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RECYCLE OF TRANSURANIUM ELEMENTS IN LIGHT WATER REACTORS FOR REDUCTION OF GEOLOGICAL STORAGE REQUIREMENTS

机译:轻水反应堆中铀元素的循环用于降低地质储量的要求

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This paper presents results of a feasibility study aimed at developing a zero-transuranic-discharge fuel cycle based on the U-Th-TRU ternary cycle. The design objective is to find a fuel composition (mixture of thorium, enriched uranium, and recycled transuranic components) and fuel management strategy resulting in an equilibrium charge-discharge mass flow. In such a fuel cycle scheme, the quantity and isotopic vector of the transuranium (TRU) component is identical at the charge and discharge time points, thus allowing the whole amount of the TRU at the end of the fuel irradiation period to be separated and reloaded into the following cycle. The TRU reprocessing activity losses are the only waste stream that will require permanent geological storage, virtually eliminating the long-term radiological waste of the commercial nuclear fuel cycle. A detailed three-dimensional full pressurized water reactor (PWR) core model was used to analyze the proposed fuel composition and management strategy. The results demonstrate the neutronic feasibility of the fuel cycle with zero-TRU discharge. The amount of TRU and enriched uranium loaded reach equilibrium after about four TRU recycles. The reactivity coefficients were found to be within a range typical for a reference PWR core. The soluble boron worth is reduced by a factor of ~ 2 from a typical PWR value. Nevertheless, the results indicate the feasibility of an 18-month fuel cycle design with an acceptable beginning-of-cycle soluble boron concentration even without application of burnable poisons.
机译:本文介绍了一项可行性研究的结果,旨在开发基于U-Th-TRU三元循环的零超铀排放燃料循环。设计目标是找到一种燃料成分(th,富铀和再循环的超铀成分的混合物)和燃料管理策略,以实现充放电质量流量平衡。在这种燃料循环方案中,铀(TRU)组分的数量和同位素矢量在充放电时间点是相同的,因此可以分离并重新装载燃料辐照期结束时的TRU总量进入下一个周期。 TRU后处理活动损失是唯一需要永久地质存储的废物流,实际上消除了商业核燃料循环的长期放射性浪费。详细的三维全压水堆堆芯模型用于分析拟议的燃料组成和管理策略。结果证明了零TRU排放燃料循环的中子学可行性。大约四个TRU循环后,TRU和浓缩铀的负载量达到平衡。发现反应系数在参考PWR芯的典型范围内。可溶性硼的价值从典型的PWR值降低了约2倍。然而,结果表明,即使不使用可燃毒物,在可接受的循环开始时可溶硼浓度下进行18个月的燃料循环设计也是可行的。

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