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Chemical stability of Ce-doped zircon ceramics:Influence of p H,temperature and their coupling effects 被引量:5

Chemical stability of Ce-doped zircon ceramics: Influence of p H, temperature and their coupling effects
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摘要 Zircon was employed to immobilize simulated tetravalentactinide nuclide(Ce^4+). Zr_(1–x)Ce_xSiO_4(0≤x≤0.10) ceramics were synthesized and their chemical durabilities were investigated systematically. The effects of p H and temperature on the chemical durability of the as-prepared compounds were investigated using the MCC-1 static leaching test, and their coupling effects were also explored. It was found that the normalized release rates of Ce in deionized water and alkaline solutions(pH=10) were smaller than those in acid solutions(p H=4). At a certain p H value, the normalized release rate of Ce(LR Ce) increased with the temperature in the initial period. However, the leaching progress almost reached a balance after 14 days, and both of the p H and the temperature had slight impact on the leaching of Ce element. Moreover, the LR_(Ce) were below 10^(–5)g/m^2/d after 42 days, which was lower than those of other nuclear waste forms in all discussed leachates. Zircon was employed to immobilize simulated tetravalentactinide nuclide(Ce^4+). Zr_(1–x)Ce_xSiO_4(0≤x≤0.10) ceramics were synthesized and their chemical durabilities were investigated systematically. The effects of p H and temperature on the chemical durability of the as-prepared compounds were investigated using the MCC-1 static leaching test, and their coupling effects were also explored. It was found that the normalized release rates of Ce in deionized water and alkaline solutions(pH=10) were smaller than those in acid solutions(p H=4). At a certain p H value, the normalized release rate of Ce(LR Ce) increased with the temperature in the initial period. However, the leaching progress almost reached a balance after 14 days, and both of the p H and the temperature had slight impact on the leaching of Ce element. Moreover, the LR_(Ce) were below 10^(–5)g/m^2/d after 42 days, which was lower than those of other nuclear waste forms in all discussed leachates.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2017年第2期164-171,共8页 稀土学报(英文版)
基金 Project supported by the National Natural Science Foundation of China(21507105,41302029) Thousand Youth Talents Plan(Y42H831301) Key Project of Sichuan Education Department(15ZB0116) Foundation of Laboratory of National Defense Key Discipline for Nuclear Waste and Environmental Safety,Southwest University of Science and Technology(15yyhk10) the Doctor Foundation in Southwest University of Science and Technology(10zx7126) Sichuan’s Training Program of Innovation and Entrepreneurship for Undergraduate(201610619039)
关键词 high-level radioactive waste waste form zircon chemical durability rare earths high-level radioactive waste waste form zircon chemical durability rare earths
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