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Modified Ceria-Zirconia Fluorite-Like Catalysts for the Combustion of Methane

机译:改性的氧化铈-锆石萤石样甲烷燃烧催化剂

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For dispersed ceria-zirconia-based solid solutions prepared via the polymerized complex method and annealed at 700℃, effects of bulk doping by Ca, Mn, Co, Bi or Nb cations and suiface modification by Mn and Pt on their structural features, surface/bulk oxygen reactivity and catalytic activity in methane combustion are considered. With up to 20 mol% doping, a structural type of homogeneous solid solutions of anion-deficient fluorite with disordered anion vacancies is formed. Doping by transition metal cations or Pt increases the mobility and reactivity of the surface/bulk oxygen. A broad variation in specific rates of methane combustion for the studied systems was observed, suggesting structural sensitivity of this reaction. In general, there is no universal relationship between the oxygen mobility, the reactivity and the catalytic activity in methane combustion, which is explained by the factor of specific methane activation on surface active sites. For the Pt-promoted samples, Pt efficiency in methane activation depends on the Pt-support interaction, and the most favorable ones being mixed Pt/MnO_x and Pt/NbO_x clusters on the surface of the supports that exhibit high lattice oxygen mobilities.
机译:对于通过聚合络合物方法制备并在700℃退火的分散二氧化铈-氧化锆基固溶体,Ca,Mn,Co,Bi或Nb阳离子体掺杂以及Mn和Pt改性表面对其结构特征,表面/表面的影响考虑了甲烷燃烧中的大量氧气反应性和催化活性。通过掺杂至多20mol%,形成具有缺陷的阴离子空位的阴离子缺陷型萤石的均质固溶体的结构类型。通过过渡金属阳离子或Pt进行掺杂可提高表面/本体氧的迁移率和反应性。对于所研究的系统,观察到甲烷燃烧的特定速率有很大变化,表明该反应的结构敏感性。通常,甲烷燃烧中的氧迁移率,反应性和催化活性之间没有普遍的关系,这可以通过表面活性部位的特定甲烷活化因子来解释。对于Pt促进的样品,甲烷活化中的Pt效率取决于Pt-载体的相互作用,最有利的是在具有高晶格氧迁移率的载体表面上混合的Pt / MnO_x和Pt / NbO_x簇。

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