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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Analytical performance of different X-ray spectroscopic techniques for the environmental monitoring of the recultivated uranium mine site
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Analytical performance of different X-ray spectroscopic techniques for the environmental monitoring of the recultivated uranium mine site

机译:不同的X射线光谱技术对再生铀矿场址环境监测的分析性能

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One uranium deposit exists in Hungary,with continuous radiological monitoring of the site.Nuclear spectroscopical methods are well established in order to study the problem concerning radionuclides.However,very limited information is available on the distribution and chemical form of uranium in the tailings sludge.In order to solve this complex analytical problem,a combination of different analytical methods is necessary.One of the most applied methods for studying the major elemental composition of particulate samples is electron probe microanalysis (EPMA).However,uranium and its daughter elements are often present only at trace amounts in the particles,below detection limit of EPMA.For most actinides that are long-lived radionuclides,microbeam X-ray fluorescence (u-XRF) has superior sensitivity to determine elements in microparticles.Detection limits and applicability of EPMA and laboratory mu-XRF are discussed for localization of uranium-rich particles in the inhomogeneous tailings material.Laboratory u-XRF provided an efficient way to identify these particles that can be easily relocated for further non-destructive microchemical investigations.Finally,for water analysis a simple and reliable method for U analysis is presented using total reflection X-ray fluorescence spectrometry (TXRF) that can be applied for on-site analysis in situations of accidental uranium contamination.
机译:匈牙利存在一个铀矿床,并对该地点进行连续的放射学监测。为了研究与放射性核素有关的问题,已经建立了核能谱方法。但是,关于尾矿污泥中铀的分布和化学形式的信息非常有限。为了解决这个复杂的分析问题,必须将不同的分析方法结合起来。研究探针样品主要元素组成的最广泛应用的方法之一是电子探针微分析(EPMA)。但是,铀及其子元素通常是仅存在于颗粒中的痕量,低于EPMA的检出限。对于大多数长寿命放射性核素的act系元素,微束X射线荧光(u-XRF)对确定微粒中的元素具有更高的灵敏度.EPMA的检测限和适用性讨论了实验室和mu-XRF,用于在不均匀尾矿中定位富铀颗粒实验室u-XRF提供了一种有效的方法来鉴定这些易于重新定位的颗粒,以进行进一步的非破坏性微化学研究。最后,对于水分析,提出了一种使用全反射X射线荧光光谱法进行U分析的简单可靠的方法(TXRF)可用于意外铀污染情况下的现场分析。

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