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Physico-Chemical Characterization of Fine and Ultrafine Particles Emitted during Diesel Particulate Filter Active Regeneration of Euro5 Diesel Vehicles

机译:Euro5柴油车柴油机微粒过滤器主动再生过程中产生的细颗粒和超细颗粒的理化特性

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摘要

Diesel particulate filters (DPFs) are commonly employed in modern passenger cars to comply with current particulate matter (PM) emission standards. DPFs requires periodic regeneration to remove the accumulated matter. During the process, high-concentration particles, in both nucleation and accumulation modes, are emitted. Here, we report new information on particle morphology and chemical composition of fine (FPs) and ultrafine particles (UFPs) measured downstream of the DPF during active regeneration of two Euro 5 passenger cars. The first vehicle was equipped with a close-coupled diesel oxidation catalyst (DOC) and noncatalyzed DPF combined with fuel borne catalyst and the second one with DOC and a catalyzed-diesel particle filter (CDPF). Differences in PM emission profiles of the two vehicles were related to different after treatment design, regeneration strategies, and vehicle characteristics and mileage. Particles in the nucleation mode consisted of ammonium bisulfate, sulfate and sulfuric acid, suggesting that the catalyst desulfation is the key process in the formation of UFPs. Larger particles and agglomerates, ranging from 90 to 600 nm, consisted of carbonaceous material (soot and soot aggregates) coated by condensable material including organics, ammonium bisulfate and sulfuric acid. Particle emission in the accumulation mode was due to the reduced filtration efficiency (soot cake oxidation) throughout the regeneration process.
机译:柴油微粒过滤器(DPF)通常用于现代乘用车中,以符合当前的微粒物质(PM)排放标准。 DPF需要定期再生以除去积聚的物质。在此过程中,以成核和积累模式发射高浓度粒子。在这里,我们报告了在两辆Euro 5乘用车的主动再生过程中,在DPF下游测量的微粒(FP)和超微粒(UFP)的颗粒形态和化学成分的新信息。第一辆车配备了紧密耦合的柴油机氧化催化剂(DOC)和未催化的DPF,并结合了燃油中的催化剂,第二辆车配备了DOC和催化的柴油颗粒过滤器(CDPF)。两种车辆的PM排放曲线的差异与后处理设计,再生策略以及车辆特性和行驶里程的不同有关。成核模式下的颗粒由硫酸氢铵,硫酸盐和硫酸组成,表明催化剂的脱硫是UFPs形成的关键过程。较大的颗粒和附聚物范围为90至600 nm,由碳质材料(烟灰和烟灰聚集体)组成,并覆盖有可冷凝物,包括有机物,硫酸氢铵和硫酸。累积模式下的颗粒排放是由于整个再生过程中过滤效率的降低(烟灰氧化)。

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  • 来源
    《Environmental Science & Technology》 |2018年第5期|3312-3319|共8页
  • 作者单位

    CNRS, UMR 5256, IRCELYON, Institut de Recherches sur la Catalyse et l’Environnement de Lyon, Université Lyon 1, 2 Avenue Albert Einstein, F-69626 Villeurbanne, France;

    CNRS, UMR 5256, IRCELYON, Institut de Recherches sur la Catalyse et l’Environnement de Lyon, Université Lyon 1, 2 Avenue Albert Einstein, F-69626 Villeurbanne, France;

    CNRS, UMR 5256, IRCELYON, Institut de Recherches sur la Catalyse et l’Environnement de Lyon, Université Lyon 1, 2 Avenue Albert Einstein, F-69626 Villeurbanne, France;

    CNRS, UMR 5256, IRCELYON, Institut de Recherches sur la Catalyse et l’Environnement de Lyon, Université Lyon 1, 2 Avenue Albert Einstein, F-69626 Villeurbanne, France;

    IFP Energies Nouvelles, Direction Systèmes Moteurs et Véhicules, Etablissement de Lyon, Rond-point de l’échangeur de Solaize, Institut Carnot IFPEN Transports Energie BP 3, 69360 Solaize, France;

    IFP Energies Nouvelles, Direction Systèmes Moteurs et Véhicules, Etablissement de Lyon, Rond-point de l’échangeur de Solaize, Institut Carnot IFPEN Transports Energie BP 3, 69360 Solaize, France;

    IFP Energies Nouvelles, Direction Systèmes Moteurs et Véhicules, Etablissement de Lyon, Rond-point de l’échangeur de Solaize, Institut Carnot IFPEN Transports Energie BP 3, 69360 Solaize, France;

    CNRS, UMR 5256, IRCELYON, Institut de Recherches sur la Catalyse et l’Environnement de Lyon, Université Lyon 1, 2 Avenue Albert Einstein, F-69626 Villeurbanne, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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