Molten Salt Oxidation of Ion-exchange Resins Doped with Toxic Metals and Radioactive Metal Surrogates
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概要
- 論文の詳細を見る
Ion-exchange resins doped with toxic metals and radioactive metal surrogates were test-burned in a bench-scale molten salt oxidation (MSO) reactor system. The purposes of this study are to confirm the destruction performance of the two-stage MSO reactor system for the organic ion-exchange resin and to obtain an understanding of the behavior of the fixed toxic metals and the sulfur in the cationic exchange resins. The destruction of the organics is very efficient in the primary reactor. The primarily destroyed products such as carbon monoxide are completely oxidized in the secondary MSO reactor. The overall collection of the sulfur and metals in the two-stage MSO reactor system appeared to be very efficient. Over 99.5% of all the fixed toxic metals (lead and cadmium) and radioactive metal surrogates (cesium, cobalt, strontium) remained in the MSO reactor bottom. Thermodynamic equilibrium calculations and the XRD patterns of the spent salt samples revealed that the collected metals existed in the form of each of their carbonates or oxides, which are non-volatile species at the MSO system operating conditions.
- 社団法人 日本原子力学会の論文
- 2005-01-25
著者
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Cho Yong-jun
Advanced Fuel Cycle Development Korea Atomic Energy Research Institute
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YANG Hee-Chul
Advanced Fuel Cycle Development, Korea Atomic Energy Research Institute
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EUN Hee-Chul
Advanced Fuel Cycle Development, Korea Atomic Energy Research Institute
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EUN Hee-Chul
Quantum Energy Chemical Engineering, University of Science and Technology
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YANG Hee-Chul
Nuclear Fuel Cycle R&D Group, Korea Atomic Energy Research Institute
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CHO Yong-Jun
Nuclear Fuel Cycle R&D Group, Korea Atomic Energy Research Institute
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Eun Hee-chul
Korea Atomic Energy Res. Inst.
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Eun Hee-chul
Advanced Fuel Cycle Development Korea Atomic Energy Research Institute
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Cho Yung-zun
Advanced Fuel Cycle Development Korea Atomic Energy Research Institute
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Yang Hee-chul
Advanced Fuel Cycle Development Korea Atomic Energy Research Institute
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Yang Hee-chul
Korea Atomic Energy Res. Inst.
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Yoo Jae-hyung
Nuclear Fuel Cycle R&d Group Korea Atomic Energy Research Institute
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KIM Joon-Hyung
Nuclear Fuel Cycle R&D Group, Korea Atomic Energy Research Institute
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Kim Joon-hyung
Nuclear Fuel Cycle R&d Group Korea Atomic Energy Research Institute
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Cho Yong-jun
Nuclear Fuel Cycle R&d Group Korea Atomic Energy Research Institute
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Eun Hee-chul
Quantum Energy Chemical Engineering University Of Science And Technology
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Yang Hee-chul
Nuclear Fuel Cycle R&d Group Korea Atomic Energy Research Institute
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