Risk Assessment of 30 MeV Cyclotron Facilities

30 MeV 사이클로트론 시설 위험성 평가

  • Jeong, Gyo-Seong (Advanced Radiation Technology Institute, Korea Atomic Energy Research Institute) ;
  • Kim, Chong-Yeal (Department of Radiation Science and Technology, Chonbuk National University) ;
  • Lee, Jin-Woo (Advanced Radiation Technology Institute, Korea Atomic Energy Research Institute)
  • 정교성 (한국원자력연구원 첨단방사선연구소) ;
  • 김종일 (전북대학교 방사선과학기술학과) ;
  • 이진우 (한국원자력연구원 첨단방사선연구소)
  • Received : 2016.12.09
  • Accepted : 2017.03.02
  • Published : 2017.03.31

Abstract

A cyclotron is a kind of particle accelerator that produces a beam of charged particles for the production of medical, industrial, and research radioisotopes. More than 30 cyclotrons are operated in Korea to produce $^{18}F$, an FDG synthesis at hospitals. A 30-MeV cyclotron was installed at ARTI (Advanced Radiation Technology Institute, KAERI) mainly for research regarding isotope production. In this study, we analyze and estimate the items of risk such as the problems in the main components of the cyclotron, the loss of radioactive materials, the leakage of coolant, and the malfunction of utilities, fires and earthquakes. To estimate the occurrence frequency in an accident risk assessment, five levels, i.e., Almost certain, Likely, Possible, Unlikely, and Rare, are applied. The accident consequence level is classified under four grades based on the annual permissible dose for radiation workers and the public in the nuclear safety law. The analysis of the accident effect is focused on the radioactive contamination caused by radioisotope leakage and radioactive material leakage of a ventilation filter due to a fire. To analyze the risks, Occupation Safety and Health Acts is applied. In addition, action plans against an accident were prepared after a deep discussion among relevant researchers. In this acts, we will search for hazard and introduce the risk assessment for the research 30-MeV cyclotron facilities of ARTI.

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