首页> 外文会议>Symposium on the Application of Geophysics to Engineering and Environmental Problems >MAPPING ACID MINE DRAINAGE AT AN ABANDONED MINE SITE IN OTTAWA COUNTY, OKLAHOMA USING 3D ELECTRICAL RESISTIVITY TOMOGRAPHY
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MAPPING ACID MINE DRAINAGE AT AN ABANDONED MINE SITE IN OTTAWA COUNTY, OKLAHOMA USING 3D ELECTRICAL RESISTIVITY TOMOGRAPHY

机译:在俄克拉荷马州渥太华县的一座废弃的矿工在俄克拉荷马州的一场被遗弃的矿工映射使用3D电阻率断层扫描

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The Park Walton Mine is an abandoned mining site in the Melrose Mining District, Ottawa County, Oklahoma. The site was mined for lead and zinc ores in the 1940s. Today, a 40,000 m~2 area is covered with waste rock and fine tailings discarded at the site as part of the mining process. Four vent shafts are present that extend into mine voids located approximately 100 m below ground surface. The vent shafts discharge water contained in mine voids to the surface during times when the underlying aquifer is overpressured. No data exist regarding heavy metal contamination at the site or the extent to which heavy metals have mobilized off-site. The present study aimed to assess the extent to which the shallow subsurface at the site was contaminated with acid mine drainage products using 3D electrical resistivity tomography. Electrical resistivity surveys are commonly applied to acid mine drainage studies because the products of acid mine drainage (SO4~(2-) , H~+, metal ions) cause affected waters to be highly conductive to electrical current. Inversion results indicated conductivity anomalies in the shallow subsurface related to fluid flow associated with contaminant transport away from the waste rock pile and vent pipe discharges. Results from this study provided insight into the hydrodynamics at the site and will be used to plan future contamination surveys and mitigation efforts.
机译:Park Walton Lime是俄克拉荷马州渥太华县梅尔罗斯矿区的废弃采矿遗址。该网站于20世纪40年代为铅和锌矿开采。如今,40,000米〜2区被废弃岩石覆盖,留在现场丢弃的细尾作为采矿过程的一部分。存在四个排气轴,其延伸到位于地面下方约100米的矿井空隙中。在潜在的含水层过度压抑期间,通风轴排出矿井空隙中的水。没有关于现场的重金属污染的数据或重金属动员的程度。本研究旨在评估使用3D电阻率断层扫描的酸性矿山排水产品污染浅层地下的程度。电阻率调查通常适用于酸性矿矿排水研究,因为酸性矿矿排水的产物(SO4〜(2-),H〜+,金属离子)导致受影响的水对电流产生高导电。反演结果表明与与废物岩石桩和通气管道排出相关的污染物运输相关的流体流动的浅层地下的导电异常。本研究的结果提供了对现场的流体动力学的洞察力,将用于规划未来的污染调查和缓解努力。

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