Industrial Decarbonization through Blended Combustion of Natural Gas and Hydrogen

Author:

Franco Alessandro1ORCID,Rocca Michele1ORCID

Affiliation:

1. Department of Energy Systems, Territory and Construction Engineering (DESTEC), University of Pisa, Largo Lucio Lazzarino, 56122 Pisa, Italy

Abstract

The transition to cleaner energy sources, particularly in hard-to-abate industrial sectors, often requires the gradual integration of new technologies. Hydrogen, crucial for decarbonization, is explored as a fuel in blended combustions. Blending or replacing fuels impacts combustion stability and heat transfer rates due to differing densities. An extensive literature review examines blended combustion, focusing on hydrogen/methane mixtures. While industrial burners claim to accommodate up to 20% hydrogen, theoretical support is lacking. A novel thermodynamic analysis methodology is introduced, evaluating methane/hydrogen combustion using the Wobbe index. The findings highlight practical limitations beyond 25% hydrogen volume, necessitating a shift to “totally hydrogen” combustion. Blended combustion can be proposed as a medium-term strategy, acknowledging hydrogen’s limited penetration. Higher percentages require burner and infrastructure redesign.

Funder

European Union—NextGenerationEU

Ministero dell’Università e della Ricerca

Publisher

MDPI AG

Reference38 articles.

1. International Energy Agency (IEA) (2024, August 24). CO2 Emissions in 2023. Available online: https://iea.blob.core.windows.net/assets/33e2badc-b839-4c18-84ce-f6387b3c008f/CO2Emissionsin2023.pdf.

2. Assessment of natural gas/hydrogen blends as an alternative fuel for industrial heat treatment furnaces;Mayrhofer;Int. J. Hydrogen Energy,2021

3. Experimental investigation for combustion performance of hydrogen and natural gas fuel blends;Sorgulu;Int. J. Hydrogen Energy,2023

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

5. (2024, June 15). Hydrogen Newsletter 2023. Hydrogen-Ready Boilers: A Corner in the Industry to Connect with Net-Zero Initiatives. Available online: https://www.hydrogennewsletter.com/hydrogen-ready-boilers-a-corner-in-theindustry-to-connect-wit/).

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