首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >The Trace Metal Chemistry of Deep Geothermal Water, Palinpinon Geothermal Field, Negros Island, Philippines: Implications for Precious Metal Deposition in Epithermal Gold Deposits
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The Trace Metal Chemistry of Deep Geothermal Water, Palinpinon Geothermal Field, Negros Island, Philippines: Implications for Precious Metal Deposition in Epithermal Gold Deposits

机译:菲律宾内格罗斯岛,Palinpinon地热田,深层地热水中的痕量金属化学:对超热金矿床中贵金属沉积的影响

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摘要

Palinpinon geothermal field, Negros Island, Philippines, is a high-temperature, liquid-dominated geothermal system in an active volcanic island-arc setting. Parallels have been drawn between the geologic setting and hydrothermal alteration styles recognized at Palinpinon with those that characterize several types of magmatichydrothermal ore deposits (e.g., porphyry, skarn, and high and intermediate sulfidation epithermal systems). The neutral chloride Palinpinon reservoir water chemistry is affected by boiling, mixing, and conductive cooling. The occurrence of base and precious metal scale deposits in several geothermal wells demonstrates that the deep reservoir fluid is capable of transporting and depositing base and precious metals. However, trace metal analysis of the deep reservoir fluids shows they are undersaturated with respect to gold (1–4 μg/kg). Chemical modeling of Palinpinon geothermal water predicts that boiling should be the most effective mechanism for base and precious metal deposition, producing sulfide assemblages similar to those present in well scale deposits. Mixing with acid-bearing sulfate waters can also produce these sulfide assemblages, but less efficiently and with gold and silver deposition occurring at lower temperatures (i.e., <110°C). Despite indications that modern hydrothermal fluids are capable of metal transportation, base and precious metal deposition is not strongly developed at Palinpinon. Base and precious metal concentrations in drill core and drill cuttings are one to two orders of magnitude below ore grade (<0.02 wt % Cu, <0.03 wt % Pb, <0.01 wt % Zn, <0.01 wt % Mo, <8 g/t Ag, and <0.05 g/t Au), and important features that characterize high-grade ore zones of porphyry (i.e., quartz stockwork veining) and epithermal deposits (i.e., residual vuggy quartz, massive crustiform veins, and/or hydrothermal breccia complexes) are apparently absent at Palinpinon. Such features intimate that high-grade ore deposition is promoted by large volumes of fluid and highly permeable wall rock. Their absence at Palinpinon indicates that permeability, fluid flux, and/or metal transport have been insufficient to form significant zones of base or precious metal enrichment.
机译:菲律宾内格罗斯岛的Palinpinon地热田是活跃的火山岛弧环境中的高温,以液体为主的地热系统。在Palinpinon认识到的地质环境和热液蚀变样式之间具有相似的特征,这些特征也代表了几种岩浆热液矿床的特征(例如斑岩,矽卡岩以及高,中硫化超热系统)。中性氯化物Palinpinon储层的水化学性质受沸腾,混合和传导冷却的影响。在几个地热井中发生的贱金属和贵金属垢沉积表明,深层储层流体能够输送和沉积贱金属和贵金属。但是,对深层储层流体的痕量金属分析表明,它们相对于金而言是不饱和的(1-4μg/ kg)。 Palinpinon地热水的化学模型预测,沸腾应该是贱金属和贵金属沉积的最有效机制,产生的硫化物类似于井规模沉积物中的硫化物。与含酸的硫酸水混合也可以产生这些硫化物组合,但是效率较低,并且在较低的温度(即<110℃)下发生金和银的沉积。尽管有迹象表明现代热液能够输送金属,但在Palinpinon并没有大力开发贱金属和贵金属的沉积。钻芯和钻屑中的贱金属和贵金属浓度比矿石品位低一到两个数量级(<0.02 wt%Cu,<0.03 wt%Pb,<0.01 wt%Zn,<0.01 wt%Mo,<8 g / t Ag和<0.05 g / t Au),以及表征斑岩(即石英储层脉)和超热矿床(即残留的疏松石英,块状十字形脉和/或热液角砾岩)的高品位矿带的重要特征复合体)显然不在Palinpinon上。这些特征暗示着大量的流体和高渗透性围岩促进了高品位矿石的沉积。它们在Palinpinon的缺失表明渗透率,流体通量和/或金属传输不足以形成显着的贱金属或贵金属富集区。

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