日本地球惑星科学連合2015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-IS28] 東アジア‐北西太平洋域高解像度古気候観測網

2015年5月28日(木) 11:00 〜 12:45 202 (2F)

コンビーナ:*多田 隆治(東京大学大学院理学系研究科地球惑星科学専攻)、中川 毅(立命館大学)、池原 研(産業技術総合研究所地質情報研究部門)、山本 正伸(北海道大学大学院地球環境科学研究院)、座長:長島 佳菜(海洋研究開発機構 地球環境観測研究開発センター)

11:45 〜 12:00

[MIS28-20] 高解像度の時空間古海洋復元のための微化石アーカイブ

*久保田 好美1木元 克典2齋藤 めぐみ1 (1.国立科学博物館、2.海洋研究開発機構)

The microfossils usually provide qualitative rather than quantitative paleoceanographic information. The transfer function methods have been developed in several microfossil groups, sometimes providing the quantitative information such as sea surface temperature and salinity. The global sea surface temperature reconstruction by CLIMAP project based on the microfossil assemblages is generally reproduced well by simulation results and consistent with geochemical proxies, suggesting the usefulness of the microfossil data as one of the quantitative paleoceanographic archives in glacial-interglacial time scale. However, there are several issues to deal with for the time-series paleoceanographic reconstruction with high time resolution. For example, a temporal variability of the summer sea surface temperature based on the transfer function of planktic foraminiferal assemblage sometimes does not match up well with the high time resolution geochemical proxies such as Mg/Ca that is thought to reflect summer surface temperature as well. This discrepancy is probably owing to difference in seasonality among the proxies and/or effect of the other factors such as salinity or nutrient on the microfossil assemblages, which should be assessed to illustrate more probable ocean environment in the past. Nevertheless, so far, there is accumulation of microfossil data in the northwestern Pacific including marginal seas. We will present how we utilize the microfossil data as a quantitative marine environment archive, listing the challenges to integrate into the other proxies.