An Arctic Strait of Two Halves::The Changing Dynamics of Nutrient Uptake and Limitation Across the Fram Strait
The hydrography of the Arctic Seas is being altered by ongoing climate change, with knock-on effects to nutrient dynamics and primary production. As the major pathway of exchange between the Arctic and the Atlantic, the Fram Strait hosts two distinct water masses in the upper water column, northward...
Published in: | Global Biogeochemical Cycles |
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Main Authors: | , , , , , , , , , , , , , |
Format: | Article in Journal/Newspaper |
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2021
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Online Access: | https://pure.uhi.ac.uk/en/publications/5c3c1d55-4d1d-4f58-aa69-56cf98edc355 https://doi.org/10.1029/2021GB006961 https://pureadmin.uhi.ac.uk/ws/files/16513590/2021GB006961.pdf https://onlinelibrary.wiley.com/doi/10.1029/2021GB006961 |
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ftuhipublicatio:oai:pure.atira.dk:publications/5c3c1d55-4d1d-4f58-aa69-56cf98edc355 2024-09-15T17:51:21+00:00 An Arctic Strait of Two Halves::The Changing Dynamics of Nutrient Uptake and Limitation Across the Fram Strait Tuerena, Robyn E. Hopkins, Jo Buchanan, Pearse J. Ganeshram, Raja S. Norman, Louisa Appen, Wilken‐jon Tagliabue, Alessandro Doncila, Antonia Graeve, Martin Ludwichowski, Kai U. Dodd, Paul A. Vega, Camille Salter, Ian Mahaffey, Claire 2021-09-04 application/pdf https://pure.uhi.ac.uk/en/publications/5c3c1d55-4d1d-4f58-aa69-56cf98edc355 https://doi.org/10.1029/2021GB006961 https://pureadmin.uhi.ac.uk/ws/files/16513590/2021GB006961.pdf https://onlinelibrary.wiley.com/doi/10.1029/2021GB006961 eng eng https://pure.uhi.ac.uk/en/publications/5c3c1d55-4d1d-4f58-aa69-56cf98edc355 info:eu-repo/semantics/openAccess Tuerena , R E , Hopkins , J , Buchanan , P J , Ganeshram , R S , Norman , L , Appen , W , Tagliabue , A , Doncila , A , Graeve , M , Ludwichowski , K U , Dodd , P A , Vega , C , Salter , I & Mahaffey , C 2021 , ' An Arctic Strait of Two Halves: The Changing Dynamics of Nutrient Uptake and Limitation Across the Fram Strait ' , Global Biogeochemical Cycles , vol. 35 , no. 9 , GB006961 . https://doi.org/10.1029/2021GB006961 nutrients Arctic Ocean water mass nitrate isotopes climate change article 2021 ftuhipublicatio https://doi.org/10.1029/2021GB006961 2024-08-05T23:36:06Z The hydrography of the Arctic Seas is being altered by ongoing climate change, with knock-on effects to nutrient dynamics and primary production. As the major pathway of exchange between the Arctic and the Atlantic, the Fram Strait hosts two distinct water masses in the upper water column, northward flowing warm and saline Atlantic Waters in the east, and southward flowing cold and fresh Polar Surface Water in the west. Here, we assess how physical processes control nutrient dynamics in the Fram Strait using nitrogen isotope data collected during 2016 and 2018. In Atlantic Waters, a weakly stratified water column and a shallow nitracline reduce nitrogen limitation. To the west, in Polar Surface Water, nitrogen limitation is greater because stronger stratification inhibits nutrient resupply from deeper water and lateral nitrate supply from central Arctic waters is low. A historical hindcast simulation of ocean biogeochemistry from 1970 to 2019 corroborates these findings and highlights a strong link between nitrate supply to Atlantic Waters and the depth of winter mixing, which shoaled during the simulation in response to a local reduction in sea-ice formation. Overall, we find that while the eastern Fram Strait currently experiences seasonal nutrient replenishment and high primary production, the loss of winter sea ice and continued atmospheric warming has the potential to inhibit deep winter mixing and limit primary production in the future. Article in Journal/Newspaper Arctic Arctic Ocean Climate change Fram Strait Sea ice University of the Highlands and Islands: Research Database of UHI Global Biogeochemical Cycles 35 9 |
institution |
Open Polar |
collection |
University of the Highlands and Islands: Research Database of UHI |
op_collection_id |
ftuhipublicatio |
language |
English |
topic |
nutrients Arctic Ocean water mass nitrate isotopes climate change |
spellingShingle |
