化学
三元运算
热力学
相(物质)
三元数制
相平衡
物理化学
有机化学
物理
计算机科学
程序设计语言
作者
Xiang Zhang,Shi‐Hua Sang,Chun-Tao Hu,Ling-Xuan Wang
标识
DOI:10.1021/acs.jced.5c00264
摘要
The thermodynamic solid–liquid phase equilibria of the ternary system KHCO3–NaHCO3–H2O at 288.15, 308.15, and 323.15 K were investigated using the isothermal dissolution equilibrium method. The phase diagrams of the ternary system KHCO3–NaHCO3–H2O are simple, containing one invariant point, two solubility curves, and two crystallization fields (corresponding to KHCO3 and NaHCO3), with no double salts or solid solutions formed. As the temperature increases, the crystallization fields of both KHCO3 and NaHCO3 expand, but the crystallization field of NaHCO3 always remains larger than that of KHCO3. This suggests that in this saturated ternary system, NaHCO3 is more prone to crystallize out. Based on the solid–liquid phase equilibrium experiments, the mixed salt Pitzer parameters (ΨK+, Na+, HCO3–) for the ternary system KHCO3–NaHCO3–H2O at 308.15 and 323.15 K were fitted and calculated. The Pitzer model was further employed to theoretically predict the solid–liquid phase equilibria of this ternary system at 288.15, 308.15, and 323.15 K. The modeling and experimental phase diagrams are in good agreement. This result validates the applicability and accuracy of the Pitzer model and the fitted mixed salt parameters for this ternary system.
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