NATURAL RADIOACTIVITY CONCENTRATION AND RADIOLOGICAL ASSESSMENT OF SOIL SAMPLES FROM FERTILIZED FARMS

Authors

  • Egheneji, A. Anthony Department of Physics, University of Delta, Agbor, Delta State Author
  • E. C. Mokobia artment of Physics, Delta State University, Abraka, Delta State. Author

DOI:

https://doi.org/10.60787/tnamp.v24.684

Keywords:

Radionuclide, fertiliser, agricultural activities, mineral composition radiological hazard indices

Abstract

Soils naturally contain radioactive elements due to the minerals in Earth's crust. However, agricultural activities, especially the use of chemical fertilisers, can also influence their radioactivity. This study aims to systematically assess both the concentrations of naturally occurring radionuclides introduced into cultivated soils by local fertilisers and the associated radiological hazards from prolonged use. We measured radionuclides using gamma ray spectrometry and analysed soil from fertilised farms to determine activity and health risk indices. All samples contained detectable radionuclides, with mean values of 40K = 590.77±5.08 Bq/kg, 238U = 4.82±0.096 Bq/kg, and 232Th = 2.72±0.05 Bq/kg. Radiological hazard indices—radium equivalent, absorbed effective dose, excess life cancer risk, and gamma representative index—were calculated and compared to international data. The results clarify how fertiliser use affects radionuclide concentrations in soil and if resulting health risks remain within internationally accepted safety limits.

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References

O. A. Abiodun, T. O. Odunayo, E. O. Tobi, and O. O. Victoria, “Evaluation of Radioactivity Level and its Radiological Impact in Soil Samples around Transmission Company of Nigeria,” Radiat. Sci. Technol., vol. 5, no. 4, pp. 41–46, 2019.

S. M. Adegbulugbe et al., “Assessment on Natural Radioactivity and its Radiological Risks in the Soil of Local of Government Areas (Asa, Ilorin East, South, Irepodun, Moro, and Oyun) in Kwara State, Nigeria,” Chem. Environ. Eng., vol. 11, Art. no. 101040, 2025, doi: 10.1016/j.cscee.2024.101040.

M. O. Adeleye, B. Musa, O. Oyebanjo, S. T. Gbenu, and S. O. Alayande, “Activity concentration of Natural Radionuclides and Assessment of the Associated Radiological Hazards in the Marine Croaker (Pseudololitus Typus) Fish from Two Coastal Areas of Nigeria,” Sci. World J., vol. 15, 2020.

L. E. Akpabio, P. Tchokossa, J. B. Olomo, F. A. Balogun, and C. A. Adesanmi, “Natural Radioactivity Levels and Radiological Hazards in Oil Producing Area of Delta State,” Radiat. Prot. Dosimetry, vol. 152, no. 2, pp. 1–8, 2012.

O. G. Avwiri and E. O. Agbalagba, “Assessment of Natural Radioactivity, Associated Radiological Health Hazards Indices and Soil to Crop Transfer Factors in Cultivated Area around a Fertilizer Factory in Onne, Nigeria,” Environ. Earth Sci., vol. 71, no. 4, pp. 1541–1549, 2013.

H. Bai et al., “Assessment of radioactive materials and Heavy Metals in the Surface Soil around the Bayanwula Prospective Uranium Mining Area of in China,” Int. J. Environ. Res. Public Health, vol. 14, p. 300, 2017.

K. Chandra, R. Proshad, H. C. Dey, and A. M. Idris, “A Review on Radionuclide Pollution in Global Soils with Environmental and Health Hazards Evaluation,” Environ. Geochem. Health, vol. 45, no. 1, pp. 9245–9266, 2023, doi: 10.1007/s10653-023-01725-2.

S. Dizman, F. K. Gorur, and R. Keser, “Determination of Radioactivity Level of Soil Samples and the Excess Lifetime Cancer Risk in Roze Province, Turkey,” Int. J. Radiat. Res., vol. 14, no. 3, pp. 237–244, 2019.

D. T. Esan et al., “Measurement of Natural Radioactivity and Assessment of Radiological Hazard Indices of Soil over the Lithologic Units in Ile-Ife Area,” Environ. Health Insights, vol. 16, Art. no. 11786302221100041, 2022, doi: 10.1177/11786302221100041.

K. Eseka, C. Mokobia, C. Molua, and A. Ukpene, “Characterization of Soil Radioactivity from Primordial Radionuclides in the Soil of Ika South Local Government Area of Delta State,” FUDMA J. Sci., vol. 6, no. 2, pp. 180–184, 2022.

I. E. Essien, A. A. Essiett, O. B. Ani, I. G. Peter, and A. E. Udofia, “Estimation of Radiological Hazard Indices due to Radioactivity in Soils in Ibiono Ibom, Akwa State, Nigeria,” Int. J. Sci. Res. Publ., vol. 7, no. 4, pp. 245–250, 2016.

D. Hernandez-Ramirez et al., “Spatial Distribution and Radiological Risk Assessment of Natural Radionuclides in Soil from Zacatecas, Mexico,” Analytica, vol. 6, no. 2, p. 20, 2025.

IAEA, “Measurement and Estimation of Radon Release from NORM Residues and Assessment of Associated Radiation Exposure,” IAEA, Vienna, Safety Reports Series No. 49, 2006.

R. S. Lawal, S. O. Aisida, I. Umaru, I. Mundi, and S. S. Shehu, “Evaluation of Radiological Hazard Indices and Environmental Safety in Soil Samples from different Source Term within the Tributaries of Awda Dam in the University of Ibadan,” Phys. Memoir, vol. 1, pp. 152–160, 2019.

