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首页> 外文期刊>Topics in Catalysis >Role of Electronic Factor in Soot Oxidation Process Over Tunnelled and Layered Potassium Iron Oxide Catalysts
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Role of Electronic Factor in Soot Oxidation Process Over Tunnelled and Layered Potassium Iron Oxide Catalysts

机译:电子因子在隧穿和层状氧化铁钾催化剂上碳烟氧化过程中的作用

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This paper describes the investigations of the catalytic activity in soot oxidation over well-defined iron oxide based materials. The nanostructuration of iron oxide by potassium into tunnelled (KFeO2) and layered (K2Fe_(22)P_(34)) ferrites and the surface promotion with CeO2 results in the marked increase in the catalytic activity (decrease of the ignition temperature down to 210 °C and T_(10) % to 310 °C). The measurements of the catalysts work function showed that both nanostructuration and surface promotion with ceria of the best KFeO2 phase led to increase of the electron availability (decrease of the work function). Strong correlation of the catalytic activity in soot combustion of the Ce-K-Fe-O systems with the work function value was revealed for the first time in the model studies, and can be used as a guideline for optimisation of the real catalytic filters.
机译:本文介绍了在定义明确的氧化铁基材料上烟灰氧化催化活性的研究。钾将氧化铁纳米结构化为隧道(KFeO2)和层状(K2Fe_(22)P_(34))铁氧体以及CeO2的表面促进作用导致催化活性显着提高(着火温度降低至210°C C和T_(10)%至310°C)。催化剂功函数的测量结果表明,最佳KFeO2相的二氧化铈的纳米结构和表面促进作用均导致电子利用率的提高(功函数的降低)。在模型研究中首次揭示了Ce-K-Fe-O系统烟so燃烧中催化活性与功函数值的强相关性,可作为优化实际催化过滤器的指导。

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