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Adsorption of molecular gases on porous materials in the SAFT-VR approximation
Authors:M. Castro  A. Martinez
Affiliation:a IPICyT, Instituto Potosino de Investigacion Cientifica y Tecnologica, Apartado Postal 3-74 Tangamanga, 78231 San Luis Potosí, Mexico
b División de Ciencias e Ingenierías, Campus León, Universidad de Guanajuato, Lomas del Bosque 103, Colonia Lomas del Campestre, León 37150, Mexico
Abstract:A simple molecular thermodynamic approach is applied to the study of the adsorption of gases of chain molecules on solid surfaces. We use a model based on the Statistical Associating Fluid Theory for Variable Range (SAFT-VR) potentials [A. Gil-Villegas, A. Galindo, P.J. Whitehead, S.J. Mills, G. Jackson, A.N. Burgess, J. Chem. Phys. 106 (1997) 4168] that we extend by including quasi-two-dimensional approximation to describe the adsorption properties of these types of real gas [A. Martínez, M. Castro, C. McCabe, A. Gil-Villegas, J. Chem. Phys. 126 (2007) 074707]. The model is applied to ethane, ethylene, propane, and carbon dioxide adsorbed on activated carbon and silica gel, which are porous media of significant industrial interest. We show that the adsorption isotherms obtained by means of the present SAFT-VR modeling are in fair agreement with the experimental results provided in the literature.
Keywords:Adsorption   Statistical associating fluid   Helmholtz free energy   Porous material
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