日本地球惑星科学連合2025年大会

講演情報

[E] ポスター発表

セッション記号 M (領域外・複数領域) » M-IS ジョイント

[M-IS06] Evolution and variability of the Tropical Monsoon and Indo-Pacific climate during the Cenozoic Era

2025年5月29日(木) 17:15 〜 19:15 ポスター会場 (幕張メッセ国際展示場 7・8ホール)

コンビーナ:松崎 賢史(東京大学 大気海洋研究所)、佐川 拓也(金沢大学理工研究域)、Ho Sze Ling(Institute of Oceanography, National Taiwan University)、Gallagher Stephen J(University of Melbourne)

17:15 〜 19:15

[MIS06-P06] Biotic response of deep-sea benthic foraminifera in the northeast tropical Indian Ocean during MIS 15–13 at the onset of the mid-Brunhes dissolution interval

*高田 裕行1池原 実2、瀬戸 浩二3、朝日 博文4、Lim Hyoun Soo5、Hyun Sangmin6、Khim Boo-Keun7 (1.BK21 School of Earth and Environmental Systems, Pusan National University、2.Marine Core Research Institute, Kochi University、3.Estuary Research Center, Shimane University、4.Fukui Prefectural Satoyama-Satoumi Research Institute、5.Department of Geological Science, Pusan National University、6.Marine Environmental Research Division, Korea Institute of Ocean Science and Technology、7.Deparment of Oceanography, Pusan National University)

キーワード:particulate organic matter、ballasting effect、depth habitat、faunal analysis

Marine Isotope Stage (MIS) 15–12 is an important period to understand a succession of various paleoclimatic/paleoceanographic events at the onset of the mid-Brunhes dissolution interval (~533–191 ka) (e.g., Barth et al., 2018). MIS 13 was characterized by asymmetrical patterns of temperature and precipitation between the hemispheres, northward displacement of InterTropical Convergence Zone (ITCZ), and global carbon cycle changes (e.g., Ao et al., 2020). We investigated fossil deep-sea benthic foraminifera and sediment geochemistry (11 major elements by XRF analysis) during ~670–440 ka (MIS 16–12) at ODP Site 758 and core GPC03 (2925 m and 3650 m water depth, respectively) in the northeast tropical Indian Ocean (~5°N, ~90°E), noting the relationship between the paleoceanographic conditions of the surface and deep oceans in the low-latitude ocean.

Two multidimensional scaling (MDS) axes were recognized in the benthic foraminiferal faunas. MDS axis 1 is related to the specific depth habitats of benthic foraminiferal faunas possibly with trophic level, whereas MDS axis 2 may be related to the low food supply with episodic food pulses/relatively stable low food flux. The difference of MDS axis 1 between ODP Site 758 and core GPC03 was smaller during ~610–560 ka (MIS 15), whereas it was larger during ~560–480 ka (MIS 14–13). MDS axis 2 showed generally similar stratigraphic variations between the two cores during ~610–560 ka, whereas it was different during ~560–480 ka. The proportion of lithogenic matter to biogenic carbonate was also relatively low during ~610–530 ka under the highstand. Thus, both the lithogenic supply and the depth gradient of benthic foraminiferal faunas between the two cores were changed across MIS 15/14 (~570–540 ka).

At ODP Site 758, the decrease of planktonic foraminifera, Globigerina bulloides across MIS 15/14 implies the long-term weakening of wind-driven mixing of the surface water (Chen and Farrell, 1992). It seemed to be caused by the weakening of the Indian summer monsoon at that time, possibly with the northward displacement of the ITCZ (e.g., Ao et al., 2020). In our study area, the depth gradient of the benthic foraminiferal faunas may be controlled by the linkage between the surface and deep oceans that was altered transiently but significantly across MIS 15/14, possibly through the particulate organic matter ballasting by calcareous plankton skeletons and/or lithogenic matter.

References:
1. Barth et. al., 2018. Climate evolution across the Mid-Brunhes Transition. Climate of the Past, 14, 2071–2087.
2. Ao et. al., 2020. wo-stage mid-Brunhes climatic transition and mid-Pleistocene human diversification. Earth-Science Reviews, 210, 103354.
3. Chen and Farrell, 1992. Planktonic foraminifer faunal variations in the northeastern Indian Ocean: A high-resolution record of the past 800000 years from Site 758. ODP Scientific Results, 121, 125–140.