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  4. Controls on Terrigenous Detritus Deposition and Oceanography Changes in the Central Okhotsk Sea Over the Past 1550?ka
 
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Controls on Terrigenous Detritus Deposition and Oceanography Changes in the Central Okhotsk Sea Over the Past 1550?ka

Journal
Frontiers in Earth Science
Journal Volume
9
Date Issued
2021
Author(s)
Chou Y.-M
Jiang X
Lo L
Wang L.-C
Lee T.-Q
Wang C.-C
Pan Y
Zou J
Humbert F
LI LO  
DOI
10.3389/feart.2021.683984
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85119067118&doi=10.3389%2ffeart.2021.683984&partnerID=40&md5=93b3f2b54b6c488b51d1b85687bd2093
https://scholars.lib.ntu.edu.tw/handle/123456789/606228
Abstract
The Okhotsk Sea, which connects the high latitude Asian continent and the North Pacific, plays an important role in modern and past climate changes due to seasonal sea ice coverage and as a precursor of the North Pacific Intermediate Water. The long-term glacial-interglacial changes of sea ice coverage and its impacts on terrigenous transport and surface primary productivity in the Okhotsk Sea remain, however, not well constrained. Base on the paleomagnetic, rock magnetic, micropaleontological (diatom), and geochemical studies of the marine sediment core MD01-2414 (53°11.77′N, 149°34.80′E, water depth: 1,123?m) taken in the central Okhotsk Sea, we reconstruct the terrigenous sediment transport and paleoceanographic variations during the past 1550 thousand years (kyr). Seventeen geomagnetic excursions are identified from the paleomagnetic directional record. Close to the bottom of the core, an excursion was observed, which is proposed to be the Gilsa event ?1550 thousand years ago (ka). During glacial intervals, our records reveal a wide extension of sea ice coverage and low marine productivity. We observed ice-rafted debris from mountain icebergs composed of coarse and high magnetic terrigenous detritus which were derived from the Kamchatka Peninsula to the central Okhotsk basin. Still during glacial intervals, the initiation (i.e., at ?900?ka) of the Mid-Pleistocene Transition marks the changes to even lower marine productivity, suggesting that sea-ice coverage became larger during the last 900 ka. During interglacial intervals, the central Okhotsk Sea was either devoid of sea-ice or the ice was at best seasonal; resulting in high marine productivity. The weaker formation of Okhotsk Sea Intermediate Water, lower ventilation, and microbial degradation of organic matter depleted the oxygen concentration in the bottom water and created a reduced environment condition in the sea basin. The freshwater supplied by snow or glacier melting from Siberia and Kamchatka delivered fine grain sediments to the Okhotsk Sea. During the stronger interglacial intervals after the Mid-Brunhes Transition (i.e., Marine Isotope Stages 1, 5e, 9, and 11), strong freshwater discharges from Amur River drainage area are in association with intensified East Asian Summer Monsoon. This process may have enhanced the input of fine-grained terrigenous sediments to the central Okhotsk Sea. Copyright ? 2021 Chou, Jiang, Lo, Wang, Lee, Wang, Pan, Zou, Humbert and Liu.
Subjects
mid-brunhes transition
mid-pleistocene transition
Okhotsk Sea
paleoenvironment
paleomagnetism
climate change
deposition
glacial-interglacial cycle
ice cover
marine sediment
oceanography
paleoceanography
Pleistocene
sea ice
sediment core
sediment transport
Pacific Ocean
Sea of Okhotsk
Bacillariophyta
SDGs

[SDGs]SDG13

[SDGs]SDG15

Type
journal article

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