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article · Journal of Water and Health

Neutron activation of stable isotopes in soil and groundwater from a radionuclide production facility, South Africa

Abstract

The neutron activation of stable isotopes in environmental matrices, such as soil and groundwater, is a critical aspect of assessing the impact of radionuclide production facilities on the surrounding ecosystem. The envisioned Low-Energy Radioactive Ion Beams (LERIB) facility at the iThemba LABS, South Africa is anticipated to generate significant sources of ionising radiation. The study investigated the possible repercussions of neutron irradiation stemming from the facility, focusing on the activation of stable isotopic compositions in the environment. The investigation employed a combination of experimental and analytical techniques to characterize the neutron activation products in soil and groundwater samples collected from the vicinity. Samples were collected from designated areas for background radiological measurements and were irradiated with neutrons for a period of 1 h. The induced radioactivity measured by the High Purity Germanium detector included <sup>24</sup>Na, <sup>22</sup>Na, <sup>54</sup>Mn, <sup>52</sup>Mn, and <sup>46</sup>Sc. The application of Darcy's law for groundwater velocity suggests that radionuclides in groundwater will migrate at an average flow velocity of 0.8 m/day. The isotopes with longer half-lives have count rates at background concentrations; therefore, environmental impacts on the site and surrounding communities might be minimal.

Research topics

  • Radioactivity and Radon Measurements
  • Groundwater and Isotope Geochemistry
  • Radioactive contamination and transfer

Sustainable Development Goals

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DOI: 10.2166/wh.2024.056

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