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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Highly fractionated Jurassic I-type granites and related tungsten mineralization in the Shirenzhang deposit, northern Guangdong, South China: Evidence from cassiterite and zircon U-Pb ages, geochemistry and Sr-Nd-Pb-Hf isotopes
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Highly fractionated Jurassic I-type granites and related tungsten mineralization in the Shirenzhang deposit, northern Guangdong, South China: Evidence from cassiterite and zircon U-Pb ages, geochemistry and Sr-Nd-Pb-Hf isotopes

机译:中国北部广东省石泉沉积物高度分馏的侏罗纪I型花岗岩及相关钨矿化:来自Cassiterite和锆石U-Pb,地球化学和SR-ND-PB-HF同位素的证据

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摘要

The Shirenzhang tungsten deposit is a classic wolframite-quartz vein-type deposit located in northern Guang-dong Province, eastern segment of the Nanling W-Sn polymetallic belt. The ore veins, controlled by the NW striking fault system, are mainly hosted in the Ordovician metasedimentary rocks and can also be found with less amount in the cupola of the concealed granitic stock, displaying a typical five-floor vertical zonation proposed by the Chinese geologists. The concealed granitic stock mainly comprises two intrusive facies, the porphyritic biotite granite (G1) in the outer zone and the medium- to fine-grained monzogranite (G2) in the inner zone. In this paper, we report new cassiterite U-Pb ages and Pb isotopes of sulfides for the Shirenzhang tungsten deposit, combined with new zircon U-Pb ages and Hf isotopes, elemental geochemistry and Sr-Nd-Pb isotopes of the concealed granitic rocks, with aims to elucidate the origin of the ore-related granites and the link between the tungsten mineralization and granitic magmatism. LA-ICP-MS zircon U-Pb dating gives the weighted mean ages of 164 +/- 2 Ma for G1 and 162 +/- 4 Ma for G2, respectively. Cassiterite from the wolframite-bearing quartz vein and the drusy quartz vein yield the weighted mean ages of 164 +/- 2 Ma and 160 +/- 2 Ma, respectively. These ages suggest that both the granitic intrusion and related W-(Sn) mineralization in the Shirenzhang deposit were initiated during the late Jurassic (ca. 160 Ma). The Shirenzhang granitic rocks are weakly peraluminous highly fractionated I-type granites. Detailed elemental and isotopic data demonstrate that the granitic rocks were derived from partial melting of the Paleoproterozoic basement rocks at a relatively shallow depth of similar to 30 km triggered by underplating of basaltic magma, and underwent extensive fractional crystallization of hornblende, biotite, feldspar, and monazite and/or allanite. A continental arc setting induced by northwesterly subduction of the paleo-Pacific plate is suggested for the genesis of the Shirenzhang 1-type granites. The comparable Pb isotopic compositions of feldspar and sulfides imply that the lead in the ore veins was of magmatic origin. Integrating the spatial-temporal relationship between the ore veins and the concealed granitic rocks with the Pb isotopes from the sulfides and granites, we suggest that the tungsten mineralization is genetically linked with the concealed granitic rocks in the Shirenzhang deposit. Fractional crystallization and melt-fluid interaction may play an important role on the formation of the granite-related tungsten mineralization. (C) 2018 Elsevier B.V. All rights reserved.
机译:Shirenzhang Tungsten矿床是一家经典的Wolframite-Quartz Vein型矿床,位于广东省北部的南岭W-SN多金属皮带的东部。由NW引人注目的故障系统控制的矿石静脉主要托管在奥陶语元化岩石中,也可以在隐藏的花岗岩股票的圆顶上找到较少的数量,展示了中国地质学家提出的典型五层垂直区划。隐藏的花岗岩植物主要包括两个侵入式面部,外部区域中的卟啉生物烟灰岩花岗岩(G1)和内部区域中的培养基中至细粒晶粒(G2)。在本文中,我们向石泉钨矿床报告了新的Cassiterite U-Pb年龄和Pb同位素,结合新的锆石U-Pb年龄和HF同位素,元素地球化学和隐藏的花岗岩岩石的SR-Nd-Pb同位素,旨在阐明与矿石相关花岗岩的起源以及钨矿化与花岗岩岩浆之间的联系。 La-ICP-MS ZIRCON U-PB序列分别为G2的G1和162 +/- 4 mA提供了164 +/- 2 mA的加权平均年龄。来自Wolframite的石英静脉的咔哒声和Drusy石英静脉分别产生164 +/- 2 mA和160 +/- 2 mA的加权平均年龄。这些年龄段表明,在侏罗纪晚期(约160 mA)期间,在后肢矿床中的花岗岩入侵和相关W-(Sn)矿化。 Shirenzhang花岗岩岩石是弱衰弱的高分分级I型花岗岩。详细的元素和同位素数据表明,花岗岩岩石源自古普罗佐基岩地下岩的部分熔化在相对较浅的深度,类似于通过玄武岩岩浆的底层触发的30 km,并且经历了Hornblende,Biotite,长石和单济岩和/或allanite。建议在石峰1型花岗岩的成因上提出了由西北地区俯冲引起的大陆弧设置。相当的Pb同位素组合物的长石和硫化物意味着矿石静脉中的铅是岩浆来源的。与来自硫化物和花岗岩的Pb同位素与Pb同位素相结合的空间 - 时间关系,我们建议钨矿化与后肢沉积物中隐藏的花岗岩岩石遗传相关。分数结晶和熔融流体相互作用可能在与花岗岩相关钨矿化的形成作用重要作用。 (c)2018 Elsevier B.v.保留所有权利。

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