HR: 1330h
AN: A52C-0804 [PDF]
TI: Trajectory Assisted Analysis of Long-Term Ozonesonde Data Over N. America: A Comparison With Europe and
East Asia
AU: * Naja, M K
EM: manish@jamstec.go.jp
AF: Frontier Research System for Global Change, 3173-25 Showa-machi, Kanazawa-ku, Yokohama, Kan 2360001
Japan
AU: Akimoto, H
EM: akimoto@jamstec.go.jp
AF: Frontier Research System for Global Change, 3173-25 Showa-machi, Kanazawa-ku, Yokohama, Kan 2360001
Japan
AB:
Changes in tropospheric ozone over one continent are controlled by photochemistry and meteorology within that continent and
also by long-range transport from other continents. Knowledge of background ozone concentration over individual continent
plays an important role in such studies. Therefore it is important to establish a suitable and versatile methodology, which
could estimate the changes in background ozone at one continent and also estimate the contribution of regional pollutions
from other continents. In this direction, we had successfully analyzed long-term ozonesonde data from Europe
(Hohenpeissenberg, and Payerne) and Japan (Sapporo, Tateno, Kagoshima, and Naha) using residence time and sectoral
classification, which were deduced from backward isentropic trajectories. Here, we present recently analyzed ozonesonde data
from Boulder (40.0N, 105.0W, 1689m), Wallops (38.0N, 75.5W, 13m) and Hilo (19.7N, 155.1E, 11m) for the boundary layer (BL)
and lower troposphere (LT). We have classified two types of ozone namely, regionally polluted ozone and background ozone.
Regionally polluted ozone shows similar seasonal variation over Wallops and Boulder with maximum ozone in late spring and
early summer. Background ozone levels in USA boundary layer are estimated to be lesser (by 10 ppbv), when compared with
regionally polluted ozone levels over USA. Surprisingly, background (pacific air-mass) ozone levels over Hilo, USA are higher
than the ozone levels for similar type of air-masses over Japanese sites. Unlike over Europe, ozone levels over USA do not
show very significant correlation with residence time of air-masses. Long-term changes in regionally polluted ozone over
Wallops and Boulder are nearly similar and appear to show some consistency with NOx emissions over USA. More results will be
discussed during presentation.
DE: 0300 ATMOSPHERIC COMPOSITION AND STRUCTURE
DE: 0345 Pollution--urban and regional (0305)
DE: 0365 Troposphere--composition and chemistry
DE: 0368 Troposphere--constituent transport and chemistry
SC: Atmospheric Sciences [A]
MN: 2003 Fall Meeting