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Uranium speciation in weathered granitic waste rock piles: an XAFS investigation

机译:风化花岗岩废弃物桩的铀形态:XAFS调查

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Investigation of uranium migration in the waste piles of granite rock in the Limousin region of France is vital for developing strategies which address related environmental issues. Despite the fact that the concentration of uranium is far below the lower end of the cut off level in these piles, the large volume of rocks - which measure in the hundreds of metric tons - and their conditions of repository make this type of waste a source of concern for the international community. In this work, X-ray absorption spectroscopy techniques (XAFS) were employed in order to identify the speciation of uranium in the different categories of samples collected from various regions of the rock piles which had undergone 50 years of weathering. The samples, such as weathered granite, arena and technosoils, were studied in order to probe the transformation of the U bearing complex. XANES indicates U(vi) valence with uranyl species in all samples. Using a linear combination analysis and shell fitting approach, distinct speciation of uranium was observed in the different categories of samples. In the weathered rock and arena samples with relics of magmatic U minerals, uranyl phosphates comparable to autunite are shown to be dominantly linked with monodentate PO43-. However, the samples collected from technosoils are found to have a mixture of U-phosphate and U-clay minerals (phyllosilicates and silicates). Irrespective of the collection location, all the samples were found to contain U(vi)-oxo species The equatorial O ligands occur as two shells with an average separation of 0.14-0.21 angstrom. Moreover, all the samples have an Al/Si/P shell around 3.1 angstrom. A detailed EXAFS curve fit analysis shows that disorder afflicts the entire range of samples which can be attributed to either inhomogeneous binding sites on the disordered clay minerals or to the presence of a mixture of uranium-bearing minerals. XAFS investigations highlight the uranyl overriding forms of U (as U sorbed on clay minerals and secondary uranyl phosphates or silicates) contribute to the retention of U, even in oxidizing conditions known to enhance the mobility of U.
机译:在花岗岩石在法国利穆赞地区的矸石山铀迁移的研究是用于开发处理相关的环境问题的战略至关重要。尽管铀的浓度远远低于这些桩切断水平的低端,大体积岩石 - 这在几百吨衡量 - 他们的仓库化妆的条件下,这种类型的废物源对国际社会的关注。在这项工作中,X射线吸收光谱技术(XAFS),以便识别在不同类别从石堆已进行50年风化的各个区域收集的样品的铀的形态被使用。的样品中,如风化花岗岩,和舞台technosoils,以便探测在U轴承复合物的转化进行了研究。 XANES指示与在所有样品中物种双氧铀U(Ⅵ)化合价。使用的线性组合的分析和壳装配方法中,在不同类别的样品中观察到的铀不同形态。在风化岩石和竞技场样品岩浆ü矿物质的遗迹,双氧铀磷酸盐可比被示出为与单齿PO43-支配性链接到钙铀云母。然而,从technosoils采集的样品被发现具有U型磷酸盐和U-粘土矿物(页硅酸盐和硅酸盐)的混合物中。不管收集位置的,发现所有样品为包含U(VI) - 氧代物种的赤道直径:配体发生作为两个壳与0.14-0.21埃的平均间隔。此外,所有的样品具有的Al / Si的/ P壳周围3.1埃。详细EXAFS曲线拟合分析表明病症折磨这可以归因于在无序粘土矿物或含铀矿物的混合物的存在下或者非均匀的结合位点的样品的整个范围。 XAFS调查突出铀酰重写U(当U吸附在粘土矿物和次级双氧铀磷酸盐或硅酸盐)的形式向U的保持,即使在已知增强U.的移动性氧化条件

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  • 来源
    《RSC Advances》 |2019年第21期|共12页
  • 作者单位

    Sorbonne Univ CNRS UMR 7590 IMPMC IRD MNHM UMR 206 4 Pl Jussieu F-75005 Paris France;

    Inst Jozef Stefan Jamova Cesta 39 Ljubljana 1000 Slovenia;

    Sorbonne Univ CNRS UMR 7590 IMPMC IRD MNHM UMR 206 4 Pl Jussieu F-75005 Paris France;

    Sorbonne Univ CNRS UMR 7590 IMPMC IRD MNHM UMR 206 4 Pl Jussieu F-75005 Paris France;

    ORANO Min R&

    D Dept Paris France;

    Sorbonne Univ CNRS UMR 7590 IMPMC IRD MNHM UMR 206 4 Pl Jussieu F-75005 Paris France;

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  • 正文语种 eng
  • 中图分类 化学;
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