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Dissolution of WWER-1000 Spent Nuclear Fuel in a Weakly Acidic Solution of Iron Nitrate and Recovery of Actinides and Rare Earth Elements with TBP Solutions

机译:在弱酸性硝酸铁溶液中溶解WWER-1000用过的核燃料,并用TBP溶液回收Act系元素和稀土元素

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It is demonstrated on real solutions of samples of spent nuclear fuel (SNF) from WWER-1000 reactors (1000-MW_(el) water-cooled water-moderated energy reactors) that weakly acidic solutions of iron(III) nitrate at the molar ratio Fe(III) : U ≥ 2.0 dissolve SNF with quantitative transfer of U and Pu into the solution. In the process, Fe partially precipitates in the form of a basic salt precipitate together with a part of the fission products (>90% of Ru, ~90% of Mo, >60% of Tc, and 40% of Zr) already in the step of the fuel dissolution. Cs, Eu, and Am pass into the solution together with U and Pu. With the required conditions followed, U and Pu can be separated from the solution by precipitation of their peroxides or quantitatively extracted from this solution with 30% TBP in Isopar L. The presence of ≥1 M Fe(NO_3)_3 in the solution considerably increases the distribution ratios of TPE and REE, which allows their recovery from a weakly acidic nitrate solution to be also performed with 30% TBP in a diluent. This process can serve in the future as a basis for the development of a new integrated technology combining the PUREX process with TPE partitioning using a common extractant.
机译:在WWER-1000反应堆(1000 MW_(el)水冷水调节能源反应堆)的乏核燃料(SNF)样品的真实溶液中,以摩尔比的弱酸性硝酸铁溶液证明了这一点。 Fe(III):U≥2.0溶解SNF,同时将U和Pu定量转移到溶液中。在此过程中,Fe已经以碱性盐沉淀的形式部分沉淀,并与一部分裂变产物(> 90%的Ru,〜90%的Mo,> 60%的Tc和40%的Zr)一起沉淀。燃料溶解的步骤。 Cs,Eu和Am与U和Pu一起传递到解决方案中。遵循所需的条件,U和Pu可以通过过氧化物的沉淀从溶液中分离出来,或在Isopar L中用30%TBP从该溶液中定量提取。溶液中≥1M Fe(NO_3)_3的存在会大大增加TPE和REE的分配比,这也使得它们可以从弱酸性硝酸盐溶液中回收,也可以在稀释剂中使用30%TBP进行。此过程将来可作为开发新的集成技术的基础,该技术将PUREX过程与使用普通萃取剂进行TPE分区相结合。

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