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Dependence between Nonvolatile Nucleation Mode Particle and Soot Number Concentrations in an EGR Equipped Heavy-Duty Diesel Engine Exhaust

机译:配备EGR的重型柴油机排气中非挥发性成核模式颗粒与烟So浓度的相关性

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摘要

Heavy duty diesel engine exhaust characteristics were studied with direct tailpipe sampling on an engine dynamometer. The exhaust particle size distributions, total particle mass, and gaseous emissions were measured with different load conditions without after-treatment The measured particle size distributions were bimodal; distinctive accumulation and nucleation modes were detected for both volatile and dry particle samples. The condensing volatile compounds changed the characteristics of the nonvolatile nucleation mode while the soot/accumulation mode characteristics (concentration and diameter) were unchanged. A clear dependence between the soot and the nonvolatile nucleation mode number concentrations was detected. While the concentration of the soot mode decreased, the nonvolatile nucleation mode concentration increased. The soot mode number concentration decrease was related to soot-NO_x trade-off; the decrease of the exhaust gas recirculation rate decreased soot emission and increased NO, emission. Simultaneously detected increase of the nonvolatile nucleation mode concentration may be caused by the decrease of the soot mode sink or by changed combustion characteristics. However, the total particle number concentration increased with decreasing soot mode number concentration. The proportion of the particle number concentration between the nonvolatile nucleation and soot mode followed the NO_2:N0 ratio linearly. While ratio NO_2:N0 increased the proportion of soot mode number concentration in total number concentration increased. Regardless of the mechanism that causes the balance between the soot mode and the nonvolatile nucleation mode emissions, the changes in the particle number size distribution should be taken into account while the particle mass emissions are controlled with combustion optimization.
机译:通过在发动机测功机上直接对排气管进行采样,研究了重型柴油机的排气特性。在不进行后处理的情况下,在不同的负载条件下测量了排气颗粒尺寸分布,总颗粒质量和气体排放。挥发性和干燥颗粒样品均检测到独特的积累和成核模式。冷凝的挥发性化合物改变了非挥发性成核模式的特性,而烟so /积累模式的特性(浓度和直径)则保持不变。烟灰和非易失性成核模式数浓度之间存在明显的依存关系。当烟灰模式的浓度降低时,非易失性成核模式的浓度增加。烟尘模式数浓度的降低与烟尘-NO_x的权衡有关。废气再循环率的降低减少了烟尘排放,增加了NO排放。同时检测到的非易失性成核模式浓度的增加可能是由于烟灰模式吸收器的减少或燃烧特性的改变引起的。但是,总颗粒数浓度随着烟灰模式数浓度的降低而增加。非易失性成核和烟so模式之间的颗粒数浓度比例线性遵循NO_2:N0比。当NO_2:N0比值增加时,烟灰模式数浓度在总浓度中的比例增加。不管造成烟灰模式和非易失性成核模式排放之间达到平衡的机制,在通过燃烧优化控制颗粒质量排放的同时,都应考虑粒径分布的变化。

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  • 来源
    《Environmental Science & Technology》 |2010年第8期|p.3175-3180|共6页
  • 作者单位

    Aerosol Physics Laboratory, Tampere University of Technology, P.O. Box 599, FIN-33720, Tampere, Finland;

    Aerosol Physics Laboratory, Tampere University of Technology, P.O. Box 599, FIN-33720, Tampere, Finland;

    Aerosol Physics Laboratory, Tampere University of Technology, P.O. Box 599, FIN-33720, Tampere, Finland;

    Engine Research Team, VTT Technical Research Centre of Finland, P.O. Box 1000, 02044, VTT, Finland;

    Engine Research Team, VTT Technical Research Centre of Finland, P.O. Box 1000, 02044, VTT, Finland;

    Engine Research Team, VTT Technical Research Centre of Finland, P.O. Box 1000, 02044, VTT, Finland;

    Aerosol Physics Laboratory, Tampere University of Technology, P.O. Box 599, FIN-33720, Tampere, Finland;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-17 14:03:57

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