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Geochemistry of uranium mill tailings in the Athabasca Basin, Saskatchewan, Canada: A review

机译:加拿大萨斯喀彻温省Athabasca盆地的铀磨尾矿地球化学:综述

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The Athabasca Basin, located in northern Saskatchewan, Canada, is a major source of global U and an important economic driver for the province and country. Athabasca Basin U deposits consist of uraninite and pitchblende dominated by quartz and aluminosilicates and varying amounts of sulfide and arsenide minerals associated with varying concentrations of As, Se, Mo, Ni, and Ra-226 (elements of concern; EOCs). Processing these U ores results in tailings that are often enriched in EOCs. Mill treatment processes are designed to generate tailings that minimize the long-term environmental impact of U tailings, although many challenges exist in reaching this goal. Many studies have contributed to our understanding of the geochemistry of these tailings and EOCs and their potential impact on the surrounding hydrosphere. Using nearly two decades of data from tailings samples, mill sampling campaigns, and laboratory experiments, this review provides a comprehensive analysis of the geochemistry and long-term behavior of U tailings in the Athabasca Basin and develops a geochemical model of the tailings. Results of this review are applicable to tailings generated from other milling operations with comparable acid leaching hydrometallurgical processes. This holistic review also highlights the limitations to our current understanding of U tailings geochemistry.
机译:The Athabasca Basin位于加拿大北萨斯喀彻温省,是全球U的主要来源以及该省和国家的重要经济驾驶员。 Athabasca盆地U沉积物由石英和硅酸盐和铝酸盐构成的铀酸盐和凝聚物组成,以及与与不同浓度,Se,Mo,Ni和Ra-226相关的硫化物和砷化物矿物质的硫化物和砷化物矿物质组成的硫化物和砷化物矿物质组成的硫化物和砷化物矿物质组成。处理这些u矿石导致往往富含EoC的尾矿。铣削处理过程旨在产生尾矿,尽管达到这种目标时存在许多挑战,但虽然存在许多挑战,但尾矿最小化了最大限度的环境影响。许多研究有助于我们对这些尾矿和EOC的地球化学的理解以及它们对周围水圈的潜在影响。通过尾矿样本,磨坊采样活动和实验室实验,使用近二十年的数据,这一综述对阿斯巴斯卡盆地的地球化学和长期行为进行了全面的分析,并开发了尾矿的地球化学模型。该审查的结果适用于其他铣削作业产生的尾矿,具有可比较的酸浸出液压冶金方法。这个整体评论还突出了我们目前对U尾矿地球化学了解的限制。

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