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Optimization of Extractive Distillation Process with a Single Column for Anhydrous Ethanol Production

机译:单塔无水乙醇生产萃取蒸馏工艺的优化

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Distillation is one of the oldest and most used separation processes that exist in chemical industries worldwide. In cases of azeotropic mixtures, simple distillation is unable to perform separation at a certain composition, so they are separated using azeotropic distillation. Traditionally, there are two different configurations used to produce anhydrous ethanol by azeotropic distillation. One of them is the heterogeneous azeotropic distillation and the other one is the homogeneous azeotropic distillation. In both configurations, it is necessary to add a third component (solvent) to promote separation and it is also necessary to use a second distillation column in order to recover the solvent. This paper deals with homogeneous azeotropic distillation (also called extractive distillation) and the process of obtaining anhydrous ethanol was chosen as a case study. For this case, the solvent used to break the azeotrope was ethylene glycol. The purpose of this work is to determine the optimal conditions of a new configuration of extractive distillation process for producing anhydrous ethanol using only one column with a sidestream withdrawal, using the process simulator Aspen Plus~®. After optimization, it was possible to achieve a reduction of 18.53 % in the reboiler heat duty. A comparison, in terms of energy consumption of the reboilers, between the traditional extractive configuration and the new configuration, was also assessed.
机译:蒸馏是全世界化学工业中最古老和最常用的分离方法之一。在共沸混合物的情况下,简单蒸馏不能以某种组成进行分离,因此使用共沸蒸馏将它们分离。传统上,通过共沸蒸馏有两种不同的构型用于生产无水乙醇。其中一种是非均相共沸蒸馏,另一种是均相共沸蒸馏。在两种配置中,都必须添加第三组分(溶剂)以促进分离,并且还必须使用第二蒸馏塔以回收溶剂。本文涉及均相共沸蒸馏(也称为萃取蒸馏),并以无水乙醇的制备方法为例进行了研究。对于这种情况,用于破坏共沸物的溶剂是乙二醇。这项工作的目的是使用过程仿真器AspenPlus®来确定仅使用一根带有侧流抽提塔的无水乙醇萃取萃取蒸馏工艺新配置的最佳条件。经过优化,可以将再沸器的热负荷降低18.53%。在再沸器能耗方面,还评估了传统抽采配置和新配置之间的比较。

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