• 제목/요약/키워드: $Cl^-$ current

검색결과 809건 처리시간 0.026초

Localization, activation and deactivation of $Ca^{2+}$ dependent $Cl^-$ channels in pancreatic acinar cells

  • Park, Myoung-Kyu;Richard Lomax;Alexei V. Tepikin;Ole H. Petersen
    • 한국생물물리학회:학술대회논문집
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    • 한국생물물리학회 2001년도 학술 발표회 진행표 및 논문초록
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    • pp.27-27
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    • 2001
  • In exocrine acinar cells, $Ca^{2+}$ -activated Cl$^{[-10]}$ channels in the apical membrane are essential for fluid secretion, but it is unclear whether such channels are important for Cl$^{[-10]}$ uptake at the base. Whole cell current recording, combined with local uncaging of caged $Ca^{2+}$, was used to reveal the Cl$^{[-10]}$ channel distribution in mouse pancreatic acinar cells, where ~90% of the current activated by $Ca^{2+}$ in response toacetylcholine was carried by Cl$^{[-10]}$ .(omitted)

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Laccase-탄소나노튜브 적층을 통한 효소 연료전지의 cathode 성능 향상 (Enhancement of Electrochemical Performance of Cathode by Optimizing Laccase-Carbon Nanotubes Layers for Enzymatic Fuel Cells)

  • 왕설;김창준
    • Korean Chemical Engineering Research
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    • 제60권4호
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    • pp.550-556
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    • 2022
  • 당, 알코올, 유기산 및 아미노산 등과 같은 다양한 유기물에 포함된 화학에너지를 전기에너지로 전환시키는 효소 연료전지의 성능은 anode 뿐만 아니라 cathode에도 큰 영향을 받는다. 본 연구의 목적은 laccase 기반의 고성능 cathode 전극을 개발하는데 있다. 효소, 전자전달체 및 탄소나노튜브로 구성된 효소 복합체를 제조하고 이를 전극 표면에 다층으로 부착하며 층수 및 탄소나노튜브의 첨가 유무가 전극 성능에 미치는 영향을 조사하였다. 전극 표면에 효소-전자전달체(Lac-(PVI-Os-dCl))의 층수가 증가할수록 전극에서 발생되는 환원 전류량이 증가하였다. 탄소나노튜브가 첨가된 효소-전자전달체 복합체 전극(Lac-SWCNTs-(PVI-Os-dCl))이 Lac-(PVI-Os-dCl) 전극에 비하여 1.7배 많은 환원 전류를 생성하였다. Lac-SWCNTs-(PVI-Os-dCl)과 Lac-(PVI-Os-dCl)의 비율을 변화시키며 적층한 전극들에서 2층의 Lac-(PVI-Os-dCl)과 2층의 Lac-SWCNTs-(PVI-Os-dCl)으로 구성된 전극이 가장 많은 양의 환원 전류(10.1±0.1 µA)를 생성하였다. 단일 층의 Lac-(PVI-Os-dCl)로 구성된 cathode를 사용하는 셀과 최적화된 cathode를 사용하는 셀의 최대 생산 전력밀도는 각각 0.46±0.05와 1.23±0.04 µW/cm2였다. 본 연구 결과는 전극 표면에 laccase, 전자전달체 및 탄소나노튜브로 구성된 복합체의 적층 최적화를 통해 cathode 및 이를 이용하는 효소 연료전지의 성능을 향상시킬 수 있음을 시사한다.

해양환경 중에서 SS 400 강제의 간극부식거동에 관한 연구 (Study on the Crevice Corrosion Behavior of 55400 in Marine Environment)

  • 임우조;윤병두
    • Journal of Advanced Marine Engineering and Technology
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    • 제25권6호
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    • pp.1336-1340
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    • 2001
  • Due to increase of air pollution substance, such as $SO_2$,$SO_3$, H2S ,CO, HCI, $Cl_2$ and so on, the operating environment of mechanical equipment and facilities like generating plants, ships, metal structure etc., are acidified and corroded. In these environments, the crevice corrosion of marine facilities frequently occurs at crevice like jointed bolt, gasket or sealant, riveted plates, contact of metal with non-metallic solids etc. Therefore, this paper was studied on the crevice corrosion behavior of mild steel(SS 400) in marine environment. In a variety of NaCl solutions, the aspect of he .crevice corrosion and polarization behavior under the crevice corrosion was investigated. The main results obtained are as follows: 1) Under crevice corrosion, the open circuit potential become less treble as the concentration of NaCl solution increased. 2) The corrosion current density of mild steel was high drained as the concentration of NaCl solution increased by 3.5%, but in the concentration increased over 3.5%, the corrosion current density was low drained. 3) The crevice corrosion is more sensitive to the synergy effect of dissolved oxygen and NaCl.

