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DOI10.5194/acp-23-2613-2023
Technical note: Chemical composition and source identification offluorescent components in atmospheric water-soluble brown carbon byexcitation-emission matrix spectroscopy with parallel factor analysis - potentiallimitations and applications
Cao, Tao; Li, Meiju; Xu, Cuncun; Song, Jianzhong; Fan, Xingjun; Li, Jun; Jia, Wanglu; Peng, Ping'an
发表日期2023
ISSN1680-7316
EISSN1680-7324
起始页码2613
结束页码2625
卷号23期号:4页码:13
英文摘要Three-dimensional excitation-emission matrix (EEM) fluorescence spectroscopy is an important method for the identification of the occurrence, chemical composition, and source of atmospheric chromophores. However, current knowledge on the identification and interpretation of fluorescent components is mainly based on aquatic dissolved organic matter and might not be applicable to atmospheric samples. Therefore, this study comprehensively investigated EEM data of different types of strong light-absorbing organic compounds, water-soluble organic matter (WSOM) in different aerosol samples (combustion source samples and ambient aerosols), soil dust, and purified fulvic and humic acids supplemented by parallel factor (PARAFAC) modeling. The results demonstrated that organic compounds with high aromaticity and strong electron-donating groups generally present strong fluorescence spectra at longer emission wavelengths, whereas organic compounds substituted with electron-withdrawing groups have relatively weaker fluorescence intensity. In particular, aromatic compounds containing nitro groups (i.e., nitrophenols), which show strong absorption and are the major component of atmospheric brown carbon, exhibited no significant fluorescence. The EEM-PARAFAC method identified three fluorescent components (i.e., C1, C2, and C3) in ambient WSOM. Although EEM-PARAFAC-derived C1 (Ex/Em = 235, 270/330 nm) in ambient WSOM is generally considered to be protein-like groups, our findings suggested that it is mainly composed of aromatic acids, phenolic compounds, and their derivatives, with only traces of amino acids. C2 is associated with the atmospheric chemical reaction of biomass burning and/or biogenic organic molecules, with a relatively lower degree of oxidation, which are more abundant in Guangzhou WSOM (56 %-69 %). C3, in contrast, is mainly attributed to highly oxygenated organic molecules derived from soil and atmospheric aging processes and has a relatively higher contribution in Chuzhou WSOM (23 %). These findings provide new insights into the analysis of chemical properties and sources of atmospheric fluorophores using the EEM method.
学科领域Environmental Sciences; Meteorology & Atmospheric Sciences
语种英语
WOS研究方向Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
WOS记录号WOS:000938116600001
来源期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/273002
作者单位Chinese Academy of Sciences; Guangzhou Institute of Geochemistry, CAS; Chinese Academy of Sciences; University of Chinese Academy of Sciences, CAS; Anhui Science & Technology University
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GB/T 7714
Cao, Tao,Li, Meiju,Xu, Cuncun,et al. Technical note: Chemical composition and source identification offluorescent components in atmospheric water-soluble brown carbon byexcitation-emission matrix spectroscopy with parallel factor analysis - potentiallimitations and applications[J],2023,23(4):13.
APA Cao, Tao.,Li, Meiju.,Xu, Cuncun.,Song, Jianzhong.,Fan, Xingjun.,...&Peng, Ping'an.(2023).Technical note: Chemical composition and source identification offluorescent components in atmospheric water-soluble brown carbon byexcitation-emission matrix spectroscopy with parallel factor analysis - potentiallimitations and applications.ATMOSPHERIC CHEMISTRY AND PHYSICS,23(4),13.
MLA Cao, Tao,et al."Technical note: Chemical composition and source identification offluorescent components in atmospheric water-soluble brown carbon byexcitation-emission matrix spectroscopy with parallel factor analysis - potentiallimitations and applications".ATMOSPHERIC CHEMISTRY AND PHYSICS 23.4(2023):13.
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