HR: 08:00h
AN: A31E-01 [Abstracts]
TI: Detecting the Recovery of the Antarctic Ozone Hole
AU: * Newman, P A
EM: Paul.A.Newman@nasa.gov
AF: NASA, Goddard Space Flight Cent., Greenbelt, MD 20771, United States
AU: Nash, E R
EM: nash@code916.gsfc.nasa.gov
AF: NASA, Goddard Space Flight Cent., Greenbelt, MD 20771, United States
AU: Kawa, S R
EM: kawa@code916.gsfc.nasa.gov
AF: NASA, Goddard Space Flight Cent., Greenbelt, MD 20771, United States
AB:
The Antarctic ozone hole develops each year and
culminates by early Spring. Antarctic ozone values have been monitored
since 1979 using satellite observations from the TOMS instrument. The
severity of the hole has been assessed from TOMS using the minimum
total ozone value from the October monthly mean (depth of the hole) and
by calculating the average size during the September-October
period. Ozone is mainly destroyed by halogen catalytic cycles, and
these losses are modulated by temperature variations in the collar of
the polar lower stratospheric vortex. In this presentation, we show the
relationships of halogens and temperature to both the size and depth of
the hole. Because atmospheric halogen levels are responding to
international agreements that limit or phase out production, the amount
of halogens in the stratosphere should decrease over the next few
decades. Using projections of halogen levels combined with age-of-air
estimates, we find that the ozone hole is recovering at an extremely
slow rate and that large ozone holes will regularly recur over the next
2 decades. We will show estimates of both when the ozone hole will
begin to show first signs of recovery, and when the hole will fully
recover to pre-1980 levels.
DE: 0340 Middle atmosphere--composition and chemistry
SC: Atmospheric Sciences [A]
MN: 2004 AGU Fall Meeting