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边缘冰区是北极中部夏季大气汞的主要来源地。

The Marginal Ice Zone as a dominant source region of atmospheric mercury during central Arctic summertime.

作者信息

Yue Fange, Angot Hélène, Blomquist Byron, Schmale Julia, Hoppe Clara J M, Lei Ruibo, Shupe Matthew D, Zhan Liyang, Ren Jian, Liu Hailong, Beck Ivo, Howard Dean, Jokinen Tuija, Laurila Tiia, Quéléver Lauriane, Boyer Matthew, Petäjä Tuukka, Archer Stephen, Bariteau Ludovic, Helmig Detlev, Hueber Jacques, Jacobi Hans-Werner, Posman Kevin, Xie Zhouqing

机构信息

Institute of Polar Environment & Anhui Key Laboratory of Polar Environment and Global Change, Department of Environmental Science and Engineering, University of Science and Technology of China, Hefei, Anhui, 230026, China.

Extreme Environments Research Laboratory, École Polytechnique Fédérale de Lausanne (EPFL) Valais Wallis, Sion, Switzerland.

出版信息

Nat Commun. 2023 Aug 14;14(1):4887. doi: 10.1038/s41467-023-40660-9.

Abstract

Atmospheric gaseous elemental mercury (GEM) concentrations in the Arctic exhibit a clear summertime maximum, while the origin of this peak is still a matter of debate in the community. Based on summertime observations during the Multidisciplinary drifting Observatory for the Study of Arctic Climate (MOSAiC) expedition and a modeling approach, we further investigate the sources of atmospheric Hg in the central Arctic. Simulations with a generalized additive model (GAM) show that long-range transport of anthropogenic and terrestrial Hg from lower latitudes is a minor contribution (~2%), and more than 50% of the explained GEM variability is caused by oceanic evasion. A potential source contribution function (PSCF) analysis further shows that oceanic evasion is not significant throughout the ice-covered central Arctic Ocean but mainly occurs in the Marginal Ice Zone (MIZ) due to the specific environmental conditions in that region. Our results suggest that this regional process could be the leading contributor to the observed summertime GEM maximum. In the context of rapid Arctic warming and the observed increase in width of the MIZ, oceanic Hg evasion may become more significant and strengthen the role of the central Arctic Ocean as a summertime source of atmospheric Hg.

摘要

北极地区大气中的气态元素汞(GEM)浓度在夏季呈现出明显的最大值,而这一峰值的来源在科学界仍存在争议。基于北极气候多学科漂流观测站(MOSAiC)考察期间的夏季观测数据以及一种建模方法,我们进一步研究了北极中部大气汞的来源。广义相加模型(GAM)模拟结果表明,来自低纬度地区的人为汞和陆源汞的长距离传输贡献较小(约2%),超过50%的GEM变化可归因于海洋汞逸出。潜在源贡献函数(PSCF)分析进一步表明,在整个被冰覆盖的北冰洋中部,海洋汞逸出并不显著,主要发生在边缘冰区(MIZ),这是由该区域特定的环境条件所致。我们的研究结果表明,这一区域过程可能是观测到的夏季GEM最大值的主要贡献因素。在北极快速变暖以及观测到的MIZ宽度增加的背景下,海洋汞逸出可能会变得更加显著,并强化北冰洋中部作为夏季大气汞源的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/077a/10425351/5fe200c9082b/41467_2023_40660_Fig1_HTML.jpg

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