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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Studies on understanding the mechanism of the enhanced conductivity of the third phase in PUREX process during reprocessing of fast reactor fuel
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Studies on understanding the mechanism of the enhanced conductivity of the third phase in PUREX process during reprocessing of fast reactor fuel

机译:关于了解快堆燃料后处理过程中PUREX工艺第三相电导率提高机理的研究

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Towards development of electrical conductivity based sensors for online detection of formation of third phase during reprocessing of Pu rich spent nuclear fuels, laboratory studies were carried out using U~(4+) solutions in various experimental conditions. Third phases were generated by extracting U~(4+) from nitric acid medium by 1.09 M TBP at different A/O (A: aqueous, O: organic) ratios. The results of this study indicate that the third phase is nearly 100-300 times more conducting than lean organic phase and saturated phase. The higher conductivity of third phase as compared to that of other two phases is explained based on the principle of reverse micelle formation and charge movement between the micro emulsion globules by percolation phenomenon.
机译:为了开发用于在线检测富Pu乏核燃料后处理过程中第三相形成的基于电导率的传感器,在各种实验条件下使用U〜(4+)溶液进行了实验室研究。通过以1.09 M TBP以不同的A / O(A:水溶液,O:有机)比率从硝酸介质中萃取U〜(4+)生成第三相。这项研究的结果表明,第三相的导电性是稀有机相和饱和相的近100-300倍。基于反胶束形成和通过渗滤现象在微乳剂小球之间的电荷移动的原理,解释了第三相与其他两相相比更高的电导率。

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