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重型柴油车尾气中具有非挥发性核心的成核模式颗粒。

Nucleation mode particles with a nonvolatile core in the exhaust of a heavy duty diesel vehicle.

作者信息

Rönkkö Topi, Virtanen Annele, Kannosto Jonna, Keskinen Jorma, Lappi Maija, Pirjola Liisa

机构信息

Aerosol Physics Laboratory, Institute of Physics, Tampere University of Technology, P.O. Box 692, FI-33101 Tampere, Finland.

出版信息

Environ Sci Technol. 2007 Sep 15;41(18):6384-9. doi: 10.1021/es0705339.

Abstract

The characteristics of the nucleation mode particles of a Euro IV heavy-duty diesel vehicle exhaust were studied. The NOx and PM emissions of the vehicle were controlled through the use of cooled EGR and high-pressure fuel injection techniques; no exhaust gas after-treatment was used. Particle measurements were performed in vehicle laboratory and on road. Nucleation mode dominated the particle number size distribution in all the tested driving conditions. According to the on-road measurements, the nucleation mode was already formed after 0.7 s residence time in the atmosphere and no significant changes were observed for longer residence times. The nucleation mode was insensitive to the fuel sulfur content, dilution air temperature, and relative humidity. An increase in the dilution ratio decreased the size of the nucleation mode particles. This behavior was observed to be linked to the total hydrocarbon concentration in the diluted sample. In volatility measurements, the nucleation mode particles were observed to have a nonvolatile core with volatile species condensed on it. The results indicate that the nucleation mode particles have a nonvolatile core formed before the dilution process. The core particles have grown because of the condensation of semivolatile material, mainly hydrocarbons, during the dilution.

摘要

研究了一辆欧IV重型柴油车排气中成核模态颗粒的特性。通过使用冷却废气再循环(EGR)和高压燃油喷射技术来控制车辆的氮氧化物(NOx)和颗粒物(PM)排放;未采用废气后处理。颗粒物测量在车辆实验室和道路上进行。在所有测试驾驶条件下,成核模态在颗粒数粒径分布中占主导地位。根据道路测量结果,成核模态在大气中停留0.7秒后就已形成,且在更长停留时间内未观察到显著变化。成核模态对燃料硫含量、稀释空气温度和相对湿度不敏感。稀释比的增加会减小成核模态颗粒的尺寸。观察到这种行为与稀释样品中的总烃浓度有关。在挥发性测量中,观察到成核模态颗粒有一个非挥发性核心,上面凝聚着挥发性物质。结果表明,成核模态颗粒有一个在稀释过程之前形成的非挥发性核心。核心颗粒在稀释过程中由于半挥发性物质(主要是碳氢化合物)的凝聚而长大。

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