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EFFECTS OF NICKEL MINING ACTIVITIES ON WATER QUALITY

机译:镍采矿活动对水质的影响

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Acid Mine Drainage (AMD) originates from the sulphide mineral oxidation in the presence of water and oxygen, and to some extent bacteria, yielding sulphuric acid. The acid generated mobilizes some metals resulting in their increased bioavailabilities, creating a hazardous environment for aquatic animals and plants. The groundwater quality emanating from adjacent mine sites is a useful tool for measuring AMD. The purpose of this study was to determine extent of mine drainage from an active nickel mine and to develop mitigation. Major mining pollution sources were identified for constant monitoring. Recommendations for possible remediation and abatement of AMD were made. Several liquid samples were taken from selected sites along two streams, which flow out of the mining complex. Eight water samples were collected once a month from June to October. pH and conductivity were immediately measured followed by determination of Cu, Fe, Ni, sulphates, Total Suspended Solids (TSS) and Total Dissolved Solids (TDS). Elevated concentrations of sulphate, high conductivity and TDS were observed indicating the presence of AMD. An increase in sulphate concentration, TDS and Conductivity levels for the Community Rivers was observed. This was caused by the water flowing from the nickel mine. The quality of the natural river water was grossly affected. A passive treatment strategy would need to be developed. For the treatment process to succeed, a complete characterisation of the contaminated mine drainage is needed. Topsoiling and revegetation are other cheaper methods that can be used to reduce the extent of sulphide oxidation.
机译:酸性矿山引流(AMD)源自水和氧气存在下的硫化物矿物氧化,以及一定程度的细菌,产生硫酸。产生的酸动员一些金属导致其增加的生物利用度,为水生动物和植物产生危险环境。来自邻近矿地区的地下水质量是测量AMD的有用工具。本研究的目的是确定来自活性镍矿的矿井排水的程度并开发缓解。确定主要采矿污染源以持续监测。制作了可能的修复和减少AMD的建议。沿两条流从选定的位点取出几个液体样品,其流出开采复合物。从6月到10月份每月收集八个水样。立即测量pH和电导率,然后测定Cu,Fe,Ni,硫酸盐,总悬浮固体(TSS)和总溶解固体(TDS)。观察到硫酸盐的升高,高导电性和TDS表明AMD的存在。观察到社区河流的硫酸盐浓度,TDS和电导率的增加。这是由从镍矿流动的水引起的。天然河水的质量受到严重影响。需要制定被动治疗策略。对于成功的处理过程,需要完整表征污染的矿井排水。 TopsoIning和Revegetation是其他便宜的方法,可用于降低硫化物氧化程度。

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