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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >MCM-41 supported Cu-Mn catalysts for catalytic oxidation of toluene at low temperatures
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MCM-41 supported Cu-Mn catalysts for catalytic oxidation of toluene at low temperatures

机译:MCM-41负载的Cu-Mn催化剂,用于低温催化甲苯氧化

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摘要

Complete catalytic oxidation of toluene was investigated on Cu-Mn doped mesoporous and microporous catalysts, i.e., Cu-Mn/MCM-41, Cu-Mn/beta-zeolite, Cu-Mn/ZSM-5 (where SiO2/Al2O3 is either 25 or 38), and Cu-Mn/porous silica, in the presence of excess oxygen. The result shows that mesoporous catalysts have exhibited the highest catalytic activity among these catalysts above. The less amount of coke formation due to the unique mesoporous structures could play a key role in the high activity on the mesoporous catalyst. In addition, the bimetallic Cu-Mn-MCM-41 supported catalyst shows higher oxidation activity than either single metal catalyst, i.e., Cu-MCM-41 and Mn-MCM-41. The highly dispersed Cu-Mn mixed oxides on mesoporous structures probably provide active sites for the complete oxidation of toluene on these mesoporous catalysts.
机译:在Cu-Mn掺杂的中孔和微孔催化剂上研究了甲苯的完全催化氧化,即Cu-Mn / MCM-41,Cu-Mn /β-沸石,Cu-Mn / ZSM-5(其中SiO2 / Al2O3为25或38),以及在过量氧气存在下的Cu-Mn /多孔二氧化硅。结果表明,在上述这些催化剂中,介孔催化剂表现出最高的催化活性。由于独特的介孔结构,较少的焦炭形成可能在介孔催化剂的高活性中起关键作用。另外,双金属Cu-Mn-MCM-41负载的催化剂显示出比任一种单金属催化剂即Cu-MCM-41和Mn-MCM-41更高的氧化活性。在中孔结构上高度分散的Cu-Mn混合氧化物可能为这些中孔催化剂上的甲苯完全氧化提供了活性部位。

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