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Cesium and Strontium Contamination of Nuclear PlantStainless Steel: Implications for Decommissioning and Waste Minimization

机译:核电厂的铯和锶污染不锈钢:对退役和减少废物的影响

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摘要

Stainless steels can become contaminated with radionuclides at nuclear sites. Their disposal as radioactive waste would be costly. If the nature of steel contamination could be understood, effective decontamination strategies could be designed and implemented during nuclear site decommissioning in an effort to release the steels from regulatory control. Here, batch uptake experiments have been used to understand Sr and Cs (fission product radionuclides) uptake onto AISI Type 304 stainless steel under conditions representative of spent nuclear fuel storage (alkaline ponds) and PUREX nuclear fuel reprocessing (HNO3). Solution (ICP-MS) and surface measurements (GD-OES depth profiling, TOF-SIMS, and XPS) and kinetic modeling of Sr and Cs removal from solution were used to characterize their uptake onto the steel and define the chemical composition and structure of the passive layer formed on the steel surfaces. Under passivating conditions (when the steel was exposed to solutions representative of alkaline ponds and 3 and 6 M HNO3), Sr and Cs were maintained atthe steel surface by sorption/selective incorporation into the Cr-richpassive film. In 12 M HNO3, corrosion and severe intergranularattack led to Sr diffusion into the passive layer and steel bulk.In HNO3, Sr and Cs accumulation was also commensurate withcorrosion product (Fe and Cr) readsorption, and in the 12 M HNO3 system, XPS documented the presence of Sr and Cs chromates.
机译:不锈钢可能在核场所被放射性核素污染。将它们作为放射性废物处置将是昂贵的。如果可以理解钢污染的性质,则可以在核电站退役期间设计和实施有效的去污策略,以努力将钢从监管控制中释放出来。在这里,已经使用批处理吸收实验来了解在代表乏核燃料存储(碱性池)和PUREX核燃料后处理(HNO3)的条件下AISI 304型不锈钢对Sr和Cs(裂变产物放射性核素)的吸收。溶液(ICP-MS)和表面测量(GD-OES深度剖析,TOF-SIMS和XPS)以及从溶液中去除Sr和Cs的动力学模型用于表征其对钢的吸收并定义钢的化学成分和结构在钢表面形成的钝化层。在钝化条件下(当钢暴露于碱性池代表的溶液以及3和6 M HNO3中时),Sr和Cs保持在通过吸附/选择性结合到富铬钢表面被动膜。在12 M HNO3中,腐蚀和严重的晶界腐蚀导致Sr扩散到钝化层和钢中。在HNO3中,Sr和Cs的积累也与腐蚀产物(铁和铬)的再吸收,并且在12 M HNO3系统中,XPS记录了Sr和Cs铬酸盐的存在。

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