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紧邻主要道路的城市有机气溶胶中 OM/OC 比值的变化。

Variations in the OM/OC ratio of urban organic aerosol next to a major roadway.

机构信息

Sonoma Technology, Inc., Petaluma, California 94954, USA.

Atmospheric Science Department, Colorado State University, Fort Collins, Colorado, USA.

出版信息

J Air Waste Manag Assoc. 2013 Dec;63(12):1422-33. doi: 10.1080/10962247.2013.826602.

Abstract

Understanding the organic matter/organic carbon (OM/OC) ratio in ambient particulate matter (PM) is critical to achieve mass closure in routine PM measurements, to assess the sources of and the degree of chemical processing organic aerosol particles have undergone, and to relate ambient pollutant concentrations to health effects. Of particular interest is how the OM/OC ratio varies in the urban environment, where strong spatial and temporal gradients in source emissions are common. We provide results of near-roadway high-time-resolution PM1 OM concentration and OM/OC ratio observations during January 2008 at Fyfe Elementary School in Las Vegas, NV, 18 m from the U.S. 95 freeway soundwall, measured with an Aerodyne high-resolution time-of-flight aerosol mass spectrometer (HR-AMS). The average OM/OC ratio was 1.54 (+/- 0.20 standard deviation), typical of environments with a low amount of secondary aerosol formation. The 2-min average OM/OC ratios varied between 1.17 and 2.67, and daily average OM/OC ratios varied between 1.44 and 1.73. The ratios were highest during periods of low OM concentrations and generally low during periods of high OM concentrations. OM/OC ratios were low (1.52 +/- 0.14, on average) during the morning rush hour (average OM = 2.4 microg/m3), when vehicular emissions dominate this near-road measurement site. The ratios were slightly lower (1.46 +/- 0.10) in the evening (average OM = 6.3 microg/m3), when a combination of vehicular and fresh residential biomass burning emissions was typically present during times with temperature inversions. The hourly averaged OM/OC ratio peaked at 1.66 at midday. OM concentrations were similar regardless of whether the monitoring site was downwind or upwind of the adjacent freeway throughout the day, though they were higher during stagnant conditions (wind speed < 0.5 m/sec). The OM/OC ratio generally varied more with time of day than with wind direction and speed.

摘要

了解环境颗粒物(PM)中的有机物质/有机碳(OM/OC)比值对于实现常规 PM 测量中的质量闭合、评估有机气溶胶颗粒的来源和化学处理程度以及将环境污染物浓度与健康效应联系起来至关重要。特别感兴趣的是 OM/OC 比值在城市环境中的变化情况,在城市环境中,源排放的空间和时间梯度通常很强。我们提供了 2008 年 1 月在内华达州拉斯维加斯的 Fyfe 小学(距离美国 95 号州际公路隔音墙 18 米)进行的近路高水平时间分辨率 PM1 OM 浓度和 OM/OC 比值观测结果,使用 Aerodyne 高分辨率飞行时间气溶胶质谱仪(HR-AMS)进行测量。平均 OM/OC 比值为 1.54(+/-0.20 标准偏差),典型的环境中二次气溶胶形成量较低。2 分钟平均 OM/OC 比值在 1.17 和 2.67 之间变化,日平均 OM/OC 比值在 1.44 和 1.73 之间变化。在 OM 浓度较低的时期,比值较高,而在 OM 浓度较高的时期,比值通常较低。在早晨高峰时间(平均 OM = 2.4 μg/m3),车辆排放为主导这个近路测量点时,OM/OC 比值较低(平均为 1.52 +/- 0.14)。在傍晚(平均 OM = 6.3 μg/m3),当温度逆温时,通常会出现车辆和新的居民生物质燃烧排放的组合,比值略低(1.46 +/- 0.10)。中午时分,每小时平均 OM/OC 比值达到 1.66 的峰值。无论监测点在一天中的下风还是上风方向,OM 浓度都相似,尽管在静止条件下(风速<0.5 m/sec)浓度较高。OM/OC 比值通常随时间变化比随风向和风速变化更大。

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