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Nature of the Mesozoic lithospheric mantle and tectonic decoupling beneath the Dabie Orogen, Central China: Evidence from Ar-40/Ar-39 geochronology, elemental and Sr-Nd-Pb isotopic compositions of early Cretaceous mafic igneous rocks

机译:中国中部大别造山带下的中生代岩石圈地幔和构造解耦:来自早白垩纪镁铁质火成岩的Ar-40 / Ar-39年代学,元素和Sr-Nd-Pb同位素组成的证据

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Geochronological, elemental and Sr-Nd-Pb isotopic data of early Cretaceous basic-intermediate rocks from the Dabie Orogen provide new insights into the nature of the late Mesozoic lithospheric mantle beneath the region and its tectonic relationship with neighboring blocks. Basic-intermediate rocks from the North Dabie Complex (NDC) include diabases, lamprophyres and trachyandesites, which have Ar-40/Ar-39 plateau ages of 127.6-131.8 Ma. Similar rock types from the North Huaiyang Unit (NHY) erupted at nearly the same time (135-116 Ma). Coeval rocks from both tectonic units form a continuous array in Harker diagrams, and exhibit similar geochemical characteristics. Both are significantly enriched in LILEs, and depleted in HFSEs, coupled with very low epsilon(Nd) (t), (Pb-206/Pb-204)(i), and prominent positive Delta 8/4 and Delta 7/4 values, which are similar to those of Mesozoic mafic rocks in the North China Craton (NCC) exterior. These geochemical signatures are inconsistent with crustal contamination during magma ascent, and reflect derivation from an enriched lithospheric mantle source contaminated by the deeply subducted Yangtze crust. The observed geochemical similarities thus suggest that early Cretaceous igneous rocks from the NDC and NHY share a similar continental lithospheric mantle source that is tectonically affiliated to the NCC, although the surface geology of both tectonic units correlates with that of the Yangtze Block. Tectonic decoupling along a suture is proposed to explain the generation of early Cretaceous mafic rocks in the Dabie Orogen. The Wuhe-Shuihou fault likely represents the Mesozoic lithospheric boundary between the Yangtze Block and NCC, despite the fact that the present-day surface suture is situated at the Xiaotian-Mozitan fault or other faults to the north. (c) 2005 Elsevier B.V All rights reserved.
机译:来自大别造山带的早白垩世基本中级岩石的年代学,元素和Sr-Nd-Pb同位素数据提供了对该区域下中生代岩石圈地幔的性质及其与邻近块体的构造关系的新见解。来自北大别综合体(NDC)的碱性中间岩石包括辉绿岩,煌斑岩和菱锰矿,其Ar-40 / Ar-39高原年龄为127.6-131.8 Ma。淮北北部(NHY)的相似岩石类型几乎同时(135-116 Ma)爆发。来自两个构造单元的后代岩石在哈克图中形成了连续的阵列,并表现出相似的地球化学特征。两者均显着富集LILE,而HFSE却耗竭,加上极低的epsilon(Nd)(t),(Pb-206 / Pb-204)(i)和显着的正Delta 8/4和Delta 7/4值,与华北克拉通(NCC)外部的中生代镁铁质岩石相似。这些地球化学特征与岩浆上升过程中的地壳污染不一致,并且反映了来自深冲的扬子地壳污染的丰富的岩石圈地幔源。因此,观测到的地球化学相似性表明,尽管两个构造单元的地表地质与扬子地块相关,但北半球北缘和北缘的早白垩世火成岩具有相似的大陆岩石圈地幔源,该地壳构造源于北半球。提出了沿缝合线的构造解耦来解释大别造山带中早白垩纪镁铁质岩石的产生。尽管目前的表层缝合线位于小田-莫子滩断层或北部其他断层上,但五河水侯断层很可能代表了扬子地块与南北克拉通之间的中生代岩石圈边界。 (c)2005 Elsevier B.V保留所有权利。

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