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

微粒 环境化学 环境科学 空气污染 污染 质量浓度(化学) 空气质量指数 化学 生态学 生物 物理化学 有机化学
作者
Kaspar R. Daellenbach,Gaëlle Uzu,Jianhui Jiang,Laure‐Estelle Cassagnes,Zaira Leni,Athanasia Vlachou,Giulia Stefenelli,Francesco Canonaco,Samuël Weber,Arjo Segers,Jeroen Kuenen,Martijn Schaap,Olivier Favez,Alexandre Albinet,Şebnem Aksoyoğlu,Josef Dommen,Urs Baltensperger,Marianne Geiser,Imad El Haddad,Jean‐Luc Jaffrezo
出处
期刊:Nature [Nature Portfolio]
卷期号:587 (7834): 414-419 被引量:810
标识
DOI:10.1038/s41586-020-2902-8
摘要

Particulate matter is a component of ambient air pollution that has been linked to millions of annual premature deaths globally1-3. Assessments of the chronic and acute effects of particulate matter on human health tend to be based on mass concentration, with particle size and composition also thought to play a part4. Oxidative potential has been suggested to be one of the many possible drivers of the acute health effects of particulate matter, but the link remains uncertain5-8. Studies investigating the particulate-matter components that manifest an oxidative activity have yielded conflicting results7. In consequence, there is still much to be learned about the sources of particulate matter that may control the oxidative potential concentration7. 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.
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