Maqsoud Abdelkabir, Neculita Carmen Mihaela, Bussière Bruno, Benzaazoua Mostafa, Dionne Jean
Research Institute on Mines and Environment (RIME), University of Quebec in Abitibi-Temiscamingue (UQAT), 445 University Blvd, Rouyn-Noranda, QC, Canada, J9X 5E4.
Ministry of Energy and Natural Resources, 5700, 4ème Av. Ouest, Quebec, QC, Canada, G1S 4X4.
Environ Sci Pollut Res Int. 2016 May;23(9):9054-72. doi: 10.1007/s11356-016-6111-9. Epub 2016 Jan 30.
The abandoned Manitou mine site has produced acid mine drainage (AMD) for several decades. In order to limit the detrimental environmental impacts of AMD, different rehabilitation scenarios were proposed and analyzed. The selected rehabilitation scenario was to use fresh tailings from the neighboring Goldex gold mine as monolayer cover and to maintain an elevated water table. In order to assess the impact of the Goldex tailing deposition on the hydrogeochemistry of the Manitou mine site, a network of 30 piezometers was installed. These piezometers were used for continuous measurement of the groundwater level, as well as for water sampling campaigns for chemical quality monitoring, over a 3-year period. Hydrochemical data were analyzed using principal component analysis. Results clearly showed the benefic impact of fresh tailing deposition on the groundwater quality around the contaminated area. These findings were also confirmed by the evolution of electrical conductivity. In addition to the improvement of the physicochemical quality of water on the Manitou mine site, new tailing deposition induced an increase of water table level. However, at this time, the Manitou reactive tailings are not completely submerged and possible oxidation might still occur, especially after ceasing of the fresh tailing deposition. Therefore, complementary rehabilitation scenarios should still be considered.
废弃的马尼图矿场已经产生酸性矿山排水(AMD)数十年了。为了限制AMD对环境的有害影响,人们提出并分析了不同的修复方案。选定的修复方案是使用邻近的戈尔德克斯金矿的新鲜尾矿作为单层覆盖层,并维持较高的地下水位。为了评估戈尔德克斯尾矿沉积对马尼图矿场水文地球化学的影响,安装了一个由30个测压管组成的网络。在3年时间里,这些测压管用于连续测量地下水位,以及用于化学质量监测的水样采集活动。利用主成分分析法对水化学数据进行了分析。结果清楚地表明了新鲜尾矿沉积对污染区域周围地下水质量的有益影响。这些发现也得到了电导率变化的证实。除了改善马尼图矿场水的物理化学质量外,新的尾矿沉积还导致地下水位上升。然而,目前,马尼图的活性尾矿并未完全被淹没,可能仍会发生氧化,尤其是在新鲜尾矿沉积停止后。因此,仍应考虑补充修复方案。