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Energy efficiency improvement of a bioethanol distillery, by replacing a rectifying column with a pervaporation unit

机译:通过用全蒸发单元替换精馏塔来提高生物乙醇蒸馏厂的能效

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Separation methods for ethanol production are among the most energy consumption in chemical industry. The design of efficient process is part of challenges faced by process engineering. The aim of this work is to reduce the operating energy and cost of a Moroccan distillery process. The separation process of this distillery consists of a distillation, purification and rectifying column under vacuum. In this study, a hybrid distillation-pervaporation process was proposed by replacing the rectifying column, which requires more than half of the total energy of the process, with the pervaporation unit. The pervaporation unit was modeled and simulated using appropriate model. Afterwards, the design of the hybrid process has been performed coupling the obtained pervaporation model with a simulator of the separation columns. The performance of the hybrid distillation-pervaporation process has been evaluated by simulation. A reduction of about 64.5% can be obtained for the operating energy and cost compared to the industrial distillation process. (C) 2018 Elsevier Ltd. All rights reserved.
机译:乙醇生产的分离方法是化学工业中能耗最大的方法之一。高效过程的设计是过程工程面临的挑战的一部分。这项工作的目的是减少摩洛哥酿酒厂工艺的操作能源和成本。该酒厂的分离过程包括在真空下的蒸馏,纯化和精馏塔。在这项研究中,提出了一种混合蒸馏-全蒸发工艺,方法是用全蒸发单元代替精馏塔,该精馏塔需要消耗该工艺总能量的一半以上。使用合适的模型对渗透蒸发单元进行建模和仿真。此后,已经完成了混合工艺的设计,将获得的全蒸发模型与分离塔的模拟器耦合在一起。通过仿真评估了混合蒸馏-全蒸发过程的性能。与工业蒸馏方法相比,可减少约64.5%的运行能源和成本。 (C)2018 Elsevier Ltd.保留所有权利。

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