• 제목/요약/키워드: Mesh Voltage

검색결과 77건 처리시간 0.028초

충전복극전해조에 의한 암모니아성 및 질산성 질소의 전해처리 (Electrolytic Treatment of Ammonium Nitrogen and Nitrate Nitrogen by Bipolar Packed Bed Electrolytic Cell)

  • 윤철종;유현철;김정섭;이봉섭;곽명화;박승조
    • 대한환경공학회지
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    • 제27권7호
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    • pp.686-689
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    • 2005
  • 회분식 및 연속식 충전 복극전해조 사용시 인가전압, 전해시간 및 활성탄 충진고 등이 암모니아성 및 질산성 질소 제거에 미치는 영향을 검토할 목적으로 실험하였다. 회분식 충전복극 전해조에 $4{\times}8$ mesh GAC를 충전한 후 20 V의 전위에서 30분간 전해한 결과 활성탄 충진고가 80 mm인 경우 암모니아성 질소 제거효율은 전해시간 30분에서 99.9%, 질산성 질소 제거효율은 전해시간 60분에서는 97.6%이었다. 그리고 암모니아성 및 질산성 질소를 연속식으로 처리시 활성탄을 280 mm 충전한 충전복극전해조에 총 질소 농도가 30 mg/L가 되도록 조제한 질산암모늄 시료를 6.7 mL/min 속도로 주입하면서 72시간 연속전해 결과 총 질소 제거효율은 약 80% 이상이었다.

소규모 마이크로그리드에서 프로슈머관리시스템의 구현 (Implementation of Prosumer Management System for Small MicroGrid)

  • 임수연;이태원
    • 한국정보전자통신기술학회논문지
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    • 제13권6호
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    • pp.590-596
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    • 2020
  • 상용전력망과 계통연계가 어려운 도서지역에서는 독립적인 마이크로그리드로 생산된 에너지를 효율적으로 관리할 수 있는 방법을 찾는 것은 매우 중요한 일이다. 본 논문에서는 태양광과 풍력의 하이브리드 모델을 적용한 소규모 마이크로그리드에서 생산된 전력을 전력계측기와 수집된 데이터의 응답속도 테스트를 거쳐 P2P전력거래를 위한 프로슈머관리시스템을 구현하였다. 마이크로그리드 프로슈머 관리시스템의 전력망은 Mesh구조로 이루어져 있으며 P2P전력거래는 3곳의 독립적으로 구축된 off-grid 사이트에서 전력계측기와 DC전력전송기를 이용하여 테스트하였고, 이때 전력계측기의 측정값은 전압(평균값) : 380V + 0.9V, 전류(평균값) : + 0.01A, 전력 : 1000W ( - 1W)로 오차 허용범위인 ±1%이내로 나타나 그 유의성을 확인하였다. 실시간으로 50개의 데이터를 동시 전송하여 메인화면 0.32초, 일 발전량 2.61초, 누적발전량 2.77초, 전력거래 0.11초 등의 응답속도가 나타나 서버의 안정화를 확인하였다. 따라서 본 시스템은 한국전력의 중계 없이 독립적인 망으로 활용될 수 있는 P2P 전력거래시스템으로서 그 타당성이 입증되었다.

Experimental Study on Four Cation Exchange Membranes in Electrosynthesis of Ammonium Persulfate

  • Wang, Chao;Zhou, Junbo;Gao, Liping
    • Journal of Electrochemical Science and Technology
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    • 제9권1호
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    • pp.37-43
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    • 2018
  • In order to improve current efficiency and decrease energy consumption in the electrosynthesis of ammonium persulfate, electrolytic properties of four cation exchange membranes, namely, the $JCM-II^{(R)}$ membrane, $Nafion^{(R)}$ 324 membrane CMI-$7000^{(R)}$ membrane and a self-made perfluorosulfonic ion exchange membrane (PGN membrane) were investigated using a sintered platinized titanium anode and a Pb-Sb-Sn alloy cathode in a self-made electrolytic cell. The effect of cell voltage and electrolyte flow rate on the current efficiency and the energy consumption were investigated. The results indicated that the PGN membrane could improve current efficiency to 94.85% and decrease energy consumption to $1119kWh\;t^{-1}$ (energy consumption per ton of the ammonium persulfate generated) under the optimal operating conditions and the highest current efficiency of the $JCM-II^{(R)}$ membrane, $Nafion^{(R)}$ 324 membrane and CMI-$7000^{(R)}$ membrane were 80.73%, 77.76% and 73.22% with their lowest energy consumption of $1323kWh\;t^{-1}$, $1539kWh\;t^{-1}$ and $2256kWh\;t^{-1}$, respectively. The PGN membrane has the advantages of high current efficiency and energy power consumption and has sufficient mechanical strength with the reinforced mesh. Therefore the PGN membrane will has good value in popularization in the industrial electrosynthesis of ammonium persulfate in the future.

