Vapour pressures of very concentrated electrolyte solutions V. Measurements on {(1 − x)H2O + xKSCN} by a dew-point apparatus
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Materials Science,Atomic and Molecular Physics, and Optics
Reference14 articles.
1. Vapour pressures of very concentrated electrolyte solutions IV. Measurements on {(1 − x)(CH3)2SO + xKSCN} by a dew-point apparatus
2. Vapour pressure of very concentrated electrolyte solutions I. Measurements on {(1 − x) H2O + xLiNO3} and {(1 − x) H2O + xNH4NO3} by a dew-point apparatus
3. Vapour pressures of very concentrated electrolyte solutions II. Measurements on {(1 − x) (CH3)2SO + xCa(NO3)2} by a dew-point apparatus
4. Vapour pressures of very concentrated electrolyte solutions III. Measurements on [(1−x)(CH3)2SO + x{(1−y)NH4NO3 + yLiNO3}] by a dew-point apparatus
5. Solution properties of water in molten AgNO3–LiNO3 mixtures as derived from vapour-pressure measurements on AgNO3–LiNO3–H2O melts
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1. Water and Mean Ionic Activities of Aqueous HNO3Solutions Calculated from an Extension of the Brunauer-Emmett-Teller (BET) Model;Separation Science and Technology;2010-07-30
2. Thermodynamic and Transport Properties of Bridging Electrolyte-Water Systems;Modern Aspects of Electrochemistry;2004
3. Statistical mechanics of multilayer adsorption: electrolyte and water activities in concentrated solutions;The Journal of Chemical Thermodynamics;1998-01
4. Activity coefficients in concentrated electrolytes: a comparison of the Brunauer-Emmett-Teller (BET) model with experimental values;Fluid Phase Equilibria;1996-06
5. BET model for calculating activities of salts and water, molar enthalpies, molar volumes and liquid-solid phase behavior in concentrated electrolyte solutions;Fluid Phase Equilibria;1993-08
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