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Transmutations of nuclear waste in accelerator-driven subcritical systems

机译:加速器驱动的亚临界系统中核废料的变

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The physical preconditionings of transmutations are analysed. It has been suggested that one of the most viable incineration concepts is a symbiotic nuclear-energy system, consisting of a transmuter and a number of co-operating light-water reactors (LWRs). Closing of the fuel cycle is not easily achievable, since the minor actinides (MAs), unavoidably then produced in significant quantities, show disadvantageous safety properties (positive void reactivity coefficients). Accelerator-driven subcritical systems (ADSSs), distinct by their remoteness from super prompt criticality, have been attracting more and more attention. The superiority of subcritical ones is shown by comparing their behaviours in the case of a rapid reactivity insertion that brings no risk, in contrast to the fast critical ones. Finally, research problems and difficulties are mentioned. Any form of closed fuel cycle cannot avoid dealing with large quantities of radioactive materials. Yet, a definitive elimination of actinides, with the use of the enormous released energy, is worth this price. Summarising, the concept of nuclear transmutations in accelerator-driven subcritical systems significantly heightens the safety of nuclear-power systems.
机译:分析了physical变的物理预处理。有人提出,最可行的焚烧概念之一是共生核能系统,该系统由一个变相器和许多协同工作的轻水反应堆(LWR)组成。燃料循环的关闭是不容易实现的,因为不可避免地会大量生成次要act系元素(MA),显示出不利的安全性能(正空反应系数)。加速器驱动的亚临界系统(ADSS)与超快速临界的区别在于它们已经吸引了越来越多的关注。与快速关键反应相比,通过在不带来风险的快速反应插入的情况下比较其行为,可以显示出次临界反应的优越性。最后,提到了研究问题和困难。任何形式的封闭燃料循环都无法避免处理大量放射性物质。然而,使用巨大的释放能量来彻底消除act系元素是值得的。综上所述,加速器驱动的亚临界系统中的核trans变概念大大提高了核电系统的安全性。

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