• 제목/요약/키워드: electro-osmotic

검색결과 48건 처리시간 0.025초

전기삼투 유동 중 마이크로 채널 내 곡률 변화에 따른 혼합특성에 대한 연구 (A Study on the curvature Effect of microchannel within Electroosmotic Flow)

  • 허형석;서용권
    • 한국가시화정보학회:학술대회논문집
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    • 한국가시화정보학회 2005년도 추계학술대회 논문집
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    • pp.107-110
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    • 2005
  • In this study a newly designed and electro-osmotic micro-mixer is proposed. This design is comprised of a channel and metal electrodes attached in the local side wall surface, To investigate the flow patterns a numerical method is employed. To obtain the flow patterns numerical computation are performed by using a commercial code, CFD-ACE. The fluid-flow solutions are then cast into studying the characteristics of stirring with aid the Mixing index. Focus is given the effect on the electro osmotic flow characteristics under the curvature variation in the microchannel with the local of the electric field

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T자형 마이크로 채널 내부 전기삼투 유동의 불안정성 가시화 (Visualization of Electro-osmotic Flow Instability in a T-shape Microchannel)

  • 한수동;이상준
    • 한국가시화정보학회지
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    • 제3권2호
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    • pp.45-50
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    • 2005
  • Electro-osmotic flow (EOF) instability in a microchannel has been experimentally investigated using a micro-PIV system. The micro-PIV system consisting of a two-head Nd:Yag laser and cooled CCD camera was used to measure instantaneous velocity fields and vorticity contours of the EOF instability in a T-shape glass microchannel. The electrokinetic flow instability occurs in the presence of electric conductivity gradients. Charge accumulation at the interface of conductivity gradients leads to electric body forces, driving the coupled flow and electric field into an unstable dynamics. The threshold electric field above which the flow becomes unstable and rapid mixing occurs is about 1000V/cm. As the electric field increases, the flow pattern becomes unstable and vortical motion is enhanced. This kind of instability is a key factor limiting the robust performance of complex electrokinetic bio-analytical devices, but can also be used for rapid mixing and effective flow control fer micro-scale bio-chips.

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전기 삼투압을 이용한 교란영역의 투수성 개선에 관한 연구 (The Study on permeability enhancement in smear zone using electro-osmotic pressure)

  • 안병욱;노희전;김현기;조남준
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 춘계 학술발표회 초청강연 및 논문집
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    • pp.435-441
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    • 2008
  • More time is required for consolidating soft clay when its hydraulic conductivity around the vertical drains is reduced by soil disturbance. One of the methods to be proposed to solve such problem is the electro-osmotic flow application. This study presents the experimental results of model tests using a modified oedometer and a large-scale cylinder with a sand drain. Results show that the development of negative excessive pore water pressure due to the DC electrical field in saturated clay can be transformed to additional loads causing more consolidation settlement.

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전기 이중층의 상호작용을 고려한 2차원 슬릿 내의 전기삼투 유동에 관한 이론적 해석 (An Theoretical Analysis of Electro-osmotic Flow in 2-dimensional slit with Electrical Double Layers in Interaction)

  • 이대근
    • 유체기계공업학회:학술대회논문집
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    • 유체기계공업학회 2006년 제4회 한국유체공학학술대회 논문집
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    • pp.497-500
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    • 2006
  • An theoretical analysis on the electro-osmotic flow in a 2-dimensional slit, that is induced by an external electric field acting on the electrical double layers near the slit wall, was performed. Especially, although there were many studies on the interacting electrical double layers, it was found in this study that they have several physical or mathematical fallacies. To resolve these, the general solution on the charge-regulating slit with the height as a parameter was obtained. The results of this work can provide the electrokinetic solution of nanoscale slit with the electrical double layer interaction as well as that of microscale slit without the interaction and can be used as the benchmark of a numerical analysis and the reference of electrokinetic flow path design.

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일정 전류에서 연료전지의 비정상 특성 (Transient Characteristics of Fuel Cell Stack at Continuous Current Discharge)

  • 박창권;정귀성;오병수
    • 한국수소및신에너지학회논문집
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    • 제14권3호
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    • pp.195-206
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    • 2003
  • Polymer electrolyte membrane fuel cells(PEMFC) are very interesting power source due to high power density, simple construction and operation at low temperature. But they have problems such as high cost, improvement of performance and effect of temperature. This problems can be approached using mathematical models which are useful tools for analysis and optimization of fuel cell performance and for heat and water management, in this paper, transient model consists of various energy terms associated with fuel cell operation using the mass and energy balance equation. And water transfer in the membrane is composed of back diffusion and electro-osmotic drag. The temperature calculated by transient model approximately agreed with the temperature measured by experiment in constant current condition.

