10Be and 10Be/9Be in glaciomarine sediments of Ross Sea, Antarctica: Implications for mid-late Quaternary paleoenvironmental changes
- Authors
- Dash, C.; Lee, M.K.; Seong, Y.B.; Rhee, H.H.; Lee, J.I.; Yoo, K.-C.
- Issue Date
- 2021
- Publisher
- Korean Association of Geoscience Societies
- Keywords
- Antarctica; Be isotope; Glacier; Pleistocene; Ross Sea
- Citation
- Journal of the Geological Society of Korea, v.57, no.5, pp.691 - 705
- Indexed
- SCOPUS
KCI
- Journal Title
- Journal of the Geological Society of Korea
- Volume
- 57
- Number
- 5
- Start Page
- 691
- End Page
- 705
- URI
- https://scholar.korea.ac.kr/handle/2021.sw.korea/138445
- DOI
- 10.14770/jgsk.2021.57.5.691
- ISSN
- 0435-4036
- Abstract
- This study documents the variation of Be isotopes (10Be and 9Be) and their ratio (10Be/9Be) from a Ross Sea sediment core (LC42) with relation to mid to late Pleistocene geomagnetic and paleoclimatic changes. Significant changes in Be isotope concentration are observed during pre and post-Mid-Pleistocene Transition (MPT) periods. The 10Be concentration and 10Be/9Be ratio show a gradual decrease during the late Matuyama Chron, suggesting a relative increase in geomagnetic intensity. The overproduction episode associated with the Matuyama-Brunhes Boundary (MBB) does not show any pre- MBB precursor event. The progressively decreasing trend observed in 10Be and 10Be/9Be ratio records from 1 to 0.8 Ma, with minimum values at around 0.8 Ma, suggests a relatively open sea condition during the early part of MPT and an extended glacial condition around MIS 22. The 10Be and 10Be/9Be ratios are approximately constant during the pre-Mid Bruhnes Event (MBE) period and show a gradual increase after the MBE, indicating a climatic transition from colder (pre-MBE) to relatively warmer (post-MBE) conditions. © 2021 The Geological Society of Korea. All rights reserved.
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