• 제목/요약/키워드: Water Splitting

검색결과 349건 처리시간 0.029초

A GENERALIZATION OF LOCAL SYMMETRIC AND SKEW-SYMMETRIC SPLITTING ITERATION METHODS FOR GENERALIZED SADDLE POINT PROBLEMS

  • Li, Jian-Lei;Luo, Dang;Zhang, Zhi-Jiang
    • Journal of applied mathematics & informatics
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    • 제29권5_6호
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    • pp.1167-1178
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    • 2011
  • In this paper, we further investigate the local Hermitian and skew-Hermitian splitting (LHSS) iteration method and the modified LHSS (MLHSS) iteration method for solving generalized nonsymmetric saddle point problems with nonzero (2,2) blocks. When A is non-symmetric positive definite, the convergence conditions are obtained, which generalize some results of Jiang and Cao [M.-Q. Jiang and Y. Cao, On local Hermitian and Skew-Hermitian splitting iteration methods for generalized saddle point problems, J. Comput. Appl. Math., 2009(231): 973-982] for the generalized saddle point problems to generalized nonsymmetric saddle point problems with nonzero (2,2) blocks. Numerical experiments show the effectiveness of the iterative methods.

이미다졸륨 고분자 코팅을 통한 음이온교환막의 물분해 특성 제어 (Controlling Water Splitting Characteristics of Anion-Exchange Membranes by Coating Imidazolium Polymer)

  • 김도형;박진수;강문성
    • 멤브레인
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    • 제25권2호
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    • pp.152-161
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    • 2015
  • 본 연구에서는 이온교환막을 이용한 전기화학적 수처리 공정의 효율을 향상시키기 위해 낮은 전기적 저항, 높은 이온선택 투과성, 및 농도분극 조건에서 낮은 물분해 플럭스 특성을 갖는 새로운 세공충진 음이온 교환막을 개발하였다. 다공성 폴리올레핀 기재에 이온교환능이 우수한 4급 암모늄기를 포함한 공중합 고분자를 충진하여 상용막 이상의 성능을 갖는 기저 멤브레인을 제조하였다. 또한 기저 막 표면에 이미다졸륨 고분자를 코팅하여 전기화학적 성능을 유지하며 동시에 물분해 플럭스를 효과적으로 제어할 수 있음을 확인하였다. 제조된 세공충진 음이온 교환막은 상용막 대비 약 1/6~1/8 수준의 매우 낮은 전기적 저항을 나타내었으며 동시에 농도분극 조건에서 양이온 교환막 수준의 낮은 물분해 플럭스를 나타내었다.

마찰과 세탁에 의한 극세섬유 직물의 표면과 촉감변화에 관한 연구 (End Use Tactile Property of the Split-type Nylon/PET Microfiber Fabrics)

  • 오경화;윤재희
    • 한국의류학회지
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    • 제28권3_4호
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    • pp.539-545
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    • 2004
  • In this study, the effect of washing, bleaching, and abrasion on tactile and the water absorption properties of the split-type Nylon/Polyester (N/P) microfiber pile-knit was investigated under various enduse conditions. We examined the water absorption and surface properties of PET microfiber which will be very useful in the future. We also studied the variations of their performance during usage caused by friction and repeated washing, regard to all kinds of physical, chemical changes which will appear while using those textiles. Progress in further splitting of PET microfiber fabric is observed with increases in the number of washing and bleaching cycles, and treatment temperature. Initial water absorption (%) was increased with progress in splitting, which provided efficient capillary channel. Surface properties were varied with additional splitting by washing and abrasion. Formation of pilling and splitting by abrasion increase surface roughness, diminishing tactile property, and reduced water absorption property. The current results from this study is expected to provide the appropriate washing management guide to consumers, and to inform end-use performance of product to a producer for improving product quality.

인공태양을 이용한 모노리스 적용 반응기에서 2단계 열화학적 물분해 연구 (2-Step Thermochemical Water Splitting on a Active Material Washcoated Monolith Using a Solar Simulator as Heat Source)

  • 강경수;김창희;박주식
    • 한국수소및신에너지학회논문집
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    • 제18권2호
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    • pp.109-115
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    • 2007
  • Solar energy conversion to hydrogen was carried out via a two-step thermochemical water splitting using metal oxide redox pair. To simulate the solar radiation, a 7 kW short arc Xe-lamp was used. Partially reduced iron oxide and cerium oxide have the water splitting ability, respectively. So, $Fe_3O_4$ supported on $CeO_2$ was selected as the active material. $Fe_3O_4/CeO_2$(20 wt/80 wt%) was prepared by impregnation method, then the active material was washcoated on the ceramic honeycomb monolith made of mullite and cordierite. Oxygen was released at the reduction step($1673{\sim}1823\;K$) and hydrogen was produced from water at lower temperature($873{\sim}1273\;K$). The result demonstrate the possibility of the 2-step thermochemical water splitting hydrogen production by the active material washcoated monolith. And hydrogen and oxygen was produced separately without any separation process in a monolith installed reactor. But the SEM and EDX analysis results revealed that the support used in this experiment is not suitable due to the thermal instability and coating material migration.

