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Nuclear fission sustainability with subcritical reactors driven by external neutron sources

机译:由外部中子源驱动的亚临界反应堆的核裂变可持续性

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Although nuclear breeder reactors are a promising way to enhance the potential energy currently retrievable from the Uranium reserves, they still have disadvantages because of their safety features (i.e. poor stabilizing mechanisms) and the security of their fuel cycle (diversion of Pu for non-civilian purposes). Loading natural nuclear fuels to a reactor and completely burning them without reprocessing would be ideal, however, this is not possible in critical reactors due to the limitations imposed by the maximum achievable burn-up. An alternative option to attain very high percentages of nuclear natural materials exploitation, while meeting other objectives of Nuclear Sustainability, could consist of using externally-driven subcritical reactors to reach the desired high burn-ups (of the order of 30% and more) without reprocessing. Such scheme would lead to an efficient exploitation of the available raw material, without any risk of proliferation. Exploring this type of reactor concept, this paper analyzes the different ways to accomplish this goal while identifying potential setbacks.
机译:尽管核增殖反应堆是提高目前可从铀储备中获取的潜在能源的一种有前途的方法,但由于它们的安全特性(即稳定机制差)和燃料循环的安全性(将Pu转移给非民用核燃料),它们仍具有劣势。目的)。将天然核燃料装载到反应堆并完全燃烧而不进行后处理将是理想的,但是,由于最大可燃耗的限制,在关键反应堆中这是不可能的。在满足核可持续性的其他目标的同时,实现极高比例的核天然材料开发的替代方案可能包括使用外部驱动的亚临界反应堆来达到所需的高燃尽率(大约30%以上)。再处理。这样的计划将导致有效利用可用的原料,而没有任何扩散的风险。探索这种类型的反应堆概念时,本文分析了在确定潜在挫折的同时实现该目标的不同方法。

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