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Effect of Zn- and Ca-oxides on the structure and chemical durability of simulant alkali borosilicate glasses for immobilisation of UK high level wastes

机译:Zn和Ca氧化物对用于固定英国高放废物的模拟碱硼硅酸盐玻璃的结构和化学耐久性的影响

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摘要

Compositional modification of United Kingdom high level nuclear waste (HLW) glasses was investigated with the aim of understanding the impact of adopting a ZnO/CaO modified base glass on the vitrified product phase assemblage, glass structure, processing characteristics and dissolution kinetics. Crystalline spinel phases were identified in the vitrified products derived from the Na2O/Li2O and the ZnO/CaO modified base glass compositions; the volume fraction of the spinel crystallites increased with increasing waste loading from 15 to 20 wt%. The spinel composition was influenced by the base glass components; in the vitrified product obtained with the ZnO/CaO modified base glass, the spinel phase contained a greater proportion of Zn, with a nominal composition of (Zn0.60Ni0.20Mg0.20)(Cr1.37Fe0.63)O4. The addition of ZnO and CaO to the base glass was also found to significantly alter the glass structure, with changes identified in both borate and silicate glass networks using Raman spectroscopy. In particular, these glasses were characterised by a significantly higher Q3 species, which we attribute to Si–O–Zn linkages; addition of ZnO and CaO to the glass composition therefore enhanced glass network polymerisation. The increase in network polymerisation, and the presence of spinel crystallites, were found to increase the glass viscosity of the ZnO/CaO modified base glass; however, the viscosities were within the accepted range for nuclear waste glass processing. The ZnO/CaO modified glass compositions were observed to be significantly more durable than the Na2O/Li2O base glass up to 28 days, due to a combination of the enhanced network polymerisation and the formation of Ca/Si containing alteration layers.
机译:为了了解采用ZnO / CaO改性的基础玻璃对玻璃化产品相的组装,玻璃结构,加工特性和溶解动力学的影响,对英国高放废物(HLW)玻璃的成分进行了研究。在源自Na2O / Li2O和ZnO / CaO改性的基础玻璃组合物的玻璃化产品中鉴定出尖晶石相。尖晶石微晶的体积分数随着废物负荷的增加从15到20 wt%而增加。尖晶石的组成受基础玻璃成分的影响。在用ZnO / CaO改性的基础玻璃获得的玻璃化产品中,尖晶石相含有更多比例的Zn,其标称组成为(Zn0.60Ni0.20Mg0.20)(Cr1.37Fe0.63)O4。还发现在基础玻璃中添加ZnO和CaO会显着改变玻璃结构,使用拉曼光谱法在硼酸盐和硅酸盐玻璃网络中均发现了变化。尤其是,这些玻璃的特征在于Q3种类明显更高,我们将其归因于Si-O-Zn键。因此向玻璃组合物中添加ZnO和CaO可增强玻璃网络的聚合。发现网络聚合的增加和尖晶石微晶的存在会增加ZnO / CaO改性基础玻璃的玻璃粘度;但是,粘度在核废玻璃加工的可接受范围内。观察到ZnO / CaO改性玻璃组合物比Na2O / Li2O基础玻璃具有更持久的耐久性,因为增强的网络聚合和形成含Ca / Si的蚀变层相结合长达28天。

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