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首页> 外文期刊>Anais da Academia Brasileira de Ciencias >Geochemical modeling of gold precipitation conditions in the Bloco do Butiá Mine, Lavras do Sul/Brazil
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Geochemical modeling of gold precipitation conditions in the Bloco do Butiá Mine, Lavras do Sul/Brazil

机译:巴西南拉夫拉斯的布洛科·德布提亚矿山中金沉淀条件的地球化学模拟

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A geochemical modeling of gold deposition was performed using the EQ3/EQ6 software package using conditions inferred from geological, petrographic, geochemical and fluid inclusion data from the Bloco do Butiá gold mine, Lavras do Sul, RS. Gold in the mine occurs only in the pyrite structure (invisible gold). The pyrite occurs associated with white mica (phengite) in the zone of phyllic alteration. The process of gold deposition showed to be related to temperature and pH decrease. The pH decrease was fundamental to gold deposition by destabilization of sulfur species [Au(HS)2- , HAu(HS)2(0) and Au(HS)0] dissolved in the aqueous solution, being Au(HS)0 the main gold transporting complex. The addition of KCl is hard to accept as cause of gold precipitation because no Cl- was detected in phengite. However, the geochemical mass balance calculation resulted in the gain of some potassium in the zone of phyllic alteration. The precipitation of pyrite (± auriferous) may have been strongly influenced by iron availability resulting from dissolution of ferrous chlorites by the fluids responsible for phengite deposition. The low salinity in quartz grain fluid inclusions from the propylitized wall rock also indicates the little importance of chlorine as gold transporting agent. Sulfur, and not chlorine, compounds must have dominated the gold transporting complexes in the Bloco do Butiá gold area.
机译:使用EQ3 / EQ6软件包进行了金沉积的地球化学建模,使用的条件是从RS,南拉夫拉斯的Bloco doButiá金矿的地质,岩石学,地球化学和流体包裹体数据推断出来的。矿中的金仅存在于黄铁矿结构中(无形金)。黄铁矿与白云母(斑云母)一起发生在叶状蚀变区。金的沉积过程显示出与温度和pH降低有关。 pH值降低是溶解在水溶液中的硫物种[Au(HS)2-,HAu(HS)2(0)和Au(HS)0]失稳所导致金沉积的根本原因,主要是Au(HS)0黄金运输综合体。氯化钾的添加很难被认为是金沉淀的原因,因为在硫铁矿中未检测到Cl-。然而,地球化学质量平衡计算导致了叶性蚀变带中钾的增加。黄铁矿(±金铁矿)的沉淀可能已受到铁的可利用性的强烈影响,铁的有效利用是由于亚铁矿的次氯酸盐亚铁被负责硫铁矿沉积的流体溶解而造成的。来自丙基化壁岩的石英颗粒流体包裹体中的低盐度也表明氯作为金传输剂的重要性不高。 Bloco doButiá金矿区的金矿运输复合物中一定是硫而不是氯的化合物。

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