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水溶性有机物主导中国冬季城市气溶胶中的棕色碳:化学特征和光学性质。

Water-Insoluble Organics Dominate Brown Carbon in Wintertime Urban Aerosol of China: Chemical Characteristics and Optical Properties.

机构信息

State Key Laboratory of Loess and Quaternary Geology, Center for Excellence in Quaternary Science and Global Change, and Key Laboratory of Aerosol Chemistry and Physics, Institute of Earth Environment, Chinese Academy of Sciences, Xi'an 710061, People's Republic of China.

Institute of Global Environmental Change, Xi'an Jiaotong University, Xi'an 710049, People's Republic of China.

出版信息

Environ Sci Technol. 2020 Jul 7;54(13):7836-7847. doi: 10.1021/acs.est.0c01149. Epub 2020 Jun 18.

Abstract

The chromophores responsible for light absorption in atmospheric brown carbon (BrC) are not well characterized, which hinders our understanding of BrC chemistry, the links with optical properties, and accurate model representations of BrC to global climate and atmospheric oxidative capacity. In this study, the light absorption properties and chromophore composition of three BrC fractions of different polarities were characterized for urban aerosol collected in Xi'an and Beijing in winter 2013-2014. These three BrC fractions show large differences in light absorption and chromophore composition, but the chromophores responsible for light absorption are similar in Xi'an and Beijing. Water-insoluble BrC (WI-BrC) fraction dominates the total BrC absorption at 365 nm in both Xi'an (51 ± 5%) and Beijing (62 ± 13%), followed by a humic-like fraction (HULIS-BrC) and high-polarity water-soluble BrC. The major chromophores identified in HULIS-BrC are nitrophenols and carbonyl oxygenated polycyclic aromatic hydrocarbons (OPAHs) with 2-3 aromatic rings (in total 18 species), accounting for 10% and 14% of the light absorption of HULIS-BrC at 365 nm in Xi'an and Beijing, respectively. In comparison, the major chromophores identified in WI-BrC are PAHs and OPAHs with 4-6 aromatic rings (in total 16 species), contributing 6% and 8% of the light absorption of WI-BrC at 365 nm in Xi'an and Beijing, respectively.

摘要

大气棕色碳(BrC)中负责光吸收的发色团尚未得到很好的描述,这阻碍了我们对 BrC 化学、与光学性质的联系以及 BrC 对全球气候和大气氧化能力的准确模型表示的理解。在这项研究中,我们对 2013-2014 年冬季在西安和北京采集的三种不同极性 BrC 馏分的光吸收特性和发色团组成进行了表征。这三种 BrC 馏分在光吸收和发色团组成方面存在很大差异,但在西安和北京,负责光吸收的发色团是相似的。水不溶性 BrC(WI-BrC)馏分在西安(51 ± 5%)和北京(62 ± 13%)均主导了 365nm 处总 BrC 的吸收,其次是类腐殖质馏分(HULIS-BrC)和高极性水溶性 BrC。在 HULIS-BrC 中鉴定出的主要发色团是硝基酚和羰基含氧多环芳烃(OPAHs),具有 2-3 个芳香环(总共 18 种),分别占 HULIS-BrC 在西安和北京 365nm 处光吸收的 10%和 14%。相比之下,在 WI-BrC 中鉴定出的主要发色团是多环芳烃(PAHs)和 OPAHs,具有 4-6 个芳香环(总共 16 种),分别占 WI-BrC 在西安和北京 365nm 处光吸收的 6%和 8%。

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