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韩国首尔地区降水样品中棕色碳的分相特征和来源解析:基于激发发射矩阵光谱和碳同位素分析的研究。

Speciation and Sources of Brown Carbon in Precipitation at Seoul, Korea: Insights from Excitation-Emission Matrix Spectroscopy and Carbon Isotopic Analysis.

机构信息

School of Earth & Environmental Sciences/RIO, Seoul National University , Seoul 151-747, South Korea.

出版信息

Environ Sci Technol. 2017 Oct 17;51(20):11580-11587. doi: 10.1021/acs.est.7b02892. Epub 2017 Sep 28.

DOI:10.1021/acs.est.7b02892
PMID:28929752
Abstract

Brown carbon (BrC) plays a significant role in the Earth's radiative balance, yet its sources and chemical composition remain poorly understood. In this work, we investigated BrC in the atmospheric environment of Seoul by characterizing dissolved organic matter in precipitation using excitation-emission matrix (EEM) fluorescence spectroscopy coupled with parallel factor analysis (PARAFAC). The two independent fluorescent components identified by PARAFAC were attributed to humic-like substance (HULIS) and biologically derived material based on their significant correlations with measured HULIS isolated using solid-phase extraction and total hydrolyzable tyrosine. The year-long observation shows that HULIS contributes to 66 ± 13% of total fluorescence intensity of our samples on average. By using dual carbon (C and C) isotopic analysis conducted on isolated HULIS, the HULIS fraction of BrC was found to be primarily derived from biomass burning and emission of terrestrial biogenic gases and particles (>70%), with minor contributions from fossil-fuel combustion. The knowledge derived from this study could contribute to the establishment of a characterizing system of BrC components identified by EEM spectroscopy. Our work demonstrates that, EEM fluorescence spectroscopy is a powerful tool in BrC study, on the basis of its chromophore resolving power, allowing investigation into individual components of BrC by other organic matter characterization techniques.

摘要

棕色碳(BrC)在地球辐射平衡中起着重要作用,但它的来源和化学组成仍知之甚少。在这项工作中,我们通过采用激发-发射矩阵(EEM)荧光光谱法结合平行因子分析(PARAFAC),对首尔大气环境中的 BrC 进行了研究。PARAFAC 确定的两个独立荧光成分归因于类腐殖质物质(HULIS)和生物衍生物质,这是基于它们与使用固相萃取和总可水解酪氨酸分离的测量 HULIS 之间的显著相关性。为期一年的观测表明,HULIS 平均占我们样品总荧光强度的 66±13%。通过对分离的 HULIS 进行双碳(C 和 C)同位素分析,发现 BrC 的 HULIS 部分主要来自生物质燃烧和陆地生物源气体和颗粒的排放(>70%),化石燃料燃烧的贡献较小。本研究获得的知识有助于建立通过 EEM 光谱鉴定的 BrC 成分的特征系统。我们的工作表明,基于其发色团分辨能力,EEM 荧光光谱法是 BrC 研究的有力工具,可通过其他有机物特征技术研究 BrC 的各个组成部分。

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