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Sensitivity of americium and curium splitting flowsheet and running procedure.

机译:americ anderium和curium分裂流程和运行程序的敏感性。

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As part of the 2006 French Act on sustainable radioactive waste and waste management, CEA has been developing a process, (EXAm), in order to separate americium from curium and fission product downstream of COEX~(?) or PUREX processes. The goal is to recover Am up to 99%. The first step mainly consists of splitting americium from curium thanks to the diamide in organic phase combined with a complexing agent in high nitric acid. The low separation factor between Am and Cm leads to a very sensitive process flowsheet towards operating conditions. It is then difficult to manage high recovery yields with good purity. A model has been built taking into account complexation equilibria by TEDGA in aqueous phase and extraction equilibria in organic phase for each element. This model was put into the PAREX code to find the correct flowsheet, and then to conduct sensitivity studies regarding several parameters such as feed flow, acidity, temperature, solvent flow and reagent concentration. These studies have pointed out a high correlation between americium yield and decontamination factor and, also, an equivalence between any change of the most sensitive parameters and a change in TEDGA concentration. A running procedure was followed during two hot tests: the main concept was to start with a less efficient process and then to improve it during the test in order to reach required performances by adjusting the TEDGA flow rate.
机译:作为2006年法国人对可持续放射性废物和废物管理行为的一部分,CEA一直在开发一个过程(考试),以将亚美与Coex〜(?)或pureX过程的下游分离。目标是恢复高达99%。第一步主要由含有含有有机相中的酰胺与高硝酸中的络合剂组合的含义来分裂亚美。 AM和CM之间的低分离因子导致非常敏感的过程流程朝向操作条件。然后难以管理高纯度的高回收率。通过在水相中通过Tedga进行梳理均衡,并在各种元素的有机相中提取均衡的梳理平衡模型。该模型被放入Parex代码中以找到正确的流程,然后进行有关若干参数的敏感性研究,例如进料流,酸度,温度,溶剂流动和试剂浓度。这些研究指出了亚洲产量和净化因子之间的高相关,并且,也是最敏感参数的任何变化与Tedga浓度的变化之间的等价。在两个热门测试期间遵循运行程序:主要概念是以较低的效率开始,然后在测试期间改进它,以便通过调整Tedga流量来达到所需的性能。

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