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Control of tritium in FFHR-2 self-cooled Flibe blanket

机译:FFHR-2自冷Flibe毯中的控制

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The application of Flibe (2LiF + BeF_2 mixed molten salt) to a blanket material of force-free helical reactor (FFHR-2) was discussed based on our recent experiments on redox control of Flibe by Be and on hydrogen permeation through Flinak (0.465LiF + 0.115NaF + 0.42 KF mixed molten salt) as a fluid simulant of Flibe. The two experimental works were carried out under the collaboration work of JUPITER-II. To maintain Flibe in the blanket loop under reduction condition is a key issue to transform TF to T_2 with a fast reaction rate. In order to achieve that, proper rates of Be dissolution and reduction reaction of TF to T_2 in Flibe have to be established in the self-cooled blanket. The overall material balance of tritium in the FFHR-2 system was discussed in terms of the tritium permeation through Flibe and the tritium recovery rate.
机译:基于我们最近关于Be对Flibe的氧化还原控制和Flinak对氢的渗透(0.465LiF)的实验,讨论了Flibe(2LiF + BeF_2混合熔融盐)在无力螺旋反应器(FFHR-2)的毯状材料中的应用。 + 0.115NaF + 0.42 KF混合熔融盐)作为Flibe的流体模拟物。这两个实验工作是在JUPITER-II的合作下进行的。将Flibe维持在还原条件下的毯环中是快速将TF转化为T_2的关键问题。为了实现这一点,必须在自冷毯中确定适当的Be溶解速率和TF在Flibe中还原为T_2的反应。根据through通过Flibe的渗透和the的回收率,讨论了FFHR-2系统中of的总体物质平衡。

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