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首页> 外文期刊>Journal of Thermodynamics >Supercritical Phase Equilibria Modeling of Glyceride Mixtures and Carbon Dioxide Using the Group Contribution EoS
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Supercritical Phase Equilibria Modeling of Glyceride Mixtures and Carbon Dioxide Using the Group Contribution EoS

机译:使用基团贡献EoS对甘油酯混合物和二氧化碳进行超临界相平衡建模

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摘要

The Group Contribution Equation of State (GC-EoS) was extended to represent high-pressure phase equilibria behavior of mixtures containing mono-, di-, triglycerides, and carbon dioxide (CO2). For this purpose, the alcohol-ester and the alcohol-triglyceride binary group interaction parameters were regressed in this work, using experimental phase equilibria data from the literature. The capability of the parameters obtained was assessed by applying the GC-EoS model to simulate the supercritical CO2fractionation of a complex glyceride mixture, which was produced by the ethanolysis of sunflower oil. Experimental data was obtained in a countercurrent packed extraction column at pressures ranging from 16 to 25 MPa and temperatures from 313 to 368 K. The GC-EoS model was applied in a completely predictive manner to simulate the phase equilibria behavior of the multistage separation process. The chemical analysis of the glyceride mixture allowed a significant simplification of its complex composition and thus, a simple and satisfactory simulation of the supercritical extraction process was achieved.
机译:扩展了状态基团贡献方程(GC-EoS)来表示包含甘油一酸酯,甘油二酸酯,甘油三酸酯和二氧化碳(CO2)的混合物的高压相平衡行为。为此,使用文献中的实验相平衡数据,对醇-酯和醇-甘油三酸酯二元基团的相互作用参数进行了回归分析。通过应用GC-EoS模型来模拟由葵花籽油的乙醇分解产生的复杂甘油酯混合物的超临界CO2馏分,可以评估获得的参数的能力。在逆流填充萃取塔中在16至25 MPa的压力和313至368 K的温度下获得实验数据,以完全预测的方式应用GC-EoS模型来模拟多级分离过程的相平衡行为。甘油酯混合物的化学分析可以显着简化其复杂的组成,因此,可以实现对超临界萃取过程的简单且令人满意的模拟。

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