首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Liquidus temperature and chemical durability of selected glasses to immobilize rare earth oxides waste
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Liquidus temperature and chemical durability of selected glasses to immobilize rare earth oxides waste

机译:特定玻璃的液相线温度和化学耐久性,以固定稀土氧化物废物

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Pyroprocessing is are processing method for managing and reusing used nuclear fuel (UNF) by dissolving it in an electrorefiner with a molten alkali or alkaline earth chloride salt mixture while avoiding wet reprocessing. Pyroprocessing UNF with a LiCl-KCl eutectic salt releases the fission products from the fuel and generates a variety of metallic and salt-based species, including rare earth (RE) chlorides. If the RE-chlorides are converted to oxides, borosilicate glass is a prime candidate for their immobilization because of its durability and ability to dissolve almost any RE waste component into the glass matrix at high loadings. Crystallization that occurs in waste glasses as the waste loading increases may complicate glass processing and affect the product quality. This work compares three types of borosilicate glasses in terms of liquidus temperature (T-L): the International Simple Glass designed by the International Working Group, sodium borosilicate glass developed by Korea Hydro and Nuclear Power, and the lanthanide aluminoborosilicate (LABS) glass established in the United States. The LABS glass allows the highest waste loadings (over 50 mass% RE2O3) while possessing an acceptable chemical durability. (C) 2015 Elsevier B.V. All rights reserved.
机译:热解法是用于处理和再利用用过的核燃料(UNF)的处理方法,该方法是将其与熔融的碱金属或碱土金属氯化物盐混合物一起溶解在电精制机中,同时避免湿法后处理。用LiCl-KCl共晶盐对UNF进行热解处理会从燃料中释放裂变产物,并产生各种金属和盐基物种,包括稀土(RE)氯化物。如果将RE氯化物转化为氧化物,则硼硅酸盐玻璃是其固定化的主要候选材料,因为硼硅酸盐玻璃的耐用性和在高负荷下将几乎所有RE废物成分溶解到玻璃基质中的能力。随着废物量的增加,废玻璃中发生的结晶可能使玻璃加工复杂化并影响产品质量。本文根据液相线温度(TL)对三种类型的硼硅酸盐玻璃进行了比较:国际工作组设计的International Simple Glass,韩国水电和核电公司开发的硼硅酸钠玻璃以及该实验室中建立的镧系铝硼硅酸盐(LABS)玻璃。美国。 LABS玻璃允许最高的废物装载量(超过50质量%RE2O3),同时具有可接受的化学耐久性。 (C)2015 Elsevier B.V.保留所有权利。

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