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首页> 外文期刊>Journal of Catalysis >Oxidative conversion of propane over lithium-promoted magnesia catalyst - II. Active site characterization and hydrocarbon activation
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Oxidative conversion of propane over lithium-promoted magnesia catalyst - II. Active site characterization and hydrocarbon activation

机译:丙烷在锂促进的氧化镁催化剂上的氧化转化-II。活性部位表征和烃活化

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Activation of propane over Li/MgO catalyst has been investigated. It is shown that a small fraction of the oxygen ions in Li/MgO catalysts can be removed from the catalyst by reduction treatment in H-2 at 600 degreesC. Catalytic activity of Li/MgO exhibits a strong correlation to the amount of oxygen that is removed. It is proposed that the sites containing removable oxygen are responsible for the activation of propane. About 70 propane molecules were converted after consumption of one such oxygen site, in the absence of gas-phase oxygen, implying a mechanism in which propane molecules are activated on the catalyst resulting in propyl radicals that are released to the gas phase where they undergo chain propagation reactions, resulting in the products observed. The active O site is consumed by conversion into an OH group, as the oxygen is not removed from the catalyst with propane. The oxidative conversion of propane over Li/MgO catalysts follows a mixed heterogeneous-homogeneous radical chemistry where the catalyst acts as an initiator. At low propane partial pressures (0.1 bar), the catalyst surface area to volume ratio of the catalytic reactor does not influence the chain length in the propagation step. At higher propane partial pressures (> 0.3 bar), favoring extensive gas-phase reactions, the catalyst affects conversion and selectivity also via quenching and chain termination. (C) 2003 Elsevier Inc. All rights reserved. [References: 28]
机译:已经研究了在Li / MgO催化剂上丙烷的活化。已经表明,通过在600℃下在H-2中进行还原处理,可以将Li / MgO催化剂中的一小部分氧离子从催化剂中除去。 Li / MgO的催化活性与去除的氧气量密切相关。提出含有可除去的氧的位点负责丙烷的活化。消耗了一个这样的氧气位点后,在没有气相氧气的情况下,约有70个丙烷分子被转化,这表明丙烷分子在催化剂上被活化,从而导致丙基自由基释放到气相中并在其中发生链化的机理传播反应,观察到产物。活性O位通过转化成OH基而被消耗,因为没有用丙烷从催化剂上除去氧。丙烷在Li / MgO催化剂上的氧化转化遵循混合的非均相自由基化学,其中催化剂充当引发剂。在丙烷分压低(0.1 bar)的情况下,催化反应器的催化剂表面积与体积之比不会影响扩散步骤中的链长。在较高的丙烷分压(> 0.3 bar)下,有利于广泛的气相反应,催化剂也会通过淬灭和链终止作用影响转化率和选择性。 (C)2003 Elsevier Inc.保留所有权利。 [参考:28]

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