中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Influence of organic aerosol molecular composition on particle absorptive properties in autumn Beijing

文献类型:期刊论文

作者Cai, Jing; Wu, Cheng; Wang, Jiandong; Du, Wei; Zheng, Feixue; Hakala, Simo; Fan, Xiaolong; Chu, Biwu; Yao, Lei; Feng, Zemin
刊名ATMOSPHERIC CHEMISTRY AND PHYSICS
出版日期2022-01-25
卷号22期号:2页码:1251-1269
ISSN号1680-7316
关键词CARBON LIGHT-ABSORPTION NUMBER SIZE DISTRIBUTIONS AIR-POLLUTION SOURCES BROWN CARBON SOURCE APPORTIONMENT MASS-SPECTROMETRY BLACK CARBON CHEMICAL-COMPOSITION WINTER MATTER
英文摘要Organic aerosol (OA) is a major component of fine particulate matter (PM), affecting air quality, human health, and the climate. The absorptive and reflective behavior of OA components contributes to determining particle optical properties and thus their effects on the radiative budget of the troposphere. There is limited knowledge on the influence of the molecular composition of OA on particle optical properties in the polluted urban environment. In this study, we characterized the molecular composition of oxygenated OA collected on filter samples in the autumn of 2018 in Beijing, China, with a filter inlet for gases and aerosols coupled to a high-resolution time-of-flight chemical ionization mass spectrometer (FIGAERO-CIMS). Three haze episodes occurred during our sampling period with daily maximum concentrations of OA of 50, 30, and 55 mu g m(-3). We found that the signal intensities of dicarboxylic acids and sulfur-containing compounds increased during the two more intense haze episodes, while the relative contributions of wood-burning markers and other aromatic compounds were enhanced during the cleaner periods. We further assessed the optical properties of oxygenated OA components by combining detailed chemical composition measurements with collocated particle light absorption measurements. We show that light absorption enhancement (E-abs) of black carbon (BC) was mostly related to more oxygenated OA (e.g., dicarboxylic acids), likely formed in aqueous-phase reactions during the intense haze periods with higher relative humidity, and speculate that they might contribute to lensing effects. Aromatics and nitro-aromatics (e.g., nitrocatechol and its derivatives) were mostly related to a high light absorption coefficient (b(abs)) consistent with light-absorbing (brown) carbon (BrC). Our results provide information on oxygenated OA components at the molecular level associated with BrC and BC particle light absorption and can serve as a basis for further studies on the effects of anthropogenic OA on radiative forcing in the urban environment.
源URL[https://ir.rcees.ac.cn/handle/311016/47413]  
专题生态环境研究中心_大气污染控制中心
作者单位1.Stockholm Univ, Dept Environm Sci, S-11418 Stockholm, Sweden
2.Beijing Univ Chem Technol, Beijing Adv Innovat Ctr Soft Matter Sci & Engn, Aerosol & Haze Lab, Beijing 100029, Peoples R China
3.Univ Helsinki, Fac Sci, Inst Atmospher & Earth Syst Res, Helsinki 00014, Finland
4.Chinese Acad Sci, Res Ctr Ecoenvironm Sci, State Key Joint Lab Environm Simulat & Pollut Con, B
5.Nanjing Univ Informat Sci & Technol, Sch Atmospher Phys, Nanjing 210044, Peoples R China
推荐引用方式
GB/T 7714
Cai, Jing,Wu, Cheng,Wang, Jiandong,et al. Influence of organic aerosol molecular composition on particle absorptive properties in autumn Beijing[J]. ATMOSPHERIC CHEMISTRY AND PHYSICS,2022,22(2):1251-1269.
APA Cai, Jing.,Wu, Cheng.,Wang, Jiandong.,Du, Wei.,Zheng, Feixue.,...&Daellenbach, Kaspar R..(2022).Influence of organic aerosol molecular composition on particle absorptive properties in autumn Beijing.ATMOSPHERIC CHEMISTRY AND PHYSICS,22(2),1251-1269.
MLA Cai, Jing,et al."Influence of organic aerosol molecular composition on particle absorptive properties in autumn Beijing".ATMOSPHERIC CHEMISTRY AND PHYSICS 22.2(2022):1251-1269.

入库方式: OAI收割

来源:生态环境研究中心

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