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Critical properties and acentric factor (ω) of 31 ionic liquids (ILs) were obtained by using vapor-liquid equilibrium data of solvent+IL consist of P-T and P-x experimental data, based on three-parameter Patel-Teja equation of state and genetic algorithm. Optimized Pc, Tc and ω of ILs with Peng-Robinson equation of state (PR EoS) were used to model the behavior of phase equilibria of solvent+IL.

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Critical properties and acentric factor (ω) of 31 ionic liquids (ILs) were obtained by using vapor-liquid equilibrium data of solvent+IL consist of P-T and P-x experimental data, based on three-parameter Patel-Teja equation of state and genetic algorithm. Optimized Pc, Tc and ω of ILs with Peng-Robinson equation of state (PR EoS) were used to model the behavior of phase equilibria of solvent+IL.

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This page is a summary of: Prediction of critical temperature, critical pressure and acentric factor of some ionic liquids using Patel-Teja equation of state based on genetic algorithm, Korean Journal of Chemical Engineering, August 2017, Springer Science + Business Media,
DOI: 10.1007/s11814-017-0166-2.
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