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Spent Nuclear Fuel Storage Basin Water Chemistry: Electrochemical Evaluation of Aluminum Corrosion

机译:用过的核燃料储存池水化学:铝腐蚀的电化学评估

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The factors affecting the optimal water chemistry of the Savannah River Site (SRS) spent fuel storage basin must be determine in order to optimize facility efficiency, minimize fuel corrosion, and reduce overall environmental impact from long term spent nuclear fuel storage at the Savannah River Site. The Savannah River National Laboratory is using statistically designed experiments to study the effects of NO_3~-, SO_4~(2-), and Cl~- concentrations on alloys commonly used not only as fuel cladding, but also as rack construction materials The results of cyclic polarization pitting and corrosion experiments on samples of Al 6061 and 1100 alloys will be used to construct a predictive model of the basin corrosion and its dependence on the species in the basin. The basin chemistry model and corrosion will be discussed in terms of optimized water chemistry envelope and minimization of cladding corrosion.
机译:必须确定影响萨凡纳河站点(SRS)乏燃料存储盆地的最佳水化学的因素,以优化设施效率,最大程度地减少燃料腐蚀并减少萨凡纳河站点长期乏核燃料存储对整体环境的影响。萨凡纳河国家实验室正在使用统计设计的实验研究NO_3〜-,SO_4〜(2-)和Cl〜-的浓度对不仅用作燃料包壳,而且还用作机架建筑材料的合金的影响。将对Al 6061和1100合金样品进行周期性极化点蚀和腐蚀实验,以建立盆地腐蚀及其对盆地物种的依赖性的预测模型。将从优化水化学包络和最小化包层腐蚀的角度讨论盆地化学模型和腐蚀。

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