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Secondary nanoparticle emissions during diesel particulate trap regeneration

机译:柴油机微粒捕集器再生过程中的次级纳米微粒排放

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摘要

Two nanostructured mixed oxide catalysts (the CoCr2O4 spinel and the LiCrO2 delafossite) have been recently developed for diesel soot combustion. The catalysts have been deposited via in situ combustion synthesis over SiC wallflow trap by CTI (Salindres, F). Bench tests proved that, after soot loading, both the developed traps enable a faster and more complete regeneration at 550 °C than the non-catalysed trap. However, a specific study on the particles distribution after the SiC trap, carried out via SMPS analysis, showed that secondary nanoparticles (<20 nm) are emitted during the regeneration promoted by the highly-active CoCr2O4 catalytic trap, as opposed to the LiCrO2-catalysed and the virgin counter parts. This phenomenon has been investigated vs. the regeneration temperature and some sampling conditions so as to draw preliminary indications on the nature of these undesired particles.
机译:最近已经开发出两种纳米结构的混合氧化物催化剂(CoCr2 O4 尖晶石和LiCrO2 铜铁矿)用于柴油机烟灰燃烧。催化剂已经通过CTI(Salindres,F)通过原位燃烧合成法沉积在SiC壁流捕集器上。台架试验证明,在烟灰加载后,两个开发的捕集器均能在550°C下比非催化捕集器更快,更完全地再生。然而,通过SMPS分析对SiC捕集后的颗粒分布进行了专门研究,结果表明,在高活性CoCr2 O4 促进的再生过程中,会发射出次级纳米颗粒(<20 nm)。催化陷阱,而不是LiCrO2 催化和原始的对应部分。已针对再生温度和一些采样条件对这种现象进行了研究,以便对这些不希望有的颗粒的性质做出初步指示。

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  • 来源
    《Topics in Catalysis》 |2007年第4期|253-257|共5页
  • 作者单位

    Materials Science and Chemical Engineering Department Politecnico di Torino Corso Duca degli Abruzzi 24 10129 Torino Italy;

    Materials Science and Chemical Engineering Department Politecnico di Torino Corso Duca degli Abruzzi 24 10129 Torino Italy;

    Materials Science and Chemical Engineering Department Politecnico di Torino Corso Duca degli Abruzzi 24 10129 Torino Italy;

    Materials Science and Chemical Engineering Department Politecnico di Torino Corso Duca degli Abruzzi 24 10129 Torino Italy;

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

    diesel particulate; catalytic combustion; wallflow trap; nanoparticles; CoCr2O4; LiCrO2;

    机译:柴油机颗粒;催化燃烧;壁流阱;纳米颗粒;CoCr2O4;LiCrO2;

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