Accès gratuit
Numéro
Radioprotection
Volume 47, Numéro 3, Juillet-Septembre 2012
Page(s) 403 - 411
Section Articles
DOI https://doi.org/10.1051/radiopro/2012011
Publié en ligne 7 septembre 2012
  • Cortina D., Duran I., Llerena J.J. (2008) Measurements of indoor radon concentrations in the Santiago de Compostela area, J. Environ. Radioact. 99, 1583-1588. [CrossRef] [PubMed] [Google Scholar]
  • Cothern C.R. (1987) Estimating the health risks of radon in drinking water, J. Am. Water Works Assoc., April, 153. [Google Scholar]
  • Culot M.V.J., Olson H.G., Schiager K.J. (1976) Effective diffusion coefficient if radon in concrete, Theory and Methods for Field Measurements, Health Phys. 30, 263-270. [CrossRef] [PubMed] [Google Scholar]
  • EC (1999) European Community, Laying down basic safety standards for the protection of the health of workers and the general public against the dangers arising from ionizing radiation, Council Directive 96/29/EURATOM, 1-114. [Google Scholar]
  • EC (1999) European Commission, Radiological Protection Principles Concerning the Natural Radioactivity of Building Materials, Radiation Protection Report RP-112, Directorate-General Environment Nuclear Safety and Civil Protection, Luxembourg. [Google Scholar]
  • ICRP Publication 104 (2007) International Commission on Radiological Protection, Scope of Radiological Protection Control Measures, Ann. ICRP 37. [Google Scholar]
  • Krisiuk E.M. (1980) Airborne Radioactivity in Buildings, Health Phys. 38 (2), 199-202. [CrossRef] [PubMed] [Google Scholar]
  • Luisa B., Isidoro Z., Josefina O., Vicente S. (2008) Occupational exposure to natural radioactivity in a zircon sand milling plant, J. Environm. Radioact. 99, 1525-1529. [CrossRef] [Google Scholar]
  • Maged A.F. (2006) Radon Concentration in Elementary Schools in Kuwait, Health Phys. 90 (3), 258-262. [CrossRef] [PubMed] [Google Scholar]
  • Maged A.F. (2009) Estimating the radon concentration in water and indoor air, Environ. Monit. Assess. 152, 195-201. [CrossRef] [PubMed] [Google Scholar]
  • Maged A.F., Tsuruta T., Durrani S.A. (1993) Experimental and Theoretical Considerations on the Calibration Factor K between -Activity Concentration and Track Density for Application in Radon Dosimetry, J. Radioanal. Nucl. Chem. 170 (2), 423-431. [CrossRef] [Google Scholar]
  • Quindos L.S., Newton G.J., Wilkening M.H. (1987) On the dose rate indoors from building materials, Radiat. Prot. Dosim. 19, 125-128. [Google Scholar]
  • Rashmi K., G.S.S. Sharma (2009) Activity measurements and dependence of radon exhalation rate on physical sample parameters in soil samples, Asian J. Chem. 21 (10), 271-274. [Google Scholar]
  • Todorovic D., Popovic D., Djuric G. (1999) Radionuclides in raw building materials, Izgradnja 53, 330-335. [Google Scholar]
  • Tufail M., Akhtar N., Javied S., Hamid T. (2007) Natural radioactivity hazards of building bricks fabricated from saline soil of two districts of Pakistan, J. Radiol. Prot. 27, 481-492. [Google Scholar]
  • UNSCEAR (2000) United Nations Scientific Committee on the Effects of Atomic Radiation, Sources, Effects and Risks of Ionizing Radiation, Report to the General Assembly with Annex B: Exposures from Natural Sources of Radiation, United Nations, New York. [Google Scholar]
  • Verita S., Righi S., Guerra R., Jeyapandian M. (2009) Radon exhalation rates from zircon sands and ceramic tiles in Italy, Radioprotection 44, 445-451. [CrossRef] [EDP Sciences] [Google Scholar]

Les statistiques affichées correspondent au cumul d'une part des vues des résumés de l'article et d'autre part des vues et téléchargements de l'article plein-texte (PDF, Full-HTML, ePub... selon les formats disponibles) sur la platefome Vision4Press.

Les statistiques sont disponibles avec un délai de 48 à 96 heures et sont mises à jour quotidiennement en semaine.

Le chargement des statistiques peut être long.