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About U-shaped Glass Corrosion Rate/pH Curves for Vitreous Nuclear Wasteforms

机译:关于玻璃质核废料的U形玻璃腐蚀速率/ pH曲线

摘要

Background: We analyse here the well-known U-shaped form of pH-dependence of glass corrosion rates U(t) focusing on changes of U-shaped form with time. Methods: We account for the two main mechanisms of glass corrosion which play dominant role at different times - ion exchange and hydrolysis. Results: We reveal that the pH dependence evolves even for solutions ostensibly kept at constant pH. The U(t) dependence is caused by changes of concentration profiles of elements in the nearsurface layers of glasses in contact with water. The change is most evident within the initial stages of glass corrosion at relatively low temperatures. Numerical examples are given for the Russian nuclear waste borosilicate glass K-26 characterised in experiment by an effective diffusion coefficient for caesium DCs = 4.5 10-12 cm2/day and by a rate of glass hydrolysis in non-saturated groundwater as high as rh = 100 nm/year. Conclusion: The changes of the U-shaped form of glass corrosion rates need to be accounted for when assessing the performance of glasses in contact with water solutions.
机译:背景:我们在此分析玻璃腐蚀速率U(t)的pH依赖性的U形形式,重点是U形形式随时间的变化。方法:我们解释了在不同时间起主要作用的两种主要的玻璃腐蚀机理-离子交换和水解。结果:我们发现,即使表面上保持恒定的pH值,pH依存度也会发生变化。 U(t)依赖性是由与水接触的玻璃近表面层中元素的浓度分布变化引起的。这种变化在较低温度下玻璃腐蚀的初始阶段最为明显。给出了俄罗斯核废料硼硅玻璃K-26的数值示例,其实验特征是铯DCs的有效扩散系数= 4.5 10-12 cm2 / day,玻璃在非饱和地下水中的水解速率高达rh = 100 nm /年。结论:在评估与水溶液接触的玻璃的性能时,必须考虑U形玻璃腐蚀速率的变化。

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    Ojovan M; Lee WE;

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  • 年度 2016
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