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Optimal design of complex distillation system for multicomponent zeotropic separations

机译:用于多组分共沸分离的复杂蒸馏系统的优化设计

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摘要

The optimal design of complex distillation system for separation of multicomponent zeotropic mixtures is studied. Super column with the ability to separate any specified products from the given feed is introduced for defining integration upper limit of design alternatives. The improved state-space (SS) superstructure incorporating all basic mass and heat transfer elements are adopted to capture all configurations in the framework of super column. Specifically, by adding stages-cascade process operator in the original representation, a series of optimal flowsheets with multiple thermal links, which have never been included within previous superstructure are easily generated. The mathematical modeling of the proposed superstructure is performed with mixed integer non-linear programming (MINLP). It advocates the use of rigorous physical model for each mass/heat transfer stage to ensure the practical reliability and optimality of the attained designs. Then the derived optimization model is solved by a modified solution procedure, in which the key item is an iterative initialization scheme. Three multicomponent zeotropic separation examples are employed to illustrate the effectiveness of the proposed approach. These optimum designs yield significant savings in total annual cost (TAC) relative to Petlyuk columns and some guidelines for distillation flowsheet retrofit based on thermodynamic analysis are proposed.
机译:研究了用于分离多组分共沸混合物的复杂蒸馏系统的优化设计。引入了能够从给定的提要中分离任何指定产品的超级色谱柱,用于定义设计方案的集成上限。改进的状态空间(SS)上部结构结合了所有基本的质量和传热元素,被采用来捕获超柱框架内的所有构型。具体而言,通过在原始表示中添加级联过程运算符,可以轻松生成一系列具有多个热链接的最佳流程图,这些流程图从未包含在以前的上层建筑中。拟议的上部结构的数学建模是通过混合整数非线性规划(MINLP)进行的。它提倡在每个传质/传热阶段使用严格的物理模型,以确保所获得设计的实用可靠性和最佳性。然后,通过改进的求解过程求解导出的优化模型,其中关键项是迭代初始化方案。使用三个多组分共沸分离实例说明了该方法的有效性。相对于Petlyuk色谱柱,这些最佳设计可节省大量的年度总成本(TAC),并提出了一些基于热力学分析的蒸馏流程改造指南。

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