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中国北京单颗粒挥发性及其对棕碳吸收的影响。

Single-particle volatility and implications for brown carbon absorption in Beijing, China.

作者信息

Sun Jiaxing, Li Yan, Xu Weiqi, Zhou Wei, Du Aodong, Li Lei, Du Xubing, Huang Fugui, Li Zhijie, Zhang Zhiqiang, Wang Zifa, Sun Yele

机构信息

State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China; College of Earth and Planetary Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.

State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China.

出版信息

Sci Total Environ. 2023 Jan 1;854:158874. doi: 10.1016/j.scitotenv.2022.158874. Epub 2022 Sep 17.

Abstract

Aerosol volatility has a substantial impact on gas-particle partitioning, aging process and hence brown carbon (BrC) absorption. Here we analyzed single-particle volatility in winter in Beijing using a thermodenuder coupled with a single particle aerosol mass spectrometer along with a suite of collocated measurements. Our results showed that elemental carbon, metals, organic nitrogen (ON) were the dominant low-volatility components. The ON-containing particles accounting for 50 % of the total low-volatility particles comprised mainly ON-organic carbon (ON-OC) particles which were associated with biomass burning and significantly enhanced during polluted periods with high relative humidity and nitrogen oxides (NO) levels. By analyzing the relationship between single-particle volatility and BrC, we found that semi-volatile particles related to fossil fuel combustion contributed dominantly to the light absorption of BrC (~50 %). Comparatively, the low-volatility and semi-volatile particles related to biomass burning contributed 21-35 % and 10-15 %, respectively to the BrC light absorption. Our results demonstrated that single particles from different sources with different volatility showed different impacts on BrC absorption. Although low-volatility organic aerosol accounted only for ~16 % of the total ambient organics, they can contribute as much as ~30-40 % to BrC light absorption in winter in Beijing.

摘要

气溶胶挥发性对气体-颗粒分配、老化过程以及由此产生的棕碳(BrC)吸收有重大影响。在此,我们在北京冬季使用热脱附器与单颗粒气溶胶质谱仪相结合,并进行了一系列同步测量,分析了单颗粒挥发性。我们的结果表明,元素碳、金属、有机氮(ON)是主要的低挥发性成分。占低挥发性颗粒总数50%的含ON颗粒主要由与生物质燃烧相关的ON-有机碳(ON-OC)颗粒组成,在高相对湿度和氮氧化物(NO)水平的污染期显著增加。通过分析单颗粒挥发性与BrC之间的关系,我们发现与化石燃料燃烧相关的半挥发性颗粒对BrC的光吸收贡献最大(约50%)。相比之下,与生物质燃烧相关的低挥发性和半挥发性颗粒对BrC光吸收的贡献分别为21%-35%和10%-15%。我们的结果表明,来自不同来源、具有不同挥发性的单颗粒对BrC吸收有不同影响。尽管低挥发性有机气溶胶仅占总环境有机物的约16%,但它们在北京冬季对BrC光吸收的贡献可达约30%-40%。

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