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Pleistocene depositional environments and links to cryosphere-ocean interactions on the eastern Ross Sea continental slope, Antarctica (IODP Hole U1525A)

Authors :
King, Maxine V.
Gales, Jenny A.
Laberg, Jan Sverre
McKay, Robert M.
De Santis, Laura
Kulhanek, Denise K.
Hosegood, Phil J.
Morris, Antony
Ash, Jeanine
Beny, F.
Browne, Imogen
Cortese, G.
Dodd, Justin P.
Esper, Oliver
Harwood, D. M.
Ishino, Saki
Keisling, B.
Kim, S.
Leckie, R. Mark
Müller, Juliane
Patterson, Molly O.
Romans, Brian W.
Romero, Oscar E.
Sangiorgi, Francesca
Seki, Osamu
Shevenell, Amelia E.
Singh, S.
Cordeiro de Sousa, Isabela M.
Sugisaki, Saiko T.
van de Flierdt, Tina
van Peer, T. E.
Xiao, Wenshen
Xiong, Zhifang
King, Maxine V.
Gales, Jenny A.
Laberg, Jan Sverre
McKay, Robert M.
De Santis, Laura
Kulhanek, Denise K.
Hosegood, Phil J.
Morris, Antony
Ash, Jeanine
Beny, F.
Browne, Imogen
Cortese, G.
Dodd, Justin P.
Esper, Oliver
Harwood, D. M.
Ishino, Saki
Keisling, B.
Kim, S.
Leckie, R. Mark
Müller, Juliane
Patterson, Molly O.
Romans, Brian W.
Romero, Oscar E.
Sangiorgi, Francesca
Seki, Osamu
Shevenell, Amelia E.
Singh, S.
Cordeiro de Sousa, Isabela M.
Sugisaki, Saiko T.
van de Flierdt, Tina
van Peer, T. E.
Xiao, Wenshen
Xiong, Zhifang
Source :
EPIC3Marine Geology, 443, pp. 106674, ISSN: 00253227
Publication Year :
2022

Abstract

The repeated proximity of West Antarctic Ice Sheet (WAIS) ice to the eastern Ross Sea continental shelf break during past ice age cycles has been inferred to directly influence sedimentary processes occurring on the continental slope, such as turbidity current and debris flow activity; thus, the records of these processes can be used to study the past history of the WAIS. Ross Sea slope sediments may additionally provide an archive on the history and interplay of density-driven or geostrophic oceanic bottom currents with ice-sheet-driven depositional mechanisms. We investigate the upper 121 m of Hole U1525A, collected during International Ocean Discovery Program (IODP) Expedition 374 in 2018. Hole U1525A is located on the southwestern external levee of the Hillary Canyon (Ross Sea, Antarctica) and the depositional lobe of the nearby trough-mouth fan. Using core descriptions, grain size analysis, and physical properties datasets, we develop a lithofacies scheme that allows construction of a detailed depositional model and environmental history of past ice sheet-ocean interactions at the eastern Ross Sea continental shelf break/slope since ~2.4 Ma. The earliest Pleistocene interval (~2.4- ~ 1.4 Ma) represents a hemipelagic environment dominated by ice-rafting and reworking/deposition by relatively persistent bottom current activity. Finely interlaminated silty muds with ice-rafted debris (IRD) layers are interpreted as contourites. Between ~1.4 and ~0.8 Ma, geostrophic bottom current activity was weaker and turbiditic processes more common, likely related to the increased proximity of grounded ice at the shelf edge. Silty, normally-graded laminations with sharp bases may be the result of flow-stripped turbidity currents overbanking the canyon levee during periods when ice was grounded at or proximal to the shelf edge. A sandy, IRD- and foraminifera-bearing interval dated to ~1.18 Ma potentially reflects warmer oceanographic conditions and a period of stronger Antarcti

Details

Database :
OAIster
Journal :
EPIC3Marine Geology, 443, pp. 106674, ISSN: 00253227
Publication Type :
Electronic Resource
Accession number :
edsoai.on1337064968
Document Type :
Electronic Resource