首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Oxidative dehydrogenation of isobutane to isobutene III reaction mechanism over CePO4 catalyst
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Oxidative dehydrogenation of isobutane to isobutene III reaction mechanism over CePO4 catalyst

机译:CePO4催化剂上异丁烷的氧化脱氢为异丁烯III反应机理

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Among rare earth phosphates, only CePO4 and LaPO4 exhibit very high activity for oxidative dehydrogenation (ODH) of isobutane. This phenomenon was studied in comparison with the corresponding oxides. Isobutene was formed over NdPO4, which was used as a representative of inactive phosphate catalysts, by simple dehydrogenation with 30-32% selectivity, C3H6 and CO2 were formed with a selectivity of 25-33% and 20-30%, respectively. Isobutene was obtained at a higher selectivity of 79-86% over CePO4 and LaPO4. No H, formation Suggests that the essential reaction wits the ODH of isobutane. In the oxidation over metal oxides, isobutene selectivity was relatively high: 60-70% over CeO2; however, the essential reaction was considered to be a simple dehydrogenation. Isobutene was formed at 40-47% selectivity, but simple dehydrogenation of isobutane would proceed over Nd2O3 and La2O3. La2O3, Nd2O3, and NdPO4 have only weak acidic sites. CeO2 has weak acidic sites and those with intermediate strength; LaPO4 and CePO4 have relatively strong acidic sites in addition to the weak acidic sites and those of intermediate strength. Oxidative dehydrogenation activity was correlated with strong acidic sites. ODH of isobutane occurred in the reaction between lattice oxygen of CePO4 and isobutane. Introduction of NH3 into the reaction system reduced both ODH of isobutane and CO2 formation; and stopping the NH3 supply led to a resumption of the activity, which suggests the participation of acidic sites. CePO4 catalyst contained 2% excess Ce to P; in the prepared CePO4 sample, Ce4+ was detected by XPS. We conclude that acidic sites and redox between Ce4+ and Ce3+ play important roles in the ODH of isobutane. (c) 2005 Elsevier B.V. All rights reserved.
机译:在稀土磷酸盐中,只有CePO4和LaPO4对异丁烷的氧化脱氢(ODH)表现出很高的活性。与相应的氧化物相比,研究了该现象。通过以30-32%的选择性进行简单脱氢,在用作惰性磷酸盐催化剂代表的NdPO4上形成了异丁烯,分别以25-33%和20-30%的选择性形成了C3H6和CO2。异丁烯以比CePO4和LaPO4更高的79-86%的选择性获得。没有H,形成表明该基本反应具有异丁烷的ODH。在金属氧化物上的氧化中,异丁烯的选择性相对较高:相对于CeO2为60-70%;对于CeO2为60-70%。然而,基本反应被认为是简单的脱氢。异丁烯以40-47%的选择性形成,但是异丁烷的简单脱氢将在Nd2O3和La2O3上进行。 La2O3,Nd2O3和NdPO4仅具有弱酸性位。 CeO2的酸性部位弱,中等强度。 LaPO4和CePO4除了弱酸性部位和中等强度的酸性部位外,还具有相对较强的酸性部位。氧化脱氢活性与强酸性位点相关。 CePO4的晶格氧与异丁烷之间的反应中发生异丁烷的ODH。将NH3引入反应体系可减少异丁烷的ODH和CO2的形成;并且停止供应NH3导致活性恢复,这表明酸性位点的参与。 CePO4催化剂比P含2%的Ce;在制备的CePO4样品中,通过XPS检测到Ce4 +。我们得出结论,Ce4 +和Ce3 +之间的酸性位点和氧化还原在异丁烷的ODH中起重要作用。 (c)2005 Elsevier B.V.保留所有权利。

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