Assessment of Radiation Shielding Properties of Polymer-Lead (II) Oxide Composites

Long term exposure to very high levels of radiations from medical diagnostic centres, industries, nuclear research establishments and nuclear weapon development have resulted in health effects such as cancer and acute radiation syndrome, hence the need for proper radiation shielding. This paper inv...

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Autores principales: M. A. Salawu, J. A. Gbolahan, A. B. Alabi
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Publicado: Nigerian Society of Physical Sciences 2021
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Acceso en línea:https://doaj.org/article/1efb22c5e24d4b93afbb071b02b1018d
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spelling oai:doaj.org-article:1efb22c5e24d4b93afbb071b02b1018d2021-11-30T12:19:15ZAssessment of Radiation Shielding Properties of Polymer-Lead (II) Oxide Composites10.46481/jnsps.2021.2492714-28172714-4704https://doaj.org/article/1efb22c5e24d4b93afbb071b02b1018d2021-11-01T00:00:00Zhttps://journal.nsps.org.ng/index.php/jnsps/article/view/249https://doaj.org/toc/2714-2817https://doaj.org/toc/2714-4704 Long term exposure to very high levels of radiations from medical diagnostic centres, industries, nuclear research establishments and nuclear weapon development have resulted in health effects such as cancer and acute radiation syndrome, hence the need for proper radiation shielding. This paper investigated Epoxy-Lead (II) Oxide (PbO) composite as radiation shielding. The composites were prepared by dispersion of microsized PbO particles into polymeric materials using effective melt-mixing method and cast in a 4 cm by 6 cm rectangular aluminium Mold with a thickness of 5 mm and was allowed to set over night at room temperature. The gamma ray attenuation ability of the composites were studied using gamma ray transmission or attenuation coefficient determination for the gamma ray energy. Three gamma ray sources Ba-133, Cs-137 and Co-60 were employed. The density, linear attenuation coefficient, half value layer (HVL), relaxation length and heaviness of the samples were determined. The measured values of linear attenuation coefficient increased with increasing filler concentration in all the samples at all gamma ray energies. It was also noticed that 40 % and 50 % filler samples attenuates more relative to the other samples under study. The maximum linear attenuation attained was found at energy of 662 keV. The composites have been found to possessed medical gamma-ray attenuation characteristics among the sample materials over a certain photon energy range (0.08 MeV–1.332 MeV) and found useful as a biological radiation shielding against gamma rays. M. A. SalawuJ. A. GbolahanA. B. AlabiNigerian Society of Physical SciencesarticlePbO, PANI, HVL, Epoxy, attenuationPhysicsQC1-999ENJournal of Nigerian Society of Physical Sciences, Vol 3, Iss 4 (2021)
institution DOAJ
collection DOAJ
language EN
topic PbO, PANI, HVL, Epoxy, attenuation
Physics
QC1-999
spellingShingle PbO, PANI, HVL, Epoxy, attenuation
Physics
QC1-999
M. A. Salawu
J. A. Gbolahan
A. B. Alabi
Assessment of Radiation Shielding Properties of Polymer-Lead (II) Oxide Composites
description Long term exposure to very high levels of radiations from medical diagnostic centres, industries, nuclear research establishments and nuclear weapon development have resulted in health effects such as cancer and acute radiation syndrome, hence the need for proper radiation shielding. This paper investigated Epoxy-Lead (II) Oxide (PbO) composite as radiation shielding. The composites were prepared by dispersion of microsized PbO particles into polymeric materials using effective melt-mixing method and cast in a 4 cm by 6 cm rectangular aluminium Mold with a thickness of 5 mm and was allowed to set over night at room temperature. The gamma ray attenuation ability of the composites were studied using gamma ray transmission or attenuation coefficient determination for the gamma ray energy. Three gamma ray sources Ba-133, Cs-137 and Co-60 were employed. The density, linear attenuation coefficient, half value layer (HVL), relaxation length and heaviness of the samples were determined. The measured values of linear attenuation coefficient increased with increasing filler concentration in all the samples at all gamma ray energies. It was also noticed that 40 % and 50 % filler samples attenuates more relative to the other samples under study. The maximum linear attenuation attained was found at energy of 662 keV. The composites have been found to possessed medical gamma-ray attenuation characteristics among the sample materials over a certain photon energy range (0.08 MeV–1.332 MeV) and found useful as a biological radiation shielding against gamma rays.
format article
author M. A. Salawu
J. A. Gbolahan
A. B. Alabi
author_facet M. A. Salawu
J. A. Gbolahan
A. B. Alabi
author_sort M. A. Salawu
title Assessment of Radiation Shielding Properties of Polymer-Lead (II) Oxide Composites
title_short Assessment of Radiation Shielding Properties of Polymer-Lead (II) Oxide Composites
title_full Assessment of Radiation Shielding Properties of Polymer-Lead (II) Oxide Composites
title_fullStr Assessment of Radiation Shielding Properties of Polymer-Lead (II) Oxide Composites
title_full_unstemmed Assessment of Radiation Shielding Properties of Polymer-Lead (II) Oxide Composites
title_sort assessment of radiation shielding properties of polymer-lead (ii) oxide composites
publisher Nigerian Society of Physical Sciences
publishDate 2021
url https://doaj.org/article/1efb22c5e24d4b93afbb071b02b1018d
work_keys_str_mv AT masalawu assessmentofradiationshieldingpropertiesofpolymerleadiioxidecomposites
AT jagbolahan assessmentofradiationshieldingpropertiesofpolymerleadiioxidecomposites
AT abalabi assessmentofradiationshieldingpropertiesofpolymerleadiioxidecomposites
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