放射分析
化学
非对映体
锕系元素
萃取(化学)
钚
溶剂
辐照
核化学
降级(电信)
镧系元素
铀
溶剂萃取
放射化学
色谱法
有机化学
水溶液
材料科学
冶金
核物理学
离子
物理
电信
计算机科学
作者
Bart Verlinden,Andreas Wilden,K. Van Hecke,Richard J. M. Egberink,Jurriaan Huskens,Willem Verboom,Michelle Hupert,Patrik Weßling,Andreas Geist,Petra J. Panak,R. Hermans,Marc Verwerft,Giuseppe Modolo,Koen Binnemans,Thomas Cardinaels
标识
DOI:10.1080/07366299.2022.2125151
摘要
The diglycolamide 2,2'-oxybis(N,N-di-n-decylpropanamide) (mTDDGA) is being studied as an extractant for actinides and lanthanides in the European Grouped Actinide Extraction (EURO-GANEX) process. The aim is the development of a more simplified process using a single extractant instead of a mixture of extractants used in the current EURO-GANEX process. This work presents solvent optimization studies of mTDDGA, with regards to the extraction characteristics of the different diastereomers of mTDGA and of mixed diastereomer solutions. Also radiolysis behavior has been studied by irradiation of solvent extraction systems in a gamma irradiation facility using 60Co. The availability of irradiated organic solutions made it possible to gain valuable insights into the plutonium loading capacity after gamma-irradiation of the solvent up to 445 kGy and to quantify degradation compounds. Solvent extraction characteristic of the major degradation compounds themselves were determined. Like other methylated diglycolamides, we found a remarkable difference in extraction of up to two orders of magnitude between the two diastereomers. High plutonium loading (36 g L−1) is feasible using this single extractant, even after absorbing a dose of 445 kGy. This remarkable observation is possibly promoted by the presence of the main degradation compound which extracts plutonium verywell.
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