Monte Carlo simulations of complete phase diagrams for binary Lennard-Jones mixtures

Authors
Citation
Mh. Lamm et Ck. Hall, Monte Carlo simulations of complete phase diagrams for binary Lennard-Jones mixtures, FLU PH EQUI, 182(1-2), 2001, pp. 37-46
Citations number
29
Categorie Soggetti
Physical Chemistry/Chemical Physics","Chemical Engineering
Journal title
FLUID PHASE EQUILIBRIA
ISSN journal
03783812 → ACNP
Volume
182
Issue
1-2
Year of publication
2001
Pages
37 - 46
Database
ISI
SICI code
0378-3812(20010605)182:1-2<37:MCSOCP>2.0.ZU;2-8
Abstract
Vapor-liquid, vapor-solid, liquid-liquid, and liquid-solid coexistence line s are calculated for binary mixtures of Lennard-Jones spheres with diameter ratio sigma (11)/sigma (12) = 0.45, well-depth ratio epsilon (11)/epsilon (22) = 0.45, and binary interaction parameters delta (12) = 1.0, 0.9, and 0 .75, using Monte Carlo simulation and the Gibbs-Duhem integration technique . These calculations allow us to construct complete phase diagrams, i.e. sh owing equilibrium between vapor, liquid, and solid phases. For the mixture with delta (12) = 1, we find a completely miscible vapor-liquid coexistence region with a eutectic solid-liquid coexistence region. These two regions are separated by a completely miscible liquid phase. For the mixtures with delta (12) < 1, we find that the vapor-liquid and solid-liquid coexistence regions interfere. This interference results in a vapor-solid coexistence r egion bounded above and below by solid-liquid-vapor coexistence lines. We a lso find that the mixtures with delta (12) < 1 have a region of liquid-liqu id immiscibility that is metastable with respect to the solid-fluid phase e quilibria. (C) 2001 Elsevier Science B.V. All rights reserved.