Strategic Separation of Technetium and Rare Metal Fission Products in Spent Nuclear Fuel: Solvent Extraction Behavior and Partitioning by Catalytic Electrolytic Extraction

Strategic Separation of Technetium and Rare Metal Fission Products in Spent Nuclear Fuel: Solvent Extraction Behavior and Partitioning by Catalytic Electrolytic Extraction
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乏核燃料中锝和稀有金属裂变产物的战略分离:溶剂萃取行为和催化电解萃取分离

DOI:
10.1023/a:1026099707043
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发表时间:
2003
期刊:
影响因子:
0.9
通讯作者:
Y. Sano
Y. Sano
中科院分区:
--
文献类型:
--
作者:
M. Ozawa;M. Ishida;Y. Sano

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Extraction behavior of Tc in the PUREX process was discussed on the basis of the observations at TRP, a semi-industrial scale reprocessing plant for spent LWR fuel in Tokai-mura. The Tc extraction in the HA/HS banks of the TRP was significantly enhanced by the coextraction with Zr(IV), while more than 99% of Tc was finally acccumulated in HLLW. Catalytic electrolytic extraction (CEE) was studied to separate Pd, Ru, Rh, Tc, Te, and Se, categorized as rare metal fission products (RMFP) in the HLLW. Cyclic reaction of metallic cations such as Pd2+ or Fe2+ can accelerate the electrochemical deposition of RuNO3+, Rh3+, and ReO4- owing, e.g., to the promoting effect of Pd adatoms or to behavior of Pd as mediator. Apart from being the first step for transmutation or other selective strategies for radioactive waste management containing long-lived fission products, the RMFP separation also offers alternative material resources to meet expanding demands for catalysts in fuel cell/hydrogen soft energy systems. Extended recycling of RMFPs is proposed as a new strategy on nuclear fuel reprocessing.