Nuclear Technology and Radiation Protection (Jan 2006)

Radiation monitoring using imaging plate technology: A case study of leaves affected by the Chernobyl nuclear power plant and JCO criticality accidents

  • Kimura Shinzo,
  • Sahoo Sarata K.,
  • Shiraishi Kunio,
  • Watanabe Yoshito,
  • Ban-Nai Tadaaki,
  • Los Ivan P.,
  • Korzun Vitaly N.,
  • Tsygankov Nikolay Y.,
  • Zamostyan Pavlo V.,
  • Shevchuk Valery E.

DOI
https://doi.org/10.2298/NTRP0601041K
Journal volume & issue
Vol. 21, no. 1
pp. 41 – 47

Abstract

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This paper describes the use of a photostimulable phosphor screen imaging technique to detect radioactive contamination in the leaves of wormwood (Artemisia vulgaris L) and fern (Dryopteris filix-max CL. Schoff) plants affected by the Chernobyl nuclear power plant accident. The imaging plate technology is well known for many striking performances in two-dimensional radiation detection. Since imaging plate comprises an integrated detection system, it has been extensively applied to surface contamination distribution studies. In this study, plant samples were collected from high- and low-contaminated areas of Ukraine and Belarus, which were affected due to the Chernobyl accident and exposed to imaging technique. Samples from the highly contaminated areas revealed the highest photo-stimulated luminescence on the imaging plate. Moreover, the radio nuclides detected in the leaves by gamma and beta ray spectroscopy were 137Cs and 90Sr, respectively. Additionally, in order to assess contamination, a comparison was also made with leaves of plants affected during the JCO criticality accident in Japan. Based on the results obtained, the importance of imaging plate technology in environmental radiation monitoring has been suggested.

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