HR: 1330h
AN: A22C-1079 [PDF]
TI: Siberian Biomass Burning Plumes Across the Pacific: Aircraft Observations in the Pacific
Northwest
AU: * Bertschi, I
EM: isaacpb@u.washington.edu
AF: University of Washington Bothell, Interdisciplinary Arts and Sciences, Bothell, WA 98011 United States
AU: Jaffe, D
EM: djaffe@u.washington.edu
AF: University of Washington Bothell, Interdisciplinary Arts and Sciences, Bothell, WA 98011 United States
AB:
During the summer of 2003, we employed a small research aircraft to collect vertical profiles of O3, CO, and total aerosol
scattering in the 0 to 6 km column along the northwestern coastline of Washington State. Surface observations were also made
and are discussed in the presentation by Jaffe et al. We conducted nine research flights between May 27 and August 5 and
frequently observed airmasses with highly correlated enhancements of O3, CO, and aerosol scattering, especially the flights
on June 2nd and August 5th. The most polluted airmass was observed on June 2, when absolute levels of O3, CO, and the
aerosol scattering coefficient (green) exceeded 100 ppbv, 200 ppbv, and 130 Mm-1, respectively. The Del(O3)/Del(CO) and
Del(scattering)/Del(CO) values (0.40 ppbv/ppbv and 1.25 Mm-1/ ppbv, respectively) observed during this episode are similar
to our previous observations of Asian boreal fire emissions transported to the Northeast Pacific during May 2002. Subsequent
analyses of back-trajectories (NOAA Hysplit4), aerosol forecasting models (NAAPS/NOGAPS), and satellite images (NASA's TERRA
MODIS/AQUA, TOMS) indicate that the June 2nd and August 5th events were primarily due to the long-range transport of
Siberian boreal fire emissions.
The summer of 2003 appears to be exceptional in terms of the amount of Siberian biomass burning. Our observations of the
variability of background O3 in the 0-6 km column during the summer of 2003 are similar to O3-sonde data collected in
Northern California from 1995 through 2002. These results suggest that transport of Siberian biomass burning emissions is an
important component of the background O3 variability during summer along the west coast of the U.S.
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