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Night-time measurements of HOx during the RONOCO project and analysis of the sources of HO2

机译:Ronoco项目期间HOX的夜间测量和HO2来源分析

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Measurements of the radical species OH and HO2 were made using the fluorescence assay by gas expansion (FAGE) technique during a series of night-time and daytime flights over the UK in summer 2010 and winter 2011. OH was not detected above the instrument's 1 limit of detection during any of the night-time flights or during the winter daytime flights, placing upper limits on [OH] of 1.8 × 106 molecule cm?3 and 6.4 × 105 molecule cm?3 for the summer and winter flights, respectively. HO2 reached a maximum concentration of 3.2 × 108 molecule cm?3 (13.6 pptv) during a night-time flight on 20 July 2010, when the highest concentrations of NO3 and O3 were also recorded. An analysis of the rates of reaction of OH, O3, and the NO3 radical with measured alkenes indicates that the summer night-time troposphere can be as important for the processing of volatile organic compounds (VOCs) as the winter daytime troposphere. An analysis of the instantaneous rate of production of HO2 from the reactions of O3 and NO3 with alkenes has shown that, on average, reactions of NO3 dominated the night-time production of HO2 during summer and reactions of O3 dominated the night-time HO2 production during winter.
机译:在2010年夏季和2011年夏季,在英国的一系列夜间和白天航班期间,使用气体膨胀(FAGE)技术使用荧光测定来进行自由基物质OH和HO2。哦,在仪器的1限度之上没有检测到OH在任何夜间航班或冬季日间航班期间检测,分别放置在夏季和冬季航班的[OH]的上限为1.8×106分子CMβ3和6.4×105分子CM?3。何时在2010年7月20日在2010年7月20日夜间飞行期间达到了3.2×108分子Cm?3(13.6 pptv)的最大浓度,当时还记录了最高浓度的NO 3和O3。用测量的烯烃的OH,O3和NO3基团反应的分析表明,夏季夜间对流层可能对冬季白天对流层加工挥发性有机化合物(VOC)的处理。 HO2与烯烃反应的瞬时生产瞬时产生速率分析表明,平均而言,NO3的反应在夏季期间夜间生产HO2和O3的反应占夜间HO2生产在冬天。
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