Radon Research in Poland: A Review

Author:

Przylibski Tadeusz A.1

Affiliation:

1. Wrocław University of Technology

Abstract

The article presents the most important results of radon research in Poland. Large-scale research, launched in this country in the early 1950s, was originally linked to using radon dissolved in groundwater in balneotherapy as well as to uranium ore exploration and mining. This early research focused on the area of the Sudetes and nowadays it is also south-western Poland where most radon research is being conducted. This is chiefly due to the geological structure of the Sudetes and the Fore-Sudetic block, which is propitious to radon accumulation in many environments. Radon research in Poland has been developing dynamically since the 1990s. A lot of research teams and centres have been formed, all of them using a variety of methods and advanced measurement equipment enabling research into radon occurrence in all geospheres and all spheres of human activity. The author presents the contribution of Polish science to broadening human knowledge of the geochemistry of radon, particularly of 222Rn isotope. The article also presents the ranges and mean values of 222Rn activity concentration measured in different environments in Poland including the atmospheric air, the air in buildings and underground hard-coal and copper mines, the cave air, the air in underground tourist sites and abandoned uranium mines, as well as soil air and groundwater.

Publisher

Trans Tech Publications, Ltd.

Subject

Condensed Matter Physics,General Materials Science,Atomic and Molecular Physics, and Optics

Reference86 articles.

1. Council Directive 2013/51/EURATOM of 22 October 2013 laying down requirements for the protection of the health of the general public with regard to radioactive substances in water intended for human consumption. Official Journal of the European Union, 7. 11. 2013., L 296/12 – L 296/21.

2. Council Directive 2013/59/EURATOM of 5 December 2013 laying down basic safety standards for protection against the dangers arising from exposure to ionising radiation, and repealing Directives 89/618/Euratom, 90/641/Euratom, 96/29/Euratom, 97/43/Euratom and 2003/122/ Euratom. Official Journal of the European Union, 17. 1. 2014., L 13/1 – L 13/73.

3. J. Znosko (ed. ), Tectonic atlas of Poland, Polish Geological Institute, Warsaw (1998).

4. M. Narkiewicz, R. Dadlez, Geological regional subdivision of Poland – general guidelines and proposed schemes of sub-Cenozoic and sub-Permian units, Przegląd Geologiczny 56 (5) (2008) 391-397. (in Polish with English abstract).

5. P. H. Karnkowski, Tectonic subdivision of Poland – Polish Lowlands, Przegląd Geologiczny 56 (10) (2008) 895-903. (in Polish with English abstract).

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