An investigation on shielding properties of BaO, MoO3 and P2O5 based glasses using MCNPX code
In the present work, some radiation shielding quantities (mass attenuation coefficients, effective atomic number, effective electron density, half value layer and mean free path) for various BaO–MoO3–P2O5 ternary glass systems have been determined within the 0.015–15 MeV energy range, using WinXCom...
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my.upm.eprints.806152020-11-05T18:53:38Z http://psasir.upm.edu.my/id/eprint/80615/ An investigation on shielding properties of BaO, MoO3 and P2O5 based glasses using MCNPX code Agar, O. Sayyed, M. I. Tekin, H. O. Kaky, Kawa M. Baki, S. O. Kityk, I. In the present work, some radiation shielding quantities (mass attenuation coefficients, effective atomic number, effective electron density, half value layer and mean free path) for various BaO–MoO3–P2O5 ternary glass systems have been determined within the 0.015–15 MeV energy range, using WinXCom program. Additionally, the mass attenuation coefficients of all the investigated glasses have been calculated using MCNPX simulation code (version 2.6.0) and compared to those of WinXCom results. Among the studied glasses, BaMoP8 glass sample with MoO3 content of 70% mol is found to have superior gamma-ray shielding characteristics. Moreover, the glasses studied in this paper possess better radiation shielding properties by providing shorter half value layer (HVL) than RS-253 G18 commercial glass and some concrete samples namely ordinary, hematite-serpentine and ilmanite-limonite. Elsevier 2019 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/80615/1/GLASS.pdf Agar, O. and Sayyed, M. I. and Tekin, H. O. and Kaky, Kawa M. and Baki, S. O. and Kityk, I. (2019) An investigation on shielding properties of BaO, MoO3 and P2O5 based glasses using MCNPX code. Results in Physics, 12. pp. 629-634. ISSN 2211-3797 https://www.sciencedirect.com/science/article/pii/S2211379718329413#! 10.1016/j.rinp.2018.12.003 |
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In the present work, some radiation shielding quantities (mass attenuation coefficients, effective atomic number, effective electron density, half value layer and mean free path) for various BaO–MoO3–P2O5 ternary glass systems have been determined within the 0.015–15 MeV energy range, using WinXCom program. Additionally, the mass attenuation coefficients of all the investigated glasses have been calculated using MCNPX simulation code (version 2.6.0) and compared to those of WinXCom results. Among the studied glasses, BaMoP8 glass sample with MoO3 content of 70% mol is found to have superior gamma-ray shielding characteristics. Moreover, the glasses studied in this paper possess better radiation shielding properties by providing shorter half value layer (HVL) than RS-253 G18 commercial glass and some concrete samples namely ordinary, hematite-serpentine and ilmanite-limonite. |
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Article |
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Agar, O. Sayyed, M. I. Tekin, H. O. Kaky, Kawa M. Baki, S. O. Kityk, I. |
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Agar, O. Sayyed, M. I. Tekin, H. O. Kaky, Kawa M. Baki, S. O. Kityk, I. An investigation on shielding properties of BaO, MoO3 and P2O5 based glasses using MCNPX code |
author_facet |
Agar, O. Sayyed, M. I. Tekin, H. O. Kaky, Kawa M. Baki, S. O. Kityk, I. |
author_sort |
Agar, O. |
title |
An investigation on shielding properties of BaO, MoO3 and P2O5 based glasses using MCNPX code |
title_short |
An investigation on shielding properties of BaO, MoO3 and P2O5 based glasses using MCNPX code |
title_full |
An investigation on shielding properties of BaO, MoO3 and P2O5 based glasses using MCNPX code |
title_fullStr |
An investigation on shielding properties of BaO, MoO3 and P2O5 based glasses using MCNPX code |
title_full_unstemmed |
An investigation on shielding properties of BaO, MoO3 and P2O5 based glasses using MCNPX code |
title_sort |
investigation on shielding properties of bao, moo3 and p2o5 based glasses using mcnpx code |
publisher |
Elsevier |
publishDate |
2019 |
url |
http://psasir.upm.edu.my/id/eprint/80615/1/GLASS.pdf http://psasir.upm.edu.my/id/eprint/80615/ https://www.sciencedirect.com/science/article/pii/S2211379718329413#! |
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1683232233746333696 |