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Comparison of the radiological hazard of thorium and uranium spent fuels from VVER-1000 reactor

机译:VVER-1000反应堆中spent和铀乏燃料的放射危害比较

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摘要

Thorium fuel is considered as a viable alternative to the uranium fuel used in the current generation of nuclear power plants. Switch from uranium to thorium means a complete change of composition of the spent nuclear fuel produced as a result of the fuel depletion during operation of a reactor. If the Th-U fuel cycle is implemented, production of minor actinides in the spent fuel is negligible. This is favourable for the spent fuel disposal. On the other hand, thorium fuel utilisation is connected with production of ~(232)U, which decays via several alpha decays into a strong gamma emitter ~(208)T1. Presence of this nuclide might complicate manipulations with the irradiated thorium fuel. Monte-Carlo computation code MCNPX can be used to simulate thorium fuel depletion in a VVER-1000 reactor. The calculated actinide composition will be analysed and dose rate from produced gamma radiation will be calculated. The results will be compared to the reference uranium fuel. Dependence of the dose rate on time of decay after the end of irradiation in the reactor will be analysed. This study will compare the radiological hazard of the spent thorium and uranium fuel handling.
机译:燃料被认为是当前核电站中使用的铀燃料的可行替代品。从铀转换为th意味着由于反应堆运行期间燃料枯竭而产生的乏核燃料成分的完全变化。如果实施Th-U燃料循环,则在乏燃料中微量act系元素的产生可忽略不计。这对于乏燃料的处置是有利的。另一方面,th燃料的利用与〜(232)U的产生有关,后者通过多个α衰变而衰减成一个强的伽马发射器〜(208)T1。这种核素的存在可能会使被辐照的fuel燃料的操作复杂化。蒙特卡洛计算代码MCNPX可用于模拟VVER-1000反应堆中的fuel燃料消耗。将分析计算出的act系元素组成,并计算产生的伽马射线的剂量率。将结果与参考铀燃料进行比较。将分析反应器中辐照结束后剂量率与衰变时间的关系。这项研究将比较处理th和铀乏燃料的放射危害。

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