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Improvement of Pilot-scale Electrokinetic Remediation Technology for Uranium Removal KCI 등재 SCOPUS

우라늄 제거를 위한 실험실 규모 동전기 장치의 개선 방안

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방사성폐기물학회지 (Journal of the Korean Radioactive Waste Society)
한국방사성폐기물학회 (Korean Radioactive Waste Society)
초록

방사능 오염 토양 복원을 위해 실험실 규모의 동전기 복원장치를 제작하여 가동 하던 중 토양 내 존재하던 금속이온의 용출로 금속 산화물이 발생하여 음극의 전류 흐름을 차단하는 문제가 발생하였다. 전류의 차단으로 토양 내 우라늄 제거 능력이 상실되어 이러한 문제를 해결하는 해결 방안을 모색하여 개선된 동전기 복원 장치를 제작하였다. 개선된 실험실 규모 동전기 복원 장치를 이용하여 토양복원 실험을 25 일간 수행 하였을 때 우라늄 잔류 농도는 0.81 Bq/g으로 약 96.8%의 제거 효율을 보였으며, 초기 우라늄 농도 50 Bq/g 일 때 우라늄 규제 해제 농도인 1 Bq/g 이하로 제거 되기 까지는 34 일의 복원 기간이 필요하고, 초기 우라늄 농도 75 Bq/g, 100 Bq/g 일 때 각 42 일, 49 일이 필요한 것으로 나타났다.

The original pilot-scale electrokinetic equipment suitable to soil contamination characteristics of Korean nuclear facility sites was manufactured for the remediation of soil contaminated with uranium. During the experiment with the original electrokinetic equipment, many metal oxides were generated and were stuck on the cathode plate. The uranium removal capability of the original electrokinrtic equipment was almost exhausted because the cathode plate covered with metal oxides did not conduct electricity in the original electrokinetic equipment. Therefore, the original electrokinetic equipment was improved. After the remediation experience for 25 days using the improved electrokinetic remediation equipment, the removal efficiency of uranium from the soil was 96.8% and its residual uranium concentration was 0.81 Bq/g. When the initial uranium concentration of soil was about 50 Bq/g, the electrokinetic remediation time required to remediate the uranium concentration below clearance concentration of 1.0 Bq/g was about 34 days. When the initial uranium concentration of soil was about 75 Bq/g, the electrokinetic remediation time required to remediate below 1.0 Bq/g was about 42 days. When the initial uranium concentration of soil was about 100 Bq/g, the electrokinetic remediation time required to remediate below 1.0 Bq/g was about 49 days.

목차
Abstract   요약   1. 서론   2. 실험 재료 및 방법    2.1 실험재료    2.2 실험방법    2.3 분석 방법   3. 결과 및 고찰    3.1 방사능 오염 토양 특성    3.2 동전기 복원 장치 개선 및 토양 복원   4. 결론   감사의 글   REFERENCES
저자
  • Hye-Min Park(Korea Atomic Energy Research Institute) | 박혜민
  • Gye-Nam Kim(Korea Atomic Energy Research Institute,) | 김계남 Corresponding Author
  • Seung-Soo Kim(Korea Atomic Energy Research Institute) | 김승수
  • Wan-Suk Kim(Korea Atomic Energy Research Institute) | 김완석
  • Uk-Ryang Park(Korea Atomic Energy Research Institute) | 박욱량
  • Jei-Kwon Moon(Korea Atomic Energy Research Institute) | 문제권