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172Hf → 172Lu Radionuclide Generator Based on a Reverse-Tandem Separation Scheme

J. A. DadakhanovInstitute of Nuclear Physics, Academy of Sciences of Uzbekistan Republic, Ulugbek, Tashkent, 100214, UzbekistanN.A. LebedevJoint Institute for Nuclear Research, ul. Joliot-Curie 6, Dubna, Moscow oblast, 141980, RussiaA. VelichkovInstitute for Nuclear Research and Nuclear Power Engineering, Bulgarian Academy of Sciences, Tsarigradsko shose 72, Sofia, 1784, BulgariaD. V. KaraivanovInstitute for Nuclear Research and Nuclear Power Engineering, Bulgarian Academy of Sciences, Tsarigradsko shose 72, Sofia, 1784, BulgariaAyagoz BaimukhanovaInstitute of Nuclear Physics of the Kazakhstan Republic, ul. Ibragimova 1, Almaty, 050032, KazakhstanN.T. TemerbulatovaJoint Institute for Nuclear Research, ul. Joliot-Curie 6, Dubna, Moscow oblast, 141980, RussiaD.V. FilosofovJoint Institute for Nuclear Research, ul. Joliot-Curie 6, Dubna, Moscow oblast, 141980, Russia
Radiochemistryjournal2018en
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The distribution coefficients of Hf(IV) and Lu(III) between Dowex 50W×8 cation exchanger or Dowex 1×8 anion exchanger and mixed HCl–H2C2O4 solutions and between Dowex 50W×8 cation exchanger or Dowex 1×8 anion exchanger and citric acid solutions were determined. A number of modifications of the 172Hf → 172Lu generator, based on reverse separation schemes, were examined. Systems consisting of an anion-exchange resin and a solution of appropriate organic acid were taken as a chemical basis of the generator. Irreversible sorption of 172Lu in generator columns was studied. The optimum operation mode of the 172Hf → 172Lu generator based on the reverse-tandem scheme with periodic transfer of the parent radionuclide into the liquid phase was determined.

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