Abstract
Abstract. Indoor/outdoor air exchange on indoor radon concentration
was investigated. We evaluated the effect of air extraction versus air
introduction at different flow rates on equilibrium 222Rn activity
concentrations in a scale model room of 62 cm × 50 cm × 35 cm (inner length
x width × height), made of a porous, radium and thorium-rich lithoid
ignimbrite (Tufo di Gallese) from Vico volcano (Lazio, central Italy).
Experiments were carried either with the inner walls of the chamber covered
with a plasterboard shield or without any inner coating. Air introduction
was always more effective than air extraction to reduce indoor 222Rn
and, in both cases, higher flow rates produced higher 222Rn decreases.
The presence of the plasterboard enhanced 222Rn reduction when outdoor
air was introduced in the chamber. Main results were that, with
plasterboard, maximum reductions of 89.5 % and 25.0 % were obtained
introducing and extracting air, respectively; without plasterboard, we found
maximum radon decreases of 33.2 % and 26.6 %, namely with air
introduction or extraction. The diffusion of 222Rn through the walls of
the scale model room was modelled with a modified version of Fick's second
law, where a term considering air flow velocity was added. These findings
suggested that the combined use of proper coatings on the inner walls of a
house and outdoor air introduction at suitable rates are a good strategy to
approach radon mitigation actions.
Subject
General Chemical Engineering
Reference26 articles.
1. Arvela, H., Holmgren, O., Reisbacka, H., and Vinha, J.: Review of low-energy
construction, air tightness, ventilation strategies and indoor radon:
results from Finnish houses and apartments, Radiat. Prot. Dosim, 162, 51–63,
https://doi.org/10.1093/rpd/nct278, 2013.
2. Capra, D., Silibello, C., and Queirazza, G.: Influence of Ventilation Rate
on Indoor Radon Concentration in a Test Chamber, Radiat. Prot. Dosim., 56,
15–18, https://doi.org/10.1093/oxfordjournals.rpd.a082414, 1994.
3. Chakravertya, S., Sahoob, B. K., Raoa, T. D., Karunakara, P., and Saprab, B. K.:
Modelling uncertainties in the diffusion-advection equation for radon
transport in soil using interval arithmetic, J. Environ.
Radioactiv., 182, 165–171, https://doi.org/10.1016/j.jenvrad.2017.12.007, 2018.
4. Cinelli, G., De Cort, M., and Tollefsen, T. (Eds.): European Atlas of Natural
Radiation, Publication Office of the European Union, Luxembourg, 195 pp., nline version https://doi.org/10.2760/46388, 2019.
5. Collignan, B. and Powaga, E.: Impact of ventilation systems and energy
savings in a building on the mechanisms governing the indoor radon activity
concentration, J. Environ. Radioactiv., 196, 268–273, https://doi.org/10.1016/j.jenvrad.2017.11.023, 2019.
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