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전기화학적 공정의 운전인자에 따른 산화제 생성과 염료 분해 특성 (Characteristic of Oxidants Production and Dye Degradation with Operation Parameters of Electrochemical Process)

  • 김동석;박영식
    • 한국환경과학회지
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    • 제18권11호
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    • pp.1235-1245
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    • 2009
  • The purpose of this study is to investigate electro-generation of free Cl, $ClO_2$, $H_2O_2$ and $O_3$ and degradation of Rhodamine B in solution using Ru-Sn-Sb electrode. Electrolysis was performed in one-compartment reactor using a dimensionally stable anode(DSA) of Ru-Sn-Sb/Ti as the working electrode. The effect of applied current (0.5-3 A), electrolyte type (NaCl, KCl, HCl, $Na_2SO_4$ and $H_2SO_4$) and concentration (0.5-2.5 g/L), air flow rate (0-3 L/min) and solution pH (3-11) was evaluated. Experimental results showed that concentration of 4 oxidants was increased with increase of applied current, however optimum current for RhB degradation was 2 A. The generated oxidant concentration and RhB degradation of the of Cl type-electrolyte was higher than that of the sulfate type. The oxidant concentration was increased with increase of NaCl concentration and optimum NaCl dosage for RhB degradation was 1.75 g/L. Optimum air flow rate for the oxidants generation and RhB degradation was 2 L/min. $ClO_2$ and $H_2O_2$ generation was decreased with the increase of pH, whereas free Cl and $O_3$ was not affected by pH. RhB degradation was increase with the pH decrease.

3차원 전극을 사용한 Rhodamine B의 전기분해에 미치는 운전인자의 영향 (Effect of Operating Parameters on Electrochemical Degradation of Rhodamine B by Three-dimensional Electrode)

  • 김동석;박영식
    • 한국환경보건학회지
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    • 제35권4호
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    • pp.295-303
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    • 2009
  • A simulated wastewater containing the dye Rhodamine B (RhB) was electrolytically treated using a three-dimensional electrode reactor equipped with granular activated carbon (GAC) as particle electrode. The effect of type of packing material (GAC, ACF, Nonwoven fabric fiber coated with activated carbon), amounts of GAC packing (25-100 g), current (0.5-3 A) and electrolyte concentration (0.5-3 g/l) was evaluated. Experimental results showed that performance for RhB decolorization of the 3 three-dimensional electrodes lie in: GAC > Nonwoven fabric fiber > ACF. When considered RhB decolorization, oxidants concentration and electric power, optimum GAC dosage was 50 g. Generated concentration of 3 oxidants ($ClO_2$, free Cl, $H_2O_2$) was increased with increase of applied current, however optimum current for RhB degradation was 2.5 A. The oxidants concentration was increased with increase of NaCl concentration and optimum NaCl dosage for RhB degradation was 1.5 g/l.

PbO2 전극을 이용한 산화제 생성과 염료 Rhodaime B 제거 (Formation of Oxidants and Removal of Dye Rhodamine B using PbO2 Electrode)

  • 박영식
    • 한국물환경학회지
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    • 제27권2호
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    • pp.194-199
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    • 2011
  • This study has been carried out to evaluate the performance of $PbO_2$ electrode for the purpose of degradation of N,N-Dimethyl-4-nitrosoaniline (RNO, indicator of OH radical), generation of ozone and decolorization of Rhodamine B (RhB) in water. The effect of the applied current (0.2~1.2 A), electrolyte type (NaCl, KCl and $Na_2SO_4$), electrolyte concentration (0.0~2.5 g/L) and solution pH (3~11) were evaluated. Experimental results showed that RhB and RNO removal were increased with the increase of current, NaCl dosage and decrease of pH. Ozone generation tendencies appeared with the almost similar to the RhB and RNO degradation, except of solution pH (Ozone generation was increased with increase of pH). Optimum current for RhB degradation and consumption of electric power was 1.0 A. The RhB degradation with Cl type electrolyte were higher than that with the sulfate type. Optimum NaCl dosage for RhB degradation was 1.0 g/L.

전기분해에 의한 고농도 질소 제거의 특성 (Removing High Concentration Nitrogen by Electrolysis)

