• 제목/요약/키워드: Barrier discharge

검색결과 398건 처리시간 0.033초

멀티 플라즈마 공정을 이용한 하수 미생물의 불활성화 (Inactivation of Sewage Microorganisms using Multi-Plasma Process)

  • 김동석;박영식
    • 한국환경과학회지
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    • 제23권5호
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    • pp.985-993
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    • 2014
  • For the field application of dielectric barrier discharge plasma reactor, a multi-plasma reactor was investigated for the inactivation of microorganisms in sewage. We also considered the possibility of degradation of non-biodegradable matter ($UV_{254}$) and total organic carbon (TOC) in sewage. The multi-plasma reactor in this study was divided into high voltage neon transformers, gas supply unit and three plasma modules (consist of discharge, ground electrode and quartz dielectric tube). The experimental results showed that the inactivation of microorganisms with treated water type ranked in the following order: distilled water > synthetic sewage effluent >> real sewage effluent. The dissolved various components in the real sewage effluent highly influenced the performance of the inactivation of microorganisms. After continuous plasma treatment for 10 min at 180 V, residual microorganisms appeared below 2 log and $UV_{254}$ absorbance (showing a non-biodegradable substance in water) and TOC removal rate were 27.5% and 8.5%, respectively. Therefore, when the sewage effluent is treated with plasma, it can be expected the inactivation of microorganisms and additional improvement of water quality. It was observed that the $NH_4{^+}$-N and $PO{_4}^{3-}$-P concentrations of sewage was kept at the constant plasma discharging for 30 min. On the other hand, $NO_3{^-}$-N concentration was increased with proceeding of the plasma discharge.

유전체장벽방전효과를 이용한 공해물질 제거 효율에 미치는 공간전하의 영향 분석 (Analysis of Effects of Space Charge in Removal efficiency of Pollutant using Dielectric Barrier Discharges)

  • 남석현;전승익;이동영;이준호;한민구
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1998년도 하계학술대회 논문집 D
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    • pp.1441-1443
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    • 1998
  • In this work, the effects of space charge was analyzed in removal efficiency of pollutant using dielectric barrier discharges. In order to investigate effects of space charge, two dielectrics(XLPE and TR-XLPE) was chosen which are different in space charge distribution. The simultaneously measurement of space charge and discharge current was carried out in XLPE and TR-XLPE with air gap by Pulsed-Electro-Acoustic Method in ac. Also, the removal efficiency is measured by classical ozone generator(von Siemens 1875). From the experimental results, we knew that the space charge distribution affects the discharge patterns. The more space charge is in surface, the quickly discharge initiates and the magnitude of discharge is increased when polarity changes. And these affect the removal efficiency of pollutant.

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산소-플라즈마 방전을 이용한 수중의 페놀 제거 (Phenol Removal Using Oxygen-Plasma Discharge in the Water)

  • 박영식
    • 한국환경과학회지
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    • 제22권7호
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    • pp.915-923
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    • 2013
  • Decomposition of non-biodegradable contaminants such as phenol contained in water was investigated using a dielectric barrier discharge (DBD) plasma reactor in the aqueous solutions with continuous oxygen bubbling. Effects of various parameters on the removal of phenol in aqueous solution with high-voltage streamer discharge plasma are studied. In order to choose plasma gas, gas of three types (argon, air, oxygen) were investigated. After the selection of gas, effects of 1st voltage (80 ~ 220 V), oxygen flow rate (2 ~ 7 L/min), pH (3 ~ 11), and initial phenol concentration (12.5 ~ 100.0 mg/L) on phenol degradation and change of $UV_{254}$ absorbance were investigated. Absorbance of $UV_{254}$ can be used as an indirect indicator of phenol degradation and the generation and disappearance of the non-biodegradable organic compounds. Removal of phenol and COD were found to follow pseudo first-order kinetics. The removal rate constants for phenol and COD of phenol were $5.204{\times}10^{-1}min^{-1}$ and $3.26{\times}10^{-2}min^{-1}$, respectively.

