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Optimal design of ethylene and propylene coproduction plants with generalized disjunctive programming and state equipment network models

机译:乙烯和丙烯泛造厂的最佳设计与广义分解规划和状态设备网络模型

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摘要

In this work, we propose a superstructure optimization approach for the optimal design of an ethylene and propylene coproduction plant. We formulate a superstructure that embeds ethane and propane steam cracking technologies, propane dehydrogenation and olefin metathesis processes. We represent the superstructure with a Generalized Disjunctive Programming model, and solve the problem through a custom implementation of the Logic-based Outer Approximation algorithm in GAMS. We propose a state-equipment-network representation to model potential distillation trains, as well as alternative acetylene reactor configurations. Rigorous models are formulated for distillation columns, compressors, turboex-panders, vessels and several process equipment units. The objective function is to maximize the net present value. We analyze four international price scenarios for raw material and utility costs, while considering global ethylene and propylene prices. We obtain the optimal scheme for each case. Numerical results show that the combination of ethane steam cracking, olefin metathesis and ethylene dimeriza-tion is the most profitable configuration under low ethane price scenarios, whereas the combination of ethane and propane steam cracking together with propane dehydrogenation is the optimal solution when the propane price is on the order of ethane price.
机译:在这项工作中,我们提出了一种用于乙烯和丙烯群的最佳设计的超结构优化方法。我们制定了一种嵌入乙烷和丙烷蒸汽开裂技术,丙烷脱氢和烯烃复分解过程的上层建筑。我们用广义分离编程模型代表上层建筑,并通过游戏中的基于逻辑的外逼近算法的自定义实现来解决问题。我们提出了一种用于模拟潜在蒸馏列的状态 - 设备网络表示,以及替代的乙炔反应器配置。配制严格的模型用于蒸馏塔,压缩机,涡轮衣裤,船舶和几个工艺设备单元。目标函数是最大化净现值。我们分析了四种国际价格方案,用于原材料和公用事业费用,同时考虑全球乙烯和丙烯价格。我们获得每种情况的最佳方案。数值结果表明,乙烷蒸汽裂化,烯烃复分解和乙烯二聚体的组合是低乙烷价格情景下最有利可图的结构,而乙烷和丙烷蒸汽溶胀的组合与丙烷脱氢在一起是当丙烷价格时的最佳解决方案是按乙烷价格的顺序。

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