Electrodeposition of Mn-Ni Oxide/PEDOT and Mn-Ni-Ru Oxide/PEDOT Films on Carbon Paper for Electro-osmotic Pump Electrode

  • Baek, Jaewook;Shin, Woonsup
    • Journal of Electrochemical Science and Technology
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    • 제9권2호
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    • pp.93-98
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    • 2018
  • $MnO_2$, a metal oxide used as an electrode material in electrochemical capacitors (EDLCs), has been applied in binary oxide and conducting polymer hybrid electrodes to increase their stability and capacitance. We developed a method for electrodepositing Mn-Ni oxide/PANI, Mn-Ni oxide/PEDOT, and Mn-Ni-Ru oxide/PEDOT films on carbon paper in a single step using a mixed bath. Mn-Ni oxide/PEDOT and Mn-Ni-Ru oxide/PEDOT electrodes used in an electro-osmotic pump (EOP) have shown better efficiency compared to Mn-Ni oxide and Mn-Ni oxide/PANI electrodes through testing in water as a pumping solution. EOP using a Mn-Ni-Ru oxide/PEDOT electrode was also tested in a 0.5 mM $Li_2SO_4$ solution as a pumping solution to confirm the effect of the $Li^+$ insertion/de-insertion reaction of Ruthenium oxide on the EOP. Experimental results show that the flow rate increases with the increase in current in a 0.5 mM $Li_2SO_4$ solution compared to that obtained when water was used as a pumping solution.

동전기를 이용한 슬러지 탈수에 관한 연구 (Dewatering of Sewage Sludge by Electrokinetics)

  • 김지태;원세연;조원철
    • 대한토목학회논문집
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    • 제26권6B호
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    • pp.661-667
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    • 2006
  • 본 연구에서는 동전기를 이용한 하수 슬러지 탈수 실험을 실시하였다. 소화 과정을 거치고 탈수과정에 투입되기 전 응집제가 첨가되지 않은 슬러지에 중력 및 가압, 전기삼투 및 전기삼투펄스 기법을 적용하여 탈수 효율을 분석하였으며, 소화 과정을 거치지 않고 농축조에서 배출된 슬러지에 대하여도 동일한 방법으로 탈수 실험을 실시하여 농축 슬러지의 탈수율을 평가하였다. 압력을 가하지 않은 중력 탈수 방식에 직류전기장을 적용한 경우 적용 전압에 비례하여 탈수율이 증가하여 전기삼투에 의한 슬러지 탈수의 가능성이 입증되었다. 그러나, 짧은 시간에 높은 탈수율을 얻기 위해서는 고전압이 필요한 문제점이 대두되었다. 이를 보완하기 위하여 슬러지 내에서 높이에 따른 함수비 변화폭을 줄여줄 것으로 기대되는 펄스 기법을 도입한 결과 실험 중반부터 배출량 및 부피감소량이 정전압에 비해 증가하는 특성을 보여 슬러지 내 함수비가 감소하면서 그 효과가 나타나는 것으로 해석된다. 농축 슬러지에 대한 중력식 및 압력식 전기삼투 탈수 기법도 소화 슬러지와 마찬가지로 높은 탈수율을 나타내어 동전기에 의한 탈수 가능성이 입증되었으며, 소화조 운영 목적 중 화학적인 부분들이 전기 삼투에 의한 탈수에 의해 어느 정도 보완될 수 있는지가 평가된다면 슬러지 처리 공정 및 비용을 단축시킬 수 있을 것으로 기대된다.

Development of LiFePO4/FePO4 Electrode for Electro-Osmotic Pump using Li+ Migration

  • Baek, Jaewook;Kim, Kyeonghyeon;Shin, Woonsup
    • Journal of Electrochemical Science and Technology
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    • 제9권2호
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    • pp.85-92
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    • 2018
  • Olivine structure of $LiFePO_4$ (LFP) is one of the most commonly used materials in aqueous rechargeable lithium batteries (ARLBs), and can store and release charge through the insertion/de-insertion of $Li^+$ between LFP and FP. We have fabricated LFP and LFP/FP electrodes on titanium paper and studied their electrochemical properties in 2 M $Li_2SO_4$. The LFP/FP electrode was determined to be a suitable electrode for electo-ostmotic pump (EOP) in terms of efficiency in water and 0.5 mM $Li_2SO_4$ solution. Experiments to determine the effect of cations and anions on the performance of EOP using LFP/FP electrode have shown that $Li^+$ is the best cation and that the anion does not significantly affect the performance of the EOP. As the concentration of $Li_2SO_4$ solution was increased, the current increased. The flow rate peaked at $4.8{\mu}L/30s$ in 1.0 mM $Li_2SO_4$ solution and then decreased. When the EOP was tested continuously in 1.0 mM $Li_2SO_4$ solution, the EOP transported approximately 35 mL of fluid while maintaining a stable flow rate and current for 144 h.