• 제목/요약/키워드: sulfur electrode

검색결과 74건 처리시간 0.023초

고전압 초전도코일 개발을 위한 이용률에 따른 $SF_6$가스의 절연특성에 관한 연구 (Analysis on the Dielectric Characteristics of $SF_6$ Gas for Developing a High Voltage Superconducting Coil)

  • 남석호;홍종기;허정일;강형구
    • Progress in Superconductivity
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    • 제13권3호
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    • pp.189-194
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    • 2012
  • Studies on the development of high voltage superconducting apparatuses, such as transmission superconducting fault current limiters (SFCLs) and superconducting cables, have been performed worldwide. In this paper, a study on the electrical insulation characteristics of electro negative gas according to various pressures and utilization factors was conducted as a part of developing a high voltage superconducting coil with a sub-cooled nitrogen cooling system. Some gases such as helium (He), nitrogen ($N_2$), and sulfur hexafluoride ($SF_6$) are considered for pressurizing the sub-cooled nitrogen cooling system of high voltage SFCLs and superconducting cables. $SF_6$ is used to pressurize and enhance the dielectric performance of a superconducting system of a sub-cooled nitrogen cooling system for superconducting cables being developed in the Republic of Korea. In this paper, dielectric experiments on AC voltage, as well as lightning impulse voltage of $SF_6$, are conducted according to various utilization factors by using several kinds of sphere-to-plane electrode systems. As results, it is known that the empirical formulae of $SF_6$, known as an electro negative gas, are derived according to various pressures and utilization factors. Also, the appropriate pressure condition for designing a high voltage superconducting coil is found from the viewpoint of dielectric performance.

IS 프로세스의 HI 분해반응공정을 위한 전해 - 전기투석(EED) HI 농축 (HI concentration by EED for the HI decomposition in IS process)

  • 홍성대;김정근;이상호;최상일;배기광;황갑진
    • 한국수소및신에너지학회논문집
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    • 제17권2호
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    • pp.212-217
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    • 2006
  • An experimental study on Electro-electrodialysis (EED) for IS (Iodine-Sulfur) process which is well known as hydrogen production system was carried out for the HI concentration from HIx (HI: $H_2O$ : $I_2$ = 1 : 5 : 1) solution. The polymer electrolyte membrane and the activated carbon cloth were adopted as a cation exchange membrane and electrode, respectively. In order to evaluate the temperature effect about HI concentration in fixed molar ratio, three case of temperature were selected to $60^{\circ}C$, $90^{\circ}C$ and $120^{\circ}C$. The electro-osmosis coefficient and transport number of proton have been changed from 1.95 to 1.21 (mol/Faraday) and 0.91 to 0.76, respectively as temperature increase from $60^{\circ}C$ to $120^{\circ}C$. It can be realized that the HI mole fraction in final stage of EED experiments already over the quasi-azeotrope composition.

알칼리 환원수 필터의 산화환원전위 안정화 평가 (Evaluation of the Stability of Oxidation-Reduced Potential (ORP) Using the Filter of the Alkaline Water)

  • 남상엽;권윤중
    • 전자공학회논문지
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    • 제53권8호
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    • pp.129-135
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    • 2016
  • 본 연구는 알칼리 환원수기에 3가지 필터(활성카본, 중공사막, 카본블럭)를 이용해서 원수를 통과시켜 통수 양에 따른 산화환원전위(Oxidation Reduction Potential) ORP값이 안정화되는 것을 평가한 것이다. 알칼리 환원수기는 환원의 기능을 가지고 있는 물을 만드는 시스템으로 인체에 유익한 미네랄과 ORP값이 일반 물에 비해 매우 낮은 값을 가지고 있는 기능수이다. 필터를 통과한 물을 전기 분해하면 물속에 있는 음이온과 양이온은 격막을 통해서 -전극 쪽에는 칼슘($Ca^+$), 칼륨($K^+$), 마그네슘($Mg^+$), 나트륨($Na^+$)을 포함한 물로 인체에 유익한 미네랄이 포함된 알칼리 환원수를 얻고 +극에는 염소(Cl),인(P),유황(S)등 - 이온을 띄고 있는 유기물이 만들어 진다. 실험에서 알칼리 환원수(Alkaline Reduced Water)에서 전기분해의 전압의 크기를 조절하여 1단(pH8), 2단(pH8.5), 3단(pH9), 4단(pH9.5)으로 알칼리 환원수에 사용되고 -1단(pH6.0), -2단(pH5.0)의 산성산화수로 사용하고 있다. 이러한 시스템으로 3가지 필터에 통수하면서 ORP값이 어떻게 변화하고 어느 정도에서 안정화되는지를 평가하였고 대략 100L는 통수되어야 ORP값이 안정화하는 것을 측정하고 평가하였다.

Molecular Conductance Switching Processes through Single Ruthenium Complex Molecules in Self-Assembled Monolayers

  • 서소현;이정현;방경숙;이효영
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제40회 동계학술대회 초록집
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    • pp.27-27
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    • 2011
  • For the design of real applicable molecular devices, current-voltage properties through molecular nanostructures such as metal-molecule-metal junctions (molecular junctions) have been studied extensively. In thiolate monolayers on the gold electrode, the chemical bonding of sulfur to gold and the van der Waals interactions between the alkyl chains of neighboring molecules are important factors in the formation of well-defined monolayers and in the control of the electron transport rate. Charge transport through the molecular junctions depends significantly on the energy levels of molecules relative to the Fermi levels of the contacts and the electronic structure of the molecule. It is important to understand the interfacial electron transport in accordance with the increased film thickness of alkyl chains that are known as an insulating layer, but are required for molecular device fabrication. Thiol-tethered RuII terpyridine complexes were synthesized for a voltage-driven molecular switch and used to understand the switch-on mechanism of the molecular switches of single metal complexes in the solid-state molecular junction in a vacuum. Electrochemical voltammetry and current-voltage (I-V) characteristics are measured to elucidate electron transport processes in the bistable conducting states of single molecular junctions of a molecular switch, Ru(II) terpyridine complexes. (1) On the basis of the Ru-centered electrochemical reaction data, the electron transport rate increases in the mixed self-assembled monolayer (SAM) of Ru(II) terpyridine complexes, indicating strong electronic coupling between the redox center and the substrate, along the molecules. (2) In a low-conducting state before switch-on, I-V characteristics are fitted to a direct tunneling model, and the estimated tunneling decay constant across the Ru(II) terpyridine complex is found to be smaller than that of alkanethiol. (3) The threshold voltages for the switch-on from low- to high-conducting states are identical, corresponding to the electron affinity of the molecules. (4) A high-conducting state after switch-on remains in the reverse voltage sweep, and a linear relationship of the current to the voltage is obtained. These results reveal electron transport paths via the redox centers of the Ru(II) terpyridine complexes, a molecular switch.

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