• 제목/요약/키워드: Oxygen membrane

검색결과 877건 처리시간 0.028초

A Review of Industrially Developed Components and Operation Conditions for Anion Exchange Membrane Water Electrolysis

  • Lim, Ahyoun;Cho, Min Kyung;Lee, So Young;Kim, Hyoung-Juhn;Yoo, Sung Jong;Sung, Yung-Eun;Jang, Jong Hyun;Park, Hyun S.
    • Journal of Electrochemical Science and Technology
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    • 제8권4호
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    • pp.265-273
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    • 2017
  • Solid-state alkaline water electrolysis is a promising method for producing hydrogen using renewable energy sources such as wind and solar power. Despite active investigations of component development for anion exchange membrane water electrolysis (AEMWE), understanding of the device performance remains insufficient for the commercialization of AEMWE. The study of assembled AEMWE devices is essential to validate the activity and stability of developed catalysts and electrolyte membranes, as well as the dependence of the performance on the device operating conditions. Herein, we review the development of catalysts and membranes reported by different AEMWE companies such as ACTA S.p.A. and Proton OnSite and device operating conditions that significantly affect the AEMWE performance. For example, $CuCoO_x$ and $LiCoO_2$ have been studied as oxygen evolution catalysts by Acta S.p.A and Proton OnSite, respectively. Anion exchange membranes based on polyethylene and polysulfone are also investigated for use as electrolyte membranes in AEMWE devices. In addition, operation factors, including temperature, electrolyte concentration and acidity, and solution feed methods, are reviewed in terms of their influence on the AEMWE performance. The reaction rate of water splitting generally increases with increase in operating temperature because of the facilitated kinetics and higher ion conductivity. The effect of solution feeding configuration on the AEMWE performance is explained, with a brief discussion on current AEMWE performance and device durability.

Preparation and characterization of PVDF/alkali-treated-PVDF blend membranes

  • Liu, Q.F.;Li, F.Z.;Guo, Y.Q.;Dong, Y.L.;Liu, J.Y.;Shao, H.B.;Fu, Z.M.
    • Membrane and Water Treatment
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    • 제7권5호
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    • pp.417-431
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    • 2016
  • Poly(vinylidene fluoride) (PVDF) powder was treated with aqueous sodium hydroxide to obtain partially defluorinated fluoropolymers with expected properties such as improving hydrophilicity and fouling resistance. Raman spectrum and FT-IR results confirmed the existence of conjugated carbon double bonds after alkaline treatment. As the concentration increased, the degree of defluorination increased. The morphology and structure of membranes were examined. The permeation performance was investigated. The results showed that membrane's hydrophilicity increased with increase of the percentage of alkaline treated PVDF powder. Moreover, in terms of the water contact angle, it decreased from $92^{\circ}$ to a minimum of $68^{\circ}$; while water up take increased from 128 to 138%. Fluxof pure water and the cleaning efficiency increased with the increase of alkaline treated PVDF powder. The fouling potential also decreased with the increase of the percentage of alkaline treated PVDF powder. The reason that makes blending PVDF show different characteristics because of partial defluorination, which led the formation of conjugated C = C bonds and the inclusion of oxygen functionalities. The polyene structure followed by hydroxide attack to yield hydroxyl and carbonyl groups. Therefore, the hydrophilicity of blending membrane was improved. The SEM and porosity measurements showed that no obvious variations of the pore dimensions and structures for blend membranes were observed. Mechanical tests suggest that the high content of the alkaline treated PVDF result in membranes with less tolerance of tensile stress and higher brittleness. TGA results exhibited that the blend of alkaline treated PVDF did not change membrane thermal stability.

