Implications of Late Triassic–Middle Jurassic detrital zircons from the southeastern margin of the South China Block for the Paleo-Pacific Plate subduction

IF 2.6 3区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Chemie Der Erde-Geochemistry Pub Date : 2024-09-01 DOI:10.1016/j.chemer.2024.126152
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Abstract

There existed an early Mesozoic tectonic regime transformation in the South China Block (SCB). Although it was believed that this transformation was closely related to the subduction of Paleo-Pacific Plate, the process and initial time of the subduction of the Paleo-Pacific Plate have been controversial for a long time. Based on the published Upper Triassic and Middle Jurassic succession detrital zircons geochronology from the southeastern margin of the SCB, the newly obtained Late Triassic to Middle Jurassic detrital zircons Hf isotope data, and the available magmatic age data and Hf isotope data, this study discussed the subduction of the Paleo-Pacific Plate. The Hf isotope composition of zircon grains selected from the Early Mesozoic strata of the SCB, spanning from the Late Triassic to the Middle Jurassic, exhibits a consistent temporal trend with that of the Triassic–Middle Jurassic magmatic rocks. Both display a transition from negative to positive εHf(t) values, indicative of a gradually increasing contribution of mantle-derived materials from the Triassic to the Middle Jurassic. Zircon trace elements indicate that a magmatic arc appeared outside the southeastern margin of the SCB at 200–190 Ma and continued to develop into the Middle Jurassic, which may have been generated by the Paleo-Pacific Plate subduction. This study proposed that the Paleo-Pacific Plate subduction was confined to the southeastern coast of the SCB in the Late Triassic, and the subduction of the flat slab was halted by obstruction at the end of the Late Triassic. In the Early Jurassic, the Paleo-Pacific Plate began to subduction again, and arc-related magmatic rocks were formed along the coast of SCB. At the same time, due to the remote effect of the subduction of the Paleo-Pacific Plate, the weak tectonic belt existing in the Nanling area was reactivated, resulting in the Nanling area in the intraplate extensional setting. Subsequently, the continuous subduction of the Paleo-Pacific Plate led to the thickening of the crust along the SCB in the Middle Jurassic, and the Nanling area was still under in the extensional setting.

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华南地块东南缘晚三叠世-中侏罗世碎屑锆石对古太平洋板块俯冲的影响
华南地块存在着中生代早期的构造体系转换。尽管人们认为这一转变与古太平洋板块的俯冲密切相关,但古太平洋板块俯冲的过程和初始时间一直存在争议。本研究根据已发表的南大洋板块东南缘上三叠世和中侏罗世演替碎屑锆石地质年代资料、新近获得的晚三叠世至中侏罗世碎屑锆石Hf同位素资料,以及已有的岩浆年龄资料和Hf同位素资料,探讨了古太平洋板块的俯冲过程。从南中生界晚三叠世至中侏罗世的早中生代地层中选取的锆石颗粒的Hf同位素组成与三叠世-中侏罗世岩浆岩的Hf同位素组成呈现出一致的时间趋势。两者的ε(t)值均由负值向正值过渡,表明从三叠纪到中侏罗世,地幔衍生物质的贡献逐渐增加。锆石痕量元素表明,在200-190Ma时,SCB东南边缘外出现了岩浆弧,并持续发展到中侏罗世,这可能是古太平洋板块俯冲作用产生的。该研究提出,晚三叠世古太平洋板块俯冲仅限于南中北大陆东南沿岸,晚三叠世末期平板俯冲受阻停止。侏罗纪早期,古太平洋板块再次开始俯冲,南中丘陵沿岸形成了与弧有关的岩浆岩。同时,由于古太平洋板块俯冲的遥远影响,南岭地区原有的弱构造带被重新激活,使南岭地区处于板内伸展环境。其后,古太平洋板块的持续俯冲,导致中侏罗世南岭板块沿岸地壳增厚,南岭地区仍处于板内伸展环境中。
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来源期刊
Chemie Der Erde-Geochemistry
Chemie Der Erde-Geochemistry 地学-地球化学与地球物理
CiteScore
7.10
自引率
0.00%
发文量
40
审稿时长
3.0 months
期刊介绍: GEOCHEMISTRY was founded as Chemie der Erde 1914 in Jena, and, hence, is one of the oldest journals for geochemistry-related topics. GEOCHEMISTRY (formerly Chemie der Erde / Geochemistry) publishes original research papers, short communications, reviews of selected topics, and high-class invited review articles addressed at broad geosciences audience. Publications dealing with interdisciplinary questions are particularly welcome. Young scientists are especially encouraged to submit their work. Contributions will be published exclusively in English. The journal, through very personalized consultation and its worldwide distribution, offers entry into the world of international scientific communication, and promotes interdisciplinary discussion on chemical problems in a broad spectrum of geosciences. The following topics are covered by the expertise of the members of the editorial board (see below): -cosmochemistry, meteoritics- igneous, metamorphic, and sedimentary petrology- volcanology- low & high temperature geochemistry- experimental - theoretical - field related studies- mineralogy - crystallography- environmental geosciences- archaeometry
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