Environmental recovery of As Pontes mine pit lake

IF 0.2 Q4 GEOLOGY
Francisco Rivas, Javier Samper, Luis Montenegro
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引用次数: 0

Abstract

One of the most common solutions for more than 50 years for the recovery of mine holes generated during mining activities is their transformation into lakes. This paper presents the activities carried out from the closure of the As Pontes mine to the total filling of the mining lake. The environmental solution adopted for the recovery of the mining hole and its transformation into a mining lake is described, as well as the methodology followed for its filling, defining the water sources used, its volume and its chemical quality. Perfect mix and stratified lake models were performed to simulate the final chemical quality of the lake. The details of the studies carried out on waves on the shores of the lake and the stability of the slopes of the mine are also presented. The hydraulic works carried out to reintegrate into the lake the watercourses that were diverted during the mining exploitation are also indicated. Water chemical data of the As Pontes lake collected during and after the filling of the lake show the presence of two well-differentiated zones separated by a chemocline. The uppermost layer has a slightly acid pH and oxic conditions, while the deeper layer has very low pH values and anoxic conditions. The methodology used was successful and the forecasts made are in line with the results obtained both in relation to the filling time of the lake and the quality of the overflow waters, which comply with all the established limits.
As Pontes矿坑湖的环境恢复
50多年来,采矿活动中产生的矿洞恢复最常见的解决方案之一是将其转变为湖泊。本文介绍了从阿斯庞特斯矿关闭到采矿湖全部填满所进行的活动。描述了恢复采矿孔并将其转变为采矿湖所采用的环境解决方案,以及填充采矿孔所采用的方法,确定了所使用的水源,其体积和化学质量。采用完全混合和分层湖泊模型模拟湖泊的最终化学质量。还介绍了对湖岸波浪和矿山边坡稳定性进行的研究的细节。还介绍了为恢复湖泊而进行的水利工程,以及在采矿过程中改道的水道。As Pontes湖在充湖期间和充湖后的水化学数据显示,湖内存在两个分化良好的带,由一条趋化斜线隔开。最上层的pH值略偏酸性,且处于缺氧状态,而较深层的pH值非常低,且处于缺氧状态。所使用的方法是成功的,所作的预测与所获得的结果一致,无论是关于湖泊的填充时间还是溢流水的质量,都符合所有既定的限制。
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
25
期刊介绍: The journal publishes papers on a wide range of research topics in the field of Earth Sciences. - Stratigraphy, sedimentology and palaeogeography - Historical and regional geology - Tectonics, structural geology and geophysics - Earthquate Geology and Paleosismology - Marine geology and oceanography - Geomorphology and physical geography - Hydrology, hydrogeology and water resources management - Pedology and soil sciences - Mineralogy, crystallography, metallography and mineral deposits - Petrology and geochemistry - Palaeontology - Geoscientific mapping and information systems - Environmental geology, Palaeoclimatoloy and Global Change - Planetary geology - Applied geology, geotechnics, geological and ground engineering - Mining prospecting and research, mineral resources management and underground works - Metallurgy, metallurgical engineering, materials science and technology - History and epistemology of earth sciences - Popular science, geological and mining heritage - Geological hazards - Economic aspects of earth sciences - Other related topics…
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