Possibility of obtaining high-activity [sup.177]Lu in the IR-8 research reactor

The results of the production of the medical isotope [sup.177]Lu in the IR-8 research reactor are presented. The quantitative and qualitative characteristics of the desired radionuclide are determined. The radiochemical method of separating [sup.177]Lu from an irradiated target [sup.176]Yb by a comb...

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Veröffentlicht in:Atomic energy (New York, N.Y.) N.Y.), 2017-01, Vol.121 (3), p.208
Hauptverfasser: Boldyrev, P.P, Zagryadskii, V.A, Erak, D.Yu, Kurochkin, A.V, Markovskii, D.V, Mikhin, O.V, Proshin, M.A, Khmyzov, N.V, Chuvilin, D.Yu, Yashin, Yu.A
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container_title Atomic energy (New York, N.Y.)
container_volume 121
creator Boldyrev, P.P
Zagryadskii, V.A
Erak, D.Yu
Kurochkin, A.V
Markovskii, D.V
Mikhin, O.V
Proshin, M.A
Khmyzov, N.V
Chuvilin, D.Yu
Yashin, Yu.A
description The results of the production of the medical isotope [sup.177]Lu in the IR-8 research reactor are presented. The quantitative and qualitative characteristics of the desired radionuclide are determined. The radiochemical method of separating [sup.177]Lu from an irradiated target [sup.176]Yb by a combination of two electrochemical processes - cementation of ytterbium from acetate-chloride solution on sodium amalgam and electrolysis of an ytterbium solution in a single electrolytic cell - is proposed. The purification factor for removal of [sup.176]Yb from [sup.177]Lu was [10.sup.5]-[10.sup.6].
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Rare earth metal compounds
title Possibility of obtaining high-activity [sup.177]Lu in the IR-8 research reactor
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