Zircon U–Pb Dating of the Urahoro Group and Atsunai Formation in the Shiranuka Hills of Eastern Hokkaido, Northeast Japan: Implications for Tectonic Development

IF 1 4区 地球科学 Q4 GEOSCIENCES, MULTIDISCIPLINARY
Island Arc Pub Date : 2025-01-27 DOI:10.1111/iar.70006
Toru Takeshita, Hisatoshi Ito, Hiromi Kaji
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引用次数: 0

Abstract

Zircon U–Pb dates for detrital grains in the Shakubetsu Formation of the uppermost Eocene Urahoro Group and the Upper Miocene Atsunai Formation distributed in the eastern part of Hokkaido have been determined for the first time. Both weighted mean 48.8 ± 1.4 Ma (n = 80) for < 70 Ma zircons and youngest grain 36.5 + 1.8, −2.5 Ma (Middle to Late Eocene) ages of the Urahoro Group are consistent with the sedimentary ages and Paleogene magmatic arc origin of the detritus clarified in the previous studies. Although the Zircon U–Pb ages (n = 24) of the Atsunai Formation range between 5 and ~1700 Ma, a weighted mean age of 7.05 ± 0.57 Ma (n = 10) for < 10 Ma zircons (youngest cluster) could constrain the maximum sedimentary age, which is consistent with the previous ages from diatom biostratigraphy and K-Ar method. However, while the K-Ar age was obtained from an Ol-Cpx-Opx basalt in tuff breccia, the dated zircons were probably derived from felsic tuff including many pumice grains. Therefore, the bimodal volcanism could have occurred at c. 7 Ma in the present forearc region, indicating that the volcanic front at this age migrated south significantly, correlated to the one which also occurred coevally in the seaward side of the present volcanic front in the NE Japan arc. Further, it has been found that the eastern boundary of the Shiranuka Hills is characterized by an ESE verging, large-scale monocline based on the present field study and previous geological maps. Since the Atsunai Formation was involved in the formation of the large-scale monocline, the structure started to form after the sedimentation at c. 7 Ma. The fact implies that the ongoing collision of the Kuril forearc sliver with the NE Japan arc has propagated to this area since the latest Late Miocene.

日本东北北海道东部白鹿山浦浩群和Atsunai组锆石U-Pb定年及其构造发育意义
首次确定了北海道东部始新统上乌拉霍罗群Shakubetsu组和中新统上Atsunai组碎屑颗粒的锆石U-Pb年代学。70 Ma锆石的加权平均值为48.8±1.4 Ma (n = 80),最年轻颗粒年龄为36.5 + 1.8,−2.5 Ma(中至晚始新世),与前人研究明确的碎屑沉积年龄和古近系岩浆弧成因一致。虽然Atsunai组锆石U-Pb年龄(n = 24)在5 ~ ~1700 Ma之间,但<; 10 Ma(最年轻的锆石群)的加权平均年龄为7.05±0.57 Ma (n = 10),可以约束最大沉积年龄,这与硅藻生物地层和K-Ar方法的年龄一致。然而,虽然K-Ar年龄来自于凝灰岩角砾岩中的Ol-Cpx-Opx玄武岩,但锆石的年代可能来自于含有许多浮石颗粒的长英凝灰岩。因此,现今弧前区可能在c. 7 Ma发生过双峰火山活动,表明该时期火山锋南移明显,与日本弧东北部现今火山锋向海侧的火山锋同时发生过双峰火山活动。此外,根据目前的野外研究和以往的地质图,发现白鹿山的东边界具有一个ESE边缘的大尺度单斜的特征。由于Atsunai组参与了大规模单斜的形成,该构造在c. 7 Ma沉积后开始形成。这一事实表明,自晚中新世晚期以来,千岛前弧与日本东北弧的持续碰撞已经传播到该地区。
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来源期刊
Island Arc
Island Arc 地学-地球科学综合
CiteScore
2.90
自引率
26.70%
发文量
32
审稿时长
>12 weeks
期刊介绍: Island Arc is the official journal of the Geological Society of Japan. This journal focuses on the structure, dynamics and evolution of convergent plate boundaries, including trenches, volcanic arcs, subducting plates, and both accretionary and collisional orogens in modern and ancient settings. The Journal also opens to other key geological processes and features of broad interest such as oceanic basins, mid-ocean ridges, hot spots, continental cratons, and their surfaces and roots. Papers that discuss the interaction between solid earth, atmosphere, and bodies of water are also welcome. Articles of immediate importance to other researchers, either by virtue of their new data, results or ideas are given priority publication. Island Arc publishes peer-reviewed articles and reviews. Original scientific articles, of a maximum length of 15 printed pages, are published promptly with a standard publication time from submission of 3 months. All articles are peer reviewed by at least two research experts in the field of the submitted paper.
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