Diesel engine has many advantages such as high thermal efficiency, low fuel consumption and low emission of CO_2. However, the diesel engine faced with strengthened emission regulation about NOx and PM. To suppress NOx emission, after-treatment systems such as Lean NOx Trap (LNT), Selective Catalytic Reduction (SCR) are considered as a more practical strategy. This paper investigated the performance of Lean NOx trap of the 4 stroke diesel engine which had a LNT catalyst. Characteristic of exhaust emission at NEDC mode was analyzed. From this result, the effect of nozzle attaching degree, injection quantity and gas flow change on NOx conversion performance was clarified
A lean NOx trap (LNT) catalyst has been used to suppress NOx emission from a diesel engine. A need t...
NOx catalytic converter systems periodically require rich or stoichiometric operating conditions to ...
Abstract: As the environmental regulation of vehicle emission is strengthened, investigations for NO...
Lean NOx trap (LNT) catalyst has been used to reduce NOx emissions from diesel engines. The LNT abso...
Automotive engines need strategies to satisfy with the emission regulations in terms of PM and NOx. ...
Automotive engines require strategies to fulfill the emission regulations in terms of NOx and PM. Hy...
Lean NOx Trap (LNT) catalysts are capable of reducing exhaust NOx emissions from Diesel engines. NOx...
Various diesel NOx control technologies are being explored today as solutions for minimizing NOx emi...
Lean NOx Trap (LNT) catalysts are capable of reducing NOx in lean exhaust from diesel engines. NOx i...
Large-bore natural gas engines are used for distributed energy and gas compression since natural gas...
Large-bore natural gas engines are used for distributed energy and gas compression since natural gas...
A Lean NOx Trap + Selective Catalytic Reduction (LNT+SCR) catalyst system with intermediate NH3 (or ...
Abstract:- A novel catalyst system has been developed for NOx emission aftertreatment of a lean burn...
Fuel efficiency and emission reductions are the two consistent drivers for internal combustion engin...
Abstract:- To enhance fuel economy and reduce the exhaust emissions, a lean burn gasoline engine sys...
A lean NOx trap (LNT) catalyst has been used to suppress NOx emission from a diesel engine. A need t...
NOx catalytic converter systems periodically require rich or stoichiometric operating conditions to ...
Abstract: As the environmental regulation of vehicle emission is strengthened, investigations for NO...
Lean NOx trap (LNT) catalyst has been used to reduce NOx emissions from diesel engines. The LNT abso...
Automotive engines need strategies to satisfy with the emission regulations in terms of PM and NOx. ...
Automotive engines require strategies to fulfill the emission regulations in terms of NOx and PM. Hy...
Lean NOx Trap (LNT) catalysts are capable of reducing exhaust NOx emissions from Diesel engines. NOx...
Various diesel NOx control technologies are being explored today as solutions for minimizing NOx emi...
Lean NOx Trap (LNT) catalysts are capable of reducing NOx in lean exhaust from diesel engines. NOx i...
Large-bore natural gas engines are used for distributed energy and gas compression since natural gas...
Large-bore natural gas engines are used for distributed energy and gas compression since natural gas...
A Lean NOx Trap + Selective Catalytic Reduction (LNT+SCR) catalyst system with intermediate NH3 (or ...
Abstract:- A novel catalyst system has been developed for NOx emission aftertreatment of a lean burn...
Fuel efficiency and emission reductions are the two consistent drivers for internal combustion engin...
Abstract:- To enhance fuel economy and reduce the exhaust emissions, a lean burn gasoline engine sys...
A lean NOx trap (LNT) catalyst has been used to suppress NOx emission from a diesel engine. A need t...
NOx catalytic converter systems periodically require rich or stoichiometric operating conditions to ...
Abstract: As the environmental regulation of vehicle emission is strengthened, investigations for NO...