Relationship Between the Redox Reactions on a Bipolar Plate and Reverse Current After Alkaline Water Electrolysis

被引:0
|
作者
Yosuke Uchino
Takayuki Kobayashi
Shinji Hasegawa
Ikuo Nagashima
Yoshio Sunada
Akiyoshi Manabe
Yoshinori Nishiki
Shigenori Mitsushima
机构
[1] Asahi Kasei Corp,
[2] Yokohama National University,undefined
[3] Kawasaki Heavy Industries,undefined
[4] Ltd.,undefined
[5] ThyssenKroupp Uhde Chlorine Engineers (Japan),undefined
[6] Ltd.,undefined
[7] De Nora Permelec,undefined
[8] Ltd.,undefined
来源
Electrocatalysis | 2018年 / 9卷
关键词
Alkaline water electrolysis; Reverse current; Bipolar plate; Renewable energy; Ni electrode;
D O I
暂无
中图分类号
学科分类号
摘要
In order to efficiently operate the alkaline water electrolyzers with renewable energy, behaviors of the electrolyzer during start-up or shut-down must be unveiled, because they might be suffered by reverse current that naturally flows. The mechanism of the reverse current in alkaline water electrolyzer having relation between the electrolyzer operating conditions and cell voltage has been investigated using a bipolar-type electrolyzer which consists of two cells. The electrodes were nickel mesh, which are conventional electrodes for alkaline water electrolyzer. The amount of natural reverse current measured during off-load was proportional to the current loaded until just before stopping the operation. The increase in the charge would result from the increasing oxide on the anode of the bipolar plate. Cell voltages were above 1.4 V at all cases just when the electrolyzer is forcibly opened the circuit to stop. The major redox couple of the reverse current would be [NiO2/NiOOH] and [H2/H2O] due to the cell voltage and the redox couples. The open circuit cell voltage of the cathode terminal side cell gradually decreased to 0.3 V, while that of the anode terminal side cell was maintained above 1.1 V. Therefore, nickel oxides on the anode of the bipolar plate would be reduced, and the cathodic active material of hydrogen and nickel for the cathode side of the bipolar plate would be oxidized during the reverse current flows. Ultimately, the reverse current would stop when the redox state of both sides of the bipolar plate had the same oxidation state.Graphical Abstract[graphic not available: see fulltext]
引用
收藏
页码:67 / 74
页数:7
相关论文
共 50 条
  • [21] Effects of generated bubbles between electrodes on efficiency of alkaline water electrolysis
    Nagai, N
    Takeuchi, M
    Nakao, M
    JSME INTERNATIONAL JOURNAL SERIES B-FLUIDS AND THERMAL ENGINEERING, 2003, 46 (04) : 549 - 556
  • [22] Performance Analysis of Alkaline Water Electrolysis System Based on Heat Current Modeling Method
    Jiang, Yichong
    Wu, Jintao
    He, Kelun
    Zhang, Ye
    Chen, Qun
    Zhang, Minhao
    Zhao, Tian
    Liu, Yaowen
    2024 IEEE 2ND INTERNATIONAL CONFERENCE ON POWER SCIENCE AND TECHNOLOGY, ICPST 2024, 2024, : 1785 - 1794
  • [23] Relationship between Level of Blood Sugar and current profile by Electrolysis Process
    Tara, Kusum
    Sarkar, Ajay Krishno
    2017 4TH INTERNATIONAL CONFERENCE ON ADVANCES IN ELECTRICAL ENGINEERING (ICAEE), 2017, : 527 - 530
  • [24] Poly(arylene ether ketone)-based bipolar membranes for acid-alkaline water electrolysis applications
    Lee, Lynn
    Kim, Dukjoon
    JOURNAL OF MATERIALS CHEMISTRY A, 2021, 9 (09) : 5485 - 5496
  • [25] Salinity gradient power-reverse electrodialysis and alkaline polymer electrolyte water electrolysis for hydrogen production
    Tufa, Ramato Ashu
    Rugiero, Elisabetta
    Chanda, Debabrata
    Hnat, Jaromir
    van Baak, Willem
    Veerman, Joost
    Fontananova, Enrica
    Di Profio, Gianluca
    Drioli, Enrico
    Bouzek, Karel
    Curcio, Efrem
    JOURNAL OF MEMBRANE SCIENCE, 2016, 514 : 155 - 164
  • [26] Investigation of Charge-Discharging Behavior of Metal Oxide-Based Anode Electrocatalysts for Alkaline Water Electrolysis to Suppress Degradation due to Reverse Current
    Oda, Kazuaki
    Kuroda, Yoshiyuki
    Mitsushima, Shigenori
    ELECTROCATALYSIS, 2023, 14 (03) : 499 - 510
  • [28] Alkaline electrolysis or anion exchange membrane? Water electrolysis: Current solution approaches to the production of green hydrogen from research and industry
    Wetterau, Jörg
    CIT Plus, 2024, 27 (06) : 58 - 61
  • [29] Decoupled Water Electrolysis at High Current Densities Using a Solution-Phase Redox Mediator
    Eze, Obeten Mbang
    Ertekin, Zeliha
    Symes, Mark D.
    ENERGY & FUELS, 2025,
  • [30] INSITU ACTIVATION OF NICKEL CATHODES BY SODIUM MOLYBDATE DURING ALKALINE WATER ELECTROLYSIS AT CONSTANT CURRENT
    HUOT, JY
    BROSSARD, L
    JOURNAL OF APPLIED ELECTROCHEMISTRY, 1990, 20 (02) : 281 - 288