수처리용 유전체 장벽 방전 플라즈마 반응기 개발 (Development of Plasma Reactor of Dielectric Barrier Discharge for Water Treatment)

  • 김동석;박영식
    • 한국환경과학회지
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    • 제21권5호
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    • pp.597-603
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    • 2012
  • Non-thermal plasma processing using a dielectric barrier discharge (DBD) has been investigated as an alternative method for the degradation of non-biodegradable organic compounds in wastewater. The active species such as OH radical, produced by the electrical discharge may play an important role in degrading organic compound in water. The degradation of N, N-Dimethyl-4-nitrosoaniline (RNO) was investigated as an indicator of the generation of OH radical. The DBD plasma reactor of this study consisted of a plasma reactor, recycling pump, power supply and reservoir. The effect of diameter of external reactor (15 ~ 40 mm), width of ground electrode (2.5 ~ 30 cm), shape (pipe, spring) and material (copper, stainless steel and titanium) of ground electrode, water circulation rate (3.1 ~ 54.8 cm/s), air flow rate (0.5 ~ 3.0 L/min) and ratio of packing material (0 ~ 100 %) were evaluated. The experimental results showed that shape and materials of ground were not influenced the RNO degradation. Optimum diameter of external reactor, water circulation rate and air flow rate for RNO degradation were 30 mm, 25.4 cm/s and 4 L/min, respectively. Ground electrode length to get the maximum RNO degradation was 30 cm, which was same as reactor length. Filling up of glass beads decreased the RNO degradation. Among the experimented parameters, air flow rate was most important parameters which are influenced the decomposition of RNO.

수처리용 다중 유전체 방벽 방전 플라즈마 반응기 개발 (Development of Multi Dielectric Barrier Discharge Plasma Reactor for Water Treatment)

  • 김동석;박영식
    • 한국환경과학회지
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    • 제22권7호
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    • pp.863-871
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    • 2013
  • Dielectric discharges are an emerging technique in environmental pollutant degradation, which that are characterized by the production of hydroxyl radicals as the primary degradation species. For practical application of the plasma reactor, reactor that can handle large amounts of water are needed. Plasma research to date has focused on small-scale water treatment. This study was carried out basic study for scale-up of a single DBD (dielectric barrier discharge) plasma reactor. The degradation of N, N-Dimethyl-4-nitrosoaniline (RNO, indicator of the generation of OH radical) was used as a performance indicator of multi-plasma reactor. The experiments is divided into two parts: design parameters [effect of distance of single plasma module (1~14 cm), arrangement of ground electrode (single and multi), rector number (1~5) and power number (1~5)]; operation parameter [effect of applied voltage (60~220 V), air flow rate (1~5 L/min), electric conductivity of solution ($1.4{\mu}S/cm$, deionized water)~18.8 mS/cm (addition of NaCl 10 g/L) and pH (5~9)]. Considering the electric stability of the plasma reactor, optimum spacing between the single plasma module was 2 cm. Multi discharge electrodes - single ground electrode array was selected. Combination of power 3-plasma module 5 was the optimal combination for maximum RNO degradation. The optimum 1st voltage and air flow rate for RNO degradation were 180 V and 4 L/min, respectively. The pH and conductivity of the solution was not influencing the RNO degradation.

실린더형 무성방전을 이용하여 메탄올과 에탄올로부터 수소발생 특성 (Characteristics of Hydrogen Generation from Methanol and Ethanol using Cylindrical Barrier Discharge)

  • 박재윤
    • 조명전기설비학회논문지
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    • 제24권8호
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    • pp.32-39
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    • 2010
  • 오늘날 화석연료의 다량 사용에 의한 환경오염이 지구온난화를 가속시키고 기상이변을 일으키며 지구생태계에 심각한 영향을 미치고 있다. 수소는 이러한 환경문제를 근본적으로 해결해 줄 지속 가능한 그린에너지로 생각되고 있다. 본 연구는 결합구조가 다른 메탄올 및 에탄올의 개질을 통한 수소발생을 위해 실린더형 배리어 방전형의 반응기를 제작하였다. 반응기에 인가되는 고전압의 크기, 메탄올 및 에탄올 농도 및 캐리어 가스(N2) 유량 등의 변화에 따른 반응기의 방전특성과 수소발생 특성을 측정하고 화학구조에 따른 수소발생 영향을 분석하였다. 수소발생은 인가전압의 증가에 따라 선형적으로 증가하였고 메탄올의 경우가 많았다. 이는 메탄올과 에탄올의 결합구조와 관련이 있는 것으로 생각된다. 수소발생 에너지효율은 에탄올의 경우 인가전압이 증가하여 방전전력이 증가할수록 전체적으로 감소하지만 메탄올의 경우 전압 22[kV](peak-to-peak)를 인가한 경우 가장 에너지 효율이 높게 나타났다.

