日本地球惑星科学連合2024年大会

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[J] ポスター発表

セッション記号 A (大気水圏科学) » A-OS 海洋科学・海洋環境

[A-OS15] 海洋化学・生物学

2024年5月26日(日) 17:15 〜 18:45 ポスター会場 (幕張メッセ国際展示場 6ホール)

コンビーナ:安中 さやか(東北大学)、渡部 裕美(海洋研究開発機構)

17:15 〜 18:45

[AOS15-P02] 過去42万年間における東インド洋の古海洋環境変動:インドネシア通過流とルーウィン海流の長期変動について

*川島 葉南1高柳 栄子1黒柳 あずみ1若木 重行2木本 ゆうな1、若公 良太1石川 剛志3井龍 康文1 (1.東北大学、2.国立歴史民俗博物館、3.海洋研究開発機構)

キーワード:氷期-間氷期サイクル、同位体比、ルーウィン海流、インドネシア通過流

The Indonesian Throughflow (ITF) and Leeuwin Current (LC) play crucial roles in transporting high-temperature, low-salinity water from the Western Pacific Warm Pool to the subarctic region, significantly influencing the climate, ocean environments, and coral reef ecosystems in and around Western Australia. Although recent oceanographic observations have provided insights into the seasonal to multidecadal dynamics of the ITF and LC and the factors contributing to their variability, our understanding of their long-term variability remains limited. For example, the timing of the initiation and evolution of the recent ITF-LC system still needs to be fully understood. In this study, we analyzed the oxygen isotope composition (δ18O) of four planktic foraminiferal species and the neodymium isotope composition (εNd) of bulk benthic foraminifers in carbonate sediment cores from IODP Expedition 356 sites U1460 and U1464 to delineate long-term paleoenvironmental evolution of the eastern Indian Ocean over the past 420,000 years. The four planktic foraminiferal species are surface-dwelling species Globigerinoides ruber and Trilobatus sacculifer, and intermediate thermocline species Neogloboquadrina dutertrei and Pulleniatina obliquiloculata.

Our δ18O results showed a continuous long-term decreasing trend in δ18O over the past 420,000 years. A similar long-term increasing trend of εNd values was observed at both sites. Furthermore, at Site U1464, the δ18O variation of G. ruber preceded that of the other species, suggesting that the timing of δ18O fluctuations depends on the depth at which those planktic foraminiferal species lived. These results indicate that the temperature and salinity in the eastern Indian Ocean region have gradually become warmer and less saline due to the enhanced contribution of Pacific-origin seawater, suggesting that the ITF and LC may have strengthened throughout the past 420,000 years.