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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Highly efficient photocatalytic oxidation of sulfur-containing organic compounds and dyes on TiO2 with dual cocatalysts Pt and RuO2
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Highly efficient photocatalytic oxidation of sulfur-containing organic compounds and dyes on TiO2 with dual cocatalysts Pt and RuO2

机译:Pt和RuO2助催化剂在TiO2上高效催化光催化氧化含硫有机化合物和染料

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摘要

Photocatalytic oxidation has been demonstrated to be an effective way for removing organic pollutants via a complete mineralization. The removal of sulfur-containing organic compounds in fuel oils and pollutants such as rhodamine B (RhB) and methyl orange (MO) present in the industrial wastewater is highly desired. Here we studied the photocatalytic oxidation of the pollutants on Pt-RuO2/TiO2 photo-catalyst. We found that TiO2 co-loaded with noble metal Pt and metal oxide RuO2 shows the considerably synergistic effect between the two cocatalysts on photocatalytic oxidation activity. This effect has been demonstrated for photocatalytic oxidation of thiophene and successfully extended to photocatalytic oxidation of organic dyes. The high activity is achieved by co-loading less than 0.05 wt% Pt and 0.05 wt% RuO2 as cocatalysts on TiO2. ESR measurements give the evidence for that the active oxygen species (~·OH and O2~(·-)) generated by photocatalytic processes are involved in photocatalytic oxidation reactions. The reduction cocatalyst Pt and oxidation cocatalyst RuO2 play significant roles in the photocatalytic oxidation reaction and the co-existing of the dual function cocatalysts is crucial for developing highly active photocatalysts for environmental protection.
机译:光催化氧化已被证明是通过完全矿化去除有机污染物的有效方法。强烈希望去除工业废水中燃料油和污染物如若丹明B(RhB)和甲基橙(MO)中的含硫有机化合物。在这里,我们研究了Pt-RuO2 / TiO2光催化剂上污染物的光催化氧化。我们发现,TiO2与贵金属Pt和金属氧化物RuO2共同负载显示出两种助催化剂之间对光催化氧化活性的显着协同作用。已证明该作用可用于噻吩的光催化氧化,并已成功扩展到有机染料的光催化氧化。通过在TiO2上共同负载小于0.05 wt%的Pt和0.05 wt%的RuO2作为助催化剂,可以实现高活性。 ESR测量提供了证据,表明由光催化过程产生的活性氧(〜·OH和O2〜(·-))参与了光催化氧化反应。还原助催化剂Pt和氧化助催化剂RuO2在光催化氧化反应中起着重要作用,双功能助催化剂的共存对于开发高活性的环境保护光催化剂至关重要。

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