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Encapsulated gadolinium zirconate pyrochlore particles in soda borosilicate glass as novel radioactive waste form

机译:钠硼硅酸钠玻璃中包裹的锆酸锆pyr烧绿石颗粒为新型放射性废物形式

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摘要

Gadolinium zirconate pyrochlore crystals, with a potential for hosting radioactive elements, were encapsulated in a soda borosilicate glass matrix forming a composite material. The fabrication process involved mixing as a powder followed by hot pressing at a relatively low temperature of 620 deg C. Composites containing pyrochlore particles of mean particle size <60 mu m in concentration of up to 40 vol percent exhibited a homogeneous distribution of the particles in the glass matrix. The absence of debonding of Gd zirconate particles or deflection of cracks during fracture, indicates that a strong interface between the glass matrix and the gadolinium zirconate particles was achieved, which suggests a high mechanical strength and hardness of the composites. Mechanical tests were carried out and it was confirmed that the presence of the gadolinium zirconate particles increased the Young's modulus and fracture toughness of the composite by 35 percent and >100 percent , respectively, in comparison with plain borosilicate glass. The results indicate that the new waste forms are superior in terms of structural integrity and fracture behaviour than plain borosilicate glass waste forms.
机译:具有潜在放射性元素的锆酸锆烧绿石晶体被封装在硼硅酸钠玻璃基体中,形成复合材料。制备过程涉及将粉末混合,然后在620℃的相对较低温度下进行热压。含有平均粒径<60μm的烧绿石颗粒且浓度最高为40 vol%的复合材料表现出颗粒的均匀分布。玻璃基质。断裂时不存在锆酸Gd颗粒的解键或裂纹变形,表明玻璃基体与锆酸g颗粒之间形成了牢固的界面,这表明复合材料具有较高的机械强度和硬度。进行了机械测试,证实与纯硼硅酸盐玻璃相比,锆酸g颗粒的存在分别使复合材料的杨氏模量和断裂韧性分别提高了35%和> 100%。结果表明,新的废物形式在结构完整性和断裂行为方面均优于普通硼硅酸盐玻璃废物形式。

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