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首页> 外文期刊>Mineralium Deposita >Stable isotope and fluid inclusion evidence for the origin of the Brandberg West area Sn–W vein deposits, NW Namibia
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Stable isotope and fluid inclusion evidence for the origin of the Brandberg West area Sn–W vein deposits, NW Namibia

机译:纳米比亚西北西北布兰德伯格西部地区锡-钨脉矿床成因的稳定同位素和流体包裹体证据

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The Brandberg West region of NW Namibia is dominated by poly-deformed turbidites and carbonate rocks of the Neoproterozoic Damara Supergoup, which have been regionally metamorphosed to greenschist facies and thermally metamorphosed up to mid-amphibolite facies by Neoproterozoic granite plutons. The meta-sedimentary rocks host Damaran-age hydrothermal quartz vein-hosted Sn–W mineralization at Brandberg West and numerous nearby smaller deposits. Fluid inclusion microthermometric studies of the vein quartz suggests that the ore-forming fluids at the Brandberg West mine were CO2-bearing aqueous fluids represented by the NaCl–CaCl2–H2O–CO2 system with moderate salinity (mean=8.6 wt% NaClequivalent).Temperatures determined using oxygen isotope thermometry are 415–521°C (quartz–muscovite), 392–447°C (quartz–cassiterite), and 444–490°C (quartz–hematite). At Brandberg West, the oxygen isotope ratios of quartz veins and siliciclastic host rocks in the mineralized area are lower than those in the rocks and veins of the surrounding areas suggesting that pervasive fluid–rock interaction occurred during mineralization. The O- and H-isotope data of quartz–muscovite veins and fluid inclusions indicate that the ore fluids were dominantly of magmatic origin, implying that mineralization occurred above a shallow granite pluton. Simple mass balance calculations suggest water/rock ratios of 1.88 (closed system) and 1.01 (open system). The CO2 component of the fluid inclusions had similar δ 13C to the carbonate rocks intercalated with the turbidites. It is most likely that mineralization at Brandberg West was caused by a combination of an impermeable marble barrier and interaction of the fluids with the marble. The minor deposits in the area have quartz veins with higher δ 18O values, which is consistent with these deposits being similar geological environments exposed at higher erosion levels.
机译:纳米比亚西北部的布兰德伯格西部地区以新元古代Damara Supergoup的多变浊度和浊积岩和碳酸盐岩为主,它们已在区域变质为绿片岩相,并被新元古代花岗岩岩体热变质为中闪石相。准沉积岩在Brandberg West拥有Damaran年龄的热液石英脉状Sn-W矿化作用,并附近有许多较小的沉积物。脉状石英的流体包裹体热学研究表明,Brandberg West矿山的成矿流体是含NaCO2–CaCl2 –H2 O–CO2 < / sub>盐度适中的系统(平均= 8.6 wt%NaClequivalent )。使用氧同位素测温法测得的温度为415-521°C(石英-白云母),392-447°C(石英-锡石)和444–490°C(石英–赤铁矿)。在布兰德伯格西部,矿化区石英脉和硅质碎屑岩的氧同位素比率低于周围地区的岩脉,表明矿化过程中普遍发生了流体-岩石相互作用。石英-白云母脉和流体包裹体的O同位素和H同位素数据表明,矿石流体主要是岩浆成因的,这意味着矿化发生在浅花岗岩岩体之上。简单的质量平衡计算建议水/岩石比为1.88(封闭系统)和1.01(开放系统)。流体包裹体的CO 2组分的δ13 C与与浊度夹层的碳酸盐岩相似。 Brandberg West的矿化很可能是由于不透水的大理石屏障和流体与大理石的相互作用共同造成的。该地区的次要沉积物具有较高的δ18 O值的石英脉,这与这些沉积物是处于较高侵蚀水平的相似地质环境相吻合。

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