Article ID Journal Published Year Pages File Type
215375 The Journal of Chemical Thermodynamics 2014 7 Pages PDF
Abstract

•VLLE data for the (R134 + R600a) system at temperatures ranging from (235.311 to 241.720) K was measured.•The experiment was carried out using an apparatus based on the recirculation of vapor into liquid.•Correlation of VLE data was made using PR−HV−NRTL model.•A strong critical opalescence was observed.

In this work, a study on the (vapor + liquid + liquid) equilibrium (VLLE) for the (R134 + R600a) system was carried out using an apparatus based on the recirculation of vapor into liquid at temperatures ranging from (235.311 to 241.720) K. The uncertainties of the composition, temperature, and pressure were less than ±0.005, ±5 mK and ±0.5 kPa, respectively. Thirty-eight experimental p–T–x data covering both branches of the binodal boundary and nineteen experimental p–T–y data were presented. Three numerical methods were used to obtain the second liquid phase compositions coexisting in equilibrium, and all the three methods lead to consistent results. Moreover, all of the experimental data were correlated by the Peng–Robinson equation of state (PR EoS) with the Huron–Vidal (HV) mixing rule involving the non-random two-liquid (NRTL) activity coefficient model. Then the vapor phase compositions were calculated. The results show good agreement with the experimental data, and the maximum deviation is less than 0.006.

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Physical Sciences and Engineering Chemical Engineering Chemical Engineering (General)
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