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Airborne measurements of ozone concentrations in background air and power plant plumes

Identifieur interne : 002619 ( Main/Exploration ); précédent : 002618; suivant : 002620

Airborne measurements of ozone concentrations in background air and power plant plumes

Auteurs : Eric Joos [France] ; Gerard Maffiolo [France]

Source :

RBID : ISTEX:8532E05B5111EEAC4CC83E773769A8BECB7E4E9A

Descripteurs français

English descriptors

Abstract

Ozone plays an important role in the physicochemical interactions between plumes and background air. During two field programs conducted at Cordemais in fall 1984 and at Le Havre in fall 1985, concentration measurements were performed in background air and in the plumes of fossil-fuel fired power plants. In background air, the daily average ozone concentration varied between 15 and 60 ppb depending on solar irradiation, pollution level and atmospheric stability. Maximum values of 100 ppb were observed in industrial area plumes. In the power plant plume, consumption of atmospheric ozone by emitted NO is important during the first 5 km downwind of the power plant but does not totally explain some important formation of NO2 identified at short distances downwind of the power plant.

Url:
DOI: 10.1016/0004-6981(89)90187-X


Affiliations:


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Le document en format XML

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<term>Fossil fuel</term>
<term>Industrial area</term>
<term>Kinetics</term>
<term>Nitrogen Oxides</term>
<term>Ozone</term>
<term>Photochemical reaction</term>
<term>Plume</term>
<term>Pollutant behavior</term>
<term>Power plant</term>
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<term>Azote Oxyde</term>
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<term>Devenir polluant</term>
<term>Interaction atmosphérique</term>
<term>Ozone</term>
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<div type="abstract" xml:lang="en">Ozone plays an important role in the physicochemical interactions between plumes and background air. During two field programs conducted at Cordemais in fall 1984 and at Le Havre in fall 1985, concentration measurements were performed in background air and in the plumes of fossil-fuel fired power plants. In background air, the daily average ozone concentration varied between 15 and 60 ppb depending on solar irradiation, pollution level and atmospheric stability. Maximum values of 100 ppb were observed in industrial area plumes. In the power plant plume, consumption of atmospheric ozone by emitted NO is important during the first 5 km downwind of the power plant but does not totally explain some important formation of NO2 identified at short distances downwind of the power plant.</div>
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