Fluorescent water-soluble organic aerosols in the High Arctic atmosphere

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作者
Pingqing Fu
Kimitaka Kawamura
Jing Chen
Mingyue Qin
Lujie Ren
Yele Sun
Zifa Wang
Leonard A. Barrie
Eri Tachibana
Aijun Ding
Youhei Yamashita
机构
[1] Chinese Academy of Sciences,State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry, Institute of Atmospheric Physics
[2] Institute of Low Temperature Science,undefined
[3] Hokkaido University,undefined
[4] SKLEG,undefined
[5] Institute of Geochemistry,undefined
[6] Chinese Academy of Sciences,undefined
[7] Institute of Geographic Sciences and Source Research,undefined
[8] Chinese Academy of Sciences,undefined
[9] Bolin Centre for Climate Research,undefined
[10] Stockholm University,undefined
[11] Institute for Climate and Global Change Research & School of Atmospheric Sciences,undefined
[12] Nanjing University,undefined
[13] Faculty of Environmental Earth Science,undefined
[14] Hokkaido University,undefined
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摘要
Organic aerosols are ubiquitous in the earth’s atmosphere. They have been extensively studied in urban, rural and marine environments. However, little is known about the fluorescence properties of water-soluble organic carbon (WSOC) or their transport to and distribution in the polar regions. Here, we present evidence that fluorescent WSOC is a substantial component of High Arctic aerosols. The ratios of fluorescence intensity of protein-like peak to humic-like peak generally increased from dark winter to early summer, indicating an enhanced contribution of protein-like organics from the ocean to Arctic aerosols after the polar sunrise. Such a seasonal pattern is in agreement with an increase of stable carbon isotope ratios of total carbon (δ13CTC) from −26.8‰ to −22.5‰. Our results suggest that Arctic aerosols are derived from a combination of the long-range transport of terrestrial organics and local sea-to-air emission of marine organics, with an estimated contribution from the latter of 8.7–77% (mean 45%).
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