Advancements and challenges of industrial‐level acidic CO 2 electrolysis

  • Shen S
  • Yang K
  • Xu G
  • et al.
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Abstract

The use of green renewable energy to convert carbon dioxide (CO 2 ) into valuable chemicals and fuels through CO 2 electrolysis technology (also known as electrochemical CO 2 reduction reaction, eCO 2 RR) is an advantageous technology, which could greatly aid the global carbon‐neutral goal. Although progress has been made in alkaline/neutral media, low carbon conversion efficiency to target products, carbonate/bicarbonate salt precipitation, and blockage of electrode holes caused by CO 2 are not conducive to industrial applications. Acidic media could address these issues; however, in these conditions, there are other challenges that need to be addressed, such as hydrogen evolution, poor tolerance of electrocatalysts, and electrolysers. This review discusses recent advances in industrial‐level acidic CO 2 electrolysis, including reaction mechanisms, electrocatalysts, and device design, aiming to promote its commercialization. In addition, a comprehensive evaluation strategy of an acidic eCO 2 RR system is proposed, and perspectives are provided based on related discussion.

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Shen, S., Yang, K., Xu, G., Chen, S., Ortiz‐Ledón, C., & Duan, J. (2024). Advancements and challenges of industrial‐level acidic CO 2 electrolysis. MetalMat, 1(2). https://doi.org/10.1002/metm.28

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