Nie Baojie, Ni Muyi, Jiang Jieqiong, Wu Yican
Key Laboratory of Neutronics and Radiation Safety, Institute of Nuclear Energy Safety Technology, Chinese Academy of Sciences, Hefei, Anhui 230031, China; University of Science and Technology of China, Hefei, Anhui 230027, China.
Key Laboratory of Neutronics and Radiation Safety, Institute of Nuclear Energy Safety Technology, Chinese Academy of Sciences, Hefei, Anhui 230031, China.
J Environ Radioact. 2015 Oct;148:137-40. doi: 10.1016/j.jenvrad.2015.06.013. Epub 2015 Jul 8.
As one of the key safety issues of fusion reactors, tritium environmental impact of fusion accidents has attracted great attention. In this work, the dynamic tritium concentrations in the air and human body were evaluated on the time scale based on accidental release scenarios under the extreme environmental conditions. The radiation dose through various exposure pathways was assessed to find out the potential relationships among them. Based on this work, the limits of HT and HTO release amount for arbitrary accidents were proposed for the fusion reactor according to dose limit of ITER. The dynamic results aim to give practical guidance for establishment of fusion emergency standard and design of fusion tritium system.
作为聚变反应堆的关键安全问题之一,聚变事故的氚环境影响备受关注。在这项工作中,基于极端环境条件下的事故释放场景,在时间尺度上评估了空气和人体中的动态氚浓度。评估了通过各种暴露途径的辐射剂量,以找出它们之间的潜在关系。基于这项工作,根据国际热核聚变实验堆(ITER)的剂量限值,为聚变反应堆提出了任意事故中HT和HTO释放量的限值。动态结果旨在为聚变应急标准的制定和聚变氚系统的设计提供实际指导。