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首页> 外文期刊>Chemical geology >Equilibrium mineral-fluid calculations and their application to the solid solution between alunite and natroalunite in the El Indio-Pascua belt of Chile and Argentina
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Equilibrium mineral-fluid calculations and their application to the solid solution between alunite and natroalunite in the El Indio-Pascua belt of Chile and Argentina

机译:智利和阿根廷El Indio-Pascua带中钠铁矿和钠铝矾石之间固溶体平衡流体的计算及其应用

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The effects of temperature and bulk-fluid K/Na on the alunite-natroalunite solid solution have been determined at 200 bar and 100-300 degrees C. These are conditions typical of magmatic-hydrothermal alteration and precious-metal mineral deposition in high-sulfidation environments, which are characterized by the presence of alunite-bearing alteration zones. Our model is based on published experimental parameters, which indicate that both alunite and natroalunite are stable over this temperature range, and that increased Na substitution is favored at higher temperature. Our calculation results predict that, at all temperatures, fluids in equilibrium with natroalunite are significantly more Na-rich than those typical of modem volcanic-hydrothermal environments. The results also indicate that a large variation in fluid K/Na is required to precipitate both K- and Na-rich alunite at high temperature (assuming near-equilibrium conditions). At lower temperature, much less variation in fluid composition can yield compositions near those of the end-members.Controls on alunite-natroalunite solid solution in natural systems were evaluated using electron-microprobe data from highsulfidation gold deposits of the El Indio-Pascua belt. The results indicate that higher temperatures of deposition correlate with a greater range of Na substitution in alunite. Elevated Na content in alunite is also locally attributed to higher concentrations of Na in the source fluid as a result of the leaching and alteration of andesitic host rocks. Dacitic to granitic host lithologies in other regions of the belt are correlative with more K-rich alunite compositions. The results from this study suggest that the use of alunite K-Na composition as a guide to mineral exploration should be treated with caution. (c) 2004 Elsevier B.V. All rights reserved.
机译:在200 bar和100-300°C的温度下确定了温度和块状流体K / Na对铝矾土-钠铝矾石固溶体的影响。这是高硫化条件下岩浆-水热蚀变和贵金属矿物沉积的典型条件环境,其特征在于存在含亚矾石的蚀变带。我们的模型基于已发布的实验参数,表明在该温度范围内,亚矾石和钠铝矾石均稳定,并且在较高温度下有利于增加Na取代。我们的计算结果预测,在所有温度下,与金铝矾石平衡的流体比现代火山-水热环境中的典型流体富含更多的Na。结果还表明,在高温下(假设接近平衡条件下),富集K和富Na的亚矾石都需要流体K / Na的较大变化。在较低的温度下,流体成分的变化少得多,可以产生接近端部成员的组成。使用来自El Indio-Pascua带高硫化金矿床的电子-微探针数据,评估了自然系统中钠矾石-钠铝矾石固溶体的控制。结果表明,较高的沉积温度与钠矾石中更大的Na取代范围相关。由于安山岩主岩的浸出和蚀变,钠矾石中Na含量的升高也局部归因于源流体中Na的浓度较高。在该带的其他区域,从岩性到花岗质的岩性与更多的富含钾的亚矾石组成有关。这项研究的结果表明,应谨慎对待使用alunite K-Na组合物作为矿物勘探的指南。 (c)2004 Elsevier B.V.保留所有权利。

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