首页> 外文会议>International conference on the physics of reactors >RADIOGENIC LEAD WITH DOMINANT CONTENT OF ~(208)Pb: NEW COOLANT AND NEUTRON MODERATOR FOR INNOVATIVE NUCLEAR REACTORS
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RADIOGENIC LEAD WITH DOMINANT CONTENT OF ~(208)Pb: NEW COOLANT AND NEUTRON MODERATOR FOR INNOVATIVE NUCLEAR REACTORS

机译:具有〜(208)PB的主要含量的辐射性铅:用于创新核反应堆的新型冷却剂和中子调节剂

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The advantages of radiogenic lead with dominant content of ~(208)Pb as a reactor coolant with respect to natural lead are caused by unique nuclear properties of ~(208)Pb which is a double-magic nucleus with closed proton and neutron shells. This results in significantly lower micro cross section and resonance integral of radiative neutron capture by ~(208)Pb than those for numerous light neutron moderators. The extremely weak ability of ~(208)Pb to absorb neutrons results in the following effects. Firstly, neutron moderating factor (ratio of scattering to capture cross sections) is larger than that for graphite and light water. Secondly, age and diffusion length of thermal neutrons are larger than those for graphite, light and heavy water. Thirdly, neutron lifetime in ~(208)Pb is comparable with that for graphite, beryllium and heavy water what could be important for safe reactor operation. The paper presents some results obtained in neutronics and thermal-hydraulics evaluations of the benefits from the use of radiogenic lead with dominant content of ~(208)Pb instead of natural lead as a coolant of fast breeder reactors. The paper demonstrates that substitution of radiogenic lead for natural lead can offer the following benefits for operation of fast breeder reactors. Firstly, improvement of the reactor safety thanks to the better values of coolant temperature reactivity coefficient and, secondly, improvement of some thermal-hydraulic reactor parameters. Radiogenic lead can be extracted from thorium sludge without isotope separation as ~(208)Pb is a final isotope in the decay chain of ~(232)Th.
机译:具有〜(208)Pb的主要含量的辐射性含量的优点是相对于天然铅的反应器冷却剂是由〜(208)Pb的独特核特性引起的,其是具有封闭质子和中子壳的双粘性核。这导致显着降低微横截面和辐射中子的共振积分,比〜(208)Pb捕获而不是众多光中子剂量符号。 〜(208)Pb吸收中子的极低能力导致以下效果。首先,中子调节因子(散射与捕获横截面的比率)大于石墨和轻水的比率。其次,热中子的年龄和扩散长度大于石墨,光和重水的年龄和扩散长度。第三,中子寿命在〜(208)Pb中与石墨,铍和重水相当,对于安全的反应器操作可能是重要的。本文介绍了在中子学和热液压评估中获得的一些结果,从使用辐射性铅的益处,具有〜(208)Pb的主要含量而不是天然铅作为快速育种反应器的冷却剂。本文表明,用于天然铅的辐射性铅取代可以为快速育种反应器进行以下益处。首先,由于冷却剂温度反应性系数的更好值,并且其次,改善了一些热液压反应器参数,因此改善了反应堆安全性。可以从没有同位素分离的钍污泥中萃取辐射性铅,因为〜(208)Pb是〜(232)Th的衰减链中的最终同位素。

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