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Fast Reactor Core Concepts for Minor Actinide Transmutation Using Hydride Fuel Targets

机译:使用氢化物​​燃料靶进行次Act系元素Trans变的快速反应堆核心概念

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摘要

Fast reactor core concepts are studied which reduce long-term radiotoxicity of nuclear waste by using minor actinides (MAs) in the form of zirconium--hydride fuel targets. A systematic parameter survey is carried out to investigate the fundamental characteristics of MA transmutation and the core safety parameters such as sodium void reactivity in a 1,000MWe--class fast reactor core. Two core concepts are proposed, using 36 target assemblies, by adjusting the composition of hydride fuels. One is the MA burner core to transmute a large amount of MAs in a short time combined with Pu multi-recycling in fast reactors, whereby the MAs produced in about 13 LWRs can be transmuted every year with a 58/100 MA transmutation rate in discharged targets. The other is the MA once-through core to incinerate a small amount of MAs by fission, whereby the MAs produced in about 2 LWRs can be incinerated every year with a 64/100 MA incineration rate (a 93/100 transmutation rate) in discharged targets. This study shows these concepts have great potential to achieve good transmutation characteristics of MAs while providing the improved safety characteristics of a fast reactor core.
机译:研究了快速反应堆堆芯概念,该方法通过使用锆-氢化物燃料靶标形式的次act系元素(MA)减少核废料的长期放射毒性。进行了系统的参数调查,以研究MA trans变的基本特征以及堆芯安全参数,例如1,000MWe级快堆堆芯中的钠空反应性。通过调整氢化物燃料的成分,使用36个目标组件提出了两个核心概念。一种是MA燃烧器堆芯,可在短时间内转化大量的MA,并与快速反应堆中的Pu进行多次回收相结合,从而每年可对约13座轻水堆中产生的MA进行trans变,排放的a变率为58/100 MA目标。另一个是MA直通核,通过裂变焚化少量的MA,从而每年可以焚烧约2个轻水堆中产生的MA,排放量为64/100 MA(转化率93/100)目标。这项研究表明,这些概念在实现MA良好的trans变特性的同时,还具有改善快堆堆芯安全特性的巨大潜力。

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