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首页> 外文期刊>The Journal of Chemical Thermodynamics >Phase equilibrium modeling of triglycerides in supercritical fluids
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Phase equilibrium modeling of triglycerides in supercritical fluids

机译:超临界流体中甘油三酸酯的相平衡模型

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摘要

To design a reactor and separator for a supercritical biodiesel process, phase equilibria of multi-component mixtures in supercritical fluids should be determined using group contribution with association equation of state (GCA-EOS) as a thermodynamics method. The model is considered for two systems of reactants and products. System 1 is comprised of methanol and triglycerides from two sources (palm and Jatropha oils); and System 2 is unconverted methanol, FAME (product) and glycerol (by-product). Pressure and temperature diagrams were developed at different mole fraction of methanol (xMeOH). As x MeOH increased, the critical temperature (Tc) and pressure (pc) increased. The increasing temperature causes the immiscibility region and the amount of methanol at the plait point to decrease. The maximum plait point pressure was observed at 19.20 MPa for palm and 19.33 MPa for Jatropha oil systems.
机译:为了设计用于超临界生物柴油过程的反应器和分离器,应使用具有状态缔合方程的基团贡献(GCA-EOS)作为热力学方法来确定超临界流体中多组分混合物的相平衡。该模型适用于反应物和产物的两个系统。系统1由来自两种来源的甲醇和甘油三酸酯(棕榈油和麻风树油)组成;系统2是未转化的甲醇,FAME(产品)和甘油(副产品)。在甲醇(xMeOH)的不同摩尔分数下绘制了压力和温度图。随着x MeOH的增加,临界温度(Tc)和压力(pc)增加。温度升高导致不溶混区域和褶点处的甲醇量减少。棕榈的最大褶点压力为19.20 MPa,麻风树油系统的最大褶点压力为19.33 MPa。

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