Modification of Peng Robinson EOS for modelling (vapour+liquid) equilibria with electrolyte solutions
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Materials Science,Atomic and Molecular Physics, and Optics
Reference31 articles.
1. Phase Equilibria with Supercritical Carbon Dioxide for the Enzymatic Production of an Enantiopure Pyrethroid Component. Part 2. Ternary and Five-Component Systems
2. Modeling electrolyte solutions with the SAFT-VR equation using Yukawa potentials and the mean-spherical approximation
3. An extension of the Peng–Robinson equation of state for the correlation and prediction of high-pressure phase equilibrium in systems containing supercritical carbon dioxide and a salt
4. An Equation of State for Electrolyte Solutions Covering Wide Ranges of Temperature, Pressure, and Composition
5. Application of the MSA-based models in correlating the surface tension for single and mixed electrolyte solutions
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1. Extension of the electrolyte Trebble–Bishnoi EOS to mixed‐salt systems, and application to vapour liquid and solid (hydrate) vapour liquid equilibrium calculations;The Canadian Journal of Chemical Engineering;2022-08-21
2. Application of ePC_SAFT-MB EoS in prediction of VLE for CO2+MDEA+H2O ternary and H2O+MDEA+CO2-CH4 quaternary mixtures;Fluid Phase Equilibria;2020-12
3. Extension of Cubic-Plus-Polar (CPP) equation of state (EoS) for application in aqueous electrolyte solutions;Journal of Molecular Liquids;2020-07
4. Modeling H2S solubility in aqueous N-methyldiethanolamine solution using a new ePC_SAFT-MB equation of state;Fluid Phase Equilibria;2019-12
5. Peng-Robinson equation of state: 40 years through cubics;Fluid Phase Equilibria;2017-09
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