TY - JOUR
T1 - Production of 129mXe and 131mXe via neutron activation of 128Xe and 130Xe at ILL-RHF and NCBJ-MARIA high-flux reactors
AU - Chojnacki, M.
AU - Kulesz, K.
AU - Michelon, I.
AU - Azaryan, N.
AU - Barbero, E.
AU - Crepieux, B.
AU - Lica, R.
AU - Murawski, null
AU - Ziemba, M.
AU - Piersa-Siłkowska, M.
AU - Vitulova, K.
AU - Korgul, A.
AU - Jolivet, R. B.
AU - Prokopowicz, R.
AU - Köster, U.
AU - Kowalska, M.
N1 - Funding Information:
This project received funding from the Swiss Excellence Government Scholarship (to KK), the CERN Medical Application Fund (gamma-MRI; to RBJ and MK), the European Union’s Horizon 2020 research and innovation programme under grant agreement No 964644 (GAMMA-MRI). AK and RP, LM, MZ acknowledge funding from the Polish Ministry of Education and Science . RL acknowledges the Romanian IFA grant CERN/ISOLDE and Nucleu project No. PN 23 21 01 02 .
Funding Information:
This project received funding from the Swiss Excellence Government Scholarship (to KK), the CERN Medical Application Fund (gamma-MRI; to RBJ and MK), the European Union's Horizon 2020 research and innovation programme under grant agreement No 964644 (GAMMA-MRI). AK and RP, LM, MZ acknowledge funding from the Polish Ministry of Education and Science. RL acknowledges the Romanian IFA grant CERN/ISOLDE and Nucleu project No. PN 23 21 01 02.
Publisher Copyright:
© 2024
PY - 2024/3/1
Y1 - 2024/3/1
N2 - The long-lived xenon isomers 129mXe and 131mXe are of interest for the GAMMA-MRI project, which aims at developing a novel imaging modality based on magnetic resonance of polarized unstable tracers. Here, we present the steps leading to and following the production of these two isomers via neutron irradiation of highly-enriched 128Xe and 130Xe gas samples at two high-flux reactors, the High-Flux Reactor (Réacteur à haut flux, RHF) at the Institut Laue-Langevin (ILL) and the MARIA reactor at the National Centre for Nuclear Research (NCBJ). We describe the experimental setups and procedures used to prepare the stable xenon samples, to open the irradiated samples, and to transfer xenon isomers into reusable transport vials. The activity of 129mXe and 131mXe was measured to be in the range of tens of MBq per sample of 0.8(1) mg, and was proportional to thermal neutron flux density. A small activity of unstable contaminants was also visible in the samples, but their level is not limiting for the GAMMA-MRI project's objectives. In addition, the minimum thermal neutron flux density required to produce 129mXe and 131mXe sufficient for the project could be also determined.
AB - The long-lived xenon isomers 129mXe and 131mXe are of interest for the GAMMA-MRI project, which aims at developing a novel imaging modality based on magnetic resonance of polarized unstable tracers. Here, we present the steps leading to and following the production of these two isomers via neutron irradiation of highly-enriched 128Xe and 130Xe gas samples at two high-flux reactors, the High-Flux Reactor (Réacteur à haut flux, RHF) at the Institut Laue-Langevin (ILL) and the MARIA reactor at the National Centre for Nuclear Research (NCBJ). We describe the experimental setups and procedures used to prepare the stable xenon samples, to open the irradiated samples, and to transfer xenon isomers into reusable transport vials. The activity of 129mXe and 131mXe was measured to be in the range of tens of MBq per sample of 0.8(1) mg, and was proportional to thermal neutron flux density. A small activity of unstable contaminants was also visible in the samples, but their level is not limiting for the GAMMA-MRI project's objectives. In addition, the minimum thermal neutron flux density required to produce 129mXe and 131mXe sufficient for the project could be also determined.
KW - Neutron activation
KW - Xenon radioisotopes production
U2 - 10.1016/j.apradiso.2024.111174
DO - 10.1016/j.apradiso.2024.111174
M3 - Article
SN - 0969-8043
VL - 205
JO - Applied Radiation and Isotopes
JF - Applied Radiation and Isotopes
M1 - 111174
ER -