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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Mine tailings dams: Characteristics, failure, environmental impacts, and remediation
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Mine tailings dams: Characteristics, failure, environmental impacts, and remediation

机译:矿山尾矿坝:特征,破坏,环境影响和修复

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摘要

On a global scale demand for the products of the extractive industries is ever increasing. Extraction of the targeted resource results in the concurrent production of a significant volume of waste material, including tailings, which are mixtures of crushed rock and processing fluids from mills, washeries or concentrators that remain after the extraction of economic metals, minerals, mineral fuels or coal. The volume of tailings is normally far in excess of the liberated resource, and the tailings often contain potentially hazardous contaminants. A priority for a reasonable and responsible mining organization must be to proactively isolate the tailings so as to forestall them from entering groundwaters, rivers, lakes and the wind. There is ample evidence that, should such tailings enter these environments they may contaminate food chains and drinking water. Furthermore, the tailings undergo physical and chemical change after they have been deposited. The chemical changes are most often a function of exposure to atmospheric oxidation and tends to make previously, perhaps safely held contaminants mobile and available. If the tailings are stored under water, contact with the atmosphere is substantially reduced, thereby forestalling oxygen- mediated chemical change. It is therefore accepted practice for tailings to be stored in isolated impoundments under water and behind dams. However, these dams frequently fail, releasing enormous quantities of tailings into river catchments. These accidents pose a serious threat to animal and human health and are of concern for extractive industries and the wider community. It is therefore of importance to understand the nature of the material held within these dams, what best safety practice is for these structures and, should the worst happen, what adverse effects such accidents might have on the wider environment and how these might be mitigated. This paper reviews these factors, covering the characteristics, types and magnitudes, environmental impacts, and remediation of mine tailings dam failures.
机译:在全球范围内,对采矿业产品的需求不断增长。提取目标资源会导致同时产生大量废料,包括尾矿,这些尾矿是碎石和工厂,选矿厂或选矿厂的处理液的混合物,这些废液在提取经济金属,矿物,矿物燃料或煤炭。尾矿的体积通常远远超过所释放的资源,并且尾矿通常包含潜在的有害污染物。合理和负责任的采矿组织的首要任务是要主动隔离尾矿,以防止尾矿进入地下水,河流,湖泊和风中。有充分的证据表明,如果这些尾矿进入这些环境,它们可能会污染食物链和饮用水。此外,尾矿在沉积后会发生物理和化学变化。化学变化通常是暴露于大气氧化的函数,并且倾向于使以前可能安全保持的污染物移动并可以利用。如果将尾矿存储在水下,则与大气的接触会大大减少,从而阻止了氧介导的化学变化。因此,将尾矿存储在水下和大坝后的隔离式水库中是公认的做法。但是,这些水坝经常发生故障,将大量尾矿释放到河流集水区。这些事故严重威胁着动物和人类健康,并引起采掘业和整个社区的关注。因此,重要的是要了解容纳在这些大坝中的材料的性质,对这些结构的最佳安全实践,以及在最坏的情况下发生的事故,这些事故可能对更广泛的环境产生什么样的不利影响,以及如何减轻这些不利影响。本文回顾了这些因素,涵盖了特征,类型和大小,环境影响以及对尾矿坝破坏的修复。

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