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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Conditioning of Rh/alpha-Al2O3 catalysts for H-2 production via CH4 partial oxidation at high space velocity
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Conditioning of Rh/alpha-Al2O3 catalysts for H-2 production via CH4 partial oxidation at high space velocity

机译:高空速下CH4部分氧化制H-2生产用Rh / alpha-Al2O3催化剂的条件

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摘要

Experimental evidence and literature indications suggest that the process of methane partial oxidation over Rh catalysts is structure sensitive. Crystal phases and Rh cluster size are thus expected to affect the final catalytic performance. In this work, it is observed that outstanding performances are obtained when the as-prepared catalysts are conditioned through repeated runs at increasing temperature and O-2/CH4 = 0.56. Catalysts slowly activate, that is CH4 conversion and synthesis gas selectivity progressively grow with time on stream. On the basis of TPO and CH4 decomposition measurements, this phenomenon is herein explained as the result of a surface reconstruction driven by the repeated exposition to the reaction at high temperature; it is thought that such reconstruction tends to eliminate defect sites and disfavors C-deposition reactions (extremely fast over steps and kinks). Conditioning with O-2-enriched feed streams makes conditioning faster, since the accumulation of surface C-species is suppressed; however, the catalyst is eventually less active than a catalyst conditioned with standard feed mixtures. As an alternative, accumulation of carbon can be suppressed and surface reconstruction proceeds faster if the catalyst is directly exposed to the reaction at high temperature for several hours. (c) 2006 Elsevier B.V. All rights reserved.
机译:实验证据和文献表明,Rh催化剂上甲烷部分氧化的过程对结构敏感。因此预期晶相和Rh簇的大小会影响最终的催化性能。在这项工作中,可以观察到,通过在升高的温度和O-2 / CH4 = 0.56的条件下反复运行所制备的催化剂,可以获得出色的性能。催化剂缓慢活化,即CH4转化和合成气选择性随着生产时间的增长而逐渐增长。根据TPO和CH4分解测量结果,此现象在此得到解释,是由于在高温下反复暴露于反应而驱动的表面重建的结果。据认为,这种重建趋向于消除缺陷部位并不利于C沉积反应(在步骤和扭结上极快)。由于抑制了表面C物种的积累,使用富含O-2-的进料流进行调理可加快调理速度。然而,该催化剂的活性最终低于用标准进料混合物调节的催化剂。作为替代方案,如果催化剂在高温下直接暴露于反应数小时,则可以抑制碳的积累,并且表面重建可以更快地进行。 (c)2006 Elsevier B.V.保留所有权利。

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