Formation of reaction products over silver/alumina during lean NOx reduction with methanol was studied, with and without addition of hydrogen to the feed. The silver phase in silver/alumina was analyzed by UV–vis spectroscopy in order to elucidate the influence of silver loading and different gas environments. Formation of molecular hydrogen and reduction of supported silver species were observed during selective catalytic reduction (SCR) with methanol, without hydrogen in the feed. This availability of hydrogen and the reduction of silver are suggested to contribute to the high low-temperature activity connected to oxygenates (like alcohols) as reducing agents for NOx
The influence of silver loading on the lean NO x reduction activity using methanol as reductant has...
The aim of this thesis is to increase the understanding of how to design highly active silver-alumin...
This study focuses on the performance of Ag/Al2O3 catalysts for hydrocarbon selective catalytic redu...
Formation of reaction products over silver/alumina during lean NOx reduction with methanol was studi...
High low-temperature activity for lean NOx reduction can be achieved for silver/alumina by using an ...
The influence of hydrogen and silver loading on lean NOx reduction with methanol over Ag-Al2O3 are i...
The oxygen rich and relatively cold exhaust gases from fuel-efficient combustion engines bring chall...
Low-temperature activity and selectivity for lean NOx reduction over silver/alumina is strongly depe...
Methanol is a potential renewable fuel for the transport sector and is thus interesting to study as ...
The aim of this thesis is to find catalysts which show high activity and selectivity forlean NOx red...
Silver/alumina catalysts are known to be highly active for hydrogen-assisted selective catalytic red...
Silver/alumina is a promising catalyst for the selective catalytic reduction of NOx by hydrocarbons ...
The role of hydrogen in H-2-assisted HC-SCR of NOx over Ag-Al2O3 is investigated by XPS and in situ ...
Alumina-supported silver and indium catalysts are investigated for the hydrogen-assisted selective c...
This work focuses on the selective catalytic reduction (SCR) of nitrogen oxides (NOx) with ethane, e...
The influence of silver loading on the lean NO x reduction activity using methanol as reductant has...
The aim of this thesis is to increase the understanding of how to design highly active silver-alumin...
This study focuses on the performance of Ag/Al2O3 catalysts for hydrocarbon selective catalytic redu...
Formation of reaction products over silver/alumina during lean NOx reduction with methanol was studi...
High low-temperature activity for lean NOx reduction can be achieved for silver/alumina by using an ...
The influence of hydrogen and silver loading on lean NOx reduction with methanol over Ag-Al2O3 are i...
The oxygen rich and relatively cold exhaust gases from fuel-efficient combustion engines bring chall...
Low-temperature activity and selectivity for lean NOx reduction over silver/alumina is strongly depe...
Methanol is a potential renewable fuel for the transport sector and is thus interesting to study as ...
The aim of this thesis is to find catalysts which show high activity and selectivity forlean NOx red...
Silver/alumina catalysts are known to be highly active for hydrogen-assisted selective catalytic red...
Silver/alumina is a promising catalyst for the selective catalytic reduction of NOx by hydrocarbons ...
The role of hydrogen in H-2-assisted HC-SCR of NOx over Ag-Al2O3 is investigated by XPS and in situ ...
Alumina-supported silver and indium catalysts are investigated for the hydrogen-assisted selective c...
This work focuses on the selective catalytic reduction (SCR) of nitrogen oxides (NOx) with ethane, e...
The influence of silver loading on the lean NO x reduction activity using methanol as reductant has...
The aim of this thesis is to increase the understanding of how to design highly active silver-alumin...
This study focuses on the performance of Ag/Al2O3 catalysts for hydrocarbon selective catalytic redu...