1. 佛山大学材料与能源学院
2. 广东省科学院智能制造研究所现代控制技术重点实验室
3. 东方电气(广州)重型机器有限公司
纸质出版:2025
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卫紫君, 孙世宽, 司卫征, 等. 用于高放射性废物处理陶瓷固化体的研究进展[J]. 核科学与工程, 2025,45(1):185-194.
卫紫君, 孙世宽, 司卫征, et al. 用于高放射性废物处理陶瓷固化体的研究进展[J]. 2025, 45(1): 185-194.
卫紫君, 孙世宽, 司卫征, 等. 用于高放射性废物处理陶瓷固化体的研究进展[J]. 核科学与工程, 2025,45(1):185-194. DOI: 10.20190/j.cnki.02580918.202501024.
卫紫君, 孙世宽, 司卫征, et al. 用于高放射性废物处理陶瓷固化体的研究进展[J]. 2025, 45(1): 185-194. DOI: 10.20190/j.cnki.02580918.202501024.
陶瓷固化体具有良好的耐久性,其稳定性对于高放射性废物中一些特定的锕系元素具有独特的优势。从材料学的角度,介绍了陶瓷固化高放射性废物的机理,综述了陶瓷固化体近年来的研究进展。重点研究方向包括:以提高高放射废物负载量为目标,研究陶瓷固化体对核素的承载能力;最大化陶瓷固化体的致密度,研究陶瓷的致密化机理;研究陶瓷在抗辐射和化学稳定性,提供陶瓷固化体安全评价方法。最后,对陶瓷固化体今后的研究发展方向做了展望。
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