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Enhancing the Gamma-Radiation-Shielding Properties of Gypsum–Lime–Waste Marble Mortars by Incorporating Micro- and Nano-PbO Particles

In the current study, the gamma-radiation-shielding characteristics of novel gypsum–lime–waste marble-based mortars reinforced with micro-PbO and nano-PbO powders were investigated. In total, seven mortar groups, including a control mortar (named GLM), were prepared. The other groups contained10, 20...

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Autores principales: Alabsy, Mahmoud T., Gouda, Mona M., Abbas, Mahmoud I., Al-Balawi, Shoaa Mofleh, El-Khatib, Ahmed M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9966484/
https://www.ncbi.nlm.nih.gov/pubmed/36837205
http://dx.doi.org/10.3390/ma16041577
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author Alabsy, Mahmoud T.
Gouda, Mona M.
Abbas, Mahmoud I.
Al-Balawi, Shoaa Mofleh
El-Khatib, Ahmed M.
author_facet Alabsy, Mahmoud T.
Gouda, Mona M.
Abbas, Mahmoud I.
Al-Balawi, Shoaa Mofleh
El-Khatib, Ahmed M.
author_sort Alabsy, Mahmoud T.
collection PubMed
description In the current study, the gamma-radiation-shielding characteristics of novel gypsum–lime–waste marble-based mortars reinforced with micro-PbO and nano-PbO powders were investigated. In total, seven mortar groups, including a control mortar (named GLM), were prepared. The other groups contained10, 20, and 30 wt.% of both micro-PbO and nano-PbO as a waste marble replacement. This study aimed to explore the effect of particle size and concentrations of PbO powders on the γ-ray-shielding capability of GLM mortars. For this purpose, an HPGe detector and five standard radioactive point sources ((241)Am, (133)Ba, (137)Cs, (60)Co, and (152)Eu) were employed to measure different shielding parameters, including the linear attenuation coefficient (μ), mass attenuation coefficient (μ(m)), mean free path (MFP), half-value layer (HVL), and tenth-value layer (TVL), for the prepared samples in the energy range between 59.53 keV to 1408.01 keV. On the basis of μ(m) values, other significant shielding parameters such as effective atomic number (Z(eff)), effective electron density (N(eff)), equivalent atomic number (Z(eq)), and exposure buildup factor (EBF) were also computed to explore the potential usage of the proposed mortars as radiation protective materials. The results reported that the smallest HVL, TVL, and MPF, as well as the largest attenuation values, were obtained for mortars reinforced by nano-PbO compared to those containing micro-PbO. It can be concluded from the results that the mortar samples containing nano-PbO had a remarkably improved gamma-radiation-shielding ability. Thus, these mortars can be used for radiation shielding on walls in nuclear facilities to reduce the transmitted radiation dose.
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spelling pubmed-99664842023-02-26 Enhancing the Gamma-Radiation-Shielding Properties of Gypsum–Lime–Waste Marble Mortars by Incorporating Micro- and Nano-PbO Particles Alabsy, Mahmoud T. Gouda, Mona M. Abbas, Mahmoud I. Al-Balawi, Shoaa Mofleh El-Khatib, Ahmed M. Materials (Basel) Article In the current study, the gamma-radiation-shielding characteristics of novel gypsum–lime–waste marble-based mortars reinforced with micro-PbO and nano-PbO powders were investigated. In total, seven mortar groups, including a control mortar (named GLM), were prepared. The other groups contained10, 20, and 30 wt.% of both micro-PbO and nano-PbO as a waste marble replacement. This study aimed to explore the effect of particle size and concentrations of PbO powders on the γ-ray-shielding capability of GLM mortars. For this purpose, an HPGe detector and five standard radioactive point sources ((241)Am, (133)Ba, (137)Cs, (60)Co, and (152)Eu) were employed to measure different shielding parameters, including the linear attenuation coefficient (μ), mass attenuation coefficient (μ(m)), mean free path (MFP), half-value layer (HVL), and tenth-value layer (TVL), for the prepared samples in the energy range between 59.53 keV to 1408.01 keV. On the basis of μ(m) values, other significant shielding parameters such as effective atomic number (Z(eff)), effective electron density (N(eff)), equivalent atomic number (Z(eq)), and exposure buildup factor (EBF) were also computed to explore the potential usage of the proposed mortars as radiation protective materials. The results reported that the smallest HVL, TVL, and MPF, as well as the largest attenuation values, were obtained for mortars reinforced by nano-PbO compared to those containing micro-PbO. It can be concluded from the results that the mortar samples containing nano-PbO had a remarkably improved gamma-radiation-shielding ability. Thus, these mortars can be used for radiation shielding on walls in nuclear facilities to reduce the transmitted radiation dose. MDPI 2023-02-13 /pmc/articles/PMC9966484/ /pubmed/36837205 http://dx.doi.org/10.3390/ma16041577 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Alabsy, Mahmoud T.
Gouda, Mona M.
Abbas, Mahmoud I.
Al-Balawi, Shoaa Mofleh
El-Khatib, Ahmed M.
Enhancing the Gamma-Radiation-Shielding Properties of Gypsum–Lime–Waste Marble Mortars by Incorporating Micro- and Nano-PbO Particles
title Enhancing the Gamma-Radiation-Shielding Properties of Gypsum–Lime–Waste Marble Mortars by Incorporating Micro- and Nano-PbO Particles
title_full Enhancing the Gamma-Radiation-Shielding Properties of Gypsum–Lime–Waste Marble Mortars by Incorporating Micro- and Nano-PbO Particles
title_fullStr Enhancing the Gamma-Radiation-Shielding Properties of Gypsum–Lime–Waste Marble Mortars by Incorporating Micro- and Nano-PbO Particles
title_full_unstemmed Enhancing the Gamma-Radiation-Shielding Properties of Gypsum–Lime–Waste Marble Mortars by Incorporating Micro- and Nano-PbO Particles
title_short Enhancing the Gamma-Radiation-Shielding Properties of Gypsum–Lime–Waste Marble Mortars by Incorporating Micro- and Nano-PbO Particles
title_sort enhancing the gamma-radiation-shielding properties of gypsum–lime–waste marble mortars by incorporating micro- and nano-pbo particles
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9966484/
https://www.ncbi.nlm.nih.gov/pubmed/36837205
http://dx.doi.org/10.3390/ma16041577
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