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首页> 外文期刊>Catalysis Today >Ethanol steam reforming on nanostructured catalysts of Ni, Co and CeO 2: Influence of synthesis method on activity, deactivation and regenerability
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Ethanol steam reforming on nanostructured catalysts of Ni, Co and CeO 2: Influence of synthesis method on activity, deactivation and regenerability

机译:Ni,Co和Ceo纳米结构催化剂对乙醇蒸汽重整 2 :合成方法对活性,失活和再生性的影响

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Graphical abstractDisplay OmittedHighlights?Synthesis by reverse microemulsions makes more efficient catalysts than impregnation.?Catalytic activity and stability depend on the metal and the synthesis method.?Deactivated catalysts activity can be regenerated by oxidative treatment.?Synthesis method influences nature of deposited carbon and catalyst regenerability.?Unexpected effect of regeneration found for bimetallic NiCo-CeO2catalyst.AbstractThe catalytic behavior of nanostructured catalysts based on nickel, cobalt and cerium oxide in ethanol steam reforming (ESR) was studied to investigate the effect of the nature of the metal, their combination and the method of preparation. Mono- and bimetallic catalysts with equal metal content (M:Ce=4:6, M=Ni, Co, or Ni/Co=1) were prepared by two methods, impregnation and coprecipitation within reverse microemulsions, characterized by SBET, XRD, TPO and HRTEM, and tested for ESR at 500°C. The nickel catalyst prepared from microemulsions exhibited the best performance in terms of catalytic activity (close to 100% conversion), stability and hydrogen yield. Al the other catalysts deactivated at different paces due to formation of carbon deposits. The oxidative regeneration treatment of the deactivated catalysts recovered the initial activity of the impregnated catalysts but increased markedly those of catalysts from microemulsions. Thus, the catalytic behavior in ESR of the (Ni, Co)-Ce-O system depends on the preparation method, its composition and the catalyst history.]]>
机译:<![cdata [ 图形抽象 显示省略 突出显示 催化活动和稳定性取决于金属a综合方法。 取消激活的催化剂活性可以通过氧化治疗再生。 合成方法影响沉积碳和催化剂再生性的性质。 为Bimetallic Nico-CEO找到的再生意外效果 2 催化剂。 抽象 催化行为o研究了基于镍,钴和氧化铈中的乙醇蒸汽重整(ESR)的F纳米结构催化剂,研究了金属,它们的组合和制备方法的作用。通过两种方法,浸渍和共沉淀在反向微乳液中制备具有相同金属含量(M:Ce = 4:6,M = Ni,Co或Ni / Co = 1)的单含量和双金属催化剂,其特征在于,S BET ,XRD,TPO和HRTEM,并在500°C时测试ESR。由微乳液制备的镍催化剂在催化活性(接近100%转化率),稳定性和氢气收率方面表现出最佳性能。 Al由于形成碳沉积物,其他催化剂在不同的铰链处被激活。失活催化剂的氧化再生处理回收了浸渍催化剂的初始活性,但显着增加了微乳液的催化剂。因此,(Ni,CO)-CE-O系统ESR中的催化性能取决于制备方法,其组成和催化剂历史。 ]]>

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