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Monsoon forcing, hydrodynamics of the Kuroshio Current, and tectonic effects on sedimentary carbon and sulfur cycling in the Okinawa Trough since 90 ka

Monsoon forcing, hydrodynamics of the Kuroshio Current, and tectonic effects on sedimentary carbon and sulfur cycling in the Okinawa Trough since 90 ka
Monsoon forcing, hydrodynamics of the Kuroshio Current, and tectonic effects on sedimentary carbon and sulfur cycling in the Okinawa Trough since 90 ka
Monsoon forcing and hydrodynamic effects controlled carbon and sulfur biogeochemistry over the last 90 ka in a 43-m core from the Okinawa Trough (OT). Total organic carbon (TOC) contents co-vary with summer insolation at 30°N suggesting monsoon forcing of primary productivity and organic carbon burial. Before the last glacial maximum (LGM), total sulfur (TS) contents varied concomitantly with TOC. However, sea level rise and intensified Kuroshio inflow during the Holocene enhanced deepwater ventilation, which resulted in TS-depleted sediments with low degree of pyritization (DOP). By contrast, DOP values were high during the previous highstand (at ~80 ka BP), when sea level was similar to that in the Holocene, as well as during the LGM when deepwater circulation was relatively weak. A topographic barrier is proposed to have sufficiently blocked the Kuroshio Current out of the OT during the previous sea level highstand, which weakened deepwater ventilation and led to reducing diagenetic conditions. Tectonic rifting in the southern OT at 60-30 ka BP enabled the major change in hydrodynamics and sediment biogeochemistry.
0094-8276
L05610
Kao, S.J.
b9705ff0-8602-4205-b0a6-ebc2c117b2a3
Roberts, A.P.
4497b436-ef02-428d-a46e-65a22094ba52
Hsu, S.C.
4c18cb22-aca9-4986-ba87-bc87df067091
Chang, Y.P.
cd63daa6-3219-4375-9411-4e1de0f48589
Lyons, W.B.
532c919e-152c-460c-9b77-b79968fd766d
Chen, M.T.
7f453f80-560d-4987-b6f1-fd7d35f5c0c7
Kao, S.J.
b9705ff0-8602-4205-b0a6-ebc2c117b2a3
Roberts, A.P.
4497b436-ef02-428d-a46e-65a22094ba52
Hsu, S.C.
4c18cb22-aca9-4986-ba87-bc87df067091
Chang, Y.P.
cd63daa6-3219-4375-9411-4e1de0f48589
Lyons, W.B.
532c919e-152c-460c-9b77-b79968fd766d
Chen, M.T.
7f453f80-560d-4987-b6f1-fd7d35f5c0c7

Kao, S.J., Roberts, A.P., Hsu, S.C., Chang, Y.P., Lyons, W.B. and Chen, M.T. (2006) Monsoon forcing, hydrodynamics of the Kuroshio Current, and tectonic effects on sedimentary carbon and sulfur cycling in the Okinawa Trough since 90 ka. Geophysical Research Letters, 33 (5), L05610. (doi:10.1029/2005GL025154).

Record type: Article

Abstract

Monsoon forcing and hydrodynamic effects controlled carbon and sulfur biogeochemistry over the last 90 ka in a 43-m core from the Okinawa Trough (OT). Total organic carbon (TOC) contents co-vary with summer insolation at 30°N suggesting monsoon forcing of primary productivity and organic carbon burial. Before the last glacial maximum (LGM), total sulfur (TS) contents varied concomitantly with TOC. However, sea level rise and intensified Kuroshio inflow during the Holocene enhanced deepwater ventilation, which resulted in TS-depleted sediments with low degree of pyritization (DOP). By contrast, DOP values were high during the previous highstand (at ~80 ka BP), when sea level was similar to that in the Holocene, as well as during the LGM when deepwater circulation was relatively weak. A topographic barrier is proposed to have sufficiently blocked the Kuroshio Current out of the OT during the previous sea level highstand, which weakened deepwater ventilation and led to reducing diagenetic conditions. Tectonic rifting in the southern OT at 60-30 ka BP enabled the major change in hydrodynamics and sediment biogeochemistry.

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Published date: 2006
Organisations: Ocean and Earth Science

Identifiers

Local EPrints ID: 44731
URI: http://eprints.soton.ac.uk/id/eprint/44731
ISSN: 0094-8276
PURE UUID: 76643945-b12f-4927-949d-f31c21f677be

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Date deposited: 09 Mar 2007
Last modified: 15 Mar 2024 09:06

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Contributors

Author: S.J. Kao
Author: A.P. Roberts
Author: S.C. Hsu
Author: Y.P. Chang
Author: W.B. Lyons
Author: M.T. Chen

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