A novel design of an AdBlue mixing unit to reduce urea deposits at low temperatures in diesel exhaust is described. The main principle of the mixer includes the injection of AdBlue in an axisymmetric swirling flow, which is achieved by splitting the exhaust stream and off‐centred introduction of the sub‐flows. Crucial geometric parameters were analyzed by computational fluid dynamics (CFD) simulations towards pressure loss, flow field, and spray morphology. Deposit formation was experimentally investigated on three upscaling levels implying an optical test bench, a diesel engine test bench, and a hydraulic excavator. In particular, the studies with the hydraulic excavator showed neither deposits nor critical back pressure. Overall, the expe...
The mixing and evaporation of Diesel Exhaust Fluid (DEF) inside an Urea Selective Catalyst Reduction...
To protect our health and environment from pollution, among others regulatory agencies in the Europe...
Diesel engines have to meet with the severe emission regulations in terms of NOx and PM. A dramatic ...
A novel design of an AdBlue mixing unit to reduce urea deposits at low temperatures in diesel exhaus...
Selective catalytic reduction has become the mainstream exhaust after-treatment approach for removin...
International audienceDiesel Exhaust Fluid (DEF) like Adblue® is a urea/water solution injected upst...
In order to reduce NOX emissions from a diesel engine a urea-water solution called AdBlue is injecte...
Diesel vehicle should be equipped with emission after-treatment devices as NOx reduction catalyst an...
Because of high thermal efficiency and low CO2 emission, diesel engines are being used widely in man...
Abstract: Diesel engines can produce higher fuel efficiency and lower CO2 emission, they are subject...
Future emission limits of diesel engines require additional effort for developing adequate and advan...
With over a decade of development for mobile application, urea selective catalytic reduction is now ...
The injection of urea-water solution (UWS) sprays into engine-close selective catalytic reduction (S...
The urea-SCR catalyst system has the advantages of high NOx conversion efficiency and a wide range o...
Volatile emissions produced by the burning of fossil fuels may be converted on a catalyst to less ha...
The mixing and evaporation of Diesel Exhaust Fluid (DEF) inside an Urea Selective Catalyst Reduction...
To protect our health and environment from pollution, among others regulatory agencies in the Europe...
Diesel engines have to meet with the severe emission regulations in terms of NOx and PM. A dramatic ...
A novel design of an AdBlue mixing unit to reduce urea deposits at low temperatures in diesel exhaus...
Selective catalytic reduction has become the mainstream exhaust after-treatment approach for removin...
International audienceDiesel Exhaust Fluid (DEF) like Adblue® is a urea/water solution injected upst...
In order to reduce NOX emissions from a diesel engine a urea-water solution called AdBlue is injecte...
Diesel vehicle should be equipped with emission after-treatment devices as NOx reduction catalyst an...
Because of high thermal efficiency and low CO2 emission, diesel engines are being used widely in man...
Abstract: Diesel engines can produce higher fuel efficiency and lower CO2 emission, they are subject...
Future emission limits of diesel engines require additional effort for developing adequate and advan...
With over a decade of development for mobile application, urea selective catalytic reduction is now ...
The injection of urea-water solution (UWS) sprays into engine-close selective catalytic reduction (S...
The urea-SCR catalyst system has the advantages of high NOx conversion efficiency and a wide range o...
Volatile emissions produced by the burning of fossil fuels may be converted on a catalyst to less ha...
The mixing and evaporation of Diesel Exhaust Fluid (DEF) inside an Urea Selective Catalyst Reduction...
To protect our health and environment from pollution, among others regulatory agencies in the Europe...
Diesel engines have to meet with the severe emission regulations in terms of NOx and PM. A dramatic ...