What Causes the Springtime Tropospheric Ozone Maximum over Northeast Asia?

被引:0
作者
Jae H.KIM [1 ]
Hyunjin LEE [1 ]
机构
[1] Department of Atmospheric Science,Pusan National University
关键词
tropospheric ozone; photochemistry; stratospheric intrusion; jet stream activity; trajectory;
D O I
暂无
中图分类号
P402 [大气化学];
学科分类号
070602 ;
摘要
Scientists have long debated the relative importance of tropospheric photochemical production versus stratospheric influx as causes of the springtime tropospheric ozone maximum over northern mid-latitudes. This paper investigates whether or not stratospheric intrusion and photochemistry play a significant role in the springtime ozone maximum over Northeast Asia,where ozone measurements are sparse.We examine how tropospheric ozone seasonalities over Naha(26°N,128°E),Kagoshima(31°N,131°E),and Pohang(36°N,129°E),which are located on the same meridional line,are related to the timing and location of the jet stream.The ozone seasonality shows a gradual increase from January to the maximum ozone month,which corresponds to April at Naha,May at Kagoshima,and June at Pohang.In order to examine the occurrence of stratospheric intrusion,we analyze a correlation between jet stream activity and tropospheric ozone seasonality.From these analyses,we did not find any favorable evidence supporting the hypothesis that the springtime enhancement may result from stratospheric intrusion.According to trajectory analysis for vertical and horizontal origins of the airmass,a gradual increasing tendency in ozone amounts from January until the onset of monsoon was similar to the increasing ozone formation tendency from winter to spring over China’s mainland,which has been observed during the build-up of tropospheric ozone over Central Europe in the winter-spring transition period due to photochemistry.Overall,the analyses suggest that photochemistry is the most important contributor to observed ozone seasonality over Northeast Asia.
引用
收藏
页码:543 / 551
页数:9
相关论文
共 11 条
  • [1] The Characteristics of Tropospheric Ozone Seasonality Observed from Ozone Soundings at Pohang, Korea[J] . Jae H. Kim,H. J. Lee,S. H. Lee.Environmental Monitoring and Assessment . 2006 (1)
  • [2] The East Asian summer monsoon: an overview[J] . Ding Yihui,Johnny C. L. Chan.Meteorology and Atmospheric Physics . 2005 (1-4)
  • [3] Why does surface ozone peak in summertime at Waliguan?
    Zhu, B
    Akimoto, H
    Wang, Z
    Sudo, K
    Tang, J
    Uno, I
    [J]. GEOPHYSICAL RESEARCH LETTERS, 2004, 31 (17) : L171041 - 4
  • [4] Some characteristics of ozone profiles above Hong Kong
    Leung, YK
    Chang, WL
    Chan, YW
    [J]. METEOROLOGY AND ATMOSPHERIC PHYSICS, 2004, 87 (04) : 279 - 291
  • [5] A review of the observations and origins of the spring ozone maximum
    Monks, PS
    [J]. ATMOSPHERIC ENVIRONMENT, 2000, 34 (21) : 3545 - 3561
  • [6] Regional and Global Tropopause Fold Occurrence and Related Ozone Flux Across the Tropopause[J] . M. Beekmann,G. Ancellet,S. Blonsky,D. De Muer,A. Ebel,H. Elbern,J. Hendricks,J. Kowol,C. Mancier,R. Sladkovic,H. G. J. Smit,P. Speth,T. Trickl,Ph. Van Haver.Journal of Atmospheric Chemistry . 1997 (1)
  • [7] Segregation and Interpretation of Ozone and Carbon Monoxide Measurements by Air Mass Origin at the TOR Station Mace Head, Ireland from 1987 to 1995[J] . P. G. Simmonds,S. Seuring,G. Nickless,R. G. Derwent.Journal of Atmospheric Chemistry . 1997 (1)
  • [8] On the Spatial Distribution and Seasonal Variation of Lower-Troposphere Ozone over Europe[J] . H. E. Scheel,H. Areskoug,H. Geiss,B. Gomiscek,K. Granby,L. Haszpra,L. Klasinc,D. Kley,T. Laurila,A. Lindskog,M. Roemer,R. Schmitt,P. Simmonds,S. Solberg,G. Toupance.Journal of Atmospheric Chemistry . 1997 (1)
  • [9] Meteorology and photochemical air pollution in Southern Europe: Experimental results from EC research projects[J] . M. Millán,R. Salvador,E. Mantilla.Atmospheric Environment . 1996 (12)
  • [10] Stratosphere–troposphere Exchange .2 Holton,J. R.,Haynes,P. H.,McIntyre,M. E.,Douglass,A. R.,Rood,R. B.,Pfister,L. Reviews in Geophysics . 1995