ozone loss in the lower stratosphere over the United States in 1992–1993: Evidence for heterogeneous chemistry on the Pinatubo aerosol
- 1 January 1994
- journal article
- Published by American Geophysical Union (AGU) in Geophysical Research Letters
- Vol. 21 (1) , 65-68
- https://doi.org/10.1029/93gl02526
Abstract
Ozone profiles obtained at Boulder, Colorado and Wallops Island, Virginia indicate that ozone was about 25% below normal during the winter and spring of 1992–93 in the 12–22 km region. This large ozone reduction in the lower stratosphere, though sometimes partially compensated by higher than normal ozone above 24 km, was responsible for the low total column ozone values observed across the United States during this period. Normal temperatures throughout the low ozone region suggest that transport‐related effects are probably not the most important cause of the ozone deficits. The region of low ozone at Boulder corresponds closely with the location of the enhanced H2SO4/H2O aerosol from the Pinatubo eruption of 1991 as measured near Boulder and at Laramie, Wyoming. Trajectory analyses suggest that except at low altitudes in spring, air parcels on the days of the ozone measurements generally arrived at Boulder from higher latitude, although seldom higher than 60°N, and hence may have been subjected to heterogeneous chemical processing on the surface of Pinatubo aerosol droplets resulting in chlorine‐catalyzed ozone destruction, a process which is believed to be more effective under the lower winter temperatures and sunlight levels of higher latitudes.This publication has 20 references indexed in Scilit:
- Heterogeneous reactions in sulfuric acid aerosols: A framework for model calculationsJournal of Geophysical Research: Atmospheres, 1994
- Balloonborne measurements of Pinatubo aerosol during 1991 and 1992 at 41°N: Vertical profiles, size distribution, and volatilityGeophysical Research Letters, 1993
- Record low total ozone during northern winters of 1992 and 1993Geophysical Research Letters, 1993
- Record Low Global Ozone in 1992Science, 1993
- Role of sulphur photochemistry in tropical ozone changes after the eruption of Mount PinatuboNature, 1993
- Impact of heterogeneous chemistry on model predictions of ozone changesJournal of Geophysical Research: Atmospheres, 1992
- An analysis of 5-day midtropospheric flow patterns for the South Pole: 1985-1989Tellus B: Chemical and Physical Meteorology, 1992
- Mount Pinatubo Aerosols, Chlorofluorocarbons, and Ozone DepletionScience, 1992
- Observations of reduced ozone concentrations in the tropical stratosphere after the eruption of Mt. PinatuboGeophysical Research Letters, 1992
- Ozone destruction through heterogeneous chemistry following the eruption of El ChichónJournal of Geophysical Research: Atmospheres, 1989