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Chemical poisoning by zinc and phosphorous of Pt/Ba/Al2O3 NOx storage catalysts Jonsson R, Ilmasani RF, Pingel TN, Skoglundh M, Olsson E, Berggrund M, Olsson L Applied Catalysis A: General, 571, 158, 2019 |
2 |
Deactivation mechanism of Cu/Zeolite SCR catalyst under high-temperature rich operation condition Kim YJ, Kim PS, Kim CH Applied Catalysis A: General, 569, 175, 2019 |
3 |
Tolerance and regeneration versus SO2 of Ba(0.9)A(0.1)Ti(0.8)Cu(0.2)O(3) (A = Sr, Ca, Mg) LNT catalysts Albaladejo-Fuentes V, Sanchez-Adsuar MS, Illan-Gomez MJ Applied Catalysis A: General, 577, 113, 2019 |
4 |
A noble-metal-free SCR-LNT coupled catalytic system used for high-concentration NOx reduction under lean-burn condition You R, Meng M, Zhang J, Zheng LR, Hu TD, Li XG Catalysis Today, 327, 347, 2019 |
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Macroporous carrier-free Sr-Ti catalyst for NOx storage and reduction Alcalde-Santiago V, Davo-Quinonero A, Such-Basanez I, Lozano-Castello D, Bueno-Lopez A Applied Catalysis B: Environmental, 220, 524, 2018 |
6 |
Role of NH3 oxidation in NOx reduction performance of dual-layer and mixed LNT-SCR configurations Singh S, Bhatia D Chemical Engineering Journal, 354, 525, 2018 |
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The effect of NO and O-2 concentration on NOX storage over a lean NOX trap: An experimental and modelling study Watling TC, Bolton PD, Swallow D Chemical Engineering Science, 178, 312, 2018 |
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PM and NOx reduction characteristics of LNT/DPF plus SCR/DPF hybrid system Kang W, Choi B, Jung S, Park S Energy, 143, 439, 2018 |
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Comparative investigation of NOx emission characteristics from a Euro 6-compliant diesel passenger car over the NEDC and WLTC at various ambient temperatures Ko J, Jin D, Jang W, Myung CL, Kwon S, Park S Applied Energy, 187, 652, 2017 |
10 |
Intrinsic reactivity analysis of soot removal in LNT-catalysts Cortes-Reyes M, Herrera C, Larrubia MA, Alemany LJ Applied Catalysis B: Environmental, 193, 110, 2016 |