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Potential sources of reactive gases for the West of Moscow Oblast

机译:莫斯科州以西的反应气体潜在来源

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A.M. Obukhov Institute of Atmospheric Physics (OIAP) of Russian Academy of Sciences (RAS) performs regular measurements of the integral tropospheric content of such reactive gases as nitrogen dioxide (NO_2) and formaldehyde (HCHO) by the MAX-DOAS method at the Zvenigorod Scientific Station (ZSS) since 2009. For each average hourly gas contents in the troposphere at ZSS in 2009-2017 the backward trajectories of the air particles were calculated using the trajectory model NOAA HYSPLIT_4 and the grid meteorological data NOAA NCEP GDAS0p5. Using the backward trajectories, the PSCF (potential source contribution function) method was used to calculate detailed (resolution 0.1°×0.1°) fields of probability of the transport to ZSS of air masses which are extremely polluted with formaldehyde and nitrogen dioxide from a potential source. Similarly, using the CWT (concentration weighted trajectory) method, detailed fields of the average contribution of the potential source to the tropospheric NO_2 and HCHO contents at ZSS were reconstructed. The relative influence of the Moscow megacity and the industrialized region in the east of the Moscow Oblast on the contamination of the lower troposphere of the Western Moscow Oblast with nitrogen dioxide and formaldehyde is specified.
机译:是。 Obukhov大气法研究所(RAS)的大气(OIAP)(RAS)通过Zvenigorod Scientific Station的Max-Doas方法进行定期测量这种反应气体作为氮二氧化氮(NO_2)和甲醛(HCHO)的整体对流层含量(ZSS)自2009年以来。对于2009 - 2017年ZSS的对流层中的每个平均小时气体内容,使用轨迹模型NOAA HYSPLIT_4和网格气象数据NOAA NCEP GDAS0P5计算空气颗粒的后轨。使用后向轨迹,使用PSCF(潜在源贡献功能)方法来计算传输到空气质量ZS的概率的详细(分辨率0.1°×0.1°)区域,这与诸如甲醛和二氧化氮的甲醛非常污染来源。类似地,使用CWT(浓度加权轨迹)方法,重建了潜在源与ZSS的对流层NO_2和HCHO含量的平均贡献的详细领域。指定了莫斯科巨大与莫斯科雄性东部的相对影响与莫斯科雄性污染与二氧化氮和甲醛的西方莫斯科雄性较低层污染。

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