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首页> 外文期刊>Atmospheric Measurement Techniques >Long-term variability of aerosol optical thickness in Eastern Europe over 2001-2014 according to the measurements at the Moscow MSU MO AERONET site with additional cloud and NO2 correction
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Long-term variability of aerosol optical thickness in Eastern Europe over 2001-2014 according to the measurements at the Moscow MSU MO AERONET site with additional cloud and NO2 correction

机译:根据莫斯科MSU MO航空网站点的测量以及2001年至2014年东欧的气溶胶光学厚度的长期变化,并进行了附加的云和NO2校正

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The atmospheric aerosol properties were obtained within the framework of the AERONET program at the Moscow State University Meteorological Observatory (Moscow MSU MO) over the 2001-2014 period. The quality data control has revealed the necessity of additional cloud screening and NO2 correction. The application of additional cloud screening according to hourly visual cloud observations provides a decrease in monthly average aerosol optical thickness (AOT) at 500 nm of up to 0.03 compared with the standard data set. We also show that the additional NO2 correction of the AERONET version 2 data is needed in large megalopolis, like Moscow, with 12 million residents and NOx emission rates of about 100 kt yr(-1). According to the developed method, we estimated monthly mean NO2 content, which provides an additional decrease of 0.01 for AOT at 340 nm, and of about 0.015 - for AOT at 380 and 440 nm. The ratios of NO2 optical thickness to AOT at 380 and 440 nm are about 5-6% in summer and reach 15-20% in winter when both factors have similar effects on UV irradiance. Seasonal cycle of AOT at 500 nm is characterized by a noticeable summer and spring maxima, and a minimum in winter conditions, changing from 0.08 in December and January up to 0.3 in August. The application of the additional cloud screening removes a local AOT maximum in February. Statistically significant negative trends in annual AOT for UV and mid-visible spectral range have been obtained both for average and 50% quantile values. The pronounced negative changes were observed in most months with the rate of about 1-5% yr(-1) and could be attributed to the negative trends in emissions (E) of different aerosol precursors of about 135 Gg yr(-2) in E SO x, 54 Gg yr(-2) in E-NMVOC, and slight negative changes in NO x over the European part of Russia. No significant influence of natural factors on temporal AOT variations has been revealed.
机译:大气气溶胶特性是在2001年至2014年期间,在莫斯科国立大学气象台(Moscow MSU MO)的AERONET计划框架内获得的。质量数据控制显示了额外的云筛查和NO2校正的必要性。与标准数据集相比,根据每小时的可视云观测值进行的附加云筛查可以使500 nm处的每月平均气溶胶光学厚度(AOT)降低多达0.03。我们还表明,在拥有1200万居民和大约100 kt yr(-1)的NOx排放量的大型大都市(如莫斯科)中,需要对AERONET版本2数据进行额外的NO2校正。根据开发的方法,我们估算了每月的平均NO2含量,这对于340 nm的AOT分别减少了0.01,而对于380和440 nm的AOT减少了约0.015-。当这两个因素对紫外线辐射的影响相似时,夏季的380和440 nm处NO2光学厚度与AOT的比率约为5-6%,而冬季则达到15-20%。在500 nm处,AOT的季节性周期具有明显的夏季和春季最大值,而在冬季条件下则是最小值,从12月和1月的0.08更改为8月的0.3。附加云筛选的应用消除了2月的本地AOT最大值。对于平均值和50%的分位数,已经获得了紫外线和中可见光谱范围的年度AOT的统计显着负趋势。在大多数月份中观察到了显着的负变化,变化率约为1-5%yr(-1),这可能归因于2004年约135 Gg yr(-2)的不同气溶胶前体的排放(E)呈负趋势。 E SO x,E-NMVOC中的含量为54 Gg yr(-2),并且在俄罗斯的欧洲部分NOx略有负面变化。没有发现自然因素对时空AOT变化的显着影响。

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