조선대학교 사이클로트론 시설의 RI 배기필터 성능평가 및 18F 배출저감 연구

Performance of the RI Exhaust Filter at Chosun University Cyclotron Facility and 18F Emission Reduction

  • 정철기 (조선대학교 원자력공학과) ;
  • 장한 (조선대학교 원자력공학과) ;
  • 이경진 (조선대학교 원자력공학과)
  • Jeong, Cheol-Ki (Department of Nuclear Engineering, Chosun University) ;
  • Jang, Han (Department of Nuclear Engineering, Chosun University) ;
  • Lee, Goung-Jin (Department of Nuclear Engineering, Chosun University)
  • 투고 : 2016.10.26
  • 심사 : 2017.02.03
  • 발행 : 2017.03.31

초록

Recently, the number of PET cyclotrons has increased in Korea. A cyclotron mainly produces $^{18}F$, which is used for the production of [$^{18}F$]FDG, a cancer diagnostic radiopharmaceutical. For radiation protection, the discharge control standard under the Nuclear Safety Act limits the radioactive concentration of $^{18}F$ in the exhaust discharged from a nuclear power utilization facility to below $2,000Bq\;m^{-3}$. However, the radioactive concentration of $^{18}F$ discharged during [$^{18}F$]FDG production at the cyclotron facility at Chosun University is maintained at about $1,500Bq\;m^{-3}$ on average, which is 75% of the concentration limit of the discharge control standard, and temporarily exceeds the standard as per the real-time monitoring results. This study evaluated the performance of the exhaust filter unit of the cyclotron facility at Chosun University by assessing the concentration of $^{18}F$ in the exhaust, and an experiment was conducted on the discharge reduction, where $^{18}F$ is discharged without reacting with the FDG precursors during [$^{18}F$]FDG synthesis and is immediately captured by the [$^{18}F$]FDG automatic synthesis unit. Based on the performance evaluation results of the exhaust filter at the cyclotron facility of Chosun University, the measured capture efficiency before and after the filter was found to be 92%. Furthermore, the results of the discharge reduction experiment, where the exhaust $^{18}F$ was immediately captured by the [$^{18}F$]FDG synthesizer, showed a very satisfactory 94.3% reduction in the concentration of discharge compared to the existing discharge concentration.

키워드

과제정보

연구 과제 주관 기관 : 조선대학교