中的应用

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The superstructure has proved an effective tool for the synthesis of chemical-engineering process flow-sheets. The superstructure is assumed to contain all possible alternatives of a potential treatment network, including the optimal solution that is hidden. A common approach for formulating superstructures for process-synthesis problems involving heat and mass exchange has been to use the state-space framework. In this way, unit operations, utility units, and utility streams can be embedded in such a way that all the process synthesis alternatives can be realized. Such a framework has been applied to water and wastewater synthesis problems. This article reviews the optimization studies that have been carried out on membrane and hybrid membrane process-synthesis problems for wastewater treatment. Comparison is made between different representations and their mathematical programs to highlight the relationship between the superstructure representation and their mathematical programming formulations. From this analysis, possible improvement of these superstructures is suggested. Also, a generic representation is provided for a systematic and clear description for assembling hybrid membrane system superstructures via the state space approach. Several case studies are given in order to illustrate the proposed approach.
机译:上层建筑已被证明是合成化学工程工艺流程图的有效工具。假定上部结构包含潜在处理网络的所有可能替代方案,包括隐藏的最佳解决方案。对于涉及热量和质量交换的过程合成问题,上层建筑的一种常见设计方法是使用状态空间框架。以这种方式,单元操作,实用单元和实用流可以被嵌入,从而可以实现所有的过程综合选择。这样的框架已经应用于水和废水的合成问题。本文回顾了针对膜和混合膜工艺合成问题进行废水处理的优化研究。比较不同表示形式及其数学程序,以突出显示上部结构表示形式及其数学程序设计之间的关系。通过此分析,建议对这些上部结构进行可能的改进。另外,提供了一般表示,用于通过状态空间方法来组装混合膜系统上部结构的系统清晰描述。为了说明所提出的方法,给出了一些案例研究。

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