DiMucci Ida M, Root Harrison D, Jones Zachary R, Kozimor Stosh A, MacInnes Molly M, Miller Jeffrey L, Mocko Veronika, Oldham Warren J, Stein Benjamin W
Los Alamos National Laboratory, P. O. Box 1663, Los Alamos, NM, 87544, USA.
Chem Commun (Camb). 2022 Sep 29;58(78):10961-10964. doi: 10.1039/d2cc04225h.
Plutonium-based technologies would benefit if chemical hazards for purifying plutonium were reduced. One critical processing step where improvements could be impactful is the adjustment of plutonium oxidation-states during separations. This transformation often requires addition of redox agents. Unfortunately, many of the redox agents used previously cannot be used today because their properties are deemed incompatible with modern day processing facilities and waste stream safety requirements. We demonstrated herein that photochemistry can be used as an alternative to those chemical agents. We observed that (1) Pu → Pu and UO → U photoreduction proceeded in HCl and HNO and (2) photogenerated Pu and U could be separated using anion exchange chromatography (high yield, >90%; good separation factor, 322).
如果减少钚净化过程中的化学危害,基于钚的技术将受益。一个改进可能产生重大影响的关键处理步骤是在分离过程中调整钚的氧化态。这种转变通常需要添加氧化还原试剂。不幸的是,以前使用的许多氧化还原试剂如今已无法使用,因为它们的特性被认为与现代处理设施和废物流安全要求不兼容。我们在此证明光化学可作为这些化学试剂的替代方法。我们观察到:(1)在盐酸和硝酸中发生了钚(Pu)→钚(Pu)和铀酰(UO)→铀(U)的光还原反应;(2)光生的钚和铀可以使用阴离子交换色谱法分离(高产率,>90%;良好的分离因子,322)。