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Ultrafine particle size distributions near freeways: Effects ofdiffering wind directions on exposure

机译:高速公路附近的超细粒度分布:效果不同的风向暴露

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摘要

High ambient ultrafine particle (UFP) concentrations may play an important role in the adverse health effects associated with living near busy roadways. However, UFP size distributions change rapidly as vehicle emissions dilute and age. These size changes can influence UFP lung deposition rates and dose because deposition in the respiratory system is a strong function of particle size. Few studies to date have measured and characterized changes in near-road UFP size distributions in real-time, thus missing transient variations in size distribution due to short-term fluctuations in wind speed, direction, or particle dynamics. In this study we measured important wind direction effects on near-freeway UFP size distributions and gradients using a mobile platform with 5-s time resolution. Compared to more commonly measured perpendicular (downwind) conditions, parallel wind conditions appeared to promote formation of broader and larger size distributions of roughly one-half the particle concentration. Particles during more parallel wind conditions also changed less in size with downwind distance and the fraction of lung-deposited particle number was calculated to be 15% lower than for downwind conditions, giving a combined decrease of about 60%. In addition, a multivariate analysis of several variablesfound meteorology, particularly wind direction and temperature, to be importantin predicting UFP concentrations within 150 m of a freeway(R2 = 0.46, p = 0.014).
机译:高浓度的环境超细颗粒物(UFP)可能在繁忙的道路附近生活中对健康产生不利影响。但是,随着车辆排放物的稀释和老化,UFP的尺寸分布会迅速变化。这些尺寸变化会影响UFP肺的沉积速率和剂量,因为呼吸系统中的沉积是颗粒大小的重要函数。迄今为止,几乎没有研究能够实时测量和表征近路UFP尺寸分布的变化,因此由于风速,方向或粒子动力学的短期波动而缺少尺寸分布的瞬态变化。在这项研究中,我们使用具有5 s时间分辨率的移动平台,测量了风向对近高速公路UFP尺寸分布和梯度的重要影响。与更常用的垂直(顺风)条件相比,平行风条件似乎促进了颗粒浓度大约一半的更宽和更大尺寸分布的形成。在更平行的风条件下,颗粒随顺风距离的变化也较小,并且肺沉积颗粒数的分数比顺风条件下低15%,合计减少约60%。此外,对多个变量进行多变量分析发现气象学,尤其是风向和温度很重要预测高速公路150 m内的UFP浓度(R 2 = 0.46,p = 0.014)。

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