作者
Emily A Bruns, Imad El Haddad, Jay G Slowik, Dogushan Kilic, Felix Klein, Urs Baltensperger, André SH Prévôt
发表日期
2016/6/17
期刊
Scientific Reports
卷号
6
期号
1
页码范围
27881
出版商
Nature Publishing Group UK
简介
Organic gases undergoing conversion to form secondary organic aerosol (SOA) during atmospheric aging are largely unidentified, particularly in regions influenced by anthropogenic emissions. SOA dominates the atmospheric organic aerosol burden and this knowledge gap contributes to uncertainties in aerosol effects on climate and human health. Here we characterize primary and aged emissions from residential wood combustion using high resolution mass spectrometry to identify SOA precursors. We determine that SOA precursors traditionally included in models account for only ~3–27% of the observed SOA, whereas for the first time we explain ~84–116% of the SOA by inclusion of non-traditional precursors. Although hundreds of organic gases are emitted during wood combustion, SOA is dominated by the aging products of only 22 compounds. In some cases, oxidation products of phenol, naphthalene and …
引用总数
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