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The phase equilibrium and density studies of the ternary mixtures of CO2 + Ar + N2 and CO2 + Ar + H2, systems relevance to CCS technology

机译:与CCS技术相关的CO2 + Ar + N2和CO2 + Ar + H2三元混合物的相平衡和密度研究

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摘要

The p-T phase diagrams of two ternary systems (CO2 + Ar + N2 and CO2 + Ar + H2) have been measured at temperatures between 268 and 303 K using a fibre-optic phase equilibrium analyser. CO2, which is the major component, has a mole fraction ranging from 0.90 to 0.98 in both systems. The molar ratio of the two minor components is Ar:N2 = 1:1 and Ar:H2 = 2:3, respectively for the two ternary systems. In addition, the density of a ternary mixture with xAr = 0.050 and xN2 = 0.050 is reported at 293.15 K, 303.15 K, 313.15 and 333.15 K and pressures up to 23 MPa. The new experimental phase equilibrium and density data have also been used to evaluate the GERG-2008/EOS-CG, gSAFT and Peng-Robinson equations of state. Among these equations, EOS-CG exhibits the best predictions on both the p-T phase diagrams and densities of CO2 + Ar + N2; and gSAFT gives the lowest average absolute deviation between the predicted and the measured bubble-point pressures of CO2 + Ar + H2.
机译:使用光纤相位平衡分析仪在268至303 K之间的温度下测量了两个三元系统(CO2 + Ar + N2和CO2 + Ar + H2)的p-T相图。在两个系统中,CO2是主要成分,其摩尔分数在0.90至0.98之间。对于两个三元体系,两个次要组分的摩尔比分别为Ar:N2 = 1:1和Ar:H2 = 2:3。此外,据报道xAr = 0.050和xN2 = 0.050的三元混合物的密度为293.15 K,303.15 K,313.15和333.15 K,压力最高为23 MPa。新的实验相平衡和密度数据也已用于评估GERG-2008 / EOS-CG,gSAFT和Peng-Robinson状态方程。在这些方程式中,EOS-CG在p-T相图和CO2 + Ar + N2的密度方面都表现出最好的预测。 gSAFT给出了预测的和测得的CO2 + Ar + H2气泡点压力之间的最低平均绝对偏差。

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