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A geochemical weathering profile of a fine ash tailings dam and its impact on the underlying aquifers

机译:细灰尾矿坝的地球化学风化剖面及其对下伏含水层的影响

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A weathering profile of an unlined fine ash tailings dam was established with the aid of static and kinetic tests to determine the leachate composition across a tailings dam profile and to evaluate its impact on the underlying aquifers. Kinetic leaching results indicated that SO42-, Ca2+, Na+, Cl+, Mg2+ and K+ ions were highly soluble in both, fresh and weathered fine ash. Leaching rates of elements including Ca, B, Ba and Al decreased with depth and age of the fine ash while V, Mo, Cu, Mn, Si, Li, Cr and SO4 had an increasing leaching rate. A constant leaching rate was measured for Se, Fe, Na, Mg, K, NO3 and Zn. At shallow depth, a weathering zone was identified by a decrease in leaching rates of most elements. Although the hydraulic conductivity of the fine ash dam was low (0.0067 m/d and 0.0367 m/d), long-term hydrochemical monitoring around the tailings dam showed alterations in groundwater types of the underlying aquifers due to seepage. Downstream of the tailings dam, the groundwater type of the shallow weathered aquifer changed from Ca/MgSO4/Cl to NaSO4/Cl and from Na-bicarbonate to Ca/MgSO4/Cl upstream. A reverse trend was observed in the deeper fractured aquifer indicating that the fine ash leachate plume migrated laterally and vertically from the shallower to the deeper aquifer. Hence, the natural clay layer below the tailings dam was insufficient in retaining soluble elements leached from the fine ash over two decades. Therefore, an impermeable liner is recommended prior to the tailings dam construction.
机译:借助静态和动力学测试,确定了无衬砌的细灰尾矿坝的风化剖面,以确定贯穿尾矿坝剖面的渗滤液组成,并评估其对下伏含水层的影响。动力学浸出结果表明,SO42-,Ca2 +,Na +,Cl +,Mg2 +和K +离子均高度溶于新鲜和风化的细灰中。钙,硼,钡和铝等元素的浸出率随粉煤灰的深度和龄期而降低,而钒,钼,铜,锰,硅,锂,铬和二氧化硫的浸出率则增加。测定了Se,Fe,Na,Mg,K,NO3和Zn的恒定浸出率。在较浅的深度,通过大多数元素的浸出率降低来确定风化带。尽管细灰坝的水力传导率较低(0.0067 m / d和0.0367 m / d),但尾矿坝周围的长期水化学监测显示,由于渗漏,底层含水层的地下水类型发生了变化。在尾矿坝下游,浅层风化含水层的地下水类型从Ca / MgSO4 / Cl变为NaSO4 / Cl,从碳酸氢钠变为Ca / MgSO4 / Cl。在较深的破裂含水层中观察到相反的趋势,表明细灰渗滤液羽流从较浅的含水层向垂直和横向迁移。因此,在尾矿坝下方的天然粘土层不足以保留二十年来从细灰中浸出的可溶性元素。因此,建议在尾矿坝建设之前使用不可渗透的衬里。

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