Title of article :
Phase Behaviors of Binary Hard-Sphere Mixtures Using Simple Analytical Equations of State
Author/Authors :
A. Yokozeki ، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Pages :
26
From page :
643
To page :
668
Abstract :
Recently, we have proposed a unified analytical equation of state (EOS) for solid–liquid–vapor states of matter, and have examined the thermodynamic properties of argon, carbon dioxide, and methane, as well as binary mixtures of methane and carbon dioxide. Also it has been demonstrated that the EOS can be applied for the solid–fluid transition of hard spheres, by eliminating the attractive part of the EOS. The present work is an extension of the earlier calculations for identical hard spheres, and here we examine the phase behavior of binary hard-sphere mixtures. The hard-sphere EOS employed in this study is P = RT V −b V −d V −c k , where k=1 or 2, and k=0 [or c=d =0] as a special case. b, c, and d are proportional to a hard-sphere volume, and their mixing rule is a quadratic form in mole fraction x, with a mixing parameter lij (lij =lji and lii =0). The b parameter is given by b= 2 i,j=1 (bi +bj ) 2 1−lij xixj . Similar mixing rules are applied to c and d. It is shown that various fundamental phase-transition behaviors can be described: ideal or near ideal, azeotropic (maximum and minimum), eutectic, eutectoid, monotectic, peritectic types, and stable fluid–fluid de-mixings without becoming metastable due to the iInterference of solid–liquid phase transitions. Rather complicated phase diagrams with a combination of various types are also predicted. The present
Keywords :
equation of state , phasediagrams , solid , Thermodynamics. , Liquid , Mixtures , Hard spheres
Journal title :
International Journal of Thermophysics
Serial Year :
2004
Journal title :
International Journal of Thermophysics
Record number :
427076
Link To Document :
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