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Simultaneous optimal design and operation of a diabatic extractive distillation column based on exergy analysis

机译:基于(火用)分析的绝热萃取精馏塔同时优化设计与运行。

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摘要

The concept of diabatic distillation is applied to an extractive distillation system of ethanol, which uses glycerol as entrainer, to study the influence of heat flows in optimal design, operation, and thermodynamic efficiency of such systems via exergy analysis. First, optimal operating conditions for minimum exergy losses are computed for a diabatic column with fixed feed locations and number of trays. Then, optimal design (feed locations, number of trays, and heat flows along the column) and operation of the system is calculated as a mixed integer nonlinear programming (MINLP) problem, for an economic and economic-exergetic objective functions for two different entrainer molar flows. It was found that the entrainer molar flow has remarkable influence in the reduction of the exergy losses of the system.
机译:绝热蒸馏的概念被应用到乙醇提取蒸馏系统中,该系统使用甘油作为夹带剂,通过火用分析研究热流对此类系统的最佳设计,运行和热力学效率的影响。首先,针对固定进料位置和塔板数的非绝热色谱柱计算出最小的火用损失的最佳操作条件。然后,针对两种不同的夹带剂的经济和经济优势目标函数,将最佳设计(进料位置,塔板数量和沿塔的热流)和系统运行情况作为混合整数非线性规划(MINLP)问题进行计算摩尔流量。已经发现,夹带剂摩尔流量对减少系统的火用损失具有显着影响。

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