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空气中生物分子的季节动态影响北极气溶胶的粒径分布。

Seasonal dynamics of airborne biomolecules influence the size distribution of Arctic aerosols.

作者信息

Jang Eunho, Park Ki-Tae, Yoon Young Jun, Jang Kyoung-Soon, Kim Min Sung, Kim Kitae, Chung Hyun Young, Mazzola Mauro, Cappelletti David, Lee Bang Yong

机构信息

Korea Polar Research Institute (KOPRI), Incheon, 21990, Republic of Korea.

University of Science and Technology (UST), Daejeon, 34113, Republic of Korea.

出版信息

Environ Sci Ecotechnol. 2024 Jul 18;22:100458. doi: 10.1016/j.ese.2024.100458. eCollection 2024 Nov.

Abstract

Organic matter is crucial in aerosol-climate interactions, yet the physicochemical properties and origins of organic aerosols remain poorly understood. Here we show the seasonal characteristics of submicron organic aerosols in Arctic Svalbard during spring and summer, emphasizing their connection to transport patterns and particle size distribution. Microbial-derived organic matter (MOM) and terrestrial-derived organic matter (TOM) accounted for over 90% of the total organic mass in Arctic aerosols during these seasons, comprising carbohydrate/protein-like and lignin/tannin-like compounds, respectively. In spring, aerosols showed high TOM and low MOM intensities due to biomass-burning influx in the central Arctic. In contrast, summer exhibited elevated MOM intensity, attributed to the shift in predominant atmospheric transport from the central Arctic to the biologically active Greenland Sea. MOM and TOM were associated with Aitken mode particles (<100 nm diameter) and accumulation mode particles (>100 nm diameter), respectively. This association is linked to the molecular size of biomolecules, impacting the number concentrations of corresponding aerosol classes. These findings highlight the importance of considering seasonal atmospheric transport patterns and organic source-dependent particle size distributions in assessing aerosol properties in the changing Arctic.

摘要

有机物在气溶胶与气候的相互作用中至关重要,然而有机气溶胶的物理化学性质和来源仍知之甚少。在此,我们展示了北极斯瓦尔巴群岛春季和夏季亚微米级有机气溶胶的季节特征,强调了它们与传输模式和粒径分布的联系。在这些季节里,微生物源有机物(MOM)和陆源有机物(TOM)在北极气溶胶的总有机质量中占比超过90%,分别由类碳水化合物/蛋白质和类木质素/单宁化合物组成。春季,由于北极中部生物质燃烧的影响,气溶胶呈现出高TOM强度和低MOM强度。相比之下,夏季MOM强度升高,这归因于主要大气传输从北极中部转移到生物活跃的格陵兰海。MOM和TOM分别与艾肯模态粒子(直径<100纳米)和积聚模态粒子(直径>100纳米)相关。这种关联与生物分子的分子大小有关,影响了相应气溶胶类别的数量浓度。这些发现突出了在评估变化中的北极地区气溶胶特性时,考虑季节性大气传输模式和有机源依赖的粒径分布的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2cd/11339251/1c9cac48143a/ga1.jpg

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