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Ecotoxicological risks of the abandoned F-Ba-Pb-Zn mining area of Osor (Spain)

机译:Osor(西班牙)废弃的F-Ba-Pb-Zn矿区的生态毒理风险

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摘要

Due to its potential toxic properties, metal mobilization is of major concern in areas surrounding Pb-Zn mines. In the present study, metal contents and toxicity of soils, aqueous extracts from soils and mine drainage waters from an abandoned F-Ba-Pb-Zn mining area in Osor (Girona, NE Spain) were evaluated through chemical extractions and ecotoxicity bioassays. Toxicity assessment in the terrestrial compartment included lethal and sublethal endpoints on earthworms Eisenia fetida, arthropods Folsomia candida and several plant species, whereas aquatic tests involved bacteria Vibrio fischeri, microalgae Raphidocelis subcapitata and crustaceans Daphnia magna. Total concentrations of Ba (250-5110 mg kg(-1)), Pb (940 to > 5000 mg kg(-1)) and Zn (2370-11,300 mg kg(-1)) in soils exceeded intervention values to protect human health. Risks for the aquatic compartment were identified in the release of drainage waters and in the potential leaching and runoff of metals from contaminated soils, with Cd (1.98-9.15 A mu g L-1), Pb (2.11-326 A mu g L-1) and Zn (280-2900 A mu g L-1) concentrations in filtered water samples surpassing US EPA Water Quality Criteria (2016a, b). Terrestrial ecotoxicity tests were in accordance with metal quantifications and identified the most polluted soil as the most toxic. Avoidance and reproduction tests with earthworms showed the highest sensitivity to metal contamination. Aquatic bioassays performed in aqueous extracts from soils confirmed the results from terrestrial tests and also detected toxic effects caused by the mine drainage waters. Algal growth inhibition was the most sensitive aquatic endpoint. In view of the results, the application of a containment or remediative procedure in the area is encouraged.
机译:由于其潜在的毒性,在铅锌矿山周围地区动员金属是主要关注的问题。在本研究中,通过化学提取和生态毒性生物测定法评估了Osor(赫罗纳,西班牙)的废弃F-Ba-Pb-Zn矿区的土壤金属含量,土壤毒性,土壤水提取物和矿山排水的毒性。陆地区室的毒性评估包括f Eisenia fetida,节肢动物Folsomia candida和几种植物物种的致死和亚致死终点,而水生试验涉及费氏弧菌,微藻Raphidocelis subcapitata和甲壳纲水蚤(Daphnia magna)。土壤中的Ba(250-5110 mg kg(-1)),Pb(940至> 5000 mg kg(-1))和Zn(2370-11,300 mg kg(-1))的总浓度超过了干预值以保护人类健康。镉,镉(1.98-9.15 Aμg L-1),铅(2.11-326 AμgL-)释放了排水,污染了土壤中的金属有可能浸出和径流,从而确定了水生隔室的风险。 1)和过滤水样品中的Zn(280-2900 Aμg L-1)浓度超过美国EPA水质标准(2016a,b)。陆地生态毒性测试符合金属定量标准,并将污染最严重的土壤确定为毒性最高的土壤。 earth的回避和繁殖测试显示出对金属污染的最高敏感性。对土壤中的水提取物进行的水生生物测定证实了陆地试验的结果,并且还发现了矿井排水造成的毒性作用。藻类生长抑制是最敏感的水生终点。鉴于结果,鼓励在该地区采用遏制或修复程序。

著录项

  • 来源
    《Environmental Geochemistry and Health》 |2017年第3期|665-679|共15页
  • 作者单位

    UPC, Ctr Res & Innovat Toxicol, Innotex Ctr, Ctra Nac 150 Km 15, Terrassa 08227, Spain;

    UPC, Ctr Res & Innovat Toxicol, Innotex Ctr, Ctra Nac 150 Km 15, Terrassa 08227, Spain;

    UPC, Ctr Res & Innovat Toxicol, Innotex Ctr, Ctra Nac 150 Km 15, Terrassa 08227, Spain|Tech Univ Catalonia UPC, Dept Fluid Mech, Sch Ind & Aeronaut Engn Terrassa ETSEIAT, Colon 7-11, Terrassa 08222, Spain;

    UPC, Ctr Res & Innovat Toxicol, Innotex Ctr, Ctra Nac 150 Km 15, Terrassa 08227, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mine wastes; Mine drainage water; Osor; Ecotoxicity; Soil contamination;

    机译:矿山废物;矿山排水;Osor;生态毒性;土壤污染;

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