Simulation study of methanol and ethanol adsorption on graphitized carbon black


Autoria(s): Do, D. D.; Birkett, G. R.
Contribuinte(s)

Peter A. Thrower

Data(s)

01/08/2006

Resumo

GCMC simulations are applied to the adsorption of sub-critical methanol and ethanol on graphitized carbon black at 300 K. The carbon black was modelled both with and without carbonyl functional groups. Large differences are seen between the amounts adsorbed for different carbonyl configurations at low pressure prior to monolayer coverage. Once a monolayer has been formed on the carbon black, the adsorption behaviour is similar between the model surfaces with and without functional groups. Simulation isotherms for the case of low carbonyl concentrations or no carbonyls are qualitatively similar to the few experimental isotherms available in the literature for methanol and ethanol adsorption on highly graphitized carbon black. Isosteric heats and adsorbed phase heat capacities are shown to be very sensitive to carbonyl configurations. A maximum is observed in the adsorbed phase heat capacity of the alcohols for all simulations but is unrealistically high for the case of a plain graphite surface. The addition of carbonyls to the surface greatly reduces this maximum and approaches experimental data with carbonyl concentration as low as 0.09 carbonyls/nm(2).

Identificador

http://espace.library.uq.edu.au/view/UQ:80869

Idioma(s)

eng

Publicador

Taylor & Francis Ltd

Palavras-Chave #molecular simulation #methanol #ethanol #adsorption #carbon black #Monte-carlo Simulation #Molecular Simulation #Water-adsorption #Activated Carbon #Phase Coexistence #Surface #Pores #Mixtures #Heterogeneity #Temperature #C1 #290699 Chemical Engineering not elsewhere classified #670601 Chemical fertilisers
Tipo

Journal Article