네트워크 배전계통용 통신기반 보호협조에 관한 연구 (A study of communication-based protection coordination for networked distribution system)

  • 김우현;채우규;황성욱;이학주
    • KEPCO Journal on Electric Power and Energy
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    • 제8권1호
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    • pp.43-48
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    • 2022
  • Although the distribution system has been structured as complicated as a mesh in the past, the connection points for each line are always kept open, so that it is operated as a radial distribution system (RDS). For RDS, the line utilization rate is determined according to the maximum load on the line, and the utilization rate is usually kept low. In addition, when a fault occurs in the RDS, a power outage of about 3 to 5 minutes occurs until the fault section is separated, and the healthy section is transferred to another line. To improve the disadvantages of the RDS, research on the construction of a networked distribution system (NDS) that linking multiple lines is in progress. Compared to the RDS, the NDS has advantages such as increased facility utilization, load leveling, self-healing, increased capacity connected to distributed generator, and resolution of terminal voltage drop. However, when a fault occurs in the network distribution system, fault current can flow in from all connected lines, and the direction of fault current varies depending on the fault point, so a high-precision fault current direction determination method and high-speed communication are required. Therefore, in this paper, we propose an accurate fault current direction determination method by comparing the peak value polarity of the fault current in the event of a fault, and a communication-based protection coordination method using this method.

Carbon nanotube field emission display

  • Chil, Won-Bong;Kim, Jong-Min
    • E2M - 전기 전자와 첨단 소재
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    • 제12권7호
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    • pp.7-11
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    • 1999
  • Fully sealed field emission display in size of 4.5 inch has been fabricated using single-wall carbon nanotubes-organic vehicle com-posite. The fabricated display were fully scalable at low temperature below 415$^{\circ}C$ and CNTs were vertically aligned using paste squeeze and surface rubbing techniques. The turn-on fields of 1V/${\mu}{\textrm}{m}$ and field emis-sion current of 1.5mA at 3V/${\mu}{\textrm}{m}$ (J=90${\mu}{\textrm}{m}$/$\textrm{cm}^2$)were observed. Brightness of 1800cd/$m^2$ at 3.7V/${\mu}{\textrm}{m}$ was observed on the entire area of 4.5-inch panel from the green phosphor-ITO glass. The fluctuation of the current was found to be about 7% over a 4.5-inch cath-ode area. This reliable result enables us to produce large area full-color flat panel dis-play in the near future. Carbon nanotubes (CNTs) have attracted much attention because of their unique elec-trical properties and their potential applica-tions [1, 2]. Large aspect ratio of CNTs together with high chemical stability. ther-mal conductivity, and high mechanical strength are advantageous for applications to the field emitter [3]. Several results have been reported on the field emissions from multi-walled nanotubes (MWNTs) and single-walled nanotubes (SWNTs) grown from arc discharge [4, 5]. De Heer et al. have reported the field emission from nan-otubes aligned by the suspension-filtering method. This approach is too difficult to be fully adopted in integration process. Recently, there have been efforts to make applications to field emission devices using nanotubes. Saito et al. demonstrated a car-bon nanotube-based lamp, which was oper-ated at high voltage (10KV) [8]. Aproto-type diode structure was tested by the size of 100mm $\times$ 10mm in vacuum chamber [9]. the difficulties arise from the arrangement of vertically aligned nanotubes after the growth. Recently vertically aligned carbon nanotubes have been synthesized using plasma-enhanced chemical vapor deposition(CVD) [6, 7]. Yet, control of a large area synthesis is still not easily accessible with such approaches. Here we report integra-tion processes of fully sealed 4.5-inch CNT-field emission displays (FEDs). Low turn-on voltage with high brightness, and stabili-ty clearly demonstrate the potential applica-bility of carbon nanotubes to full color dis-plays in near future. For flat panel display in a large area, car-bon nanotubes-based field emitters were fabricated by using nanotubes-organic vehi-cles. The purified SWNTs, which were syn-thesized by dc arc discharge, were dispersed in iso propyl alcohol, and then mixed with on organic binder. The paste of well-dis-persed carbon nanotubes was squeezed onto the metal-patterned sodalime glass throuhg the metal mesh of 20${\mu}{\textrm}{m}$ in size and subse-quently heat-treated in order to remove the organic binder. The insulating spacers in thickness of 200${\mu}{\textrm}{m}$ are inserted between the lower and upper glasses. The Y\ulcornerO\ulcornerS:Eu, ZnS:Cu, Al, and ZnS:Ag, Cl, phosphors are electrically deposited on the upper glass for red, green, and blue colors, respectively. The typical sizes of each phosphor are 2~3 micron. The assembled structure was sealed in an atmosphere of highly purified Ar gas by means of a glass frit. The display plate was evacuated down to the pressure level of 1$\times$10\ulcorner Torr. Three non-evaporable getters of Ti-Zr-V-Fe were activated during the final heat-exhausting procedure. Finally, the active area of 4.5-inch panel with fully sealed carbon nanotubes was pro-duced. Emission currents were character-ized by the DC-mode and pulse-modulating mode at the voltage up to 800 volts. The brightness of field emission was measured by the Luminance calorimeter (BM-7, Topcon).

