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Transmission factor (TF) behavior of Bi2O3–TeO2–Na2O–TiO2–ZnO glass system: A Monte Carlo simulation study

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Date

2022

Author

Tekin, H.O.
Almisned, G.
Susoy, G.
Ali, F.T.
Şen Baykal, Duygu
Ene, A.
Issa, S.A.M.
Rammah, Y.S.
Zakaly, H.M.H.

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Citation

Tekin, H. O., Almisned, G., Susoy, G., Ali, F. T., Baykal, D. S., Ene, A., . . . Zakaly, H. M. H. (2022). Transmission factor (TF) behavior of Bi2O3–TeO2–Na2O–TiO2–ZnO glass system: A monte carlo simulation study. Sustainability (Switzerland), 14(5) DOI: https://doi.org/10.3390/su14052893

Abstract

Abstract The main objective of the present work was to assess the gamma radiation shielding competencies and gamma radiation transmission factors (TFs) for some tellurite glasses in the form of Bi2O3–TeO2–Na2O–TiO2–ZnO. MCNPX general-purpose Monte Carlo code (version 2.6.0) was utilized for the determination of TF values at various well-known radioisotope energies for different glass thicknesses from 0.5 cm to 3 cm. Moreover, some important gamma ray shielding properties were also determined in the 0.015–15 MeV energy range. The results show that glass densities were improved from 5.401 g/cm3 to 6.138 g·cm3 as a function of Bi2O3 increment in the glass composition. A S5 glass sample with the maximum Bi2O3 additive was reported with superior gamma ray shielding properties among the studied glasses. It can be concluded that Bi2O3 can be used as a functional tool in terms of improving glass density and, accordingly, gamma ray shielding attenuation properties of tellurite glasses, where the role Bi2O3 is also critical for other material properties, such as structural, optical, and mechanical.

Source

Sustainability (Switzerland)

Volume

14

Issue

5

URI

https://doi.org/10.3390/su14052893
https://hdl.handle.net/20.500.12780/533

Collections

  • Makale Koleksiyonu [43]
  • Scopus İndeksli Yayınlar Koleksiyonu [301]
  • WoS İndeksli Yayınlar Koleksiyonu [268]



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