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Development and Testing of an Americium/Lanthanide Separation Flowsheet Using Sodium Bismuthate

机译:使用铋酸钠的A /镧系元素分离流程图的开发和测试

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The separation of americium from the lanthanides and curium is a key step in proposed advanced fuel cycle scenarios. The partitioning and transmutation of americium is desirable to minimize the long-term heat load of material interred in a future high-level waste repository. A separation process amenable to process scale-up remains elusive. Given only subtle chemistry differences within and between the ions of the trivalent actinide and lanthanide series this separation is challenging ; however, a higher oxidation state of americium, Am(Ⅵ), can be prepared using sodium bismuthate and separated via solvent extraction using diamylamylphosphonate (DAAP) extraction. Among the other trivalent metals only cerium is also oxidized and extracted. Due to the long-term instability of Am(Ⅵ), the loaded organic phase is readily selectively stripped to partition the actinide to a new acidic aqueous phase. Batch extraction distribution ratio measurements were used to design a flowsheet to accomplish this separation. Additionally, crossflow filtration was investigated as a method to filter the bismuthate solids from the feed solution prior to extraction. Results of the filtration studies, flowsheet development work and flowsheet performance testing using a centrifugal contactor are detailed.
机译:从镧系元素和and中分离cur是拟议的先进燃料循环方案中的关键步骤。希望对meric进行分配和is变,以最大程度地减少嵌入未来的高水平废物储存库中的材料的长期热负荷。适于工艺放大的分离工艺仍然难以捉摸。鉴于三价act系和镧系离子之间以及两者之间的微妙的化学差异,这种分离具有挑战性;但是,可以使用铋酸钠制备更高的氧化态Am(Ⅵ),并使用二酰胺基膦酸酯(DAAP)萃取通过溶剂萃取进行分离。在其他三价金属中,只有铈也被氧化和萃取。由于Am(Ⅵ)的长期不稳定性,负载的有机相很容易被选择性地汽提以将the系元素分配到新的酸性水相中。使用批提取分布比测量来设计流程图以完成此分离。另外,研究了错流过滤作为在萃取之前从进料溶液中过滤铋酸盐固体的方法。详细介绍了使用离心接触器进行的过滤研究,流程开发工作和流程性能测试的结果。

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