레이져 유기형광법을 이용한 펄스 배리어 방전 공간에서의 NO분자에 대한 시·공간적 밀도변화 측정 (A Spatio-Temporal Density Measurement of NO Molecules in Pulsed Barrier Discharge Using Laser Induced Fluorescence)

  • 한상보
    • 조명전기설비학회논문지
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    • 제24권5호
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    • pp.160-168
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    • 2010
  • 본 논문은 대기압 펄스 배리어 방전을 이용하여 NO 가스를 무해한 물질로 환원시키기 위하여 방전공간에서의 NO 분자의 생성 및 제거과정에 대하여 레이져 유기형광법을 이용하여 시 공간적인 밀도변화를 측정 및 분석하였다. 사용된 펄스 배리어 방전리액터는 진전속도가 $2.7{\times}10^6$[m/s] 인 1차 스트리머가 음극표면에 도착한 이후에 2차 스트리머가 양극 부근에 발생되었다. 그리고, 펄스 레이져에 의하여 NO 분자만을 효율적으로 상위준위로 여기시키기 위하여 Nd:Yag 및 염료 레이져를 복합하여 226[nm]의 자외광을 방전공간으로 도입하였으며, NO 분자만을 $A^2{\Sigma}^+{\leftarrow}X^2{\prod}$(0,0)으로 여기시키고, 여기된 분자들이 낮은 준위 $A^2{\Sigma}^+{\rightarrow}X^2{\prod}$(0,2), (0,3)로 복귀됨에 따라 방출되는 주요한 형광신호를 측정하였다. NO 분자의 시 공간적 변화 측정결과로부터 NO 가스를 효율적으로 제거하기 위해서는 산소농도를 가능한 2 [%]이하로 낮추고, 2차 스트리머 진전에 의해서 충분하게 방전공간에서 NO 환원반응을 유발할 수 있도록 제어하는 것이 필요하다고 판단된다.

Photosensitive Barrier Rib Paste and Materials and Process

  • Park, Lee-Soon;Kim, Soon-Hak;Jang, Dong-Gyu;Kim, Duck-Gon;Hur, Young-June;Tawfik, Ayman
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2005년도 International Meeting on Information Displayvol.II
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    • pp.823-827
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    • 2005
  • Barrier ribs in the plasma display panel (PDP) function to maintain the discharge space between the glass plates as well as to prevent optical crosstalk. Patterning of barrier ribs is one of unique processes for making PDP. Barrier ribs could be formed by screen-printing, sand blasting, etching, and photolithographic process. In this work photosensitive barrier rib pastes were prepared by incorporating binder polymer, solvent, functional monomers photoinitiator, and barrier rib powder of which surface was treated with fumed silica particles. Studies on the function of materials for the barrier rib paste were undertaken. After optimization of paste formulation and photolithographic process, it was applied to the photosensitive barrier rib green sheet and was found that photolithographic patterning of barrier ribs could be formed with good resolution up to $110{\mu}m$ height and $60{\mu}m$ width after sintering.

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동일한 전극 표면적에서 DBD방전형 내부전극 형상에 따른 오존생성특성 연구 (Ozone Production Characteristics of the DBD Discharge the Electrode Shape at the Same Electrode surface area)

  • 권영학;박현미;송현직;박원주
    • 조명전기설비학회논문지
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    • 제30권2호
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    • pp.71-77
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    • 2016
  • The dielectric barrier discharge (DBD) has low efficiency due to about 70% input power is consumed as thermal energy in the discharge space. However, because of the usage of DBD ozone generator is easier than other methods. The DBD ozone generator has been widely applied for high concentration ozone generation in the industrial application. But, the low-capacity compact DBD ozone generator is not applied so far. Therefore, the DBD ozone generator is necessary to improve ozone production efficiency and reduce the capacity. In this paper, the stainless steel pipe inner electrode was designed with hall type and screw type to improve the ozone production yield. The manufactured two inner electrodes were experimented with normal type for comparison of the discharge characteristics and the ozone generating characteristics. As the experimental results, the discharge current effective value of designed inner electrodes with hall type and screw type are higher than the normal type, due to unequal electric field is formed at the boundary. However, the difference of designed and original electrodes is less than 0.1mA that has no effect on the discharge characteristic. On the other hand, the screw type inner electrode increased higher than original model about 7 times when the flow rate of the oxygen source gas was increased from $0.6{\ell}/min$ to $1.0{\ell}/min$ The reason was assumed by the flow rate of the raw gas through the inner electrode was became fast that has a cooling effect. The designed hall type and screw type inner electrodes have shown good performances in ozone generation and ozone production that better than normal type in the same electrode surface area.