Gamma and pulsed electron radiolysis studies of CyMe4BTBP and CyMe4BTPhen: Identification of radiolysis products and effects on the hydrometallurgical separation of trivalent actinides and lanthanides

放射分析 化学 激进的 放射化学 水溶液 电离辐射 溶剂 分子 辐射化学 稀释剂 核化学 配体(生物化学) 辐照 无机化学 化学反应 有机化学 物理 受体 生物化学 核物理学
作者
H. Schmidt,Andreas Wilden,Giuseppe Modolo,Dirk Bosbach,Beatrix Santiago‐Schübel,Michelle Hupert,Bruce J. Mincher,Stephen P. Mezyk,Jaroslav Švehla,Bohumı́r Grüner,Christian Ekberg
出处
期刊:Radiation Physics and Chemistry [Elsevier BV]
卷期号:189: 109696-109696 被引量:6
标识
DOI:10.1016/j.radphyschem.2021.109696
摘要

The radiolytic stability of the highly selective ligands CyMe4BTBP and CyMe4BTPhen against ionizing gamma radiation was studied in 1-octanol solution. CyMe4BTBP and CyMe4BTPhen are important extractants for a potential treatment of used nuclear fuel. They were studied under identical experimental conditions to directly compare the effects of gamma and pulsed electron radiolysis on the ligands and systematically study the influence of structural changes in the ligand backbone. Distribution ratios of Am3+, Cm3+ and Eu3+, the residual concentration of CyMe4BTBP and CyMe4BTPhen in solution, and the formation of radiolysis products were studied as a function of absorbed gamma dose and presence of an acidic aqueous phase during irradiation. Quantitative and semi-quantitative analyses were used to elucidate the radiolysis mechanism for both ligands. Addition products of alpha-hydroxyoctyl radicals formed through radiolysis of the 1-octanol diluent to the ligand molecules were identified as the predominant radiolysis products. These addition products also extract trivalent metal ions, as distribution ratios remained high although the parent molecule concentrations decreased. Therefore, the utilization time of a solvent using these extractants under the harsh conditions of used nuclear fuel treatment could be considerably longer than expected. Understanding the radiolysis mechanism is crucial for designing more radiation resistant extractants.

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