물 분해 수소제조를 위한 금속산화물들의 반응특성 (The Properties of the Several Metal Oxides in the Water-splitting for H2 Production)

  • 손현명;박주식;이상호;황갑진;김종원;이진배
    • 한국수소및신에너지학회논문집
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    • 제14권3호
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    • pp.268-275
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    • 2003
  • The water-splitting process by the metal oxides using solar heat is one of the hydrogen production method. The hydrogen production process using the metal oxides (NiFe2O4/NiAl2O4,CoFe2O4/CoAl2O4, CoMnNiFerrite, CoMnSnFerrite, CoMnZnFerrite, CoSnZnFerrite) was carried out by two steps. The first step was carried out by the CH4-reduction to increase activation of metal oxides at operation temperature. And then, it was carried out the water-splitting reaction using the water at operation temperature for the second step. Hydrogen was produced in this step. The production rates of H2 were 110, 160, 72, 29, 17, $21m{\ell}/hr{\cdot}g-_{Metal\;Oxide}$ for NiFe2O4/NiAl2O4, CoFe2O4/CoAl2O4, CoMnNiFerrite, CoMnSnFerrite, CoMnZnFerrite, CoSnZnFerrite respectively in the second step. CoFe2O4/CoAl2O4 had higher H2 production rate than the other metal oxides.

양이온교환막 표면의 전기투석 물분해에서 다가의 큰 이온성분자에 의해 형성된 고정층 바이폴라 계면의 영향 (Effects of Immobilized Bipolar Interface Formed by Multivalent and Large Molecular Ions on Electrodialytic Water Splitting at Cation-Exchange Membrane Surface)

  • Seung-Hyeon Moon;Moon-Sung Kang;Yong-Jin Choi
    • 멤브레인
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    • 제13권3호
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    • pp.143-153
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    • 2003
  • 본 연구에서는 양이온교환막 표면에 형성된 바이폴라 계면이 물분해 현상에 미치는 영향을 조사하였다. 실험결과, 전기투석 중 막표면에 형성된 고정화된 바이폴라 계면이 심각한 물분해를 유발함을 알 수 있었다. 특히, 고정화된 바이폴라 계면은 다가 양이온이 전해질로 이용되는 전기투석 시스템에서 양이온교환막 표면에 쉽게 형성됨을 알 수 있었다. 낮은 용해도적 상수를 갖는 다가 양이온들은 급격한 물분해를 유발하였는데 이는 이들이 막표면에서 쉽게 수산화물의 형태로 침적되며 따라서 수소-친화 그룹과 수산화-친화 그룹으로 구성된 바이폴라 계면이 막-용액 계면에 형성됨을 알 수 있었다. 따라서 물분해는 막 표면의 금속수산화물 층과 막의 고정전하 그룹간에 발생되는 강한 전기장에 의해 크게 활성화됨을 알수 있다. 또한 이와 유사하게 분자량이 큰 유기 상대이온들이 막표면에 누적되는 경우에도 고정화된 바이폴라 계면이 형성되어 한계전류밀도 이상에서 심각한 물분해를 유발하였다. 따라서 전기투석의 고전류 운전시 효율 향상을 위해서는 막표면에 유발되는 고정화된 바이폴라 계면의 형성을 억제하는 것이 매우 중요함을 알 수 있다.

태양광을 활용한 물분해 수소생산용 광촉매재료 (Photocatalysts for Hydrogen Production from Solar Water Splitting)

  • 김정현
    • 청정기술
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    • 제19권3호
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    • pp.191-200
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    • 2013
  • 미래의 무한 청정 에너지원으로 고려되고 있는 태양에너지를 활용하여 수소를 생산할 수 있는 광촉매재료에 대한 연구가 활발히 진행되고 있다. 본 총설에서는 태양광을 이용한 물분해 수소생산용 광촉매재료들에 대하여 알아보고, 현재까지 보고된 다양한 광촉매재료의 특성들을 검토하고자 한다. 또한, 다양한 광촉매재료를 활용하여 수소생산 효율을 높이기 위해서 시행되었던 촉매재료 개질 방법들을 통하여 향후 지속적으로 진행될 연구방향을 모색해 보고자 한다. 각각의 광촉매재료들이 활성을 가질 수 있는 빛의 영역을 알아보고, 광촉매 작용에 필수적인 광원, 광밀도, 파장영역 등의 중요성에 대해서도 토론한다.

