Recent and Future Advances in Water Electrolysis for Green Hydrogen Generation: Critical Analysis and Perspectives

Author:

Franco Alessandro1ORCID,Giovannini Caterina1ORCID

Affiliation:

1. Department of Energy, Systems, Territory and Constructions Engineering (DESTEC), University of Pisa, 56122 Pisa, Italy

Abstract

This paper delves into the pivotal role of water electrolysis (WE) in green hydrogen production, a process utilizing renewable energy sources through electrolysis. The term “green hydrogen” signifies its distinction from conventional “grey” or “brown” hydrogen produced from fossil fuels, emphasizing the importance of decarbonization in the hydrogen value chain. WE becomes a linchpin, balancing surplus green energy, stabilizing the grid, and addressing challenges in hard-to-abate sectors like long-haul transport and heavy industries. This paper navigates through electrolysis variants, technological challenges, and the crucial association between electrolytic hydrogen production and renewable energy sources (RESs). Energy consumption aspects are scrutinized, highlighting the need for optimization strategies to enhance efficiency. This paper systematically addresses electrolysis fundamentals, technologies, scaling issues, and the nexus with energy sources. It emphasizes the transformative potential of electrolytic hydrogen in the broader energy landscape, underscoring its role in shaping a sustainable future. Through a systematic analysis, this study bridges the gap between detailed technological insights and the larger energy system context, offering a holistic perspective. This paper concludes by summarizing key findings, showcasing the prospects, challenges, and opportunities associated with hydrogen production via water electrolysis for the energy transition.

Funder

National Recovery and Resilience Plan

European Union—NextGenerationEU

Ministero dell’Università e della Ricerca

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference27 articles.

1. International Energy Agency (2023, September 29). IEA Report, Global Hydrogen Review. Available online: https://www.iea.org/reports/global-hydrogen-review-2023.

2. Franco, A., and Giovannini, C. (2023). Routes for Hydrogen Introduction in the Industrial Hard-to-Abate Sectors for Promoting Energy Transition. Energies, 16.

3. (2023, September 29). International Energy Agency, Electrolysers. Available online: https://www.iea.org/energy-system/low-emission-fuels/electrolysers.

4. International Energy Agency (2023, November 04). Hydrogen Production and Infrastructure Projects Database. Available online: https://www.iea.org/data-and-statistics/data-product/hydrogen-production-and-infrastructure-projects-database.

5. Gandía, L.M., Arzamendi, G., and Diéguez, P.M. (2013). Renewable Hydrogen Technologies, Elsevier.

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