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Diurnal variations of BrONO2 observed by MIPAS-B at midlatitudes and in the Arctic

机译:MIPAS-B在中际和北极地区观察的Brono2的昼夜变化

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The first stratospheric measurements of the diurnal variation in the inorganic bromine?(Bry) reservoir species BrONO2 around sunrise and sunset are reported. Arctic flights of the balloon-borne Michelson Interferometer for Passive Atmospheric Sounding?(MIPAS-B) were carried out from Kiruna (68°?N, Sweden) in January?2010 and March?2011 inside the stratospheric polar vortices where diurnal variations of BrONO2 around sunrise have been observed. High nighttime BrONO2 volume mixing ratios of up to 21?pptv (parts per trillion by volume) were detected in late winter?2011 in the absence of polar stratospheric clouds?(PSCs). In contrast, the amount of measured BrONO2 was significantly lower in January?2010 due to low available NO2 amounts (for the build-up of BrONO2), the heterogeneous destruction of BrONO2 on PSC particles, and the gas-phase interaction of BrO (the source to form BrONO2) with ClO. A further balloon flight took place at midlatitudes from Timmins (49°?N, Canada) in September?2014. Mean BrONO2 mixing ratios of 22?pptv were observed after sunset in the altitude region between 21?and 29?km. Measurements are compared and discussed with the results of a multi-year simulation performed with the chemistry climate model ECHAM5/MESSy Atmospheric Chemistry?(EMAC). The calculated temporal variation in BrONO2 largely reproduces the balloon-borne observations. Using the nighttime simulated ratio between BrONO2 and Bry, the amount of Bry observed by MIPAS-B was estimated to be about 2125?pptv in the lower stratosphere.
机译:报道了日出和日落周围无机溴的昼夜变化的第一次划分变化的第一次曲线尺度测量。 Balloon-Borne Michelson Tenerfer仪为被动大气发出声音的北极航班?(MIPAS-B)于1月份(MIPAS-B)在1月份(68°?N,瑞典)进行了2010年和3月?2011年在地段极性漩涡内部,Brono2的昼夜变化已经观察到日出周围。在冬季晚期冬季期间检测到高达21的高达21的夜间Brono2体积混合比率在没有极地平流层云的情况下,在冬季冬季(PSC)的缺失,检测到高达21°?PPTV(每兆体积零件)。相比之下,1月份测量的Brono2的量在1月份的情况下显着降低了,由于低可用NO2量(用于Brono2的积聚),Brono2对PSC颗粒的异质破坏,以及兄弟的气相相互作用源头与clo形成brono2)。在9月份的Timmins(49°?N,Canada)在中间阶段,进一步的气球飞行发生了2014年。平均Brono2混合比例为22〜pptv在21之间的海拔地区的日落后观察到22°?和29 km。比较测量和讨论的是,用化学气候模型ECHAM5 /凌乱大气化学进行了多年模拟的结果?(EMAC)。 Brono2的计算时间变化在很大程度上再现了球囊的观测结果。使用Brono2和Bry之间的夜间模拟比,MIPA-B观察到的Bry的量估计为约2125℃较低的平流层。
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