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首页> 外文期刊>Physical chemistry chemical physics: PCCP >A study by electrical conductivity measurements of the semiconductive and redox properties of Nb-doped NiO catalysts in correlation with the oxidative dehydrogenation of ethane
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A study by electrical conductivity measurements of the semiconductive and redox properties of Nb-doped NiO catalysts in correlation with the oxidative dehydrogenation of ethane

机译:通过电导率测量研究掺Nb的NiO催化剂的半导体和氧化还原性质与乙烷的氧化脱氢的关系

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Nb-doped nickel oxides with Nb contents in the range from 1 to 20% and, for comparison, pure NiO, were characterized using in situ electrical conductivity measurements in correlation with their catalytic performances for the oxidative dehydrogenation (ODH) of ethane into ethylene. Their electrical conductivity was studied as a function of temperature and oxygen partial pressure and was followed with time during sequential exposures to air, ethane-air mixture (reaction mixture) and pure ethane in conditions similar to those of catalysis. All the oxides were p-type semiconductors under air. Their electrical conductivity in the reaction temperature range decreased in the following order: NiO > Nb(1)NiO > Nb(5) NiO > Nb(10)NiO > Nb(15)NiO > Nb(20)NiO. This correlates well with the catalytic activity expressed as the intrinsic rate of ethane consumption. All the catalysts were partially reduced under the reaction mixture in the reaction temperature range, an inverse correlation between their conductivity in these conditions and the ODH selectivity being observed. The ODH reaction of ethane takes place via a heterogeneous redox mechanism involving the surface lattice O- species.
机译:使用原位电导率测量值与Nb含量在1%至20%范围内的Nb掺杂的氧化镍进行比较,这些测量值与它们对乙烷氧化为乙烯的氧化脱氢(ODH)的催化性能相关。研究了它们的电导率与温度和氧分压的关系,并在与催化条件相似的条件下,依次暴露于空气,乙烷-空气混合物(反应混合物)和纯乙烷中,随时间变化。所有的氧化物在空气中都是p型半导体。它们在反应温度范围内的电导率按以下顺序降低:NiO> Nb(1)NiO> Nb(5)NiO> Nb(10)NiO> Nb(15)NiO> Nb(20)NiO。这与表示为乙烷消耗的固有速率的催化活性很好地相关。在反应温度范围内,所有催化剂在反应混合物中均被部分还原,在这些条件下其电导率与ODH选择性之间呈反比关系。乙烷的ODH反应通过涉及表面晶格O-物种的异质氧化还原机理发生。

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