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Selenium Accumulation In Aquatic Biota Downstream Of A Uranium Mining And Milling Operation

机译:铀矿山和制粉厂下游水生生物中硒的积累

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Uranium mining and milling operations have the potential to release trace elements such as arsenic, molybdenum, nickel, selenium and uranium and ions (e.g., sulfate, ammonium) into the receiving aquatic ecosystem. The major implication of elevated environmental selenium is its propensity to accumulate in the aquatic food chain, potentially impairing fish reproduction. The objective of this study was to investigate the accumulation of selenium in the major compartments of aquatic ecosystems (lakes) upstream and downstream of a uranium mine in northern Saskatchewan, Canada. Selenium concentrations in aquatic biota were elevated in the exposure lake although water and sediment concentrations were low (0.43 μg/L and 0.54 μg/g dry weight, respectively). Biomagnification of selenium resulted in approximately 1.5 to 6 fold increase in the selenium concentration between plankton, invertebrates and fish. However, no biomagnification was observed between forage and predatory fish. Although some aquatic biota (e.g., forage fish) exceeded the lower limit of the proposed 3 to 11 μg/g (dry weight) dietary toxicity threshold for fish, no adverse effects of selenium could be identified in this aquatic system. Continued environmental monitoring is recommended to avoid potential selenium impacts.
机译:铀矿开采和研磨作业有可能将痕量元素(如砷,钼,镍,硒和铀)和离子(例如硫酸盐,铵)释放到接收的水生生态系统中。环境硒含量升高的主要含义是其在水生食物链中积累的倾向,有可能损害鱼类的繁殖。这项研究的目的是调查加拿大萨斯喀彻温省北部铀矿上游和下游水生生态系统(湖泊)主要隔室中硒的积累。尽管水和沉积物的浓度很低(干重分别为0.43μg/ L和0.54μg/ g),但暴露湖中水生生物中硒的浓度却升高了。硒的生物放大作用使浮游生物,无脊椎动物和鱼类之间的硒浓度增加了约1.5至6倍。但是,在饲料和掠食性鱼类之间没有观察到生物放大作用。尽管某些水生生物区系(例如饲料鱼)超过了建议的鱼类饮食毒性阈值3至11μg/ g(干重)的下限,但在该水生系统中未发现硒的不利影响。建议继续进行环境监测,以避免潜在的硒影响。

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