首页> 外文会议>International conference on acid rock drainage;ICARD 2000 >Non-acidic, sulfate-poor, copper-enriched drainage from a precambrian stratabound chalcopyrite/pyrite deposit, carbon county, wyoming
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Non-acidic, sulfate-poor, copper-enriched drainage from a precambrian stratabound chalcopyrite/pyrite deposit, carbon county, wyoming

机译:来自怀俄明州碳县的前寒武纪地层结合的黄铜矿/黄铁矿矿床的非酸性,贫硫酸盐,富含铜的排水

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The Ferris-Haggarty underground mine was abandoned circa 1910, and portal discharge has since resulted in degradation of a trout fishery in the receiving waters of Haggarty Creek. Although tunnel discharge varies dramatically in volume throughout the year due to infiltration of snowmelt, compositionally it is a nearly constant low-TDS, pH-neutral, low-sulfate, copper-silicate dominated water. Between infiltration events, components of ARD accumulate in unsaturated, oxygenated environments within upper workings and are delivered to the main haulage level by the subsequent annual snowmelt flush. Mixing with non-ARD mine waters results in neutralization, dilution, and precipitation of amorphous copper carbonate and silicate phases. These mechanisms, combined with variations in the water balance, control the composition of the portal discharge. Understanding the chemical and hydrologic control mechanisms was critical to the design of a passive treatment system to decrease effuent copper concentrations.
机译:Ferris-Haggarty地下矿山在1910年左右被废弃,自那时以来,门户泄洪导致鳟鱼渔业在Haggarty Creek的接收水域退化。尽管由于融雪的渗入,全年隧道排放量变化很大,但从结构上讲,它几乎是恒定的低TDS,pH中性,低硫酸盐,硅酸铜为主的水。在渗透事件之间,ARD的成分会在上部工作区域的不饱和,含氧环境中积累,并通过随后的年度融雪冲洗将其输送至主要运输水平。与非ARD矿井水混合会导致中和,稀释和沉淀无定形碳酸铜和硅酸盐相。这些机制与水平衡的变化相结合,控制了门户排放的成分。了解化学和水文控制机制对于降低铜的有效浓度的被动处理系统的设计至关重要。

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