Revolutionary carbon quantum dot supported-Co catalyst for record-breaking hydrogen production rate
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s41779-023-00988-3.pdf
Reference39 articles.
1. Owusu, P.A., Asumadu-Sarkodie, S.: A review of renewable energy sources, sustainability issues and climate change mitigation. Cogent Eng. 3(1), 1167990 (2016)
2. AL-bonsrulah, H.A., Veeman, D., Reddy, M.: Computational fluid dynamics study of a steam reformer unit performance to produce hydrogen fuel for PEM fuel cell applications. In Recent Advances in Renewable Energy Systems: Select Proceedings of ICOME 2021. Springer. 1–18 (2022)
3. Lepage, T., Kammoun, M., Schmetz, Q., Richel, A.: Biomass-to-hydrogen: A review of main routes production, processes evaluation and techno-economical assessment. Biomass Bioenergy. 144, 105920 (2021)
4. De Crisci, A.G., Moniri, A., Xu, Y.: Hydrogen from hydrogen sulfide: towards a more sustainable hydrogen economy. Int J Hydrogen Energy 44(3), 1299–1327 (2019)
5. Kabeyi, M.J.B., Olanrewaju, O.A.: Biogas production and applications in the sustainable energy transition. J. Energy. 2022, 1–43 (2022)
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