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Managing fusion high-level waste—A strategy for burning the long-lived products in fusion devices

机译:管理聚变高放废物-在聚变设备中燃烧长寿命产品的策略

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摘要

Fusion devices appear to be a viable option for burning their own high-level waste (HLW). We propose a novel strategy to eliminate (or minimize) the HLW generated by fusion systems. The main source of the fusion HLW includes the structural and recycled materials, refractory metals, and liquid breeders. The basic idea involves recycling and reprocessing the waste, separating the long-lived radionuclides from the bulk low-level waste, and irradiating the limited amount of HLW in a specially designed module to transmute the long-lived products into short-lived radioisotopes or preferably, stable elements. The potential performance of the new concept seems promising. Our analysis indicated moderate to excellent transmutation rates could be achieved in advanced fusion designs. Successive irradiation should burn the majority of the HLW. The figures of merit for the concept relate to the HLW burn-up fraction, neutron economy, and impact on tritium breeding. Hopefully, the added design requirements could be accommodated easily in fusion power plants and the cost of the proposed system would be much less than disposal in a deep geological HLW repository. Overall, this innovative approach offers benefits to fusion systems and helps earn public acceptance for fusion as a HLW-free source of clean nuclear energy.
机译:融合设备似乎是燃烧自己的高放废物(HLW)的可行选择。我们提出了一种新颖的策略来消除(或最小化)融合系统产生的高放废物。聚变高放废物的主要来源包括结构材料和再生材料,难熔金属和液体育种剂。基本思想包括回收和再处理废物,将长寿命放射性核素与大量低水平废物分开,并在专门设计的模块中辐照有限量的高放废物,以将长寿命产品转化为短寿命放射性同位素,或者最好是,稳定的元素。新概念的潜在性能似乎很有希望。我们的分析表明,在先进的融合设计中可以实现中等至优异的转化率。连续照射应燃烧大部分HLW。该概念的优值与高放废物的燃烧率,中子经济性以及对tri繁殖的影响有关。希望,可以在聚变电站中轻松满足所增加的设计要求,并且所提议系统的成本将比处置在深部地质高放仓库中的成本低得多。总体而言,这种创新方法为聚变系统提供了好处,并有助于赢得公众对聚变作为无HLW清洁核能来源的认可。

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