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  Large subglacial source of mercury from the southwestern margin of the Greenland Ice Sheet

Hawkings, J., Linhoff, B. S., Wadham, J. L., Stibal, M., Lamborg, C. H., Carling, G. T., Lamarche-Gagnon, G., Kohler, T. J., Ward, R., Hendry, K. R., Falteisek, L., Kellerman, A. M., Cameron, K. A., Hatton, J. E., Tingey, S., Holt, A. D., Vinšová, P., Hofer, S., Bulínová, M., Větrovský, T., Meire, L., Spencer, R. G. M. (2021): Large subglacial source of mercury from the southwestern margin of the Greenland Ice Sheet. - Nature Geoscience, 14, 496-502.
https://doi.org/10.1038/s41561-021-00753-w

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Hawkings, Jonathan1, Autor              
Linhoff, Benjamin S. 2, Autor
Wadham, Jemma L. 2, Autor
Stibal, Marek 2, Autor
Lamborg, Carl H. 2, Autor
Carling, Gregory T. 2, Autor
Lamarche-Gagnon, Guillaume 2, Autor
Kohler, Tyler J. 2, Autor
Ward, Rachael 2, Autor
Hendry, Katharine R. 2, Autor
Falteisek, Lukáš 2, Autor
Kellerman, Anne M. 2, Autor
Cameron, Karen A. 2, Autor
Hatton, Jade E. 2, Autor
Tingey, Sarah 2, Autor
Holt, Amy D. 2, Autor
Vinšová, Petra 2, Autor
Hofer, Stefan 2, Autor
Bulínová, Marie 2, Autor
Větrovský, Tomáš 2, Autor
Meire, Lorenz 2, AutorSpencer, Robert G. M. 2, Autor mehr..
Affiliations:
13.5 Interface Geochemistry, 3.0 Geochemistry, Departments, GFZ Publication Database, Deutsches GeoForschungsZentrum, ou_754888              
2External Organizations, ou_persistent22              

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Schlagwörter: Nature-Branded Vereinbarung
 Zusammenfassung: The Greenland Ice Sheet is currently not accounted for in Arctic mercury budgets, despite large and increasing annual runoff to the ocean and the socio-economic concerns of high mercury levels in Arctic organisms. Here we present concentrations of mercury in meltwaters from three glacial catchments on the southwestern margin of the Greenland Ice Sheet and evaluate the export of mercury to downstream fjords based on samples collected during summer ablation seasons. We show that concentrations of dissolved mercury are among the highest recorded in natural waters and mercury yields from these glacial catchments (521–3,300 mmol km−2 year−1) are two orders of magnitude higher than from Arctic rivers (4–20 mmol km−2 year−1). Fluxes of dissolved mercury from the southwestern region of Greenland are estimated to be globally significant (15.4–212 kmol year−1), accounting for about 10% of the estimated global riverine flux, and include export of bioaccumulating methylmercury (0.31–1.97 kmol year−1). High dissolved mercury concentrations (~20 pM inorganic mercury and ~2 pM methylmercury) were found to persist across salinity gradients of fjords. Mean particulate mercury concentrations were among the highest recorded in the literature (~51,000 pM), and dissolved mercury concentrations in runoff exceed reported surface snow and ice values. These results suggest a geological source of mercury at the ice sheet bed. The high concentrations of mercury and its large export to the downstream fjords have important implications for Arctic ecosystems, highlighting an urgent need to better understand mercury dynamics in ice sheet runoff under global warming.

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 Datum: 20212021
 Publikationsstatus: Final veröffentlicht
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 Identifikatoren: DOI: 10.1038/s41561-021-00753-w
GFZPOF: p4 T5 Future Landscapes
OATYPE: Hybrid - DEAL Nature (HGF)
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Titel: Nature Geoscience
Genre der Quelle: Zeitschrift, SCI, Scopus
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Seiten: - Band / Heft: 14 Artikelnummer: - Start- / Endseite: 496 - 502 Identifikator: CoNE: https://gfzpublic.gfz-potsdam.de/cone/journals/resource/journals355
Publisher: Springer Nature