Photon and neutron shielding performance of boron phosphate glasses for diagnostic radiology facilities
•Boron phosphate glasses containing PbO and Bi2O3 have been studied.•Zeff, Nel, HVL and MFP were determined using mass attenuation coefficients.•Effective removal cross sections (ΣR) for fast neutrons have been evaluated.•Photon and neutron transmission factors have been evaluated.•Average photon fl...
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Published in | Results in physics Vol. 12; pp. 1457 - 1464 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
01.03.2019
Elsevier |
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Abstract | •Boron phosphate glasses containing PbO and Bi2O3 have been studied.•Zeff, Nel, HVL and MFP were determined using mass attenuation coefficients.•Effective removal cross sections (ΣR) for fast neutrons have been evaluated.•Photon and neutron transmission factors have been evaluated.•Average photon flux in SNYDER head phantom was calculated.•BPM4 has superior photon and neutron radiation shielding effectiveness.
This study focuses on radiation shielding characteristics of Li2O, Al2O3 and ZnO-doped boron phosphate glasses containing PbO and Bi2O3. Mass attenuation coefficient (μ/ρ) values of the glasses have been calculated using MCNPX code at various photon energies ranging from 60 to 120 keV and compared to those of XCOM software. The obtained results exhibited that MCNPX and XCOM are in good agreement at all energies. Some shielding parameters such as effective atomic number (Zeff), effective electron density (Nel), half value layer (HVL), mean free path (MFP) and Photon transmission factors (TF-photon) were determined using the obtained mass attenuation coefficients. Moreover, macroscopic effective removal cross sections (ΣR) and neutron transmission factors (TF-neutron) for fast neutrons have been evaluated. To simulate the attenuation properties of investigated glasses in a diagnostic radiology operation facility (control room), each boron phosphate glass sample was placed in front of a mathematical human head phantom namely SNYDER. For the glasses under examination, average photon flux in the eight detection points, which were located in different points of SNYDER head phantom, was calculated. Among the studied glasses, BPM4 sample has showed superior photon and neutron radiation shielding effectiveness. It can be concluded that boron-doped glasses are superior shielding materials for both gamma ray and neutrons. |
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AbstractList | •Boron phosphate glasses containing PbO and Bi2O3 have been studied.•Zeff, Nel, HVL and MFP were determined using mass attenuation coefficients.•Effective removal cross sections (ΣR) for fast neutrons have been evaluated.•Photon and neutron transmission factors have been evaluated.•Average photon flux in SNYDER head phantom was calculated.•BPM4 has superior photon and neutron radiation shielding effectiveness.
This study focuses on radiation shielding characteristics of Li2O, Al2O3 and ZnO-doped boron phosphate glasses containing PbO and Bi2O3. Mass attenuation coefficient (μ/ρ) values of the glasses have been calculated using MCNPX code at various photon energies ranging from 60 to 120 keV and compared to those of XCOM software. The obtained results exhibited that MCNPX and XCOM are in good agreement at all energies. Some shielding parameters such as effective atomic number (Zeff), effective electron density (Nel), half value layer (HVL), mean free path (MFP) and Photon transmission factors (TF-photon) were determined using the obtained mass attenuation coefficients. Moreover, macroscopic effective removal cross sections (ΣR) and neutron transmission factors (TF-neutron) for fast neutrons have been evaluated. To simulate the attenuation properties of investigated glasses in a diagnostic radiology operation facility (control room), each boron phosphate glass sample was placed in front of a mathematical human head phantom namely SNYDER. For the glasses under examination, average photon flux in the eight detection points, which were located in different points of SNYDER head phantom, was calculated. Among the studied glasses, BPM4 sample has showed superior photon and neutron radiation shielding