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大气苯并噻唑在沿海海洋环境中的分布

Atmospheric Benzothiazoles in a Coastal Marine Environment.

机构信息

Department of Civil and Environmental Engineering, University of California, Berkeley, California 94720, United States.

Department of Chemistry & Biochemistry, University of California, San Diego, La Jolla, California 92093, United States.

出版信息

Environ Sci Technol. 2021 Dec 7;55(23):15705-15714. doi: 10.1021/acs.est.1c04422. Epub 2021 Nov 17.

Abstract

Organic emissions from coastal waters play an important but poorly understood role in atmospheric chemistry in coastal regions. A mesocosm experiment focusing on facilitated biological blooms in coastal seawater, SeaSCAPE (Sea Spray Chemistry and Particle Evolution), was performed to study emission of volatile gases, primary sea spray aerosol, and formation of secondary marine aerosol as a function of ocean biological and chemical processes. Here, we report observations of aerosol-phase benzothiazoles in a marine atmospheric context with complementary measurements of dissolved-phase benzothiazoles. Though previously reported dissolved in polluted coastal waters, we report the first direct evidence of the transfer of these molecules from seawater into the atmosphere. We also report the first gas-phase observations of benzothiazole in the environment absent a direct industrial, urban, or rubber-based source. From the identities and temporal dynamics of the dissolved and aerosol species, we conclude that the presence of benzothiazoles in the coastal water (and thereby their emissions into the atmosphere) is primarily attributable to anthropogenic sources. Oxidation experiments to explore the atmospheric fate of gas-phase benzothiazole show that it produces secondary aerosol and gas-phase SO, making it a potential contributor to secondary marine aerosol formation in coastal regions and a participant in atmospheric sulfur chemistry.

摘要

沿海水域的有机排放物在沿海地区的大气化学中起着重要但了解甚少的作用。为了研究挥发性气体、初级海洋飞沫气溶胶的排放以及作为海洋生物和化学过程函数的二次海洋气溶胶的形成,进行了一个专注于促进沿海海水中生物爆发的中观实验,即 SeaSCAPE(浪花化学和颗粒演化)。在这里,我们报告了在海洋大气环境中气溶胶相苯并噻唑的观测结果,并对溶解相苯并噻唑进行了补充测量。尽管先前在受污染的沿海水域中已有报道,但我们报告了这些分子从海水转移到大气中的第一个直接证据。我们还报告了环境中首次没有直接工业、城市或橡胶基来源的苯并噻唑的气相观测结果。从溶解和气溶胶物种的身份和时间动态来看,我们得出的结论是,苯并噻唑在沿海水中的存在(从而将其排放到大气中)主要归因于人为来源。探索气相苯并噻唑大气命运的氧化实验表明,它会产生二次气溶胶和气相 SO,使其成为沿海地区二次海洋气溶胶形成的潜在贡献者,并参与大气硫化学。

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