This content is not included in your SAE MOBILUS subscription, or you are not logged in.

Development of a NO x Storage-Reduction Catalyst Based Min-NO x Strategy for Small-Scale NG-Fueled Gas Engines

Journal Article
2016-32-0072
ISSN: 1946-3952, e-ISSN: 1946-3960
Published November 08, 2016 by SAE International in United States
Development of a NO
<sub>x</sub>
 Storage-Reduction Catalyst Based Min-NO
<sub>x</sub>
 Strategy for Small-Scale NG-Fueled Gas Engines
Sector:
Citation: Scholl, F., Gerisch, P., Neher, D., Kettner, M. et al., "Development of a NOx Storage-Reduction Catalyst Based Min-NOx Strategy for Small-Scale NG-Fueled Gas Engines," SAE Int. J. Fuels Lubr. 9(3):734-749, 2016, https://doi.org/10.4271/2016-32-0072.
Language: English

References

  1. Miyoshi , N. , Matsumoto , S. , Katoh , K. , Tanaka , T. et al. Development of New Concept Three-Way Catalyst for Automotive Lean-Burn Engines SAE Technical Paper 950809 1995 10.4271/950809
  2. Werquet , N. Modellgesteuerte Regelung der Regenerationseinleitung in einem Abgassystem mit NOx-Speicherkatalysator Ph.D. Thesis Technische Universität Clausthal 2008
  3. Epling , W.S. , Campbell , L.E. , Yezerets , A. , Currier , N.W. et al. Overview of the Fundamental Reactions and Degradation Mechanisms of NOx Storage/Reduction Catalysts Catalysis Reviews 46 2 163 245 2004 10.1081/CR-200031932
  4. Theis , J. , Ura , J. , and McCabe , R. The Effects of Platinum and Rhodium on the Functional Properties of a Lean NOx Trap SAE Technical Paper 2007-01-1055 2007 10.4271/2007-01-1055
  5. Schmeißer , V. , Eigenberger , G. , Koop , J. , and Deutschmann , O. Experimentelle Untersuchung und mathematische Modellierung der NOx-Minderung an Speicherkatalysatoren in sauerstoffreichen Abgasen (Engl. Experimental investigation and mathematical modelling of NOx-abatement with NOx-storage-catalysts in lean exhaust gas) 16. Aachener Kolloquium Fahrzeug- und Motorentechnik 2007 2007
  6. Wunsch , R. , Schön , C. , Vent , G. , Hoyer , Rüdiger , Dafour , Daniel et al. Exhaust Gas Aftertreatment for BlueDIRECT Gasoline Engines with Lean Combustion - Potential for Future Applications 21st Aachen Colloquium Automobile and Engine Technology 2012 1097 1116 2012
  7. Mahzoul , H. , Brilhac , J.F. , and Gilot , P. Experimental and mechanistic study of NOx adsorption over NOx trap catalysts Applied Catalysis B: Environmental 20 1 47 55 1999 10.1016/S0926-3373(98)00093-9
  8. Gill , L.J. , Blakeman , P.G. , Twigg , M.V. , and Walker , A.P. The Use of NOx Adsorber Catalysts on Diesel Engines Topics in Catalysis 28 1-4 2004
  9. Dou , D. and Bailey , O. Investigation of NOx Adsorber Catalyst Deactivation SAE Technical Paper 982594 1998 10.4271/982594
  10. Parks , J.E. , Storey , J.M.E. , Williams , A.M. , Ferguson , H.D. et al. Lean NOx Trap Catalysis for Lean Natural Gas Engine Applications 2007
  11. Parks , J.E. , Ferguson , H.D. , and Storey , J.M.E. NOx Reduction with Natural Gas for Lean Large-Bore Engine Applications using Lean NOx Trap Aftertreatment 2005
  12. Waltner , A. , Lückert , P. , Doll , G. , and Kemmler , R. Der neue 3,5-l-V6-Ottomotor mit Direkteinspritzung von Mercedes-Benz 71 576 585 2010
  13. Olsen , D.B. , Kohls , M. , and Arney , G. Impact of Oxidation Catalysts on Exhaust NO2/NOx Ratio from Lean-Burn Natural Gas Engines Journal of the Air & Waste Management Association 60 7 867 874 2010 10.3155/1047-3289.60.7.867
  14. Erkfeldt , S. , Jobson , E. , and Larsson , M. The Effect of Carbon Monoxide and Hydrocarbons on NOx Storage at Low Temperature Catalysis 16/17 1-4 2001
  15. Heywood , J. Internal Combustion Engine Fundamentals 1988 McGraw-Hill 0-07-028637-X 1988
  16. Choi , J.-S. , Partridge , W.P. , and Daw , C.S. Sulfur impact on NOx storage, oxygen storage, and ammonia breakthrough during cyclic lean/rich operation of a commercial lean NOx trap Applied Catalysis B: Environmental 77 1-2 145 156 2007 10.1016/j.apcatb.2007.07.025
  17. Rohr , F. , Peter , S. , Lox , E. , Kögel , M. et al. On the mechanism of sulphur poisoning and regeneration of a commercial gasoline NOx-storage catalyst Applied Catalysis B: Environmental 56 3 201 212 2005 10.1016/j.apcatb.2004.09.011
  18. Hertzberg , A. Betriebsstrategien für einen Ottomotor mit Direkteinspritzung und NOx-Speicher-Katalysator Ph.D. Thesis Universität Karlsruhe 2001
  19. Theis , J. , Ura , J. , Graham , G. , Jen , H. et al. The Effects of Aging Temperature and Air-Fuel Ratio on the NOx Storage Capacity of a Lean NOx Trap SAE Technical Paper 2004-01-1493 2004 10.4271/2004-01-1493
  20. Krause , H. , Nitzsche , J. , Lubenau , U. , and Oßmann , A. Entschwefelung von Erdgas und anderen gasförmigen Energieträgern für den Einsatz in Reformer-Brennstoffzellensystemen Fortschritte der Gasprozesstechnik für die Wasserstofferzeugung in Brennstoffzellenanwendungen Duisburg 2009
  21. Theis , J. , Göbel , U. , Kögel , M. , Kreuzer , T. et al. Phenomenological Studies on the Storage and Regeneration Process of NOx Storage Catalysts for Gasoline Lean Burn Applications SAE Technical Paper 2002-01-0057 2002 10.4271/2002-01-0057
  22. European Union Commission Regulation (EU) No 813/2013 of 2 August 2013 implementing Directive 2009/125/EC of the European Parliament and of the Council with regard to ecodesign requirements for space heaters and combination heaters 2013
  23. Xi , Y. , Ottinger , N. , and Liu , Z. Effect of Reductive Regeneration Conditions on Reactivity and Stability of a Pd-Based Oxidation Catalyst for Lean-Burn Natural Gas Applications SAE Technical Paper 2016-01-1005 2016 10.4271/2016-01-1005

Cited By