首页> 外文期刊>Microscopy and microanalysis: The official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada >Microanalysis (micro-XRF, micro-XANES, and micro-XRD) of a tertiary sediment using microfocused synchrotron radiation
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Microanalysis (micro-XRF, micro-XANES, and micro-XRD) of a tertiary sediment using microfocused synchrotron radiation

机译:使用微聚焦同步加速器辐射对三次沉积物进行微分析(微XRF,微XANES和微XRD)

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摘要

Micro-focused synchrotron radiation techniques to investigate actinide elements in geological samples are becoming an increasingly used tool in nuclear waste disposal research. In this article, results using mu-focus techniques are presented from a bore core section of a U-rich tertiary sediment collected from Ruprechtov, Czech Republic, a natural analog to nuclear waste repository scenarios in deep geological formations. Different methods are applied to obtain various, complementary information. Elemental and element chemical state distributions are obtained from mu-XRF measurements, oxidation states of As determined from mu-XANES, and the crystalline structure of selected regions are studied by means of mu-XRD. We find that preparation of the thin section created an As oxidation state artifact; it apparently changed the As valence in some regions of the sample. Results support our previously proposed hypothesis of the mechanism for U-enrichment in the sediment. AsFeS coating on framboid Fe nodules in the sediment reduced mobile groundwater-dissolved U(VI) to less-soluble U(IV), thereby immobilizing the uranium in the sediment.
机译:用于研究地质样品中act系元素的微聚焦同步辐射技术正在成为核废料处置研究中越来越多的工具。在本文中,使用mu聚焦技术的结果是从捷克共和国Ruprechtov收集的富含U的第三纪沉积物的钻孔岩心剖面中得出的,这是深部地质构造中核废料储存场景的自然模拟。应用了不同的方法来获取各种补充信息。从mu-XRF测量获得元素和元素化学状态分布,从mu-XANES确定As的氧化态,并通过mu-XRD研究所选区域的晶体结构。我们发现,准备薄截面会产生As氧化态伪影;它显然改变了样品某些区域的砷价。结果支持了我们先前提出的沉积物中U富集机理的假设。沉积物中的黄铁矿结节上的AsFeS涂层将溶解的地下水中溶解的U(VI)还原为溶解度较低的U(IV),从而将铀固定在沉积物中。

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