In this paper, we present the results of the prediction of the high-pressure adsorption equilibrium of supercritical gases (Ar, N<SUB>2</SUB>, CH<SUB>4</SUB>, and CO<SUB>2</SUB>) on various activated carbons (BPL, PCB, and Norit R1 extra) at various temperatures using a density-functional-theory-based finite wall thickness (FWT) model. Pore size distribution results of the carbons are taken from our recent previous work, using this approach for characterization. To validate the model, isotherms calculated from the density functional theory (DFT) approach are comprehensively verified against those determined by grand canonical Monte Carlo (GCMC) simulation, before the theoretical adsorption isotherms of these investigated carbons calculated ...
Understanding supercritical gas adsorption in porous carbons requires consistency between experiment...
We use a fast density functional theory (a 'slab-DFT') and the polydisperse independent ideal slit-p...
In this paper, we revisit the surface mass excess in adsorption studies and investigate the role of ...
In this paper, we present the results of the prediction of the high-pressure adsorption equilibrium ...
Density functional theory for adsorption in carbons is adapted here to incorporate a random distribu...
In this paper, we propose a new nonlocal density functional theory characterization procedure, the f...
Activated carbons are amorphous microporous graphitic materials formed (or activated) from a variety...
International audienceThe efficient storage and transportation of natural gas is one of the most imp...
New concepts are introduced in this paper to account for the enhancement of the potential energy of ...
We describe procedures based on the polydisperse independent ideal slit-pore model, Monte Carlo simu...
Hydrogen adsorption isotherms were measured both at cryogenic temperatures below 1 atm and at ambien...
Knowledge of the adsorption behavior of coal-bed gases, mainly under supercritical high-pressure con...
Knowledge of the adsorption behavior of coal-bed gases, mainly under supercritical high-pressure con...
We review recent progress made concerning the modelling of equilibrium gas mixture adsorption in act...
The application of nonlocal density functional theory (NLDFT) to determine pore size distribution (P...
Understanding supercritical gas adsorption in porous carbons requires consistency between experiment...
We use a fast density functional theory (a 'slab-DFT') and the polydisperse independent ideal slit-p...
In this paper, we revisit the surface mass excess in adsorption studies and investigate the role of ...
In this paper, we present the results of the prediction of the high-pressure adsorption equilibrium ...
Density functional theory for adsorption in carbons is adapted here to incorporate a random distribu...
In this paper, we propose a new nonlocal density functional theory characterization procedure, the f...
Activated carbons are amorphous microporous graphitic materials formed (or activated) from a variety...
International audienceThe efficient storage and transportation of natural gas is one of the most imp...
New concepts are introduced in this paper to account for the enhancement of the potential energy of ...
We describe procedures based on the polydisperse independent ideal slit-pore model, Monte Carlo simu...
Hydrogen adsorption isotherms were measured both at cryogenic temperatures below 1 atm and at ambien...
Knowledge of the adsorption behavior of coal-bed gases, mainly under supercritical high-pressure con...
Knowledge of the adsorption behavior of coal-bed gases, mainly under supercritical high-pressure con...
We review recent progress made concerning the modelling of equilibrium gas mixture adsorption in act...
The application of nonlocal density functional theory (NLDFT) to determine pore size distribution (P...
Understanding supercritical gas adsorption in porous carbons requires consistency between experiment...
We use a fast density functional theory (a 'slab-DFT') and the polydisperse independent ideal slit-p...
In this paper, we revisit the surface mass excess in adsorption studies and investigate the role of ...