DOE OSTI · 3017522
Final Report: Process Intensification of Hydrogen Production through Sorption-Enhanced Gasification of Biomass
Abstract
The University of Utah, in partnership with Idaho National Laboratory (INL), evaluated Sorption-Enhanced Gasification (SEG) as a transformative pathway for producing hydrogen with the potential for negative CO 2 emissions. SEG integrates gasification, water-gas shift, and in-situ carbon capture within a dual fluidized bed reactor to enable efficient clean hydrogen production. Key challenges related to biomass variability and process complexity were addressed through feedstock engineering, reaction optimization, and process validation. A co-pelletized biomass–limestone feedstock was developed to simplify feeding and introduction of makeup limestone. Kinetic and sorbent studies identified optimal operating conditions and confirmed the suitability of low-cost limestone, while catalysts were developed to reduce tar formation. Reactor modeling and techno-economic analysis indicated that SEG can achieve competitive hydrogen production costs, particularly when combined with carbon incentives, supporting its potential for scale-up and carbon-negative operation.
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Whitty, Kevin J [University of Utah] (ORCID:0000000225625870), Kim, Jieun [University of Utah] (ORCID:0000000279536603). 2026-01-30. Final Report: Process Intensification of Hydrogen Production through Sorption-Enhanced Gasification of Biomass. https://doi.org/10.2172/3017522
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