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Cited 6 time in webofscience Cited 7 time in scopus
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Deep-Water Circulation over the Last Two Glacial Cycles Reconstructed from Authigenic Neodymium Isotopes in the Equatorial Indian Ocean (Core HI1808-GPC04)open access

Authors
Bang, SunhwaHuh, YoungsookKhim, Boo-KeunTakata, HiroyukiIkehara, MinoruHyeong, KiseongSeo, InahCho, HyenGoo
Issue Date
Jun-2022
Publisher
한국해양과학기술원
Keywords
Authigenic carbonate; Deep-water circulation; Foraminifera; Indian Ocean paleoceanography; Nd isotopes
Citation
Ocean Science Journal, v.57, no.2, pp 324 - 333
Pages
10
Indexed
SCIE
SCOPUS
KCI
Journal Title
Ocean Science Journal
Volume
57
Number
2
Start Page
324
End Page
333
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/71912
DOI
10.1007/s12601-021-00046-8
ISSN
1738-5261
2005-7172
Abstract
We reconstructed the past deep-water character of the equatorial Indian Ocean using the isotope ratio of neodymium (epsilon(Nd)) in the Fe-Mn coating of mixed-species foraminifera. When compared with previous epsilon(Nd) records at the same site (ODP 758) and at another site to the west (SK 129), the three datasets were consistent and showed glacial-interglacial variations, even though the other two records were extracted from different media (cleaned foraminifera and bulk sediment leach). This confirms that while the foraminiferal coating is the preferred medium for reconstructing past bottom water epsilon(Nd) records, for carbonate-dominated lithologies, weak acid extraction of bulk sediment is also a viable option offering high-resolution capabilities. When the lithology includes volcanic particles or high organics, the extraction protocol may need to be adjusted to guard against detrital contamination or a slight correction may need to be applied. During glacials, the deep waters bathing the equatorial Indian Ocean had a larger AABW component and during interglacials a larger NADW component. Our HI1808-GPC04 record supplements the ODP 758 record in the interval with prominent AABW signal (MIS 6/5 transition and MIS 7) and reveals regional effects in some non-radiogenic intervals. The smaller differences between the HI1808-GPC04/ODP 758 and SK 129 records seem to reflect regional Nd input from river systems and non-radiogenic Nd from the boundaries.
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