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Assessing the radiological hazards due to radionuclides in sediments and tailings around Kilembe copper mines,Western Uganda

dc.contributor.authorTuryahabwa, Evarist R.S
dc.contributor.authorKyeyune, Farooq
dc.contributor.authorMucunguzia, Eric
dc.contributor.authorKisoloband, Akisophel
dc.contributor.authorMathuthu, Manny
dc.contributor.researchID24429872
dc.date.accessioned2025-11-27T07:24:00Z
dc.date.issued2025
dc.descriptionJournal Article, Faculty of Natural and Agricultural Sciences, Centre for Applied Radiation Science and Technology-- Mahikeng Campus
dc.description.abstractCopper mining in Kilembe Valley, Western Uganda, between 1956 and 1982 resulted in multiple tailing sites, raising concerns about potential increases in the natural background radiation. In this study, the radioactivity concentrations of 226Ra, 232Th, and 40K in 31 sediments and tailing samples from the Kilembe copper mines area were determined using HPGe-based gamma spectrometry. The mean activity concentrations of 226Ra, 232Th, and 40K in sediment samples were 38.6 ± 8.9, 37.4 ± 7.8, and 708.0 ± 147.3 Bq kg−1, respectively. While in tailing samples, the mean values were 171.3 ± 31.7, 34.8 ± 14.9, and 792.4 ± 208.2 Bq kg−1, respectively. These values exceeded global averages of 35, 30, and 400 Bq kg−1 for 226Ra, 232Th, and 40K, respectively. To assess the radiological hazards due to radionuclides in sediments and tailings, several parameters such as the radium equivalent activity (Raeq), external hazard index (Hex), internal hazard index (Hin), gamma representative index (Iγ), absorbed dose rate (D), total annual effective dose (Etot), and total excess lifetime cancer risk (ELCRtot) were determined. In sediments, most of these hazard parameters were above the world's average values, except Raeq, Iγ, Hex, and Hin. While in tailings, all the hazard parameters surpassed the global average values except Raeq and Hex. Pearson correlation coefficient and hierarchical cluster analysis showed that 226Ra was the main contributor to the assessed radiological hazards. The study suggests potential radiological risks linked to natural radioactivity from sediments and mine tailings, especially when used as building materials.
dc.description.sponsorshipAcknowledgments We acknowledge UISTF for the scholarship and Kyambogo University for providing equipment, support, and space to conduct the experiments at the Radiation Laboratory in the Department of Physics. The authors also wish to appreciate the Uganda Atomic Energy Council for providing the research clearance certificate that ethically and legally made it possible to conduct the study.
dc.identifier.citationMathuthu, Manny. et al. 2025. Assessing the radiological hazards due to radionuclides in sediments and tailings around Kilembe copper mines, Western Uganda. International Journal of Environmental Analytical Chemistry, (2025),VOL.105, NO. 11, 2587–2604, [https://doi.org/10.1080/03067319.2024.2325110]
dc.identifier.urihttps://doi.org/10.1080/03067319.2024.2325110
dc.identifier.urihttp://hdl.handle.net/10394/44386
dc.language.isoen
dc.publisherInternational Journal of Environmental Analytical Chemistry
dc.subjectActivity Concentrations
dc.subjectKilembe Copper Mines
dc.subjectNatural Radionuclides
dc.subjectRadiological Hazard Parameters
dc.subjectSediments
dc.subjectTailings
dc.titleAssessing the radiological hazards due to radionuclides in sediments and tailings around Kilembe copper mines,Western Uganda
dc.typeArticle

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