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Environmental controls on ozone fluxes in a poplar plantation in Western Europe.

Identifieur interne : 002247 ( Main/Exploration ); précédent : 002246; suivant : 002248

Environmental controls on ozone fluxes in a poplar plantation in Western Europe.

Auteurs : D. Zona [Royaume-Uni] ; B. Gioli ; S. Fares ; T. De Groote ; K. Pilegaard ; A. Ibrom ; R. Ceulemans

Source :

RBID : pubmed:24060739

Descripteurs français

English descriptors

Abstract

Tropospheric O3 is a strong oxidant that may affect vegetation and human health. Here we report on the O3 fluxes from a poplar plantation in Belgium during one year. Surprisingly, the winter and autumn O3 fluxes were of similar magnitude to ones observed during most of the peak vegetation development. Largest O3 uptakes were recorded at the beginning of the growing season in correspondence to a minimum stomatal uptake. Wind speed was the most important control and explained 44% of the variability in the nighttime O3 fluxes, suggesting that turbulent mixing and the mechanical destruction of O3 played a substantial role in the O3 fluxes. The stomatal O3 uptake accounted for a seasonal average of 59% of the total O3 uptake. Multiple regression and partial correlation analyses showed that net ecosystem exchange was not affected by the stomatal O3 uptake.

DOI: 10.1016/j.envpol.2013.08.032
PubMed: 24060739


Affiliations:


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Le document en format XML

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<div type="abstract" xml:lang="en">Tropospheric O3 is a strong oxidant that may affect vegetation and human health. Here we report on the O3 fluxes from a poplar plantation in Belgium during one year. Surprisingly, the winter and autumn O3 fluxes were of similar magnitude to ones observed during most of the peak vegetation development. Largest O3 uptakes were recorded at the beginning of the growing season in correspondence to a minimum stomatal uptake. Wind speed was the most important control and explained 44% of the variability in the nighttime O3 fluxes, suggesting that turbulent mixing and the mechanical destruction of O3 played a substantial role in the O3 fluxes. The stomatal O3 uptake accounted for a seasonal average of 59% of the total O3 uptake. Multiple regression and partial correlation analyses showed that net ecosystem exchange was not affected by the stomatal O3 uptake. </div>
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