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首页> 外文期刊>Topics in Catalysis >Thermal Ageing Induced Effects on Pd/LaFeO3 for NOx Reduction by Hydrocarbons: Influence of the Preparation Method
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Thermal Ageing Induced Effects on Pd/LaFeO3 for NOx Reduction by Hydrocarbons: Influence of the Preparation Method

机译:热老化对Pd / LaFeO3 烃类还原NOx的影响:制备方法的影响

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摘要

The influence of the support synthesis for the preparation of supported Pd/LaFeO3 perovskite based catalysts and the nature of the palladium precursor on the catalytic performances in the selective reduction of NO to N2 by hydrocarbons have been investigated. According to the preparation method, subsequent surface and bulk characterisation revealed significant changes in the degree of dispersion and the chemical environment of oxidic palladium species depending on the extent of interaction with the support. Pd nitrate precursor leads to the stabilisation of the Pd surface concentration. The metal support interactions thus obtained strongly enhance the catalytic performances, particularly the resistance to thermal ageing whereas sol–gel synthesis produces the higher support activity.
机译:研究了载体合成对负载型Pd / LaFeO3 钙钛矿基催化剂的制备的影响以及钯前驱体的性质对碳氢化合物选择性还原NO为N2 的催化性能的影响。根据制备方法,随后的表面和本体表征表明,取决于与载体相互作用的程度,氧化钯物质的分散度和化学环境发生了显着变化。硝酸钯前驱物导致钯表面浓度的稳定。由此获得的金属载体相互作用极大地增强了催化性能,特别是对热老化的抵抗力,而溶胶-凝胶合成产生了更高的载体活性。

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  • 来源
    《Topics in Catalysis》 |2009年第20期|1791-1798|共8页
  • 作者单位

    UCCS UMR 8181 Bat C3 Université des Sciences et Technologies de Lille 59650 Villeneuve d’Ascq France;

    UCCS UMR 8181 Bat C3 Université des Sciences et Technologies de Lille 59650 Villeneuve d’Ascq France;

    RENAULT SAS Direction de l’Ingénierie des MATériaux 1 Allée Cornuel 91510 Lardy France;

    UCCS UMR 8181 Bat C3 Université des Sciences et Technologies de Lille 59650 Villeneuve d’Ascq France;

    UCCS UMR 8181 Bat C3 Université des Sciences et Technologies de Lille 59650 Villeneuve d’Ascq France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    deNOx; Perovskite; Selective catalytic reduction by hydrocarbons; HC-SCR; Pd/LaFeO3;

    机译:脱硝;钙钛矿;碳氢化合物的选择性催化还原;HC-SCR;Pd / LaFeO3;

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