Seasonal characterization of chemical and optical properties of water-soluble organic aerosol in Beijing

Bo You, Zhiqiang Zhang, Aodong Du,Yan Li, Jiaxing Sun,Zhijie Li, Chun Chen,Wei Zhou, Weiqi Xu,Lu Lei, Pingqing Fu,Shengjie Hou, Ping Li,Yele Sun

Science of The Total Environment(2024)

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摘要
Water-soluble organic aerosol (WSOA) plays a crucial role in altering radiative forcing and impacting human health. However, our understanding of the seasonal variations of WSOA in Chinese megacities after the three-year clean air action plan is limited. In this study, we analyzed PM2.5 filter samples collected over one year (2020−2021) in Beijing to characterize the seasonal changes in the chemical and optical properties of WSOA using an offline aerosol mass spectrometer along with spectroscopy techniques. The mean mass concentration of WSOA during the observation period was 8.84 ± 7.12 μg m−3, constituting approximately 64–67 % of OA. Our results indicate the contribution of secondary OA (SOA) increased by 13–28 % due to a substantial reduction in primary emissions after the clean air action plan. The composition of WSOA exhibited pronounced seasonal variations, with a predominant contribution from less oxidized SOA in summer (61 %) and primary OA originating from coal combustion and biomass burning during the heating season (34 %). The mass absorption efficiency of WSOA at 365 nm in winter was nearly twice that in summer, suggesting that WSOA from primary emissions possesses a stronger light-absorbing capability than SOA. On average, water-soluble brown carbon accounted for 33–48 % of total brown carbon absorption. Fluorescence analysis revealed humic-like substances as the most significant fluorescence component of WSOA, constituting 82 %. Furthermore, both absorption and fluorescence chromophores were associated with nitrogen-containing compounds, highlighting the role of nitrogen-containing species in influencing the optical properties of WSOA. The results are important for chemical transport models to accurately simulate the WSOA and its climate effects.
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关键词
Water-soluble organic aerosol,Light absorption,Fluorescence,Sources,Seasonal variation
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