Adsorption of Supercritical fluids on graphitised thermal carbon black: Molecular layer structure theory versus grand canonical Monte Carlo simulation


Autoria(s): Do, D. D.; Do, H. D.; Ustinov, E.
Data(s)

18/03/2003

Resumo

This paper presents a detailed analysis of adsorption of supercritical fluids on nonporous graphitized thermal carbon black. Two methods are employed in the analysis. One is the molecular layer structure theory (MLST), proposed recently by our group, and the other is the grand canonical Monte Carlo (GCMC) simulation. They were applied to describe the adsorption of argon, krypton, methane, ethylene, and sulfur hexafluoride on graphitized thermal carbon black. It was found that the MLST describes all the experimental data at various temperatures well. Results from GCMC simulations describe well the data at low pressure but show some deviations at higher pressures for all the adsorbates tested. The question of negative surface excess is also discussed in this paper.

Identificador

http://espace.library.uq.edu.au/view/UQ:66777

Idioma(s)

eng

Publicador

Amer Chemical Soc

Palavras-Chave #Chemistry, Physical #High-pressure Adsorption #Activated Carbon #Physical Adsorption #Methane #Gases #Model #Micropores #Isotherms #Equation #Pores #C1 #290603 Membrane and Separation Technologies #770501 Air quality
Tipo

Journal Article