Analysis of Microbial Communities in Biofilms from CSTR-Type Hollow Fiber Membrane Biofilm Reactors for Autotrophic Nitrification and Hydrogenotrophic Denitrification

  • Shin, Jung-Hun;Kim, Byung-Chun;Choi, Okkyoung;Kim, Hyunook;Sang, Byoung-In
    • Journal of Microbiology and Biotechnology
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    • 제25권10호
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    • pp.1670-1679
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    • 2015
  • Two hollow fiber membrane biofilm reactors (HF-MBfRs) were operated for autotrophic nitrification and hydrogenotrophic denitrification for over 300 days. Oxygen and hydrogen were supplied through the hollow fiber membrane for nitrification and denitrification, respectively. During the period, the nitrogen was removed with the efficiency of 82-97% for ammonium and 87-97% for nitrate and with the nitrogen removal load of 0.09-0.26 kg NH4+-N/m3/d and 0.10-0.21 kg NO3--N/m3/d, depending on hydraulic retention time variation by the two HF-MBfRs for autotrophic nitrification and hydrogenotrophic denitrification, respectively. Biofilms were collected from diverse topological positions in the reactors, each at different nitrogen loading rates, and the microbial communities were analyzed with partial 16S rRNA gene sequences in denaturing gradient gel electrophoresis (DGGE). Detected DGGE band sequences in the reactors were correlated with nitrification or denitrification. The profile of the DGGE bands depended on the NH4+ or NO3- loading rate, but it was hard to find a major strain affecting the nitrogen removal efficiency. Nitrospira-related phylum was detected in all biofilm samples from the nitrification reactors. Paracoccus sp. and Aquaspirillum sp., which are an autohydrogenotrophic bacterium and an oligotrophic denitrifier, respectively, were observed in the denitrification reactors. The distribution of microbial communities was relatively stable at different nitrogen loading rates, and DGGE analysis based on 16S rRNA (341f /534r) could successfully detect nitrate-oxidizing and hydrogen-oxidizing bacteria but not ammonium-oxidizing bacteria in the HF-MBfRs.

Promoting Effect of Hydrogen Peroxide on 1-Methyl-4-phenylpyridinium-induced Mitochondrial Dysfunction and Cell Death in PC12 Cells

  • Lee, Dong-Hee;Lee, Chung-Soo
    • The Korean Journal of Physiology and Pharmacology
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    • 제10권1호
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    • pp.51-58
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    • 2006
  • The promoting effect of hydrogen peroxide ($H_2O_2$) against the cytotoxicity of 1-methyl-4-phenylpyridinium ($MPP^+$) in differentiated PC12 cells was assessed by measuring the effect on the mitochondrial membrane permeability. Treatment of PC12 cells with $MPP^+$ resulted in the nuclear damage, decrease in the mitochondrial transmembrane potential, cytosolic accumulation of cytochrome c, activation of caspase-3, increase in the formation of reactive oxygen species (ROS) and depletion of GSH. Addition of $H_2O_2$ enhanced the $MPP^+-induced$ nuclear damage and cell death. Catalase, Carboxy-PTIO, Mn-TBAP, N-acetylcysteine, cyclosporin A and trifluoperazine inhibited the cytotoxic effect of $MPP^+$ in the presence of $H_2O_2$. Addition of $H_2O_2$ promoted the change in the mitochondrial membrane permeability, ROS formation and decrease in GSH contents due to $MPP^+$ in PC12 cells. The results show that the $H_2O_2$ treatment promotes the cytotoxicity of $MPP^+$ against PC12 cells. $H_2O_2$ may enhance the $MPP^+$-induced viability loss in PC12 cells by promoting the mitochondrial membrane permeability change, release of cytochrome c and subsequent activation of caspase-3, which is associated with the increased formation of ROS and depletion of GSH. The findings suggest that $H_2O_2$ as a promoting agent for the formation of mitochondrial permeability transition may enhance the neuronal cell injury caused by neurotoxins.

