A novel cryogenic-thermochemical approach for clean hydrogen production from industrial flue gas streams with carbon capture and storage
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Elsevier BV
Reference30 articles.
1. In-situ catalytic reforming of converter gas in converter flue based on thermochemical energy storage: Kinetics and numerical simulation;Ren;J Energy Storage,2022
2. Removal of H2S in biogas using biotrickling filter: Recent development;Huynh Nhut;Process Saf Environ Prot,2020
3. Recovery of elemental sulfur direct from nonferrous flue gas by a low-temperature Claus process with H2S as the interim reducer;Sun;Fuel,2024
4. H2 production via H2S decomposition over activated carbon supported Fe- and W- catalysts;Dogan;Int J Hydrogen Energy,2024
5. Evaluation of H2S gas removal by a biotrickling filter: Effect of oxygen dose on the performance and microbial communities;Zhang;Process Saf Environ Prot,2022
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