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首页> 外文期刊>Precambrian Research >Source of gold in Neoarchean orogenic-type deposits in the North Atlantic Craton, Greenland: Insights for a proto-source of gold in sub-seafloor hydrothermal arsenopyrite in the Mesoarchean
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Source of gold in Neoarchean orogenic-type deposits in the North Atlantic Craton, Greenland: Insights for a proto-source of gold in sub-seafloor hydrothermal arsenopyrite in the Mesoarchean

机译:Gold在NeoAthean Orogenic型矿床中的黄金来源,格陵兰岛北大西洋克拉顿:亚海集团亚海地板水热亚塞诺特的原始金色源的洞察力

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Given that gold (Au) mostly remained in the incipient Earth mantle until ca. 3.9-3.8 Ga, a "proto-source" of gold may have been present in the dominantly mafic crust precursor born through first-stage melting of the early Earth mantle. In south-westernmost Greenland, a fragment of the North Atlantic Craton is characterised by greenstone belts comprising mafic volcanic and magmatic rocks, and harzburgite cumulates that were emplaced at ca. < 3.19-3.01 Ga (e.g., Tartoq greenstone belt). Here, combining detailed sulphide petrography with rhenium-osmium-sulphur (Re-Os-S) isotope geochemistry of individual mineral separates of arsenopyrite from gold-sulphide mineralised shear zones, we pinpoint the precipitation of ca. 3.18-3.13 Ga (Re-Os model ages) hydrothermal arsenopyrite associated and coeval with arc-related magmatism of the Tartoq Group. We consider sub-seafloor hydrothermal alteration of the oceanic crust and magmatic activity to have supplied arsenic (As), Re, and Au, to result in the precipitation of the ca. 3.18-3.13 Ga arsenopyrite with primary invisible gold. Additionally, in major shear zones in a rigid juvenile continental crust, retrograde greenschist-facies metamorphism overprinted the ca. > 3.0 Ga prograde amphibolite-facies metamorphic assemblages and caused local dissolution of arsenopyrite. During this retrograde tectono-metamorphic stage, in gold-rich shear zones, the Re-Os geochronometer in arsenopyrite was reset to a Neoarchean age while invisible gold was liberated and deposited as free gold with 2.66 Ga pyrite (Re-Os isochron ages). The initial Os isotope ratios of Neoarchean arsenopyrite (Os-187/Os-188(i) = 0.13 +/- 0.02) and gold-bearing pyrite (0.12 +/- 0.02) overlap with the estimated Os-187/Os-188 ratio of the Mesoarchean mantle (0.11 +/- 0.01) and preclude contribution of radiogenic crustal Os from evolved lithologies in the accretionary arc complex, but instead, favour a local contribution in Os from basaltic rocks and serpentinised harzburgite protoliths by metamorphic fluids. Thus, the ca. 2.66 Ga lode gold mineralisation identified in the North Atlantic Craton may illustrate a gold endowment in shear zones in Earth's stabilizing continental crust at the time of the 2.75-2.55 Ga Global Gold Event, through metamorphic upgrading of bulk gold which had originally been extracted from the Mesoarchean mantle and concentrated in hydrothermal arsenopyrite deposits in oceanic crust beneath the overall reduced Mesoarchean ocean.
机译:鉴于黄金(AU)大多留在初期地球地幔中,直到CA。 3.9-3.8 GA,黄金的“原始来源”可能是通过早期地球地幔的第一阶段熔化出生的主导麦克风地壳前体。在西北最格陵兰岛,北大西洋克拉顿的片段是由Greenstone BELTS,包括MAFIC火山和岩浆岩石,以及在CA所淘汰的Harzburgite累积。 <3.19-3.01 GA(例如,Tartoq Greenstone皮带)。这里,将详细的硫化物岩体与铼 - 硫化物(RE-OS-S)同位素与金 - 硫化物矿化剪切区的单独矿物分离的各自矿物分离的同位素相结合,我们确定了CA的沉淀。 3.18-3.13 GA(RE-OS模型年龄)水热亚苯甲酸盐与塔特Q集团的电弧相关岩浆作用。我们考虑海洋地壳和岩石活动的亚海地板热改变,以提供砷(AS),Re和Au,导致CA的降水。 3.18-3.13 Ga阿塞尼特,主要无形金。此外,在刚性少年大陆地壳中的主要剪切区,逆行Greenschist-Faceies变质套印CA。 > 3.0 GA Proprode Amphibolite-Face变形组件并导致亚苯甲酸盐的局部溶解。在这种逆行构造 - 变质阶段,在富含金的剪力区,亚苯甲酸盐中的重新OS地球化学计被重置为新的年龄,而无形的金被释放并沉积有2.66A硫铁矿(RE-OS等式)的自由金。 NeoArchan areNopyrite的初始OS同位素比(OS-187 / OS-188(i)= 0.13 +/- 0.02)和耐金黄铁矿(0.12 +/- 0.02)与估计的OS-187 / OS-188比率重叠在中塞拉伯地幔(0.11 +/- 0.01)中,并排除放射性地壳OS的贡献从弧形弧络合物中的进化岩性,而是赞成来自玄武岩岩石的OS的局部贡献和通过变质流体从玄武岩岩石和蛇状的麦芽伯钛矿促果实中的局部贡献。因此,加利福尼亚州。 2.66北大西洋CRATON中确定的GA Lode Gold Mineration可以说明地球稳定的大陆地壳的剪切区的黄金禀赋,通过最初从中提取的散装金的变质升级中间人的外壳矿床和浓缩在整个柚子的海洋外壳中的水热酰亚胺矿床。

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