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March 15, 2026Iconic Research and Engineering Journals0 citations

Evaluation of Natural Radioactivity, Radiological Hazards and Geostatistical Model of Soils in the Vicinity of Otukpo Rice Mill, Benue State, Nigeria Using Gamma-Ray Spectrometry

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ODOnoja Emmanuel DanielEEEgwaba EnduranceAMAmanyi Inalegwu Matthew

Key Points

  • This research assesses natural radioactivity levels and radiological hazards in soils near Otukpo Rice Mill.
  • Utilized gamma-ray spectrometry to measure activity concentrations in soil samples.
  • Calculated radium equivalent activity, absorbed dose rate, annual effective dose, and hazard indices.
  • Applied inverse distance weighting geostatistical analysis to assess radionuclide distribution.
  • Measured uranium-238 and thorium-232 levels were found to be moderate.
  • Potassium-40 exhibited the highest concentration in the soil samples.
  • Radiological hazard indices were below globally recommended safety limits, indicating low risk.

Abstract

This study uses gamma-ray spectrometry to examine the natural radioactivity levels and related radiological risks in the soils around the Otukpo Rice Mill. The activity concentrations of naturally occurring radionuclides (uranium-238 (238U), thorium-232 (232Th), and potassium-40 (40K)) were measured in soil samples taken from specific areas surrounding the rice mill. Radium equivalent activity (Raeq), absorbed dose rate, annual effective dose (AED), external hazard index (Hex), and internal hazard index (Hin) were calculated to evaluate possible health risks to employees and the community. According to the findings, 238U and 232Th show moderate levels of activity, while 40K contributes the highest concentration. The radiological hazard indices were below the globally advised safety limits, indicating low radiological risk. Inverse distance weighting (IDW) geostatistical analysis and predictive risk modelling show spatial variations in radionuclide distribution, with localised areas exhibiting relatively elevated values. The results emphasised the significance of ongoing monitoring of agro-industrial areas and offer baseline radiological data for the Otukpo Rice Mill environment. This study supports the region's sustainable land-use planning, public health protection, and environmental radiation assessment.

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Cite This Study

Daniel et al. (2026) studied this question.

synapsesocial.com/papers/69b606ea83145bc643d1d552https://doi.org/10.64388/irev9i9-1715081
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