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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Geochronology and geochemistry of the granites from the Zhuxi W-Cu ore deposit in South China: Implication for petrogenesis, geodynamical setting and mineralization
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Geochronology and geochemistry of the granites from the Zhuxi W-Cu ore deposit in South China: Implication for petrogenesis, geodynamical setting and mineralization

机译:南方昭智矿矿床花岗岩的地理学和地球化学研究:对岩石,地球大学环境和矿化的影响

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The giant Zhuxi tungsten deposit is located in the Taqian-Fuchun Ore Belt in northeastern Jiangxi province, and genetically associated with the Zhuxi granitic stocks and dykes. Three mineralization-related granites including granite porphyry dykes (GP), biotite granitic stocks (BG), and white granitic dykes (WG), were identified in the Zhuxi deposit. SHRIMP zircon U-Pb analysis for the three granitic rocks present ages ranging from 153.5 +/- 1.0 Ma to 150.4 +/- 1.0 Ma. The BG mainly contains quartz, microcline, albite, biotite and muscovite with minor accessory minerals including zircon, apatite, monazite, Ti/Fe oxides, and dolerite. However, the WG is mainly composed of quartz, microcline and albite with minor muscovite and accessory minerals. The GP is a medium-grained porphyritic granite and its phenocrysts include quartz, alkali feldspar, muscovite and plagioclase. All the Zhuxi granites have high SiO2 content (71.97 wt%-81.19 wt%) and total alkali (3.25 wt%-9.42 w196), and their valid aluminum saturation index (ASI) values show a wide range of 1.03 to 2.49. High Rb/Sr ratios, low Sr content (50 ppm) and markedly negative Eu anomalies of GP, WG and BG demonstrated that the Zhuxi granites are highly fractioned and intensive crystal differentiated. Because they display the features of both I- and S-types granites, they were confirmed to be I-S transform-type granites. Whole rock epsilon(Nd)(t) and zircon epsilon(Hf)(t) values fall into the ranges of -6.98 to -11.97, and -3.1 to -11.5, and the Nd(T-DM2) and Hf two-stage model ages (T-DMC) are 1.51-1.92 Ga and 1.42-2.01 Ga, respectively. Geochemical and isotopic data suggest that these highly fractionated I-S transform-type granites were originated from magmas which showed affinity with the Proterozoic continent and the Shuangqiaoshan Group and little mantle contribution was involved during the generation of Zhuxi granitic rocks. Extreme fractional crystallization resulted in further enrichment of tungsten in the evolved granitic magma. New data, presented together with previously published data, suggest that the Zhuxi granitic complex was likely to be formed during lithospheric compression setting during the late Jurassic to early Cretaceous. The biotite granite stock predominately contributed to the production of skarn alteration and mineralization, followed by the white granite dyke; the granite porphyry dykes have little effect. (C) 2018 Published by Elsevier B.V.
机译:巨型竹玺钨矿床位于江西东北部的Taqian-Fuchun矿带,与Zhuxi花岗岩股和堤坝有遗传相关。在Zhuxi沉积物中鉴定了三种矿化相关的花岗岩,包括花岗岩斑岩堤(GP),Biotite花岗岩储备(BG)和白色花岗岩(WG)。虾Zircon U-PB分析三个花岗岩岩石目前的年龄范围从153.5 +/- 1.0 mA到150.4 +/- 1.0 mA。 BG主要含有石英,微管,Albite,Biotites和Muscovite,具有次辅助矿物质,包括锆石,磷灰石,单藏,Ti / Fe氧化物和偶像岩。然而,WG主要由石英,微管和Albite组成,具有轻微的Muscovite和附件矿物质。 GP是一种中谷卟啉花岗岩,其苯基晶体包括石英,碱金属石英,Muscovite和Plagioclase。所有Zhuxi花岗岩具有高SiO 2含量(71.97wt%-81.19wt%)和总碱(3.25wt%-9.42 W196),其有效的铝饱和度指数(ASI)值显示出宽1.03至2.49。高rb / sr比率,低Sr含量(<50ppm)和GP,WG和BG的明显负欧盟异常表明,Zhuxi花岗岩高度分馏和密集的晶体分化。因为它们显示了I和S型花岗岩的特征,所以它们被确认为I-S变换型花岗岩。整个岩石ε(nd)(t)和锆石ε(hf)(t)值落入-6.98至-11.97的范围,-3.1至-11.5,以及Nd(T-DM2)和HF两阶段模型年龄(T-DMC)分别为1.51-1.92 GA和1.42-2.01 GA。地球化学和同位素数据表明,这些高度分馏的I-S变换型花岗岩起源于磁带,其与正国古代大陆的亲和力以及双桥群组和小型地幔贡献在Zhuxi花岗岩岩石中涉及。极端分数结晶导致进一步富集的钨在进化的花岗岩岩浆中。与先前公布的数据一起呈现的新数据表明,在晚期侏罗纪的岩石压缩环境中可能形成Zhuxi花岗岩复合物,以早期白垩纪。 Biotite花岗岩库存主要是有助于Skarn改变和矿化的生产,然后是白色花岗岩堤;花岗岩斑岩染料效果不大。 (c)2018由elsevier b.v发布。

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