Sulfur Deactivation of NOxStorage Catalysts: A Multiscale Modeling Approach
Author:
Publisher
EDP Sciences
Subject
Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering
Link
http://ogst.ifpenergiesnouvelles.fr/10.2516/ogst/2013123/pdf
Reference43 articles.
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2. Roy S., Baiker A. (2009) NOxStorage-Reduction Catalysis: From Mechanism and Materials Properties to Storage-Reduction Performance,Chem. Rev.109, 4054-4091.
3. Granger P., Parvulescu V.I. (2011) Catalytic NOxAbatement Systems for Mobile Sources: From Three-Way to Lean Burn after-Treatment Technologies,Chem. Rev.111, 3155-3207.
4. Poulston S., Rajaram R.R. (2003) Regeneration of NOxtrap catalysts,Catal. Today81, 4, 603-610.
5. Sedlmair C , Seshan K., Jentys A., Lercher J.A. (2002) Studies on the deactivation of NOxstorage-reduction catalysts by sulfur dioxide,Catal. Today75, 1-4, 413-419.
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1. Sulfur Poisoning of a NOx Storage Catalyst - A Comprehensive Modelling Approach;SAE International Journal of Engines;2016-04-05
2. NO adsorption during lean-rich cycles on Pt–Ba/γ-Al2O3 traps in a gas stream simulating the exhaust of gasoline engines;Adsorption;2015-11
3. Catalysis in Diesel engine NOxaftertreatment: a review;Catalysis, Structure & Reactivity;2015-10-02
4. Density functional theory simulations of complex catalytic materials in reactive environments: beyond the ideal surface at low coverage;Catal. Sci. Technol.;2014
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