Development of Pu/Np separation on TEVA resin for rapid purification of key radionuclides from uranium fission samples

Analysis of samples containing fission products and actinides is relevant in a variety of fields including nuclear reactor safeguards, nuclear fuel cycle analyses, and nuclear forensics. A multi-column, rapid separation method is under development to isolate actinides for radiometric analysis for these samples. A column-based Pu/Np separation on TEVA resin has been developed here utilizing two different reducing agents, hydroquinone and hydroiodic acid. These methods yielded up to 92(3)% for Pu and 88(4)% for Np with hydroquinone and a clean, baseline separation with hydroiodic acid. These separation methods will enable rapid quantification of Pu and Np isotopics by alpha spectrometry.

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Publication Details

Journal
Journal of Radioanalytical and Nuclear Chemistry
Published
2026-09-15
DOI
https://doi.org/10.1007/s10967-026-11113-6
Primary Topic
Radioactive contamination and transfer
Type
article
Field-Weighted Citation Impact
0.00
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article

Development of Pu/Np separation on TEVA resin for rapid purification of key radionuclides from uranium fission samples

Justin Cooper, Mathew Snow, E. Paige Abel
Journal of Radioanalytical and Nuclear Chemistry
Radioactive contamination and transfer
article

Development of Pu/Np separation on TEVA resin for rapid purification of key radionuclides from uranium fission samples

Justin Cooper, Mathew Snow, E. Paige Abel
article en

Abstract

Analysis of samples containing fission products and actinides is relevant in a variety of fields including nuclear reactor safeguards, nuclear fuel cycle analyses, and nuclear forensics. A multi-column, rapid separation method is under development to isolate actinides for radiometric analysis for these samples. A column-based Pu/Np separation on TEVA resin has been developed here utilizing two different reducing agents, hydroquinone and hydroiodic acid. These methods yielded up to 92(3)% for Pu and 88(4)% for Np with hydroquinone and a clean, baseline separation with hydroiodic acid. These separation methods will enable rapid quantification of Pu and Np isotopics by alpha spectrometry.

Journal of Radioanalytical and Nuclear Chemistry
Idaho National Laboratory (US)
Openalex Percentile: Top 13%
Radioactive contamination and transfer
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