Eurasian river spring flood observations support net Arctic Ocean mercury export to the atmosphere and Atlantic ocean

Midlatitude anthropogenic mercury (Hg) emissions and discharge reach the Arctic Ocean (AO) by atmospheric and oceanic transport. Recent studies suggest that Arctic river Hg inputs have been a potentially overlooked source of Hg to the AO. Observations on Hg in Eurasian rivers which represent 80% of...

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Published in:Proceedings of the National Academy of Sciences
Main Authors: Teisserenc, Roman, Heimbürger-Boavida, Lars-Eric, Petrova, Mariia V., Marusczak, Nicolas, Le Dantec, Theo, Chupakov, Artem V., Li, Chuxian, Thackray, Colin P., Sunderland, Elsie M., Sonke, Jeroen E., Tananaev, Nikita, Pokrovsky, Oleg S.
Format: Article in Journal/Newspaper
Language:English
Published: 2018
Subjects:
Online Access:https://doi.org/10.1073/pnas.1811957115
http://vital.lib.tsu.ru/vital/access/manager/Repository/vtls:000659755
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spelling fttomskstateuniv:vtls:000659755 2023-05-15T14:41:24+02:00 Eurasian river spring flood observations support net Arctic Ocean mercury export to the atmosphere and Atlantic ocean Teisserenc Roman Heimbürger-Boavida Lars-Eric Petrova Mariia V. Marusczak Nicolas Le Dantec Theo Chupakov Artem V. Li Chuxian Thackray Colin P. Sunderland Elsie M. Sonke Jeroen E. Tananaev Nikita Pokrovsky Oleg S. 2018 https://doi.org/10.1073/pnas.1811957115 http://vital.lib.tsu.ru/vital/access/manager/Repository/vtls:000659755 eng eng Proceedings of the National Academy of Sciences of the United States of America. 2018. Vol. 115 № 50. P. E11586-E11594 весенний паводок Северный Ледовитый океан Атлантический океан ртуть реки статьи в журналах info:eu-repo/semantics/article 2018 fttomskstateuniv https://doi.org/10.1073/pnas.1811957115 2019-07-09T14:44:38Z Midlatitude anthropogenic mercury (Hg) emissions and discharge reach the Arctic Ocean (AO) by atmospheric and oceanic transport. Recent studies suggest that Arctic river Hg inputs have been a potentially overlooked source of Hg to the AO. Observations on Hg in Eurasian rivers which represent 80% of freshwater inputs to the AO are quasi-inexistent however putting firm understanding of the Arctic Hg cycle on hold. Here we present comprehensive seasonal observations on dissolved Hg (DHg) and particulate Hg (PHg) concentrations and fluxes for two large Eurasian rivers the Yenisei and the Severnaya Dvina. We find large DHg and PHg fluxes during the spring flood followed by a second pulse during the fall flood. We observe well-defined water vs. Hg runoff relationships for Eurasian and North American Hg fluxes to the AO and for Canadian Hg fluxes into the larger Hudson Bay area. Extrapolation to pan-Arctic rivers and watersheds gives a total Hg river flux to the AO of 44 ± 4 Mg per year (1σ) in agreement with the recent model-based estimates of 16 to 46 Mg per year and Hg/dissolved organic carbon (DOC) observation-based estimate of 50 Mg per year. The river Hg budget together with recent observations on tundra Hg uptake and AO Hg dynamics provide a consistent view of the Arctic Hg cycle in which continental ecosystems traffic anthropogenic Hg emissions to the AO via rivers and the AO exports Hg to the atmosphere to the Atlantic Ocean and to AO marine sediments. Article in Journal/Newspaper Arctic Arctic Ocean dvina Hudson Bay Tundra Tomsk State University Research Library Arctic Arctic Ocean Hudson Bay Hudson Severnaya Dvina ENVELOPE(40.494,40.494,64.532,64.532) Proceedings of the National Academy of Sciences 115 50 E11586 E11594
institution Open Polar
collection Tomsk State University Research Library
op_collection_id fttomskstateuniv
language English
topic весенний паводок
Северный Ледовитый океан
Атлантический океан
ртуть
реки
spellingShingle весенний паводок
Северный Ледовитый океан
Атлантический океан
ртуть
реки
Teisserenc
Roman
Heimbürger-Boavida
Lars-Eric
Petrova
Mariia V.
