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On-road black carbon instrument intercomparison and aerosol characteristics by driving environment

机译:行驶环境中的公路黑碳仪器的比对和气溶胶特性

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摘要

Large spatial variations of black carbon (BC) concentrations in the on-road and near-road environments necessitate measurements with high spatial resolution to assess exposure accurately. A series of measurements was made comparing the performance of several different BC instruments (Single Particle Soot Photometer, Photo-Acoustic Soot Spectrometer, and Aethalometer) for high time resolution mobile measurements, capable of mapping spatial gradients. All instruments were highly correlated at high time resolution (r~2 = 0.80-0.89 at a 2-s resolution), however the slope ranged from 0.52 to 1.03, with the Single Particle Soot Photometer (SP2) consistently reporting the lowest BC concentrations. BC and ul-trafine particle (UFP) concentrations were two-fold higher on the highway compared to surrounding roads with lower traffic counts. The BC size distribution had a mass median diameter of approximately 120 nm, which was smaller and less coated than aged urban BC. Mean UFP and BC concentrations were 2 and 1.4 times greater, respectively, during free flowing traffic on the highway compared with times when there was stop-and-go congestion, providing evidence that transit time is not a good predictor of BC or UFP exposure.
机译:公路和近路环境中黑碳(BC)浓度的较大空间变化,因此需要具有高空间分辨率的测量值才能准确评估暴露程度。进行了一系列测量,比较了几种不同的BC仪器(单颗粒煤烟光度计,光声煤烟光谱仪和Aethalometer)在高分辨率,可绘制空间梯度的移动测量中的性能。所有仪器在高时间分辨率下均具有高度相关性(在2 s分辨率下r〜2 = 0.80-0.89),但是斜率的范围从0.52到1.03,单颗粒煤灰光度计(SP2)始终报告最低的BC浓度。与交通量较少的周围道路相比,高速公路上的BC和超微粒(UFP)浓度高出两倍。 BC大小分布的质量中值直径约为120 nm,这比老化的城市BC小且涂层较少。在高速公路上自由流动期间,UFP和BC的平均浓度分别比停走拥堵的时间分别高2倍和1.4倍,这提供了运输时间不能很好地预测BC或UFP暴露的证据。

著录项

  • 来源
    《Atmospheric environment》 |2014年第5期|183-191|共9页
  • 作者单位

    National Risk Management Laboratory, Office of Research and Development, United States Environmental Protection Agency, 109 T.W. Alexander Dr. RTP, NC 27709, USA;

    National Risk Management Laboratory, Office of Research and Development, United States Environmental Protection Agency, 109 T.W. Alexander Dr. RTP, NC 27709, USA;

    National Risk Management Laboratory, Office of Research and Development, United States Environmental Protection Agency, 109 T.W. Alexander Dr. RTP, NC 27709, USA;

    National Risk Management Laboratory, Office of Research and Development, United States Environmental Protection Agency, 109 T.W. Alexander Dr. RTP, NC 27709, USA;

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

    Ultrafine particles; Size distribution; Light absorption; Mobile source;

    机译:超细颗粒;尺寸分布;光吸收行动来源;

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