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Extractive distillation:A review

机译:萃取蒸馏:综述

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Extractive distillation is more and more commonly applied in industry, and becomes an important separation method in chemical engineering. This paper provides an in-depth review for extractive distillation. Separation sequence of the columns, combination with other separation processes, tray configuration and operation policy are included in process of extractive distillation. Since the solvent plays an important role in the design of extractive distillation, such conventional and novel separating agents as solid salt, liquid solvent, the combination of liquid solvent and solid salt, and ionic liquid are concerned. The prominent characteristics of extractive distillation is that one new solvent with high boiling-point, i.e. separating agent, is added to the components to be separated, so as to increase their relative volatility. Selection of a suitable solvent is fundamental to ensure an effective and economical design. CAMD as a useful tool is applied for screening the solvents and thus reducing the experimental work. Theories from molecular thermodynamics, which can interpret the microscale mechanism of selecting the solvents, are also collected. To accurately describe the extractive distillation process, mathematical model is necessary. There are two types of mathematical models to simulate extractive distillation process, i.e. equilibrium (EQ) stage model and non-equilibrium (NEQ) stage model. The EQ stage model as an old method is widely used, but the NEQ stage model should be pay more attention. In the end comparison of extractive distillation and adsorption distillation, both of which belong to special distillation suitable for separating close boiling point or azeotropic components, is done, and it is shown that extractive distillation is more advantageous.
机译:萃取蒸馏在工业上越来越普遍,成为化学工程中重要的分离方法。本文为萃取蒸馏提供了深入的综述。萃取蒸馏的过程包括塔的分离顺序,与其他分离过程,塔盘结构和操作策略的组合。由于溶剂在萃取蒸馏的设计中起着重要的作用,因此涉及常规和新颖的分离剂,例如固体盐,液体溶剂,液体溶剂和固体盐的组合以及离子液体。萃取蒸馏的突出特征是将一种高沸点的新溶剂,即分离剂,添加到要分离的组分中,以增加其相对挥发性。选择合适的溶剂对于确保有效且经济的设计至关重要。 CAMD作为有用的工具被用于筛选溶剂,从而减少了实验工作。还收集了分子热力学的理论,这些理论可以解释选择溶剂的微观机理。为了准确描述萃取蒸馏过程,必须建立数学模型。有两种类型的数学模型可以模拟萃取蒸馏过程,即平衡(EQ)阶段模型和非平衡(NEQ)阶段模型。 EQ阶段模型作为一种古老的方法已被广泛使用,但NEQ阶段模型应引起更多关注。最后,对萃取蒸馏和吸附蒸馏进行了比较,两者均属于适于分离沸点或共沸组分的特殊蒸馏,表明萃取蒸馏更为有利。

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