首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Mine waters as a secondary source of rare earth elements worldwide: The case of the Iberian Pyrite Belt
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Mine waters as a secondary source of rare earth elements worldwide: The case of the Iberian Pyrite Belt

机译:矿山作为全球稀土元素的次要来源:伊比利亚铁矿带的案例

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Acid Mine Drainage (AMD) generates a great concern worldwide due to its severe impact to water resources during hundreds and even thousands of years after the cessation of mining activity if control measures are not implemented. AMD treatment is an environmental necessity, but also constitute a tremendous opportunity for the valorization of potential secondary sources of elements of economic interest. The knowledge of the hydrogeochemistry of REE in AMDs and their distribution using normalized patterns would help discrimination of the most potentially marketable AMD sources. To achieve this goal and to estimate the total economic potential of a severely AMD-affected region, chemistry and flow data were determined in spatially and temporally-distributed samples of numerous AMD sources collected throughout the Iberian Pyrite Belt (IPB). Due to high anual metal loads of elements such as Al (6600 ton), Zn (1600 ton), Cu (600 ton), Co (26 ton), Ni (10 ton), LREE (10.7 ton/yr), MREE (2.1 ton/yr), HREE (1 ton/yr), Y (3.7 ton) or Sc (0.7 ton), AMDs of the IPB would have an economic potential of 24.1 M$/yr (being REE 22.6% of this potential). Although the technical and economic limitations would impose a more realistic value of 4.2-10.3 M$/yr. The magnitude of this economic potential cannot be compared with active mines, however the longevity of the AMD generation processes and the need to achieve an environmental improvement make valorization of these leachates an interesting option to recover metals, which would help to treatment plants costs, improving notably the quality of water bodies in abandoned mining sites.
机译:酸性矿山排水(AMD)在采矿活动停止后的数百年甚至数千年内,如果不采取控制措施,将对水资源造成严重影响,因此引起了全世界的高度关注。AMD治疗是一种环境必要性,但也为潜在经济利益二次来源的价值化提供了巨大机会。了解AMD中稀土元素的水文地球化学及其使用标准化模式的分布将有助于区分最具潜在市场的AMD来源。为了实现这一目标,并估算严重AMD影响地区的总经济潜力,在整个伊比利亚黄铁矿带(IPB)收集的大量AMD源的时空分布样本中确定了化学和流动数据。由于Al(6600吨)、Zn(1600吨)、Cu(600吨)、Co(26吨)、Ni(10吨)、LREE(10.7吨/年)、MREE(2.1吨/年)、HREE(1吨/年)、Y(3.7吨)或Sc(0.7吨)等元素的年金属负荷较高,IPB的AMD将具有2410万美元/年的经济潜力(REE为该潜力的22.6%)。尽管技术和经济限制将带来420-1030万美元/年的更现实价值。这种经济潜力的大小无法与活跃的矿山相比,但是AMD发电工艺的寿命和实现环境改善的需要使得这些浸出液的价值化成为回收金属的一个有趣的选择,这将有助于降低污水处理厂的成本,尤其是改善废弃矿区的水体质量。

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