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在波槽中产生的海雾气溶胶中,与初级生物颗粒结合的过渡金属。

Transition metal associations with primary biological particles in sea spray aerosol generated in a wave channel.

机构信息

Department of Chemistry and Biochemistry, University of California , San Diego, La Jolla, California, 92093.

出版信息

Environ Sci Technol. 2014 Jan 21;48(2):1324-33. doi: 10.1021/es403203d. Epub 2013 Dec 27.

DOI:10.1021/es403203d
PMID:24328130
Abstract

In the ocean, breaking waves generate air bubbles which burst at the surface and eject sea spray aerosol (SSA), consisting of sea salt, biogenic organic species, and primary biological aerosol particles (PBAP). Our overall understanding of atmospheric biological particles of marine origin remains poor. Here, we perform a control experiment, using an aerosol time-of-flight mass spectrometer to measure the mass spectral signatures of individual particles generated by bubbling a salt solution before and after addition of heterotrophic marine bacteria. Upon addition of bacteria, an immediate increase occurs in the fraction of individual particle mass spectra containing magnesium, organic nitrogen, and phosphate marker ions. These biological signatures are consistent with 21% of the supermicrometer SSA particles generated in a previous study using breaking waves in an ocean-atmosphere wave channel. Interestingly, the wave flume mass spectral signatures also contain metal ions including silver, iron, and chromium. The nascent SSA bioparticles produced in the wave channel are hypothesized to be as follows: (1) whole or fragmented bacterial cells which bioaccumulated metals and/or (2) bacteria-derived colloids or biofilms which adhered to the metals. This study highlights the potential for transition metals, in combination with specific biomarkers, to serve as unique indicators for the presence of marine PBAP, especially in metal-impacted coastal regions.

摘要

在海洋中,破浪会产生气泡,这些气泡在海面破裂并喷出海水喷雾气溶胶(SSA),其中包含海盐、生物源有机物质和初级生物气溶胶颗粒(PBAP)。我们对海洋源大气生物颗粒的整体认识仍然很有限。在这里,我们进行了一项对照实验,使用气溶胶飞行时间质谱仪测量了在添加异养海洋细菌前后通过气泡产生的单个颗粒的质谱特征。添加细菌后,含有镁、有机氮和磷酸盐标记离子的单个颗粒质谱特征的比例立即增加。这些生物特征与先前在海洋-大气波道中使用破浪产生的超微 SSA 颗粒的 21%一致。有趣的是,波槽的质谱特征还包含银、铁和铬等金属离子。在波道中产生的初生 SSA 生物颗粒被假设为:(1)生物积累了金属的完整或破碎的细菌细胞,和/或(2)附着在金属上的细菌衍生胶体或生物膜。这项研究强调了过渡金属与特定生物标志物结合作为海洋 PBAP 存在的独特指示物的潜力,特别是在受金属影响的沿海地区。

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