Determination of .sup.93Zr in nuclear power plant wastes
A radioanalytical method (based on separation using UTEVA columns and ICP-MS measurement) has been used for determination of .sup.93Zr in 37 nuclear power plant samples. As .sup.93Nb might affect the detection of .sup.93Zr, Monte Carlo activation model was used to calculate the expected .sup.93Zr/.s...
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Veröffentlicht in: | Journal of radioanalytical and nuclear chemistry 2017-10, Vol.314 (1), p.31 |
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container_title | Journal of radioanalytical and nuclear chemistry |
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creator | Osváth, Szabolcs Vajda, Nóra Molnár, Zsuzsa Kovács-Széles, Éva Braun, Mihály Halász, Máté |
description | A radioanalytical method (based on separation using UTEVA columns and ICP-MS measurement) has been used for determination of .sup.93Zr in 37 nuclear power plant samples. As .sup.93Nb might affect the detection of .sup.93Zr, Monte Carlo activation model was used to calculate the expected .sup.93Zr/.sup.natZr mass ratio, which was compared to measured ones. It was found, that a decontamination factor of 10.sup.3 is sufficient to get a measurement uncertainty of less than 10%. |
doi_str_mv | 10.1007/s10967-017-5382-z |
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As .sup.93Nb might affect the detection of .sup.93Zr, Monte Carlo activation model was used to calculate the expected .sup.93Zr/.sup.natZr mass ratio, which was compared to measured ones. It was found, that a decontamination factor of 10.sup.3 is sufficient to get a measurement uncertainty of less than 10%.</abstract><pub>Springer</pub><doi>10.1007/s10967-017-5382-z</doi></addata></record> |
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subjects | Nuclear energy Nuclear power plants |
title | Determination of .sup.93Zr in nuclear power plant wastes |
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