Links between the optical properties and chemical compositions of brown carbon chromophores in different environments: Contributions and formation of functionalized aromatic compounds

发色团 碳纤维 化学 有机化学 化学工程 材料科学 复合数 工程类 复合材料
作者
Xiao Li,Min Hu,Yujue Wang,Nan Xu,Yukui Zhang,Taomou Zong,Zhijun Wu,Song Guo,Wenfei Zhu,Shiyi Chen,Huabin Dong,Limin Zeng,Xuena Yu,Xiaoyan Tang
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:786: 147418-147418 被引量:26
标识
DOI:10.1016/j.scitotenv.2021.147418
摘要

Links between the optical properties and chemical compositions of brown carbon (BrC) are poorly understood because of the complexity of BrC chromophores. We conducted field studies simultaneously at both vehicle-influenced site and biomass burning-affected site in China in polluted winter. The chemical compositions and light absorption values of functionalized aromatic compounds, including phenyl aldehyde, phenyl acid, and nitroaromatic compounds, were measured. P -phthalic acid, nitrophenols and nitrocatechols were dominant BrC species, accounting for over 50% of the concentration of identified chromophores. Nitrophenols and nitrocatechols contributed more than 50% of the identified BrC absorbance between 300 and 400 nm. Oxidation of biomass burning-related products (e.g., pyrocatechol and methylcatechols) and anthropogenic volatile organic compounds (e.g., benzene and toluene) generated similar BrC chromophores, implying that these functionalized aromatic compounds play an important role in both environments. Compared with the biomass burning-affected site (22%), functionalized aromatic compounds at vehicle-influenced site accounted for a higher percentage of BrC absorption (25%). This research improves our understanding of the links between optical properties and composition of BrC, and the difference between BrC chromophores from BB-influenced area and vehicle-affected area under polluted atmospheric conditions. • Links between the optical properties and chemical compositions of brown carbon chromophores were conducted. • Nitrophenols and nitrocatechols were dominant BrC species, contributing over 40% of identified BrC mass and >50% of the absorbance at 320 nm. • Oxidation of biomass burning-related products and anthropogenic volatile organic compounds could generate similar BrC chromophores.
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