首页> 外文期刊>Environmental Science and Pollution Research >Integrated geophysical and geochemical methods applied for recognition of acid waste drainage (AWD) from Zn-Pb post-flotation tailing pile (Olkusz, southern Poland)
【24h】

Integrated geophysical and geochemical methods applied for recognition of acid waste drainage (AWD) from Zn-Pb post-flotation tailing pile (Olkusz, southern Poland)

机译:综合地球物理和地球化学方法应用于Zn-PB浮选拖尾桩的酸废物排水(AWD)(Olkusz,波兰Olkusz)

获取原文
获取原文并翻译 | 示例
           

摘要

Long-term underground exploitation of Zn-Pb ores has led to drainage of the area and formation of a huge dumping ground in the form of a pile. In its vicinity, processes of acid drainage have developed as a result of contamination of soils and groundwater. Geochemical transformations of mineral contents of waste can significantly affect physical and chemical properties of the soils and the bedrock. At the prospect of termination of the mining activity in the near future, determining the routes of the pollution migration, ability to monitor acid drainage processes and assessment of the risk of heavy metal pollution are really crucial. The paper presents a proposal for solving this problem by means of geophysical methods: Electrical Resistivity Tomography (ERT), Time Domain-Induced Polarisation (TDIP), Frequency Domain Electromagnetics (FDEM) and shallow-depth magnetometric surveys combined with geochemical investigations. The obtained results of geophysical surveys have been confirmed by geochemical investigations. The applied ERT and TDIP methods make it possible to identify the spread of the zones of pollution around the tailing pile, but their effectiveness depends on humidity of the ground. Soil magnetometry and shallow-depth induction profiling are a good tool to identify the medium contaminated with minerals redeposited by aeolian processes and allow to determine the range of the dust spread from the pile. It has been shown that the range of impact of the geochemical changes around the tailing pile is high and depends not only on directions and dynamics of water flow from the pile but also on aeolian transport.
机译:Zn-PB矿石的长期地下开采导致该地区的排水和形成桩形的巨大倾销地。在其附近,由于土壤和地下水的污染而产生的酸引流过程。矿物质含量的地球化学转化会显着影响土壤和基岩的物理和化学性质。在不久的将来终止采矿活动的前景,确定污染迁移的路线,监测酸引流过程的能力和对重金属污染风险的评估非常重要。本文通过地球物理方法提出了解决该问题的提议:电阻率断层扫描(ERT),时域诱导的极化(TDIP),频域电磁(FDEM)和浅深磁测电调势与地球化学研究相结合。通过地球化学研究证实了地球物理调查的获得结果。所应用的ert和TDIP方法使得可以识别尾桩周围污染区域的扩散,但它们的有效性取决于地面的湿度。土壤磁体和浅深度诱导分析是一种良好的工具,用于鉴定与矿物质的污染的介质重新渗入到海葵过程中,并允许确定从桩中涂抹的灰尘范围。已经表明,尾桩周围地球化学变化的影响范围高,不仅取决于来自桩的水流的方向和动力学,还取决于海湾运输。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号