The radioactivity assessment of local and imported rice in Erbil city
DOI:
https://doi.org/10.21271/ZJPAS.37.4.2Keywords:
Radioactiviy, Erbil, Rice, Gamma spectrometry , Cancer riskAbstract
This study involved collecting samples of 27 different rice varieties from local markets in Erbil, Kurdistan region, Iraq. Measurements were performed using the NaI (Tl) scintillation detector system. The specific activity of 232Th, 226Ra, and 40K radionuclides in the rice samples ranged (0.13-1.79) Bq kg-1, (0.16-8.3) Bq kg-1, and (77.1-180) Bq kg-1, respectively. The total annual effective dose (AE) in the rice samples ranged from 32.37 µSv y-1 to 116.42 µSv y-1, which obtained due to an ingestion of radionuclides via rice consumption, the values of AE were lower than the global value of 290 µSv y-1, as reported by UNSCEAR 2008. The excess lifetime cancer risk (ELCR) ranged from 0.113 to 0.407×10−4, below the acceptable value of 2.9×10-4, as reported by UNSCEAR 2000. In addition, the internal hazard index (Hin) ranged from 0.33 to 0.70 and the external hazard index (Hex) ranged from 0.025 to 0.046. Estimated radiological indices were below the overall limit value of 1. The study used multivariate statistical techniques including descriptive statistics, histogram and Pearson correlation analysis to investigate the relationship between specific natural radioactivity and associated radiological parameters. The study utilized multivariate statistical analysis techniques, including descriptive statistics, histograms, and Pearson correlation analyses, to investigate the relationship between the specific activity of natural radionuclides and the associated radiological parameters. Thus, the studied rice brands are radiologically safe as an essential foodstuff in Erbil Governorate.
References
ABOJASSIM, A. A., DAHIR, D. M., ALABOODI, A. S. & ABONASRIA, A. H. 2016. Annual effective dose of gamma emitters in adults and children for some types of rice consumed in Iraq. Journal of food protection, 79, 2174-2178.
AHMED, A. H. & SAMAD, A. I. 2014. Measurement of radioactivity levels in daily intake foods of Erbil city inhabitants. Journal of Zankoy Sulaimani Part A, 16, 111-121.
AL-ZAHRANI, J. 2016. Research Article Natural Radioactivity and Heavy Metals Measurement in Rice and Flour Consumed by the Inhabitants in Saudi Arabia. Advance Journal of Food Science and Technology, 12, 698-704.
ALHIALL, R. & ALSALIHI, A.-A. 2019. Radiation dosimetry of some rice types consumed in Basrah Governorate/Iraq by using thermoluminescence technique and SAM940-2G. International Journal of Environmental Science and Technology, 16, 6579-6586.
ALREFAE, T. & NAGESWARAN, T. N. 2013. Radioactivity of long lived gamma emitters in rice consumed in Kuwait. Journal of the Association of Arab Universities for Basic and Applied Sciences, 13, 24-27.
ARIJE, O., AYODELE, A. & OLUBı, O. 2022. Estimation of Effective Dose and Excess Lifetime Cancer Risks due to ingestion of Natural Radionuclides in Rice Samples from Selected Farms in Southwestern Nigeria. Journal of Nuclear Sciences, 8, 1-9.
ASADUZZAMAN, K., KHANDAKER, M. U., AMIN, Y. M. & MAHAT, R. 2015. Uptake and distribution of natural radioactivity in rice from soil in north and west part of peninsular Malaysia for the estimation of ingestion dose to man. Annals of Nuclear Energy, 76, 85-93.
CUSTODIO, M. C., DEMONT, M., LABORTE, A. & YNION, J. 2016. Improving food security in Asia through consumer-focused rice breeding. Global Food Security, 9, 19-28.
GILMORE, G. 2008. Practical gamma-ray spectroscopy, John Wiley & Sons.
HASSAN, N. M., CHANG, B.-U. & TOKONAMI, S. 2017. Comparison of natural radioactivity of commonly used fertilizer materials in Egypt and Japan. Journal of chemistry, 9182768.
HUANG, W.-H., LIU, Y.-Y., LIN, S.-C., YEH, Y.-L. & CHEN, T.-C. 2023. Assessment of doses from ingestion of naturally occurring radionuclides 40K and 226Ra in rice consumed in Taiwan. Radiation Protection Dosimetry, 199, 312-317.
