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Low temperature carbon monoxide catalytic oxidation at the Pd/Ce-Zr-Al-O_x catalyst

机译:Pd / Ce-Zr-Al-O_x催化剂的低温一氧化碳催化氧化

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The homogeneous chemical composition ceria-zirconia-alumina (Ce-Zr-Al-O_x) nano-alloy were successfully synthesized by surfactant-assisted parallel flow co-precipitation method and applied as supports for low temperature CO oxidation. The experiment conditions were studied in detailed. At 0.92 wt% Pd loading, 30,000 ppm CO could be completely oxidized to CO2 at 30 °C at a WHSV of 4,380 ml g~(-1) h~(-1) over the Pd/Ce-Zr-Al-O_x (n_(Ce):n_(Zr) = 3:1) catalyst. Pd/Ce-Zr-Al-O_x catalysts were systematical studied by mean of BET, XRD and TEM analysis. XRD characterization showed that zirconium element entered into cubic structure of ceria and leaded to structure distortion. Addition of aluminum increased specific surface area of ceria-zirconia solid solution substantially. The average pore diameter of Ce-Zr-Al-O_x support palladium catalysts were the key impact factor for CO oxidation. When the Pd/Ce-Zr-Al-O_x catalysts had highly dispersed palladium nanoparticles, large average pore diameter, suitable surface area and pore volume, the activity of CO oxidation was the best.
机译:通过表面活性剂辅助平行流共沉淀法成功合成了均匀的二氧化铈-氧化锆-氧化铝(Ce-Zr-Al-O_x)纳米合金,并用作低温CO氧化的载体。详细研究了实验条件。在0.92 wt%的Pd负载下,30,000 ppm的CO可以在30°C下以4,380 ml g〜(-1)h〜(-1)的WHSV在Pd / Ce-Zr-Al-O_x上完全氧化为CO2( n_(Ce):n_(Zr)= 3:1)催化剂。通过BET,XRD和TEM分析系统地研究了Pd / Ce-Zr-Al-O_x催化剂。 XRD表征表明,锆元素进入二氧化铈的立方结构,导致结构畸变。铝的添加显着增加了二氧化铈-氧化锆固溶体的比表面积。 Ce-Zr-Al-O_x载体钯催化剂的平均孔径是CO氧化的关键影响因素。当Pd / Ce-Zr-Al-O_x催化剂具有高度分散的钯纳米粒子,大平均孔径,合适的表面积和孔体积时,CO氧化活性最佳。

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