High-pressure mafic granulite and supracrustal rocks in the southern Hengshan area, North China Craton: Metamorphic P-T-t evolution and geotectonic significance

IF 3.2 2区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Precambrian Research Pub Date : 2024-07-04 DOI:10.1016/j.precamres.2024.107501
Guo-Dong Wang , Xiao-Lei Wang , Zhen M.G. Li , Yue Guan , Juan Wang , Feng-Li Shao , Chun-Ming Wu
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Abstract

Amphibolite- to granulite-facies rocks are widely distributed in the Hengshan Complex, middle Trans-North China Orogen, and the high-pressure (HP) mafic granulite has been recently identified in the southern Hengshan area. The HP mafic granulite and amphibolite occur as rootless tectonic boudins/lenses within the TTG (tonalite–trondhjemite–granodiorite) gneiss/metapelite, indicative of typical “block-in-matrix” texture of metamorphic-tectonic mélange. Three to four generations of metamorphic mineral assemblages that correspond to the prograde (M1), peak (M2), and retrograde (M3-M4) stages, are recognized in these rocks. Conventional geothermobarometry and phase equilibrium modeling yield peak P–T conditions of 10.8–13.8 kbar/754–799 °C for the HP mafic granulite and 7.3–9.0 kbar/690–725 °C for the supracrustal rocks, respectively. A clockwise P–T path with near-isothermal decompression (ITD) and subsequent near-isobaric cooling (IBC) segments is reconstructed for the HP mafic granulite, indicating a dynamic subduction–collision–exhumation process that unfolded during an orogenic event. Secondary ion mass spectrometry (SIMS) U-Pb dating of zircon yields metamorphic ages of ca. 1.91–1.83 Ga, representing the long-lived tectono-metamorphic event caused by collision between the Eastern and Western Blocks along the Trans-North China Orogen. It is hypothesized that the tectono-metamorphic mélange in the area originated from the tectonically juxtaposition of metamorphic rocks that had diverse protoliths, different peak P–T conditions and discrepant metamorphic ages. This complexity may be a hallmark of Paleoproterozoic orogens, drawing intriguing parallels with the intricate characteristics observed in Phanerozoic orogenic belts.

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华北克拉通恒山南部地区的高压黑云母花岗岩和超基性岩:变质P-T-t演化及其大地构造意义
闪长岩-花岗岩层位的岩石广泛分布于横断华北造山带中段的衡山复合带,最近在衡山南部地区发现了高压黑云母花岗岩。高压黑云母花岗岩和闪长岩以无根构造拗陷/透镜体的形式出现在TTG(黑云母-透辉石-花岗闪长岩)片麻岩/片麻岩中,显示了变质构造混合体典型的 "块中基质 "质地。在这些岩石中发现了三至四代变质矿物组合,分别对应于顺行阶段(M1)、峰值阶段(M2)和逆行阶段(M3-M4)。根据传统的地温测算法和相平衡模型,高纯黑云母花岗岩的峰值P-T条件分别为10.8-13.8千巴/754-799 °C,超基性岩的峰值P-T条件分别为7.3-9.0千巴/690-725 °C。为HP黑云母花岗岩重建了一条顺时针的P-T路径,其中包括近等温减压(ITD)和随后的近等压冷却(IBC)段,表明在造山运动中发生了一个动态的俯冲-碰撞-膨胀过程。锆石的二次离子质谱(SIMS)U-Pb定年得出的变质年龄约为1.91-1.83 Ga,代表了沿跨华北造山带东西区块之间的碰撞所引起的长周期构造变质事件。据推测,该地区的构造-变质混杂区是由原岩多样、峰值P-T条件不同和变质年龄不一致的变质岩构造并置而形成的。这种复杂性可能是古近纪造山带的特征之一,与新生代造山带的复杂特征具有相似之处。
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来源期刊
Precambrian Research
Precambrian Research 地学-地球科学综合
CiteScore
7.20
自引率
28.90%
发文量
325
审稿时长
12 months
期刊介绍: Precambrian Research publishes studies on all aspects of the early stages of the composition, structure and evolution of the Earth and its planetary neighbours. With a focus on process-oriented and comparative studies, it covers, but is not restricted to, subjects such as: (1) Chemical, biological, biochemical and cosmochemical evolution; the origin of life; the evolution of the oceans and atmosphere; the early fossil record; palaeobiology; (2) Geochronology and isotope and elemental geochemistry; (3) Precambrian mineral deposits; (4) Geophysical aspects of the early Earth and Precambrian terrains; (5) Nature, formation and evolution of the Precambrian lithosphere and mantle including magmatic, depositional, metamorphic and tectonic processes. In addition, the editors particularly welcome integrated process-oriented studies that involve a combination of the above fields and comparative studies that demonstrate the effect of Precambrian evolution on Phanerozoic earth system processes. Regional and localised studies of Precambrian phenomena are considered appropriate only when the detail and quality allow illustration of a wider process, or when significant gaps in basic knowledge of a particular area can be filled.
期刊最新文献
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