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Characterising legacy spent nuclear fuel pond materials using microfocus X-ray absorption spectroscopy

机译:使用微焦点X射线吸收光谱法表征传统的废核燃料池材料

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摘要

Analysis of a radioactive, coated concrete core from the decommissioned, spent nuclear fuel cooling pond at the Hunterston-A nuclear site (UK) has provided a unique opportunity to study radionuclides within a real-world system. The core, obtained from a dividing wall and sampled at the fill level of the pond, exhibited radioactivity (dominantly 137Cs and 90Sr) heterogeneously distributed across both painted faces. Chemical analysis of the core was undertaken using microfocus spectroscopy at Diamond Light Source, UK. Mapping of Sr across the surface coatings using microfocus X-ray fluorescence (µXRF) combined with X-ray absorption spectroscopy showed that Sr was bound to TiO2 particles in paint layers, suggesting an association between TiO2 and radiostrontium. Stable Sr and Cs sorption experiments using concrete coupons were also undertaken to assess their interactions with the bulk concrete in case of a breach in the coating layers. μXRF and scanning electron microscopy showed that Sr was immobilized by the cement phases, whilst at the elevated experimental concentrations, Cs was associated with clay minerals in aggregate. This study provides a crucial insight into poorly understood infrastructural contamination in complex systems and is directly applicable to the UK’s decommissioning efforts.
机译:对位于英国Hunterston-A核电站退役的乏核燃料冷却池中的放射性涂层混凝土芯进行分析,为研究真实系统中的放射性核素提供了独特的机会。从隔墙获得的岩心在池塘的填充高度处进行了采样,其放射性(主要为137Cs和90Sr)均不均匀地分布在两个涂漆面上。芯部的化学分析是使用微焦点光谱仪在英国Diamond Light Source进行的。使用微焦点X射线荧光(µXRF)结合X射线吸收光谱对Sr在整个表面涂层上的作图表明,Sr与涂料层中的TiO2颗粒结合,表明TiO2和放射性锶之间存在关联。还进行了使用混凝土试样的稳定的Sr和Cs吸附实验,以评估在涂层破裂的情况下它们与散装混凝土的相互作用。 μXRF和扫描电子显微镜显示,Sr被水泥相固定,而在较高的实验浓度下,Cs与骨料中的粘土矿物有关。这项研究提供了对复杂系统中基础设施污染知之甚少的重要见解,可直接应用于英国的退役工作。

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