아민화된 폴리이서이미드 막을 이용한 이산화탄소의 촉진수송분리 (Facilitated Transport Separation of Carbon Dioxide Using Aminated Polyetherimide Membranes)

  • 권세환;임지원
    • 멤브레인
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    • 제25권3호
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    • pp.248-255
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    • 2015
  • 아민화된 폴리이서이미드(polyetherimide (PEI))막을 실험실에서 합성하여 아민화별로 제조된 막을 이용하여 이산화탄소, 질소, 메탄, 산소, 이산화황의 기체투과도와 확산도 및 용해도를 Time-lag법으로 상온에서 측정하였다. 일반적으로 아민기의 주사슬에 반응되는 아민화율이 증가할수록 분자사이의 공간이 좁아지기 때문에 투과도가 전체적으로 감소했지만, 이산화황은 산 성질의 이산화황과 염기 성질의 아민기의 결합으로 인하여 증가하였다. 건기체에 대한 확산도 및 용해도는 아민화율이 증가할수록 이산화황을 제외한 모든 기체에서 감소하였고 또한 용해도 역시 감소하였다. 그러나 이산화황의 경우 아민화율이 증가하면서 용해도가 증가하게 되어 확산도 또한 증가한 것으로 사료된다. 이산화탄소/질소의 경우 선택도는 아민화율이 3일 경우 60을 나타내었다. 습기체의 경우 상대습도가 100일 때 투과도가 70 barrer을 나타내었고 질소에 대한 선택도는 약 18 정도를 보여주었다.

고려인삼(Panax ginseng C.A, Meyer)의 잎 ESTs database에서 Energy 대사 관련 유전자 분석 (Gene Analysis Related Energy Metabolism of Leaf Expressed Sequence Tags Database of Korean Ginseng (Panax ginseng C.A. Meyer))

  • 이종일;윤재호;송원섭;이범수;인준교;김은정;양덕춘
    • 한국자원식물학회지
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    • 제19권1호
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    • pp.174-179
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    • 2006
  • 본 연구에서는 인삼 잎으로부터 정제한 mRNA를 이용하여 cDNA library를 제작하였다. 이 cDNA library로 부터 349개의 에너지 대사 관련 유전자를 선발 하였다. 에너지 대사 관련 유전자의 평균 사이즈는 0.49 kb이며, 에너지 관련 유전자들의 세부 기능별 발현을 분석한 결과 aerobic respiration(48.4%), accessory proteins of electron transport and membrane associated energy conservation(17.2%), glycolysis and gluconeogenesis(3.4%), electron transport and membrane associated energy conservation(2.9%), respiration(2.0%), glycolysis methylglyoxal byp-ass(1.7%), metabolism of energy reserves(0.6%)와 alcohol fermentation(0.3%)의 분포를 보였다. 인삼 잎에서 발현되는 유전자중 가장 많이 발현된 Chlorophyll a/b binding protein of IhcII type I(36.6%), Photosystem II oxygen-evolving complex protein(6.6%) 등이 발현되었다.

고분자전해질 연료전지 구동 중 수소투과도 측정 (Measurement of Hydrogen Crossover During PEMFC Operation)

  • 정재진;정재현;김세훈;안병기;고재준;박권필
    • Korean Chemical Engineering Research
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    • 제53권4호
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    • pp.412-416
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    • 2015
  • 고분자 막 성능 평가 및 내구성 평가에 이용하기 위해 고분자전해질 연료전지(PEMFC) 구동 중에 수소 크로스오버 측정이 필요하다. 수소 크로스오버 측정 시에 불활성 기체 대신에 공기를 cathode에 공급하면서 기체 크로마토그래프로 수소 농도를 cathode 출구에서 분석하였다. PEMFC 구동 중 고분자 막을 통과한 수소는 cathode에서 산소와 반응해 불활성 가스를 공급할 때에 비해 수소 농도가 감소하였다. cathode 공기 공급 유량이 증가하면 수소 농도가 감소했고, 셀의 온도와 습도, 압력이 증가하면 cathode의 수소 농도는 증가했다. 일반적인 PEMFC 구동 조건에서 $120mA/cm^2$ 전류밀도에서 수소농도는 약 5.0 ppm이었다.

