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Activation of Pt/SnO2 catalyst for catalytic oxidation of volatile organic compounds

机译:活化Pt / SnO2催化剂以催化氧化挥发性有机化合物

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The catalytic combustion of toluene over tin oxide-supported metal catalysts (Pt/SnO2, Pd/SnO2, Ru/SnO2, and Rh/SnO2) was studied. As a result, the Pt/SnO2 catalyst exhibited the highest activity. The activity of Pt/SnO2 catalyst is expected to originate from the strong chemical interaction between platinum and tin oxide. The correlation between the nano-structure and catalytic activity in the oxidation of ethyl acetate was investigated for the Pt/SnO2 catalysts treated under a reducing or an oxidative atmosphere. For the transmission electron microscopy image of the as-calcined Pt/SnO2 catalyst, the fine particles composed of platinum species was highly dispersed on the surface of SnO2 support. After the reduction treatment at 400 °C, the peculiar core-shell structure was formed. It is noted that the particles with this structure disappeared by the reoxidation treatment in air, and the redispersion of nano-particles was confirmed. The particles with the core-shell structure were observed again after the second reduction treatment for the reoxidized catalyst. The catalytic activities of ethyl acetate combustion over Pt/SnO2 catalysts were deteriorated and activated, corresponding to the nano-structural changes induced by the reduction-oxidation treatments.
机译:研究了甲苯在氧化锡负载的金属催化剂(Pt / SnO2,Pd / SnO2,Ru / SnO2和Rh / SnO2)上的催化燃烧。结果,Pt / SnO 2催化剂表现出最高的活性。预计Pt / SnO2催化剂的活性源自铂和氧化锡之间的强化学相互作用。研究了在还原或氧化气氛下处理的Pt / SnO2催化剂中纳米结构与乙酸乙酯氧化催化活性之间的关系。对于所煅烧的Pt / SnO 2催化剂的透射电子显微镜图像,由铂类组成的细颗粒高度分散在SnO 2载体的表面上。在400℃下进行还原处理后,形成了独特的核-壳结构。注意,具有这种结构的颗粒通过在空气中的再氧化处理而消失,并且证实了纳米颗粒的再分散。在第二还原处理后的再氧化催化剂中再次观察到具有核-壳结构的颗粒。乙酸乙酯在Pt / SnO2催化剂上燃烧的催化活性被降低和活化,这与还原氧化处理引起的纳米结构变化相对应。

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