Journal of the Chinese Ceramic Society, Volume. 51, Issue 10, 2594(2023)
Reversible Performance of Flat-Tube Solid Oxide Cell Stack for Seawater
[1] [1] SARKER A K, AZAD A K, RASUL M G, ET AL. PROSPECT OF GREEN HYDROGEN GENERATION FROM HYBRID RENEWABLE ENERGY SOURCES: A REVIEW[J]. ENERGIES, 2023, 16(3): 1556.
[6] [6] VENKATARAMAN V, PREZ-FORTES M, WANG L G, et al. Reversible solid oxide systems for energy and chemical applications - Review & perspectives[J]. J Energy Storage, 2019, 24: 100782.
[7] [7] MOGENSEN M B. Materials for reversible solid oxide cells[J]. Curr Opin Electrochem, 2020, 21: 265-273.
[8] [8] GLEICK P. Water in crisis: A guide to the worlds fresh-water resources[M]. Oxford University Press.
[10] [10] SINGH M, ZAPPA D, COMINI E. Solid oxide fuel cell: Decade of progress, future perspectives and challenges[J]. Int J Hydrog Energy, 2021, 46(54): 27643-27674.
[11] [11] KHAN M Z, ILTAF A, AHMAD ISHFAQ H, et al. Flat-tubular solid oxide fuel cells and stacks: A review[J]. J Asian Ceram Soc, 2021, 9(3): 745-770.
[12] [12] LI Q S, KUANG K B, SUN Y N, et al. Deficiency of hydrogen production in commercialized planar Ni-YSZ/YSZ/LSM-YSZ steam electrolysis cells[J]. Int J Hydrog Energy, 2022, 47(56): 23514-23519.
[13] [13] ZHANG Q Q, CHANG Z S, FU M K, et al. Thermal performance analysis of an integrated solar reactor using solid oxide electrolysis cells (SOEC) for hydrogen production[J]. Energy Convers Manag, 2022, 264: 115762.
[14] [14] WU A Q, LI C L, HAN B B, et al. Pulsed electrolysis of carbon dioxide by large-scale solid oxide electrolytic cells for intermittent renewable energy storage[J]. Carbon Energy, 2022, 5(4): 1-11.
[15] [15] XI C Q, SANG J K, WU A Q, et al. Electrochemical performance and durability of flat-tube solid oxide electrolysis cells for H2O/CO2 co-electrolysis[J]. Int J Hydrog Energy, 2022, 47(18): 10166-10174.
[16] [16] RIEDEL M, HEDDRICH M P, FRIEDRICH K A. Investigation of the long-term stability of solid oxide electrolysis stacks under pressurized conditions in exothermic steam and co-electrolysis mode[J]. Fuel Cells, 2020, 20(5): 592-607.
[17] [17] KNIGSHOFER B, HBER M, NUSEV G, et al. Accelerated degradation for solid oxide electrolysers: Analysis and prediction of performance for varying operating environments[J]. J Power Sources, 2022, 523: 230982.
[18] [18] SCHILLER G, LANG M, SZABO P, et al. Solar heat integrated solid oxide steam electrolysis for highly efficient hydrogen production[J]. J Power Sources, 2019, 416: 72-78.
[19] [19] LIM C K, LIU Q L, ZHOU J, et al. High-temperature electrolysis of synthetic seawater using solid oxide electrolyzer cells[J]. J Power Sources, 2017, 342: 79-87.
[20] [20] YU L, ZHU Q, SONG S W, et al. Non-noble metal-nitride based electrocatalysts for high-performance alkaline seawater electrolysis[J]. Nat Commun, 2019, 10(1): 5106.
[21] [21] CHENG F F, FENG X L, CHEN X, et al. Synergistic action of Co-Fe layered double hydroxide electrocatalyst and multiple ions of sea salt for efficient seawater oxidation at near-neutral pH[J]. Electrochim Acta, 2017, 251: 336-343.
[22] [22] LIU Z, HAN B B, LU Z Y, et al. Efficiency and stability of hydrogen production from seawater using solid oxide electrolysis cells[J]. Appl Energy, 2021, 300: 117439.
[23] [23] LIU Z, HAN B B, ZHAO Y M, et al. Reversible cycling performance of a flat-tube solid oxide cell for seawater electrolysis[J]. Energy Convers Manag, 2022, 258: 115543.
[24] [24] SOLOVYEV A, IONOV I, LAUK A, et al. Fabrication and performance investigation of three-cell SOFC stack based on anode-supported cells with magnetron sputtered electrolyte[J]. J Electrochem Energy Convers Storage, 2018, 15(4): 044501.
[25] [25] SOLOVYEV A A, LEBEDYNSKIY A M, SHIPILOVA A V, et al. Scale-up of solid oxide fuel cells with magnetron sputtered electrolyte[J]. Fuel Cells, 2017, 17(3): 378-382.
[26] [26] VOGLER M, BIEBERLE-HUTTER A, GAUCKLER L, et al. Modelling study of surface reactions, diffusion, and spillover at a Ni/YSZ patterned anode[J]. J Electrochem Soc, 2009, 156(5): B663-B672
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YANG Yiping, HU Xiaogang, HUANG Xurui, LEI Jinyong, HAN Beibei, LIU Zhao, GUAN Wanbing. Reversible Performance of Flat-Tube Solid Oxide Cell Stack for Seawater[J]. Journal of the Chinese Ceramic Society, 2023, 51(10): 2594
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Received: Mar. 13, 2023
Accepted: --
Published Online: Nov. 26, 2023
The Author Email: Yiping YANG (yiping_yang0115@163.com)
CSTR:32186.14.