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염수 전해용 가스확산 전극에 관한 연구 (Research on the Gas Diffusion Electrode for the Brine Electrolysis)

  • 이동호;이광현;한정우;임정택;이오상;이재도
    • 전기화학회지
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    • 제5권1호
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    • pp.7-12
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    • 2002
  • 염수 전해 공정에서 산소음극형 가스화산전극의 적용에 대해 연구, 조사하였다. 가스확산전극은 반응층, 가스확산층, 급 전체로 구성된다. 반응층은 친수성 카본블랙, 소수성 카본블랙, PTFE(polytetrafluoroethylene), 은거울반응이나 함침법에 의해 담지된 은 촉매로 제조하였다. 가스확산충은 소수성 카본블랙과 PTFE로 제조되며, 반응층 내에 사용되는 급전체는 Ni망을 사용하였다. 실험에 의하면 함침법에 의해 Ag촉매를 반응충 카본에 담지시켜 제작된 전극$(Ag\;10wt\%$,바인더 $20wt\%)$이 산소음극 과전압이 약 700mv, 전해조에 장착하여 측정한 전해전압(전해 조건이 $80^{\circ}C,\;32wt\%$ 가성소다 그리고 $300 mA/cm^2$의 전류 밀도)이 약 2.2V로 가장 우수한 결과를 나타내었다. 이는 기존 공정의 전해전압 3.4V에 비해 $30\%$이상 저감된 결과이다. 또한 개발된 가스확산 전극은 염수 분해용 전해 공정에서 3개월 연속 운전이 가능하였다.

전착법을 이용한 슈퍼커패시터용 다공성 Co(OH)2 나노플레이크 박막의 제조 및 전기화학적 특성 (Electrochemical Properties of Porous Co(OH)2 Nano-flake Thin Film Prepared by Electro-deposition for Supercapacitor)

  • 이현정;김은미;정상문
    • Korean Chemical Engineering Research
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    • 제54권2호
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    • pp.157-162
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    • 2016
  • 다공성 $Co(OH)_2$ 나노플레이크 박막은 전위제어 전착법을 이용하여 티타늄 메쉬에 여러 전착전위(-0.75, -1.0, -1.2 및 -1.4 V)에서 전착하여 슈퍼커패시터에 이용하였다. 티타늄 메쉬에 전착된 $Co(OH)_2$ 나노플레이크 박막의 두께 및 전착량은 전착전위의 제어에 의해 결정되었고 -1.4 V에서 전착한 $Co(OH)_2$ 나노플레이크 박막의 두께는 약 $34{\mu}m$로 가장 두껍게 전착되었으며 전착량은 17.2 g이다. 전착전위 -0.75, -1.0, -1.2 및 -1.4 V에서 전착한 경우 초기 방전용량은 각각 226, 370, 720 그리고 $1,008mF\;cm^{-2}$으로 나타났고 1,000 사이클 후 각각 206, 349, 586 그리고 $866mF\;cm^{-2}$으로 나타났다. 또한 이들의 용량유지율은 각각 91, 94, 81 및 86%로 나타났다.