화학공학소재연구정보센터
검색결과 : 101건
No. Article
1 O-2 dosage as a descriptor of TWC performance under lean/rich dithering in stoichiometric natural gas engines
Gong J, Pihl J, Wang D, Kim MY, Partridge WP, Li JH, Cunningham M, Kamasamudram K, Currier N, Yezerets A
Catalysis Today, 360, 294, 2021
2 Enhanced NO, CO and C3H6 conversion on Pt/Pd catalysts: Impact of oxygen storage material and catalyst architecture
Zhou ZY, Harold MP, Luss D
Catalysis Today, 360, 375, 2021
3 In-Situ diffuse reflectance spectroscopy analysis of Pd/CeO2-ZrO2 model three-way catalysts under Lean-Rich cycling condition
Fujiwara A, Yoshida H, Ohyama J, Machida M
Catalysis Today, 376, 269, 2021
4 A study of ageing effect: Migration of rhodium under air atmosphere
Tomida Y, Haneda M
Catalysis Today, 376, 81, 2021
5 Pt-modified nanometric Rh overlayer as an efficient three-way catalyst under lean conditions
Yoshida H, Kuzuhara Y, Koide T, Ohyama J, Machida M
Catalysis Today, 375, 258, 2021
6 Three-way catalytic properties and microstructures of metallic glass driven composite catalysts
Hattori M, Katsuragawa N, Yamaura S, Ozawa M
Catalysis Today, 375, 273, 2021
7 Distinct reaction pathways of methane oxidation on different oxidation states over Pd-based three-way catalyst (TWC)
Wang D, Gong J, Luo JY, Li JH, Kamasamudram K, Currier N, Yezerets A
Applied Catalysis A: General, 572, 44, 2019
8 Effects of four-mode hydrothermal aging on three-way catalysts for passive selective catalytic reduction to control emissions from lean-burn gasoline engine
Thomas CR, Pihl JA, Lance MJ, Toops TJ, Parks JE, Lauterbach J
Applied Catalysis B: Environmental, 244, 284, 2019
9 Steady state and lean-rich cycling study of a three-way NOx storage catalyst: Modeling
Li MM, Malamis SA, Epling W, Harold MP
Applied Catalysis B: Environmental, 242, 469, 2019
10 A review on oxygen storage capacity of CeO2-based materials: Influence factors, measurement techniques, and applications in reactions related to catalytic automotive emissions control
Li P, Chen XY, Li YD, Schwank JW
Catalysis Today, 327, 90, 2019