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KMID : 0357520150380040337
Journal of Radiological Science and Technology
2015 Volume.38 No. 4 p.337 ~ p.345
Measurement of Environmental Radiation Using Medical Scintillation Detector in Well Counter System
Lyu Kwang-Yeul

Park Yeon-joon
Kim Min-Jeong
Yoon Ji-yeol
Kim Hyun-jin
Min Jung-Whan
Park Hoon-Hee
Abstract
After the Fukushima nuclear accident in 2011, concerns about radiation by people are increasing rapidly. If people could know how much they will be exposed by radiation, it may help them avoiding it and understand what exactly radiation is. By doing this, we were helping to reduce the anxiety of radiation contamination. In this study, we have researched figures of radioactivity with ¡®Captus-3000 thyroid uptake measurement systems¡¯ in well counter detector system. The materials were measured with Briquette, Shiitake, Pollock, Button type battery, Alkaline battery, Topsoil, Asphalt, Gasoline, Milk powder, Pine, Basalt stone, Pencil lead, Wasabi, Coarse salt, Tuna(can) Cigar, Beer, and then we categorized those samples into Land resources, Water resources, Foodstuff and Etc (Beer classified as a water resources has been categorized into Foodstuff). Also, we selected the standard radiation source linear 137Cs to measure the sensitivity of well counter detector. After that, we took cpm(counter per minute) for the well counter detector of thyroid uptake system¡¯s sensitivity. Then we compared the results of each material¡¯s cpm and converted those results to Bq/kg unit. There were a little limitation with the measurement equipment because it has less sensitivity than other professional equipment like ¡®High purity germanium radiation detector¡¯. Moreover, We didn¡¯t have many choices to decide the materials. As a result, there are macroscopic differences among the rates of material¡¯s spectrum. Therefore, it had meaningful results that showed how much each material had emitted radiation. To compare the material¡¯s cpm with BKG, we¡¯ve compounded their spectrums. By doing that, we were able to detect some differences among the spectrums at specific peak section. Lastly, Button type battery, Alkaline Battery, Briquette, Asphalt and Topsoil showed high value. There were classified emitting high radiation Group A and emitted lower radiation Group B. The Group A, alkaline battery showed higher rate of radiation by 7.67 %, and Button type battery was yield 4.65 % higher rate than BKG. Additionally, Asphalt (8.03 %), Topsoil (3.76 %), Briquette (7.46 %) were yield for higher values. Several samples of the daily supplies were yield little higher, but it seems safe to use in daily lives. In the case of the ¡®Foodstuff¡¯, all of the samples were safe and they were under the radiation limits of the Ministry of Food and Drug Safety for Food; thus, we highly recommend this study to you as a reference of common daily routine.
KEYWORD
Captus - 3000 Thyroid uptake system, Well counter detector, Fukushima nuclear accident, Environmental radiation, The radiation limits of the Ministry of Food and Drug Safety for Food
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