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Universal thermodynamic model of calculating the mass action concentrations of omponents in a ternary strong electrolyte aqueous solution and its application in the NaCl-KCl-H_2O system 被引量:5

Universal thermodynamic model of calculating the mass action concentrations of omponents in a ternary strong electrolyte aqueous solution and its application in the NaCl-KCl-H_2O system
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摘要 A universal thermodynamic model of calculating the mass action concentrations of components in a ternary strong electrolyte aqueous solution has been developed based on the ion and molecule coexistence theory,and verified in the NaCl-KCl-H2O ternary system at 298.15 K. To compare the difference of the thermodynamic model in binary and ternary strong electrolyte aqueous solutions,the mass action concentrations of components in the NaCl-H2O binary strong electrolyte aqueous solution were also computed at 298.15K. A transformation coefficient was required to compare the calculated mass action concentration and reported activity because they were obtained at different standard states and concentration units. The results show that the transformation coefficients between calculated mass action concentrations and reported activities of the same components change in a very narrow range. The calculated mass action concentrations of components in the NaCl-H2O and NaCl-KCl-H2O systems are in good agreement with the reported activities. This indicates that the developed thermodynamic model can reflect the structural characteristics of solutions,and the mass action concentration also strictly follows the mass action law. A universal thermodynamic model of calculating the mass action concentrations of components in a ternary strong electrolyte aqueous solution has been developed based on the ion and molecule coexistence theory,and verified in the NaCl-KCl-H2O ternary system at 298.15 K. To compare the difference of the thermodynamic model in binary and ternary strong electrolyte aqueous solutions,the mass action concentrations of components in the NaCl-H2O binary strong electrolyte aqueous solution were also computed at 298.15K. A transformation coefficient was required to compare the calculated mass action concentration and reported activity because they were obtained at different standard states and concentration units. The results show that the transformation coefficients between calculated mass action concentrations and reported activities of the same components change in a very narrow range. The calculated mass action concentrations of components in the NaCl-H2O and NaCl-KCl-H2O systems are in good agreement with the reported activities. This indicates that the developed thermodynamic model can reflect the structural characteristics of solutions,and the mass action concentration also strictly follows the mass action law.
出处 《Journal of University of Science and Technology Beijing》 CSCD 2008年第5期543-551,共9页 北京科技大学学报(英文版)
关键词 mass action concentration activity ternary system binary system ion and molecule coexistence theory transformation coefficient mass action concentration activity ternary system binary system ion and molecule coexistence theory transformation coefficient
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  • 1张鉴.几种二元熔盐作用浓度计算模型初探[J].金属学报,1997,33(5):515-523. 被引量:5
  • 2张鉴,北京科技大学学报,1986年,8卷,4期,1页
  • 3张鉴,北京科技大学学报,1984年,1期,21页
  • 4张鉴,Met Trans,1981年,12B卷,2期,311页
  • 5Hajra J.P., Hong-Kee Lee, and Frohberg M.G., Representation of thermodynamic properties ofternary systems and its application to system Ag-Au-Cu ar1350 K [J], Met. Trans. B, 1992, 23B (6): 747.
  • 6Baker H., Okamoto H., Henry S.D., Davidson G.M,Fleming M.A., Kacprzak L., Lampman H. F., and Scott W.W., ASM Handbook Vol. 3, Alloy Phase Di agrams [M], The Materials Information Society, Materials Park, Ohio 44073-0002, 1992: 2.25, 2.28,2.68
  • 7Hultgren R., Desai P.D., Hawkins D.T., et al., Selec ted Values of the Thermodynamic Properties of Bi nary Alloys [M], American Society for Metals, Metals Park, Ohio 44073, 1973: 29-30, 267-269.
  • 8Zhang J., Calculating Thermodynamics of Metallurgical Melts (in Chinese) [M], The Metallurgica;Industry Press, Beijing, 1998:91-113.
  • 9Subramanian P.R. and Perepezko J.H., The Ag-Cu system [J], Journal ofPhase Equilibria, 1993, 14(l): 62.
  • 10Gallois B. and Lupis C H.P., Surface tensions of liquid Ag-Au-Cu alloys [J], Metall. Trans. B, 1981.12B (4): 679.

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