Marusczak
Nicolas
Le Dantec
Theo
Chupakov
Artem V.
Li
Chuxian
Thackray
Colin P.
Sunderland
Elsie M.
Sonke
Jeroen E.
Tananaev
Nikita
Pokrovsky
Oleg S.
Eurasian river spring flood observations support net Arctic Ocean mercury export to the atmosphere and Atlantic ocean
topic_facet весенний паводок
Северный Ледовитый океан
Атлантический океан
ртуть
реки
description Midlatitude anthropogenic mercury (Hg) emissions and discharge reach the Arctic Ocean (AO) by atmospheric and oceanic transport. Recent studies suggest that Arctic river Hg inputs have been a potentially overlooked source of Hg to the AO. Observations on Hg in Eurasian rivers which represent 80% of freshwater inputs to the AO are quasi-inexistent however putting firm understanding of the Arctic Hg cycle on hold. Here we present comprehensive seasonal observations on dissolved Hg (DHg) and particulate Hg (PHg) concentrations and fluxes for two large Eurasian rivers the Yenisei and the Severnaya Dvina. We find large DHg and PHg fluxes during the spring flood followed by a second pulse during the fall flood. We observe well-defined water vs. Hg runoff relationships for Eurasian and North American Hg fluxes to the AO and for Canadian Hg fluxes into the larger Hudson Bay area. Extrapolation to pan-Arctic rivers and watersheds gives a total Hg river flux to the AO of 44 ± 4 Mg per year (1σ) in agreement with the recent model-based estimates of 16 to 46 Mg per year and Hg/dissolved organic carbon (DOC) observation-based estimate of 50 Mg per year. The river Hg budget together with recent observations on tundra Hg uptake and AO Hg dynamics provide a consistent view of the Arctic Hg cycle in which continental ecosystems traffic anthropogenic Hg emissions to the AO via rivers and the AO exports Hg to the atmosphere to the Atlantic Ocean and to AO marine sediments.
format Article in Journal/Newspaper
author Teisserenc
Roman
Heimbürger-Boavida
Lars-Eric
Petrova
Mariia V.
Marusczak
Nicolas
Le Dantec
Theo
Chupakov
Artem V.
Li
Chuxian
Thackray
Colin P.
Sunderland
Elsie M.
Sonke
Jeroen E.
Tananaev
Nikita
Pokrovsky
Oleg S.
author_facet Teisserenc
Roman
Heimbürger-Boavida
Lars-Eric
Petrova
Mariia V.
Marusczak
Nicolas
Le Dantec
Theo
Chupakov
Artem V.
Li
Chuxian
Thackray
Colin P.
Sunderland
Elsie M.
Sonke
Jeroen E.
Tananaev
Nikita
Pokrovsky
Oleg S.
author_sort Teisserenc
title Eurasian river spring flood observations support net Arctic Ocean mercury export to the atmosphere and Atlantic ocean
title_short Eurasian river spring flood observations support net Arctic Ocean mercury export to the atmosphere and Atlantic ocean
title_full Eurasian river spring flood observations support net Arctic Ocean mercury export to the atmosphere and Atlantic ocean
title_fullStr Eurasian river spring flood observations support net Arctic Ocean mercury export to the atmosphere and Atlantic ocean
title_full_unstemmed Eurasian river spring flood observations support net Arctic Ocean mercury export to the atmosphere and Atlantic ocean
title_sort eurasian river spring flood observations support net arctic ocean mercury export to the atmosphere and atlantic ocean
publishDate 2018
url https://doi.org/10.1073/pnas.1811957115
http://vital.lib.tsu.ru/vital/access/manager/Repository/vtls:000659755
long_lat ENVELOPE(40.494,40.494,64.532,64.532)
geographic Arctic
Arctic Ocean
Hudson Bay
Hudson
Severnaya Dvina
geographic_facet Arctic
Arctic Ocean
Hudson Bay
Hudson
Severnaya Dvina
genre Arctic
Arctic Ocean
dvina
Hudson Bay
Tundra
genre_facet Arctic
Arctic Ocean
dvina
Hudson Bay
Tundra
op_source Proceedings of the National Academy of Sciences of the United States of America. 2018. Vol. 115
№ 50. P. E11586-E11594
op_doi https://doi.org/10.1073/pnas.1811957115
container_title Proceedings of the National Academy of Sciences
container_volume 115
container_issue 50
container_start_page E11586
op_container_end_page E11594
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