In the present work, fresh and Ca poisoned Fe–Ce/Ti catalysts were prepared and used for the NH3-SCR reaction to investigate the effect of Ca doping on the catalytic activity of catalysts. And these catalysts were characterized by BET, XRD, Raman, UV-vis DRS, XPS, H2-TPR, and NH3-TPD techniques. The obtained results demonstrate that Ca doping could lead to an obvious decrease in the catalytic activity of catalysts. The reasons for this may be due to the smaller specific surface area and pore volume, the decreased ratio of Fe3+/Fe2+ and Ce3+/Ce4+, as well as the reduced redox ability and surface acidity
The different forms of Ca (CaCl2 and Ca(OH)2) poisoned manganese and cerium oxides supported on TiO2...
A Ce–Mn–Fe/TiO2 catalyst has been successfully prepared using a single impregnation method, and exce...
Fe–Ce–Al catalysts were synthesized by the co-precipitation method (labeled as Fe–Ce–Al–P), co-impre...
In the present work, fresh and Ca poisoned Fe–Ce/Ti catalysts were prepared and used for the NH3-SCR...
In the present work, fresh and Ca poisoned Fe–Ce/Ti catalysts were prepared and used for the NH3-SCR...
Many SCR catalysts without V species are developed and used for the NO abatement. The content of Ca ...
Many SCR catalysts without V species are developed and used for the NO abatement. The content of Ca ...
Many SCR catalysts without V species are developed and used for the NO abatement. The content of Ca ...
The Ca poisoning effect constrains vanadium-based catalysts from further application in high-calcium...
The Ca poisoning effect constrains vanadium-based catalysts from further application in high-calcium...
An extraordinary deactivation offset effect of calcium and arsenic on CeO<sub>2</sub>–WO<sub>3</sub>...
Currently, NOx emission control by the selective catalytic reduction of NOx with NH3 (NH3 SCR) techn...
Currently, NOx emission control by the selective catalytic reduction of NOx with NH3 (NH3 SCR) techn...
The poisoning process for the selective catalytic reduction of NO with NH3(NH3-SCR) by the cumulativ...
The poisoning process for the selective catalytic reduction of NO with NH3(NH3-SCR) by the cumulativ...
The different forms of Ca (CaCl2 and Ca(OH)2) poisoned manganese and cerium oxides supported on TiO2...
A Ce–Mn–Fe/TiO2 catalyst has been successfully prepared using a single impregnation method, and exce...
Fe–Ce–Al catalysts were synthesized by the co-precipitation method (labeled as Fe–Ce–Al–P), co-impre...
In the present work, fresh and Ca poisoned Fe–Ce/Ti catalysts were prepared and used for the NH3-SCR...
In the present work, fresh and Ca poisoned Fe–Ce/Ti catalysts were prepared and used for the NH3-SCR...
Many SCR catalysts without V species are developed and used for the NO abatement. The content of Ca ...
Many SCR catalysts without V species are developed and used for the NO abatement. The content of Ca ...
Many SCR catalysts without V species are developed and used for the NO abatement. The content of Ca ...
The Ca poisoning effect constrains vanadium-based catalysts from further application in high-calcium...
The Ca poisoning effect constrains vanadium-based catalysts from further application in high-calcium...
An extraordinary deactivation offset effect of calcium and arsenic on CeO<sub>2</sub>–WO<sub>3</sub>...
Currently, NOx emission control by the selective catalytic reduction of NOx with NH3 (NH3 SCR) techn...
Currently, NOx emission control by the selective catalytic reduction of NOx with NH3 (NH3 SCR) techn...
The poisoning process for the selective catalytic reduction of NO with NH3(NH3-SCR) by the cumulativ...
The poisoning process for the selective catalytic reduction of NO with NH3(NH3-SCR) by the cumulativ...
The different forms of Ca (CaCl2 and Ca(OH)2) poisoned manganese and cerium oxides supported on TiO2...
A Ce–Mn–Fe/TiO2 catalyst has been successfully prepared using a single impregnation method, and exce...
Fe–Ce–Al catalysts were synthesized by the co-precipitation method (labeled as Fe–Ce–Al–P), co-impre...