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Quantifying Urban Spatial Variations of Anthropogenic VOC Concentrations and Source Contributions with a Mobile Sampling Platform

机译:使用移动采样平台量化人为挥发性有机化合物浓度和源贡献的城市空间变化

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摘要

Volatile organic compounds (VOCs) are important atmospheric constituents because they contribute to formation of ozone and secondary aerosols, and because some VOCs are toxic air pollutants. We measured concentrations of a suite of anthropogenic VOCs during summer and winter at 70 locations representing different microenvironments around Pittsburgh, PA. The sampling sites were classified both by land use (e.g., high versus low traffic) and grouped based on geographic similarity and proximity. There was roughly a factor of two variation in both total VOC and single-ring aromatic VOC concentrations across the site groups. Concentrations were roughly 25% higher in winter than summer. Source apportionment with positive matrix factorization reveals that the major VOC sources are gasoline vehicles, solvent evaporation, diesel vehicles, and two factors attributed to industrial emissions. While we expected to observe significant spatial variability in the source impacts across the sampling domain, we instead found that source impacts were relatively homogeneous.
机译:挥发性有机化合物(VOC)是重要的大气成分,因为它们有助于形成臭氧和二次气溶胶,并且因为某些VOC是有毒的空气污染物。在夏季和冬季,我们在代表宾夕法尼亚州匹兹堡不同微环境的70个地点测量了一组人为挥发性有机化合物的浓度。根据土地用途(例如,高流量与低流量)对采样地点进行分类,并根据地理相似度和邻近度对其进行分组。整个站点组中的总VOC和单环芳烃VOC浓度大约有两个变化。冬季的浓度比夏季高约25%。具有正矩阵分解的源分配显示,VOC的主要来源是汽油车,溶剂蒸发,柴油车和两个归因于工业排放的因素。虽然我们期望在整个采样域中观察到源影响的显着空间变异性,但相反,我们发现源影响相对均匀。

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