El Niño-Southern Oscillation and East Asian Monsoon controlled Kuroshio Current evolution over the last 42 kyr

Kuroshio Current (KC) plays a significant role in global climate change by transporting high-temperature and high-salinity water from low-latitude to mid-high-latitude waters. However, the KC evolution and its main controlling factors remained unclear on the orbital timescales. Here, we research the...

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Published inPalaeogeography, palaeoclimatology, palaeoecology Vol. 637; p. 111981
Main Authors Liu, Sheng, Zhang, Zhishun, Yang, Jun, Zhao, Yanyan, Zhang, Xia, Hu, Bangqi, Zhang, Guanglu, Yang, Dandan, Sun, Guojing, Wei, Haotian, Wu, Jiaqing, Guo, Xiaoqiang, Zhang, Yaru, Li, Sanzhong, Zhu, Junjiang
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.03.2024
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Abstract Kuroshio Current (KC) plays a significant role in global climate change by transporting high-temperature and high-salinity water from low-latitude to mid-high-latitude waters. However, the KC evolution and its main controlling factors remained unclear on the orbital timescales. Here, we research the comprehensive record of high-resolution terrigenous mass accumulation rate (MAR), grain size, SrNd isotopic compositions of clay-size fractions and clay mineral assemblages in core SCS0003 sediments from the northern slope of the South China Sea (SCS) since 42 kyr. The SrNd isotope compositions (<2 μm) and clay minerals illustrate that the smectite mainly came from Luzon Island, with a small content of smectite during the last glacial period, but an increase by about 3–4 times during the Holocene. Furthermore, the smectite MAR flux indicates that the intensity of KC intrusion of the SCS was consistent with the intensity of the open Pacific over the last 42 kyr, which was different from the opposite trend proposed by predecessors. Then it further reveals that the KC was relatively weak and stable in the last glacial period as a whole, but overall became stronger with a larger amplitude in the Holocene, with an increase in the early Holocene and a decline in the middle and late Holocene. Moreover, since 42 kyr El Niño-Southern Oscillation (ENSO) and East Asian monsoon (EAM) controlled by the insolation change in the Earth's precession were the major driving mechanisms of KC evolution, instead of ENSO as the only main controlling factor. On the orbital timescales, our results emphasize that low-latitude processes by the variation of insolation on the precession are very important in driving global climate change, not just high-latitude processes. •The provenance indicates that the smectite mainly came from Luzon Island.•The change of KC intensity of the SCS was consistent with that of the open Pacific.•ENSO and EAM were the major driving mechanisms of KC evolution.•Our research emphasizes the importance of the low-latitude process in global climate change.
AbstractList Kuroshio Current (KC) plays a significant role in global climate change by transporting high-temperature and high-salinity water from low-latitude to mid-high-latitude waters. However, the KC evolution and its main controlling factors remained unclear on the orbital timescales. Here, we research the comprehensive record of high-resolution terrigenous mass accumulation rate (MAR), grain size, SrNd isotopic compositions of clay-size fractions and clay mineral assemblages in core SCS0003 sediments from the northern slope of the South China Sea (SCS) since 42 kyr. The SrNd isotope compositions (<2 μm) and clay minerals illustrate that the smectite mainly came from Luzon Island, with a small content of smectite during the last glacial period, but an increase by about 3–4 times during the Holocene. Furthermore, the smectite MAR flux indicates that the intensity of KC intrusion of the SCS was consistent with the intensity of the open Pacific over the last 42 kyr, which was different from the opposite trend proposed by predecessors. Then it further reveals that the KC was relatively weak and stable in the last glacial period as a whole, but overall became stronger with a larger amplitude in the Holocene, with an increase in the early Holocene and a decline in the middle and late Holocene. Moreover, since 42 kyr El Niño-Southern Oscillation (ENSO) and East Asian monsoon (EAM) controlled by the insolation change in the Earth's precession were the major driving mechanisms of KC evolution, instead of ENSO as the only main controlling factor. On the orbital timescales, our results emphasize that low-latitude processes by the variation of insolation on the precession are very important in driving global climate change, not just high-latitude processes. •The provenance indicates that the smectite mainly came from Luzon Island.•The change of KC intensity of the SCS was consistent with that of the open Pacific.•ENSO and EAM were the major driving mechanisms of KC evolution.•Our research emphasizes the importance of the low-latitude process in global climate change.
