Journal Article10.1109/JPROC.2011.2156750
Hydrogen Production From Water Electrolysis: Current Status and Future Trends
Alfredo Ursúa,Luis M. Gandía,Pablo Sanchis +2 more
- 01 Feb 2012
- Vol. 100, Iss: 2, pp 410-426
1.3K
TL;DR: The possible configurations allowing the integration of water electrolysis units with renewable energy sources in both autonomous and grid-connected systems are presented and some relevant demonstration projects are commented.
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Abstract: This paper reviews water electrolysis technologies for hydrogen production and also surveys the state of the art of water electrolysis integration with renewable energies. First, attention is paid to the thermodynamic and electrochemical processes to better understand how electrolysis cells work and how they can be combined to build big electrolysis modules. The electrolysis process and the characteristics, advantages, drawbacks, and challenges of the three main existing electrolysis technologies, namely alkaline, polymer electrolyte membrane, and solid oxide electrolyte, are then discussed. Current manufacturers and the main features of commercially available electrolyzers are extensively reviewed. Finally, the possible configurations allowing the integration of water electrolysis units with renewable energy sources in both autonomous and grid-connected systems are presented and some relevant demonstration projects are commented.
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Citations
A novel hybrid energy system for hydrogen production and storage in a depleted oil reservoir
Hongqing Song,Guo Honghao,Yuhe Wang,Junming Lao,Huayin Zhu,Huayin Zhu,Ligen Tang,Ligen Tang,Xuan Liu +8 more
TL;DR: In this article, a hybrid energy system combining hydrogen production by offshore wind power with hydrogen storage in depleted oil reservoirs was constructed along with a mathematical model where the Weibull distribution, wind turbine power function, Faraday's law, continuity equation, Darcy's law and state equation of real gas, Net Present Value (NPV) and the concept of leveling were adopted to clarify the system characteristics.
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Stable and inexpensive electrodes for the hydrogen evolution reaction
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Tensile‐Strained RuO2 Loaded on Antimony‐Tin Oxide by Fast Quenching for Proton‐Exchange Membrane Water Electrolyzer
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Methanol Electrolysis for Hydrogen Production Using Polymer Electrolyte Membrane: A Mini-Review
Sethu Sundar Pethaiah,Kishor Kumar Sadasivuni,Arunkumar Jayakumar,Deepalekshmi Ponnamma,Chandra Sekhar Tiwary,G. Sasikumar +5 more
TL;DR: In this article, the state of the art and challenges on ultra-pure H2 production through methanol electrolysis that incorporate polymer electrolyte membrane (PEM) are discussed.
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Electrodeposition of NiCu bimetal on 3D printed electrodes for hydrogen evolution reactions in alkaline media
TL;DR: In this paper, hydrogen evolution electrodes are prepared by a 3D printing method using conductive PLA filament, and the results show that the resistance values of the electrodes are decreased from 0.262-kΩ to 0.187-k Ω in NixCu3x electrode.
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