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2018-2019 年冬季汾渭平原棕色碳的光吸收特性及潜在来源

Light absorption properties and potential sources of brown carbon in Fenwei Plain during winter 2018-2019.

机构信息

State Key Laboratory for Structural Chemistry of Unstable and Stable Species, Beijing National Laboratory for Molecular Sciences (BNLMS), Chemistry Academy of Sciences Research/Education Center for Excellence in Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China; University of Chinese Academy of Sciences, Beijing 100049, China; Department of Clinical Research, Central Hospital Affiliated to Shandong First Medical University, Jinan 250013, China.

State Key Laboratory for Structural Chemistry of Unstable and Stable Species, Beijing National Laboratory for Molecular Sciences (BNLMS), Chemistry Academy of Sciences Research/Education Center for Excellence in Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China; University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

J Environ Sci (China). 2021 Apr;102:53-63. doi: 10.1016/j.jes.2020.09.007. Epub 2020 Sep 28.

Abstract

A distinctive kind of organic carbon aerosol that could absorb ultraviolet-visible radiation is called brown carbon (BrC), which has an important positive influence on radiative budget and climate change. In this work, we reported the absorption properties and potential source of BrC based on a seven-wavelength aethalometer in the winter of 2018-2019 at an urban site of Sanmenxia in Fenwei Plain in central China. Specifically, the mean value of BrC absorption coefficient was 59.6 ± 36.0 Mm at 370 nm and contributed 37.7% to total absorption, which made a significant impact on visibility and regional environment. Absorption coefficients of BrC showed double-peak pattern, and BrC had shown small fluctuations under haze days compared with clean days. As for the sources of BrC, BrC absorption coefficients expressed strong correlations with element carbon aerosols and primary organic carbon aerosols, indicating that most of BrC originated from primary emissions. The linear correlations between trace metal elements (K, As, Fe, Mn, Zn, and Pb) and BrC absorption coefficients further referred that the major sources of BrC were primary emissions, like coal burning, biomass burning, and vehicle emissions. The moderate relationship between BrC absorption coefficients and secondary organic aerosols suggested that secondary production of BrC also played an important role. The 120 hr backward air mass trajectories analysis and concentration-weighted trajectories analysis were also used to investigate potential sources of BrC in and around this area, which inferred most parts of BrC were derived from local emissions.

摘要

一种独特的有机碳气溶胶,能够吸收紫外-可见辐射,被称为棕色碳(BrC),它对辐射收支和气候变化有重要的积极影响。在这项工作中,我们基于 2018-2019 年冬季在中国中部汾渭平原三门峡市一个城市站点的七波长黑碳仪,报道了 BrC 的吸收特性和潜在来源。具体来说,BrC 吸收系数在 370nm 处的平均值为 59.6±36.0Mm,占总吸收的 37.7%,对能见度和区域环境有重要影响。BrC 吸收系数呈双峰模式,在雾霾天与清洁天相比,BrC 波动较小。至于 BrC 的来源,BrC 吸收系数与元素碳气溶胶和一次有机碳气溶胶表现出很强的相关性,表明大部分 BrC 来源于一次排放。痕量金属元素(K、As、Fe、Mn、Zn 和 Pb)与 BrC 吸收系数之间的线性相关性进一步表明,BrC 的主要来源是一次排放,如煤燃烧、生物质燃烧和车辆排放。BrC 吸收系数与二次有机气溶胶之间的中等关系表明,BrC 的二次生成也起着重要作用。还利用 120 小时后向气团轨迹分析和浓度加权轨迹分析来研究该地区及其周围 BrC 的潜在来源,推断大部分 BrC 来自当地排放。

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