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Nuclear Data for Innovative Reactors Having Persistent Resistance to Nuclear Proliferation

机译:创新反应堆的核数据具有持续抵抗核增殖的抵抗力

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The Protected Plutonium Production (P~3) project has been initiated in order to realize the proliferation-resistant plutonium. The first stage of this project is based on the idea to protect plutonium by ~(238)Pu generated from ~(237)Np doped in the fresh uranium fuel. Along with the burnup going on, the doped ~(237)Np is transmuted via ~(238)Np to ~(238)Pu, which is the intense neutron source of spontaneous fission (2.6x10~3 n/g/s). These neutrons will deteriorate the quality of the plutonium as the nuclear explosive material. In addition, high alpha-decay heat of ~(238)Pu (560W/kg) makes the processes of the explosive fabrication and its maintenance technologically difficult. In this background we surveyed the status of nuclear data relevant to the P~3-concept reactor design. The reliability of the capture cross section data for ~(237)Np and ~(238)Pu are far from satisfactory and more accurate experiments and evaluations are required. As fissions in these nuclides do not always play any decisive role in the P~3 concept LWR, we can be fairly tolerable about the uncertainty of the fission cross section data, but farther study is needed.
机译:已启动受保护的钚生产(P〜3)项目,以实现耐扩散钚。该项目的第一阶段是基于保护钚的想法,由〜(237)NP掺杂在新鲜铀燃料中。随着燃尽的亮起,掺杂〜(237)NP通过〜(238)NP转换为〜(238)PU,这是自发性裂变的强源源(2.6x10〜3 n / g)。这些中子将使钚作为核爆炸材料的质量恶化。此外,〜(238)PU(560W / kg)的高α-衰减热量使得爆炸性制造的过程及其维护技术困难。在此背景下,我们调查了与P〜3概念反应堆设计相关的核数据的状态。 〜(237)NP和〜(238)PU的捕获横截面数据的可靠性远非令人满意,需要更准确的实验和评估。随着这些核素的裂缝并不总是在P〜3概念LWR中发挥任何果断作用,我们可以对裂变截面数据的不确定性相当容忍,但需要更远的研究。

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