会议论文详细信息
International Conference for Young Scientists, Specialists, and Postgraduates on Nuclear Reactor Physics 2016
Closed fuel cycle with increased fuel burn-up and economy applying of thorium resources
Kulikov, G.G.^1 ; Apse, V.A.^1
National Research Nuclear University, MEPhI (Moscow Engineering Physics Institute), Kashirskoe Highway, 31, Moscow
115409, Russia^1
关键词: Closed fuel cycles;    Export potential;    Fissile materials;    Hybrid reactor;    Low-enriched uranium fuel;    Nuclear fuel cycles;    Nuclear power technology;    Russian federation;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/781/1/012012/pdf
DOI  :  10.1088/1742-6596/781/1/012012
来源: IOP
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【 摘 要 】

The possible role of existing thorium reserves in the Russian Federation on engaging thorium in being currently closed (U-Pu)-fuel cycle of nuclear power of the country is considered. The application efficiency of thermonuclear neutron sources with thorium blanket for the economical use of existing thorium reserves is demonstrated. The aim of the work is to find solutions of such major tasks as the reduction of both front-end and back-end of nuclear fuel cycle and an enhancing its protection against the uncontrolled proliferation of fissile materials by means of the smallest changes in the fuel cycle. During implementation of the work we analyzed the results obtained earlier by the authors, brought new information on the number of thorium available in the Russian Federation and made further assessments. On the basis of proposal on the inclusion of hybrid reactors with Th-blanket into the future nuclear power for the production of light uranium fraction232+233+234U, and231Pa, we obtained the following results: 1. The fuel cycle will shift from fissile235U to233U which is more attractive for thermal power reactors. 2. The light uranium fraction is the most «protected» in the uranium component of fuel and mixed with regenerated uranium will in addition become a low enriched uranium fuel, that will weaken the problem of uncontrolled proliferation of fissile materials. 3.231Pa doping into the fuel stabilizes its multiplying properties that will allow us to implement long-term fuel residence time and eventually to increase the export potential of all nuclear power technologies. 4. The thorium reserves being near city Krasnoufimsk (Russia) are large enough for operation of large-scale nuclear power of the Russian Federation of 70 GWe capacity during more than a quarter century under assumption that thorium is loaded into blankets of hybrid TNS only. The general conclusion: the inclusion of a small number of hybrid reactors with Th-blanket into the future nuclear power will allow us substantially to solve its problems, as well as to increase its export potential.

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