Ammonia reactions with the stored oxygen in a commercial lean NOx trap catalyst
暂无分享,去创建一个
Jae-Soon Choi | Petr Kočí | Miloš Marek | M. Marek | P. Kočí | Jae-Soon Choi | Šárka Bártová | David Mráček | Šárka Bártová | David Mracek | David Mraček
[1] Jae-Soon Choi,et al. New insights on N2O formation pathways during lean/rich cycling of a commercial lean NOx trap catalyst , 2014 .
[2] Krishna Kamasamudram,et al. Selective oxidation of ammonia on mixed and dual-layer Fe-ZSM-5 + Pt/Al2O3 monolithic catalysts , 2014 .
[3] E. Tronconi,et al. Experimental and modeling study of a dual-layer (SCR + PGM) NH3 slip monolith catalyst (ASC) for automotive SCR aftertreatment systems. Part 1. Kinetics for the PGM component and analysis of SCR/PGM interactions , 2013 .
[4] P. Forzatti,et al. Mechanism of the Reduction by Ammonia of Nitrates Stored onto a Pt–Ba/Al2O3 LNT Catalyst , 2013, Topics in Catalysis.
[5] Jae-Soon Choi,et al. Effective Model for Prediction of N2O and NH3 Formation During the Regeneration of NOx Storage Catalyst , 2013, Topics in Catalysis.
[6] P. Forzatti,et al. Labeled 15NO Study on N2 and N2O Formation Over Pt–Ba/Al2O3 NSR Catalysts , 2013, Topics in Catalysis.
[7] M. Harold,et al. Isotopic Temporal Analysis of Products study of anaerobic NO reduction by NH3 on Pt catalysts , 2012 .
[8] Jae-Soon Choi,et al. Spatiotemporal distribution of NOx storage and impact on NH3 and N2O selectivities during lean/rich cycling of a Ba-based lean NOx trap catalyst , 2012 .
[9] M. Harold,et al. Elucidating NH3 formation during NOx reduction by CO on Pt–BaO/Al2O3 in excess water , 2012 .
[10] P. Forzatti,et al. Pathways for N2 and N2O Formation during the Reduction of NOx over Pt–Ba/Al2O3 LNT Catalysts Investigated by Labeling Isotopic Experiments , 2012 .
[11] J. Gieshoff,et al. Dual layer automotive ammonia oxidation catalysts: Experiments and computer simulation , 2012 .
[12] R. Hayes,et al. Efficient simulation of an ammonia oxidation reactor using a solution mapping approach , 2011 .
[13] J. Gieshoff,et al. Simulation of automotive NH3 oxidation catalysts based on pre-computed rate data from mechanistic surface kinetics , 2010 .
[14] Jae-Soon Choi,et al. Axial length effects on lean NOx trap performance , 2009 .
[15] Jae-Soon Choi,et al. NH3 formation and utilization in regeneration of Pt/Ba/Al2O3 NOx storage-reduction catalyst with H2 , 2009 .
[16] M. Kubicek,et al. Global kinetic model for the regeneration of NOx storage catalyst with CO, H2 and C3H6 in the presence of CO2 and H2O , 2009 .
[17] Michael P. Harold,et al. NOx storage and reduction with H2 on Pt/BaO/Al2O3 monolith : Spatio-temporal resolution of product distribution , 2008 .
[18] Petr Kočí,et al. Dynamics and selectivity of NOx reduction in NOx storage catalytic monolith , 2008 .
[19] Pio Forzatti,et al. Role of ammonia in the reduction by hydrogen of NOx stored over Pt–Ba/Al2O3 lean NOx trap catalysts , 2008 .
[20] Pio Forzatti,et al. Mechanistic aspects of the reduction of stored NOx over Pt–Ba/Al2O3 lean NOx trap systems , 2008 .
[21] W. Epling,et al. The effects of regeneration conditions on NOX and NH3 release from NOX storage/reduction catalysts , 2007 .
[22] Wei Liu,et al. Quantitative analyses of oxygen release/storage and CO2 adsorption on ceria and Pt–Rh/ceria , 2007 .
[23] Neal W. Currier,et al. Ammonia is a hydrogen carrier in the regeneration of Pt/BaO/Al2O3 NOx traps with H2 , 2007 .
[24] James E. Parks,et al. Product Selectivity During Regeneration of Lean NOx Trap Catalysts , 2006 .
[25] Raymond J. Gorte,et al. A comparative study of water-gas-shift reaction over ceria supported metallic catalysts , 2001 .
[26] Raymond J. Gorte,et al. Evidence for Oxidation of Ceria by CO2 , 2000 .
[27] K. Domen,et al. Carbon monoxide and carbon dioxide adsorption on cerium oxide studied by Fourier-transform infrared spectroscopy. Part 1.—Formation of carbonate species on dehydroxylated CeO2, at room temperature , 1989 .