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문제권,바이갈마,원휘준,이근우,Moon, Jei-Kwon,Baigalmaa, Byambatseren,Won, Hui-Jun,Lee, Kune-Woo Korean Radioactive Waste Society 2010 방사성폐기물학회지 Vol.8 No.3
Metal surface decontamination characteristics were investigated by using a laser ablation method. A second harmonic generation of a Q-switched Nd:YAG laser with a wave length of 532 nm, a pulse energy of 150 mJ and a pulse width of 5 ns was employed to assess the decontamination performance for metal surfaces contaminated with $CsNO_3$, $Co(NH_4)_2(SO_4)_2$, $Eu_2O_3$ and $CeO_2$. The ablation behavior was investigated for the decontamination variables such as a number of laser shots, laser fluence and an irradiation angle. Their optimum values were found to be 8, 13.3 J/$cm^2$ and $30^{\circ}$, respectively. The decontamination efficiency was different depending on the kinds of the contaminated ions, due to their different melting and boiling points and was in the order: $CsNO_3>Co(NH_4)_2(SO_4)_2>Eu_2O_3>CeO_2$. We also evaluated a correlation between the metal ablation thickness and the number of laser shots for the different laser fluences.
방사성토양 복원을 위한 수직형 동전기-세정장치의 최적제염조건 도출
김계남,양병일,문제권,이근우,Kim, Gye-Nam,Yang, Byeong-Il,Moon, Jei-Kwon,Lee, Kune-Woo 한국방사성폐기물학회 2009 방사성폐기물학회지 Vol.7 No.3
Vertical electrokintic-flushing remediation equipment was developed for the remediation of a radioactive soil near nuclear facilities. An optimum reagent was selected to decontaminate the radioactive soil near nuclear facilities with the developed vertical electrokintic-flushing remediation equipment, and the optimum remediation conditions were established to obtain a higher remediation efficiency. Namely, acetic acid was selected as an optimum reagent due to its higher remediation efficiency. When the electrokinetic remediation and the electrokinetic-flushing remediation results were compared, the removal efficiency of 4.6% and the soil waste solution volume of 1.5 times were increased in the electrokinetic remediation. When the potential gradient within an electrokinetic soil cell was increased by two times (4.0 V/cm), the removal efficiencies of $Co^{2+}$ and $Cs^+$ were increased by about 4.3%($Co^{2+}$ : 98.9%, $Cs^+$ : 96.7%). Also, when the reagent concentration was increased from 0.01M to 0.05M, the removal efficiency of $Co^{2+}$ was increased but that of $Cs^+$ was decreased. Therefore, the optimum remediation conditions were that the acetic concentration was $0.01M{\sim}0.05M$, the potential gredient was 4 V/cm, the injection of reagent 2.4ml/g, and the remediation period was 20days.
동전기제염장치에서 발생한 폐액의 재사용을 위한 개선된 처리기술
김완석,김승수,김계남,박욱량,문제권,Kim, Wan-Suk,Kim, Seung-Soo,Kim, Gye-Nam,Park, Uk-Ryang,Moon, Jei-Kwon 한국방사성폐기물학회 2014 방사성폐기물학회지 Vol.12 No.1
우라늄으로 오염된 토양을 복원하기 위해 실규모의 동전기제염장치로 제염하는 과정에서 많은 산폐액이 발생한다. 발생한 산폐액에 CaO를 가해 우라늄수산화물을 침전시켜 여과한 다음, 방사성 폐액을 줄이기 위하여 이 용액을 재사용하였다. 그러나 이 용액을 동전기에 재사용할 경우, 높은 농도의 칼슘 때문에 양극실에서 음극실로 용액이동 속도가 감소하여 여과포의 약화, 전선 부식, 음극면에 산화물 부착 등의 문제점이 발생하였다. 이 문제들을 해결하기 위하여 재생액에 황산을 넣어 $CaSO_4$로 침전시켜 칼슘을 제거하였다. 칼슘이 제거된 재생액을 사용하여 소형 동전기 장치에서 20 일간 토양제염 실험을 수행한 결과는 세척후 토양내 우라늄 잔류 농도가 0.35 Bq/g로 감소하였으며, 이는 증류수 제염한 결과와 유사하게 나타났다. A large amount of acidic waste solution is generated from the practical electrokinetic decontamination equipments for the remediation of soil contaminated with uranium. After filtration of uranium hydroxides formed by adding CaO into the waste solution, the filtrate was recycled in order to reduce the volume of waste solution. However, when the filtrate was used in an electrokinetic equipment, the low permeability of the filtrate from anode cell to cathode cell due to a high concentration of calcium made several problems such as the weakening of a fabric tamis, the corrosion of electric wire and the adhension of metallic oxides to the surface of cathode electrode. To solve these problems, sulfuric acid was added into the filtrate and calcium in the solution was removed as $CaSO_4$ precipitate. A decontamination test using a small electrokinetic equipment for 20 days indicated that Ca-removed waste solution decreased uranium concentration of the waste soil to 0.35 Bq/g, which is a similar to a decontamination result obtained by distilled water.
