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首页> 外文期刊>NPJ Materials Degradation >Chemical durability of peraluminous glasses for nuclear waste conditioning
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Chemical durability of peraluminous glasses for nuclear waste conditioning

机译:用于核废料处理的高铝玻璃的化学耐久性

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摘要

For the handling of high level nuclear waste (HLW), new glass formulations with a high waste capacity and an enhanced thermal stability, chemical durability, and processability are under consideration. This study focuses on the durability of peraluminous glasses in the SiO2–Al2O3–B2O3–Na2O–CaO–La2O3 system, defined by an excess of Al3+ ions compared with the network-modifying cations Na+ and Ca2+. To qualify the behavior of such a peraluminous glass in a geological storage situation, its chemical durability was studied in various environments (pure water, groundwater, and alkaline solutions related to a cement environment) and glass alteration regimes (initial rate, residual rate, and resumption of alteration). The alteration solution was characterized by inductively coupled plasma, and the altered glass by scanning electron microscopy, X-ray diffraction and secondary ion mass spectrometry. A comparative study of the chemical durability of these and reference glasses (ISG and SON68) over all timescales highlights the remarkable properties of the former. While their initial dissolution rate is of the same order as the reference glasses, the gel formed under silica saturation conditions is more passivating, making its dissolution rate at least one order of magnitude lower, while its low alkalinity makes it less susceptible to clayey groundwater and highly alkaline solutions.
机译:为了处理高含量核废料(HLW),正在考虑使用具有高废料处理能力,增强的热稳定性,化学耐久性和可加工性的新型玻璃配方。这项研究的重点是在SiO2–Al2O3–B2O3–Na2O–CaO–La2O3系统中的高铝玻璃的耐用性,这是由与网络修饰阳离子Na +和Ca2 +相比过量的Al3 +离子定义的。为了验证这种高铝玻璃在地质储藏条件下的行为,在各种环境(纯水,地下水和与水泥环境有关的碱性溶液)和玻璃蚀变制度(初始率,残留率和恢复更改)。蚀变溶液的特征在于电感耦合等离子体,而蚀变的玻璃通过扫描电子显微镜,X射线衍射和二次离子质谱法表征。对这些和参考玻璃(ISG和SON68)在所有时间范围内的化学耐久性进行的比较研究突显了前者的卓越性能。尽管它们的初始溶解速率与参比玻璃相同,但在二氧化硅饱和条件下形成的凝胶更具钝化作用,使其溶解速率降低至少一个数量级,而其低碱度使其对黏性地下水和水的敏感性降低。高碱性溶液。

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