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Separation of acetonitrile/methanol/benzene ternary azeotrope via triple column pressure-swing distillation

机译:三塔变压蒸馏分离乙腈/甲醇/苯三元共沸物

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Acetonitrile/methanol/benzene mixture forms more than one different azeotropes and its triangular diagram presents several distillation boundaries at atmospheric pressure. A process named as triple column pressure-swing distillation (TCPSD) was proposed to separate this complex ternary system. The feasibility of the process was confirmed using residue curve maps and rigorous steady-state simulations were implemented on Aspen Plus. On basis of minimum total annual cost, several operating parameters were optimized by pressure-swing optimization software using the sequential iterative optimization procedure and the economics of TCPSD were compared with four different separation configurations. The results demonstrated that the A-M-B separation configuration was the most optimal column sequence in global optimization to separate acetonitrile/methanol/benzene azeotropic mixture using TCPSD. TCPSD may arouse the interest of researchers in various fields and can assist engineers to select the optimal separating process. (C) 2016 Elsevier B.V. All rights reserved.
机译:乙腈/甲醇/苯混合物形成一种以上的不同共沸物,其三角形图在大气压下呈现出多个蒸馏边界。提出了一种称为三塔变压蒸馏(TCPSD)的方法来分离该复杂的三元系统。使用残留曲线图确认了该方法的可行性,并在Aspen Plus上进行了严格的稳态模拟。在最小的年度总成本的基础上,使用变压优化软件使用顺序迭代优化程序对几个运行参数进行了优化,并将TCPSD的经济性与四种不同的分离配置进行了比较。结果表明,在使用TCPSD分离乙腈/甲醇/苯共沸混合物的全局优化中,A-M-B分离配置是最优化的色谱柱顺序。 TCPSD可能会引起各个领域研究人员的兴趣,并可以帮助工程师选择最佳的分离过程。 (C)2016 Elsevier B.V.保留所有权利。

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