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Management strategies and valorization for waste sludge from active treatment of extremely metal-polluted acid mine drainage: A contribution for sustainable mining

机译:积极处理极度金属污染的酸性矿山排水的废物污泥的管理策略和价值评估:对可持续采矿的贡献

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This study assesses the environmental impact and the potential valorization of metal-sludge waste generated by the active neutralization of extremely metal-polluted acid mine drainage (AMD). To this end, two regulated leaching tests (EN 12457-2 and 1311 USEPA TCLP), a standardized sequential extraction protocol (BCR sequential extraction) and single leaching tests were performed using dilute common industrial acids. The results of the two standardized leaching tests showed a complete discrepancy, classifying the waste as both inert (according to the TCLP) and not suitable for disposal at landfills for hazardous waste (according to EN 12457-2). In this regard, the environmental characterization of the waste using the BCR sequential extraction lined up with interpretations made by the EN 12457-2 leaching test, reinforcing the hazardousness of this type of residue. This waste requires careful management, as evidenced by the release of high concentrations of metals (e.g., Cd, Zn, Al) when interaction with rainfall and organic acids take place, exceeding the risk threshold values for aquatic life. The easy extraction of base, industrial-and tech-metals that is possible with dilute acids encourages the consideration of this type of sludge as an interesting alternative metal source with great economic potential. The joint application of remediation treatments and metal recovery schemes could contribute to the goal of zero waste production in mining activities, which would help to develop sustainable mining practices worldwide. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究评估了对环境的影响以及由于积极中和极度金属污染的酸性矿山排水系统(AMD)而产生的金属污泥废物的潜在价值。为此,使用稀的普通工业酸进行了两种规定的浸出试验(EN 12457-2和1311 USEPA TCLP),标准化的顺序萃取方案(BCR顺序萃取)和单次浸出试验。两次标准浸出测试的结果表明完全不同,将废物分类为惰性(根据TCLP)并且不适合用于危险废物的垃圾填埋场(根据EN 12457-2)。在这方面,使用BCR连续萃取法对废物进行环境表征符合EN 12457-2浸出试验的解释,从而增强了此类残留物的危害性。与废物和有机酸发生相互作用时,高浓度金属(例如Cd,Zn,Al)的释放会超过水生生物的危险阈值,这证明了这种废物需要谨慎处理。稀酸可以轻松提取基础金属,工业金属和技术金属,这鼓励人们考虑将这种类型的污泥视为具有巨大经济潜力的有趣替代金属来源。联合采用补救措施和金属回收计划可有助于实现采矿活动中零废物产生的目标,这将有助于在全球范围内发展可持续的采矿实践。 (C)2016 Elsevier Ltd.保留所有权利。

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