What is Next in Anion-Exchange Membrane Water Electrolyzers? Bottlenecks, Benefits, and Future

ChemSusChem. 2022 Apr 22;15(8):e202200027. doi: 10.1002/cssc.202200027. Epub 2022 Mar 24.

Abstract

As highlighted by the recent roadmaps from the European Union and the United States, water electrolysis is the most valuable high-intensity technology for producing green hydrogen. Currently, two commercial low-temperature water electrolyzer technologies exist: alkaline water electrolyzer (A-WE) and proton-exchange membrane water electrolyzer (PEM-WE). However, both have major drawbacks. A-WE shows low productivity and efficiency, while PEM-WE uses a significant amount of critical raw materials. Lately, the use of anion-exchange membrane water electrolyzers (AEM-WE) has been proposed to overcome the limitations of the current commercial systems. AEM-WE could become the cornerstone to achieve an intense, safe, and resilient green hydrogen production to fulfill the hydrogen targets to achieve the 2050 decarbonization goals. Here, the status of AEM-WE development is discussed, with a focus on the most critical aspects for research and highlighting the potential routes for overcoming the remaining issues. The Review closes with the future perspective on the AEM-WE research indicating the targets to be achieved.

Keywords: anion-exchange membrane; electrocatalysis; electrolyzers; platinum-group metal-free; water electrolysis.

Publication types

  • Review

MeSH terms

  • Anions
  • Electrolysis
  • Hydrogen
  • Membranes, Artificial*
  • Water*

Substances

  • Anions
  • Membranes, Artificial
  • Water
  • Hydrogen