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Accelerator-driven transmutation of spent fuel elements

机译:加速器驱动的乏燃料元素转化

摘要

An apparatus and method is described for transmuting higher actinides, plutonium and selected fission products in a liquid-fuel subcritical assembly. Uranium may also be enriched, thereby providing new fuel for use in conventional nuclear power plants. An accelerator provides the additional neutrons required to perform the processes. The size of the accelerator needed to complete fuel cycle closure depends on the neutron efficiency of the supported reactors and on the neutron spectrum of the actinide transmutation apparatus. Treatment of spent fuel from light water reactors (LWRs) using uranium-based fuel will require the largest accelerator power, whereas neutron-efficient high temperature gas reactors (HTGRs) or CANDU reactors will require the smallest accelerator power, especially if thorium is introduced into the newly generated fuel according to the teachings of the present invention. Fast spectrum actinide transmutation apparatus (based on liquid-metal fuel) will take full advantage of the accelerator-produced source neutrons and provide maximum utilization of the actinide-generated fission neutrons. However, near-thermal transmutation apparatus will require lower standing inventories of plutonium and higher actinides. Uranium, presently the largest volume constituent in nuclear waste, is fully utilized and not discharged as waste. Since no plutonium, higher actinides or fission products are present in the reconstituted fuel elements, the present processes can be used repeatedly. Moreover, because the performance of the existing reactors is not changed, full utilization of both thorium and uranium resources is achieved.
机译:描述了一种用于在液体燃料亚临界组件中in变高级act系元素,p和选定裂变产物的装置和方法。铀也可以被浓缩,从而提供用于常规核电站的新燃料。加速器提供执行过程所需的其他中子。完成燃料循环关闭所需的加速器的尺寸取决于所支持的反应堆的中子效率以及trans系元素apparatus变设备的中子谱。使用铀基燃料处理轻水反应堆(LWR)的乏燃料将需要最大的加速器功率,而中子效率的高温气体反应堆(HTGR)或CANDU反应器将需要最小的加速器功率,特别是如果将or引入根据本发明的教导的新产生的燃料。快速光谱act系元素apparatus变设备(基于液态金属燃料)将充分利用加速器产生的源中子,并最大程度地利用act系元素产生的裂变中子。然而,近热trans变设备将需要较低的standing存量和较高的act系元素。铀是目前核废料中体积最大的成分,已得到充分利用,不会作为废料排放。由于在重构的燃料元件中不存在p,高级act系元素或裂变产物,因此可以重复使用本发明的方法。此外,由于不改变现有反应堆的性能,因此可以充分利用or和铀资源。

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