日本中部博索半岛下更新世氧同位素地层学和钙质纳米化石生物地层学

IF 0.9 3区 地球科学 Q3 GEOLOGY
D. Kuwano, Y. Kubota, K. Mantoku, K. Kameo
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引用次数: 3

摘要

摘要/ ABSTRACT摘要:通过对日本太平洋沿岸中部博索半岛Kazusa群中Kiwada组上段氧同位素地层学和钙质纳米化石生物地层学的研究,建立了西北太平洋地区更新世下段纳米化石生物地层的高分辨率年龄模型,并对其进行了年龄估算。新时代模型表明,Kiwada组上部对应于海相同位素阶段(MIS) 41 ~ MIS 36。在研究剖面上记录了两个纳米化石生物层,即大型Gephyrocapsa(>5.5微米)和Helicosphaera sellii的最后出现。大型Gephyrocapsa sp .的LO与MIS 37/38边界一致,为1241.2±0.4 ka。H. sellii的LO位于MIS 40后期,计算年龄为1291.4±1.4 ka。这些生物视界是可追溯的,即使H. sellii的LO是一个历时性事件。讨论了近1250 ka以来Gephyrocapsa的大小变化,认为小尺寸Gephyrocapsa的波动可以代表黑潮和漂潮的周期变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Oxygen isotope stratigraphy and calcareous nannofossil biostratigraphy of the Lower Pleistocene in the Boso Peninsula, central Japan
ABSTRACT: Oxygen isotope stratigraphy and calcareous nannofossil biostratigraphy in the upper part of the Kiwada Formation, which is part of the Kazusa Group in the Boso Peninsula in the central part of the Pacific coast of Japan, were examined to establish a high-resolution age model and estimate the age of the lower part of Pleistocene nannofossil biohorizons in the northwestern Pacific region. The new age model indicates that the upper part of the Kiwada Formation corresponds to Marine Isotope Stage (MIS) 41 through MIS 36. Two nannofossil biohorizons, the last occurrences of large forms of Gephyrocapsa (>5.5 micrometers) and Helicosphaera sellii,were recorded in the examined section. The LO of large Gephyrocapsa spp. coincides with the MIS 37/38 boundary which is 1241.2 plus or minus 0.4 ka. The LO of H. sellii is located in late MIS 40 and has a calculated age of 1291.4 plus or minus 1.4 ka. These biohorizons are traceable even though the LO of H. sellii is a diachronous event. Size variations of Gephyrocapsa from approximately 1250 ka are discussed and fluctuations of small size Gephyrocapsa could represent cyclic changes of the Kuroshio and Oyashio currents.
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来源期刊
Stratigraphy
Stratigraphy 地学-地质学
CiteScore
1.80
自引率
6.70%
发文量
0
审稿时长
>12 weeks
期刊介绍: The journal’s mission is to publish peer-reviewed papers that use modern stratigraphic tools – biostratigraphy, chemostratigraphy, magnetostratigraphy, cyclostratigraphy, sequence stratigraphy, climatostratigraphy, lithostratigraphy, GSSPs and more – to explore broad ideas in earth history.
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