Isobaric Vapor–Liquid Equilibrium Experiments and Thermodynamic Correlations of Methyl Acetate + Methanol Containing Different Ionic Liquids at 101.3 kPa
Huaiwen Fan, Huiqin Zhou, Zhe Wu, Yongbo Chen, Qunsheng Li, Hongkang Zhao
State Key Laboratory of Chemical Engineering Beijing University of Chemical Technology
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The isobaric vapor–liquid equilibrium experiments for the methyl acetate + methanol + ionic liquids (ILs) system were conducted at atmospheric pressure, with 1-butyl-3-methylimidazolium acetate ([BMIM][Ac]), 1-ethyl-3-methylimidazolium acetate ([EMIM][Ac]), and 1-ethyl-3-methylimidazolium dimethyl phosphate ([EMIM][DMP]) employed as entrainers. The ILs exhibit a significant salting-out effect on methyl acetate, resulting in a substantial increase in the relative volatility of methyl acetate with respect to that of methanol. The results show that all three extractants could effectively break the azeotrope of methyl acetate + methanol. The NRTL model was selected to correlate the experimental data, yielding an average relative deviation (ARD) of 3.19% for the binary methyl acetate + methanol system. For the ternary systems of methyl acetate + methanol + [BMIM][Ac], methyl acetate + methanol + [EMIM][Ac], and methyl acetate + methanol + [EMIM][DMP], the ARDs were 1.53%, 4.10%, and 4.04%, respectively, which indicates the good applicability of the NRTL model for the investigated systems.
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材料 / 化学Ionic liquids properties and applications
Phase Equilibria and Thermodynamics · Chemical and Physical Properties in Aqueous Solutions
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