Published 2004 | Version v1
Journal article

Application of MCP-N (LiF:Mg,Cu,P) TL detectors in monitoring environmental radiation

  • 1. Institute of Nuclear Physics, Radzikowskiego 152, PL-31-342 Krakow, (Poland)
  • 2. Environmental Division, Municipal Bujanovac, 17520 Bujanovac, (Serbia)
  • 3. Public Health Regional Centre, 17500 Vranje, (Serbia)
  • 4. Jozef Stefan Institute Jamova 39, SI-1001 Ljubljana (Slovenia)
  • 5. P. Olko
  • 6. VINCA Institute of Nuclear Sciences, P. O. Box 522, 11001 Belgrade, (Serbia)

Description

Thermoluminescent MCP-N detectors based on LiF:Mg,Cu,P are by about 2 orders of magnitude more sensitive than TLD-100 detectors based on conventional LiF:Mg,Ti, which makes it possible to use them in short-term monitoring of ionising radiation in the environment (e. g., over a two-week period, rather than over 3-12 months). We describe the properties of MCP-N detectors and methods of their application in environmental monitoring. The system was tested in short and long-term exposure periods at 100 sites around Krakow region. MCP-N detectors were then applied to measure variation of radiation dose rate at four selected villages in Serbia, where depleted uranium ammunition was deployed in 1999. Together with short-term thermoluminescent dosimetry, in situ measurements using proportional counters were performed in order to assess the range of variation of natural radiation background in these villages. The mean terrestrial kerma dose rate in these villages was found to vary between 85 and 116 nGyh-1 and the average ambient dose equivalent rate H*(10) determined by thermoluminescent detectors and by proportional counter measurements was 160 nSvh-1. These values of natural radiation background dose rates can be applied as reference levels for field measurements around other sites where depleted uranium ammunition was deployed. (author)

Availability note (English)

Also available online from http://ntrp.vin.bg.ac.yu/

Additional details

Identifiers

Publishing Information

Journal Title
Nuclear Technology and Radiation Protection
Journal Volume
19
Journal Issue
1
Journal Page Range
p. 20-25
ISSN
1451-3994

Optional Information

Notes
15 refs., 3 figs., 4 tabs.; This record replaces 35061118