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Nitric Acid Concentration Dependence of Dicesium Plutonium(IV) Nitrate Formation during Solution Growth of Uranyl Nitrate Hexahydrate

机译:硝酸铀酰六水合物溶液生长过程中硝酸Di(IV)形成的硝酸浓度依赖性

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References(7) A crystallization process has been under development for the recovery of U as uranyl nitrate hexahydrate (UNH) crystals. Two experiments, solubility of Cs2Pu(NO3)6 and U crystallization, were performed to evaluate the influence of HNO3 concentration in solution on the precipitation behavior of Cs2Pu(NO3)6. The solubility of Cs2Pu(NO3)6 in a uranyl nitrate solution has been found to decrease with increasing HNO3 concentration in the solution. These experimental results imply that Cs2Pu(NO3)6 is readily formed in high HNO3 concentration solutions. Based on the solubility of Cs2Pu(NO3)6 in uranyl nitrate solutions, U crystallization experiments were performed with a range of HNO3 concentrations in the feed solution. At an HNO3 concentration of 4.5 mol/dm3 in the feed solution, the HNO3 concentration of the mother liquor was 6.5 mol/dm3. The decontamination factor (DF) of Cs for the UNH crystals was 8.61 after crystal washing. In this case, Cs2Pu(NO3)6 precipitated upon cooling of the feed solution and was not separated from the UNH crystals after crystal washing. On the other hand, the DF of Cs was 174 after the UNH crystals were washed when the HNO3 concentration in the feed solution was 3.2 mol/dm3. With a lower HNO3 concentration in the feed solution, nearly all Cs remained in the mother liquor during the U crystallization process. Therefore, to suppress Cs2Pu(NO3)6 precipitation, a lower HNO3 concentration must be maintained in the feed solution.
机译:参考文献(7)目前正在开发一种结晶方法,用于将铀回收为六水合铀酰硝酸铀(UNH)晶体。进行了两个实验,即Cs2Pu(NO3)6的溶解度和U结晶,以评估溶液中HNO3浓度对Cs2Pu(NO3)6沉淀行为的影响。已经发现,Cs2Pu(NO3)6在硝酸铀酰溶液中的溶解度会随着溶液中HNO3浓度的增加而降低。这些实验结果表明在高HNO3浓度的溶液中容易形成Cs2Pu(NO3)6。根据Cs2Pu(NO3)6在硝酸铀酰溶液中的溶解度,对进料溶液中一定浓度的HNO3进行了U结晶实验。在进料溶液中的HNO3浓度为4.5?mol / dm3时,母液的HNO3浓度为6.5?mol / dm3。清洗晶体后,UNH晶体的Cs的去污因子(DF)为8.61。在这种情况下,Cs 2 Pu(NO 3)6在进料溶液冷却时沉淀,并且在晶体洗涤后没有与UNH晶体分离。另一方面,当进料溶液中的HNO3浓度为3.2?mol / dm3时,清洗UNH晶体后Cs的DF为174。随着进料溶液中HNO3浓度的降低,在U结晶过程中几乎所有Cs都保留在母液中。因此,为抑制Cs2Pu(NO3)6沉淀,必须在进料溶液中保持较低的HNO3浓度。

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