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Measurement of radon and thoron progeny size distributions and dose assessments at the mineral treatment industry in Thailand
Authors:Chutima Kranrod  Supitcha Chanyotha  Nares Chankow  Shinji Tokonami  Tetsuo Ishikawa
Institution:1. Nuclear Engineering Department, Engineering Faculty, Chulalongkorn University, Bangkok, 10330, Thailand
2. Radiation Physics Department, Radiation Emergency Medicine Institute, Hirosaki University, Aomori, 036-8564, Japan
3. National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage, Chiba, 263-8555, Japan
Abstract:A new portable type cascade impactor has been developed to determine the activity size distribution of radon and thoron progeny in a natural environment more efficiently. The modified impactor consists of 4 stages with a back up filter stage for the collection of aerosol samples. The aerosol cut points in the impactor are set for 10, 2.5, 1 and 0.5 μm at a flow rate of 4 L min?1. Five CR-39 chips were used as alpha detectors for each stage. In order to separate α particles emitted from radon and thoron progeny, CR-39 detectors are covered with aluminum-vaporized Mylar films. The thickness of each film is adjusted to allow α particles emitted from radon and thoron progeny to reach the CR-39 detectors. The technique has been successfully tested in field studies, particularly inside a mineral treatment industry in Thailand to estimate doses in the working environment. The dose calculations by lung dose evaluation program showed that activity median aerodynamic diameters played a significant role in determining the particle size distributions of the attached radon and thoron progeny. The dose conversion factor determined from short term measurements due to exposure from the inhalation of thoron and its progeny was found to be 4 times higher than comparable values for radon and its progeny. The effective dose for workers exposed to radon is about 4–6 times higher than thoron.
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