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Measurement and Meteorological Analysis of ~7Be and ~(210)pb in Aerosol at Waliguan Observatory
作者姓名:郑向东  万国江  陈尊裕  汤洁
作者单位:Key Laboratory of Atmospheric Chemistry Chinese Academy of Meteorological Sciences,China Meteorological Administration,Beijing 100081,State Key Laboratory of Environment Geochemistry,Institute of Geochemistry,Chinese Academy of Sciences,Guiyang 550002,School of Environmental Science and Engineering,Sun Yat-sen University,Guangzhou 510080,Key Laboratory of Atmospheric Chemistry,Chinese Academy of Meteorological Sciences,China Meteorological Administration,Beijing 100081
摘    要:Beryllium-7(~7Be)and lead-210(~(210)pb)activities were measured from October 2002 to January 2004 at Waliguan Observatory(WO:36.287°N,100.898°E,3816 m a.s.l(above sea level)in northwest China.~7Be and ~(210)Pb activities are high with overall averages of 14.7±3.5 mBq m~(3)and 1.8±0.8 mBq m~(-3)respectively. For both ~7Be and ~(210)Pb,there are significant short-term and seasonal variations with a commonly low value in summer(May September)and a monthly maximum in april(for ~7Be)and in December(for~(210)Pb). The ratio of ~7Be/~(210)pb showed a broad maximum extending from April to July,coinciding with a seasonal peak in surface ozone(O_3).The seasonal cycles of ~7Be and ~(210)Pb activities were greatly influenced by precipitation and thermal dynamical conditions over the boundary layer,especially for ~(210)Pb.The vertical mixing process between the boundary layer and the aloft air modulates the variations of ~7Be and ~(210)pb at WO in summer.It is indicated that air mass had longer residence time and originated from higher altitudes at WO in the spring-summer time and the winter in 2003.During an event with extremely high weekly- averaged ~7Be concentration(24.8 mBq m~(-3))together with high O_3 levels and low water mixing ratio,we found that air masses had been convectively transported a long distance to WO from high latitude source regions in central Asia,where significant subsiding motions were observed.In another case with the extreme ~(210)pb activity of 5.7 mBq m~(-3)high CO_2 level and specific humidity(in winter),air masses had come from south China and north Indian regions where ~(222)Rn activities were high.This study,using ~7Be and ~(210)Pb as atmospheric tracers,has revealed that complex interactions of convective mixing from the upper troposphere and long-range transports exist at WO.

关 键 词:铍-7  铅-210  天文台  气象分析  气溶胶
收稿时间:21 March 2011

Measurement and meteorological analysis of 7Be and 210Pb in aerosol at Waliguan Observatory
Xiangdong Zheng,Guojiang Wan,Zunyu Chen,Jie Tang.Measurement and Meteorological Analysis of ~7Be and ~(210)pb in Aerosol at Waliguan Observatory[J].Advances in Atmospheric Sciences,2008,25(3):404-416.
Authors:Xiangdong Zheng  Guojiang Wan  Zunyu Chen  Jie Tang
Abstract:Beryllium-7 (7Be) and lead-210 (210Pb) activities were measured from October 2002 to January 2004 at Waliguan Observatory (WO: 36.287 N, 100.898 E, 3816 m a.s.l (above sea level) in northwest China. 7Be and 210Pb activities are high with overall averages of 14.7 3.5 mBq m-3 and 1.8 0.8 mBq m-3 respectively. For both 7Be and 210Pb, there are significant short-term and seasonal variations with a commonly low value in summer (May-September) and a monthly maximum in April (for 7Be) and in December (for 210Pb). The ratio of 7Be/210Pb showed a broad maximum extending from April to July, coinciding with a seasonal peak in surface ozone (O3). The seasonal cycles of 7Be and 210Pb activities were greatly influenced by precipitation and thermal dynamical conditions over the boundary layer, especially for 210Pb. The vertical mixing process between the boundary layer and the aloft air modulates the variations of 7Be and 210Pb at WO in summer. It is indicated that air mass had longer residence time and originated from higher altitudes at WO in the spring-summer time and the winter in 2003. During an event with extremely high weekly-averaged 7Be concentration (24.8 mBq m-3) together with high O3 levels and low water mixing ratio, we found that air masses had been convectively transported a long distance to WO from high latitude source regions in central Asia, where significant subsiding motions were observed. In another case with the extreme 210Pb activity of 5.7 mBq m-3 high CO2 level and specific humidity (in winter), air masses had come from south China and north Indian regions where 222Rn activities were high. This study, using 7Be and 210Pb as atmospheric tracers, has revealed that complex interactions of convective mixing from the upper troposphere and long-range transports exist at WO.
Keywords:7Be  210Pb  Waliguan Observatory
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