首页> 外文期刊>Brazilian journal of chemical engineering >THERMODYNAMIC TOPOLOGICAL ANALYSIS OF EXTRACTIVE DISTILLATION OF MAXIMUM BOILING AZEOTROPES
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THERMODYNAMIC TOPOLOGICAL ANALYSIS OF EXTRACTIVE DISTILLATION OF MAXIMUM BOILING AZEOTROPES

机译:最大沸腾共沸物萃取精馏的热力学拓扑分析

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This paper provides a feasibility study of azeotropic mixture separation based on a topological analysis combining thermodynamic knowledge of residue curve maps, univolatility and unidistribution curves, and extractive profiles. Thermodynamic topological features related to process operations for typical ternary diagram classes 1.0-2 are, for the first time, discussed. Separating acetone/chloroform is presented as an illustrative example; different entrainers are investigated: several heavy ones, a light one, and water, covering the Serafimov classes 1.0-2, 1.0-1a and 3.1-4, respectively. The general feasibility criterion that was previously established for ternary mixtures including only one azeotrope (1.0-1a or 1.0-2) is now, for the first time, extended to that including three azeotropes (class 3.1-4).
机译:本文基于拓扑分析,提供了共沸混合物分离的可行性研究,该拓扑分析结合了残渣曲线图,不变性和单分布曲线以及萃取曲线的热力学知识。首次讨论了与典型三元图类1.0-2的过程操作相关的热力学拓扑特征。以丙酮/氯仿分离为例。研究了不同的夹带剂:几种重的夹带剂,轻的夹带剂和水,分别覆盖了Serafimov的1.0-2、1.0-1a和3.1-4级。以前针对仅包含一种共沸物(1.0-1a或1.0-2)的三元混合物建立的一般可行性标准现在首次扩展到包括三种共沸物(3.1-4类)的标准。

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