1 |
NOx storage and reduction properties of model ceria-based lean NOx trap catalysts Shi CA, Ji YY, Graham UM, Jacobs G, Crocker M, Zhang ZS, Wang Y, Toops TJ Applied Catalysis B: Environmental, 119, 183, 2012 |
2 |
Characteristics of Pt-K/MgAl2O4 lean NOx trap catalysts Kim DH, Mudiyanselage K, Szanyi J, Zhu H, Kwak JH, Peden CHF Catalysis Today, 184(1), 2, 2012 |
3 |
Improvement in heat resistance of NOx trap catalyst using Ti-Na binary metal oxide as NOx trap material Iizuka H, Kaneeda M, Shinotsuka N, Kuroda O, Higashiyama K, Miyamoto A Applied Catalysis B: Environmental, 95(3-4), 320, 2010 |
4 |
Preparation and screening of various multi-component catalysts for NOx conversion under lean-burn conditions: An active and heat-resistant RhPt-NaMn-Ce/Al2O3 catalyst Kaneeda M, Iizuka H, Hiratsuka T, Shinotsuka N, Kitahara Y, Arai M Chemical Engineering Journal, 160(1), 93, 2010 |
5 |
Perovskites with cotton-like morphology consisting of nanoparticles and nanorods: Their synthesis by the combustion method and their NOx adsorption behavior Zahir MH, Suzuki T, Fujishiro Y, Awano M Applied Catalysis A: General, 361(1-2), 86, 2009 |
6 |
Promotional effects of H2O treatment on NOx storage over fresh and thermally aged Pt-BaO/Al2O3 lean NOx trap catalysts Kim DH, Chin YH, Kwak JH, Peden CHF Catalysis Letters, 124(1-2), 39, 2008 |
7 |
Absorption/desorption of NOx process on perovskites: impact of SO2 on the storage capacity of BaSnO3 and strategy to develop thioresistance Hodjati S, Petit C, Pitchon V, Kiennemann A Applied Catalysis B: Environmental, 30(3-4), 247, 2001 |