음이온교환막 수전해 촉매기술 동향 (Research Trend in Electrocatalysts for Anion Exchange Membrane Water Electrolysis)

  • 김지영;이기영
    • 전기화학회지
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    • 제25권2호
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    • pp.69-80
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    • 2022
  • 고순도 수소생산을 위한 음이온 교환막 수전해는 양성자 교환막 수전해 시스템에서 사용되는 기존 귀금속 촉매 대신 저렴한 비귀금속 기반 촉매를 사용하여 차세대 녹색 수소 생산 기술로 많은 관심을 받고 있다. 하지만 음이온 교환막 수전해 기술은 개발 초기 단계이기 때문에 음이온 교환막 수전해의 핵심 요소인 음이온 교환막, 이오노머, 전극지지체 및 촉매에 관한 연구 수행이 필요하다. 그 중, 현재 촉매 분야에서 진행되고 있는 연구들은 기개발된 알칼리용 반쪽전지 촉매를 음이온 교환막 시스템에 적용하는 방향의 연구가 진행되고 있으며 적용된 촉매는 낮은 활성도와 내구성의 문제점을 가진다. 이에 본 총설은 알칼리성 매질에서 비귀금속 기반 촉매를 사용하여 산소발생반응 및 수소발생반응을 촉진시킨 촉매 합성 기술을 제시하였다.

고온 고분자 막 전해질 연료전지 캐소드의 가스 확산층 및 바인더 함량에 따른 완화 시간 분포(DRT) 저항 분석 (Resistance Analysis by Distribution of Relaxation Time According to Gas Diffusion Layers and Binder Amounts for Cathode of High-temperature Polymer Electrolyte Membrane Fuel Cell)

  • 김동희;정현승;박찬호
    • 한국수소및신에너지학회논문집
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    • 제34권3호
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    • pp.283-291
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    • 2023
  • The physical properties were analyzed for four gas diffusion layers, and gas diffusion electrodes (GDEs) for the cathode of high-temperature polymer electrolyte membrane fuel cell were fabricated through bar coating with three binder to carbon (B/C) ratios. Among them, The GDE from JNT30-A6P showed a significant change in secondary pore volume at a B/C ratio of 0.31, which had the largest pore volume among all GDEs. In the polarization curve, JNT30-A6P GDE showed the best membrane electrode assembly (MEA) performance with a peak power density of 384 mW/cm2 at a a B/C ratio of 0.31. From the distribution of relaxation time analysis, the peak 1 corresponding to mass transfer resistance of oxygen reduction reaction (ORR) was significantly reduced in the JNT30-A6P GDE. This is the result that when the binder content decreased, the volume of the secondary pore increased, and the mass transfer resistance of ORR decreased, which played an essential role in the MEA performance.

고분자 전해질 막을 이용한 일체형 재생 연료전지용 촉매전극 개발 (Development of Bifunctional Electrocatalyst for PEM URFC)

  • 임성대;박구곤;손영준;양태현;윤영기;이원용;김창수
    • 한국수소및신에너지학회논문집
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    • 제15권1호
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    • pp.23-31
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    • 2004
  • For the fabrication of high efficient bifunctional electrocatalyst of oxygen electrode for PEM URFC (Polymer Electrolyte Membrane Unitized Regenerative Fuel Cell), which is a promising energy storage and conversion system using hydrogen as the energy medium, several bifunctional electrocatalysts were prepared and tested in a single cell URFC system. The catalysts for oxygen electrode revealed fuel cell performance in the order of Pt black > PtIr > PtRuOx > PtRu ~ PtRuIr > PtIrOx, whereas water electrolysis performance in the order of PtIr ~ PtIrOx > PtRu > PtRuIr > PtRuOx ~ Pt black. Considering both reaction modes PtIr was the most effective elctrocatalyst for oxygen electrode of present PEM URFC system. In addition, the water electrolysis performance was significantly improved when Ir or IrOx was added to Pt black just 1 wt.% without the decrease of fuel cell performance. Based on the catalyst screening and the optimization of catalyst composition and loading, the optimum catalyst electrodes for PEM URFC were $1.0mg/cm^2$ of Pt black as hydrogen electrode and $2.0mg/cm^2$ of PtIr (99:1) as oxygen electrode.