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핵종 이온 광물화 처리기술의 APR 1400 발전소 액체방사성폐기물관리계통 적용 위치에 대한 고찰

A Study on the Application of Ion Crystallization Technology to the APR 1400 Liquid Waste Management System

  • 고경민 (한국전력국제원자력대학원대학교) ;
  • 김창락 (한국전력국제원자력대학원대학교)
  • 투고 : 2019.09.30
  • 심사 : 2019.12.18
  • 발행 : 2019.12.30

초록

APR 1400 액체방사성폐기물관리계통 효율성 증가와 계통의 성능 개선을 위한 방안으로 핵종 이온 광물화 처리기술을 적용하는 것을 고려하였다. 핵종 이온 광물화 처리기술은 현재까지 발전소에 실제적으로 적용되진 않았지만 원자력발전소의 액체방사성폐기물에 존재하는 다양한 핵종 이온을 최소 95% 이상 선택적으로 제거 가능 하다는 것을 실험적으로 증명한 바 있다. 본 논문은 핵종 이온 광물화 처리기술의 제염율을 반영하여 기존 설계에 적용 가능성을 확인하였으며, 기존 설계를 개선할 수 있는 방안을 마련하였다. 핵종 이온 광물화 처리기술의 제염 특성과 기존의 액체방사성폐기물관리계통 설계 및 운전 경험을 고려하여 최적의 적용 위치를 결정하였다. 원자력발전 운영에 따라 발생하는 액체방사성물질이 수집되는 수집탱크에 핵종 이온 광물화 처리기술을 적용하는 것이 기존 설계의 영향이 가장 적을 것이며, 개선 효과도 가장 큰 것으로 해석되었다. 핵종 이온 광물화 처리기술이 현재의 APR 1400 발전소 또는 신규 원전에 적용될 경우 액체방사성폐기물관리계통의 운전 효율성 증가와 계통의 성능 개선이 기대된다.

The application of ion crystallization technology was considered as a way to increase the operating efficiency and improve the operating performance of a liquid waste management system (LWMS) in the Advanced Power Reactor 1400 (APR 1400). Although ion crystallization technology has not been practically applied to Nuclear Power Plants (NPPs) until now, a previous experimental study demonstrated that it is possible to selectively remove at least 95% of various nuclide ions present in the liquid radioactive waste of NPPs. We reviewed the possibility of applying ion crystallization technology to the existing LWMS by applying the nuclide removal rate of ion crystallization technology and prepared a way to improve the existing LWMS in the APR 1400. Furthermore, we determined the optimized application location of ion crystallization technology in the existing LWMS by considering decontamination characteristics of the ion crystallization technology and the existing LWMS design features and operating experiences. The application of ion crystallization technology to the liquid waste collection tank, where liquid radioactive materials are collected, will have the least impact on the existing design while providing the greatest improvement. It is expected that the application of ion crystallization technology to the current APR 1400 or new NPPs would increase the operating efficiency of the LWMS and result in an improvement of system performance.

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참고문헌

  1. B.S. Lee and G.J. Kim, "Design Experience of Liquid Radiation Waste System in Korea Nuclear Power Plant", Proc. of the Korean Radioact. Waste Soc., 1(2), 43-47, November 27-29 (2003)
  2. Korea Hydro & Nuclear Power Co. Ltd., Final Safety Analysis Report for Shin-Kori 3&4 (2018).
  3. J.K. Son, T.Y. Kong, J.R. Choi, and H.G. Kim, "A Review and Characteristics for Radioactive Effluents from the Nuclear Power Plants in Korea", J. Radiat. Prot., 37(3), 138-144 (2012). https://doi.org/10.14407/jrp.2012.37.3.138
  4. Y.J. Son, S.Y. Lee, J.Y. Jung, and C.L. Kim, "Development of Chemical and Biological Decontamination Technology for Radioactive Liquid Wastes and Feasibility Study for Application to Liquid Waste Management System in APR 1400", J. Nucl. Fuel Cycle Waste Technol., 17(1), 59-73 (2019). https://doi.org/10.7733/jnfcwt.2019.17.1.59
  5. J.M. Kim and C.L. Kim, "Performance Improvement of Liquid Waste Management System for APR 1400", Prog. Nucl. Energy, 100, 93-102 (2017). https://doi.org/10.1016/j.pnucene.2017.05.026
  6. Grazyna Zakrzewska-Trznadel, "Advances in membrane technologies for the treatment of liquid radioactive waste", Desalination, 321, 119-130 (2013). https://doi.org/10.1016/j.desal.2013.02.022
  7. H.R. Jo, K.R. Park, and J.G. Park, "Improvement of the Reverse Osmosis (RO) Processing Efficiency of Radioactive Liquid Waste by Scale Control", Proc. of the Korean Radioact. Waste Soc., 8(2), 133-134, October 7-9 (2010).
  8. D.S. Yuk, S.Y. Jung, A.R. Lee, and Y.G. Lee, "Status and Characteristics of Liquid Radioactive Emissions in Domestic Nuclear Power Plants", Proc. of the Korean Radioact. Waste Soc., 8(1), 377-378, May 13-14 (2010).