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Lanthanide speciation in potential SANEX and GANEX actinide/ud2 lanthanide separations using Tetra-N-Donor extractants

机译:潜在的SANEX和GANEX act系元素中的镧系元素形态/使用Tetra-N-Donor萃取剂进行2种镧系元素分离

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摘要

Lanthanide(III) complexes with N-donor ex-tractants, which exhibit the potential for the separation of minor actinides from lanthanides in the management of spent nuclear fuel, have been directly synthesized and characterized in both solution and solid states. Crystal structures of the Pr3+,udEu3+, Tb3+, and Yb3+ complexes of 6,6′-bis(5,5,8,8-tetramethyl-5,6,7,8-tetrahydro-1,2,4-benzotriazin3-yl)-1,10-phenanthroline(CyMe4-BTPhen) and the Pr3+, Eu3+, and Tb3+ complexes of 2,9-bis(5,5,8,8-tetramethyl-5,6,7,8-tetrahydro-1,2,4-benzotria-zin-3-yl)-2,2′-bypyridine (CyMe4-BTBP) were obtained. The majority of these structures displayed coordination of two ofthe tetra-N-donor ligands to each Ln3+ ion, even when in some cases the complexations were performed with equimolar amounts of lanthanide and N-donor ligand. The structures showed that generally the lighter lanthanides had their coordination spheres completed by a bidentate nitrate ion, giving a 2+ charged complex cation, whereas the structures of the heavier lanthanides displayed tricationic complex species with a single water molecule completing their coordination environments. Electronicudabsorption spectroscopic titrations showed formation of the 1:2 Ln3+/LN4‑donor species (Ln = Pr3+, Eu3+, Tb3+) in methanol when the N-donor ligand was in excess. When the Ln3+ ion was in excess, evidence for formation of a 1:1 Ln3+/LN4‑donor complex species was observed. Luminescent lifetime studies of mixtures of Eu3+ with excess CyMe4-BTBP and CyMe4-BTPhen in methanol indicated that the nitrate-coordinated species is dominant in solution. X-ray absorption spectra of Eu3+ and Tb3+ species, formed by extraction from an acidic aqueous phase into an organic solution consisting of excess N-donor extractant inudpure cyclohexanone or 30% tri-n-butyl phosphate (TBP) in cyclohexanone, were obtained. The presence of TBP in the organic phase did not alter lanthanide speciation. Extended X-ray absorption fine structure data from these spectra were fitted using chemical models established by crystallography and solution spectroscopy and showed the dominant lanthanide species in the bulk organic phase was a 1:2 Ln3+/LN‑donor species.
机译:镧系元素(Ⅲ)与N-给体提取物的配合物在溶液和固体状态下均已直接合成并进行了表征,这些配合物在将乏核燃料进行处理时具有从镧系元素中分离微量act系元素的潜力。 6,6'-双(5,5,8,8-四甲基-5,6,7,8-四氢-1,2,4-苯并三嗪3-)的Pr3 +, udEu3 +,Tb3 +和Yb3 +配合物的晶体结构yl)-1,10-菲咯啉(CyMe4-BTPhen)和2,9-双(5,5,8,8-四甲基-5,6,7,8-四氢-1)的Pr3 +,Eu3 +和Tb3 +配合物获得了(2,4-苯并三氮杂-3-基)-2,2'-吡啶(CyMe4-BTBP)。即使在某些情况下,用等摩尔量的镧系元素和N-供体配体进行络合,这些结构中的大多数仍显示出两个N-供体配体与每个Ln3 +离子配位。结构表明,一般而言,较轻的镧系元素的配位球由硝酸双齿完成,产生2+带电的复合阳离子,而较重的镧系元素的结构表现为三阳离子复合物,其中一个水分子构成了它们的配位环境。电子吸收光谱滴定表明,当N-供体配体过量时,甲醇中会形成1:2 Ln3 + / LN4-供体物质(Ln = Pr3 +,Eu3 +,Tb3 +)。当Ln3 +离子过量时,观察到形成1:1 Ln3 + / LN4-供体复合物的证据。 Eu3 +与过量CyMe4-BTBP和CyMe4-BTPhen在甲醇中的混合物的发光寿命研究表明,硝酸盐配位物种在溶液中占主导地位。通过从酸性水相萃取到有机溶液中形成的Eu3 +和Tb3 +物种的X射线吸收光谱,该有机溶液由过量的N-供体萃取剂在环己酮中的不纯环己酮或30%磷酸三正丁酯(TBP)组成。获得。 TBP在有机相中的存在不会改变镧系元素的形态。使用由晶体学和溶液光谱法建立的化学模型拟合了来自这些光谱的扩展X射线吸收精细结构数据,结果表明,在整体有机相中占主导地位的镧系元素是1:2 Ln3 + / LN-供体物种。

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