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首页> 外文期刊>The Journal of Chemical Thermodynamics >Entrainers selection and vapour-liquid equilibrium measurements for separating azeotropic mixtures (ethanol plus n-hexane/cyclohexane) by extractive distillation
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Entrainers selection and vapour-liquid equilibrium measurements for separating azeotropic mixtures (ethanol plus n-hexane/cyclohexane) by extractive distillation

机译:通过萃取蒸馏分离共沸混合物(乙醇加正己烷/环己烷)的夹带器选择和蒸汽液平衡测量

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For synthesis of ethyl propionate with ethanol and propionic acid as raw materials, n-hexane and cyclohexane are usually used as water-carrying agents. However, ethanol can form the minimum boiling azeotropic mixtures with n-hexane and cyclohexane. For separating the binary azeotropic mixtures (ethanol + n-hexane) and (ethanol + cyclohexane) by extractive distillation, in this work, the suitable entrainers were explored by selectivity and relative volatility, and the influence of the selected entrainers on the azeotropic system phase behaviour was analyzed. Based on the selection results, butyl propanoate and butyl butanoate were adopted as the entainers. The vapour-liquid equilibrium (VLE) data for the four binary mixtures (n-hexane + butyl propanoate), (n-hexane + butyl butanoate), (cyclohexane + butyl propanoate) and (cyclohexane + butyl butanoate) were investigated. Furthermore, the VLE data was validated using the van Ness and Herington tests. Also, the experimental data was fitted by the Wilson, UNIQUAC and NRTL models. The binary interaction parameters were optimized for the separation process design and simulation. (C) 2020 Elsevier Ltd.
机译:对于用乙醇和丙酸的丙酸乙酯合成作为原料,N-己烷和环己烷通常用作携带剂。然而,乙醇可以形成用正己烷和环己烷的最小沸点共沸混合物。通过萃取蒸馏将二元共沸混合物(乙醇+正己烷)和(乙醇+环己烷)分离,在该工作中,通过选择性和相对挥发性来探索合适的夹带剂,以及所选择的夹带剂对共沸系统阶段的影响分析了行为。基于选择结果,采用丙基丙酸丁酯和丁醇丁酸丁酯作为主体。研究了四个二元混合物(N-己烷+丙基丙酸丁酯),(正己烷+丁酯),(环己烷+丁基丙酸丁酯)和(环己烷+丙酸丁酯)和(环己烷+丁基丁酯)的汽液平衡(VLE)数据。此外,使用Van Ness和Herington测试验证了VLE数据。此外,实验数据由Wilson,Uniquac和NRTL模型安装。为分离过程设计和仿真进行了优化二进制交互参数。 (c)2020 Elsevier Ltd.

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