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首页> 外文期刊>Mine water and the environment >Geochemical Characterisation Of Seepage And Drainage Water Quality From Two Sulphide Mine Tailings Impoundments: Acid Mine Drainage Versus Neutral Mine Drainage
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Geochemical Characterisation Of Seepage And Drainage Water Quality From Two Sulphide Mine Tailings Impoundments: Acid Mine Drainage Versus Neutral Mine Drainage

机译:两个硫化矿尾矿库的渗漏和排水水质的地球化学特征:酸性矿山排水与中性矿山排水

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Seepage water and drainage water geochemistry (pH, EC, O_2, redox, alkalinity, dissolved cations and trace metals, major anions, total element concentrations) were studied at two active sulphide mine tailings impoundments in Finland (the Hitura Ni mine and Luikonlahti Cu mine/talc processing plant). The data were used to assess the factors influencing tailings seepage quality and to identify constraints for water treatment. Changes in seepage water quality after equilibration with atmospheric conditions were evaluated based on geochemical modelling. At Luikonlahti, annual and seasonal changes were also studied. Seepage quality was largely influenced by the tailings mineralogy, and the serpentine-rich, low sulphide Hitura tailings produced neutral mine drainage with high Ni. In contrast, drainage from the high sulphide, multi-metal tailings of Luikonlahti represented typical acid mine drainage with elevated contents of Zn, Ni, Cu, and Co. Other factors affecting the seepage quality included weathering of the tailings along the seepage flow path, process water input, local hydrological settings, and structural changes in the tailings impoundment. Geochemical modelling showed that pH increased and some heavy metals were adsorbed to Fe precipitates after net alkaline waters equilibrated with the atmosphere. In the net acidic waters, pH decreased and no adsorption occurred. A combination of aerobic and anaerobic treatments is proposed for Hitura seepages to decrease the sulphate and metal loading. For Luikonlahti, prolonged monitoring of the seepage quality is suggested instead of treatment, since the water quality is still adjusting to recent modifications to the tailings impoundment.
机译:在芬兰的两个活性硫化物尾矿库中(Hitura Ni矿和Luikonlahti Cu矿)研究了渗水和排水水的地球化学(pH,EC,O_2,氧化还原,碱度,溶解的阳离子和微量金属,主要阴离子,总元素浓度)。 /滑石加工厂)。该数据用于评估影响尾矿渗流质量的因素,并确定水处理的限制条件。根据地球化学模型评估了与大气条件平衡后的渗水水质变化。在Luikonlahti,还研究了年度和季节变化。尾矿的矿物学特征极大地影响了渗流质量,富含蛇纹石的低硫化物Hitura尾矿产生了中性的高Ni矿井排水。相反,Luikonlahti的高硫化物多金属尾矿中的排水代表了典型的酸性矿山排水,其中锌,Ni,Cu和Co含量较高。其他影响渗流质量的因素包括沿渗流路径的尾矿风化,工艺用水输入,当地水文环境以及尾矿库的结构变化。地球化学模型表明,在碱性净水与大气平衡后,pH升高并且一些重金属吸附到Fe沉淀物中。在净酸性水中,pH降低且未发生吸附。建议对Hitura渗流进行好氧和厌氧处理的组合,以减少硫酸盐和金属的负载。对于Luikonlahti,建议对渗漏质量进行长期监测而不是对污水进行处理,因为水质仍在适应尾矿库的最新改造。

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