Literature DB >> 33477736

Using Geiger Dosimetry EKO-C Device to Detect Ionizing Radiation Emissions from Building Materials.

Maciej Gliniak1, Tomasz Dróżdż1, Sławomir Kurpaska1, Anna Lis1.   

Abstract

The purpose of the article is to check and assess what radiation is emitted by particular building materials with the passage of time. The analysis was performed with the EKO-C dosimetry device from Polon-Ekolab. The scope of the work included research on sixteen selected construction materials, divided into five groups. The analysis of the results showed that samples such as bricks (first group) and hollow blocks (second group) emit the highest radiation in the tested objects. When comparing these materials, the highest value was recorded when measuring the ceramic block of 15.76 mSv·yr-1. Taking into account the bricks, the highest value of radiation was shown by a full clinker brick, 11.3 mSv·yr-1. Insulation materials and finishing boards are two other groups of building materials that have been measured. They are characterised by a low level of radiation. In the case of materials for thermal insulation, the highest condition was demonstrated by graphite polystyrene of 4.463 mSv·yr-1, while among finishing boards, the highest value of radiation was recorded for the measurement of gypsum board of 3.76 mSv·yr-1. Comparing the obtained test results to the requirements of the Regulation of the Council of Ministers on ionizing radiation dose limits applicable in Poland, it can be noted that the samples examined individually do not pose a radiation risk to humans. When working with all types of samples, the radiation doses are added up. According to the guidelines of the regulation, the total radiation dose does not exceed 50 mSv·yr-1 and does not constitute a threat to human health.

Entities:  

Keywords:  dosimetry; materials; radiation

Mesh:

Substances:

Year:  2021        PMID: 33477736      PMCID: PMC7832318          DOI: 10.3390/s21020645

Source DB:  PubMed          Journal:  Sensors (Basel)        ISSN: 1424-8220            Impact factor:   3.576


  8 in total

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5.  Natural radioactivity of Australian building materials, industrial wastes and by-products.

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6.  Radioactivity of building materials and the gamma radiation in dwellings.

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Journal:  Phys Med Biol       Date:  1979-09       Impact factor: 3.609

7.  ASSESSMENT OF NATURAL RADIOACTIVITY LEVELS AND RADIOLOGICAL HAZARDS IN BUILDING MATERIALS.

Authors:  Fei Tuo; Xuan Peng; Qiang Zhou; Jing Zhang
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8.  An investigation of radon exhalation rate and estimation of radiation doses in coal and fly ash samples.

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  8 in total

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