• DocumentCode
    2529448
  • Title

    Control of emission characteristics by using Selective Catalytic Reduction (SCR) in D.I. diesel engine

  • Author

    Prabhakar, Sanjay ; Karthikeyan, Madurakavi ; Annamalai, K. ; Banugopan, V.N.

  • Author_Institution
    Dept. of Automobile Eng., Madras Inst. of Technol., Chennai, India
  • fYear
    2010
  • fDate
    25-27 Nov. 2010
  • Firstpage
    104
  • Lastpage
    107
  • Abstract
    Emission control is one of the biggest challenge in today´s automotive industry. Emission control can be achieved either by controlling combustion or by treating the exhaust gas. The latter is comparatively easier since there is less or no need to modify the engine itself. One such after treatment method is the use of catalytic converter. But, the 3-way converter is expensive due to use of both platinum and palladium/rhodium. One of the alternative is the use of selective catalytic reduction, i.e., reduction of a particular mission based on the type of the engine used. For example, the major emissions in case of CI engines are NOX and PM. This project aims at reduction of NOX using SCR and its optimization. This project presents a modelling approach to the design optimization of Selective Catalytic Reduction (SCR) systems. The present study is concerned with ammonia slip and conversion efficiency of oxides of nitrogen (NOx), which are two major issues of SCR technologies. The physical processes including urea spray atomization, droplet evaporation, urea decomposition and turbulent mixing are accounted for in the modelling method. In addition, the velocity distribution and pressure drop in the SCR converter are analyzed with the consideration of flow resistances of the catalyst substrates and perforated plates.
  • Keywords
    automobile industry; convertors; design engineering; diesel engines; exhaust systems; optimisation; substrates; 3-way converter; DI diesel engine; SCR converter; SCR systems; automotive industry; catalyst substrates; catalytic converter; combustion; design optimization; droplet evaporation; emission characteristics; emission control; exhaust gas; flow resistance; modelling approach; nitrogen oxides; palladium; perforated plates; platinum; pressure drop; rhodium; selective catalytic reduction; turbulent mixing; urea decomposition; urea spray atomization; velocity distribution; Combustion; Diesel engines; Exhaust systems; Fuels; Nitrogen; Thyristors;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Frontiers in Automobile and Mechanical Engineering (FAME), 2010
  • Conference_Location
    Chennai
  • Print_ISBN
    978-1-4244-9081-3
  • Type

    conf

  • DOI
    10.1109/FAME.2010.5714808
  • Filename
    5714808