Pastoor Kevin J, Kemp R Scott, Jensen Mark P, Shafer Jenifer C
Department of Chemistry, Colorado School of Mines, Golden, Colorado 80401, United States.
Department of Nuclear Science and Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.
Inorg Chem. 2021 Jun 21;60(12):8347-8367. doi: 10.1021/acs.inorgchem.0c03390. Epub 2021 Feb 23.
The front-end of the nuclear fuel cycle encompasses several chemical and physical processes used to acquire and prepare uranium for use in a nuclear reactor. These same processes can also be used for weapons or nefarious purposes, necessitating the need for technical means to help detect, investigate, and prevent the nefarious use of nuclear material and nuclear fuel cycle technology. Over the past decade, a significant research effort has investigated uranium compounds associated with the front-end of the nuclear fuel cycle, including uranium ore concentrates (UOCs), UF, UF, and UOF. These efforts have furthered uranium chemistry with an aim to expand and improve the field of nuclear forensics. Focus has been given to the morphology of various uranium compounds, trace elemental and chemical impurities in process samples of uranium compounds, the degradation of uranium compounds, particularly under environmental conditions, and the development of improved or new techniques for analysis of uranium compounds. Overall, this research effort has identified relevant chemical and physical characteristics of uranium compounds that can be used to help discern the origin, process history, and postproduction history for a sample of uranium material. This effort has also identified analytical techniques that could be brought to bear for nuclear forensics purposes. Continued research into these uranium compounds should yield additional relevant chemical and physical characteristics and analytical approaches to further advance front-end nuclear fuel cycle forensics capabilities.
核燃料循环的前端涵盖了多个化学和物理过程,用于获取和制备供核反应堆使用的铀。这些相同的过程也可用于制造武器或其他邪恶目的,因此需要技术手段来帮助检测、调查和防止核材料及核燃料循环技术被用于邪恶目的。在过去十年中,大量研究致力于调查与核燃料循环前端相关的铀化合物,包括铀矿浓缩物(UOCs)、UF、UF和UOF。这些努力推动了铀化学的发展,旨在扩展和改进核取证领域。研究重点包括各种铀化合物的形态、铀化合物过程样品中的微量元素和化学杂质、铀化合物的降解,特别是在环境条件下的降解,以及开发改进的或新的铀化合物分析技术。总体而言,这项研究工作确定了铀化合物的相关化学和物理特性,可用于帮助识别铀材料样品的来源、加工历史和生产后历史。这项工作还确定了可用于核取证目的的分析技术。对这些铀化合物的持续研究应会产生更多相关的化学和物理特性以及分析方法,以进一步提升前端核燃料循环取证能力。