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Article Dans Une Revue Geophysical Research Letters Année : 2013

Lower tropospheric ozone at northern midlatitudes: Changing seasonal cycle

Résumé

At northern mid-latitudes the abundance of tropospheric O3 has increased by a factor of approximately 2 since the 1950s. The cause of this increase is generally attributed to increasing anthropogenic precursor emissions, but present chemical and transport models cannot quantitatively reproduce its magnitude. Here we show another manifestation of changes in O3 abundance - a shift of the seasonal cycle at northern mid-latitudes so that the observed peak concentrations now appear earlier in the year than in previous decades. The rate of this shift has been 3 to 6 days per decade since the 1970s. We examine possible reasons to explain this shift and suggest it is due to changes in atmospheric transport patterns combined with spatial and temporal changes in emissions. Detailed modeling is necessary to test these hypotheses; this investigation will provide useful guidance for improving global chemistry-climate models as well as stringent tests of the model results.
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Dates et versions

hal-00796341 , version 1 (12-08-2020)

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David D. Parrish, Kathy S. Law, Johannes Staehelin, R. Derwent, O. R. Cooper, et al.. Lower tropospheric ozone at northern midlatitudes: Changing seasonal cycle. Geophysical Research Letters, 2013, 40 (8), pp.1631-1636. ⟨10.1002/grl.50303⟩. ⟨hal-00796341⟩
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