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Inputs and fate of contaminants in a reservoir with circumneutral water affected by acid mine drainage

机译:酸性矿山排水影响水库中污染物的投入和命运

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The Olivargas River drains materials from the Iberian Pyrite Belt with a large number of abandoned sulphide mining complexes that produce highly contaminated acid mine drainages (AMD). The Olivargas River is regulated by a reservoir that receives these acid leachates through its three main tributaries. In this study, the chemical composition of the waters from the reservoir and the water courses in its watershed are investigated based on samples taken throughout a hydrological year. We calculated the contaminant load for Al, Cd, Co, Cu, Fe, Mn, Ni, Pb, Zn, SO_4 and other elements entering the reservoir by two methods, establishing the relations of the dissolved element concentrations with 1) the water flow and 2) the specific conductance. The most extreme conditions were found in the tributary Los Peces Creek, with a mean pH value of 2.8 and concentrations of up to 736 mg/L of Zn and 291 mg/L of Al, making it the main source of metals in the reservoir (up to 65 t/year of Zn). Given that the volume of acid mine water pouring into the reservoir is relatively low, the water pH in the reservoir remains neutral. Under these conditions, most of the mine-derived metals (especially Al and Fe) form precipitates that accumulate in the bottom sediments, while dissolved concentrations are low (0.2 mg/L of Al and <0.1 mg/L of Fe). However, some potentially toxic elements, such as Zn and Cd, remain dissolved, exceeding the limiting concentrations set by environmental legislation. These results are of interest to understand the behaviour of trace elements in other reservoirs affected by AMD and to study the effectiveness of possible remediation measures.
机译:Olivargas River从Iberian硫铁矿带中排出了大量废弃的硫化物开采复合物,产生高度污染的酸性矿井排水(AMD)。 Olivargas River由储层调节,通过其三个主要的支流来接受这些酸性渗滤液。在这项研究中,基于在水文一年中采取的样品,研究了水库中水的化学成分和流域中的水课程。我们计算了Al,Cd,Co,Cu,Fe,Mn,Ni,Pb,Zn,So_4和其他元素的污染载荷通过两种方法进入储存器,建立了溶解元素浓度与1)水流的关系2)具体的电导。在支流Los Peces Creek中发现最极端的条件,平均pH值为2.8,浓度高达736 mg / L Zn和291 mg / L的Al,使其成为水库中金属的主要来源(高达65吨/年Zn)。鉴于倒入储存器的酸矿泉水的体积相对较低,水库中的水pH保持中性。在这些条件下,大多数矿衍生的金属(特别是Al和Fe)形成沉淀物,其在底部沉积物中积聚,同时溶解浓度低(0.2mg / L和<0.1mg / L的Fe)。然而,一些潜在的有毒元素,例如Zn和Cd,保持溶解,超过由环境法规设定的限制浓度。这些结果对于了解受AMD影响的其他水库中的微量元素的行为,并研究可能的修复措施的有效性。

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