Gamma ray Shielding Properties of the 57.6TeO2-38.4ZnO-4NiO system
DOI:
https://doi.org/10.22399/ijcesen.310Abstract
The radiation shielding is important for human health as it is hazardous for cell. New material development is under research for alternative shielding materials. Thus 57.6TeO2–38.4ZnO–4NiO system was developed and its shielding capacity were inspected. The variation of the linear attenuation coefficient (LAC) and some other parameters such as half value length (HVL), mean free path (mfp), effective atomic number (Zeff) and Effective electron density (Neff) were studied. The Phy-X/PSD program was utilized for this purpose
References
Jawad, A.A., Demirkol, N., Gunoğlu, K., Akkurt I. (2019). Radiation shielding properties of some ceramic wasted samples. Int. J. Environ. Sci. Technol. 16;5039–5042. https://doi.org/10.1007/s13762-019-02240-7
Boodaghi Malidarre R., Khabaz R., Benam M. R., and Zanganeh V., (2019) A feasibility study to reduce the contamination of photoneutrons and photons in organs/tissues during radiotherapy. Iran. J. Med. Phys. 17;366-373. http://doi.org 10.22038/ijmp.2019.40879.1579.
Akkurt I. (2007). Effective atomic numbers for Fe–Mn alloy using transmission experiment Chinese Phys. Lett. 24;2812. https://doi.org/10.1088/0256-307X/24/10/027
Akkurt I.;El-Khayatt A.M. (2013). Effective atomic number and electron density of marble concrete. Journal of Radioanalytical and Nuclear Chemistry. 295(1);633 – 638. DOI: 10.1007/s10967-012-2111-5
Aygun, Z. & Aygün, M. (2023). An Analysis on Radiation Protection Abilities of Different Colored Obsidians. International Journal of Computational and Experimental Science and Engineering, 9 (2); 170-176 . DOI: 10.22399/ijcesen.1076556
Rwashdi, Q. A. A. D. , Waheed, F. , Gunoglu, K. & Akkurt, İ. (2022) Experimental Testing of the Radiation Shielding Properties for Steel . International Journal of Computational and Experimental Science and Engineering , 8 (3), 74-76. DOI: 10.22399/ijcesen.1067028
Akkurt I., Boodaghi Malidarre R. (2022). Physical, structural, and mechanical properties of the concrete by FLUKA code and phy-X/PSD software. Radiation Physics and Chemistry 193;109958. https://doi.org/10.1016/j.radphyschem.2021.109958
Waheed, F. , İmamoğlu, M. , Karpuz, N. & Ovalıoğlu, (2022). H. Simulation of Neutrons Shielding Properties for Some Medical Materials. International Journal of Computational and Experimental Science and Engineering, 8(1), 5-8. DOI: 10.22399/ijcesen.1032359
Boodaghi Malidarre, R. , Akkurt, İ. , Gunoglu, K. & Akyıldırım, H. (2021). Fast Neutrons Shielding Properties for HAP-Fe2O3 Composite Materials . International Journal of Computational and Experimental Science and Engineering, 7(3),143-145. DOI: 10.22399/ijcesen.1012039
Demir, N., Tarim, U.A., Popovici, MA. Demirci ZN, Gurler O., Akkurt I. (2013). Investigation of mass attenuation coefficients of water, concrete and bakelite at different energies using the FLUKA Monte Carlo code. J Radioanal Nucl Chem 298, 1303–1307 https://doi.org/10.1007/s10967-013-2494-y
Tekin H.O., Cavli B., Altunsoy E.E, Manici T., Ozturk C., Karakas H.M. (2018). An Investigation on Radiation Protection and Shielding Properties of 16 Slice Computed Tomography (CT) Facilities International Journal of Computational and Experimental Science and Engineering 4(2);37 – 40. https://doi.org/10.22399/ijcesen.408231
Biswas R, Sahadath H, Mollah AS, Huq Md F (2016) Calculation of gamma-ray attenuation parameters for locally developed shielding material: Polyboron. Journal of Radiation Research and Applied Sciences 9:26–34
Aycan Şengül (2023). Gamma-ray attenuation properties of polymer biomaterials: Experiment, XCOM and GAMOS results. Journal of Radiation Research and Applied Sciences 16(4);100702 https://doi.org/10.1016/j.jrras.2023.100702
ALMisned G., Sen Baykal D., Susoy G. ,Kilic G., M.H. Zakaly H. Ene A., Tekin H.O. (2022). Determination of gamma-ray transmission factors of WO3–TeO2–B2O3 glasses using MCPX Monte Carlo code for shielding and protection purposes Applied Rheology, 32(1);166-177, DOI: 10.1515/arh-2022-0132
Boodaghi Malidarre, R., Akkurt, I. (2021).Monte Carlo simulation study on TeO2–Bi2O–PbO–MgO–B2O3 glass for neutron-gamma 252Cf source. J Mater Sci: Mater Electron 32,11666–11682 https://doi.org/10.1007/s10854-021-05776-y
Shams A.M. Issa, Y. B. Saddeek, M. I. Sayyed, H. O. Tekin, O. Kilicoglu, (2019) Radiation shielding features using MCNPX code and mechanical properties of the PbO Na2O B2O3 CaO Al2O3 SiO2 glass systems, Composites Part B 167;231-240, https:// doi.org/10.1016/j.compositesb.2018.12.029.
