This project investigates a suitable catalyst system for the direct NO decomposition in post-combustion gas streams. The process does not use a reductant, such as the ammonia used in Selective Catalytic Reduction (SCR) of NO[sub x] to nitrogen. Therefore, it is a greatly simplified process basically involving passing the flue gas through a catalytic converter. Catalysts are prepared by incorporating metal cations into zeolite supports according to ion exchange procedures widely used in preparation of metal/zeolite catalysts. The catalysts of primary interest include copper, palladium, silver, and nickel exchanged ZSM-5 catalysts. Particular emphasis is given in this work on promoted Cu-exchanged zeolites, especially the catalyst system Mg/C...
The objective of this project was to develop durable zeolite nanocatalysts with broader operating te...
Copper exchanged ZSM-5 zeolite was extensively investigated in order to highlight the knowledge of t...
The SCR of NOx with NH3 has been studied by using different Cu zeolite catalysts, prepared both with...
This project investigates a suitable catalyst system for direct NO decomposition in post-combustion ...
This project investigated a suitable catalyst system for the direct NO decomposition for post-combus...
This project investigates a suitable catalyst system for the direct nitric oxide decomposition in po...
Emissions from the combustion of fossil fuel contain several pollutants which can be converted over ...
Direct decomposition of NO on copper supported on zeolite catalysts such as MCM-22 and Beta was comp...
With the object of greater energy efficiency, a role has been identified for a facility capable of t...
Combustion of diesel fuel in automotive engines leads to the formation of nitrogen oxides (NOx) that...
Abstract In this study the physico-chemical and catalytic properties of copper bearin...
The elucidation of the selective catalytic reduction mechanisms over state-of-the-art metal-promoted...
With increasing legislative demands to remove nitrogen oxides (NOx) from automotive diesel exhaust, ...
Nitrogen oxides (NOx), which include nitrous oxide (N2O), nitric oxide (NO) and nitrogen dioxide (NO...
The selective catalytic reduction (SCR) of NOx with NH3 is considered to be the most promising techn...
The objective of this project was to develop durable zeolite nanocatalysts with broader operating te...
Copper exchanged ZSM-5 zeolite was extensively investigated in order to highlight the knowledge of t...
The SCR of NOx with NH3 has been studied by using different Cu zeolite catalysts, prepared both with...
This project investigates a suitable catalyst system for direct NO decomposition in post-combustion ...
This project investigated a suitable catalyst system for the direct NO decomposition for post-combus...
This project investigates a suitable catalyst system for the direct nitric oxide decomposition in po...
Emissions from the combustion of fossil fuel contain several pollutants which can be converted over ...
Direct decomposition of NO on copper supported on zeolite catalysts such as MCM-22 and Beta was comp...
With the object of greater energy efficiency, a role has been identified for a facility capable of t...
Combustion of diesel fuel in automotive engines leads to the formation of nitrogen oxides (NOx) that...
Abstract In this study the physico-chemical and catalytic properties of copper bearin...
The elucidation of the selective catalytic reduction mechanisms over state-of-the-art metal-promoted...
With increasing legislative demands to remove nitrogen oxides (NOx) from automotive diesel exhaust, ...
Nitrogen oxides (NOx), which include nitrous oxide (N2O), nitric oxide (NO) and nitrogen dioxide (NO...
The selective catalytic reduction (SCR) of NOx with NH3 is considered to be the most promising techn...
The objective of this project was to develop durable zeolite nanocatalysts with broader operating te...
Copper exchanged ZSM-5 zeolite was extensively investigated in order to highlight the knowledge of t...
The SCR of NOx with NH3 has been studied by using different Cu zeolite catalysts, prepared both with...