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Geologic control on acidic and metal-rich waters in the southeast red mountains area, near silverton, colorado

机译:东南红山区酸性和金属水域的地质控制,靠近Silverton,科罗拉多州

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Areally extensive acid sulfate-altered and mineralized rock in the southeast Red Mountains area is noted for its association with naturally occurring and mine-related acidic and metal-rich waters. Integrated geologic and aqueous geochemical studies demonstrate that the degree of metal mobilization and acid production in natural waters correlates well with the type of hydrothermally altered rock and structural features in which these water interact. Quartz-sericite-pyrite, quartz-alunite, and argillic alteration assemblages are associated with some of the most naturally acidic, high-metal waters in the study area; calcite-bearing propylitic rocks are related to the most pristine waters and buffer sulfate-rich, acidic waters produced by pyrite oxidation. Tace metals in natural waters are mostly derived from enargite, zinc-rich tetrahedrite and sphalerite. Pryite oxidation contributes very little with respect to base-metals in these natural waters.
机译:由于其与天然存在的和矿山相关的酸性和金属富含金属水域的关联,注意到东南红山区地区的耐酸硫酸盐改变和矿化岩石。综合地质和水性地球化学研究表明,天然水域的金属摩擦程度和酸生产与这些水相互作用的水热改变的岩石和结构特征相互作用。石英 - 霉菌 - 黄铁矿,石英 - 硝石和野石改变组合与研究区中的一些最自然的酸性高金属水有关;携带方解石的丙基岩石与最原始的水和富含硫酸盐的富含硫酸盐有关的酸性水有关。天然水域的TACE金属主要来自烯拓,富含锌的四德里茨和闪锌矿。 Pryite氧化对于这些天然水域中的碱金属贡献很小。

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