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Adsorption of mixtures containing subcritical fluids on activated carbon
Author(s) -
Do D. D.,
Do H. D.
Publication year - 2002
Publication title -
aiche journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.958
H-Index - 167
eISSN - 1547-5905
pISSN - 0001-1541
DOI - 10.1002/aic.690481012
Subject(s) - adsorption , thermodynamics , activated carbon , chemistry , layering , vapor pressure , component (thermodynamics) , layer (electronics) , chemical engineering , carbon fibers , kelvin equation , chromatography , materials science , organic chemistry , composite material , botany , physics , composite number , engineering , biology
A theoretical analysis of adsorption of mixtures containing subcritical adsorbates into activated carbon is presented as an extension to the theory for pure component developed earlier by Do and coworkers. In this theory, adsorption of mixtures in a pore follows a two‐stage process, similar to that for pure component systems. The first stage is the layering of molecules on the surface, with the behavior of the second and higher layers resembling to that of vapor–liquid equilibrium. The second stage is the pore‐filling process when the remaining pore width is small enough and the pressure is high enough to promote the pore filling with liquid mixture having the same compositions as those of the outermost molecular layer just prior to pore filling. The Kelvin equation is applied for mixtures, with the vapor pressure term being replaced by the equilibrium pressure at the compositions of the outermost layer of the liquid film. Simulations are detailed to illustrate the effects of various parameters, and the theory is tested with a number of experimental data on mixture. The predictions were very satisfactory.

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