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A review of recent strategies for acid mine drainage prevention and mine tailings recycling

机译:防止酸性矿山排水和矿山尾矿回收的最新策略综述

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Acid mine/rock drainage (AMD/ARD), effluents with low pH and high concentrations of hazardous and toxic elements generated when sulfide-rich wastes are exposed to the environment, is considered as a serious environmental problem encountered by the mining and mineral processing industries around the world. Remediation options like neutralization, adsorption, ion exchange, membrane technology, biological mediation, and electrochemical approach have been developed to reduce the negative environmental impacts of AMD on ecological systems and human health. However, these techniques require the continuous supply of chemicals and energy, expensive maintenance and labor cost, and long-term monitoring of affected ecosystems until AMD generation stops. Unfortunately, the formation of AMD could persist for hundreds or even thousands of years, so these approaches are both costly and unsustainable. Recently, two alternative strategies for the management of AMD and mine tailings are gaining much attention: (1) prevention techniques, and (2) mine waste recycling. In this review, recent advances in AMD prevention techniques like oxygen barriers, utilization of bactericides, co-disposal and blending, and passivation of sulfide minerals are discussed. in addition, recycling of mine tailings as construction and geopolymer materials to reduce the amounts of wastes for disposal are introduced. (C) 2018 Elsevier Ltd. All rights reserved.
机译:酸性矿山/岩石排泄物(AMD / ARD),低pH值的废水以及富含硫化物的废物暴露于环境时产生的高浓度有害和有毒元素被认为是采矿和矿物加工行业遇到的严重环境问题世界各地。已经开发出诸如中和,吸附,离子交换,膜技术,生物介导和电化学方法之类的补救措施,以减少AMD对生态系统和人体健康的负面环境影响。但是,这些技术需要持续供应化学药品和能源,昂贵的维护和人工成本,以及对受影响生态系统的长期监控,直到AMD停止生产为止。不幸的是,AMD的形成可能会持续数百年甚至数千年,因此这些方法既昂贵又不可持续。近来,两种用于管理AMD和矿山尾矿的替代策略引起了广泛关注:(1)预防技术,以及(2)矿山废料的回收。在这篇综述中,讨论了AMD预防技术的最新进展,例如氧气屏障,杀菌剂的利用,共处置和共混以及硫化物矿物的钝化。此外,还引入了矿山尾矿作为建筑材料和地质聚合物材料的回收利用,以减少废物处理量。 (C)2018 Elsevier Ltd.保留所有权利。

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