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Apparatus for nuclear transmutation and power production using an intense accelerator-generated thermal neutron flux

机译:使用加速器产生的热中子通量进行核转化和发电的设备

摘要

Apparatus for nuclear transmutation and power production using an intense accelerator-generated thermal neutron flux. High thermal neutron fluxes generated from the action of a high power proton accelerator on a spallation target allows the efficient burn-up of higher actinide nuclear waste by a two-step process. Additionally, rapid burn-up of fission product waste for nuclides having small thermal neutron cross sections, and the practicality of small material inventories while achieving significant throughput derive from employment of such high fluxes. Several nuclear technology problems are addressed including 1. nuclear energy production without a waste stream requiring storage on a geological timescale, 2. the burn-up of defense and commercial nuclear waste, and 3. the production of defense nuclear material. The apparatus includes an accelerator, a target for neutron production surrounded by a blanket region for transmutation, a turbine for electric power production, and a chemical processing facility. In all applications, the accelerator power may be generated internally from fission and the waste produced thereby is transmuted internally so that waste management might not be required beyond the human lifespan.
机译:使用加速器产生的热中子通量进行核nuclear变和发电的设备。高功率质子加速器对散裂靶的作用产生的高热中子通量,可通过两步过程有效燃烧高级act系元素核废料。另外,裂变产物废料对于具有小的热中子横截面的核素的快速燃烧,以及在实现显着的通量的同时,小材料库存的实用性源自采用这种高通量。解决了一些核技术问题,其中包括:1.不产生废物流的核能生产,需要按地质时标存储; 2.国防和商业核废料的燃烧,以及3.国防核材料的生产。所述装置包括加速器,被用于blanket变的毯状区域包围的用于中子产生的靶,用于电力产生的涡轮以及化学处理设备。在所有应用中,加速器的动力可以在内部由裂变产生,由此产生的废物在内部得以转化,因此可能不需要在人类寿命之外进行废物管理。

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