Rational design, synthesis and evaluation of ZnO nanorod array supported it heck for Pt:La0.8Sr0.2MnO3 lean NOx traps
文献类型: 外文期刊
第一作者: Du, Shoucheng
作者: Du, Shoucheng;Wang, Sibo;Guo, Yanbing;Lu, Xingxu;Tang, Wenxiang;Gao, Pu-Xian;Du, Shoucheng;Wang, Sibo;Guo, Yanbing;Lu, Xingxu;Tang, Wenxiang;Gao, Pu-Xian;Du, Shoucheng;Guo, Yanbing;Ding, Yong;Mao, Xuefei;Mao, Xuefei;Du, Shoucheng
作者机构:
关键词: NOx storage and reduction; Lean NOx trap; Perovskite; Structured catalyst; Nanorod array
期刊名称:APPLIED CATALYSIS B-ENVIRONMENTAL ( 影响因子:19.503; 五年影响因子:17.291 )
ISSN: 0926-3373
年卷期: 2018 年 236 卷
页码:
收录情况: SCI
摘要: In this study, a new type of lean NOx traps (LNT) based on Pt:La0.8Sr0.2MnO3 (LSMO) nanoparticles decorated on ZnO nanorod array integrated monoliths have been successfully designed and demonstrated. Compared to the commercial catalyst, the nanorod array based catalyst demonstrates competitive NO oxidation activity, and exceptional hydrothermal stability and recoverability after sulfur poisoning. With uniform distribution of perovskite and Pt nanoparticles, the ZnO nanorod array retains its structure after long-time exposure to the reducing gaseous atmosphere. The H-2 treatment induces the surface Me4+ reduction to Mn3+ and subsequently to Mn2+, affecting oxygen mobility, and decreasing the amount of surface lattice oxygen on the LSMO perovskite, thus leading to the catalyst performance decay according to a Mars-Van Krevelen reaction mechanism Such surface state change was found to be reversible, with the catalytic performance fully recovered after O-2 re-treatment, making it suitable for NOx storage and reduction (NSR). The complete lean NOx traps are formulated with rationally-designed sequential BaCO3 and Pt loading, improving NOx storage capacity. The ZnO nanorod array supported LNT shows good water compatibility under simulated exhaust. The nanorod array catalysts may be potentially suitable for vehicular NOx emission control.
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