首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Petrology, geochemistry and zircon U-Pb and Lu-Hf isotopes of the Cretaceous dykes in the central North China Craton: Implications for magma genesis and gold metallogeny
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Petrology, geochemistry and zircon U-Pb and Lu-Hf isotopes of the Cretaceous dykes in the central North China Craton: Implications for magma genesis and gold metallogeny

机译:华北克拉通中部白垩纪脉的岩石学,地球化学和锆石U-Pb和Lu-Hf同位素:对岩浆成因和金成矿的意义

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The Trans-North China Orogen (TNCO), a Paleoproterozoic suture that amalgamates the Western and Eastern Blocks of the North China Craton (NCC), witnessed extensive magmatism and metallogeny during Mesozoic, associated with intraplate tectonics and differential destruction of the cratonic lithosphere. Here we investigate a suite of porphyry dykes surrounding the Mapeng batholith in the Fuping Complex within the TNCO in relation to the Mesozoic gold and molybdenum mineralization. The major element chemistry of these dykes show a range of SiO2 (57.92 to 69.47 wt.%), Na2O (3.20 to 4.77 wt.%), K2O (3.12 to 4.60 wt.%) and MgO (0.51 to 3.67 wt.%), together with high concentration of LREE and LILE, and relatively low contents of HREE and HFSE. The rocks display (La/Yb)(N) = 13.53-48.11, negative Nb, Ta, Th, U and Zr anomalies, and distinctly positive Ba, K and Sm anomalies. The mineralogy and geochemistry of the porphyry dykes indicate the rocks to be high-K calc-alkaline, and I-type, with adakitic features similar to those of the adjacent Mapeng batholith. The source magma for these rocks was derived from a mixture of reworked ancient continent crust and juvenile mantle materials. The zircon U-Pb data from these rocks show ages in the range of 124 to 129 Ma, broadly coinciding with the emplacement age of the Mapeng intrusion. The inherited zircons of ca. 2.5, 2.0 and 1.8 Gain the dykes represent capture from the basement rocks during melting. The zircon Lu-Hf isotopic compositions show negative epsilon(Hf)(t) values varying from -27.8 to -11.3, with Hf depleted model ages (t(DM)) ranging from 1228 Ma to 1918 Ma and Hf crustal model ages (t(DM)(C)) of 1905 Ma to 2938 Ma, suggesting that the Mesozoic magmatism and associated metallogeny involved substantial recycling of ancient basement rocks of the NCC. We present an integrated model to evaluate the genesis of the porphyry systems and their relation to mineralization. We envisage that these dykes probably acted as stoppers (impermeable barriers) that prevented the leakage and run-off of the ore-bearing fluids, and played a key role in concentrating the gold and molybdenum mineralization. (C) 2014 Elsevier B.V. All rights reserved.
机译:跨华北造山带(TNCO)是一种古元古代缝线,与华北克拉通(NCC)的东西两侧的块体融合在一起。在这里,我们研究了与中生代金和钼矿化有关的TNCO富平情结中马彭岩床周围的一套斑岩脉。这些堤坝的主要元素化学性质显示出一定范围的SiO2(57.92至69.47 wt。%),Na2O(3.20至4.77 wt。%),K2O(3.12至4.60 wt。%)和MgO(0.51至3.67 wt。%) ,以及高浓度的LREE和LILE,以及相对较低的HREE和HFSE含量。岩石显示(La / Yb)(N)= 13.53-48.11,负Nb,Ta,Th,U和Zr异常,并且明显异常为Ba,K和Sm异常。斑岩脉的矿物学和地球化学表明这些岩石为高K钙碱性和I型岩石,具有类似于邻近马彭岩床的adakitic特征。这些岩石的源岩浆来自经过重做的古代大陆壳和幼年地幔物质的混合物。这些岩石中的锆石U-Pb数据显示年龄在124至129 Ma之间,与Mapeng侵入体的沉积年龄大致吻合。约克的继承锆石。 2.5、2.0和1.8增益代表堤坝融化时从基底岩石中捕获。锆石Lu-Hf同位素组成显示负ε(Hf)(t)值在-27.8至-11.3之间变化,Hf耗尽模型年龄(t(DM))的范围为1228 Ma至1918 Ma,Hf地壳模型年龄(t (DM)(C))在1905 Ma到2938 Ma之间,表明中生代岩浆作用和相关的成矿作用涉及NCC古代基底岩石的大量回收。我们提出了一个综合模型来评价斑岩系统的成因及其与矿化的关系。我们设想,这些堤坝可能充当阻止塞矿流体渗漏和流失的塞子(不可渗透的屏障),并在浓缩金和钼矿化中起关键作用。 (C)2014 Elsevier B.V.保留所有权利。

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