非随机双液模型
化学
醇胺
热力学
水溶液
电解质
三元运算
热容
活度系数
胺气处理
三元数制
焓
吸收(声学)
物理化学
有机化学
材料科学
相(物质)
电极
计算机科学
复合材料
程序设计语言
物理
作者
Ying Zhang,Chau‐Chyun Chen
摘要
Accurate modeling of thermodynamic properties for CO2 absorption in aqueous alkanolamine solutions is essential for the simulation and design of such CO2 capture processes. In this study, we use the Electrolyte Nonrandom Two-Liquid activity coefficient model to develop a rigorous and thermodynamically consistent representation for the MDEA−H2O−CO2 system. The vapor−liquid equilibrium (VLE), heat capacity, and excess enthalpy data for the binary aqueous amine system are used to determine the NRTL interaction parameters for the MDEA−H2O binary. The VLE, heat of absorption, heat capacity, and NMR spectroscopic data for the MDEA−H2O−CO2 ternary system are used to identify the NRTL interaction parameters for the molecule−electrolyte binaries and the previously unavailable standard-state properties of the amine ion, MDEA protonate. The calculated VLE, heat of absorption, heat capacity, and the species concentrations for the MDEA−H2O−CO2 system are compared favorably to experimental data.
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