PEM water electrolysis for hydrogen production: fundamentals, advances, and prospects

Мембранный электролиз воды с протонообменной мембраной для производства водорода: основы, достижения и перспективы
Tongzhou Wang, Xuejie Cao, Lifang Jiao
2022-06-02

HER electrocatalystsOER electrocatalystsPEM water electrolysishydrogen productionmembrane electrode assembly
Abstract Hydrogen, as a clean energy carrier, is of great potential to be an alternative fuel in the future. Proton exchange membrane (PEM) water electrolysis is hailed as the most desired technology for high purity hydrogen production and self-consistent with volatility of renewable energies, has ignited much attention in the past decades based on the high current density, greater energy efficiency, small mass-volume characteristic, easy handling and maintenance. To date, substantial efforts have been devoted to the development of advanced electrocatalysts to improve electrolytic efficiency and reduce the cost of PEM electrolyser. In this review, we firstly compare the alkaline water electrolysis (AWE), solid oxide electrolysis (SOE), and PEM water electrolysis and highlight the advantages of PEM water electrolysis. Furthermore, we summarize the recent progress in PEM water electrolysis including hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) electrocatalysts in the acidic electrolyte. We also introduce other PEM cell components (including membrane electrode assembly, current collector, and bipolar plate). Finally, the current challenges and an outlook for the future development of PEM water electrolysis technology for application in future hydrogen production are provided.
1
Compared with alkaline and solid oxide electrolysis, PEM electrolysis offers high current density, greater energy efficiency, compact size, and easier handling and maintenance.
2
Major technical challenges remain, and future advances are needed for broader PEM electrolysis deployment in hydrogen production.
3
PEM water electrolysis is presented as a promising technology for high-purity hydrogen production compatible with intermittent renewable energy.
4
Recent research focuses on advanced electrocatalysts for acidic hydrogen evolution and oxygen evolution reactions to improve efficiency and reduce electrolyser costs.
5
The review covers key PEM electrolyser components, including membrane electrode assemblies, current collectors, and bipolar plates, alongside electrocatalyst developments.

PEM water electrolysis technology for hydrogen production

Fundamentals, technological advances, electrocatalyst and cell-component development, efficiency improvement, cost reduction, challenges, and prospects of PEM water electrolysis

Publication Details
Publication Date
2022-06-02
Journal
Publisher
ISSN
Cited by
380
Access Type
Author Information
Authors
Tongzhou Wang
Xuejie Cao
Lifang Jiao
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%