HUSSEIN, A. M. 2019. Gamma dose measuring for the Rice sample in Slemani City markets, Kurdistan region–Iraq. Journal of University of Babylon for Pure and Applied Sciences, 27, 1-7.
IBIKUNLE, S. B., AROGUNJO, A. M. & AJAYI, O. S. 2019. Characterization of radiation dose and soil-to-plant transfer factor of natural radionuclides in some cities from south-western Nigeria and its effect on man. Scientific African, 3, e00062.
JAFIR, A. O., ABDULLAH, H. M. & AHMED, A. H. 2022. Assessment of natural radionuclides in cooking salts available in Kurdistan region-Iraq. Zanco Journal of Pure and Applied Sciences, 34, 46-54.
KESSARATIKOON, P., CHAROENMAK, P., CHANGKIT, N. & BOONKRONGCHEEP, R. 2023. Natural and anthropogenic radioactivity and radiological hazard indices in organic Sangyod rice samples collected from Don Pradu sub-district in Pak Phayun district in Phatthalung province, Thailand. Journal of Physics: Conference Series. IOP Publishing, 012080.
KIPLE, K. F. & ORNELAS, K. C. 2000. The Cambridge world history of food, Cambridge University Press.
LEIPHRAKPAM, K. & MAISNAM, M. 2023. Gamma Spectroscopy Studies of Rice Samples Grown in Imphal Valley of Manipur, India. International Conference on Science, Technology and Engineering. Springer, 211-218.
MGBEOKWERE, C., GBARATO, O. & ONONUGBO, C. 2023. Evaluation of Specific Activity Concentration of 238U, 232Th and 40K in Soil and Rice Grains from Solid Mineral Mining Sites in Ikwo Area of Ebonyi State, Nigeria. Physical Science International Journal, 27, 34-47.
NAHAR, A., ASADUZZAMAN, K., ISLAM, M. M., RAHMAN, M. M. & BEGUM, M. 2018. Assessment of natural radioactivity in rice and their associated population dose estimation. Radiation Effects and Defects in Solids, 173, 1105-1114.
NAJAM, L. A., TAWFIQ, N. F. & KITHA, F. H. 2015. Measuring radioactivity level in various types of rice using NaI (Tl) detector. Am J Eng Res, 4, 126-132.
SAMAD, A. I., AHMED, A. H. & AHMAD, S. T. 2023. Radiological health assessment of infant milk in Erbil Governorate, Iraq. Environmental Monitoring and Assessment, 195, 419.
SAMAD, A. I., AHMED, A. H. & AHMAD, S. T. 2024. Radioactivity levels, soil-to-grass and grass-to-milk transfer factor of natural radionuclides from grazing area in Erbil governorate, Iraq. Applied Radiation and Isotopes, 205, 111170.
SAYYED, M., MARIA, Z. M., HUSSEIN, Z. A., NAJAM, L. A., NAMQ, B. F., WAIS, T. Y., MOSTAFA, M. Y. A. & MANSOUR, H. 2024. Radiological hazard assessment of soil from Kasik oil refinery, Nineveh, Iraq. Nuclear Engineering and Technology, 56, 4782-4790
SITHONG, K., RATTANAPHIBUN, C. & AUISUI, S. A. 2024. Assessment of Natural Radioactivity Levels of (226Ra, 232Th, 40K) in Rice Samples Collected from the Provinces of Phatthalung, Surat Thani, Phang Nga, Krabi, Chumphon and Narathiwat. Journal of Physics and General Science, 8, 80-90.
UNSCEAR. 2000. Sources and Effects of Ionizing Radiation, United Nations Scientific Committee on the Effects of Atomic Radiation (UNSCEAR) 2000 report, volume I: report to the general assembly, with scientific annexes-sources, United Nations.
UNSCEAR. 2008. United Nations scientific committee on the effect of atomic radiation, sources and effects of ionizing radiation, I, United Nations p. 66
http://www.unscear.org/docs/reports/2008/09-86753_Report_2008_Annex_B.pdf
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 Ahmed I. samad, Ali H. Ahmed, Hallo M. Abdullah

This work is licensed under a Creative Commons Attribution 4.0 International License.




