Methane oxidation on Pd supported on high area zirconia catalysts

被引:50
|
作者
Guerrero, S
Araya, P
Wolf, EE [1 ]
机构
[1] Univ Notre Dame, Dept Chem Engn, Notre Dame, IN 46556 USA
[2] Univ Chile, Dept Ingn Quim, Ctr Para Invest Interdisciplinaria Avanzada Cienc, Santiago, Chile
关键词
methane; oxidation; Pd supported catalyst; high area zirconia;
D O I
10.1016/j.apcata.2005.10.015
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 results presented in this work clearly show that zirconia synthesized by precipitation of zirconyl chloride with NaOH leads to a zirconia with high surface area (224 m(2)/g), which is relatively stable after high temperature exposure. Pd supported on this high surface area zirconia exhibit higher turnover frequency for methane combustion than when supported on zirconia obtained from zirconyl chloride precipitated with ammonium hydroxide. We also found that when the commercial zirconium hydroxide is subjected to a NaOH reflux treatment, we obtained a zirconia of high and stable surface area (157 m(2)/g) even after heating it at 700 degrees C. Pd supported on the T a treated commercially derived support shows the highest dispersion and the highest intrinsic activity than on any of the other preparations studied. The results presented in this paper open up a new venue for obtaining high surface area zirconia using the commercially available hydroxide. This work shows that it is possible to stabilize zirconia using a Na treatment and also obtain high catalytic activity for methane oxidation on Pd stabilized on such support. Kinetic results and the corresponding mechanistic interpretation and the IR results support that the effect is consistent with increasing water support interactions which in term affect the reaction kinetics. (c) 2005 Published by Elsevier B.V.
引用
收藏
页码:243 / 253
页数:11
相关论文
共 50 条
  • [31] Total oxidation of methane over Pd catalysts supported on silicon nitride - Influence of support nature
    Kurzina, I
    Aires, FJCS
    Bergeret, G
    Bertolini, JC
    CHEMICAL ENGINEERING JOURNAL, 2005, 107 (1-3) : 45 - 53
  • [32] Complete oxidation of methane at low temperature over Pt catalysts supported on high surface area SnO2
    Laetitia Urfels
    Patrick Gélin
    Michel Primet
    Emmanuel Tena
    Topics in Catalysis, 2004, 30-31 : 427 - 432
  • [33] Silicon nitride supported platinum catalysts for the partial oxidation of methane at high temperatures
    Monnet, F
    Schuurman, Y
    Aires, FCS
    Bertolini, JC
    Mirodatos, C
    CATALYSIS TODAY, 2001, 64 (1-2) : 51 - 58
  • [34] Complete oxidation of methane at low temperature over Pt catalysts supported on high surface area SnO2
    Urfels, L
    Gélin, P
    Primet, M
    Tena, E
    TOPICS IN CATALYSIS, 2004, 30-1 (1-4) : 427 - 432
  • [35] Ruthenium catalysts supported on high-surface-area zirconia for the catalytic wet oxidation of N,N-dimethyl formamide
    Sun, Guanglu
    Xu, Aihua
    He, Yu
    Yang, Min
    Du, Hongzhang
    Sun, Chenglin
    JOURNAL OF HAZARDOUS MATERIALS, 2008, 156 (1-3) : 335 - 341
  • [36] High temperature combustion of methane over hexaaluminate-supported Pd catalysts.
    Groppi, G
    Cristiani, C
    Forzatti, P
    Berti, F
    Malloggi, S
    NATURAL GAS CONVERSION V, 1998, 119 : 71 - 76
  • [37] SILICA SUPPORTED MOLYBDENA CATALYSTS - CHARACTERIZATION AND METHANE OXIDATION
    BARBAUX, Y
    ELAMRANI, AR
    PAYEN, E
    GENGEMBRE, L
    BONNELLE, JP
    GRZYBOWSKA, B
    APPLIED CATALYSIS, 1988, 44 (1-2): : 117 - 132
  • [38] PARTIAL OXIDATION OF METHANE OVER SUPPORTED CHROMIA CATALYSTS
    FORTINI, EM
    GARCIA, Y
    RESASCO, DE
    LOFFLER, DG
    ACTA CHIMICA HUNGARICA-MODELS IN CHEMISTRY, 1992, 129 (01): : 5 - 12
  • [39] Direct oxidation of methane to oxygenates over supported catalysts
    Tungatarova, SA
    Savelieva, GA
    Sass, AS
    Dosumov, K
    NATURAL GAS CONVERSION VII, 2004, 147 : 517 - 522
  • [40] SELECTIVE OXIDATION OF METHANE TO FORMALDEHYDE ON SUPPORTED MOLYBDATE CATALYSTS
    BANARES, MA
    FIERRO, JLG
    CATALYSIS LETTERS, 1993, 17 (3-4) : 205 - 211