ArticleNumber 111981
Author Hu, Bangqi
Liu, Sheng
Yang, Dandan
Yang, Jun
Zhu, Junjiang
Zhang, Zhishun
Zhang, Xia
Zhao, Yanyan
Wei, Haotian
Wu, Jiaqing
Guo, Xiaoqiang
Li, Sanzhong
Zhang, Yaru
Zhang, Guanglu
Sun, Guojing
Author_xml – sequence: 1
  givenname: Sheng
  surname: Liu
  fullname: Liu, Sheng
  organization: Key Laboratory of Submarine Geosciences and Prospecting Technique, Ministry of Education, Institute for Advanced Ocean Study, Ocean University of China, Qingdao 266100, China
– sequence: 2
  givenname: Zhishun
  surname: Zhang
  fullname: Zhang, Zhishun
  organization: Key Laboratory of Submarine Geosciences and Prospecting Technique, Ministry of Education, Institute for Advanced Ocean Study, Ocean University of China, Qingdao 266100, China
– sequence: 3
  givenname: Jun
  surname: Yang
  fullname: Yang, Jun
  organization: Key Laboratory of Submarine Geosciences and Prospecting Technique, Ministry of Education, Institute for Advanced Ocean Study, Ocean University of China, Qingdao 266100, China
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  givenname: Yanyan
  surname: Zhao
  fullname: Zhao, Yanyan
  email: zhaoyanyan@ouc.edu.cn
  organization: Key Laboratory of Submarine Geosciences and Prospecting Technique, Ministry of Education, Institute for Advanced Ocean Study, Ocean University of China, Qingdao 266100, China
– sequence: 5
  givenname: Xia
  surname: Zhang
  fullname: Zhang, Xia
  organization: State Key Laboratory for Mineral Deposits Research, School of Earth Sciences and Engineering, Nanjing University, Nanjing 210023, China
– sequence: 6
  givenname: Bangqi
  surname: Hu
  fullname: Hu, Bangqi
  organization: Laboratory for Marine Mineral Resources, Laoshan Laboratory, Qingdao 266100, China
– sequence: 7
  givenname: Guanglu
  surname: Zhang
  fullname: Zhang, Guanglu
  organization: Key Laboratory of Submarine Geosciences and Prospecting Technique, Ministry of Education, Institute for Advanced Ocean Study, Ocean University of China, Qingdao 266100, China
– sequence: 8
  givenname: Dandan
  surname: Yang
  fullname: Yang, Dandan
  organization: Qinghua Middle School in Yantai, Yantai 264000, China
– sequence: 9
  givenname: Guojing
  surname: Sun
  fullname: Sun, Guojing
  organization: Key Laboratory of Submarine Geosciences and Prospecting Technique, Ministry of Education, Institute for Advanced Ocean Study, Ocean University of China, Qingdao 266100, China
– sequence: 10
  givenname: Haotian
  surname: Wei
  fullname: Wei, Haotian
  organization: Key Laboratory of Submarine Geosciences and Prospecting Technique, Ministry of Education, Institute for Advanced Ocean Study, Ocean University of China, Qingdao 266100, China
– sequence: 11
  givenname: Jiaqing
  surname: Wu
  fullname: Wu, Jiaqing
  organization: Institute of Marine Geological Survey, Fujian Xiamen Institute of Geological Engineering, Xiamen 361008, China
– sequence: 12
  givenname: Xiaoqiang
  surname: Guo
  fullname: Guo, Xiaoqiang
  organization: Key Laboratory of Submarine Geosciences and Prospecting Technique, Ministry of Education, Institute for Advanced Ocean Study, Ocean University of China, Qingdao 266100, China
– sequence: 13
  givenname: Yaru
  surname: Zhang
  fullname: Zhang, Yaru
  organization: Key Laboratory of Submarine Geosciences and Prospecting Technique, Ministry of Education, Institute for Advanced Ocean Study, Ocean University of China, Qingdao 266100, China
– sequence: 14
  givenname: Sanzhong
  surname: Li
  fullname: Li, Sanzhong
  organization: Key Laboratory of Submarine Geosciences and Prospecting Technique, Ministry of Education, Institute for Advanced Ocean Study, Ocean University of China, Qingdao 266100, China
– sequence: 15
  givenname: Junjiang
  surname: Zhu
  fullname: Zhu, Junjiang
  organization: Key Laboratory of Submarine Geosciences and Prospecting Technique, Ministry of Education, Institute for Advanced Ocean Study, Ocean University of China, Qingdao 266100, China
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Keywords El Niño-Southern Oscillation
East Asian monsoon
South China Sea
Kuroshio Current evolution
Low-latitude processes
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Snippet Kuroshio Current (KC) plays a significant role in global climate change by transporting high-temperature and high-salinity water from low-latitude to...
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StartPage 111981
SubjectTerms East Asian monsoon
El Niño-Southern Oscillation
Kuroshio Current evolution
Low-latitude processes
South China Sea
Title El Niño-Southern Oscillation and East Asian Monsoon controlled Kuroshio Current evolution over the last 42 kyr
URI https://dx.doi.org/10.1016/j.palaeo.2023.111981
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