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Advancing the scientific basis of trivalent actinide-lanthanide separations

机译:推进三价act系元素镧系元素分离的科学基础

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For advanced fuel cycles designed to support transmutation of transplutonium actinides, several options have been demonstrated for process-scale aqueous separations for U, Np, Pu management (PUREX, UREX, COEX) and for partitioning of trivalent actinides (Am/Cm) and fission product lanthanides away from other fission products (TRUEX, DIAMEX, ARTIST, TRPO). The more difficult mutual separation of Am/Cm from La-Tb remains the subject of considerable fundamental and applied research. The chemical separations literature teaches that the most productive alternatives to pursue are those based on ligand donor atoms less electronegative than O, specifically N- and S-containing complexants and chloride ion (CI). These "soft-donor" atoms have exhibited usable selectivity in their bonding interactions with trivalent actinides relative to lanthanides. In this report, selected features of soft donor reagent design, characterization and application development will be discussed.
机译:对于旨在支持跨trans系act元素trans变的先进燃料循环,已经证明了多种选择,可用于处理规模的水,铀,Np,Pu分离(PUREX,UREX,COEX)以及三价act系元素的分配(Am / Cm)和裂变产品镧系元素远离其他裂变产品(TRUEX,DIAMEX,ARTIST,TRPO)。 Am / Cm与La-Tb的更困难的相互分离仍然是相当多的基础研究和应用研究的主题。化学分离文献教导,要追求的最有生产力的替代方法是那些基于配体供体原子的负电性比O低的替代物,特别是含N和S的络合剂和氯离子(CI)。这些“软供体”原子在其与三价act系元素的键合相互作用中相对于镧系元素表现出可用的选择性。在本报告中,将讨论软供体试剂设计,表征和应用开发的部分功能。

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