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Low temperature CO catalytic oxidation over supported Pd-Cu catalysts calcined at different temperatures

机译:在不同温度下煅烧的负载型Pd-Cu催化剂上的低温CO催化氧化

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摘要

CO catalytic oxidation over Pd-Cu/Al2O3 catalysts calcined at different temperatures was studied. It was found that Pd-Cu/Al2O3-573 catalyst showed the best performance and stability than those of Pd-Cu/ Al2O3-473 and Pd-Cu/Al2O3-673 catalysts. The presence of Cu2Cl(OH)_3 played vital roles in achieving the highest performance over the Pd-Cu/Al2O3-573 catalyst. The preserved surface carbonate species over the Pd-Cu/Al2O3-473 catalyst and the absence of the Cu2Cl(OH)_3 species over the Pd-Cu/Al2O3-673 catalyst accounted for their slight lower performances. High moisture and CO2 played negative effects on CO conversion. The former was coming from the competitive adsorption of gaseous water that hindered CO activation and benefited to the formation of carbonates under the saturated moisture conditions, and the latter might be originated from the competitive adsorption and the covering of carbonates on the catalyst surface.
机译:研究了在不同温度下煅烧的Pd-Cu / Al2O3催化剂上的CO催化氧化。发现Pd-Cu / Al2O3-573催化剂表现出比Pd-Cu / Al2O3-473和Pd-Cu / Al2O3-673催化剂最佳的性能和稳定性。与Pd-Cu / Al2O3-573催化剂相比,Cu2Cl(OH)_3的存在在实现最高性能方面起着至关重要的作用。在Pd-Cu / Al2O3-473催化剂上保留的表面碳酸盐种类和在Pd-Cu / Al2O3-673催化剂上不存在Cu2Cl(OH)_3种类的原因是它们的性能略低。高水分和二氧化碳对一氧化碳转化产生负面影响。前者来自阻碍CO活化并有利于饱和水分条件下碳酸盐形成的气态水竞争吸附,而后者可能源自竞争性吸附和碳酸盐在催化剂表面的覆盖。

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