Title of article
Radon permeability and radon exhalation of building materials
Author/Authors
G. Keller ، نويسنده , , Michael B. Hoffmann، نويسنده , , T. Feigenspan، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2001
Pages
5
From page
85
To page
89
Abstract
High radon concentrations indoors usually depend on the possibilities of radon penetration from the surrounding
soil into the buildings. Radon concentrations in dwellings up to 100 kBq m3 were found in some special regions Ži.e.
Schneeberg Saxony, Umhausen Tyrol., where the soil shows a high uranium content and additionally, a fast radon
transport in the soil is possible. To reduce the radon exposure of the inhabitants in these ‘radon prone areas’ it is
necessary to look for building and insulating materials with low radon permeability. We examined several building
materials, like cements, concretes and bricks of different constitutions for their diffusion coefficients and their
exhalation rates. The insulating materials, like foils and bitumen were tested also on their radon tightness. The
measurements were performed with an online radon measuring device, using electrostatic deposition of 218Po ions
onto a surface barrier detector and subsequent alpha spectroscopy. The mean diffusion lengths for the investigated
building materials range from lower than 0.7 mm Ži.e. for plastic foil., up to 1.1 m for gypsum. The diffusion length R was calculated from the diffusion coefficient D with R ʹD . If the thickness of the material is more than 3
times the diffusion length, then it is called radon-tight. The mean 222Rn exhalation rates for the building materials
varied between 0.05 and 0.4 mBq m2s. The samples were investigated as stones, plates, blocks, foils, coatings,
powders etc., no statement can be made about working at the construction site of a building. Also the fabrication and
processing of the materials has to be considered, because the material characteristics may have changed
Keywords
Radon-diffusion , Radon-exhalation , Diffusion length , Radon-tight , Insulating materials , building materials
Journal title
Science of the Total Environment
Serial Year
2001
Journal title
Science of the Total Environment
Record number
982605
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