Negative effects of water on the hydrothermal stability of ammonia (NH3) selective catalytic reduction (SCR) catalysts are well known. Thus, developing water-resistant, zeolite-based transition metal catalysts like copper (Cu) for mitigating nitrogen oxides from mobile sources is very challenging. Here we show that water markedly facilitates the migration of copper ions from sterically inaccessible sod cage to the readily accessible lta one through six-membered rings within a copper-exchanged high-silica Cu-LTA zeolite. We also show that this ubiquitous molecule promotes the low-temperature SCR activity of the Cu-LTA catalyst with a plausible reaction [H2O-Cu-NH3]+ intermediate. We anticipate that water might play a beneficial role in nitro...
The effect of water on the NH3-assisted selective catalytic reduction of NOx (NH3-SCR) has been larg...
Stringent regulations in mobile NOx emissions have resulted in the development of Standard Selective...
Combustion of diesel fuel in automotive engines leads to the formation of nitrogen oxides (NOx) that...
Water molecules commonly inhibit the selective catalytic reduction (SCR) of NOx with NH3 on most cat...
Selective catalytic reduction with ammonia (NH3-SCR) is an effective, well-established method to eli...
We have recently reported an increase in low-temperature NH3-SCR activity of the copper-exchanged (C...
Diesel engine technology is still the most effective solution to meet tighter CO2 regulations in the...
The mordenite type natural zeolite catalyst(CuNZA) reveals more stable activity maintenance than the...
Selective catalytic reduction with ammonia (NH3-SCR) is a well-established and effective method to e...
The preparation method effect on the catalytic properties and hydrothermal stability of copper-loade...
Diesel engine technology is still the most effective solution to meet tighter CO2 regulations in the...
Recently copper ion-exchanged LTA\ua0zeolites\ua0were proved to be robust for NH3-SCR reaction. In t...
NH 3-Selective Catalytic Reduction (NH 3-SCR) is a widely used technology for NO x reduction in the ...
Environmental regulations on diesel automobiles have promoted the development of exhaust after-treat...
To control diesel vehicle NOx emissions, Cu-exchanged zeolites have been applied in the selective ca...
The effect of water on the NH3-assisted selective catalytic reduction of NOx (NH3-SCR) has been larg...
Stringent regulations in mobile NOx emissions have resulted in the development of Standard Selective...
Combustion of diesel fuel in automotive engines leads to the formation of nitrogen oxides (NOx) that...
Water molecules commonly inhibit the selective catalytic reduction (SCR) of NOx with NH3 on most cat...
Selective catalytic reduction with ammonia (NH3-SCR) is an effective, well-established method to eli...
We have recently reported an increase in low-temperature NH3-SCR activity of the copper-exchanged (C...
Diesel engine technology is still the most effective solution to meet tighter CO2 regulations in the...
The mordenite type natural zeolite catalyst(CuNZA) reveals more stable activity maintenance than the...
Selective catalytic reduction with ammonia (NH3-SCR) is a well-established and effective method to e...
The preparation method effect on the catalytic properties and hydrothermal stability of copper-loade...
Diesel engine technology is still the most effective solution to meet tighter CO2 regulations in the...
Recently copper ion-exchanged LTA\ua0zeolites\ua0were proved to be robust for NH3-SCR reaction. In t...
NH 3-Selective Catalytic Reduction (NH 3-SCR) is a widely used technology for NO x reduction in the ...
Environmental regulations on diesel automobiles have promoted the development of exhaust after-treat...
To control diesel vehicle NOx emissions, Cu-exchanged zeolites have been applied in the selective ca...
The effect of water on the NH3-assisted selective catalytic reduction of NOx (NH3-SCR) has been larg...
Stringent regulations in mobile NOx emissions have resulted in the development of Standard Selective...
Combustion of diesel fuel in automotive engines leads to the formation of nitrogen oxides (NOx) that...