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NUMERICAL SIMULATION OF NEPTUNIUM EXTRACTION BEHAVIOR IN CO-DECONTAMINATION STAGE FOR LATE SPLIT PUREX SYSTEM

机译:后期分离纯水系统共去污阶段中NE萃取行为的数值模拟

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Numerical simulation of neptunium concentration profiles is carried out in order to understand the extraction behavior of neptunium in the co-decontanimation stage which decontaminates through two extraction banks before the uranium and plutonium partitioning steps. Simulation results show that leaking of neptunium to the waste stream at the second extraction bank is caused by reduction from Np(VI) to Np(V) unextracted by TBP in the presence of nitrous acid of 10(-3) mol/l. It is found that the prevention of the reduction reaction from Np(VI) to Np(V) is effective for the recovery of neptunium with uranium and plutonium into the product stream. Two methods for the recovery of neptunium are suggested; i) to decrease residence time in the acid adjustment vessel located between first and second extraction banks, ii) to diminish nitrous acid in the aqueous phase by hydrazine. Simulation results show that the recovery of neptunium with uranium and plutonium is improved from 40 to 60% and from 40 to 70% by the first and the second methods, respectively. [References: 23]
机译:进行concentration浓度分布图的数值模拟,以了解in在共去矿化阶段的萃取行为,该阶段在铀和which分配步骤之前通过两个萃取塔进行了净化。模拟结果表明,10在第二萃取池中泄漏到废液中是由于在存在10(-3)mol / l的亚硝酸时,TBP未将Np(VI)还原为Np(V)。发现防止从Np(VI)还原为Np(V)的还原反应对于将铀和p回收到产物流中的effective是有效的。提出了两种回收of的方法: i)减少在第一和第二萃取库之间的酸调节容器中的停留时间,ii)通过肼减少水相中的亚硝酸。模拟结果表明,通过第一种方法和第二种方法,用铀和p的respectively回收率分别提高了40%至60%和40%至70%。 [参考:23]

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