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Soot Combustion over Nanostructured Ceria with Different Morphologies

机译:纳米氧化铈在不同形态下的烟尘燃烧

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摘要

In this study, nano-structure ceria with three different morphologies (nanorod, nanoparticle and flake) have been prepared by hydrothermal and solvothermal methods. The ceria samples were deeply characterized by XRD, SEM, TEM, H2-TPR, XPS and in-situ DRIFTS, and tested for soot combustion in absence/presence NO atmospheres under loose and tight contact conditions. The prepared ceria samples exhibit excellent catalytic activities, especially, the CeO2 with nanorod (Ce-R) shows the best catalytic activity, for which the peak temperature of soot combustion (Tm) is about 500 and 368 °C in loose and tight contact conditions, respectively. The catalytic activity for Ce-R is higher than that of the reported CeO2 catalysts and reaches a level that of precious metals. The characterization results reveal that the maximal amounts of adsorbed oxygen species on the surface of the nanostructure Ce-R catalyst should be the crucial role to decide the catalytic soot performance. High BET surface area may also be a positive effect on soot oxidation activity under loose contact conditions.
机译:在这项研究中,通过水热法和溶剂热法制备了具有三种不同形态(纳米颗粒,纳米颗粒和薄片)的纳米结构二氧化铈。通过XRD,SEM,TEM,H2-TPR,XPS和原位DRIFTS对二氧化铈样品进行了深层表征,并在松散和紧密的接触条件下,在没有或没有NO气氛的情况下测试了烟灰燃烧。制备的二氧化铈样品表现出优异的催化活性,特别是具有纳米棒的CeO2(Ce-R)表现出最佳的催化活性,在松散和紧密的接触条件下,烟灰燃烧的峰值温度(Tm)约为500和368C。 , 分别。 Ce-R的催化活性高于已报道的CeO2催化剂,并达到了贵金属的水平。表征结果表明,纳米结构Ce-R催化剂表面吸附的最大氧种类应是决定催化烟灰性能的关键作用。在松散的接触条件下,高BET表面积也可能对烟灰氧化活性产生积极影响。

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