Geng Junxia, Zhao Zhongqi, Cheng Zhiqiang, Li Wenxin, Dou Qiang, Fu Haiying, Hu Jifeng, Cai Xiangzhou, Chen Jingen, Li Qingnuan
Shanghai Institute of Applied Physics, Chinese Academy of Sciences Shanghai 201800 China
CAS Innovative Academies in TMSR Energy System, Chinese Academy of Sciences Shanghai 201800 China.
RSC Adv. 2021 Jun 28;11(37):22611-22617. doi: 10.1039/d1ra03614a. eCollection 2021 Jun 25.
In this study, the behavior of fission product iodine released from the melting process of a mixture consisting of UF irradiated with neutrons and 2LiF-BeF (FLiBe) salt was studied. The experiment showed that a large amount of iodine was released immediately during melting and captured by Ni metal foils. The transient release of iodine observed in this experiment is attributed to the redox reaction between the hot atoms of the fission product iodine that cumulated due to long-time irradiation. The effect of the redox status of the molten salt on the transient release of iodine was also investigated. Based on this investigation, it was proposed that the activity ratios of I to salt-seeking fission products in the fuel salt, as an effective diagnostic criterion, may be used for the surveillance of the redox potential of fuel salts in a molten salt reactor.
在本研究中,对由中子辐照的UF与2LiF-BeF(FLiBe)盐组成的混合物熔化过程中释放的裂变产物碘的行为进行了研究。实验表明,大量碘在熔化过程中立即释放,并被镍金属箔捕获。本实验中观察到的碘的瞬态释放归因于由于长时间辐照而累积的裂变产物碘的热原子之间的氧化还原反应。还研究了熔盐的氧化还原状态对碘瞬态释放的影响。基于此研究,提出燃料盐中I与亲盐裂变产物的活度比作为一种有效的诊断标准,可用于监测熔盐反应堆中燃料盐的氧化还原电位。