  • 길대수;이병헌;최해경;권동민
    • 대한환경공학회지
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    • 제22권2호
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    • pp.265-277
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    • 2000
  • 전기분해에 의한 암모니아의 제거 특성을 조사하기 위한 실험을 수행하였다. 양극판은 티타늄에 이산화이리듐을 전착한 $IrO_2/Ti$ 극판으로 하였으며, 음극판은 스테인리스 스틸판을 사용하였다. 전류밀도, 체류시간, 전극간격 및 $Cl^-/NH_4{^+}-N$ 비 등의 운전조건에 대한 암모니아 제거 특성을 조사하여 전기분해의 최적 운전조건을 결정하였다. 판형태의 양극판과 망형태의 양극판을 사용하여 동일 전류밀도에서 암모니아의 처리효과는 비슷한 것으로 나타났으나, 유효 극판면적이 적은 망형태의 극판을 사용함으로써 전력비를 감소할 수 있었다. 암모니아성 질소에 대한 염소첨가비 $20.0kgCl^-/kgNH_4{^+}-N$에서 약 73 %의 제거율을 보였으며, 암모니아를 완전히 제거하는데 $27.6kgCl^-/kgNH_4{^+}-N$이 필요하였다. 암모니아의 제거는 전류밀도, 체류시간 및 $Cl^-/NH_4{^+}-N$ 비에 따라 높았으며, 전극간격은 좁을수록 효과적인 것으로 나타났다. 운전인자와 암모니아 제거율과의 관계는 아래와 같이 나타났다. $$NH_4{^+}-N_{re}(%)=14.5364(Current\;density)^{0.7093}{\times}(HRT)^{1.0060}{\times}(Gap)^{-0.9926}{\times}(Cl^-/NH_4{^+}-N)^{1.0024}$$ COD와 알칼리도를 첨가한 경우 암모니아 제거는 더 높게 나타났으며, 운전인자와의 관계식은 아래와 같이 나타났다. $$NH_4{^+}-N_{re}(%)=9.8408(Current\;density)^{0.6232}{\times}(HRT)^{1.0534}$$ 유기물질과 질소를 동시에 전기분해할 경우 두 물질간은 경쟁관계에 있으며, 암모니아 제거가 지배적인 것으로 나타났다. 암모니아 제거는 유기물질 및 알칼리도를 주입함으로써 높게 나타났다.

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용융 (60 몰% $AlCl_3$-40 몰% NaCl) 염 속에서의 알루미늄전극의 반응속도론적 연구 (A Kinetic Study of the Aluminum Electrode in Molten 60 Mole Percent $AlCl_3$-40 Mole Percent NaCl at 453${\circ}K$)

  • G. F. Uhlig;T. N. Andersen;S. Johns;H. Eyring
    • 대한화학회지
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    • 제18권6호
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    • pp.400-407
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    • 1974
  • 60몰%$AlCl_3$-40몰% NaCl의 용융염($453^{\circ}$<\TEX>K)속에든 알루미늄 전극에 대하여 전류-전압 편극곡선을 얻었다. 50mA/$CM^2$보다 큰 전류밀도에서는 옴-저항에 의한 전위차가 양극전위에 상당히 기여하므로 저항이 큰 $AlCl_3$(혹은 $AlCl_3$ 의 농도가 큰 멜트)의 층이 양극표면에 가까이 형성된다고 결론지었다. IR-전위차에 대하여 보정한 후의 Tafel곡선과 Allen-Hickling 곡선으로 부터 겉보기 transfer-coefficient, ${\alpha}_a$=(2.3RT/F)(dlogi/d${\eta}$)=$1.5{\pm}0.25$가 얻어졌다. 약 30mA/$cm^2$보다 큰 음극전류밀도에서는 느린 이온확산과 dendrite 생장 때문에 속도론적 측정이 방해 받았다.

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CsCl 보호막을 이용한 전면발광 OLED의 전기 및 광학적 특성 (Electrical and Optical Properties of Top Emission OLEDs with CsCl Passivation Layer)

  • 김소연;문대규;한정인
    • 한국전기전자재료학회논문지
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    • 제21권2호
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    • pp.173-177
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    • 2008
  • We have developed the transparent passivation layer for top emission organic light emitting diodes using CsCl thin film by the thermal evaporation method. The CsCl film was deposited on the Ca/Ag semitransparent cathode. The optical transmittance of Ca/ Ag/CsCl triple layer is higher than that of Ca/Ag double layer in the visible range. The device with a structure of glass/Ni/2-TNATA/a-NPD/Alq3:C545T/BCP/Alq3/Ca/Ag/CsCl results in higher efficiency than the device without CsCl passivation layer. The device without CsCl thin film shows a current efficiency of 7 cd/A, whereas the device passivated with CsCl layer shows an efficiency of 10 cd/A. This increase of efficiency isresulted from the increased optical extraction by the CsCl passivation layer.

유도 결합 BCl$_{3}$/Cl$_{2}$ 플라즈마내에서 Pt 박막의 건식 식각 (Dry etching of pt thin film in inductive coupled BCl$_{3}$/Cl$_{2}$ plasmas)

  • 김남훈;김창일;권광호;장의구
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 1998년도 하계종합학술대회논문집
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    • pp.375-378
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    • 1998
  • Platinum thin film which hardly form volatile compounds with any reactive gas at normal process temperature was etched in inductive coupled BCl$_{3}$/Cl$_{2}$ plasma. The etch rate of platinum thin film increased with increasing Cl$_{2}$/(Cl$_{2}$ + BCl$_{3}$) ratio. That reasoned increasing of ion current density.

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