김계남,정윤호,이정준,문제권,정종헌,정운수,Kim, Gye-Nam,Jung, Yun-Ho,Lee, Jung-Joon,Moon, Jei-Kwon,Jung, Chong-Hun,Chung, Un-Soo 한국방사성폐기물학회 2008 방사성폐기물학회지 Vol.6 No.1
This study examined the effect of an electrokinetic-flushing remediation for a soil of a high permeability. The soil was sampled from the site around a research atomic reactor which had high hydro-conductivities due to a high content of sand in the soil. The flow rate of the washing reagent was fast at the beginning but it was reduced as time lapsed. In the case of using citric acid as a washing reagent, the flow rate was fastest, 78.7 ml/day. The removal efficiencies of $Co^{2+}$ and $Cs^+$ from a soil cell with acetic acid were the highest, which were 95.2% and 84.2% respectively. The soil waste-solution volume generated from the electrokinetic remediation was reduced to about 1/20 of that from the soil washing remediation. Meanwhile, the electrokinetic-flushing method enhanced the removal efficiencies of $Co^{2+}$ and $Cs^+$ from the soil by about 6% and 2% respectively, compared to those by the electrokinetic method. Consequently, it was found that the electrokinetic-flushing method was more effective for the remediation of a soil with a high permeability.
박상윤,최왕규,이근우,문제권,오원진,Park Sang Yoon,Choi Wang Kyu,Lee Kune Woo,Moon Jei Kwon,Oh Won Zin 한국전기화학회 1999 한국전기화학회지 Vol.2 No.2
유해성 유기물을 효과적으로 분해시키는데 이용되는 Ag(II)이온에 의한 전기화학적 매개산화 공정의 한계전류밀도를 예측하기 위하여 질산전해질의 농도, Ag(I) 이온의 농도 및 온도변화에 따른 Ag(I)/Ag(II) 이온쌍의 cyclic voltammogram을 백금전극에서 얻었으며, 피크전류로부터 Ag(I) 이온의 확산계수를 구하였다. Ag(I)/Ag(II) 이온쌍의 산화환원 반응은 물 분해 반응에 의해 크게 영향을 받았으며 백그라운드 보정을 통하여 정확한 피크전류를 측정할 수 있었다. Ag(I) 이온의 확산계수를 질산용액의 점도 및 온도의 함수로 나타냄으로써 전기화학적 매개산화공정의 한계전류밀도를 용이하게 예측할 수 있는 실험식을 제시하였다. From the anodic peak currents of cyclic voltammograms for Ag(I)/Ag(II) couple obtained with the variation of nitric acid concentration, Ag(I) concentration and solution temperature at a Pt electrode in concentrated nitric acid solutions, the diffusion coefficients of Ag(I) ion were evaluated to estimate the limiting current density of Ag(II)-mediated electrochemical oxidation (MEO) process, which has been effectively used for the complete destruction of hazardous organic materials. The results showed that, due to the water decomposition reaction which occurred simultaneously with the Ag(I) ion oxidation, background subtractions for the cyclic voltammograms were required to estimate the correct peak currents. The empirical relationship for the diffusion coefficient of Ag(I) was suggested as a function of solution viscosity and temperature.
정삼투막에 의한 붕산함유 방사성 폐액 처리를 위한 pH 및 이온강도 영향
최혜민,황두성,이근우,문제권,Choi, Hye-Min,Hwang, Doo-Seong,Lee, Kune-Woo,Moon, Jei-Kwon 한국방사성폐기물학회 2013 방사성폐기물학회지 Vol.11 No.3
일반적으로 역삼투압 공정에 의해 중성 pH 조건에서 40~90%의 붕소를 회수할 수 있다.정삼투공정은 새로운 선진 기술로 폐수처리 및 담수화 분야에서 관심이 높아지고 있다. 본 연구의 목적은 정삼투공정으로 방사성 액체 폐기물의 붕소제거 가능성을 고찰하고자 하는데 있다. 액체폐기물에서의 붕소 제거를 위한 정삼투공정의 성능을 평가하기 위해 pH, 삼투압, 용액의 이온강도 등을 고려하였다. 폐액의 붕산분리능을 좌우하는 주 조업변수인 pH 조건은 pH 7 이하에서 80% 이상의 붕소분리를 달성할 수 있었다. 약 1,000 mg/L 정도의 염농도에서는 막의 물의 플럭스는 거의 영향이 없었으나 붕소 투과율은 약간 감소하는 경향을 나타내었다. 공급액 내 붕소 농도 증가에 따라 붕소플럭스는 선형적으로 증가하였으며, 붕소의 투과율은 약 80% 정도로 일정하였다.
박승국 ( Seung-kook Park ),문제권 ( Jei-kwon Moon ) 한국정보처리학회 2011 한국정보처리학회 학술대회논문집 Vol.18 No.1
해체대상 원자력시설의 해체계획 수립 및 엔지니어링을 위한 전산 시스템이 개발 중에 있다. 한국원 자력연구원의 연구로 1,2호기와 우라늄변환시설의 해체 활동에서 얻어진 귀한 해체 경험 정보/자료와 해체 대상 시설의 특성자료를 이용하여 해체작업 단위 생산성 산출 시스템(DEWOCS)을 개발하였다. 이 시스템을 통해 생산된 해체작업 단위생산성 인자값은 해체 엔지니어링 시스템의 개발에 중요한 자료를 제공하여 원자력시설의 해체설계에 활용될 것이다.