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首页> 外文期刊>Pure and Applied Geophysics >Study of Generation and Underground Flow of Acid Mine Drainage in Waste Rock Pile in an Uranium Mine Using Electrical Resistivity Tomography
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Study of Generation and Underground Flow of Acid Mine Drainage in Waste Rock Pile in an Uranium Mine Using Electrical Resistivity Tomography

机译:电阻率断层扫描铀矿废物岩桩中酸性矿井排水的生成及地下流动研究

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摘要

Mineral exploration is often associated with the generation of environmental liabilities, whose potential damages might imperil local water quality. An example of these environmental impacts is the acid mine drainage-AMD, caused by sulfides oxidation and production of acid and saline effluents. The analysis of critical areas with generation and spread of contamination plumes becomes more feasible due to the possibility to obtain geophysical models of water systems, especially to identify regions with accumulation of reactive minerals and preferential water flows. The rock-waste pile named BF-04 fits in this context of contamination, and it was studied based on the Electrical Resistivity Tomography technique, inversion models and isosurface models, providing conditions to recognize sulfide zones (> 10.1 mV/V), whereas chaotic high salt content underground flows, along several depths, were identified by low resistivity zones (< 75.8 omega m). The complex behavior of groundwater flow in this kind of artificial granular aquifer is caused by its granulometric and lithologic heterogeneities, and compacted material. In addition, the results reveled a substantial water infiltration from Consulta creek, however the most critic zones for AMD generation are located at shallow levels where the waste rock material is more exposed to atmospheric O-2 and meteoric water infiltration. The bedrock was not associated with significant low resistivity anomalies, which means that its contribution to AMD generation was considered relatively less important. The results will contribute to the environmental remediation management and also to demonstrate the potential applicability of geophysical methods in mining wastes.
机译:矿产勘探往往与生成环保负债有关,其潜在的损害可能会危及当地的水质。这些环境影响的一个例子是酸性矿氨排水,由硫化物氧化和酸和盐水产生引起的。由于获得水系统的地球物理模型的可能性,污染羽毛产生和扩散的关键区域的分析变得更加可行,尤其是识别具有反应性矿物质和优惠水流的积累的区域。命名为BF-04的岩石废物桩在这种污染的背景下配合,并且基于电阻率断层扫描技术,反转模型和异形表面模型进行研究,提供识别硫化物区(> 10.1mV / v)的条件,而混沌通过低电阻区(<75.8ωM)鉴定高盐含量地下流动的地下流动。这种人工颗粒含水层的地下水流动的复杂行为是由其粒度和岩性异质性和压实材料引起的。此外,结果揭示了来自顾问溪的大量水渗透,但AMD一代的最多批评区位于浅水平,废弃物岩材料更暴露于大气o-2和流动水渗透。基岩与显着的低电阻率异常无关,这意味着其对AMD生成的贡献被认为是相对不太重要的。结果将有助于环境修复管理,也有助于展示地球物理方法在采矿废物中的潜在适用性。

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