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플라즈마토치 용융로 운전경험을 통한 내화물 수명 증진 방안
문영표,최장영 한국방사성폐기물학회 2016 방사성폐기물학회지 Vol.14 No.2
플라즈마토치 용융로에 있어서 내화물의 보수를 최소화하고 용융물의 배출을 원활하게 하기 위해서는 처리대상 폐기물의 물성을 충분히 고려하여야 한다. 원전에서 발생되는 비가연성 방사성폐기물 중 많은 비중을 차지하고 있는 콘크리트 조각, 유리, 모래 등에 대한 화학적 조성비를 조사하여 보면 산성산화물이 염기성산화물에 비해 압도적으로 많은 비중을 차지하고 있으므로 용융 시 염기도가 매우 낮은 산성 슬래그가 된다. 이 용융슬래그는 유동도가 낮아서 용융물의 배출특성이 좋지 않으며 내화물에 침식을 유발시키는 주된 요인이 된다. 경사형 구조의 측면 출탕구를 가진 플라즈마토치 용융로의 경우, 구조상출탕 후 일정량의 금속성 용융물이 항상 용융로 내부 바닥과 출탕구에 남게 된다. 비중차에 의해 비금속 용융슬래그는 금속성 용융물 상부에 위치하게 되며 혼합형 플라즈마토치를 이행형 운전모드로 가동하게 되면 금속성 용융물과 비금속 용융물이 동시에 용융되므로 비금속 용융슬래그의 온도는 금속 용융온도 이상으로 유지가 된다. 내화물의 수명 향상을 위해 용융로내부의 온도와 용융물과 접촉하는 부위와 접촉되지 않는 부위를 구별하여 내화물의 특성을 주지하고 가장 적합한 내화물을부위별로 선정하였다. 산성 내화물과 염기성 내화물이 인접하지 않도록 하고 용융슬래그에 대한 저항성을 높이도록 하였다. The properties of wastes for melting need to be considered to minimize the maintenance of refractory and to discharge the molten slags smoothly from a plasma torch melter. When the nonflammable wastes from nuclear facilities such as concrete debris, glass, sand, etc., are melted, they become acid slags with low basicity since the chemical composition has much more acid oxides than basic oxides. A molten slag does not have good characteristics of discharge and is mainly responsible for the refractory erosion due to its low liquidity. In case of a stationary plasma torch melter with a slant tapping port on the wall, a fixed amount of molten slags remains inside of tapping hole as well as the melter inside after tapping out. Nonmetallic slags keep the temperature higher than melting point of metal because metallic slags located on the bottom of melter by specific gravity difference are simultaneously melted when dual mode plasma torch operates in transferred mode. In order to minimize the refractory erosion, the compatible refractories are selected considering the temperature inside the melter and the melting behavior of slags whether to contact or noncontact with molten slags. An acidic refractory shall not be installed in adjacent to a basic refractory for the resistibility against corrosion.
출탕유도전극을 이용한 용융물의 출탕방법 및 특성에 대한 연구
문영표(Young-Pyo Moon),최장영(Jang-Young Choi) 대한전기학회 2016 전기학회논문지 Vol.65 No.3
For safety and economy reasons, hazardous waste including radioactive waste is desired to be converted into stable waste forms with a maximum volume reduction. High temperature melting technology using a plasma torch system can effectively treat even the non-flammable waste as desired. By far, one of the most difficult process for melting the non-flammable waste is a tapping of melts because the melting point of a residual slag in the tapping hole is high and because the viscosity of the melt increases sharply when tapping out. In case of a stationary furnace with a slant tapping port on the side of furnace, a certain amount of melts is left in the tapping hole after tapping out. Because of this, at every end of a melting cycle, the tapping hole needs to be opened by tapping device. The developed tapping device of melts based on both a guide electrode and auxiliary electrode is adequate for the application to discharge of melts except that the consumption of the guide electrode is somewhat faster than expected. Melt is collected in the water cooled vessel.
비전도성 폐기물 용융처리를 위한 혼합형 플라즈마토치 시스템 특성 연구
문영표(Young-Pyo Moon),최장영(Jang-Young Choi) 대한전기학회 2016 전기학회논문지 Vol.65 No.1
The preliminary test for the dual mode plasma torch system was carried out to explore the operation properties in advance. The dual mode plasma torch system that is able to operate in transferred, non-transferred, or dual mode is very adequate for melting the mixed wastes including nonconductive materials such as concrete, asbestos, etc. since it exploits both the high efficiency of heat transfer to the melt in transferred mode and stable operation in non-transferred mode. Also, system operation including restarting is reliable and very easy. A stationary melter with a refractory structure was designed and manufactured considering the melting behavior of slags to minimize the refractory erosion. The power supply for the dual mode plasma torch system built with high power insulated gate bipolar transistor (IGBT) modules has functions for both current control and voltage control and is sufficient to suppress the harmonics during the operation of the plasma torch. The power supply provides two different voltages for transferred operation and non-transferred. It is confirmed that the operation voltage in transferred is always higher than non-transferred. The dual mode plasma torch system was successfully developed and is under operation for a melting experiment to optimize operation data.
방사성폐기물 신분류기준을 고려한 중저준위 방사성폐기물 처분시설의 핵종재고량 예측
정강일,정노겸,문영표,정미선,박진백 한국방사성폐기물학회 2016 방사성폐기물학회지 Vol.14 No.1
국내의 중저준위 방사성폐기물 처분시설에 대한 핵종량은 대부분의 방사성핵종에 대한 규명이 요구되어 진다. 본 논문에서는 국내 경주 처분시설 부지에서 방사성폐기물의 처분을 위한 처분시설의 활용도 및 효율성 그리고 신분류기준을 반영한핵종재고량을 예측하였다. 장기 방사성폐기물의 예측하기 위해 2014년까지 다양한 발생원별 방사성폐기물의 발생량과 발생전망을 분석하였다. 예측된 핵종재고량 결과는 처분시설에 대한 안정적인 개발 및 Safety case의 구축하는데 기여할 것으로 판단된다. To meet nuclear regulatory requirements, more than 95% individual radionuclides in the low- and intermediate-level radioactive waste inventory have to be identified. In this study, the radionuclide inventory has been estimated by taking the long-term radioactive waste generation, the development plan of disposal facility, and the new radioactive waste classification into account. The state of radioactive waste cumulated from 2014 was analyzed for various radioactive sources and future prospects for predicting the long-term radioactive waste generation. The predicted radionuclide inventory results are expected to contribute to secure the development of waste disposal facility and to deploy the safety case for its long-term safety assessment.