nutrients Arctic Ocean water mass nitrate isotopes climate change Tuerena, Robyn E. Hopkins, Jo Buchanan, Pearse J. Ganeshram, Raja S. Norman, Louisa Appen, Wilken‐jon Tagliabue, Alessandro Doncila, Antonia Graeve, Martin Ludwichowski, Kai U. Dodd, Paul A. Vega, Camille Salter, Ian Mahaffey, Claire An Arctic Strait of Two Halves::The Changing Dynamics of Nutrient Uptake and Limitation Across the Fram Strait |
topic_facet |
nutrients Arctic Ocean water mass nitrate isotopes climate change |
description |
The hydrography of the Arctic Seas is being altered by ongoing climate change, with knock-on effects to nutrient dynamics and primary production. As the major pathway of exchange between the Arctic and the Atlantic, the Fram Strait hosts two distinct water masses in the upper water column, northward flowing warm and saline Atlantic Waters in the east, and southward flowing cold and fresh Polar Surface Water in the west. Here, we assess how physical processes control nutrient dynamics in the Fram Strait using nitrogen isotope data collected during 2016 and 2018. In Atlantic Waters, a weakly stratified water column and a shallow nitracline reduce nitrogen limitation. To the west, in Polar Surface Water, nitrogen limitation is greater because stronger stratification inhibits nutrient resupply from deeper water and lateral nitrate supply from central Arctic waters is low. A historical hindcast simulation of ocean biogeochemistry from 1970 to 2019 corroborates these findings and highlights a strong link between nitrate supply to Atlantic Waters and the depth of winter mixing, which shoaled during the simulation in response to a local reduction in sea-ice formation. Overall, we find that while the eastern Fram Strait currently experiences seasonal nutrient replenishment and high primary production, the loss of winter sea ice and continued atmospheric warming has the potential to inhibit deep winter mixing and limit primary production in the future. |
format |
Article in Journal/Newspaper |
author |
Tuerena, Robyn E. Hopkins, Jo Buchanan, Pearse J. Ganeshram, Raja S. Norman, Louisa Appen, Wilken‐jon Tagliabue, Alessandro Doncila, Antonia Graeve, Martin Ludwichowski, Kai U. Dodd, Paul A. Vega, Camille Salter, Ian Mahaffey, Claire |
author_facet |
Tuerena, Robyn E. Hopkins, Jo Buchanan, Pearse J. Ganeshram, Raja S. Norman, Louisa Appen, Wilken‐jon Tagliabue, Alessandro Doncila, Antonia Graeve, Martin Ludwichowski, Kai U. Dodd, Paul A. Vega, Camille Salter, Ian Mahaffey, Claire |
author_sort |
Tuerena, Robyn E. |
title |
An Arctic Strait of Two Halves::The Changing Dynamics of Nutrient Uptake and Limitation Across the Fram Strait |
title_short |
An Arctic Strait of Two Halves::The Changing Dynamics of Nutrient Uptake and Limitation Across the Fram Strait |
title_full |
An Arctic Strait of Two Halves::The Changing Dynamics of Nutrient Uptake and Limitation Across the Fram Strait |
title_fullStr |
An Arctic Strait of Two Halves::The Changing Dynamics of Nutrient Uptake and Limitation Across the Fram Strait |
title_full_unstemmed |
An Arctic Strait of Two Halves::The Changing Dynamics of Nutrient Uptake and Limitation Across the Fram Strait |
title_sort |
arctic strait of two halves::the changing dynamics of nutrient uptake and limitation across the fram strait |
publishDate |
2021 |
url |
https://pure.uhi.ac.uk/en/publications/5c3c1d55-4d1d-4f58-aa69-56cf98edc355 https://doi.org/10.1029/2021GB006961 https://pureadmin.uhi.ac.uk/ws/files/16513590/2021GB006961.pdf https://onlinelibrary.wiley.com/doi/10.1029/2021GB006961 |
genre |
Arctic Arctic Ocean Climate change Fram Strait Sea ice |
genre_facet |
Arctic Arctic Ocean Climate change Fram Strait Sea ice |
op_source |
Tuerena , R E , Hopkins , J , Buchanan , P J , Ganeshram , R S , Norman , L , Appen , W , Tagliabue , A , Doncila , A , Graeve , M , Ludwichowski , K U , Dodd , P A , Vega , C , Salter , I & Mahaffey , C 2021 , ' An Arctic Strait of Two Halves: The Changing Dynamics of Nutrient Uptake and Limitation Across the Fram Strait ' , Global Biogeochemical Cycles , vol. 35 , no. 9 , GB006961 . https://doi.org/10.1029/2021GB006961 |
op_relation |
https://pure.uhi.ac.uk/en/publications/5c3c1d55-4d1d-4f58-aa69-56cf98edc355 |
op_rights |
info:eu-repo/semantics/openAccess |
op_doi |
https://doi.org/10.1029/2021GB006961 |
container_title |
Global Biogeochemical Cycles |
container_volume |
35 |
container_issue |
9 |
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1810293237192065024 |