Phase equilibria and surface tension of pure fluids using a molecular layer structure theory (MLST) model
Data(s) |
01/01/2003
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Resumo |
This paper presents a new model based on thermodynamic and molecular interaction between molecules to describe the vapour-liquid phase equilibria and surface tension of pure component. The model assumes that the bulk fluid can be characterised as set of parallel layers. Because of this molecular structure, we coin the model as the molecular layer structure theory (MLST). Each layer has two energetic components. One is the interaction energy of one molecule of that layer with all surrounding layers. The other component is the intra-layer Helmholtz free energy, which accounts for the internal energy and the entropy of that layer. The equilibrium between two separating phases is derived from the minimum of the grand potential, and the surface tension is calculated as the excess of the Helmholtz energy of the system. We test this model with a number of components, argon, krypton, ethane, n-butane, iso-butane, ethylene and sulphur hexafluoride, and the results are very satisfactory. (C) 2002 Elsevier Science B.V. All rights reserved. |
Identificador | |
Idioma(s) |
eng |
Publicador |
Elsevier Science Bv |
Palavras-Chave | #Thermodynamics #Chemistry, Physical #Engineering, Chemical #Model #Vapour-liquid Equilibria #Interfacial Tension #Equation Of State #Equation #State #Methane #C1 #290603 Membrane and Separation Technologies #770501 Air quality |
Tipo |
Journal Article |