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首页> 外文期刊>ChemCatChem >An Efficient Oxygen Activation Route for Improved Ammonia Oxidation through an Oxygen-Permeable Catalytic Membrane
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An Efficient Oxygen Activation Route for Improved Ammonia Oxidation through an Oxygen-Permeable Catalytic Membrane

机译:一种高效的氧激活途径,用于通过透氧催化膜改善氨氧化

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摘要

Upon using a reactant/oxygen mixture as co-feed in partial oxidation, adsorbed surface molecular oxygen species can cause low selectivity. We propose a concept different from the conventional co-feed partial oxidation process in packed-bed reactors. In this new configuration, the activation of oxygen is separated from the catalytic oxidation by using an oxygen-permeable membrane to suppress the formation of nonselective surface molecular oxygen species. A continuous flux of lattice oxygen through the membrane allows highly selective partial oxidation. In the oxidation of ammonia to NO, the NO selectivity was improved from 77 to 95% if a La0.6Sr0.4Co0.2Fe0.8O3- oxygen-permeable catalytically active membrane was used at 850 degrees C instead of a co-feed fixed bed reactor.
机译:在使用反应物/氧气混合物作为部分氧化中的共进料时,吸附表面分子氧物质可导致低选择性。 我们提出了一种与填充床反应器中传统的共馈部分氧化过程不同的概念。 在这种新配置中,通过使用透氧膜来抑制非选择性表面分子氧物质的形成,将氧气的激活与催化氧化分离。 通过膜的晶格氧的连续通量允许高度选择性的部分氧化。 如果在850℃下使用La0.6SR0.4CO0.2FE0.8O3-透氧催化活性膜,则在氨氧化下,无选择性从77-95%提高到95%。 反应堆。

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