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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 99, 2001 - Issue 24
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Original Articles

A new simulation method for the determination of phase equilibria in mixtures in the grand canonical ensemble

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Pages 2011-2022 | Received 10 Apr 2001, Accepted 15 Aug 2001, Published online: 23 Nov 2009
 

Abstract

A grand canonical Monte Carlo (GCMC) simulation method is presented for the determination of the phase equilibria of mixtures. The coexistence is derived by expanding the pressure into a Taylor series as a function of the temperature and the chemical potentials that are the independent intensive variables of the grand canonical ensemble. The coefficients of the Taylor series can be calculated from ensemble averages and fluctuation formulae that are obtained from GCMC simulations in both phases. The method is able to produce the equilibrium data in a certain domain of the (T, p) plane from two GCMC simulations. The vapour-liquid equilibrium results obtained for a Lennard-Jones mixture agree well with the corresponding Gibbs ensemble Monte Carlo data.

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