Lean NOx trap (LNT) catalyst has been used to reduce NOx emissions from diesel engines. The LNT absorbs NOx in lean condition and discharges N2 by reducing NOx in rich conditions. Thus, it is necessary to make exhaust gas lean or rich conditions for controlling LNT system. For making a rich condition, a secondary injector was adopted to inject a diesel fuel into the exhaust pipe. In the case of secondary injector, the behavior of spray is easily affected by high temperature (i.e., 250 similar to 350 A degrees C) occurred in the exhaust manifold. Therefore, it is needed to investigate the spray behavior of diesel fuel injected into an exhaust manifold, as well as the conversion characteristics for a lean NOx trap of a diesel engine with LNT ...
Various diesel NOx control technologies are being explored today as solutions for minimizing NOx emi...
Because of high thermal efficiency and low CO2 emission, diesel engines are being used widely in man...
This paper investigated the impact of injection angle and advance injection timing on combustion, em...
A lean NOx trap (LNT) catalyst has been used to suppress NOx emission from a diesel engine. A need t...
Abstract: Automotive engines need strategies to satisfy with the emission regulations in terms of PM...
Automotive engines require strategies to fulfill the emission regulations in terms of NOx and PM. Hy...
De-NOx catalytic systems generally perform better in rich or stoichiometric engine operating conditi...
NOx (Nitrogen Oxide) reduction system periodically needs a rich or stoichiometric operating conditio...
Diesel engine has many advantages such as high thermal efficiency, low fuel consumption and low emis...
NOx catalytic converter systems periodically require rich or stoichiometric operating conditions to ...
Lean NOx Trap (LNT) catalysts are capable of reducing exhaust NOx emissions from Diesel engines. NOx...
Lean NOx Trap (LNT) catalysts are capable of reducing NOx in lean exhaust from diesel engines. NOx i...
Among emission reduction technologies, a hydrocarbon lean nitrogen oxide trap is a cost-effective so...
Diesel engine has many advantages such as high thermal efficiency, low fuel consumption and the low ...
A Lean NOx Trap + Selective Catalytic Reduction (LNT+SCR) catalyst system with intermediate NH3 (or ...
Various diesel NOx control technologies are being explored today as solutions for minimizing NOx emi...
Because of high thermal efficiency and low CO2 emission, diesel engines are being used widely in man...
This paper investigated the impact of injection angle and advance injection timing on combustion, em...
A lean NOx trap (LNT) catalyst has been used to suppress NOx emission from a diesel engine. A need t...
Abstract: Automotive engines need strategies to satisfy with the emission regulations in terms of PM...
Automotive engines require strategies to fulfill the emission regulations in terms of NOx and PM. Hy...
De-NOx catalytic systems generally perform better in rich or stoichiometric engine operating conditi...
NOx (Nitrogen Oxide) reduction system periodically needs a rich or stoichiometric operating conditio...
Diesel engine has many advantages such as high thermal efficiency, low fuel consumption and low emis...
NOx catalytic converter systems periodically require rich or stoichiometric operating conditions to ...
Lean NOx Trap (LNT) catalysts are capable of reducing exhaust NOx emissions from Diesel engines. NOx...
Lean NOx Trap (LNT) catalysts are capable of reducing NOx in lean exhaust from diesel engines. NOx i...
Among emission reduction technologies, a hydrocarbon lean nitrogen oxide trap is a cost-effective so...
Diesel engine has many advantages such as high thermal efficiency, low fuel consumption and the low ...
A Lean NOx Trap + Selective Catalytic Reduction (LNT+SCR) catalyst system with intermediate NH3 (or ...
Various diesel NOx control technologies are being explored today as solutions for minimizing NOx emi...
Because of high thermal efficiency and low CO2 emission, diesel engines are being used widely in man...
This paper investigated the impact of injection angle and advance injection timing on combustion, em...