Modeling study of ozone seasonal cycle in lower troposphere over east Asia

被引:94
作者
Li, Jie
Wang, Zifa [1 ]
Akimoto, Hajime
Gao, Chao
Pochanart, Pakpong
Wang, Xiquan
机构
[1] Chinese Acad Sci, Nansen Zhu Int Res Ctr, State Key Lab Atmospher Boundary Layer Phys & Atm, Inst Atmospher Phys, Beijing, Peoples R China
[2] Chinese Acad Sci, Grad Univ, Beijing, Peoples R China
[3] Frontier Res Ctr Global Change, Japan Agcy Marine Earth Sci & Technol, Yokohama, Kanagawa, Japan
关键词
D O I
10.1029/2006JD008209
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
On the basis of three mountain sites ( Mount Tai, Hua and Huang) newly founded in east-central China and several other sites from the Acid Deposition Monitoring Network in east Asia ( EANET) and WMO World Data Centre for Greenhouse Gases ( WDCGG), we investigate seasonal cycle of ozone over east Asia and its budgets in east-central China by using a regional chemical transport model ( NAQPMS). The observations show a striking ozone pattern of two sharp peaks in May-June and September-October at three mountain sites in east-central China which are higher than those observed at other mountain sites in Europe and North America. Ozone budgets analysis by the model confirms that maximum of net photochemical productions reaches 31.8, 15.1, and 11.4 ppbv/d at Mount Tai, Hua, and Huang, respectively. The net photochemical production dominates the formation of ozone maximums at Mount Tai and Hua in June, and the importing transport also plays a comparable importance at Mount Huang. In comparison with those in the western North Pacific, east-central China shows stronger net photochemical productions, which are comparable to anthropogenic sources regions in Europe and North America.
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页数:15
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共 66 条
[1]   Global air quality and pollution [J].
Akimoto, H .
SCIENCE, 2003, 302 (5651) :1716-1719
[2]   Top-down estimates of global CO sources using MOPITT measurements [J].
Arellano, AF ;
Kasibhatla, PS ;
Giglio, L ;
van der Werf, GR ;
Randerson, JT .
GEOPHYSICAL RESEARCH LETTERS, 2004, 31 (01) :L011041-5
[3]  
Bey I., 2001, J GEOPHYS RES, V106, p23,073
[4]  
Brasseur GP, 1999, TOP ENVIRONM CHEM, P1
[5]   DESIGN ARTIFACTS IN EULERIAN AIR-QUALITY MODELS - EVALUATION OF THE EFFECTS OF LAYER THICKNESS AND VERTICAL PROFILE CORRECTION ON SURFACE OZONE CONCENTRATIONS [J].
BYUN, DW ;
DENNIS, R .
ATMOSPHERIC ENVIRONMENT, 1995, 29 (01) :105-126
[6]   The influence of south foehn on the ozone mixing ratios at the high alpine site Arosa [J].
Campana, M ;
Li, YS ;
Staehelin, J ;
Prevot, ASH ;
Bonasoni, P ;
Loetscher, H ;
Peter, T .
ATMOSPHERIC ENVIRONMENT, 2005, 39 (16) :2945-2955
[7]   Condensed atmospheric photooxidation mechanisms for isoprene [J].
Carter, WPL .
ATMOSPHERIC ENVIRONMENT, 1996, 30 (24) :4275-4290
[8]   Observational study of ozone pollution at a rural site in the Yangtze Delta of China [J].
Cheung, VTF ;
Wang, T .
ATMOSPHERIC ENVIRONMENT, 2001, 35 (29) :4947-4958
[9]  
CONNOR FM, 2004, ATMOS CHEM PHYS DISC, V4, P991
[10]   On the background photochemistry of tropospheric ozone [J].
Crutzen, PJ ;
Lawrence, MG ;
Pöschl, U .
TELLUS SERIES A-DYNAMIC METEOROLOGY AND OCEANOGRAPHY, 1999, 51 (01) :123-146