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Influence of oil and gas field operations on spatial and temporal distributions of atmospheric non-methane hydrocarbons and their effect on ozone formation in winter

机译:石油和天然气田径对大气非甲烷烃的空间和时间分布的影响及其对冬季臭氧形成的影响

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Emissions from oil and natural gas development during winter in the Upper Green River basin of Wyoming are known to drive episodic ozone (O3) production. Contrasting O3 distributions were observed in the winters of 2011 and 2012, with numerous episodes (hourly O3 85 ppbv) in 2011 compared to none in 2012. The lack of O3 episodes in 2012 coincided with a reduction in measured ambient levels of total non-methane hydrocarbons (NMHC). Measurements of speciated NMHC, and other air quality parameters, were performed to better understand emission sources and to determine which compounds are most active in promoting O3 formation. Positive matrix factorization (PMF) analyses of the data were carried out to help achieve these goals. PMF analyses revealed three contributing factors that were identified with different emission source types: factor 1, combustion/traffic; factor 2, fugitive natural gas; and factor 3, fugitive condensate. Compositional signatures of the three contributing factors were identified through comparison with independently derived emission source profiles. Fugitive emissions of natural gas and of condensate were the two principal emission source types for NMHC. A water treatment and recycling facility was found to be a significant source of NMHC that are abundant in condensate, in particular toluene and m+p-xylene. Emissions from water treatment have an influence upon peak O3 mixing ratios at downwind measurement sites.
机译:众所周知,冬季冬季冬季绿河流域的油气开发排放可令越穷臭氧(O3)生产。在2011年和2012年的冬季观察到对比度O3分布,2011年有许多集中发作(每小时O3 85 PPBV)。2012年没有缺乏O3发作的循环循环,减少了总非甲烷的测量环境水平碳氢化合物(NMHC)。对所指的NMHC和其他空气质量参数进行测量以更好地了解发射来源,并确定哪些化合物最活跃在促进O3形成方面。对数据的正矩阵分解(PMF)分析进行了分析,以帮助实现这些目标。 PMF分析揭示了用不同排放源类型确定的三种贡献因素:因子1,燃烧/流量;因子2,逃逸天然气;和因子3,逃逸凝结物。通过与独立衍生的排放源轮廓的比较来确定三种贡献因子的组成签名。天然气和缩合物的逃逸排放是NMHC的两个主要排放源类型。发现水处理和再循环设施是NMHC的重要来源,其在凝结物中丰富,特别是甲苯和M + P-二甲苯。水处理的排放对下行测量位点的峰值O3混合比具有影响。

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