Study of Alpha and Beta Radioactivity of Clay Originating from Radionuclides Belonging to the 238U and 232Th Families: Doses to the Skin of Potters

Health Phys. 2021 Feb 1;120(2):177-190. doi: 10.1097/HP.0000000000001298.

Abstract

Pottery objects are presently more and more used for decoration in homes and hotels. To assess radiological hazards to potters, 238U, 232Th, 222Rn, and 220Rn radionuclides were analyzed in different clay body samples used for pottery production by means of CR-39 and LR-115 II track detectors. Data obtained were compared to those gotten by means of isotope dilution mass spectrometry. Annual equivalent doses to the skin of potters resulting from the energy loss of alpha-particles emitted by the radionuclides of the 238U and 232Th radioactive families were evaluated. Estimates of the annual equivalent doses to the skin of potters due to the emitted alpha-particles ranged between 6.45 mSy y-1 cm-2 and 17.50 mSy y-1 cm-2 and between 1.87 mSy y-1 cm-2 and 5.33 mSy y-1 cm-2, respectively. Annual equivalent doses received by the skin of potters due to beta-particles (β-) emitted by the radionuclides of the 238U and 232Th series inside the studied clay body samples were determined. Alpha equivalent doses to the skin of potters resulting from the diffusion of 222Rn and 220Rn gases present in the studied clay body samples were calculated. A total maximum annual equivalent dose of 23.0 mSv y-1 cm-2, resulting from the energy loss of alpha and beta minus particles emitted by the radionuclides of the 238U and 232Th series, was found for potters working 8 h d-1(6 d wk-1, 49.28 wk y-1).

MeSH terms

  • Alpha Particles*
  • Aluminum Silicates* / analysis
  • Beta Particles*
  • Clay* / chemistry
  • Humans
  • Radiation Dosage*
  • Radiation Monitoring / methods
  • Radioisotopes / analysis
  • Skin* / chemistry
  • Skin* / radiation effects
  • Thorium* / analysis
  • Uranium* / analysis

Substances

  • Thorium
  • Clay
  • Aluminum Silicates
  • Uranium
  • Uranium-238
  • Thorium-232
  • Radioisotopes