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首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >Fumarolic Activity, Acid-Sulfate Alteration, and High Sulfidation Epithermal Precious Metal Mineralization in the Crater of Kawah Ijen Volcano, Java, Indonesia
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Fumarolic Activity, Acid-Sulfate Alteration, and High Sulfidation Epithermal Precious Metal Mineralization in the Crater of Kawah Ijen Volcano, Java, Indonesia

机译:印度尼西亚爪哇省卡哇伊真火山火山口的富马酸活性,硫酸盐蚀变和高硫化超热贵金属矿化

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摘要

Opinion is divided over whether the fluid responsible for the formation of high sulfidation epithermal deposits is a vapor or a liquid, and whether it is entirely volcanic or of mixed volcanic-meteoric origin. Observations made at Kawah Ijen, an active stratovolcano (mainly andesitic in composition) located in the Ijen Caldera Complex in Java, Indonesia, are used to address these issues. The Kawah Ijen crater is approximately 1 km in diameter, and hosts one of the world's largest hyperacidic lakes (pH 0). On the lake edge is a small and actively degassing solfatara field, which is surrounded by a much larger area of acid-sulfate alteration. This area was exposed during a phreatomagmatic eruption in 1817, which excavated the crater to a depth of 250 m, and comprises zones of residual silica, alunite-pyrite, and dickite/kaolinite. Based on the fractionation of ~(34)S and ~(32)S between alunite and pyrite, the acid-sulfate alteration occurred at a temperature between 200 and 300. High sulfidation epithermal mineralization accompanied the alteration in the form of massive and vein-hosted pyrite that contains up to 192 ppb Au, 9.2 ppm Ag, 6,800 ppm Cu, and 3,430 ppm As; these elements are invisible at the highest resolution of scanning electron microscopy, and thus either occur in the form of nanoparticles or are in solid solution in the pyrite. Condensed fumarolic gases released from the solfatara field and sampled at temperatures between 330 and 495 contain up to 3 ppm Cu and 3.8 ppm As; the concentrations of Au and Ag are below detection. The pH of the condensed gas (water vapor) is -0.5. The above observations support a model in which highly acidic gases condensed 250 m beneath the floor of the crater. Depending on the fluid/rock ratio, the condensed liquids altered the andesitic host rocks by leaching them to leave behind a residue of "vuggy silica" (high fluid/rock ratio), by replacing the primary minerals with alunite and pyrite (intermediate fluid/rock ratio), or by converting them to dickite/kaolinite (lower fluid/rock ratio). Gold-, silver-, and copper-bearing phases were undersaturated in the condensed liquids. However, they were able to concentrate by adsorbing on the surfaces of the growing pyrite crystals, which developed p-type conductive properties as a result of the uptake of arsenic. The metals were incorporated in the pyrite either by their electrochemical reduction to form native metal nanoparticles or through coupled substitutions with arsenic for iron and sulfur. The results of this study provide compelling evidence that high sulfidation epithermal precious metal mineralization can form directly from condensed magmatic gases.
机译:对于造成高硫化超热沉积物形成的流体是蒸气还是液体,以及它是完全是火山的还是混合的火山与地幔的起源,存在着不同的意见。位于印度尼西亚爪哇省Ijen火山口复合体的活跃平流火山(主要成分为安山岩)Kawah Ijen进行的观测用于解决这些问题。 Kawah Ijen火山口的直径约为1公里,拥有世界上最大的高酸性湖泊之一(pH 0)。在湖的边缘是一个小的且正在除气的solfatara油田,周围环绕着更大面积的硫酸盐蚀变区。该区域在1817年的一次岩浆喷发期间暴露,将火山口开挖到250 m的深度,该区域包括残留的二氧化硅,辉绿铁矿-黄铁矿和地开石/高岭石。基于〜(34)S和〜(32)S在亚硫酸盐和黄铁矿之间的分馏,酸硫酸盐的变化发生在200至300之间的温度。高硫化超热矿化伴随着块状和脉状的变化。含有高达192 ppb的Au,9.2 ppm的Ag,6,800 ppm的Cu和3,430 ppm的As的黄铁矿;这些元素在扫描电子显微镜的最高分辨率下是不可见的,因此要么以纳米颗粒的形式出现,要么以黄铁矿的固溶体形式存在。从solfatara场释放并在330至495之间的温度下采样的冷凝富马酸气体包含高达3 ppm的Cu和3.8 ppm的As;金和银的浓度低于检测值。冷凝气体(水蒸气)的pH为-0.5。以上观察结果支持了一个模型,其中高酸性气体在火山口底部下方250 m处凝结。根据流体/岩石的比率,冷凝液改变了安山岩基质的岩石,使其浸出,留下残留的“疏松二氧化硅”(高流体/岩石比率),方法是用亚矾石和黄铁矿(中间流体/岩石比率),或将其转换为地开石/高岭石(较低的流体/岩石比率)。冷凝液中的金,银和铜相均不饱和。但是,它们能够通过吸附在正在生长的黄铁矿晶体的表面上而浓缩,由于吸收了砷,黄铁矿晶体表现出p型导电特性。这些金属可以通过电化学还原形成天然金属纳米粒子,也可以通过砷取代铁和硫而掺入黄铁矿中。这项研究的结果提供了令人信服的证据,表明高硫化超热贵金属的矿化作用可以直接由冷凝的岩浆气体形成。

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