Isobaric vapor-liquid-liquid-solid equilibria for the ternary system water + sodium chloride + 1-propanol have been determined at 101.3 kPa by means of a modified recirculating still. The addition of sodium chloride to the solvent mixture results in the appearance of different equilibrium regions. A detailed quantitative analysis of the evolution with temperature of the phase diagram has been carried out. The experimental data obtained in this way have been compared, on the one hand, with previously published data containing important inconsistencies and, on the other hand, with data calculated by the extended UNIQUAC model.We would like to thank the DGICYT of Spain for the financial support of project CTQ2014-59496
Consistent vapour–liquid equilibrium (VLE) data for the binary system 1-propanol+1-pentanol and for ...
A recirculation apparatus in which the vapor phase was forced through the liquid was used to measure...
A mixture of water + NaCl + 1-butanol at 101.3 kPa is studied in order to determine the influence of...
Isobaric vapor-liquid-liquid-solid equilibria for the ternary system water + sodium chloride + 1-pro...
In this work, the equilibrium of the system water + 1-butanol + 2-pentanol is studied. Data for isob...
The equilibrium of the ternary electrolyte system at 101.3 kPa, water + 1-propanol + ammonium chlori...
The lowest temperature at which water-KC1-2-propanol mixtures cannot be split has been determined as...
Isobaric vapour–liquid and vapour–liquid–liquid equilibrium data for the water + 1-butanol + toluene...
The SLLV phase equilibria of the water + NaCl + 2-propanol mixture have been determined experimental...
Vapor-liquid equilibria were measured isothermally in the two title systems at 333.15, 343.15, and 3...
Vapor–liquid equilibrium (VLE) data for the systems 2-propanol + water + calcium chloride, 2-propano...
Experimental equilibrium data of the systems water + NaCl or KCl+ 2-methyl 2-propanol are determined...
The methodology for the study of the liquid–liquid and liquid–liquid–solid equilibrium of quaternary...
Solid-liquid equilibria are less considered in inorganic thermochemistry, comparatively to the other...
In this work, the isobaric vapor–liquid equilibrium (VLE) data for binary mixtures of 2,2,3,3-tetraf...
Consistent vapour–liquid equilibrium (VLE) data for the binary system 1-propanol+1-pentanol and for ...
A recirculation apparatus in which the vapor phase was forced through the liquid was used to measure...
A mixture of water + NaCl + 1-butanol at 101.3 kPa is studied in order to determine the influence of...
Isobaric vapor-liquid-liquid-solid equilibria for the ternary system water + sodium chloride + 1-pro...
In this work, the equilibrium of the system water + 1-butanol + 2-pentanol is studied. Data for isob...
The equilibrium of the ternary electrolyte system at 101.3 kPa, water + 1-propanol + ammonium chlori...
The lowest temperature at which water-KC1-2-propanol mixtures cannot be split has been determined as...
Isobaric vapour–liquid and vapour–liquid–liquid equilibrium data for the water + 1-butanol + toluene...
The SLLV phase equilibria of the water + NaCl + 2-propanol mixture have been determined experimental...
Vapor-liquid equilibria were measured isothermally in the two title systems at 333.15, 343.15, and 3...
Vapor–liquid equilibrium (VLE) data for the systems 2-propanol + water + calcium chloride, 2-propano...
Experimental equilibrium data of the systems water + NaCl or KCl+ 2-methyl 2-propanol are determined...
The methodology for the study of the liquid–liquid and liquid–liquid–solid equilibrium of quaternary...
Solid-liquid equilibria are less considered in inorganic thermochemistry, comparatively to the other...
In this work, the isobaric vapor–liquid equilibrium (VLE) data for binary mixtures of 2,2,3,3-tetraf...
Consistent vapour–liquid equilibrium (VLE) data for the binary system 1-propanol+1-pentanol and for ...
A recirculation apparatus in which the vapor phase was forced through the liquid was used to measure...
A mixture of water + NaCl + 1-butanol at 101.3 kPa is studied in order to determine the influence of...