Adsorption of flexible n-alkane on graphitized thermal carbon black: analysis of adsorption isotherm by means of GCMC simulation


Autoria(s): Do, D. D.; Do, H. D.
Contribuinte(s)

A. Bell (Editor-in-Chief)

Data(s)

01/04/2005

Resumo

In this paper, we investigate the suitability of the grand canonical Monte Carlo in the description of adsorption equilibria of flexible n-alkane (butane, pentane and hexane) on graphitized thermal carbon black. Potential model of n-alkane of Martin and Siepmann (J. Phys. Chem. 102 (1998) 2569) is employed in the simulation, and we consider the flexibility of molecule in the simulation. By this we study two models, one is the fully flexible molecular model in which n-alkane is subject to bending and torsion, while the other is the rigid molecular model in which all carbon atoms reside on the same plane. It is found that (i) the adsorption isotherm results of these two models are close to each other, suggesting that n-alkane model behaves mostly as rigid molecules with respect to adsorption although the isotherm for longer chain n-hexane is better described by the flexible molecular model (ii) the isotherms agree very well with the experimental data at least up to two layers on the surface.

Identificador

http://espace.library.uq.edu.au/view/UQ:76253

Idioma(s)

eng

Publicador

Pergamon-Elsevier Science Ltd

Palavras-Chave #Engineering, Chemical #Adsorption #N-alkane #Carbon Black #Isotherm #Grand Canonical Monte Carlo Simulation #Density-functional Theory #Monte-carlo-simulation #Transferable Potentials #Computer-simulations #Size Distribution #Phase-equilibria #Micropores #Pore #Temperatures #Equation #C1 #290699 Chemical Engineering not elsewhere classified #670799 Other #290000 Engineering and Technology #290600 Chemical Engineering #290602 Process Control and Simulation
Tipo

Journal Article