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Review Article: The Effects of Radiation Chemistry on Solvent Extraction: 2. A Review of Fission-Product Extraction

机译:评论文章:辐射化学对溶剂萃取的影响:2.裂变产物萃取综述

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摘要

The partitioning of the long-lived α-emitters and the high-yield fission products from dissolved nuclear fuel is a key component of processes envisioned for the safe recycling of nuclear fuel and the disposition of high-level waste. These future processes will likely be based on aqueous solvent-extraction technologies for light-water reactor fuel and consist of four main components for the separation of uranium, fission products, and group trivalent actinides and lanthanides and separation of trivalent actinides from lanthanides. Since the solvent systems will be in contact with highly radioactive solutions, they must be robust toward radiolytic degradation in an irradiated, mixed organic and aqueous acidic environment. Therefore, an understanding of their radiation chemistry is important to the design of a practical system. In a previous paper, we reviewed the radiation chemistry of irradiated aqueous nitric acid and the tributyl phosphate ligand used for uranium extraction in the first step of the series of four extractions. In this paper, we review the radiation chemistry of the ligands proposed for use in the second extraction of cesium and strontium fission products. This includes not only the crown ethers and calixarenes but also cobalt dicarbollide and polyethylene glycol. Since many disparate units have been applied for measuring absorbed radiation dose in the literature, we also present a discussion of that topic and provide conversion factors.
机译:从溶解的核燃料中分离长寿命的α发射体和高产裂变产物,是为安全回收核燃料和处置高放废物而设想的过程的关键组成部分。这些未来的过程可能将基于轻水反应堆燃料的水性溶剂萃取技术,并且由铀,裂变产物以及三价valent系元素和镧系元素的分离以及从镧系元素中分离三价act系元素的四个主要成分组成。由于溶剂系统将与高放射性溶液接触,因此它们必须在辐照,混合的有机和水性酸性环境中对辐射降解具有鲁棒性。因此,了解它们的辐射化学对实际系统的设计很重要。在先前的论文中,我们在四次萃取的第一步中回顾了辐照硝酸水溶液和用于铀萃取的磷酸三丁酯配体的辐射化学。在本文中,我们回顾了建议用于铯和锶裂变产物第二次萃取的配体的辐射化学。这不仅包括冠醚和杯芳烃,还包括双碳钴酸钴和聚乙二醇。由于文献中已将许多不同的单位用于测量吸收的辐射剂量,因此,我们还将对该主题进行讨论并提供转换因子。

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