Immobilization of simulated An3+ in radioactive sludge via microwave sintering: Mechanisn and performance

Gaiyuan Chen, Jiawei Li,Min Chen,Keyou Shi,Yupeng Xie, Tiejun Zhang, Yimin Zhou,Yang Yang, Tao Zhou, Kun Huang,Yuzhen Mai,Yong Liu

JOURNAL OF NUCLEAR MATERIALS(2024)

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摘要
This study investigates the safe disposal of simulated radioactive sludge. Microwave sintering of silicate glass (SG) particles and simulated sludge is performed to prepare amorphous glass materials and oxy-apatite (AIxAII10x(SiO4)6O2) glass ceramics. The phase-evolution, microstructure, nucleation-growth mechanism, and chemical stability of the solidified products are systematically investigated. The optimum vitrification degree of the solidified product containing 60 wt.% SG particles in the radioactive sludge is achieved at 1200 celcius. Elements are uniformly distributed, and the final solid-solubility of Nd in the glass structure is 32 wt.%. For higher content, the Nd remained fixed at the AI and AII positions of an oxyapatite crystalline structure. The glass-ceramic material exhibited a high solid-solubility of Nd up to 40 wt.%. Furthermore, the normalized leaching rate of Nd was observed at a low level of 10-6 g & sdot;m- 2 & sdot;d- 1 after 42 d. This study suggests a new processing method for the safe disposal of radioactive sludge.
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关键词
Radioactive sludge,Silicate glass particles,Amorphous glass,Oxy-apatite,Evolution mechanism
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