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Reduced scavenging of [formula omitted] in the Weddell Sea: implications for paleoceanographic reconstructions in the South Atlantic
The scavenging of 230 Th and 231 Pa was investigated in the central Weddell Sea by combining results from a sediment trap and three sediment cores. Scavenging of both radionuclides is closely coupled with the annual cycle of particle fluxes. For 230 Th the mean radionuclide flux measured in the trap...
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Published in: | Deep-sea research. Part I, Oceanographic research papers Oceanographic research papers, 2000-07, Vol.47 (7), p.1369-1387 |
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Main Authors: | , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | The scavenging of
230
Th
and
231
Pa
was investigated in the central Weddell Sea by combining results from a sediment trap and three sediment cores. Scavenging of both radionuclides is closely coupled with the annual cycle of particle fluxes. For
230
Th
the mean radionuclide flux measured in the trap is only 40% of its expected flux from production in the water column. This value is in excellent agreement with the long-term record in the sediment cores (33–43%). Similar results were obtained for
231
Pa
, although burial fluxes are generally higher. The data suggest that during the last 130
ka the Weddell Sea has been a net source for both radionuclides, with more than half of the
230
Th
and about half of the
231
Pa
being exported. As a consequence,
230
Th
normalized rain rates (assuming a constant flux equal to the production rate) overestimate the true rain rate in the Weddell Sea by 150%. The laterally transported
230
Th
and
231
Pa
activity exits the Weddell Sea to the north, where it is incorporated into the eastward flowing Antarctic Circumpolar Current (ACC). There it is scavenged in addition to local production. During its residence time in the S-Atlantic sector of the ACC about 3/4 of the dissolved
230
Th
imported from the Weddell Sea is transferred onto particles. Whether this particulate
230
Th
is entirely deposited in the S-Atlantic or is distributed over a larger area extending into the Indian and Pacific sectors of the ACC remains an open question. In the ACC, Th-normalization therefore leads to an underestimation of fluxes, but the effect is probably less than 50%. Interglacial–glacial shifts in the position of the productive belt are believed to cause temporal and regional variations in the depositon rate for
230
Th
. |
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ISSN: | 0967-0637 |
DOI: | 10.1016/S0967-0637(99)00094-1 |