Centralized and distributed hydrogen production using steam reforming: challenges and perspectives
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- Type
- article
- Published
- 2022-01-01
- Cited by
- 23
- References
- 0
- OpenAlex
- https://openalex.org/W4226051304
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:247311512
Keywords
Steam reforming, Hydrogen production, Production (economics), Methane reformer, Hydrogen
References
Cited by
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- Highly active and stable copper ferrite supported on β–SiC foam for decomposition of SO3 in the Sulfur–Iodine cycle for H2 production
- A comprehensive review on techno-environmental analysis of state-of-the-art production and storage of hydrogen energy: challenges and way forward
- Evolution paths from gray to turquoise hydrogen via catalytic steam methane reforming: Current challenges and future developments
- Photocatalytic water splitting in the gap between plasmonic gold nanoclusters
- Dye sensitization of TiO2 Relevant to Photocatalytic Hydrogen Generation: Current Research Trends and Prospects
- Enabling low-carbon membrane steam methane reforming: Comparative analysis and multi-objective NSGA-II-integrated Bayesian optimization
- Generalized effectiveness factor correlations for nickel catalyst pellets under low-pressure steam methane reforming conditions
- CFD-based multi-objective Bayesian optimization approach for compact and efficient hydrogen production in steam reforming reactor
- Propane steam reforming over La0.8Sr0.2Ni1-M O3 (M = Cr, Mn, Fe, Co) perovskite-type oxides
- The effect of the electrodes shape in water electrolysis on the production of hydrogen
- Technical and economic assessment of cryogenic fuels for future aviation
- Unraveling electrocatalyst reaction mechanisms in water electrolysis: In situ Raman spectra
- Intensification of methane steam reforming by Cu-foams packed with Rh-Al2O3 catalyst: a pilot-scale assessment
- An Insight into the Application and Progress of Artificial Intelligence in the Hydrogen Production Industry: A Review
- Predicting hydrogen production in porous foams for steam methane reforming: A combined approach using computational fluid dynamics and machine learning regression models
- Key parameters influencing steam-reforming performance for hydrogen production
- Development of newly designed biomass-based electrodes used in water electrolysis for clean hydrogen production
- Design Study of Multi-pass Membrane Separator for Improved Hydrogen Recovery Using Pd-Ag Membranes for On-site Hydrogen Generation
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