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评估矿井水混合物的毒性以及水质指导值在保护当地水生物种方面的有效性。

Assessing the Toxicity of Mine-Water Mixtures and the Effectiveness of Water Quality Guideline Values in Protecting Local Aquatic Species.

作者信息

Trenfield Melanie A, Pease Ceiwen J, Walker Samantha L, Markich Scott J, Humphrey Chris L, van Dam Rick A, Harford Andrew J

机构信息

Environmental Research Institute of the Supervising Scientist, Darwin, Northern Territory, Australia.

Aquatic Solutions International, "Point Break", North Narrabeen Beach, New South Wales, Australia.

出版信息

Environ Toxicol Chem. 2021 Aug;40(8):2334-2346. doi: 10.1002/etc.5103. Epub 2021 Jun 22.

Abstract

Six tropical freshwater species were used to assess the toxicity of mine waters from a uranium mine adjacent to a World Heritage area in northern Australia. Key contaminants of potential concern for the mine were U, Mg, Mn, and total ammonia nitrogen (TAN). Direct toxicity assessments were carried out to assess whether the established site-specific guideline values for individual contaminants would be protective with the contaminants occurring as mixtures. Metal speciation was calculated for contaminants to determine which were the major contributors of toxicity, with 84 to 96% of Mg predicted in the free-ion form as Mg , and 76 to 92% of Mn predicted as Mn . Uranium, Al, and Cu were predicted to be strongly bound to fulvic acid. Uranium, Mg, Mn, and Cu were incorporated into concentration addition or independent action mixture toxicity models to compare the observed toxicity in each of the waters with predicted toxicity. For >90% of the data, mine-water toxicity was less than predicted by the concentration addition model. Instances where toxicity was greater than predicted were accompanied by exceedances of individual metal guideline values in all but one case (i.e., a Mg concentration within 10% of the guideline value). This indicates that existing individual water quality guideline values for U, Mg, Mn, and TAN would adequately protect ecosystems downstream of the mine. Environ Toxicol Chem 2021;40:2334-2346. © 2021 Commonwealth of Australia. Environmental Toxicology and Chemistry © 2021 SETAC.

摘要

六种热带淡水物种被用于评估来自澳大利亚北部一个世界遗产区附近铀矿的矿井水的毒性。该矿潜在的关键污染物是铀、镁、锰和总氨氮(TAN)。进行了直接毒性评估,以确定针对单个污染物制定的特定场地指导值在污染物以混合物形式存在时是否具有保护作用。计算了污染物的金属形态,以确定哪些是毒性的主要贡献者,预测84%至96%的镁以游离离子形式Mg²⁺存在,76%至92%的锰以Mn²⁺存在。铀、铝和铜预计与富里酸强烈结合。将铀、镁、锰和铜纳入浓度相加或独立作用混合物毒性模型,以比较每个水样中观察到的毒性与预测毒性。对于超过90%的数据,矿井水毒性低于浓度相加模型的预测值。毒性大于预测值的情况,除了一个案例(即镁浓度在指导值的10%以内)外,都伴随着个别金属指导值的超标。这表明现有的铀、镁、锰和总氨氮的个别水质指导值将充分保护该矿下游的生态系统。《环境毒理学与化学》2021年;40:2334 - 2346。© 2021澳大利亚联邦。《环境毒理学与化学》© 2021 SETAC。

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