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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Attribution of uranium ore concentrates using elemental and anionic data
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Attribution of uranium ore concentrates using elemental and anionic data

机译:利用元素和阴离子数据归因于铀精矿的归属

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The capability to correctly identify the geological or geographical source of unknown uranium ore concentrates (UOCs) has obvious nuclear security benefits. This paper reports on a scoping study where the trace elemental and anionic compositions of 24 UOC samples, sourced mainly from mines in Australia and Canada, were examined for their ability to allow attribution of the sample to a particular geological U deposit type or to a particular geographical source. Results of statistical analysis using canonical analysis of principal coordinates (CAP) showed that samples originating from certain U ore deposit types, especially phosphorite and quartz-pebble conglomerate, contained a distinct impurity composition. Samples grouped according to their geographical region of origin appeared to contain distinctive impurities in certain cases (Elliot Lake and Bancroft, Ontario). The key impurities responsible for differentiating groups of samples from a particular geological deposit type were identified and the use of certain impurities as signatures of processing history is discussed. The methodology described in this scoping study provides a promising approach for more comprehensive databases.
机译:正确识别未知铀矿精矿(UOC)的地质或地理来源的能力具有明显的核安全优势。本文报告了一项范围界定研究,其中研究了主要来自澳大利亚和加拿大矿山的24种UOC样品的痕量元素和阴离子成分,以了解其将样品归因于特定地质U矿床类型或特定U矿床类型的能力。地理来源。使用主坐标(CAP)的规范分析进行统计分析的结果表明,源自某些U矿床类型的样品(尤其是磷矿和石英卵石砾岩)包含明显的杂质成分。根据原产地地理区域进行分组的样品在某些情况下(埃利奥特湖和安大略省班克罗夫特)似乎含有独特的杂质。确定了造成样品组与特定地质沉积类型区分开的关键杂质,并讨论了将某些杂质用作加工历史的标志。此范围研究中描述的方法为更全面的数据库提供了一种有希望的方法。

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