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THE DETECTION AND TRACKING OF MINE-WATER POLLUTION FROM ABANDONED MINES USING ELECTRICAL TOMOGRAPHY

机译:使用电断层扫描的废弃矿井矿水污染的检测与跟踪

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Increasing emphasis is being placed on the environmental and societal impact of mining, particularly in the EU, where the environmental impacts of abandoned mine sites (spoil heaps and tailings) are now subject to the legally binding Water Framework and Mine Waste Directives. Traditional sampling to monitor the impact of mining on surface waters and groundwater is laborious, expensive and often unrepresentative. In particular, sparse and infrequent borehole sampling may fail to capture the dynamic behaviour associated with important events such as flash flooding, mine-water break-out, and subsurface acid mine drainage. Current monitoring practice is therefore failing to provide the information needed to assess the socio-economic and environmental impact of mining on vulnerable eco-systems, or to give adequate early warning to allow preventative maintenance or containment. BGS has developed a tomographic imaging system known as ALERT (Automated time-Lapse Electrical Resistivity Tomography) which allows the near real-time measurement of geoelectric properties "on demand", thereby giving early warning of potential threats to vulnerable water systems. Permanent in-situ geoelectric measurements are used to provide surrogate indicators of hydrochemical and hydrogeological properties. The ALERT survey concept uses electrode arrays, permanently buried in shallow trenches at the surface but these arrays could equally be deployed in mine entries or shafts or underground workings. This sensor network is then interrogated from the office by wireless telemetry (e.g: GSM, low-power radio, internet, and satellite) to provide volumetric images of the subsurface at regular intervals. Once installed, no manual intervention is required; data is transmitted automatically according to a pre-programmed schedule and for specific survey parameters, both of which may be varied remotely as conditions change (i.e: an adaptive sampling approach). The entire process from data capture to visualisation on the web-portal is seamless, with no manual intervention.Examples are given where ALERT has been installed and used to remotely monitor (i) seawater intrusion in a coastal aquifer (ii) domestic landfills and contaminated land and (iii) vulnerable earth embankments. The full potential of the ALERT concept for monitoring mine-waste has yet to be demonstrated. However we have used manual electrical tomography surveys to characterise mine-waste pollution at an abandoned metalliferous mine in the Central Wales orefield in the UK. Hydrogeochemical sampling confirms that electrical tomography can provide a reliable surrogate for the mapping and long-term monitoring of mine-water pollution.
机译:越来越重视正在挖掘的环境和社会影响,特别是在欧盟的环境和社会影响下,被遗弃的矿山地点(弃土堆和尾矿)的环境影响现在受到具有法律约束力的水框架和矿山废物指令的影响。传统的采样来监测采矿对地表水域和地下水的影响是费力,昂贵,往往不佳的。特别地,稀疏和不频繁的钻孔采样可能无法捕获与闪光洪水,矿泉水爆炸等重要事件相关的动态行为,如闪渠淹没和地下酸性矿矿排水。因此,目前的监测实践未能提供评估矿业对脆弱的生态系统的社会经济和环境影响所需的信息,或者提供足够的预警,以允许预防性维护或遏制。 BGS开发了一种被称为警报(自动时间流逝电阻率断层扫描)的断层摄影成像系统,其允许近乎实时测量电气电位“按需”,从而提高弱势水系统的潜在威胁的预警。永久的原位电气测量用于提供水化学和水文地质性质的替代指标。警报调查概念使用电极阵列,永久埋在表面的浅沟中,但这些阵列同样可以在矿山条目或轴或地下工作中部署。然后通过无线遥测(例如:GSM:GSM,低功率无线电,互联网和卫星)从办公室询问该传感器网络,以定期为地下的体积图像提供。安装后,不需要手动干预;数据根据预编程的时间表自动发送,并且对于特定的调查参数,这两者都可以随着条件的变化而远程变化(即,自适应采样方法)。从数据捕获到Web-Portal上的可视化的整个过程都是无缝的,没有手动干预。提出了一个警报,用于远程监测(i)沿海含水层(ii)国内垃圾填埋场的海水侵入(i)污染土地和(iii)脆弱的地球堤。监测矿井废物的警报概念的全部潜力尚未得到证明。然而,我们使用了手动电断层扫描调查,在英国中央威尔士厄菲尔德的一座废弃的金色矿井中表征了矿井废物污染。水力地球化学抽样证实,电断层扫描可以为矿井水污染的测绘和长期监测提供可靠的代理。

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