首页> 外文会议>Association of Environmental and Engineering Geologists Annual Meeting >Approaches to site characterization, reclamation of uranium mine overburden, and neutralization of a mine pond at the White King-Lucky Lass mines site near Lakeview, Oregon
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Approaches to site characterization, reclamation of uranium mine overburden, and neutralization of a mine pond at the White King-Lucky Lass mines site near Lakeview, Oregon

机译:现场表征的方法,铀矿覆盖层的回收,以及在俄勒冈州LakeView附近的白王幸运少女矿山地区的矿井池塘中和

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Remediation of uranium mine overburden and an acidic mine pond at the White King-Lucky Lass mines near Lakeview, Oregon was completed in November 2006. The site was remediated under Superfund due to risk from arsenic and radium-226 in overburden soils. Separate clean-up standards were developed for each mine site for arsenic and radium-226 due to differing ore-body geochemistry. Gamma surveys were used to identify overburden with elevated radium-226 activities and to provide confirmation of visual clean-up of materials. Because arsenic is collocated with radium-226 at the White King mine, gamma surveys reduced the number of arsenic confirmation samples. Secular equilibrium in the uranium-238 decay series was used to determine the extent of leaching of uranium-238 and daughter products from overburden to groundwater. Trilinear geochemical analysis distinguished mineralized groundwater within the ore bodies from regional groundwater and detected any influence from seepage from overburden piles. Remedial actions include neutralization of an acidic mine pond and consolidation of elevated-activity overburden into a pile with a soil/rock cover at White King mine. Ecological toxicity studies determined that neutralization of the pond would provide a ben-thic community supportive of aquatic wildlife. An overburden pile at the Lucky Lass mine and disturbed areas were covered with clean soil. The remedial actions comply with State of Oregon siting regulations, which required removal of radioactive overburden from the 500-year flood plain. Protection of human health is assured by institutional controls to prevent use of mineralized groundwater and by fencing to prevent site access.
机译:俄勒冈州湖景湖附近的白王幸运少女矿山的修复铀矿覆盖物和酸性矿井池塘于2006年11月完成。由于砷和镭覆盖土壤中的砷和镭的风险,该网站在超级福德进行了补救。由于不同的矿石地球化学,为砷和镭的每个矿工开发了单独的清理标准。伽玛调查用于识别覆盖镭的覆盖层,并提供了对材料的视觉清理的确认。因为砷在白色王矿的镭粘连,所以伽玛调查减少了砷确认样品的数量。铀-238衰变系列中的世俗平衡用于确定铀-238的浸出程度和来自覆盖层到地下水的女儿产品的程度。三线性地球化学分析从区域地下水中的矿石体内的矿化地下水区分开,检测了覆盖物桩的渗流影响。补救措施包括中和酸性矿井池,并将升高的活性覆盖物固结成一堆土壤/岩盖在白色王矿。生态毒性研究确定了池塘的中和将提供水生野生动物的本地社区。在幸运的Lass矿山和干扰地区的覆盖层堆积覆盖着干净的土壤。补救行动符合俄勒冈州选址规定的国家,这些规定要求从500年的洪水平原中删除放射性覆盖。通过机构控制确保了人体健康的保护,以防止使用矿化地下水和击剑以防止现场接入。

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