Proliferation由于U-232衰变产物作为强伽马辐射源的存在而对铀的保护

G. Kulikov, A. Shmelev, V. Apse, E. Kulikov
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引用次数: 1

摘要

本文的目的是:(1)展示U-232衰变链中硬γ-量子的核和物理原因,(2)提出处理含铀U-232的策略,(3)评估其保护γ-屏障防止失控扩散的效率。作者展示了铀-232核素转变的衰变链的总体情况,这是保护铀不受其不受控制的扩散的基础。在原子核衰变过程中,α-或β-粒子的发射只是原子核内部结构重排的最复杂过程的第一个阶段,重排过程包括中子和质子壳层的重排及其激发能级的重排,以及原子电子壳层的重排。通常,子核处于高度激发态,通过发射硬γ-量子和内部转换电子将其移除。在第二种情况之后,原子的剩余激发通过发射特征γ-量子和具有特征γ-量子的俄歇电子来消除。此外,对Tl-208和Bi-212的硬γ辐射的量子力学原因进行了解释,它们完成了U-232的衰变链。作者还提出了一种处理含有铀-232的铀的策略。由于Tl-208和Bi-212的硬γ-量子只出现在U-232衰变链的末端,因此U-232经过其衰变产物的化学纯化后,本身不构成辐射危害;因此,此时最好进行一切必要的操作,将材料运送到工厂,制造含有U-232的铀基燃料,并将这种燃料运送到将使用它的核设施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Proliferation protection of uranium due to the presence of U-232 decay products as intense sources of hard gamma radiation
The objectives of the article are (1) to show the nuclear and physical causes of hard γ-quanta in the U-232 decay chain, (2) to propose tactics for handling uranium containing U-232, and (3) to assess the efficiency of its protective γ-barrier against uncontrolled proliferation. The authors show the general picture of the decay chains of U-232 nuclide transformations, on which the protection of uranium from its uncontrolled proliferation is based. During the decay of nuclei, their emission of α- or β-particles is only the first stage of the most complex process of rearrangement of both the internal structure of the nucleus itself, which consists in the rearrangement of the neutron and proton shells and the levels of its excitation, and in the rearrangement of the electron shells of the atom. As a rule, the daughter nucleus is in a highly excited state, which is removed by the emission of hard γ-quanta and internal conversion electrons. After the second case, the remaining excitation of the atom is removed by the emission of characteristic γ-quanta and Auger-electrons with characteristic γ-quanta. In addition, explanations are given for the quantum-mechanical reasons for the hard γ-radiation of Tl-208 and Bi-212, which complete the U-232 decay chain. The authors also proposed a tactic for handling uranium containing uranium-232. Since the hard γ-quanta of Tl-208 and Bi-212 appear only at the end of the U-232 decay chain, after its chemical purification from its decay products, U-232 itself does not pose a radiation hazard; therefore, at this time it is advisable to conduct all necessary operations for transporting the material to the plant, fabricating uranium-based fuel containing U-232, and transporting this fuel to the nuclear facility where it will be used.
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