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首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >Spatial Variation in Platinum Group Element Concentrations in Ore-Bearing Komatiite at the Long-Victor Deposit, Kambalda Dome, Western Australia: Enlarging the Footprint of Nickel Sulfide Orebodies
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Spatial Variation in Platinum Group Element Concentrations in Ore-Bearing Komatiite at the Long-Victor Deposit, Kambalda Dome, Western Australia: Enlarging the Footprint of Nickel Sulfide Orebodies

机译:西澳大利亚州坎巴尔达巨石,长维克多矿床中含矿科马铁矿中铂族元素浓度的空间变化:扩大硫化镍矿体的足迹

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The detectable footprints of komatiite-hosted nickel sulfide deposits are typically very small, but can potentially be enlarged by identifying subtle geochemical variations related to ore-forming processes in the host rocks. This study examines the spatial variability of whole-rock concentrations of platinum group elements (PGEs) within the host flow to massive nickel sulfide mineralization at the Long-Victor deposit, Kambalda dome (Western Australia), where a series of ore shoots occupy two subparallel channels, over a strike length of approximately 3,000 m. The basal komatiite flow unit at Long-Victor contains a wide range of platinum group element concentrations and PGE/Ti ratios in S-poor rocks outside the ore shoots. About a third of the samples analyzed show evidence for either enrichment or depletion in PGEs, as estimated from mantle-normalized ratios of Pt/Ti, Pd/Ti, and Rh/Ti, relative to background values typical of those found in Neoarchean Munrotype komatiites worldwide. The very strong correlations observed between Pt/Ti, Pd/Ti, and Rh/Ti testify to a primary magmatic origin of this signal. Depletion signatures are largely restricted to samples in the flanking environment within the basal flow, and are found both in spinifex-textured A-zone and cumulate B-zone samples. The strongest depletion signatures are preserved in the uppermost portions of the A-zone and decrease in magnitude with increasing depth from the stratigraphic top of the spinifex horizon downward. This is interpreted as the result of progressive flushing of the flow channel by PGE-undepleted lava subsequent to ore formation. Enriched signatures are largely restricted to cumulate rock types, and are found within both channels and flanks. The halo of anomalous PGE/Ti ratios, both depleted and enriched, extends more than 400 m from the cutoff of 0.4% Ni that defines the limit of disseminated ores, and is much more extensive and marked than anomalies defined by Ni concentrations, Ni/Cr ratios, or Ni/Ti ratios, which extend no more than 20 m beyond the disseminated ores themselves. The PGE enrichment halo is recognizable in rocks having no visible sulfide and having Ni values falling within the silicate background, and is attributed to the accumulation of small proportions of PGE-rich disseminated sulfide liquid formed at high R factors, with subsequent loss of S during hydrothermal alteration. Mapping of PGE/Ti ratios provides an effective and sensitive method for vectoring toward ore during mine-scale and prospect-scale exploration, and is potentially applicable to mafic systems as well as to komatiites.
机译:通常,由孔雀石矿沉积的硫化镍矿床的可探测足迹很小,但是可以通过识别与主体岩石中成矿过程有关的细微地球化学变化来扩大。这项研究研究了在长流胜者矿床Kambalda穹顶(西澳大利亚)中,基质流中全岩石浓度的铂族元素(PGEs)浓度对大规模硫化镍矿化的空间变异性。通道,行程约3,000 m。 Long-Victor的基部科迈铁矿流动单元包含广泛的铂族元素浓度和矿渣外S贫岩石中的PGE / Ti比。根据Pt / Ti,Pd / Ti和Rh / Ti的地幔归一化比率估计,相对于新古宙蒙脱型科马提质岩中典型特征值的背景值估算,约有三分之一的样本显示出PGE富集或耗尽的证据。全世界。在Pt / Ti,Pd / Ti和Rh / Ti之间观察到的非常强的相关性证明了该信号的主要岩浆成因。耗尽特征主要限于基流内侧翼环境中的样品,并且在带有尖刺结构的A区样品和累积的B区样品中都可以找到。最强的耗尽特征保留在A区的最上部,并且随着深度的增加,从刺状脊层的地层顶部向下逐渐减小。这被解释为在成矿之后,PGE未喷出的熔岩逐渐冲洗流动通道的结果。富集的特征在很大程度上限于堆积的岩石类型,并且在河道和两侧都可以找到。 PGE / Ti异常比值的晕圈,既耗尽又富集,从限定弥散矿石极限的0.4%Ni的边界延伸了400 m以上,并且比由Ni浓度Ni / Ni / Cr比率或Ni / Ti比率超出散布的矿石本身不超过20 m。在没有可见的硫化物且Ni值落在硅酸盐背景中的岩石中,可以识别出PGE富集晕,这归因于在高R因子下形成的小比例的富含PGE的弥散性硫化物液体的积累,并在随后的过程中损失了S水热蚀变。 PGE / Ti比的映射提供了一种有效且灵敏的方法,可用于在矿山规模和远景规模的勘探过程中将矿石引导至矿石,并且可能适用于铁镁铁矿系统以及科马铁矿。

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