A Review of the Effect of Irradiation on the Corrosion of Copper-Coated Used Fuel Containers

F. King, M. Behazin
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引用次数: 4

Abstract

Radiation induced corrosion is one of the possible modes of materials degradation in the concept of long-term management of used nuclear fuel. Depending on the environmental conditions surrounding the used fuel container, a range of radiolysis products are expected to form that could impact the corrosion of the copper coating. For instance, γ-radiolysis of pure water produces molecular oxidants such as H2O2 and the radiolysis of humid air produces compounds such as NOx and HNO3. This review is confined to a discussion of the effect of γ-radiation on the corrosion of copper-coated containers. A simplified mixed-potential model is also presented to calculate the extent of copper corrosion by using the steady-state concentration of H2O2 generated during the first 300 years of emplacement, when the radiation field is significant.
辐照对镀铜乏燃料容器腐蚀影响的研究进展
辐射腐蚀是乏燃料长期管理概念中材料降解的一种可能方式。根据使用过的燃料容器周围的环境条件,预计会形成一系列可能影响铜涂层腐蚀的辐射分解产物。例如,纯水的γ-辐射分解产生H2O2等分子氧化剂,潮湿空气的辐射分解产生NOx和HNO3等化合物。本文主要讨论了γ辐射对镀铜容器腐蚀的影响。本文还提出了一种简化的混合电位模型,通过使用放置前300年辐射场显著时产生的H2O2稳态浓度来计算铜的腐蚀程度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
4.50
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