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首页> 外文期刊>Gondwana research: international geoscience journal >The Gondwanan margin in West Antarctica: Insights from Late Triassic magmatism of the Antarctic Peninsula
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The Gondwanan margin in West Antarctica: Insights from Late Triassic magmatism of the Antarctic Peninsula

机译:西南极洲的阁楼缘:南极半岛后期三叠纪岩浆广告的见解

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摘要

Triassic orthogneisses of the Antarctic Peninsula provide evidence for the Palaeozoic and Mesozoic geological evolution of southern Gondwana within Pangaea. These rocks are sporadically exposed in southeastern Graham Land and northwestern Palmer Land, although reliable geochronological, geochemical and isotopic data are sparse. We combine new geochronological (LA-ICP-MS zircon U-Pb), geochemical, and zircon (Hf. O) and whole rock isotopic (Nd, Sr and Pb) data to constrain the age and Triassic - Palaeozoic tectonic setting of these rocks. Zircon cores record Palaeozoic arc magmatism between 253 +/- 2 and 528 = 6 Ma, which was mainly located to the west of the Eastern Palmer Land Shear Zone (Central Domain; Vaughan and Storey, 2000). The arc is considered to be an extension of contemporaneous Palaeozoic arcs that have been identified along the Pacific margin of South America and the Thurston Island Block. Regions to the east of the Palmer Land Shear Zone (Eastern Domain, Vaughan and Storey, 2000) were located distal from the Terra Australis Margin, and possibly resided within Sunsas-aged belts within Pangaea. Triassic continental arc, talc-alkaline magmatism during 223-203 Ma modified the crust of the Antarctic Peninsula on both sides of the Eastern Palmer Land Shear Zone. Magmatic sources included igneous and sedimentary crustal material, which formed by crustal reworking during Sunsasand Brazilian-aged orogenesis, and Palaeozoic arc magmatism. Arc magmatism accompanied sinistral extension which brought both domains into the arc and resulted in steady oceanward migration of the Triassic arc during the Middle - Late Triassic. We propose that sinistral displacement occurred along the Eastern Palmer Land Shear Zone, and this structure was active as early as the Triassic. Finally, we conclude that both the Eastern and Central Domains are aulochthonous to Gondwana. (C) 2019 International Association for Gondwana Research. Published by Elsevier B.V. All rights reserved.
机译:南极半岛的三叠纪高度,为Pangea中南部宫殿的古生代和中生代地质演变提供了证据。这些岩石在格雷厄姆陆地和西北帕尔默土地上散发出来,虽然是可靠的地球化学,地球化学和同位素数据稀疏。我们将新的地理学(La-ICP-MS Zircon U-PB),地球化学和锆石(HF.O)和整个岩石同位素(ND,SR和PB)数据组合,以限制这些岩石的年龄和三叠纪 - 古生代构造环境。锆科核心纪录古生代弧魔法师在253 +/- 2和528之间= 6 mA,主要位于东部的帕尔默陆地剪切区以西(中央领域;沃恩和楼,2000)。弧被认为是沿着南美洲和瑟斯顿岛区的太平洋缘所识别的同期古生物弧的延伸。帕尔默土地剪力区(东部域名,沃恩和楼梯,2000)的地区位于Terra Australis Margin的远端,并且可能居住在Pangea中的太阳镜老皮带内。 Triassic Continental Arc,Talc-alkaline Magmatism在223-203 MA中修改了东部帕尔默剪切区两侧的南极半岛的地壳。岩浆来源包括火油和沉积的地壳材料,由太阳山和巴西古老的or发生期间的地壳垫料形成,古生代弧岩狼。弧形岩浆伴随着载体延伸,将两个域带入弧形,导致中期三叠系期间三叠弧弧的稳定的海洋迁移。我们提出沿东部帕尔默陆地剪切区发生的索里斯级位移,并且这种结构早在三叠系时就活跃。最后,我们得出结论,东部和中央域名都对Gondwana占主责任。 (c)2019年国际巩膜研究协会。 elsevier b.v出版。保留所有权利。

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