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Oxidation of CO over Ru/Ceria prepared by self-dispersion of Ru metal powder into nano-sized particle

机译:钌金属粉末自分散成纳米粒子制备的钌/二氧化铈上的CO氧化

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The oxidation of CO was performed using physical mixture of Ru metal powder and various metal oxide supports after calcination in air and reduction in H2. Among various supports (CeO2, ZrO2, MgO, Al2O3, TiO2, SnO2, and SiO2), only Ru + CeO2 showed very high catalytic activity for CO oxidation with the light-off temperature below 100 癈, which was comparable to Ru/CeO2 prepared by a conventional impregnation method. The optimum conditions for the preparation were loading amount of 2 wt%, calcination at 700 癈 in air followed by reduction at 400 癈 in 5%H2. It was revealed that the high catalytic activity for Ru + CeO2 is attributed to the high dispersion of Ru on CeO2. The original Ru metal powder having diameter of 36 nm was dispersed during the calcination leading into small Ru particles having diameter around 2 nm. Raman spectra indicated that the formation of Ru桹桟e bond after the calcination is one of the key for the Ru dispersion. The self-dispersion of Ru was not achieved by the calcination in N2. It was proposed that the self-dispersion of Ru into nano-particles was caused by oxidation of Ru metal into Ru oxide in air, then dispersion of nano-sized Ru oxide by forming Ru桹桟e bond, and finally conversion of Ru oxide particles into nano-sized Ru metal particles in a flow of H2.
机译:在空气中煅烧并还原H2之后,使用Ru金属粉末和各种金属氧化物载体的物理混合物进行CO的氧化。在各种载体(CeO2,ZrO2,MgO,Al2O3,TiO2,SnO2和SiO2)中,只有Ru + CeO2对CO氧化具有很高的催化活性,起燃温度低于100癈,与制备的Ru / CeO2相当通过常规的浸渍方法。制备的最佳条件是负载量为2 wt%,在空气中700癈下煅烧,然后在5%H2中400 reduction下还原。结果表明,Ru + CeO2的高催化活性归因于Ru在CeO2上的高分散性。在煅烧过程中将直径为36 nm的原始Ru金属粉末分散,形成直径约为2 nm的小Ru颗粒。拉曼光谱表明,煅烧后Ru桹桟e键的形成是Ru分散的关键之一。在N2中煅烧无法实现Ru的自分散。有人提出,Ru在纳米颗粒中的自分散是由于金属在空气中被氧化成Ru氧化物,然后通过形成Ru桹桟e键使纳米尺寸的Ru氧化物分散,最后转化成Ru氧化物颗粒而引起的。在氢气流中形成纳米级的Ru金属粒子。

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