Nature of the active site for CO oxidation on highly active Au/γ-Al2O3

被引:297
|
作者
Costello, CK
Kung, MC
Oh, HS
Wang, Y
Kung, HH
机构
[1] Northwestern Univ, Dept Chem Engn, Evanston, IL 60208 USA
[2] Northwestern Univ, Dept Mat Sci & Engn, Evanston, IL 60208 USA
基金
美国国家科学基金会;
关键词
carbon monoxide; oxidation gold; active site;
D O I
10.1016/S0926-860X(02)00092-3
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The deactivation and regeneration phenomenon during room temperature CO oxidation was studied over a Au/gamma-Al2O3 catalyst, which was as active as the most active supported Au catalysts reported in the literature. The initial rapid loss of activity could be prevented if either hydrogen or water vapor was present in the reaction mixture. Otherwise, it could be recovered by exposure of the deactivated catalyst to either hydrogen or water vapor at room temperature. Thermal treatment above 100 C in a dry atmosphere also deactivated the catalyst. These results suggested that hydroxyl group, most likely associated with a Au(I) cation, is associated with the active site and support the proposal that the active site is an ensemble of Au+-OH- together with AU(0) atoms. The CO oxidation reaction was proposed to proceed via the insertion of CO into the Au+-OH- bond to form a hydroxycarbonyl, which is oxidized to a bicarbonate. Decarboxylation of the bicarbonate completes the reaction cycle. (C) 2002 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:159 / 168
页数:10
相关论文
共 50 条
  • [21] CO oxidation over Au/Al2O3 catalysts modified by MgO
    Szabó, EG
    Hegedus, M
    Szegedi, A
    Sajó, I
    Margitfalvi, JL
    REACTION KINETICS AND CATALYSIS LETTERS, 2005, 86 (02): : 339 - 345
  • [22] On the mechanism of selective CO oxidation on nanosized Auγ-Al2O3 catalysts
    D Gavrila
    A Georgakab
    V Loukopoulosb
    G Karaiskakisb
    B E Nieuwenhuysa
    Gold Bulletin, 2006, 39 : 192 - 199
  • [23] Nature of the Active Sites of VOx/Al2O3 Catalysts for Propane Dehydrogenation
    Liu, Gang
    Zhao, Zhi-Jian
    Wu, Tengfang
    Zeng, Liang
    Gong, Jinlong
    ACS CATALYSIS, 2016, 6 (08): : 5207 - 5214
  • [24] Insight into the Nature of Active Species of Pt/Al2O3 Catalysts for low Temperature NH3 Oxidation
    Svintsitskiy, Dmitry A.
    Kibis, Lidiya S.
    Stadnichenko, Andrey I.
    Slavinskaya, Elena M.
    Romanenko, Anatoly V.
    Fedorova, Elizaveta A.
    Stonkus, Olga A.
    Doronkin, Dmitry E.
    Marchuk, Vasyl
    Zimina, Anna
    Casapu, Maria
    Grunwaldt, Jan-Dierk
    Boronin, Andrei I.
    CHEMCATCHEM, 2020, 12 (03) : 867 - 880
  • [25] On the development of active and stable Pd-Co/γ-Al2O3 catalyst for complete oxidation of methane
    Stefanov, P.
    Todorova, S.
    Naydenov, A.
    Tzaneva, B.
    Kolev, H.
    Atanasova, G.
    Stoyanova, D.
    Karakirova, Y.
    Aleksieva, K.
    CHEMICAL ENGINEERING JOURNAL, 2015, 266 : 329 - 338
  • [26] Highly active (CO)MoS2/Al2O3 hydrodesulfurization catalysts prepared in aqueous solution
    Bezverkhyy, I
    Afanasiev, P
    Geantet, C
    Lacroix, M
    JOURNAL OF CATALYSIS, 2001, 204 (02) : 495 - 497
  • [27] Characterization of highly active AgCl/Al2O3 catalyst for photocatalytic conversion of NO
    Yamashita, Y
    Aoyama, N
    Takezawa, N
    Yoshida, K
    ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2000, 34 (24) : 5211 - 5214
  • [28] Role of Citric Acid in Preparing Highly Active CoMo/Al2O3 Catalyst: From Aqueous Impregnation Solution to Active Site Formation
    Chen, Jianjun
    Mi, Jinxing
    Li, Kezhi
    Wang, Xiqin
    Garcia, Elizabeth Dominguez
    Cao, Yanning
    Jiang, Lilong
    Oliviero, Laetitia
    Mauge, Francoise
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2017, 56 (48) : 14172 - 14181
  • [29] Insight into the Active Co Phase of Co/Al2O3 Catalyst for Ethane Dehydrogenation
    Wang, Guowei
    Jiang, Yixue
    Zhang, Shan
    Zhu, Xiaolin
    Shan, Honghong
    CATALYSIS LETTERS, 2022, 152 (10) : 2971 - 2979
  • [30] Insight into the Active Co Phase of Co/Al2O3 Catalyst for Ethane Dehydrogenation
    Guowei Wang
    Yixue Jiang
    Shan Zhang
    Xiaolin Zhu
    Honghong Shan
    Catalysis Letters, 2022, 152 : 2971 - 2979