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Arsenic readily released to pore waters from buried mill tailings

机译:砷容易从埋藏的尾矿中释放到孔隙水

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At the McClean Lake Operation in the Athabasca Basin of northern Saskatchewan, the untreated acid raffinate solutions associated with U mill tailings contain up to 700 mg/L dissolved As. To reduce the concentration of As and other contaminants in acid tailing slurries at the JEB mill at McClean Lake, ferric sulfate may be added to the acid raffinates to assure that their molar Fe/As ratio equals or exceeds 3. Tailings slurries are then neutralized with lime to pH 4, and subsequently to pH 7-8. The neutralized tailings contain minerals from the original ore, which are chiefly quartz, illite, kaolinite and chlorite, and precipitated (secondary) minerals that include gypsum, scorodite, annabergite, hydrobasaluminite and ferrihydrite. Most of the As is associated with the secondary arsenate minerals, scorodite and annabergite. However, a few percent is adsorbed and/or co-precipitated, mainly by ferrihydrite. Of major concern to provincial and federal regulators is the risk that significant amounts of As might be released from the tailings to pore waters after their subaqueous disposal in the tailings management facility. A laboratory study was performed to address this issue, measuring readily desorbed As using a method known as equilibrium partitioning in closed systems (EPICS). The EPICS method was selected because it employs a leaching solution that, except for its As concentration, is identical in composition to the neutralized raffinate in contact with the tailings. Laboratory experiments and modeling results demonstrated that the As that could be readily released to pore waters is about 0.2% of the total As in the tailings. Long-term, such releases may contribute no more than a few mg/L of dissolved As to tailings pore waters. (c) 2005 Elsevier Ltd. All rights reserved.
机译:在萨斯喀彻温省北部阿萨巴斯卡盆地的麦克林湖作业中,未经处理的与萃余矿尾矿有关的酸提余液含有高达700 mg / L的溶解砷。为了降低McClean Lake JEB磨机酸性尾矿浆中As和其他污染物的浓度,可将硫酸铁添加到酸性残液中,以确保其摩尔Fe / As比率等于或超过3。然后将尾矿浆用Cd中和。石灰至pH 4,随后至pH 7-8。中和后的尾矿中含有来自原始矿石的矿物,主要是石英,伊利石,高岭石和绿泥石,以及沉淀的(次要)矿物,包括石膏,臭葱石,黄铁矿,水铝矾石和水铁矿。大部分砷与次生砷酸盐矿物,臭葱石和菱锰矿有关。但是,有百分之几的吸附和/或共沉淀,主要是由水铁矿引起的。省级和联邦监管机构最关心的是,在水下将其浸入尾矿管理设施后,大量的As可能会从尾矿中释放到孔隙水中。为了解决这个问题,进行了一项实验室研究,使用一种称为封闭系统中的平衡分配(EPICS)的方法来测量容易解吸的As。选择EPICS方法是因为它采用一种浸提溶液,除了其As浓度外,其成分与与尾矿接触的中和的萃余液相同。实验室实验和模型结果表明,可以轻松释放到孔隙水中的砷约为尾矿中总砷的0.2%。长期而言,这种释放对尾矿孔隙水的溶解性砷的贡献可能不超过几毫克/升。 (c)2005 Elsevier Ltd.保留所有权利。

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