Artículos de revistas
The chemical-potential route for multicomponent fluids
Fecha
2013-05Registro en:
Santos, Andrés; Rohrmann, Rene Daniel; The chemical-potential route for multicomponent fluids; Physical Review E - Statistical Physics, Plasmas, Fluids And Related Interdisciplinary Topics; 87; 5-2013; 1-8
1063-651X
Autor
Santos, Andrés
Rohrmann, Rene Daniel
Resumen
The chemical potentials of multicomponent fluids are derived in terms of the pair correlation functions for arbitrary number of components, interaction potentials, and dimensionality. The formally exact result is particularized to hard-sphere mixtures with zero or positive nonadditivity. As a simple application, the chemical potentials of three-dimensional additive hard-sphere mixtures are derived from the Percus--Yevick theory and the associated equation of state is obtained. This Percus--Yevick chemical-route equation of state is shown to be more accurate than the virial equation of state. An interpolation between the chemical-potential and compressibility routes exhibits a better performance than the well-known Boublik--Mansoori--Carnahan--Starling--Leland equation of state.