The selective reduction of NO (0.1%) with propylene (0.1%) in the presence of oxygen (5%) was studied using two Ag catalysts (Ag-ZSM5, Ag/Al2O3) in view of the reaction mechanism within the temperature range of 473¿773 K. Ag/Al2O3 showed high and stable activity more than 24 h, while the activity of Ag-ZSM5 decreased with time on streams. The deactivation in the latter case has been attributed to the deposition of coke in the form of oligomers evoked on Brønsted acid sites of Ag-ZSM5. The ability of Ag/Al2O3 for the oxidation of NO (without the existence of reductant) was rather lower than that of Ag-ZSM5 catalyst. It was explained that the reaction is retarded on Ag/Al2O3 by the formation of nitrate species, which were produced by the reac...
In addition to high activity in hydrocarbon-SCR, Ag/Al2O3 catalysts show excellent activity for NOx ...
Silver and platinum alumina catalysts prepared by a single-step sol-gel procedure, sol-gel alumina s...
The aim of this thesis is to increase the understanding of how to design highly active silver-alumin...
Selective reduction of NO (0.1%) with propylene (0.1%) in the presence of oxygen (5%) with He balanc...
In this study, a Ag/Al2O3 and Ag/Al2O3/Cordierite catalyst was prepared by a conventional impregnati...
The catalytic performance of silver-modified ZSM-5 catalysts in the selectively catalytic reduction ...
This chapter discusses the selective reduction of nitric oxide (NO) to nitrogen (N2) in the presence...
In line with growing concerns to manufacture more environmentally friendly vehicles, the use of inte...
The performance of silver alumina catalysts and silver aluminate was studied in the selective cataly...
Alumina supported silver catalysts for selective catalytic reduction of NOx with hydrocarbons under ...
Silver-alumina catalysts prepared by a single-step co-gelation technique are reported in this letter...
Increasing amounts of carbon dioxide are attaining worldwide growing attention as one probable cause...
The selective catalytic reduction of NO by ethanol under strongly oxidizing conditions (ethanol-SCR)...
Ag-ZSM-5 catalysts were investigated for the selectively catalytic reduction of NO by methane in the...
Low-temperature activity and selectivity for lean NOx reduction over silver/alumina is strongly depe...
In addition to high activity in hydrocarbon-SCR, Ag/Al2O3 catalysts show excellent activity for NOx ...
Silver and platinum alumina catalysts prepared by a single-step sol-gel procedure, sol-gel alumina s...
The aim of this thesis is to increase the understanding of how to design highly active silver-alumin...
Selective reduction of NO (0.1%) with propylene (0.1%) in the presence of oxygen (5%) with He balanc...
In this study, a Ag/Al2O3 and Ag/Al2O3/Cordierite catalyst was prepared by a conventional impregnati...
The catalytic performance of silver-modified ZSM-5 catalysts in the selectively catalytic reduction ...
This chapter discusses the selective reduction of nitric oxide (NO) to nitrogen (N2) in the presence...
In line with growing concerns to manufacture more environmentally friendly vehicles, the use of inte...
The performance of silver alumina catalysts and silver aluminate was studied in the selective cataly...
Alumina supported silver catalysts for selective catalytic reduction of NOx with hydrocarbons under ...
Silver-alumina catalysts prepared by a single-step co-gelation technique are reported in this letter...
Increasing amounts of carbon dioxide are attaining worldwide growing attention as one probable cause...
The selective catalytic reduction of NO by ethanol under strongly oxidizing conditions (ethanol-SCR)...
Ag-ZSM-5 catalysts were investigated for the selectively catalytic reduction of NO by methane in the...
Low-temperature activity and selectivity for lean NOx reduction over silver/alumina is strongly depe...
In addition to high activity in hydrocarbon-SCR, Ag/Al2O3 catalysts show excellent activity for NOx ...
Silver and platinum alumina catalysts prepared by a single-step sol-gel procedure, sol-gel alumina s...
The aim of this thesis is to increase the understanding of how to design highly active silver-alumin...