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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Early Jurassic mafic dykes from the Aigao uranium ore deposit in South China: Geochronology, petrogenesis and relationship with uranium mineralization
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Early Jurassic mafic dykes from the Aigao uranium ore deposit in South China: Geochronology, petrogenesis and relationship with uranium mineralization

机译:来自南方的Aigao铀矿床的早期侏罗纪MAFICDEKES:地理学,培养和与铀矿化关系

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摘要

Mafic dykes are abundant and widely distributed in many granite-hosted uranium ore deposits in South China. However, their geochronology, petrogenesis and relationship with uranium mineralization were poorly constrained. In this study, apatite U-Pb dating, whole-rock major and trace element and Sr-Nd-Pb isotope analysis were conducted for the dolerite dykes from the Aigao uranium ore deposit. Apatite U-Pb isotopic data indicate that the mafic dykes were emplaced at Early Jurassic (189?±?4?Ma), which provides new evidence for the rarely identified Early Jurassic magmatism in South China. Pyroxene from the dykes is mainly augite, and plagioclase belongs to albite. The dolerite samples have relatively low SiO2contents (45.33–46.79?wt%), relatively high total alkali contents (K2O?+?Na2O?=?4.11–4.58?wt%) and Al2O3contents (13.39–13.80?wt%), and medium MgO contents (4.29–5.16?wt%). They are enriched in Nb, Ta, Ti, rare earth elements and depleted in Rb, K, Sr, Th, showing the typical OIB-like geochemical affinity. All the dolerite samples show homogeneous Sr-Nd-Pb isotopic compositions, with (87Sr/86Sr)ivarying from 0.706049 to 0.707137, εNd(t) from +4.6 to +5.2,206Pb/204Pb from 19.032 to 19.126 and207Pb/204Pb from 15.641 to 15.653. The mafic dykes in the Aigao deposit should be derived from the partial melting of the asthenospheric mantle and formed in a within-plate extensional environment. The emplacement age of the mafic dykes is older than the uranium mineralization age. Therefore, CO2in ore-forming fluids couldn't originate from the basaltic magma as suggested by previous studies. The dolerite dykes might only provide a favorable reducing environment to promote the precipitation of uraninite from oxidize hydrothermal fluids.
机译:MAFIC DYKES丰富,广泛分布于中国南方的许多花岗岩宿主铀矿床。然而,它们的地质殖像学,肝化和与铀矿化的关系受到严重受损。在该研究中,对于来自AIGAO铀矿床的Dolerite Dykes进行磷灰石U-Pb序列,全岩体和微量元素和SR-Nd-Pb同位素分析。磷灰石U-PB同位素数据表明,MAFIC Dykes在早期的侏罗纪灌输(189?±4?4?MA),这为南方的少数侏罗纪岩浆广告提供了新的证据。来自堤坝的辉石主要是奥伯维特,Plagioclase属于Albite。潮钨样品具有相对低的SiO 2(45.33-46.79〜wt%),总碱含量相对较高(K 2 O?+αnO2 O?=α.4.11-4.58?wt%)和Al2O3 Contents(13.39-13.80?wt%)和中等MgO含量(4.29-5.16?wt%)。它们在Nb,Ta,Ti,稀土元素中富集,并在Rb,K,Sr,Th中耗尽,显示出典型的Oib样地球化学亲和力。所有D型样品均显示均匀的SR-ND-PB同位素组合物,(87SR / 86SR)从0.706049到0.707137,εnd(t)从19.032到19.126和207pb / 204pb的+ 4.6至+ 5.2,206pb / 204pb。 15.653。 AIGAO沉积物中的乳头染料应源于哮喘壁龛的部分熔化,并形成在板内的延伸环境内。 MAFIC Dykes的施加年龄比铀矿化年龄较大。因此,CO 2矿石形成的流体不能源于先前研究表明的玄武岩岩浆。 Dolerite Dykes可能只提供有利的还原环境,以促进来自氧化水热流体的铀酸盐的沉淀。

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    State Key Laboratory for Geological Processes and Mineral Resources Collaborative Innovation Center for Exploration of Strategic Mineral Resources Faculty of Earth Resources China University of Geosciences;

    State Key Laboratory for Geological Processes and Mineral Resources Collaborative Innovation Center for Exploration of Strategic Mineral Resources Faculty of Earth Resources China University of Geosciences;

    State Key Laboratory for Geological Processes and Mineral Resources Collaborative Innovation Center for Exploration of Strategic Mineral Resources Faculty of Earth Resources China University of Geosciences;

    State Key Laboratory for Geological Processes and Mineral Resources Collaborative Innovation Center for Exploration of Strategic Mineral Resources Faculty of Earth Resources China University of Geosciences;

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  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

    Early Jurassic; Mafic dykes; Geochemistry; Uranium mineralization; South China;

    机译:早期的侏罗纪;MAFIC DYKES;地球化学;铀矿化;华南;

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