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Natural Radioactivity, Radiological Hazard and Petrographical Studies on Aswan Granites Used as Building Materials in Egypt

Nasser M. MoghazyNuclear Materials Authority, P.O. 530 Maadi, Cairo 11381, EgyptAmira M. El-TohamyNuclear Materials Authority, P.O. 530 Maadi, Cairo 11381, EgyptMona M. FawzyNuclear Materials Authority, P.O. 530 Maadi, Cairo 11381, EgyptHamdy A. AwadGeology Department, Faculty of Science, Al-Azhar University, Assuit Branch, Assuit 71524, EgyptHesham M.H. ZakalyInstitute of Physics and Technology, Ural Federal University, 620002 Yekaterinburg, RussiaShams A.M. IssaDepartment of Physics, Faculty of Science, University of Tabuk, Tabuk 71451, Saudi ArabiaAntoaneta EneINPOLDE Research Center, Faculty of Sciences and Environment, Department of Chemistry, Physics and Environment, Dunarea de Jos University of Galati, 47 Domneasca Street, 800008 Galati, Romania
2021en
ABI

Аннотация

The present study was carried out on commercial types of Aswan granite used as building and decorative materials. Nearly 29 granitic rocks samples from 11 classes (black Aswan, red Aswan, dark Rosa, light Rosa, yellow Verdi, grey Shirka, Gandolla, Forsan, red Nefertiti, Royal, and white Halayeb) were collected from three stations near Aswan city for petrographical description and assessment of natural radioactivity. The petrographical study of granites was conducted by polarized-light microscope in order to determine their mineralogical composition and investigate their texture; the activity of the natural radionuclides 238U, Ra226, 232Th, and 40K was measured by gamma-ray spectrometry with a NaI(Tl) detector. The average values of the activities, 52.2 Bq kg−1, 57.8 Bq kg−1, 31.2 Bq kg−1, and 1055.7 Bq kg−1 of U-238, Th-232, Ra-226, and K-40, respectively, were higher than that the world average values of 35 Bq kg−1, 30 Bq kg−1 and 400 Bq kg−1 for 226Ra, 232Th, and 40K, respectively, according to the recommended levels from UNSCEAR reports. The minimum and maximum values obtained were compared with the value ranges from other locations in the Eastern Desert, highlighting the fact that that the maximum values obtained in this work are higher than those in other areas. According to the radiological hazards indices results, most samples lie in the permissible level ranges, suggesting their favorability for use as building materials. In contrast to that, some samples have some environmental parameters higher than the international levels, indicating their unsuitability as building materials.

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