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首页> 外文期刊>ChemSusChem >In Situ Synthesis of Platinum Nanocatalysts on a Microstructured Paperlike Matrix for the Catalytic Purification of Exhaust Gases
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In Situ Synthesis of Platinum Nanocatalysts on a Microstructured Paperlike Matrix for the Catalytic Purification of Exhaust Gases

机译:原位合成铂纳米催化剂在微结构化纸基基质中的催化净化废气

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摘要

The successful in situ synthesis of platinum nanoparticles (PtNPs) on a microstructured paperlike matrix, comprising ceramic fibers as main framework and zinc oxide whiskers as selective support for the PtNPs, is reported. The as-prepared hybrid material (PtNPs@ZnO "paper") resembles ordinary paper products because it is flexible, lightweight, and easy to handle. In the catalytic reduction of nitrogen oxide (NOx) with propene for exhaust gas purification, the PtNPs@ZnO paper demonstrates a high catalytic performance at a low reaction temperature, with one-third the dosage of precious platinum compared to conventional platinum-loaded honeycomb catalysts. These results imply that the combination of easily synthesized PtNPs and a unique fiber-network microstructure can provide excellent performances, promoting the effective transport of heat and reactants to the active sites of the platinum nanocatalysts. Thus, PtNPs@ZnO materials with paperlike practical aspects are promising catalytic materials for efficient NOx gas purification.
机译:据报道,据报道了在微结构化的纸质基质上成功地合成铂纳米颗粒(PTNP),包括陶瓷纤维作为主要骨架和氧化锌晶须作为PTNPS的选择性载体。 AS制备的混合材料(PTNPS @ ZnO“纸”)类似普通纸产品,因为它是灵活的,轻巧,易于处理。在用丙烯的氮氧化物(NOx)催化还原用于废气净化的氮氧化物(NOx)中,PTNPS @ ZnO纸张在低反应温度下表现出高催化性能,与常规铂负载蜂窝催化剂相比,珍贵铂的剂量为1分。 。这些结果意味着易于合成的PTNP和独特的光纤 - 网络微观结构的组合可以提供优异的性能,促进热量和反应物的有效运输到铂纳米催化剂的活性位点。因此,PTNPS @ ZnO材料具有纸张状的实践方面是有前途的催化材料,用于高效NOx气体净化。

著录项

  • 来源
    《ChemSusChem》 |2010年第5期|共5页
  • 作者单位

    Kyushu Univ Dept Forest &

    Forest Prod Sci Grad Sch Bioresource &

    Bioenvironm Sci Higashi Ku Fukuoka 8128581 Japan;

    Kyushu Univ Dept Forest &

    Forest Prod Sci Grad Sch Bioresource &

    Bioenvironm Sci Higashi Ku Fukuoka 8128581 Japan;

    FCC Co Ltd R&

    D Div Kita Ku Shizuoka 4311304 Japan;

    FCC Co Ltd R&

    D Div Kita Ku Shizuoka 4311304 Japan;

    Kyushu Univ Dept Forest &

    Forest Prod Sci Grad Sch Bioresource &

    Bioenvironm Sci Higashi Ku Fukuoka 8128581 Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

    gas phase reactions; nanoparticles; platinum; supported catalysis; zinc oxide;

    机译:气相反应;纳米颗粒;铂;支持的催化;氧化锌;

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