Sources of particulate-matter air pollution and its oxidative potential in Europe

Источники загрязнения воздуха твердыми частицами и их окислительный потенциал в Европе
Marianne Geiser, Jean‐Luc Jaffrezo, Olivier Favez, Gaëlle Uzu, Arjo Segers, Martijn Schaap, Urs Baltensperger, Imad El Haddad, Josef Dommen, Andrê S. H. Prévôt, Jeroen Kuenen, Jianhui Jiang, Şebnem Aksoyoğlu, Francesco Canonaco, Kaspar R. Daellenbach, Laure‐Estelle Cassagnes, Zaira Leni, Athanasia Vlachou, Giulia Stefenelli, Samuël Weber, Alexandre Albinet
2020-11-18

oxidative potentialparticulate matterresidential biomass burningsecondary organic aerosolsvehicular non-exhaust emissions
. Here we use field observations and air-quality modelling to quantify the major primary and secondary sources of particulate matter and of oxidative potential in Europe. We find that secondary inorganic components, crustal material and secondary biogenic organic aerosols control the mass concentration of particulate matter. By contrast, oxidative potential concentration is associated mostly with anthropogenic sources, in particular with fine-mode secondary organic aerosols largely from residential biomass burning and coarse-mode metals from vehicular non-exhaust emissions. Our results suggest that mitigation strategies aimed at reducing the mass concentrations of particulate matter alone may not reduce the oxidative potential concentration. If the oxidative potential can be linked to major health impacts, it may be more effective to control specific sources of particulate matter rather than overall particulate mass.
1
Field observations and air-quality modelling identify the dominant primary and secondary sources of particulate matter and its oxidative potential across Europe.
2
If oxidative potential is linked to major health impacts, targeting specific particulate-matter sources may be more effective than reducing overall particulate mass.
3
Oxidative potential is associated predominantly with anthropogenic sources, especially fine-mode secondary organic aerosols from residential biomass burning and coarse-mode metals from vehicular non-exhaust emissions.
4
Particulate-matter mass is mainly controlled by secondary inorganic components, crustal material, and secondary biogenic organic aerosols.
5
Reducing particulate-matter mass concentrations alone may not decrease oxidative potential concentrations.

Particulate matter in ambient air in Europe (including its component sources such as secondary inorganic components, crustal material, secondary biogenic organic aerosols, residential biomass burning emissions, and vehicular non-exhaust metals)

The major primary and secondary sources controlling particulate-matter mass concentration and oxidative potential, especially anthropogenic sources such as residential biomass burning and vehicular non-exhaust emissions

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2020-11-18
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Authors
Marianne Geiser
Jean‐Luc Jaffrezo
Olivier Favez
Gaëlle Uzu
Arjo Segers
Martijn Schaap
Urs Baltensperger
Imad El Haddad
Josef Dommen
Andrê S. H. Prévôt
Jeroen Kuenen
Jianhui Jiang
Şebnem Aksoyoğlu
Francesco Canonaco
Kaspar R. Daellenbach
Laure‐Estelle Cassagnes
Zaira Leni
Athanasia Vlachou
Giulia Stefenelli
Samuël Weber
Alexandre Albinet
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