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Vapor−Liquid Equilibria for the Systems Difluoromethane + Chlorodifluoromethane, Difluoromethane + Dichlorodifluoromethane, and Difluoromethane + Chloromethane at 10.0 °C
11
Citations
6
References
1996
Year
EngineeringVapor−liquid EquilibriaOrganic ChemistryExperimental ThermodynamicsChemistrySolution (Chemistry)Thermodynamic ModellingChemical EngineeringIsothermal Vapor−liquid EquilibriaMolecular ThermodynamicsThermodynamicsEquilibrium Thermodynamic PropertyWilson EquationMinimum Boiling AzeotropePhysicsPhysical ChemistryHeat TransferPhase EquilibriumNatural SciencesApplied PhysicsThermal EngineeringChemical KineticsThermophysical Property
Isothermal vapor−liquid equilibria for the three binary systems (difluoromethane + chlorodifluoromethane, difluoromethane + dichlorodifluoromethane, and difluoromethane + chloromethane) have been measured at 10.0 °C. The experimental data for the binary systems are correlated with the Wilson equation and the relevant parameters are presented. The difluoromethane + dichlorodifluoromethane system forms a minimum boiling azeotrope, but the others do not.
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