首页> 外文OA文献 >Geochemical and Nd isotopic constraints on provenance and depositional setting of the Shihuiding Formation in the Shilu Fe-Co-Cu ore district, Hainan Province, South China
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Geochemical and Nd isotopic constraints on provenance and depositional setting of the Shihuiding Formation in the Shilu Fe-Co-Cu ore district, Hainan Province, South China

机译:Geochemical and Nd isotopic constraints on provenance and depositional setting of the shihuiding Formation in the shilu Fe-Co-Cu ore district, Hainan province, south China

摘要

The Shihuiding Formation, a subordinate succession hosting the Fe-Co-Cu ores, is a suite of Neoproterozoic terrigenous clastic rocks occurring in the Shilu Fe-Co-Cu ore district of the Hainan Island, South China. Integrated petrographical, geochemical, and Nd isotopic analyses have been carried out on 23 sandstone specimens of the Shihuiding Formation in order to understand their provenance and the tectonic setting of their deposition. The samples can be divided into two groups, quartzose sand-stones (13 samples) and ferruginous sandstones (10 samples). The ferruginous sandstones have average SiO2 and Fe-total contents of 77.23 wt.% and 18.09 wt.%, respectively, and this contrasts with the higher average SiO2 (94.04 wt.%) and lower Fetal (2.67 wt.%) contents of the quartzose sandstones. The bivariant Th/Sc and Zr/Sc ratios indicate a predominantly recycled sedimentary provenance, and the low to medium degrees of weathering are commonly indicated by an average chemical index of maturity (CIM) of 81 and an average chemical index of alteration (CIA) of 68. The Shihuiding Formation sandstones have REE contents of 21-249 ppm, with LREE/HREE = 9.18 and delta Eu = 0.67. The epsilon(Nd) (970 Ma) values of -5.7 to -3.4, and model (T-DM) ages of 2099-1773 Ma are compatible with a source mainly from the Paleo- to Mesoproterozoic Baoban Group, a suite of metamorphosed sedimentary rocks intruded by ca. 1450 Ma granites. Quantitative provenance modeling indicates that the Shihuiding Formation sandstones are best modeled with a mixture of 29% plagioclase-amphibole gneiss (29 P), 38% quartz-muscovite schist (38 Q), and 33% granite (33 G) detritus. Mixing the epsilon(Nd) values of the sandstones, calculated at 970 Ma, indicates that the sediment received 22-47% (average 34%) of its detritus from the Baoban Group quartz-muscovite schists. Components from hydrothermal fluids may also have been involved during deposition of the Shihuiding Formation sandstones, as revealed by a bivariant Al/(Al + Fe + Mn) vs. Fe/Ti plot, positive Eu anomalies, and negative Y anomalies relative to PAAS. Tectonic discrimination diagrams, such as La-Th-Sc and Th-Co-Zr/10, indicate a passive continental margin setting for the deposition of the Shihuiding Formation. In terms of its geological setting, we propose that the Shihuiding Formation was deposited in a peripheral foreland basin, supplied by detritus shed from the Grenville Orogenic Belt during the assemblage of the Rodinia Supercontinent. (C) 2016 Elsevier Ltd. All rights reserved.
机译:石辉顶组是铁钴铜矿石的下属继承,是华南岛海南石鹿铁钴铜矿区的一组新元古代陆源碎屑岩。为了了解其物源和沉积的构造环境,已经对石辉顶组的23个砂岩标本进行了岩石学,地球化学和Nd同位素的综合分析。样品可分为两组,石英砂岩(13个样品)和铁质砂岩(10个样品)。含铁砂岩的平均SiO2和总铁含量分别为77.23 wt。%和18.09 wt。%,这与较高的平均SiO2(94.04 wt。%)和较低的胎儿(2.67 wt。%)形成对比。石英砂岩。 Th / Sc和Zr / Sc的双变量比率表明主要是回收的沉积物产地,低至中度的风化通常由平均成熟化学指数(CIM)为81和平均化学变化指数(CIA)表示68. Shihuiding组砂岩的REE含量为21-249 ppm,LREE / HREE = 9.18,δEu = 0.67。 ε(Nd)(970 Ma)值在-5.7至-3.4之间,模型(T-DM)年龄在2099-1773 Ma之间,这与主要来自古生代至中元古代的宝板群(一套变质沉积岩)相兼容。由ca.侵入的岩石1450麻花岗岩。定量物源建模表明,石汇顶组砂岩最好用29%斜长石-斜方片麻片岩(29 P),38%石英白云母片岩(38 Q)和33%花岗岩(33 G)碎屑的混合物模拟。混合砂岩的ε(Nd)值(在970 Ma下计算)表明,沉积物从宝板集团石英白云母片岩中获得了其碎屑的22-47%(平均34%)。相对于PAAS的双变量Al /(Al + Fe + Mn)vs.Fe / Ti图,正Eu异常和负Y异常显示,水热流体中的组分也可能与Shihuiding组砂岩的沉积有关。诸如La-Th-Sc和Th-Co-Zr / 10之类的构造判别图表明了十回顶组沉积的被动大陆边缘设置。就其地质环境而言,我们建议在回旋超大陆的组装过程中,石灰顶组沉积在外围的前陆盆地中,由格伦维尔造山带的碎屑提供。 (C)2016 Elsevier Ltd.保留所有权利。

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