Verma Parveen K, Bhattacharyya Arunasis, Mohapatra Prasanta K
Radiochemistry Division, Bhabha Atomic Research Centre, Mumbai, Maharashtra, India.
Dalton Trans. 2024 Oct 1;53(38):15890-15902. doi: 10.1039/d4dt00719k.
Mutual separation of -plutonium actinides (Ans) from lanthanides (Lns) or adjacent Ans is challenging as they exhibit great chemical similarity. Selective Am oxidation-based Am-Lns or Am-Cm separation strategies give very high separation factors. There exist several reports on different aspects of Am oxidation by NaBiO·HO ( = 2-3), which suggests that the oxidation mechanism is still not well understood. We, therefore, carefully performed several experiments taking advantage of the difference in the redox chemistry of Eu and Am. The ion exchange of Eu with the interlayer Na in NaBiO was confirmed by an ionic strength variation experiment. The shift in the 001 peak of NaBiO in XRD and the appearance of peaks corresponding to the trivalent Ln ions in XRF after Ln loading give direct evidence for Na exchange with Ln. The stability of the higher oxidation state of Am was monitored spectrophotometrically. The experimental investigations also suggested the role of Am → AmO transformation in NaBiO·HO ( = 2-3) dissolution even at pH ∼ 1, which otherwise is difficult to achieve even with >1 M HNO. The role of colloidal NaBiO particles and dissolved BiO in controlling or stabilizing different oxidation states of Am was also discussed.
从镧系元素(Lns)或相邻锕系元素(Ans)中相互分离钚系锕系元素(Ans)具有挑战性,因为它们表现出极大的化学相似性。基于选择性镅氧化的镅-镧系元素或镅-锔分离策略具有非常高的分离因子。关于NaBiO₃·H₂O(n = 2 - 3)氧化镅的不同方面已有多篇报道,这表明其氧化机制仍未得到很好的理解。因此,我们利用铕和镅氧化还原化学的差异仔细进行了多项实验。通过离子强度变化实验证实了铕与NaBiO₃中层间钠的离子交换。负载镧系元素后,XRD中NaBiO₃的001峰发生位移以及XRF中出现对应三价镧系离子的峰,为钠与镧系元素的交换提供了直接证据。用分光光度法监测了镅较高氧化态的稳定性。实验研究还表明,即使在pH约为1的情况下,镅→镅酰转变在NaBiO₃·H₂O(n = 2 - 3)溶解中也发挥作用,否则即使使用大于1 M的硝酸也难以实现。还讨论了胶体NaBiO₃颗粒和溶解的BiO₃⁻在控制或稳定镅的不同氧化态方面的作用。