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Reactive nitrogen partitioning and its relationship to winter ozone events in Utah

机译:犹他州冬季臭氧事件的反应性氮分区及其关系

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High wintertime ozone levels have been observed in the Uintah Basin, Utah, a sparsely populated rural region with intensive oil and gas operations. The reactive nitrogen budget plays an important role in tropospheric ozone formation. Measurements were taken during three field campaigns in the winters of 2012, 2013 and 2014, which experienced varying climatic conditions. Average concentrations of ozone and total reactive nitrogen were observed to be 2.5 times higher in 2013 than 2012, with 2014 an intermediate year in most respects. However, photochemically active NOx (NO?+?NO2) remained remarkably similar all three years. Nitric acid comprised roughly half of NOz (?≡??NOy???NOx) in 2013, with nighttime nitric acid formation through heterogeneous uptake of N2O5 contributing approximately 6 times more than daytime formation. In 2012, N2O5 and ClNO2 were larger components of NOz relative to HNO3. The nighttime N2O5 lifetime between the high-ozone year 2013 and the low-ozone year 2012 is lower by a factor of 2.6, and much of this is due to higher aerosol surface area in the high-ozone year of 2013. A box-model simulation supports the importance of nighttime chemistry on the reactive nitrogen budget, showing a large sensitivity of NOx and ozone concentrations to nighttime processes.
机译:在Uintah盆地,犹他州,犹他州的稀疏性农村地区,具有密集的石油和天然气作业,已经观察到高冬季臭氧水平。反应性氮预算在对流层臭氧层形成中起重要作用。 2012年冬季的三场竞选期间采取了测量,2012年和2014年的冬季,其经历了不同的气候条件。臭氧的平均浓度和总反应性氮的平均浓度在2013年比2012年比2012年更高的2.5倍,2014年中级在大多数方面中级。然而,光化学上的活性NOx(NO?+?NO2)仍然存在显着相似三年。在2013年,硝酸大约是NOZ(β0noy诺克斯的NOY)的一半,夜间硝酸形成通过非均相摄取的N2O5,贡献比白天形成大约6倍。 2012年,N 2 O 5和ClNO2相对于HNO3是较大的NOZ组分。高臭氧年度2013年和低臭氧年度2012年夜间N2O5寿命较低了2.6倍,其中大部分是由于2013年高臭氧的气溶胶表面积较高。一个盒式模型模拟支持夜间化学对反应性氮预算的重要性,显示NOx和臭氧浓度的大敏感性至夜间过程。
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