Lattice-Fluid Description of Phase Equilibria in Supercritical Fluids

격자유체이론을 이용한 초임계유체내에서의 상평형

  • Kim, Ki-Chang (Department of Chemical Engineering, Kangweon National university)
  • 김기창 (강원대학교 공과대학 화학공학과)
  • Published : 1991.10.31

Abstract

The lattice-fluid theory are adopted for modeling the phese equilibria in supercritical fluids, In order to investigate effects of the nonrandom distribution of holes in mixtures on the phase equilibria, the equation of state and the chemical potential of the binary miture are formulated with taking into account nonrandomness of holes distributions in the fluid mixture. The relations of phase equilibria formulated in this work are tested through predictions of solubility of heavy solids in supercritical fluids and predictions of high pressure phase equilibria of binary mixtures. Results obtained exhibit that the lattice fluid model with assumptions of nonrandomness of hole distributions is successful in quantatively mideling the phase equilibria of mixtures of molecules of dissimilar sizes, specifically solids-supercritical fluid mixtures.

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