Antarctica’s Dry Valleys: A potential source of soluble iron to the Southern Ocean?

The soluble iron content and dust emission potential of sediment samples collected from the Taylor Valley in the McMurdo Dry Valleys (MDVs) and sea ice in the McMurdo Sound were evaluated to determine whether inputs to the Southern Ocean may be sufficient to affect ocean productivity. Our results sh...

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Main Authors: Bhattachan, Abinash, Wang, Lixin, Miller, Molly F., Licht, Kathy J., D'Odorico, Paolo
Other Authors: Department of Earth Sciences, IU School of Science
Format: Article in Journal/Newspaper
Language:English
Published: AGU 2015
Subjects:
Online Access:https://hdl.handle.net/1805/6698
id ftiupui:oai:scholarworks.iupui.edu:1805/6698
record_format openpolar
spelling ftiupui:oai:scholarworks.iupui.edu:1805/6698 2023-10-09T21:45:56+02:00 Antarctica’s Dry Valleys: A potential source of soluble iron to the Southern Ocean? Bhattachan, Abinash Wang, Lixin Miller, Molly F. Licht, Kathy J. D'Odorico, Paolo Department of Earth Sciences, IU School of Science 2015-03 application/pdf https://hdl.handle.net/1805/6698 en_US eng AGU 10.1002/2015GL063419 Geophysical Research Letters Bhattachan, A., Wang, L., Miller, M. F., Licht, K. J., & D'Odorico, P. (2015). Antarctica's Dry Valleys: A potential source of soluble iron to the Southern Ocean?. Geophysical Research Letters, 42(6), 1912-1918. http://dx.doi.org/10.1002/2015GL063419 https://hdl.handle.net/1805/6698 IUPUI Open Access Policy Author Antarctica soluble iron Southern Ocean Article 2015 ftiupui 2023-09-22T14:24:56Z The soluble iron content and dust emission potential of sediment samples collected from the Taylor Valley in the McMurdo Dry Valleys (MDVs) and sea ice in the McMurdo Sound were evaluated to determine whether inputs to the Southern Ocean may be sufficient to affect ocean productivity. Our results show that the dust-generating potential from the MDVs soils are comparable to those of sediments from other major dust sources in the Southern Hemisphere. Sediments from the MDVs and sea ice are one order of magnitude richer in soluble iron than those in other dust sources in the Southern Hemisphere. Forward trajectory analyses show that the dust from the MDVs is likely to be deposited in the Southern Ocean. These results provide evidence of the possible supply of soluble iron to the Southern Ocean associated with dust transport from the MDVs, should climate change expand the exposed areas of the continent. Article in Journal/Newspaper Antarc* Antarctica McMurdo Dry Valleys McMurdo Sound Sea ice Southern Ocean Indiana University - Purdue University Indianapolis: IUPUI Scholar Works McMurdo Dry Valleys McMurdo Sound Southern Ocean Taylor Valley ENVELOPE(163.000,163.000,-77.617,-77.617)
institution Open Polar
collection Indiana University - Purdue University Indianapolis: IUPUI Scholar Works
op_collection_id ftiupui
language English
topic Antarctica
soluble iron
Southern Ocean
spellingShingle Antarctica
soluble iron
Southern Ocean
Bhattachan, Abinash
Wang, Lixin
Miller, Molly F.
Licht, Kathy J.
D'Odorico, Paolo
Antarctica’s Dry Valleys: A potential source of soluble iron to the Southern Ocean?
topic_facet Antarctica
soluble iron
Southern Ocean
description The soluble iron content and dust emission potential of sediment samples collected from the Taylor Valley in the McMurdo Dry Valleys (MDVs) and sea ice in the McMurdo Sound were evaluated to determine whether inputs to the Southern Ocean may be sufficient to affect ocean productivity. Our results show that the dust-generating potential from the MDVs soils are comparable to those of sediments from other major dust sources in the Southern Hemisphere. Sediments from the MDVs and sea ice are one order of magnitude richer in soluble iron than those in other dust sources in the Southern Hemisphere. Forward trajectory analyses show that the dust from the MDVs is likely to be deposited in the Southern Ocean. These results provide evidence of the possible supply of soluble iron to the Southern Ocean associated with dust transport from the MDVs, should climate change expand the exposed areas of the continent.
author2 Department of Earth Sciences, IU School of Science
format Article in Journal/Newspaper
author Bhattachan, Abinash
Wang, Lixin
Miller, Molly F.
Licht, Kathy J.
D'Odorico, Paolo
author_facet Bhattachan, Abinash
Wang, Lixin
Miller, Molly F.
Licht, Kathy J.
D'Odorico, Paolo
author_sort Bhattachan, Abinash
title Antarctica’s Dry Valleys: A potential source of soluble iron to the Southern Ocean?
title_short Antarctica’s Dry Valleys: A potential source of soluble iron to the Southern Ocean?
title_full Antarctica’s Dry Valleys: A potential source of soluble iron to the Southern Ocean?
title_fullStr Antarctica’s Dry Valleys: A potential source of soluble iron to the Southern Ocean?
title_full_unstemmed Antarctica’s Dry Valleys: A potential source of soluble iron to the Southern Ocean?
title_sort antarctica’s dry valleys: a potential source of soluble iron to the southern ocean?
publisher AGU
publishDate 2015
url https://hdl.handle.net/1805/6698
long_lat ENVELOPE(163.000,163.000,-77.617,-77.617)
geographic McMurdo Dry Valleys
McMurdo Sound
Southern Ocean
Taylor Valley
geographic_facet McMurdo Dry Valleys
McMurdo Sound
Southern Ocean
Taylor Valley
genre Antarc*
Antarctica
McMurdo Dry Valleys
McMurdo Sound
Sea ice
Southern Ocean
genre_facet Antarc*
Antarctica
McMurdo Dry Valleys
McMurdo Sound
Sea ice
Southern Ocean
op_source Author
op_relation 10.1002/2015GL063419
Geophysical Research Letters
Bhattachan, A., Wang, L., Miller, M. F., Licht, K. J., & D'Odorico, P. (2015). Antarctica's Dry Valleys: A potential source of soluble iron to the Southern Ocean?. Geophysical Research Letters, 42(6), 1912-1918. http://dx.doi.org/10.1002/2015GL063419
https://hdl.handle.net/1805/6698
op_rights IUPUI Open Access Policy
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