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Secondary gold mineralization in the Amani Placer Gold Deposit, Tanzania

机译:坦桑尼亚的阿曼尼置剂金矿床中的二次金矿化

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The Amani Placer Gold Deposit (APGD) is located in a braided river valley in southwestern Tanzania and is characterised by large gold nuggets with anomalously fine macroscopic textural features as well as significant levels of silver depletion (i.e., high fineness gold) in the nugget rim. The study site thus represents an ideal natural laboratory in which to explore the controls on the low-temperature biogeochemical cycle of gold. Using X-ray Fluorescence (XRF) and Inductively Coupled Plasma Mass Spectrometry (ICP-MS) geochemical data, this study evaluated the sediment and pore-water chemistry of the river sediment profile, and using Scanning Electron Microscopy (SEM) coupled these results with a high resolution morphological and chemical investigation of the ambient gold nuggets collected from the auriferous gravel horizon. Down-profile metal distributions indicate a steep redox gradient and observed oximorphic mottling textures along with slumped river terraces, reveal that the redox conditions fluctuate as a function of seasonality and episodic fluvial incision events, respectively. Fluctuating physico-chemical conditions during early diagenesis result in changes to the stability of ambient gold bearing complexes (e.g., Au(S2O3)(2)(3-) in oxidising condition and Au(HS)(2)(-) in reducing conditions), thereby leading to nanophase gold precipitation on clay minerals, organic matter, and importantly on pre-existing gold nugget surfaces. The diagenetic biogeochemical processes operating in the APGD thus formed supergene-enriched gold nuggets characterized by delicate textures and low Ag (< 6 wt% Ag) rims. We predict that fluctuating diagenetic conditions may impact gold nugget chemistry at other placer gold deposits, and that the chemical signature arising from these processes may be measurable in paleoplacer deposits such as the supergiant Witwatersrand Au deposit.
机译:Amani Placer金押金(APGD)位于坦桑尼亚西南部的一座编织河谷,其特点是大型金块,具有异常细的宏观纹理特征,以及掘金缘中的大量银耗水(即高细度金) 。因此,研究现场代表了理想的自然实验室,用于探讨金的低温生物地良好循环的对照。使用X射线荧光(XRF)和电感耦合等离子体质谱(ICP-MS)地球化学数据,该研究评估了河流沉积物谱的沉积物和孔隙水化学,并使用扫描电子显微镜(SEM)耦合这些结果从荞石砾石地平线收集的环境金块的高分辨率形态学和化学研究。羽绒服金属分布表明陡峭的氧化还原梯度和观察到的血管竖立纹理以及坍塌的河流露台,揭示了氧化还原条件分别随季节性和巨型河切口事件的函数波动。在早期成岩作用期间波动的物理化学条件导致环境金轴承复合物的稳定性(例如,Au(S2O3)(2)(2)(2)(2)(2)(2)(2)(2)(2)( - )在还原条件下的变化而变化),从而导致粘土矿物质,有机物,有机物的纳米金沉淀,以及在预先存在的金块表面上。在APGD中操作的成岩生物地球化学方法因此形成了富含富烯的金块,其特征在于精细纹理和低Ag(<6wt%Ag)轮辋。我们预测,波动的成岩状况可能会影响其他储存器金沉积物的金块化学,并且这些方法产生的化学特征可以在古代层沉积物中可测量,例如超码Witwatersrand Au沉积物。

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