Water-splitting Performance of TiO2 Nanotube Arrays Annealed in NH3 Ambient

  • Kim, Se-Im;Kim, Sung-Jin;Yang, Bee-Lyong
    • 한국세라믹학회지
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    • 제48권2호
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    • pp.200-204
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    • 2011
  • Increase of surface area and decrease of band gap in $TiO_2$ semiconductors are significant to improve the efficiency of water splitting by photoelectrolysis. In this study $TiO_2$ nanotube arrays with ~7 um length and ~100 nm diameter were fabricated by an anodizing technique of titanium foils using DMSO (dimethyl sulfoxide)-based electrolytes. Then to control the band gap of the $TiO_2$ arrays, they were annealed at $550^{\circ}C$ for up to 180 min in $NH_3$ gas ambient. The samples annealed in $NH_3$ gas for 30 min and 60 min showed superior photo-conversion efficiency for water splitting under white and visible light. A $TiO_2$ nanotube annealed in $NH_3$ gas ambient for a period longer than 120 min showed 1 order higher leakage current. It is believed that the decrease of band gap and increase of conductivity in $TiO_2$ nanotube arrays due to $NH_3$ gas treatments result in the superior water-splitting performance.

A Newly Designed a TiO2-Loaded Spherical ZnS Nano/Micro-Composites for High Hydrogen Production from Methanol/Water Solution Photo-Splitting

  • Kim, Ji-Eun;Kang, Mi-Sook
    • Bulletin of the Korean Chemical Society
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    • 제33권7호
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    • pp.2133-2139
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    • 2012
  • A new system using $TiO_2$ (nano-sized, band-gap 3.14 eV)-impregnated spherical ZnS (micro-sized, band-gap 2.73 eV) nano/micro-composites (Ti 0.001, 0.005, 0.01, and 0.05 mol %/ZnS) was developed to enhance the production of hydrogen from methanol/water splitting. The ZnS particles in a spherical morphology with a diameter of about 2-4 mm which can absorb around 455 nm were prepared by hydrothermal method. This material was used as a photocatalyst with loading by nano-sized $TiO_2$ (20-30 nm) for hydrogen production. The evolution of $H_2$ from methanol/water (1:1) photo splitting over the $TiO_2$/ZnS composite in the liquid system was enhanced, compared with that over pure $TiO_2$ and ZnS. In particular, 1.2 mmol of $H_2$ gas was produced after 12 h when 0.005 mol % $TiO_2$/ZnS nano/micro-composite was used. On the basis of cyclic voltammeter (CV) and UV-visible spectrums results, the high photoactivity was attributed to the larger band gap and the lower LUMO in the $TiO_2$/ZnS composite, due to the decreased recombination between the excited electrons and holes.

Comparative Study of Undoped and Nickel-Doped Molybdenum Oxide Photoanodes for PEC Water Splitting

  • Garcia-Garcia, Matias
    • Journal of Electrochemical Science and Technology
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    • 제13권3호
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    • pp.377-389
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    • 2022
  • The current global energy supply depends heavily on fossil fuels. This makes technology such as direct water splitting from harvesting solar energy in photoelectrochemical (PEC) systems potentially attractive due to its a promising route for environmentally benign hydrogen production. In this study, undoped and nickel-doped molybdenum oxide photoanodes (called photoanodes S1 and S2 respectively) were synthesized through electrodeposition by applying -1.377 V vs Ag/AgCl (3 M KCl) for 3 hours on an FTO-coated glass substrate immersed in molibdatecitrate aqueous solutions at pH 9. Scanning electron microscopy (SEM), atomic force microscopy (AFM), energy-dispersive X-ray spectroscopy (EDS), and X-ray photoelectron spectroscopy (XPS) were used for microstructural and compositional characterizations of the photoanodes. In addition, the optical and photoelectrochemical characterizations of these photoanodes were performed by UV-Visible spectroscopy, and linear scanning voltammetry (LSV) respectively. The results showed that all the photoanodes produced exhibit conductivity and catalytic properties that make them attractive for water splitting application in a photoelectrochemical cell. In this context, the photoanode S2 exhibited better photocatalytic activity than the photoanode S1. In addition, photoanode S2 had the lowest optical band-gap energy value (2.58 eV), which would allow better utilization of the solar spectrum.