Fundamentals of Gas Diffusion Electrodes and Electrolysers for Carbon Dioxide Utilisation: Challenges and Opportunities

Author:

Hernandez-Aldave SandraORCID,Andreoli EnricoORCID

Abstract

Electrocatalysis plays a prominent role in the development of carbon dioxide utilisation technologies. Many new and improved CO2 conversion catalysts have been developed in recent years, progressively achieving better performance. However, within this flourishing field, a disconnect in catalyst performance evaluation has emerged as the Achilles heel of CO2 electrolysis. Too often, catalysts are assessed in electrochemical settings that are far removed from industrially relevant operational conditions, where CO2 mass transport limitations should be minimised. To overcome this issue, gas diffusion electrodes and gas-fed electrolysers need to be developed and applied, presenting new challenges and opportunities to the CO2 electrolysis community. In this review, we introduce the reader to the fundamentals of gas diffusion electrodes and gas-fed electrolysers, highlighting their advantages and disadvantages. We discuss in detail the design of gas diffusion electrodes and their operation within gas-fed electrolysers in both flow-through and flow-by configurations. Then, we correlate the structure and composition of gas diffusion electrodes to the operational performance of electrolysers, indicating options and prospects for improvement. Overall, this study will equip the reader with the fundamental understanding required to enhance and optimise CO2 catalysis beyond the laboratory scale.

Funder

Welsh European Funding Office - Welsh Government

Engineering and Physical Sciences Research Council

Publisher

MDPI AG

Subject

Physical and Theoretical Chemistry,Catalysis

Reference210 articles.

1. Global Warming of 1.5 C An IPCC Special Report on the Impacts of Global Warming of 1.5 C Above Pre-Industrial Levels and Related Global Greenhouse Gas. Emission Pathways, in the Context of Strengthening the Global Response to the Threat of Climate Change;Masson-Delmotte,2018

2. Carbon capture, storage and utilisation technologies: A critical analysis and comparison of their life cycle environmental impacts

3. Novel Carbon Capture and Utilization Technologies;Bujnicki,2018

4. Trends in Global CO2 Emissions: 2012 Report;Olivier,2012

5. Trends in Global CO2 and Total Greenhouse Gas Emissions: 2018 Report;Olivier,2018

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