CeO2-based catalysts have been regarded as potential materials for Hg removal due to high catalytic performance, nontoxicity, and low cost. Density functional theory calculations were performed to investigate the mercury oxidation mechanism by HCl over a CeO2 catalyst. The thermodynamic stability analysis suggests that the stoichiometric CeO2(111) is the most stable surface. The protonated CeO2 surfaces takes place at low oxygen partial pressures, and the chlorinated CeO2 surfaces can stably exist under low HCl concentrations. The adsorption energies and geometries show that Hg-0 is physically adsorbed on oxygen sites of the CeO2(111) surface and HCl is chemically adsorbed on the CeO2(111) surface. HCl can dissociate on the CeO2(111) surfac...
Experimental and theoretical studies reveal performance descriptors and provide molecular-level unde...
Formaldehyde is an indoor pollutant, whose removal under mild conditions is of growing importance. M...
The emission of elemental mercury (Hg0) from coal-fired power plants is very hazardous to environmen...
CeO<sub>2</sub>-based catalysts have been regarded as potential materials for Hg removal due to high...
CeO2 is a promising catalytic oxidation material for flue gas mercury removal. Density functional th...
First-principles calculations were performed to investigate the mechanism of Hg-0 adsorption and oxi...
ABSTRACT: Density functional theory (DFT) studies of mercury oxidation on Au(111) are conducted to d...
Heterogeneous reactions of elemental Hg adsorption and oxidation in a simulated flue gas system were...
Efficient and effective control of airborne Hg0 emission during fossil fuels utilization is one of m...
Experiments were conducted in a fixed-bed reactor containing a commercial V2O5/WO3/TiO2 catalyst t...
We used density functional theory (DFT) calculations to investigate the dissociation of H-2 on an Ag...
Experiments were conducted in a fixed-bed reactor containing a commercial V2O5/WO3/TiO2 catalyst to ...
MSc (Chemistry), North-West University, Potchefstroom CampusMercury pollution in South Africa is a g...
Mercury pollution from coal-fired power plants has drawn attention worldwide. To achieve efficient c...
A systematic DFT study was performed to evaluate the effect of oxygenated functional groups for Hg2+...
Experimental and theoretical studies reveal performance descriptors and provide molecular-level unde...
Formaldehyde is an indoor pollutant, whose removal under mild conditions is of growing importance. M...
The emission of elemental mercury (Hg0) from coal-fired power plants is very hazardous to environmen...
CeO<sub>2</sub>-based catalysts have been regarded as potential materials for Hg removal due to high...
CeO2 is a promising catalytic oxidation material for flue gas mercury removal. Density functional th...
First-principles calculations were performed to investigate the mechanism of Hg-0 adsorption and oxi...
ABSTRACT: Density functional theory (DFT) studies of mercury oxidation on Au(111) are conducted to d...
Heterogeneous reactions of elemental Hg adsorption and oxidation in a simulated flue gas system were...
Efficient and effective control of airborne Hg0 emission during fossil fuels utilization is one of m...
Experiments were conducted in a fixed-bed reactor containing a commercial V2O5/WO3/TiO2 catalyst t...
We used density functional theory (DFT) calculations to investigate the dissociation of H-2 on an Ag...
Experiments were conducted in a fixed-bed reactor containing a commercial V2O5/WO3/TiO2 catalyst to ...
MSc (Chemistry), North-West University, Potchefstroom CampusMercury pollution in South Africa is a g...
Mercury pollution from coal-fired power plants has drawn attention worldwide. To achieve efficient c...
A systematic DFT study was performed to evaluate the effect of oxygenated functional groups for Hg2+...
Experimental and theoretical studies reveal performance descriptors and provide molecular-level unde...
Formaldehyde is an indoor pollutant, whose removal under mild conditions is of growing importance. M...
The emission of elemental mercury (Hg0) from coal-fired power plants is very hazardous to environmen...