Radiolarian occurrence and origin of basaltic rocks in the Hebiki Unit, Northern Chichibu accretionary complex in the Kanto Mountains, Central Japan

IF 0.7 Q4 PALEONTOLOGY REVUE DE MICROPALEONTOLOGIE Pub Date : 2024-05-18 DOI:10.1016/j.revmic.2024.100782
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Abstract

Reconstructing ocean plate stratigraphy (OPS) and revealing the places of origin and ages of oceanic rocks of the Jurassic–Early Cretaceous accretionary complex in Eastern Asia are important to clarify the accretion process and the paleogeography and tectonic setting of the Panthalassa Sea during the Paleozoic to Mesozoic times. In this context, many geological investigations of the Middle Jurassic–Early Cretaceous units of the Northern Chichibu accretionary complex (except for an Early Jurassic one) and Mikabu Unit have been performed. In this study, geological mapping, faunal analysis of radiolarians, and geochemical analysis of basaltic rocks were conducted for the Hebiki Unit of the Northern Chichibu accretionary complex to obtain prime geological information such as its stratigraphy, ages, and origin of basaltic rock. The Early Jurassic Hebiki Unit consists of chaotic mélange, which contains sandstone, siliceous shale, chert, and basaltic rocks as blocks in a highly sheared shale matrix. Late Permian and Late Triassic radiolarians were newly identified from chert blocks in this study. Based on the radiolarian evidence from this study and previous ones that identified Jurassic radiolarians from siliceous shale, the OPS of the Hebiki Unit are reconstructed as follows: Upper Permian and Upper Triassic (upper Carnian to Rhaetian) chert, and Lower Jurassic (Pliensbachian) siliceous shale in ascending order. Meanwhile, the basaltic rocks of the Hebiki Unit are divided into two types in terms of the major and trace element composition and REE profiles: low and high Nb/Zr types. The low and high types are interpreted as oceanic island basalt (OIB) and mid-ocean ridge basalt (MORB), respectively. Considering the reconstructed OPS of the four tectonostratigraphic units (Kashiwagi, Kamiyoshida, Sumaizuku, and Hebiki) of the Northern Chichibu accretionary complex, the four units are considered to have accreted successively.

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日本中部关东山脉北秩父增生复合体 Hebiki 单元玄武岩中放射虫的出现和起源
重建大洋板块地层(OPS),揭示东亚侏罗纪-早白垩世增生复合体大洋岩石的产地和年代,对于弄清古生代至中生代的增生过程以及泛塔拉萨海的古地理和构造环境非常重要。为此,对北秩父增生复合体的中侏罗世-早白垩世单元(早侏罗世单元除外)和米卡布单元进行了多次地质调查。本研究对北秩父增生复合体的鹤壁单元进行了地质测绘、放射虫动物群分析和玄武岩地球化学分析,以获得其地层、年龄和玄武岩产地等基本地质信息。早侏罗世的Hebiki单元由混沌混杂岩组成,其中包含砂岩、硅质页岩、燧石和玄武岩块,它们被置于高度剪切的页岩基质中。在这项研究中,从白垩岩块中新发现了二叠纪晚期和三叠纪晚期的放射虫。根据本研究和之前从硅质页岩中鉴定出的侏罗纪放射虫证据,Hebiki 单元的 OPS 重建如下:二叠系上统和三叠系上统(卡氏上统至雷特氏统)的白垩系,以及侏罗系下统(普利恩巴赫统)的硅质页岩依次递增。同时,从主要元素、微量元素组成和稀土元素分布图来看,希比基单元的玄武岩分为两种类型:低铌/锆类型和高铌/锆类型。低和高类型分别被解释为大洋岛屿玄武岩(OIB)和大洋中脊玄武岩(MORB)。考虑到北秩父增生复合体的四个构造地层单元(柏木、上吉田、须磨塾和Hebiki)的重建OPS,这四个单元被认为是先后增生的。
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来源期刊
CiteScore
2.50
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0.00%
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17
期刊介绍: La Revue de micropaléontologie publie 4 fois par an des articles de intérêt international, consacrés à tous les aspects de la micropaléontologie. Les textes, en anglais ou en français, sont des articles originaux, des résultats de recherche, des synthèses et mises au point, des comptes rendus de réunions scientifiques et des analyses de ouvrages. La revue se veut résolument ouverte à tous les aspects de la micropaléontologie en accueillant des travaux traitant de la systématique des microfossiles (et de leurs équivalents actuels), des bactéries aux microrestes de vertébrés, et de toutes leurs applications en sciences biologiques et géologiques.
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