Copper and iron bimetal modified Al-rich Beta zeolites from template-free synthesis were prepared for selective catalytic reduction (SCR) of NOX with NH3 in exhaust gas streams. Comparing to the Cu-based and Fe-based mono-component Beta catalysts, Cu(3.0)-Fe(1.3)-Beta bi-component catalyst shows better low-temperature activity and wider reaction-temperature window. Over 80% of NO conversion can be achieved at the temperature region of 125-500 degrees C. Due to the synergistic effect of copper and iron evidenced by XRD, UV-Vis-NIR, EPR and XPS measurements, the dispersion state of active components as well as the ratio of Cu2+/Cu+ and Fe3+/Fe2+ were improved over Cu(3.0)-Fe(1.3)-Beta. Isolated Cu2+ and Fe3+ ions which located at the exchange...
Two series of Fe and/or Cu containing BEA zeolites were prepared by different procedures: two-step p...
Selective catalytic reduction with NH3 is considered one of the most effective technologies controll...
The selective catalytic reduction (SCR) of NOx with NH3 is considered to be the most promising techn...
Copper and iron bimetal modified Al-rich Beta zeolites from template-free synthesis were prepared fo...
The direct preparation of different iron-containing Beta and CHA zeolites has been attempted under d...
The current commercially-available technique for NOx reduction for diesel engines is the selective c...
The objective of this project was to develop durable zeolite nanocatalysts with broader operating te...
A series of iron-exchanged zeolite beta catalysts (0.5 - 4 wt.-% Fe) have been prepared by incipient...
Two types of Beta zeolites, one from organotemplate-free synthesis with a Si/Al ratio of 9 and the o...
The SCR of NOx with NH3 has been studied by using different Cu zeolite catalysts, prepared both with...
Emissions from the combustion of fossil fuel contain several pollutants which can be converted over ...
International audienceSCR-NH3 activities of Cu-SAPO-34 (Cu-CZC) and Fe-Mordenite (Fe-MOR) and their ...
In modern dual-pressure nitric acid plants, the tail gas temperature usually exceeds 300 °C. The NH3...
Stringent regulations in mobile NOx emissions have resulted in the development of Standard Selective...
Cu-, Fe-, and Mn-zeolite (SSZ-13, ZSM-5, and BEA) catalysts have been prepared by incipient wetness ...
Two series of Fe and/or Cu containing BEA zeolites were prepared by different procedures: two-step p...
Selective catalytic reduction with NH3 is considered one of the most effective technologies controll...
The selective catalytic reduction (SCR) of NOx with NH3 is considered to be the most promising techn...
Copper and iron bimetal modified Al-rich Beta zeolites from template-free synthesis were prepared fo...
The direct preparation of different iron-containing Beta and CHA zeolites has been attempted under d...
The current commercially-available technique for NOx reduction for diesel engines is the selective c...
The objective of this project was to develop durable zeolite nanocatalysts with broader operating te...
A series of iron-exchanged zeolite beta catalysts (0.5 - 4 wt.-% Fe) have been prepared by incipient...
Two types of Beta zeolites, one from organotemplate-free synthesis with a Si/Al ratio of 9 and the o...
The SCR of NOx with NH3 has been studied by using different Cu zeolite catalysts, prepared both with...
Emissions from the combustion of fossil fuel contain several pollutants which can be converted over ...
International audienceSCR-NH3 activities of Cu-SAPO-34 (Cu-CZC) and Fe-Mordenite (Fe-MOR) and their ...
In modern dual-pressure nitric acid plants, the tail gas temperature usually exceeds 300 °C. The NH3...
Stringent regulations in mobile NOx emissions have resulted in the development of Standard Selective...
Cu-, Fe-, and Mn-zeolite (SSZ-13, ZSM-5, and BEA) catalysts have been prepared by incipient wetness ...
Two series of Fe and/or Cu containing BEA zeolites were prepared by different procedures: two-step p...
Selective catalytic reduction with NH3 is considered one of the most effective technologies controll...
The selective catalytic reduction (SCR) of NOx with NH3 is considered to be the most promising techn...