首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Recrystallisation of amorphous natural brannerite through annealing: The effect of radiation damage on the chemical durability of brannerite
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Recrystallisation of amorphous natural brannerite through annealing: The effect of radiation damage on the chemical durability of brannerite

机译:通过退火使非晶态天然褐铁矿再结晶:辐射损伤对褐铁矿化学耐久性的影响

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摘要

An amorphous natural brannerite sample was chosen to study the annealing of the radiation damage through thermal recrystallisation, and subsequently to evaluate the effect of radiation damage oil its aqueous durability. Microstructural characterisation of the natural brannerite revealed minor alteration along the rim of the crystal and within cracks. The formation of UO2 particles and soluble Pb-Ca-rich aluminosilicate glass is responsible for the higher U and Pb releases from the recrystallised brannerite. In general, natural brannerite has been shown to be resistant to dissolution over geological time, therefore minor brannerite inclusions in ceramic formulations for immobilisation of actinide-rich radioactive wastes should not have a detrimental effect on the long-term chemical durability of the wasteforms. (c) 2006 Elsevier B.V. All rights reserved.
机译:选择无定形天然褐红矿样品来研究通过热重结晶对辐射损伤的退火,然后评估辐射损伤油对其水耐久性的影响。天然褐铁矿的微观结构特征表明,沿晶体边缘和裂纹内部存在微小变化。 UO2颗粒和可溶的富含Pb-Ca的铝硅酸盐玻璃的形成是造成重结晶褐铁矿中较高的U和Pb释放的原因。一般而言,天然褐铁矿已显示出在地质时期内不易溶解的特性,因此,用于固定富含act系元素的放射性废物的陶瓷配方中的少量褐铁矿夹杂物不会对废料的长期化学耐久性产生不利影响。 (c)2006 Elsevier B.V.保留所有权利。

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