A model using the ideal adsorbed solution theory (IAST) coupled with the micropore-size distribution (MPSD) concept is proposed to describe the multicomponent adsorption equilibrium and kinetics of gases in activated carbon. To overcome the thermodynamic violation, the IAST instead of the extended Langmuir equation was used to calculate the local multicomponent adsorption equilibrium. The micropore size is related to the adsorbate-adsorbent interaction energy by the Lennard-Jones potential. The overall adsorption isotherm and the diffusion flux of the adsorbed species are the integrals of their corresponding local values over all micropore-size distribution range accessible by the adsorbate molecules. The size exclusion effect was taken int...
Extensive experimental data of binary adsorption kinetics of ethane and propane onto Ajax activated ...
The heterogeneous structure of activated carbon is studied by using a pore size distribution concept...
The heterogeneous structure of activated carbon is studied by using a pore size distribution concept...
A model using the ideal adsorbed solution theory (IAST) coupled with the micropore-size distribution...
A model is proposed using the Ideal Adsorption Solution Theory (IAST) and micropore size distributio...
A mathematical model is proposed to predict multicomponent adsorption equilibrium of gases in a hete...
A mathematical model is proposed to predict multicomponent adsorption equilibrium of gases in a hete...
A recently proposed model using the ideal adsorbed solution theory (IAST) and micropore size distrib...
A recently proposed model using the ideal adsorbed solution theory (IAST) and micropore size distrib...
A mathematical model utilizing ideal adsorbed solution theory (IAST) and micropore size distribution...
A mathematical model utilizing ideal adsorbed solution theory (IAST) and micropore size distribution...
A heterogeneous multicomponent adsorption model is presented to study the adsorption equilibrium and...
Comprehensive theoretical and experimental study of multicomponent adsorption equilibrium and kineti...
This article investigates the effect of surface heterogeneity and energy-matching scheme on the pred...
A heterogeneous multicomponent adsorption isotherm model is proposed to describe the adsorption equi...
Extensive experimental data of binary adsorption kinetics of ethane and propane onto Ajax activated ...
The heterogeneous structure of activated carbon is studied by using a pore size distribution concept...
The heterogeneous structure of activated carbon is studied by using a pore size distribution concept...
A model using the ideal adsorbed solution theory (IAST) coupled with the micropore-size distribution...
A model is proposed using the Ideal Adsorption Solution Theory (IAST) and micropore size distributio...
A mathematical model is proposed to predict multicomponent adsorption equilibrium of gases in a hete...
A mathematical model is proposed to predict multicomponent adsorption equilibrium of gases in a hete...
A recently proposed model using the ideal adsorbed solution theory (IAST) and micropore size distrib...
A recently proposed model using the ideal adsorbed solution theory (IAST) and micropore size distrib...
A mathematical model utilizing ideal adsorbed solution theory (IAST) and micropore size distribution...
A mathematical model utilizing ideal adsorbed solution theory (IAST) and micropore size distribution...
A heterogeneous multicomponent adsorption model is presented to study the adsorption equilibrium and...
Comprehensive theoretical and experimental study of multicomponent adsorption equilibrium and kineti...
This article investigates the effect of surface heterogeneity and energy-matching scheme on the pred...
A heterogeneous multicomponent adsorption isotherm model is proposed to describe the adsorption equi...
Extensive experimental data of binary adsorption kinetics of ethane and propane onto Ajax activated ...
The heterogeneous structure of activated carbon is studied by using a pore size distribution concept...
The heterogeneous structure of activated carbon is studied by using a pore size distribution concept...