A key target to reduce current hydrocarbon emissions from vehicular exhaust is to improve their abatement under cold-start conditions. Herein, we demonstrate the potential of factorial analysis to design a highly efficient catalytic trap. The impact of the synthesis conditions on the preparation of copper-loaded ZSM-5 is clearly revealed by XRD, N2 sorption, FTIR, NH3-TPD, SEM and TEM. A high concentration of copper nitrate precursor in the synthesis improves the removal of hydrocarbons, providing both strong adsorption sites for hydrocarbon retention at low temperature and copper oxide nanoparticles for full hydrocarbon catalytic combustion at high temperature. The use of copper acetate precursor leads to a more homogeneous dispersion of c...
Advanced combustion technologies offer significant improvement in fuel economy as well as lower NO e...
Nitrogen oxides (NOx) removal from a diesel-engine exhaust gas is limited to the utilization of ammo...
Supported copper oxide nanoparticles are a potential candidate for replacing the rare and expensive ...
© 2014. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativec...
Cold start tests are carried out to evaluate the performance of copper-exchanged zeolites as hydroca...
Cold start tests are carried out to evaluate the performance of copper-exchanged zeolites as hydroca...
A key target to reduce current hydrocarbon emissions from vehicular exhaust is to improve their abat...
A multi-technique analytical approach has been used to show that carbonaceous material entrapped in ...
Three catalysts were prepared from copper oxide carried on a matrix of a mixture of Syrian, Jordania...
AbstractThree catalysts were prepared from copper oxide carried on a matrix of a mixture of Syrian, ...
The objective of this project was to develop durable zeolite nanocatalysts with broader operating te...
In this study, copper (Ⅱ) stearate was proposed as oil-soluble catalysts for catalyzing heavy oil ox...
Multifunctional automotive catalysts provide new opportunities for gasoline and diesel engines to me...
Catalysts have been used for decades to produce various materials on a large scale. A good catalyst ...
The superior performance, higher output power and comparatively less-cost fuel make the diesel engin...
Advanced combustion technologies offer significant improvement in fuel economy as well as lower NO e...
Nitrogen oxides (NOx) removal from a diesel-engine exhaust gas is limited to the utilization of ammo...
Supported copper oxide nanoparticles are a potential candidate for replacing the rare and expensive ...
© 2014. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativec...
Cold start tests are carried out to evaluate the performance of copper-exchanged zeolites as hydroca...
Cold start tests are carried out to evaluate the performance of copper-exchanged zeolites as hydroca...
A key target to reduce current hydrocarbon emissions from vehicular exhaust is to improve their abat...
A multi-technique analytical approach has been used to show that carbonaceous material entrapped in ...
Three catalysts were prepared from copper oxide carried on a matrix of a mixture of Syrian, Jordania...
AbstractThree catalysts were prepared from copper oxide carried on a matrix of a mixture of Syrian, ...
The objective of this project was to develop durable zeolite nanocatalysts with broader operating te...
In this study, copper (Ⅱ) stearate was proposed as oil-soluble catalysts for catalyzing heavy oil ox...
Multifunctional automotive catalysts provide new opportunities for gasoline and diesel engines to me...
Catalysts have been used for decades to produce various materials on a large scale. A good catalyst ...
The superior performance, higher output power and comparatively less-cost fuel make the diesel engin...
Advanced combustion technologies offer significant improvement in fuel economy as well as lower NO e...
Nitrogen oxides (NOx) removal from a diesel-engine exhaust gas is limited to the utilization of ammo...
Supported copper oxide nanoparticles are a potential candidate for replacing the rare and expensive ...