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자료유형
학술저널
저자정보
저널정보
한국원자력학회 Nuclear Engineering and Technology Nuclear Engineering and Technology 제47권 제7호
발행연도
2015.1
수록면
827 - 837 (11page)

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Following a severe accident in a nuclear power plant, iodine is a major contributor to thepotential health risks for the public. Because the amount of iodine released largely dependson its volatility, iodine's behavior in containment has been extensively studied in internationalprograms such as International Source Term Programme-Experimental Programon Iodine Chemistry under Radiation (EPICUR), Organization for Economic Co-operationand Development (OECD)-Behaviour of Iodine Project, and OECD-Source Term Evaluationand Mitigation. Korea Institute of Nuclear Safety (KINS) has joined these programs and isdeveloping a simplified, stand-alone iodine chemistry model, RAIM (Radio-Active Iodinechemistry Model), based on the IMOD methodology and other previous studies. This modeldeals with chemical reactions associated with the formation and destruction of iodinespecies and surface reactions in the containment atmosphere and the sump in a simplemanner. RAIM was applied to a simulation of four EPICUR tests and one Radioiodine TestFacility test, which were carried out in aqueous or gaseous phases. After analysis, the resultsshow a trend of underestimation of organic and molecular iodine for the gas-phaseexperiments, the opposite of that for the aqueous-phase ones, whereas the total amountof volatile iodine species agrees well between the experiment and the analysis result.

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