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High-pressure phase equilibria of systems carbon dioxide + n-eicosane and propane + n-eicosane
Authors:S.B. Rodriguez-Reartes   M. Cismondi   E. Franceschi   M.L. Corazza   J. Vladimir Oliveira  M.S. Zabaloy  
Affiliation:aPlanta Piloto de Ingeniería Química - Universidad Nacional del Sur - CONICET - CC 717 - 8000 Bahía Blanca, Argentina;bFacultad de Ciencias Exactas Físicas y Naturales, Universidad Nacional de Córdoba, Av. Vélez Sarsfield 1611, Ciudad Universitaria, X5016GCA Córdoba, Argentina;cLaboratório de Temodinâmica Aplicada – URI-Campus de Erechim, Av. Sete de Setembro 1621, Erechim, RS, Brazil
Abstract:In this work we investigated the phase equilibrium behavior of the binary asymmetric systems propane (C3) + n-eicosane (C20) and carbon dioxide (CO2) + n-eicosane (C20). We used a variable-volume view cell for obtaining fluid–fluid equilibrium (FFE), solid–fluid equilibrium (SFE) and solid–fluid–fluid equilibrium (SFFE) experimental data. We modeled the phase equilibria of both systems using the Peng–Robinson Equation of State for describing the fluid phases and an expression for the fugacity of pure solid n-eicosane with parameters fit to reproduce the pure n-eicosane melting line. We performed the phase equilibrium calculations by implementing path-following methods for tracking entire solid–fluid (SF) and solid–fluid–fluid (SFF) equilibrium curves for binary asymmetric mixtures. This made it possible to obtain complete isoplethic lines or complete three-phase equilibrium lines in single runs. Although the model is relatively simple, it is able to grasp the complex observed behavior for the systems studied here.
Keywords:Solid–  fluid equilibrium   Fluid–  fluid equilibrium   n-Eicosane   Propane   Carbon dioxide   Experimental   Theoretical methods
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