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Structural and Operating Optimization of the Methanol Process Using a Metaheuristic Techniqued

机译:使用型甲醇工艺的结构和运行优化使用血型技术

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This paper presents a systematic approach for the synthesis, selection, design, and optimization of methanol plants. A metaheuristic optimization approach is proposed to reconcile the economic and environmental objectives of the process while incorporating simulation tools for the reliable modeling of the generated alternatives. In addition to shale/natural gas as the primary feedstock, CO2 utilization is considered. Nine different configurations were synthesized, analyzed, and optimized. The optimization variables included the structural configurations as well as design and operating variables such as flowrates, temperatures, and pressures. The model is a multiobjective problem involving economic and environmental objectives. The economic objective function consists of maximizing the net profit. The environmental objective function is aimed at minimizing the total annual CO2, emissions. To perform the optimization of this problem, process data were obtained from the chemical process simulation software Aspen HYSYS. The used stochastic optimization algorithm was an improved multiobjective differential evolution. A client-server interface based on Component Object Module technology using Excel-Visual Basic for Applications scripts was developed to call the Aspen HYSYS simulator repetitively for various sets of input variables. The results offer attractive options for both the economic and the environmental objectives.
机译:本文介绍了甲醇植物的合成,选择,设计和优化的系统方法。提出了一种成群质型优化方法,以协调过程的经济和环境目标,同时结合了所产生的替代品的可靠建模的仿真工具。除了页岩/天然气作为主要原料外,还考虑CO2利用。合成,分析和优化九种不同的配置。优化变量包括结构配置以及设计和操作变量,例如流量,温度和压力。该模型是涉及经济和环境目标的多目标问题。经济目标职能包括最大化净利润。环境目标职能旨在最大限度地减少年度总二氧化碳排放量。为了执行该问题的优化,从化学过程模拟软件Aspen Hysys获得了过程数据。使用的随机优化算法是一种改进的多目标差分演进。开发了一种基于Component对象模块技术的客户端 - 服务器界面,用于应用程序脚本,可重复调用Aspen Hysys模拟器,以便为各种输入变量进行重复地调用Aspen Hysys Simulator。结果为经济和环境目标提供了有吸引力的选择。

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