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Pd/Co3O4-based catalysts prepared by solution combustion synthesis for residual methane oxidation in lean conditions

机译:通过溶液燃烧合成制备的Pd / Co3O4基催化剂,用于稀薄条件下的残留甲烷氧化

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In this work a series of palladium doped cobalt spinel catalysts was synthesized via solution combustion synthesis plus incipient wetness impregnation and tested in lean CH4 oxidation. The obtained catalysts were characterized from the structural and surface point of view (XRD, XRF, mu ARS, BET). The Pd doping level, calculated as PdO, ranged from 0.5 to 5 wt.%. The optimal palladium loading was determined on the basis of catalytic tests in gas mixtures containing from 0.5 to 2 vol.% of CH4. The temperature window for the catalytic activity of the Pd/Co3O4 materials spread from 270 to 550 degrees C. The optimal Pd loading was found to be 3 wt.%, and it was rationalized in terms of favorable surface Pd dispersion, since above this critical level of 3% an appreciable amount of PdO phase was formed. The reactivity of the optimal 3 wt.% Pd/Co3O4 catalyst from one-shot solution combustion synthesis was evaluated with the aim of optimizing the synthesis procedure. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项工作中,通过溶液燃烧合成+初湿浸渍法合成了一系列钯掺杂的钴尖晶石催化剂,并在贫CH4氧化中进行了测试。从结构和表面观点(XRD,XRF,μARS,BET)表征了所获得的催化剂。以PdO计算的Pd掺杂水平为0.5-5重量%。最佳钯载量是根据催化试验确定的,该试验在含有0.5至2体积%CH4的气体混合物中进行。 Pd / Co3O4材料催化活性的温度范围从270℃扩展到550℃。发现最佳Pd负载量为3 wt。%,并且根据有利的表面Pd分散性对其进行了合理化,因为高于此临界值含量为3%时,形成了可观数量的PdO相。为了优化合成过程,评估了一次溶液燃烧合成的最佳3 wt%Pd / Co3O4催化剂的反应性。 (C)2015 Elsevier B.V.保留所有权利。

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