Ahmet Bozkurt, Aycan Sengul. (2021). Monte Carlo approach for calculation of mass energy absorption coefficients of some amino acids Nuclear Engineering and Technology 53(9);3044-3050. https://doi.org/10.1016/j.net.2021.04.004
I.Akkurt, A.M.El-Khayatt. (2013). The effect of barite proportion on neutron and gamma-ray shielding. Annals of Nuclear Energy 51;5-9 https://doi.org/10.1016/j.anucene.2012.08.026
Tekin, H.O., ALMisned, Susoy G., Zakaly G., Issa H. M. H., Shams A. M., Kilic, G., Rammah, Y.S., Lakshminarayana, G. and Ene, A. (2022). A detailed investigation on highly dense CuZr bulk metallic glasses for shielding purposes. Open Chemistry, 20(1);69-80. https://doi.org/10.1515/chem-2022-0127
Şen Baykal, D , Tekin, H , Çakırlı Mutlu, R . (2021). An Investigation on Radiation Shielding Properties of Borosilicate Glass Systems . International Journal of Computational and Experimental Science and Engineering, 7(2),99-108.DOI: 10.22399/ijcesen.960151
ALMisned G., Sen Baykal D., Kilic G., Susoy G., M.H. Zakaly H., Ene A., Tekin H.O. (2022). Assessment of the usability conditions of Sb2O3-PbO-B2O3 glasses for shielding purposes in some medical radioisotope and a wide gamma-ray energy spectrum Applied Rheology, vol. 32(1) https://doi.org/10.1515/arh-2022-0133
Kurtulus R., Kavas T., Akkurt I, Gunoglu K. (2021) Theoretical and experimental gamma-rays attenuation characteristics of waste soda-lime glass doped with La2O3 and Gd2O3. Ceramics International. 47(6);8424-8432. https://doi.org/10.1016/j.ceramint.2020.11.207.
M. Y. Hanfi, M. I. Sayyed, E. K. Lacomme, K. A. Mahmoud, I. Akkurt, (2021). The influence of MgO on the radiation protection and mechanical roperties of tellurite Glasses, Nucl. Eng. Technol., 53(6);2000-2010 doi.org/10.1016/j.net.2020.12.012.
Akkurt I. (2009). Effective atomic and electron numbers of some steels at different energies" Ann. Nucl. En. 36(11,12);1702-1705 DOI: 10.1016/j.anucene.2009.09.005
Oruncak, B. (2023). Computation of Neutron Coefficients for B2O3 reinforced Composite. International Journal of Computational and Experimental Science and Engineering, 9 (2), 50-53 . DOI: 10.22399/ijcesen.1290497
El-bashir B O, Sayyed M I, Zaid M H M, Matori K A, (2017). Comprehensive study on physical, elastic and shielding properties of ternary BaO-Bi2O3-P2O5 glasses as a potent radiation shielding material, J. Non. Cryst. Solids 468, 92–99.
O.A. Zamyatin, M.F. Churbanov, J.A. Medvedeva, S.A. Gavrin, E.V. Zamyatina, A.D. Plekhovich (2018). Glass-forming region and optical properties of the TeO2 – ZnO – NiO system. Journal of Non-Crystalline Solids 479; 29–41 http://dx.doi.org/10.1016/j.jnoncrysol.2017.10.005
E. Şakar, Ö. Fırat Özpolat, B.Alım, M.I.Sayyed, M. Kurudirek, (2020). Phy-X / PSD: Development of a user friendly online software for calculation of parameters relevant to radiation shielding and dosimetry, Radiation Physics and Chemistry. 166;108496. https://doi.org/10.1016/j.radphyschem.2019.108496
Tekin, H.O., ALMisned, G., Zakaly, H.M. H., Zamil, A., Khoucheich, D., Bilal G., Al-Sammarraie, L., Issa, Shams A. M., Al-Buriahi, M. and Ene, A.. (2022). Gamma, neutron, and heavy charged ion shielding properties of Er3+-doped and Sm3+-doped zinc borate glasses Open Chemistry, 20(1),130-145. https://doi.org/10.1515/chem-2022-0128
Kadir Gunoglu, Hatice Varol Özkavak, İskender Akkurt (2021). Evaluation of gamma ray attenuation properties of boron carbide (B4C) doped AISI 316 stainless steel: Experimental, XCOM and Phy-X/PSD database software” Materials Today Communications. 29;102793. https://doi.org/10.1016/j.mtcomm.2021.102793
Bashter II (1997) Calculation of radiation attenuation coefficient for shielding concretes. Ann Nucl Energy 24(17):1389–1401
Makarious AS, Bashter II, El-Sayed Abdo A, Samir Abdel Azim M,Kansouh WA (1996) On the utilization of heavy concrete for radiation shielding. Ann Nucl Energy 23(3):195–206
Malidarre, R. B. , Ozan Tekin, H. , Gunoglu, K. & Akyıldırım, H. (2023). Assessment of Gamma Ray Shielding Properties for Skin . International Journal of Computational and Experimental Science and Engineering, 9(1),6-10. DOI: 10.22399/ijcesen.1247867
A.M. Reda, A.A. El-Daly, (2020). Gamma ray shielding characteristics of Sn-20Bi and Sn-20Bi-0.4Cu lead-free alloys, Progress in Nuclear Energy 123; 103304. https://doi.org/10.1016/j.pnucene.2020.103304
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