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논문 기본 정보

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학술저널
저자정보
Sopapan P. (Radioactive Waste Management Center Thailand Institute of Nuclear Technology (Public Organization)) Lamdab U. (Radioactive Waste Management Center Thailand Institute of Nuclear Technology (Public Organization)) Akharawutchayanon T. (Radioactive Waste Management Center Thailand Institute of Nuclear Technology (Public Organization)) Issarapanacheewin S. (Radioactive Waste Management Center Thailand Institute of Nuclear Technology (Public Organization)) Yubonmhat K. (Radioactive Waste Management Center Thailand Institute of Nuclear Technology (Public Organization)) Silpradit W. (Radioactive Waste Management Center Thailand Institute of Nuclear Technology (Public Organization)) Katekaew W. (Radioactive Waste Management Center Thailand Institute of Nuclear Technology (Public Organization)) Prasertchiewchan N. (Radioactive Waste Management Center Thailand Institute of Nuclear Technology (Public Organization))
저널정보
한국원자력학회 Nuclear Engineering and Technology Nuclear Engineering and Technology 제55권 제2호
발행연도
2023.2
수록면
517 - 523 (7page)
DOI
10.1016/j.net.2022.10.007

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The co-precipitation process plays a key role in the decontamination of radionuclides from low and intermediate levels of liquid waste. For that reason, the removal of Cs ions from waste solution by the coprecipitation method was carried out. A simulated liquid waste (133Cs) was prepared from a 0.1 M CsCl solution, while wastewater generated by washing steel ash served as a representative of radioactive cesium solution (137Cs). By co-precipitation, potassium ferrocyanide was applied for the adsorption of Cs ions, while nickel nitrate and iron sulfate were selected for supporting the precipitation. The amount of residual Cs ions in the CsCl solution after precipitation and filtration was determined by ICP-OES, while the radioactivity of 137Cs was measured using a gamma-ray spectrometer. After cesium removal, the amount of cesium appearing in both XRD and SEM-EDS was analyzed. The removal efficiency of 133Cs was 60.21% and 51.86% for nickel nitrate and iron sulfate, respectively. For the ash-washing solution, the removal efficiency of 137Cs was revealed to be more than 99.91% by both chemical agents. This implied that the co-precipitation process is an excellent strategy for the effective removal of radioactive cesium in waste solution treatment.

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