Title of article
Molecular simulation of structure, thermodynamic and transport properties of polymeric membrane materials for hydrocarbon separation
Author/Authors
Economou، نويسنده , , Ioannis G. and Raptis، نويسنده , , Vasilios E. and Melissas، نويسنده , , Vasilios S. and Theodorou، نويسنده , , Doros N. and Petrou، نويسنده , , John H. Petropoulos، نويسنده , , John H.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2005
Pages
6
From page
15
To page
20
Abstract
Molecular dynamics simulation is used to model the microscopic structure (free volume in particular) and thermodynamic properties of a silicon-containing rubbery polymer that exhibits promising membrane properties for hydrocarbon separation. For this purpose, an accurate united atom force field is developed based on density functional theory calculations. Furthermore, molecular simulation is used to model the solubility and diffusivity of various n-alkanes in the polymer. Overall, the agreement between experimental data and simulation results is very satisfactory.
Keywords
solubility , molecular simulation , Diffusion coefficient , MEMBRANE , Hydrocarbon separation , Polymer
Journal title
Fluid Phase Equilibria
Serial Year
2005
Journal title
Fluid Phase Equilibria
Record number
1984905
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