期刊文献+

复合电镀制节能活性阴极研究(Ⅱ)——镍铝活性阴极的电性能 被引量:1

Studies of Active Cathode Made By Composite-Electroplating Technique (Ⅱ)——The Electrochemical Performance of Ni-Al Active Cathode
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摘要 本文研究了用复合电镀法制得的镍铝活性阴极的电性能.在相同条件下,这种活性阴极的释氢电位比铁电极低300mV左右.研究结果表明:这种活性阴极具有抗强反电流、Fe^(2+)中毒和热处理的性能. The paper reports the electrochemical performance of Ni-Al active cathode which is made by composite-electro-plating technique.The hydrogen overvoltage of the active cathode is about 300mv lower than that of Fe electrode in same conditions.The results of many tests show that the cathode has excellent abilities to resist strong reverse current, poisoning of Fe ion and heat treatment.
出处 《华东师范大学学报(自然科学版)》 CAS CSCD 1991年第4期68-73,共6页 Journal of East China Normal University(Natural Science)
关键词 活性阴极 氢超电位 镍铝合金 节能 active cathode hydrogenovervoltage Ni-Al alloy
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参考文献7

  • 1崔秀良,1991年
  • 2胡善珍,氯碱工业,1987年,1期,38页
  • 3团体著者,1987年
  • 4郑成耀,氯碱工业,1984年,6期,38页
  • 5张晋衡,氯碱工业,1982年,4期,58页
  • 6徐士忠,1981年
  • 7张晋衡,1981年

同被引文献13

  • 1孙真荣,陈康宁.钌镍氧化物活性阴极的研究[J].华东师范大学学报(自然科学版),1995(4):65-73. 被引量:3
  • 2莫里森SR.半导体与金属氧化膜的电化学[M].北京:科学出版社,1988.178-179.
  • 3奈良美合子,田中正志,锦善则,等.活性阴极及其制备方法:CN1167833C[P].2004-02-24.
  • 4Kotz E R. Ruthenium dioxide as a hydrogen-evolving cathode[J].J Appl Electrochem, 1987, 17(6): 1190-1197.
  • 5Nidola A, Schira R. Poisoning Mechanisms and Structural Analyses on Metallic Contaminated Cathode Catalysts in Chlor-Alkali Membrane Cell Techology [ J ]. J Electrochem Soc, 1986,133 (8) : 1653-1656.
  • 6刑家悟,康建忠,王玉兰,等.活性阴极及其制备方法:CN101029405A[P].2006-02-28.
  • 7Nidola A. Electrode for electrochemical processes, particu-larly for developing the cathode of electrolytic cells for the e-lectrolysis of alkali chlorides, process for producting the e-lectrode and electrolytic cell by using the electrode: US 4975161[p].1988-09-28.
  • 8Barry Kunz A. Electronic structure of NiO[ J ]. J Phys C: Solid State Phys, 1981, ( 14 ) : 455-460.
  • 9Mattheiss L F. Electronic structure of RuO2, OsO2 and IrO2 [ J ]. Phys Rev B, 1976,13 (6) : 2433-2450.
  • 10Endoh E, Otouma H, Morimoto T, et al. Adavanced low hydrogen overvoltage cathode for ehlor-alkal electrolysis cells[ J]. Int J Hydrogen Energy, 1988, 13:207.

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