Selective extraction of niobium from Zr-Nb alloy: A way towards isolating long-lived 94Nb from discharged pressure tubes of Indian PHWRs

[Display omitted] •94Nb in discharged tubes of PHWRs is a significant environmental concern.•Isolating 94Nb reduces radioactive waste and enables Zr recovery.•Selective Nb extraction from Zr-Nb mixture achieved using α-BZO as a ligand.•Nb(V) and α-BZO form a 1:1 stoichiometric complex.•Effective iso...

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Veröffentlicht in:Separation and purification technology 2025-07, Vol.361, p.131264, Article 131264
Hauptverfasser: Sarma, M., Ajith, N., Ghosh, M., Remya Devi, P.S., Ghosh, A., Swain, K.K., Patra, C.N.
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Sprache:eng
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Zusammenfassung:[Display omitted] •94Nb in discharged tubes of PHWRs is a significant environmental concern.•Isolating 94Nb reduces radioactive waste and enables Zr recovery.•Selective Nb extraction from Zr-Nb mixture achieved using α-BZO as a ligand.•Nb(V) and α-BZO form a 1:1 stoichiometric complex.•Effective isolation of 94Nb from pressure tube material, proving its practicality. The generation of long-lived 94Nb radioisotope in Zr-2.5Nb pressure tubes has become a major concern. Isolating 94Nb from discharged pressure tubes could potentially reduce the volume of radioactive waste, while the recovered Zr could be reused in fabricating pressure tubes. A robust solvent extraction method was developed for the selective extraction of Nb from a mixture of Zr and Nb. Nb was extracted from an aqueous HCl solution using α-benzoin oxime as a ligand dissolved in chloroform. The optimal concentration range of HCl in the aqueous phase for the extraction was found to be 4 to 7 M. About 0.4 % of α-benzoin oxime in the organic phase was found to be the optimal ligand concentration to achieve maximum extraction. About 5 min of equilibration time and four separation cycles are adequate for achieving quantitative extraction. The metal concentration in the feed solution exhibits negligible interference with the extraction of Nb into the organic phase. The method effectively separates long-lived 94Nb from discharged pressure tubes, demonstrating its practical applicability.
ISSN:1383-5866
DOI:10.1016/j.seppur.2024.131264