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Vicor模块在便携式电解水氢氧发生器电源上的应用 被引量:1

Application of Vicor modules in power supply of portable hydrogen-oxygen generator by electrolyzing water
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摘要 简述一款便携式电解水氢氧发生器400 W高可靠性恒流电解电源。在分析氢氧发生器的工作原理、电源结构和关键器件选型的基础上,经过对美国Vicor公司和日本Lambda公司生产的VI-200系列和PH系列DC-DC变换模块进行研究与试验,选择采用美国Vicor模块作为电解电源设计的变换模块。设计电源具有体积小、质量轻、可靠性高,适用于产气量为80 L/h的电解水氢氧发生器。 This paper introduces a design of 400 W high-reliability constant current power supply for portable water electrolysis hydro-oxygen generator.On the basis of analyzing the working principle of hydrogen-oxygen generator,power device structure and key components selection,we did research and testing on VI-200 series and PH Series DC-DC conversion module produced by American Vicor Company and Japan Lambda Corporation,and Vicor modules of American Vicor Company are finally selected as the transformation module of the electrolytic power supply design.The power supply device has a better performance with small size,light weight,high reliability,and it′s suitable for water electrolysis hydro-oxygen generator producing 80 liter gas per hour.
出处 《兵器材料科学与工程》 CAS CSCD 2010年第2期94-98,共5页 Ordnance Material Science and Engineering
关键词 氢氧发生器 DC—DC变换模块 恒流开关电源 hydrogen-oxygen generator DC-DC conversion module constant-current switching power supply
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参考文献5

  • 1毛宗强.氢能-21世纪绿色能源[M].北京:化学工业出版社,2005:41-48.
  • 2JB 8795-1998.水电解氢氧发生器[S].北京:机械工业部机械标准化研究所.1998.
  • 3Vicor VI-200/VI-J00产品应用手册[DB/OL].http://www.vicor-china.com/technical_library/technical_documentation/design_centegmanuals_and_guides/st_gen_applications_manual/,2007.
  • 4SJ/T31456-1994.电解制氢氧设备完好要求和检查评定方法[S].北京:电子工业部,1994.
  • 5倪萌,M.K.H.Leung,K.Sumathy.电解水制氢技术进展[J].能源环境保护,2004,18(5):5-9. 被引量:59

二级参考文献16

  • 1Weikang Hu, Xuejun Cao, Fupeng Wang, Yunshi Zhang. Short Communication: A Novel Cathode For Alkaline Water Electrolysis[J] .International Journal of Hydrogen Energy 22( 1997), 441 ~ 443.
  • 2N.Nagai, M. Takeuchi, T. Kimura, T. Oka. Existence of Optimum Space Between Electrodes on Hydrogen Production by Water Electrolysis[J]. International Journal of Hydrogen Energy 28(2003), 35~ 41.
  • 3Carl- Jochen Winter, Joachim Nitsch. Hydrogen as An Energy Carriers: Technologies. Systems. Economy [M]. Springer-Verlag, 1988,179~ 181.
  • 4S.Trasatti. Electrochemistry and the Environment: The Role of Electrocatalysis[J]. International Journal of Hydrogen Energy 20( 1995).835~ 844.
  • 5J. Kerres, G. Eigenberger, S. Reichle, V. Schramm, K. Hetzel,W. Schnumberger, I. Seybold. Advanced Alkaline Electrolysis with Porous Polymeric Diaphragms[J]. Desalination 104(1996). 47~ 57.
  • 6Dragica Lj. Stojic, Milica P, Marceta, Sofija P. Sovilj, Scepan S.Miljanic. Hydrogen Generation from Water Electrolysis - Possibilities of Energy Saving [ J ]. Journal of Power Sources 118 (2003), 315 ~ 319.
  • 7Sampath Yerramalla, Asad Davari, Ali Feliachi, Tamal Biswas.Modeling and Simulation of the Dynamic Behavior of a Polymer Electrolyte Membrane Fuel Cell [J] . Journal of Power Source 124(2003), 104~113.
  • 8Yoshimori Tanaka, Sakae Uchinashi, Yasuhiro Saihara, Kenji Kikuchi, Takuji Okaya, Zempachi Ogumi. Dissolution of Hydrogen and the Ratio of the Dissolved Hydrogen Content to the Produced Hydrogen in Electrolyzed Water Using SPE Water Electrolyzer[J] . Electrochinica Acta 48(2003) , 4013 ~ 4019.
  • 9Egil Rasten, Georg Hagen. Reidar Tunold. Electrocatalysis in Water Electrolysis with Solid Polymer Electrolyzer[J] . Electrochimica Acta 48(2003), 3945 ~ 3952.
  • 10Ghany N.A.A, Kumagai N, Meguro S, Asami K, Hashimoto K.Oxygen evolution anodes composed of anodically deposited Mn - Mo - Fe oxides for seawater electrolysis[J] . Electrochimica Acta, 48( 1 ): 21 ~28, 2002.

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