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Effect of Lubricant on the Formation of Heavy-Duty Diesel Exhaust Nanoparticles

机译:润滑剂对重型柴油机排气纳米颗粒形成的影响

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摘要

The effect of lubricants on nanoparticle formation in heavy-duty diesel exhaust with and without a continuously regenerating diesel particulate filter(CRDPF)is studied.A partial flow sampling system with a particle size distribution measurement starting from 3 nm,approximately,is used.Tests are conducted using four different lubricant formulations,a very low sulfur content fuel,and four steady-state driving modes.A well-documented test procedure was followed for each test.Two different kinds of nanoparticle formation were observed,and both were found to be affected by the lubricant but in different way.Without CRDPF,nanoparticles were observed at low loads.No correlation between lubricant sulfur and these nanoparticles was found.These nanoparticles are suggested to form mainly from hydrocarbons.With CRDPF,installed nanoparticles were formed only at high load.The formation correlated positively with the lubricant(and fuel)sulfur level,suggesting that sulfuric compounds are the main nucleating species in this situation.Storage effects of CRDPF had an effect on nanoparticle concentration as the emissions of nanoparticles decreased over time.
机译:研究了使用和不使用连续再生柴油机微粒过滤器(CRDPF)的情况下润滑剂对重型柴油机排气中纳米粒子形成的影响。使用了分流采样系统,其粒度分布的测量范围大约为3 nm。使用四种不同的润滑剂配方,极低硫含量的燃料和四种稳态驱动模式进行测试。每种测试均遵循有据可查的测试程序,观察到两种不同类型的纳米颗粒形成,并且发现两种在没有CRDPF的情况下,在低负荷下观察到纳米颗粒。没有发现润滑剂硫与这些纳米颗粒之间的相关性。建议这些纳米颗粒主要由烃形成。使用CRDPF,安装的纳米颗粒仅在高温下形成。负荷。地层与润滑剂(和燃料)的硫含量呈正相关,表明含硫化合物是主要核素。 CRDPF的储存效应对纳米粒子的浓度有影响,因为纳米粒子的排放随时间减少。

著录项

  • 来源
    《Environmental Science & Technology》 |2005年第21期|p.8497-8504|共8页
  • 作者单位

    Tampere University of Technology,Aerosol Physics Laboratory,P.O.Box 692 FIN-33101 Tampere,Finland,Aristotle University of Thessaloniki,Laboratory of Applied Thermodynamics,Aristotle University of Thessaloniki,GR 541 24 Thessaloniki,Greece,and VTT Tec;

    Tampere University of Technology,Aerosol Physics Laboratory,P.O.Box 692 FIN-33101 Tampere,Finland,Aristotle University of Thessaloniki,Laboratory of Applied Thermodynamics,Aristotle University of Thessaloniki,GR 541 24 Thessaloniki,Greece,and VTT Tec;

    Tampere University of Technology,Aerosol Physics Laboratory,P.O.Box 692 FIN-33101 Tampere,Finland,Aristotle University of Thessaloniki,Laboratory of Applied Thermodynamics,Aristotle University of Thessaloniki,GR 541 24 Thessaloniki,Greece,and VTT Tec;

    Tampere University of Technology,Aerosol Physics Laboratory,P.O.Box 692 FIN-33101 Tampere,Finland,Aristotle University of Thessaloniki,Laboratory of Applied Thermodynamics,Aristotle University of Thessaloniki,GR 541 24 Thessaloniki,Greece,and VTT Tec;

    Tampere University of Technology,Aerosol Physics Laboratory,P.O.Box 692 FIN-33101 Tampere,Finland,Aristotle University of Thessaloniki,Laboratory of Applied Thermodynamics,Aristotle University of Thessaloniki,GR 541 24 Thessaloniki,Greece,and VTT Tec;

  • 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 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:07:56

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