C. O. Molua, “Evaluating peak flow sensitivities to spatiotemporal precipitation input resolution in a distributed hydrological model of the Ramos River system,” Benin J. Phys. Sci., vol. 1, no. 1, pp. 204–221, 2024.

C. O. Molua et al., “Mapping Dumpsite Plumes in Aquifers using Very Low Frequency Techniques,” J. Scientometrics & Innovations, pp. 107–119, 2024.

C. O. Molua, J. C. Morka, and R. O. Ijeh, “Evaluating the correlation between electromagnetic conductivity and metal detection to identify underground storage tanks: A case study of Agbor, Delta State, South-South Nigeria,” J. Niger. Assoc. Math. Phys., vol. 69, no. 1, pp. 35–48, 2025.

J. Musa et al., “Assessment of Natural Radioactivity and Radiological Risks in Soil of Numbupi Mining Site in Niger State, Nigeria: Public Health and Environmental Implications,” FUDMA J. Sci., vol. 9, no. 5, pp. 87–96, 2025.

T. D. Nafisa et al., “Natural Radioactivity and its Radiological Implications from Soil and Rocks in Jintiapur Area, North-East, Bangladesh,” J. Radioanal. Nucl. Chem., vol. 331, pp. 4457–4468, 2022.

K. O. Olatunji and I. Bamidele, “Natural Radioactivity Concentration and Radiological Evaluation in Soil Samples around Dangote Cement Factory, Igbese, Ogun State,” Nucl. Sci., vol. 5, no. 2, pp. 22–26, 2020.

S. O. Oluyide et al., “National Radioactivity and Radiological Impact Assessment of Soil, Food and Water around Iron and Steel Smealting Area in Fashina Village, Ile-Ife, Osun State, Nigeria,” J. Appl. Sci. Environ. Manage., vol. 23, no. 1, pp. 135–143, 2019.

C. P. Ononugbo, G. O. Avwiri, and G. Tutumeni, “Measurement of Natural Radioactivity and Evaluation of Radiation Hazards in Soil of Abua / Odua District of River State, Nigeria, Using Multivariate Statistical Approach,” Br. J. Sci., vol. 4, no. 1, pp. 35–48, 2016.

C. P. Ononugbo, O. Azikiwe, and G. O. Awiri, “Uptake and Distribution of Natural Radionuclides in Cassava Crops from Nigerian Government Farms,” J. Sci. Res. Rep., vol. 23, no. 5, pp. 1–15, 2019.

M. M. Orosun, T. O. Lawal, and F. C. Akinyose, “Natural Radionuclide Concentration and Radiological Impact Assessment of Soil and Water in Tanke-Ilorin, Nigeria,” Zimbabwe J. Sci. Technol., vol. 11, pp. 158–172, 2016.

F. A. Popoola, O. D. Fakeye, Q. B. Basiru, D. A. Adesina, and M. A. Sulola, “Assessment of Radionuclide Concentrations in Surface Soil and Human Health Risk Associated with Exposure in Two Higher Institutions of Esan Land, Edo State, Nigeria,” J. Appl. Sci. Environ. Manage., vol. 23, no. 12, pp. 2267–2284, 2019.

B. Samaila and H. M. Tampul, “Determination of Soil Radioactivity and Radiological Hazard Indices in Nigeria: A Review,” Savana J. Basic Appl. Sci., vol. 3, no. 1, pp. 71–80, 2021.

K. Tibor, S. Gabor, F. Ferenc, K. Richard, G. Asta, and V. Janja, “Systematic Survey of Natural Radioactivity of Soil in Slovenia,” J. Environ. Radioact., vol. 12, no. 2, pp. 70–78, 2013.

M. Tzortzis, H. Tsertos, S. Christofides, and G. Christodoulides, “Gamma-ray Measurement of Natural Occurring Radioactive Samples from Cyprus Characteristic Geological rocks,” Radiat. Meas., vol. 37, no. 3, pp. 221–229, 2003.

F. O. Ugbede and A. Akpolile, “Determination of Specific Activity of 238U, 232Th and 40K and Radiological Hazard Assessment of Tuomo River Sediment in Burutu, Delta State, Nigeria,” J. Appl. Sci. Environ. Manage., vol. 23, no. 4, pp. 727–733, 2019.

F. O. Ugbede and I. D. Benson, “Assessment of Outdoor Radiation Levels and Radiological Health Hazards in Emene Industrial Layout of Enugu State, Nigeria,” Int. J. Phys. Sci., vol. 13, no. 2, pp. 265–272, 2018.

UNSCEAR, “Sources and Effects of Ionizing Radiation,” United Nations, New York, NY, 2000.

M. R. Usikalu, A. B. Rabiu, K. D. Oyeyemi, J. A. Achuka, and M. Maaza, “Radiation Hazard in Soil from Ajakuta, North Central Nigeria,” Int. J. Radiat. Res., vol. 15, no. 2, pp. 219–224, 2017.

M. R. Usikalu et al., “Radiation Dose Assessment of Soil from Ijero, Ekiti, Nigeria,” Cogent Eng., vol. 6, no. 1, Art. no. 1586271, 2019

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Published

2026-03-01

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How to Cite

NATURAL RADIOACTIVITY CONCENTRATION AND RADIOLOGICAL ASSESSMENT OF SOIL SAMPLES FROM FERTILIZED FARMS. (2026). The Transactions of the Nigerian Association of Mathematical Physics, 24, 169-178. https://doi.org/10.60787/tnamp.v24.684

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