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      KCI등재 SCIE SCOPUS

      Thermal-hydraulic safety analysis of radioisotope production in HANARO using MCNP6 and COMSOL multiphysics: A feasibility study

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      https://www.riss.kr/link?id=A108816740

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      다국어 초록 (Multilingual Abstract)

      The High-flux Advanced Neutron Application Reactor (HANARO) produces radioisotopes (RIs) (131I, 192Ir, etc.) through neutron irradiation on various RI production targets. Among them, 177Lu and 166Ho are particularly promising owing to their theranostic characteristics that facilitate simultaneous diagnosis and treatment. Prior to neutron irradiation, evaluating the nuclear heating of the RI production target is essential for ensuring the thermal-hydraulic safety of HANARO. In this study, the feasibility of producing 177Lu and 166Ho using irradiation holes of HANARO was investigated in terms of thermal-hydraulic safety. The nuclear heating rates of the RI production target by prompt and delayed radiation were calculated using MCNP6. The calculated nuclear heating rates were used as an input parameter in COMSOL Multiphysics to obtain the temperature distribution in an irradiation hole. The degree of temperature increase of the 177Lu and 166Ho production targets satisfied the safety criteria of HANARO. The nuclear heating rates and temperature distribution obtained through the in silico study are expected to provide valuable insight into the production of 177Lu and 166Ho using HANARO.
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      The High-flux Advanced Neutron Application Reactor (HANARO) produces radioisotopes (RIs) (131I, 192Ir, etc.) through neutron irradiation on various RI production targets. Among them, 177Lu and 166Ho are particularly promising owing to their theranosti...

      The High-flux Advanced Neutron Application Reactor (HANARO) produces radioisotopes (RIs) (131I, 192Ir, etc.) through neutron irradiation on various RI production targets. Among them, 177Lu and 166Ho are particularly promising owing to their theranostic characteristics that facilitate simultaneous diagnosis and treatment. Prior to neutron irradiation, evaluating the nuclear heating of the RI production target is essential for ensuring the thermal-hydraulic safety of HANARO. In this study, the feasibility of producing 177Lu and 166Ho using irradiation holes of HANARO was investigated in terms of thermal-hydraulic safety. The nuclear heating rates of the RI production target by prompt and delayed radiation were calculated using MCNP6. The calculated nuclear heating rates were used as an input parameter in COMSOL Multiphysics to obtain the temperature distribution in an irradiation hole. The degree of temperature increase of the 177Lu and 166Ho production targets satisfied the safety criteria of HANARO. The nuclear heating rates and temperature distribution obtained through the in silico study are expected to provide valuable insight into the production of 177Lu and 166Ho using HANARO.

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      참고문헌 (Reference)

      1 A.G. Croff, "User’s Manual for the ORIGEN2 Computer Code" Oak Ridge National Laboratory 1980

      2 박준식 ; 박병건 ; 선광민, "Thermal-annealing behavior of in-core neutron-irradiated epitaxial 4H SiC" 한국원자력학회 55 (55): 209-214, 2023

      3 C. Müller, "Therapeutic radiometals beyond 177Lu and 90Y: production and application of promising α-particle, β- -particle, and auger electron emitters" 58 : 91S-96S, 2017

      4 A. Dash, "Targeted radionuclide therapy-an overview" 6 : 152-180, 2013

      5 J.L. Conlin, "Release of ENDF/BVIII. 0-based ACE Data Files" Los Alamos National Laboratory 2018

      6 E. Rosenblatt, "Radiotherapy in Cancer Care: Facing the Global Challenge" International Atomic Energy Agency 2017

      7 MatWeb LLC, "Material Property Data"

      8 M. Verpelli, "LiveChart of nuclides" International Atomic Energy Agency

      9 T. Goorley, "Initial MCNP6 release overview" 180 : 298-315, 2012

      10 B.G. Park, "Evaluation of Nuclear Heating Rate by Delayed Gamma Rays from Fission Products of HANARO" Korea Atomic Energy Research Institute 2018

      1 A.G. Croff, "User’s Manual for the ORIGEN2 Computer Code" Oak Ridge National Laboratory 1980

      2 박준식 ; 박병건 ; 선광민, "Thermal-annealing behavior of in-core neutron-irradiated epitaxial 4H SiC" 한국원자력학회 55 (55): 209-214, 2023

      3 C. Müller, "Therapeutic radiometals beyond 177Lu and 90Y: production and application of promising α-particle, β- -particle, and auger electron emitters" 58 : 91S-96S, 2017

      4 A. Dash, "Targeted radionuclide therapy-an overview" 6 : 152-180, 2013

      5 J.L. Conlin, "Release of ENDF/BVIII. 0-based ACE Data Files" Los Alamos National Laboratory 2018

      6 E. Rosenblatt, "Radiotherapy in Cancer Care: Facing the Global Challenge" International Atomic Energy Agency 2017

      7 MatWeb LLC, "Material Property Data"

      8 M. Verpelli, "LiveChart of nuclides" International Atomic Energy Agency

      9 T. Goorley, "Initial MCNP6 release overview" 180 : 298-315, 2012

      10 B.G. Park, "Evaluation of Nuclear Heating Rate by Delayed Gamma Rays from Fission Products of HANARO" Korea Atomic Energy Research Institute 2018

      11 노태양 ; 박병건 ; 김명섭, "Estimation of nuclear heating by delayed gamma rays from radioactive structural materials of HANARO" 한국원자력학회 50 (50): 446-452, 2018

      12 이승곤 ; 이수승 ; 강명구 ; 우경석 ; 양성우 ; 이준식, "Development of fission 99Mo production process using HANARO" 한국원자력학회 52 (52): 1517-1523, 2020

      13 H. Kim, "Design characteristics and startup tests of HANARO" 33 : 527-538, 1996

      14 조기남 ; 조만순 ; 양성우 ; 박상준, "Contribution of HANARO Irradiation Technologies to National Nuclear R&D" 한국원자력학회 46 (46): 501-512, 2014

      15 E. J. F. Dickinson, "COMSOL Multiphysics® : finite element software for electrochemical analysis. A mini-review" 40 : 71-74, 2014

      16 B.C. Lee, "Analysis on the Detailed Heat Generation Rate for the HANARO" Korea Atomic Energy Research Institute 2008

      17 선광민 ; 이재기 ; 엄영랑 ; 백하니, "An investigation of excretion of calcium from female mice ingested with boron by using neutron activation analysis" 한국원자력학회 52 (52): 2581-2584, 2020

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