effectiveness. It can be concluded that boron-doped glasses are superior shielding materials for both gamma ray and neutrons. This study focuses on radiation shielding characteristics of Li2O, Al2O3 and ZnO-doped boron phosphate glasses containing PbO and Bi2O3. Mass attenuation coefficient (μ/ρ) values of the glasses have been calculated using MCNPX code at various photon energies ranging from 60 to 120 keV and compared to those of XCOM software. The obtained results exhibited that MCNPX and XCOM are in good agreement at all energies. Some shielding parameters such as effective atomic number (Zeff), effective electron density (Nel), half value layer (HVL), mean free path (MFP) and Photon transmission factors (TF-photon) were determined using the obtained mass attenuation coefficients. Moreover, macroscopic effective removal cross sections (ΣR) and neutron transmission factors (TF-neutron) for fast neutrons have been evaluated. To simulate the attenuation properties of investigated glasses in a diagnostic radiology operation facility (control room), each boron phosphate glass sample was placed in front of a mathematical human head phantom namely SNYDER. For the glasses under examination, average photon flux in the eight detection points, which were located in different points of SNYDER head phantom, was calculated. Among the studied glasses, BPM4 sample has showed superior photon and neutron radiation shielding effectiveness. It can be concluded that boron-doped glasses are superior shielding materials for both gamma ray and neutrons. Keywords: Boron phosphate glasses, MCNPX, Radiation protection, SNYDER |
Author | Tekin, H.O. Kavaz, E. Kamislioglu, M. Altunsoy, E.E. Agar, O. Sayyed, M.I. |
Author_xml | – sequence: 1 givenname: H.O. surname: Tekin fullname: Tekin, H.O. email: huseyinozan.tekin@uskudar.edu.tr organization: Uskudar University, Vocational School of Health Services, Radiotherapy Department, Istanbul 34672, Turkey – sequence: 2 givenname: E.E. surname: Altunsoy fullname: Altunsoy, E.E. organization: Uskudar University, Medical Radiation Research Center (USMERA), Istanbul 34672, Turkey – sequence: 3 givenname: E. surname: Kavaz fullname: Kavaz, E. organization: Ataturk University, Faculity of Science, Department of Physics, 25240 Erzurum, Turkey – sequence: 4 givenname: M.I. surname: Sayyed fullname: Sayyed, M.I. organization: University of Tabuk, Physics Department, Tabuk, Saudi Arabia – sequence: 5 givenname: O. surname: Agar fullname: Agar, O. organization: Karamanoğlu Mehmetbey University, Department of Physics, 70100 Karaman, Turkey – sequence: 6 givenname: M. surname: Kamislioglu fullname: Kamislioglu, M. organization: Uskudar University, Department of Nuclear Technology and Radiation Protection, Istanbul 34672, Turkey |
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Keywords | Boron phosphate glasses MCNPX SNYDER Radiation protection |
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Comprehensive study on physical. elastic and shielding properties of ternary BaO-Bi2O3-P2O5 glasses as a potent radiation shielding material publication-title: J Non-Cryst Solids doi: 10.1016/j.jnoncrysol.2017.04.031 – volume: 51 year: 2012 ident: 10.1016/j.rinp.2019.01.060_b0105 article-title: Zinc borophosphate glasses for infrared-based optical applications publication-title: Opt Eng doi: 10.1117/1.OE.51.9.093401 – volume: 4 start-page: 25 issue: 4 year: 2012 ident: 10.1016/j.rinp.2019.01.060_b0100 article-title: Optical properties of alkaline earth borate glasses publication-title: Int J Eng, Sci Technol |
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Snippet | •Boron phosphate glasses containing PbO and Bi2O3 have been studied.•Zeff, Nel, HVL and MFP were determined using mass attenuation coefficients.•Effective... This study focuses on radiation shielding characteristics of Li2O, Al2O3 and ZnO-doped boron phosphate glasses containing PbO and Bi2O3. Mass attenuation... |
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SubjectTerms | Boron phosphate glasses MCNPX Radiation protection SNYDER |
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Title | Photon and neutron shielding performance of boron phosphate glasses for diagnostic radiology facilities |
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