AbstractThe effect of surface charged defects in carbon mesoporous materials on adsorption selectivity for a CO2/CH4 gas mixture relevant to natural gas was studied by means of classical molecular dynamics (MD) simulation. The mole fraction of CO2 was 0.1, T = 300K and the partial pressure of CO2 was up to 40 bars. A graphite slit pore of 3.0nm was taken as a model for mesoporous carbon. The localized charged defects within an electroneutral pore surface were found to increase the CO2/CH4 separation selectivity. In addition, such surface charges interact with CO2 molecules only. The selectivity reduces with increasing pressures. Our model with a defect charge of 0.2 electron/atom can reproduce the selectivity CO2/CH4 of the experimental dat...
We performed classical molecular dynamics (MD) simulations to understand the mechanism of adsorption...
We performed classical molecular dynamics (MD) simulations to understand the mechanism of adsorption...
Spherical carbon molecular sieves (CMS) have selective adsorptive properties which are suitable for ...
AbstractClassical molecular dynamics simulations were performed to study the effect of pore width an...
Classical molecular dynamics simulations were performed to study the effect of pore width and surfac...
We report a comparison of the adsorption of CH4 and CO2/CH4 mixtures of different composition in thr...
We have studied the synergetic effect of confinement (carbon nanopore size) and surface chemistry (t...
Molecular simulations were performed to study the separation of CH4 and N2 from mixtures of composit...
Adsorption and separation of gases in porous carbon models are studied using molecular simulations. ...
Adsorption in porous materials is a promising technology for CO2 capture and storage. Particularly ...
A combined experimental and molecular simulation study of the coadsorption of CO2 and CH4 in porous ...
ABSTRACT: Effects of oxygen-containing surface functionalities on the adsorption of mixtures includi...
Carbon dioxide gas separation is important for many environmental and energy applications. Molecular...
By using simulation methods, we studied the adsorption of binary CO2-CH4 mixtures on various CH4 pre...
By using simulation methods, we studied the adsorption of binary CO2-CH4 mixtures on various CH4 pre...
We performed classical molecular dynamics (MD) simulations to understand the mechanism of adsorption...
We performed classical molecular dynamics (MD) simulations to understand the mechanism of adsorption...
Spherical carbon molecular sieves (CMS) have selective adsorptive properties which are suitable for ...
AbstractClassical molecular dynamics simulations were performed to study the effect of pore width an...
Classical molecular dynamics simulations were performed to study the effect of pore width and surfac...
We report a comparison of the adsorption of CH4 and CO2/CH4 mixtures of different composition in thr...
We have studied the synergetic effect of confinement (carbon nanopore size) and surface chemistry (t...
Molecular simulations were performed to study the separation of CH4 and N2 from mixtures of composit...
Adsorption and separation of gases in porous carbon models are studied using molecular simulations. ...
Adsorption in porous materials is a promising technology for CO2 capture and storage. Particularly ...
A combined experimental and molecular simulation study of the coadsorption of CO2 and CH4 in porous ...
ABSTRACT: Effects of oxygen-containing surface functionalities on the adsorption of mixtures includi...
Carbon dioxide gas separation is important for many environmental and energy applications. Molecular...
By using simulation methods, we studied the adsorption of binary CO2-CH4 mixtures on various CH4 pre...
By using simulation methods, we studied the adsorption of binary CO2-CH4 mixtures on various CH4 pre...
We performed classical molecular dynamics (MD) simulations to understand the mechanism of adsorption...
We performed classical molecular dynamics (MD) simulations to understand the mechanism of adsorption...
Spherical carbon molecular sieves (CMS) have selective adsorptive properties which are suitable for ...