首页> 外文期刊>Mineralium deposita >Structure, alteration, and geochemistry of the Charlotte quartz vein stockwork, Mt Charlotte gold mine, Kalgoorlie, Australia: time constraints, down-plunge zonation, and fluid source
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Structure, alteration, and geochemistry of the Charlotte quartz vein stockwork, Mt Charlotte gold mine, Kalgoorlie, Australia: time constraints, down-plunge zonation, and fluid source

机译:夏洛特石英静脉图库的结构,改变和地球化学,Mt Charlotte Gold Mine,Kalgoorlie,澳大利亚:时间限制,下降区划和流体源

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The Kalgoorlie district in the Archean Yilgarn Craton, Western Australia, comprises two world-class gold deposits: Mt Charlotte (144 t Au produced to 2013) in the northwest and the Golden Mile (1,670 t Au) in the southeast. Both occur in a folded greenschist-facies gabbro sill adjacent to the Golden Mile Fault (D2) in propylitic alteration associated with porphyry dikes. At Mt Charlotte, a shear array of fault-fill veins within the Golden Mile Fault indicates sinistral strike-slip during Golden Mile-type pyrite-telluride mineralization. The pipe-shaped Charlotte quartz vein stockwork, mined in bulk more than 1 km down plunge, is separated in time by barren D3 thrusts from Golden Mile mineralization and alteration, and occurs between two dextral strike-slip faults (D4). Movement on these faults generated an organized network of extension and shear fractures opened during the subsequent infiltration of high-pressure H2S-rich fluid at 2,655 +/- 13 Ma (U-Pb xenotime). Gold was deposited during wall rock sulphidation in overlapping vein selvages zoned from deep albite-pyrrhotite (3 g/t Au) to upper muscovite-pyrite assemblages (5 g/t Au bulk grade). Chlorite and fluid inclusion thermometry indicate that this kilometre-scale zonation is due to fluid cooling from 410-440 A degrees C at the base to 350-360 A degrees C at the top of the orebody, while the greenstone terrane remained at 250 A degrees C ambient temperature and at 300 MPa lithostatic pressure. The opened fractures filled with barren quartz and scheelite during the retrograde stage (300 A degrees C) of the hydrothermal event. During fracture sealing, fluid flux was periodically restricted at the lower D3 thrust. Cycles of high and low up-flow, represented by juvenile H2O-CO2 and evolved H2O-CO2-CH4 fluid, respectively, are recorded by the REE and Sr isotope compositions of scheelite oscillatory zones. The temperature gradient measured in the vein stockwork points to a hot (> 600 A degrees C) fluid source 2-4 km below the mine workings, and several kilometres above the base of the greenstone belt. Mass balance calculations involving bulk ore indicate enrichment of both felsic (K, Rb, Cs, Li, Ba, W) and mafic elements (Ca, Sr, Mg, Ni, V, Cr, Te), a source signature compatible with the local high-Mg porphyry suite but not with the meta-gabbro host rock. The initial Sr-87/Sr-86 ratios of the vein scheelites (0.7014-0.7016) are higher than the mantle ratio of the meta-gabbro (0.7009-0.7011) and overlap those of high-Mg monzodiorite intrusions (0.7016-0.7018) emplaced along the Golden Mile Fault at 2,662 +/- 6 Ma to 2,658 +/- 3 Ma.
机译:西澳大利亚阿克里尔加伦克拉顿的Kalgoorlie区包括两个世界一流的黄金存款:Mt Charlotte(144吨Au在2013年制作到2013年),在西北和东南部的金英里(1,670吨)。两者都发生在折叠的Greenschist-Face Gabbro窗口附近,与金英里故障(D2)相邻,以与斑岩堤防相关的丙基岩改变。在Mt Charlotte,金英里故障内的故障填充静脉剪切阵列表明金英里型黄铁矿 - 碲化物矿化过程中的Sinistral滑行。管状的夏洛特石英静脉图库散装超过1公里的船舶,按照贫瘠的D3从金英里矿化和改变的推力分开,并发生在两个右旋滑动故障(D4)之间发生。这些故障的运动产生了在后续渗透到高压H2S的富含液体(U-PB Xenotime)的高压H2S的液体渗透期间打开的有组织的延伸和剪切骨折。在重叠静脉静脉中沉积金在壁岩亚岩期间沉积从深亚乙二醇 - PyrrOhotite(3g / t au)到上部Muscovite-pyrite组装(5g / t au堆积级)。氯酸盐和流体包裹体积测量表明,该公里级分区是由于在矿体顶部的基部410-440℃下的流体冷却至350-360°C,而Greenstone Terrane仍保持在250度C环境温度和300MPa岩性压力。在水热事件的逆行阶段(300℃)期间,打开的骨折填充有贫瘠石英和硅藻土。在断裂密封期间,在较低D3推力下周期性地限制流体通量。通过少年H 2 O-CO 2表示的高和低流动的循环分别由白细胞和Sr同位素组合物记录SCHEELITE振荡器区的REE和SR同位素。在静脉上测量的温度梯度在矿井工作中2-4km的热(> 600℃)流体源,以及在Greenstone皮带的底部上方的几公里。涉及散装矿石的质量平衡计算表明肠(K,Rb,Cs,Li,Ba,W)和MAFIC元素(CA,SR,Mg,Ni,V,Cr,Te)的富集,以及与当地兼容的源签字高镁斑岩套件,但与Meta-Gabbro主持人岩石。静脉 - 87 / SR-86比率静脉(0.7014-0.7016)高于Meta-Gabbro(0.7009-0.7011)的搭式比率,并重叠高镁莫西特入侵(0.7016-0.7018)所施加的沿着金英里截至2,662 +/- 6 mA至2,658 +/- 3 mA。

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