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Promising pyrockemical actinide/lanthanide separation processes using aluminum

机译:使用铝的有前途的热解em系元素/镧系元素分离方法

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Thermodynamic calculations have shown that aluminum is the most promising metallic solvent or support for the separation of actinides (An)from lanthanides (Ln). In molten fluoride salt, the technique of reductive extraction is under development in which the separation is based on different distributions of An and Ln between the salt and metallic Al phases. In this process molten aluminum alloy acts as both a reductant and a solvent into which the actinides are selectively extracted. It was demonstrated that a one-stage reductive extraction process, using a concentrated solution, allows a recovery of more than 99.3% of Pu and Am. In addition excellent separation factors between Pu and Ln well above 10(3) were obtained. In molten chloride media similar separations are developed by constant current electrorefining between a metallic alloy fuel (U60Pu20-Zr10Am2Nd3.5Y0.5Ce0.5Gd0.5) and an Al solid cathode. In a series of demonstration experiments, almost 25 g of metallic fuel was reprocessed and actinides collected as An-Al alloys on the cathode. Analysis of the An-Al deposits confirmed that an excellent An/Ln separation (An/Ln mass ratio = 2400) had been obtained. These results show that Al is a very promising material to be used in pyrochemical reprocessing of actinides.
机译:热力学计算表明,铝是最有前途的金属溶剂或support系元素(An)与镧系元素(Ln)分离的载体。在熔融氟化盐中,还原萃取技术正在开发中,其中分离基于盐和金属Al相之间An和Ln的不同分布。在此过程中,熔融铝合金既充当还原剂又充当溶剂,which系元素被选择性地萃取到其中。结果表明,采用浓缩溶液进行的一阶段还原萃取工艺可以回收99.3%以上的Pu和Am。此外,获得了远高于10(3)的Pu和Ln之间极好的分离因子。在熔融氯化物介质中,通过恒流电精炼在金属合金燃料(U60Pu20-Zr10Am2Nd3.5Y0.5Ce0.5Gd0.5)和Al固体阴极之间产生类似的分离。在一系列的演示实验中,将近25 g的金属燃料进行了后处理,act离子作为An-Al合金收集在阴极上。对An-Al沉积物的分析证实,已获得出色的An / Ln分离(An / Ln质量比= 2400)。这些结果表明,Al是用于act系元素的热化学后处理的非常有前途的材料。

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