日本地球惑星科学連合2021年大会

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セッション記号 M (領域外・複数領域) » M-IS ジョイント

[M-IS16] 古気候・古海洋変動

2021年6月4日(金) 15:30 〜 17:00 Ch.26 (Zoom会場26)

コンビーナ:岡崎 裕典(九州大学大学院理学研究院地球惑星科学部門)、長谷川 精(高知大学理工学部)、山崎 敦子(九州大学大学院理学研究院)、山本 彬友(国立研究開発法人 海洋研究開発機構)、座長:岡崎 裕典(九州大学大学院理学研究院地球惑星科学部門)

16:22 〜 16:37

[MIS16-09] Paleoenvironmental reconstruction of the North Pacific Subtropical Mode Water
at the Last Glacial Maximum based on carbon- and oxygen-isotope composition of
fossil brachiopod Basiliola lucida

*菅澤 陽奈1、高柳 栄子1、横山 祐典2、板木 拓也3、宮島 利宏2、井龍 康文1 (1.東北大学大学院理学研究科地学専攻、2.東京大学大気海洋研究所、3.産業技術総合研究所)

キーワード:北太平洋亜熱帯モード水、最終氷期最盛期、炭素同位体比、酸素同位体比、腕足動物

The North Pacific Subtropical Mode Water (STMW) is distributed along the southern side
of the Kuroshio Current and the Kuroshio Extension in the western North Pacific Ocean. Long-term
oceanographic data along the 137°E meridian south of Japan and profiling float CTD data from the
International Argo Program showed that the STMW is absorbing a large amount of heat and CO2
from the atmosphere to ocean, indicating that the STMW can serve as heat and CO2 reservoir under
recent global warming. Therefore, it is likely that the STMW has acted as an important
positive/negative feedback on climate change at various time scales. However, a little is known
about the behavior and changes in physical properties and chemical composition of the STMW on a
long-term scale because instrumental data recording temporal variations of the STMW is limited to
those after 1900’s. Consequently, proxy records of the past STMW are required to improve and
deepen our knowledge about dynamics of the STMW and the associated feedback effect. It is known
that modern brachiopod Basiliola lucida around the Ryukyu Islands is mainly living in a range of the
STMW, namely on the shelf slope at water depths of 200–300 m and that carbon- and oxygen-
isotope composition of this brachiopod shells is useful to reconstruct the dissolved inorganic carbon
concentration and seawater temperature of the ambient seawater. In this study, we first show an
optimal way to reconstruct secular variations in the physical properties and chemical composition of
the STMW with high accuracy and precision using carbon- and oxygen-isotope composition of
semi-fossil B. lucida shells collected off the Ryukyu Islands. Then, we apply the way to fossil B.
lucida
shells dated to the Last Glacial Maximum (LGM). Finally, we will present the B. lucida-based
seawater temperature/salinity and dissolved inorganic carbon concentration of the STMW at the
LGM.