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Doping effect of metal oxide on sensing performance of Pd/Al2O3-based methane sensor

机译:金属氧化物对Pd / Al2O3基甲烷传感器传感性能的影响

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Pure and doped γ-Al2O3 by metal oxides including SnO2, ZrO2, CeO2 and MgO were used as the supports of the combustion catalysts. The Al2O3 based supports doped with the metal oxides were prepared by coprecipitation method. The noble metal Pd with 15 wt% loading amount was then loaded on the as-prepared supports using isometric impregnation. The measuring results of Brunauer-Emmett-Teller-specific surface areas revealed that the specific surface areas of supports have been improved to a certain extent by doping of metal oxides. The measurement of gas sensing properties showed that the metal oxides have great influences on the sensitivity to CH4. The sensing performance of catalytic combustion methane sensors had been improved by doping SnO2, ZrO2, CeO2 or MgO in Al2O3.
机译:包括SnO2,ZrO2,CeO2和MgO的金属氧化物的纯净和掺杂的γ-Al2O3用作燃烧催化剂的载体。通过共沉淀法制备掺杂有金属氧化物的基于Al2O3的载体。然后使用等距浸渍将具有15wt%负载量的贵金属Pd加载到原制载体上。 Brunauer-Emmett-Treater特定表面区域的测量结果显示,通过掺杂金属氧化物,在一定程度上得到了改善的特定表面区域。气体传感性能的测量表明,金属氧化物对对CH4的敏感性的影响很大。通过掺杂SnO2,ZrO2,CeO2或MgO在Al 2 O 3中提高了催化燃烧甲烷传感器的感测性能。

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