首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Late Cretaceous granites from the giant Dulong Sn-polymetallic ore district in Yunnan Province, South China: Geochronology, geochemistry, mineral chemistry and Nd-Hf isotopic compositions
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Late Cretaceous granites from the giant Dulong Sn-polymetallic ore district in Yunnan Province, South China: Geochronology, geochemistry, mineral chemistry and Nd-Hf isotopic compositions

机译:中国南方云南省独龙族大型多金属锡矿区的晚白垩纪花岗岩:年代学,地球化学,矿物化学和Nd-Hf同位素组成

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As a world-class tin-tungsten province, South China is well known for its extensive Mesozoic granitic magmatism. The Dulong district, located in the western Cathaysia Block of the South China tin-tungsten province, is characterized by widespread Mesozoic granitoids and accompanying Sn-polymetallic ore deposit (similar to 30 Mt of Sn). It is one of the most important polymetallic tin ore districts in China. In this study, three mineralization-related granite types were identified in the Dulong district, including the Dulong coarse-grained granite (DCG), the Dulong fine-grained granite (DFG), and the Dulong porphyritic granite (DPG). Detailed studies are presented on zircon U-Pb ages, major and trace elements, mineral chemical and Nd-Hf isotopic compositions of the tin-bearing granites from the Dulong district. LA-ICP-MS U-Pb dating of zircon grains from these three granite bodies yields ages of 90.1 +/- 0.7 Ma, 89.7 +/- 0.8 Ma and 86.0 +/- 0.5 Ma, respectively. Geochemically, the granites are strongly peraluminous, with high contents of alkalis, enrichment in P, Li, Rb, Cs, Ta, Sn, W and U, depletion in Ti, Mg, Co, Ni, Sr, Ba, Zr, Hf, Th and rare earth elements. Fractional crystallization of plagioclase and K-feldspar was the principal process of magmatic differentiation that controlled Rb, Sr, Ba and Eu concentrations, whereas rare earth elements were fractionated by accessory minerals, such as apatite and monazite. The geochemical data suggest that the rocks are highly fractionated S-type granites. The granites show bulk rock epsilon(Nd)(t) values in the range of -12.2 to -10.8 and zircon epsilon(Hf)(t) values from -15.5 to -2.5, with Meso-Paleoproterozoic T-DM(C) ages for both Nd and Hf isotopes. Geochemical and isotopic data suggest that these highly fractionated S-type granites DCG, DFG and DPG were originated from the same episode of partial melting of the protolith, which have analogous components of metamorphosed pelitic rocks from the Meso-Paleoproterozoic continental crust. Extreme fractional crystallization resulted in enrichment of tin in the evolved granitic magma, and the reduced magmas (fO(2) below NNO) would efficiently remove Sn into a hydrothermal fluid, and lead to deposition of Sn-rich mineral phases. The association of Dulong and Gejiu magmatism in the western Cathaysia Block may be likely to mark the onset of back-arc extension or intra-arc rift in the region during late Cretaceous. The upwelling of asthenospheric mantle may have triggered partial melting of metasedimentary rocks in the overlying crust to generate the S-type granitic magmas. (C) 2015 Elsevier B.V. All rights reserved.
机译:作为世界一流的锡钨省,华南以其广泛的中生代花岗岩岩浆作用而闻名。独龙族地区位于华南锡钨省西部的华夏地块,其特征是广泛分布的中生代花岗岩和伴随的锡多金属矿床(类似于锡30 Mt)。它是中国最重要的多金属锡矿区之一。在这项研究中,在独龙族地区确定了三种与成矿作用有关的花岗岩类型,包括独龙族粗粒花岗岩(DCG),独龙细粒花岗岩(DFG)和独龙斑岩花岗岩(DPG)。对独龙地区含锡花岗岩的锆石U-Pb年龄,主要和微量元素,矿物化学和Nd-Hf同位素组成进行了详细研究。这三个花岗岩体对锆石的LA-ICP-MS U-Pb定年年龄分别为90.1 +/- 0.7 Ma,89.7 +/- 0.8 Ma和86.0 +/- 0.5 Ma。从地球化学上讲,花岗岩是高铝质的,具有高含量的碱金属,富含P,Li,Rb,Cs,Ta,Sn,W和U,Ti,Mg,Co,Ni,Sr,Ba,Zr,Hf, and和稀土元素。斜长石和钾长石的部分结晶是控制Rb,Sr,Ba和Eu浓度的岩浆分化的主要过程,而稀土元素则由磷灰石和独居石等辅助矿物分馏。地球化学数据表明,岩石是高度分馏的S型花岗岩。花岗岩的中古生代T-DM(C)年龄显示出的大块岩石epsilon(Nd)(t)值介于-12.2至-10.8和锆石epsilon(Hf)(t)值介于-15.5至-2.5之间Nd和Hf同位素地球化学和同位素数据表明,这些高度分馏的S型花岗岩DCG,DFG和DPG源自原生岩的部分熔融的同一阶段,它们具有中古古生界大陆壳变质的粉质岩的类似成分。极端的分步结晶导致锡在富集的花岗岩岩浆中富集,而岩浆减少(低于NNO的fO(2))将有效地将锡去除到热液中,并导致富锡矿相的沉积。在华夏地块的西部,Dulong和Gejiu岩浆作用的组合可能标志着白垩纪晚期该区域弧后伸展或弧内裂谷的开始。软流圈地幔的上升可能触发了上覆地壳中沉积岩的部分融化,产生了S型花岗岩岩浆。 (C)2015 Elsevier B.V.保留所有权利。

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