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首页> 外文期刊>Atmospheric environment >Low-wind and other microclimatic factors in near-road black carbon variability: A case study and assessment implications
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Low-wind and other microclimatic factors in near-road black carbon variability: A case study and assessment implications

机译:近风黑碳变异性中的低风和其他微气候因素:案例研究和评估意义

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摘要

Airborne black carbon from urban traffic is a climate forcing agent and has been associated with health risks to near-road populations. In this paper, we describe a case study of black carbon concentration and compositional variability at and near a traffic-laden multi-lane highway in Cincinnati, Ohio, using an onsite aethalometer and filter-based NIOSH Method 5040 measurements; the former measured 1-min average black carbon concentrations and the latter determined the levels of organic and elemental carbon (OC and EC) averaged over an approximately 2-h time interval. The results show significant wind and temperature effects on black carbon concentration and composition in a way more complex than predicted by Gaussian dispersion models. Under oblique low winds, namely u_x[= u×sin(θ)]~(0, -0.5 m s~(-1)), which mostly occurred during morning hours, black carbon concentrations per unit traffic flow were highest and had large variation. The variability did not always follow Gaussian dispersion but was characteristic of a uniform distribution at a near-road distance. Under all other wind conditions, the near-road black carbon variation met Gaussian dispersion characteristics. Significant differences in roadside dispersion are observed between OC and EC fractions, between PM_(2.5) and PM_(10-2.5). and between the morning period and rest of the day. In a general case, the overall black carbon variability at the multi-lane highway can be stated as bimodal consisting of Gaussian dispersion and non-Gaussian uniform distribution. Transition between the two types depends on wind velocity and wind angle to the traffic flow. In the order of decreasing importance, the microclimatic controlling factors over the black carbon variability are: 1) wind velocity and the angle with traffic; 2) diurnal temperature variations due to thermal buoyancy; and 3) downwind Gaussian dispersion. Combinations of these factors may have created various traffic-microclimate interactions that have significant impact on near-road black carbon transport.
机译:来自城市交通的空中黑碳是一种气候强迫因子,并与近道路人口的健康风险相关。在本文中,我们使用现场测速仪和基于过滤器的NIOSH方法5040测量,描述了俄亥俄州辛辛那提市交通繁忙的多车道高速公路及其附近的黑碳浓度和组成变化的案例研究;前者测量的是1分钟的平均黑碳浓度,而后者则确定了大约2小时的时间间隔内平均的有机碳和元素碳(OC和EC)的水平。结果表明,风和温度对黑碳浓度和成分的影响显着高于高斯分散模型所预测的复杂程度。在倾斜的低风下,u_x [= u×sin(θ)]〜(0,-0.5 ms〜(-1))多发生在早晨,单位交通流量的黑碳浓度最高,且变化较大。 。变异性并不总是遵循高斯色散,而是在近距离处具有均匀分布的特征。在所有其他风况下,近路黑碳变化均符合高斯色散特性。在OC和EC组分之间,PM_(2.5)和PM_(10-2.5)之间观察到路边色散的显着差异。从早上到一天的其余时间。在一般情况下,多车道高速公路上的总黑碳变异性可以说是由高斯色散和非高斯均匀分布组成的双峰。两种类型之间的过渡取决于风速和风向交通流的角度。按照重要性递减的顺序,对黑碳变异性的微气候控制因素包括:1)风速和交通角。 2)由于热浮力引起的昼夜温度变化; 3)顺风的高斯色散。这些因素的组合可能已经产生了各种交通-小气候相互作用,这些相互作用对近路黑碳运输产生了重大影响。

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  • 来源
    《Atmospheric environment》 |2013年第12期|204-215|共12页
  • 作者单位

    University of Cincinnati, Department of Biomedical, Chemical, and Environmental Engineering, College of Engineering and Applied Science, P.O. Box 210012, Cincinnati, OH 45221-0012, USA;

    University of Cincinnati, Department of Biomedical, Chemical, and Environmental Engineering, College of Engineering and Applied Science, P.O. Box 210012, Cincinnati, OH 45221-0012, USA;

    U.S. Center for Disease Control, National Institute of Occupational Safety and Health, 5555 Ridge Avenue, Cincinnati, OH 45213, USA;

    US EPA Office of Research and Development, National Risk Management Research Laboratory, Research Triangle Park, NC 27711, USA;

    US EPA Office of Research and Development, National Risk Management Research Laboratory, 26W Martin Luther King Dr., Cincinnati, OH 45268, USA;

    US EPA Office of Research and Development, National Risk Management Research Laboratory, 26W Martin Luther King Dr., Cincinnati, OH 45268, USA;

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

    Black carbon; On-road traffic emission; Gaussian dispersion; Near-road transport; Climate change;

    机译:黑炭;道路交通排放;高斯色散近路运输;气候变化;

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