Hydrogen Production by Sorption Enhanced Steam Reforming (SESR) of Biomass in a Fluidised-Bed Reactor Using Combined Multifunctional Particles
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Summary
Significant coke formation within the feeding tube and on the surfaces of the particles was observed which was attributed to the low steam to carbon ratio utilised.
- Type
- article
- Published
- 2018-05-01
- Cited by
- 23
- References
- 71
- Access
- Open access
- OpenAlex
- https://openalex.org/W2803673362
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:44091831
Keywords
Steam reforming, Hydrogen production, Sorption, Biomass (ecology), Waste management
References
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- Large-Scale Hydrogen Production
- Dispersions: Characterization, Testing, and Measurement
- Solid sorbents for in-situ CO2 removal during sorption-enhanced steam reforming process: A review
- Tailored hydrotalcite-based hybrid materials for hydrogen production via sorption-enhanced steam reforming of ethanol
- Hydrogen production from biomass coupled with carbon dioxide capture: The implications of thermodynamic equilibrium
- GSAS‐II: the genesis of a modern open‐source all purpose crystallography software package
- Steam reforming model compounds of biomass gasification tars: conversion at different operating conditions and tendency towards coke formation
- Conversion Limits in the Reaction of CO2 with Lime
- Mechanisms of catalyst deactivation
- Reactor performance optimization by the use of a novel combined pellet reflecting both catalyst and adsorbent properties
- Performance of a combined CaO-based sorbent and catalyst on H2 production, via sorption enhanced methane steam reforming
- Synthesis, experimental studies, and analysis of a new calcium-based carbon dioxide absorbent
- A numerical study of multicomponent mass diffusion and convection in porous pellets for the sorption-enhanced steam methane reforming and desorption processes
- Sorption-enhanced steam reforming of glycerol on Ni-based multifunctional catalysts
- Process intensification aspects for steam methane reforming: An overview
- Four challenges for nickel steam-reforming catalysts
- Hydrogen production via CaO sorption enhanced anaerobic gasification of sawdust in a bubbling fluidized bed
- Development of Al-stabilized CaO–nickel hybrid sorbent–catalyst for sorption-enhanced steam methane reforming
- The reversibility of the reaction CaCO3 ⇄ CaO+CO2
Cited by
- H2 production from co-pyrolysis/gasification of waste plastics and biomass under novel catalyst Ni-CaO-C
- Investigation of the apparent kinetics of air and oxy-fuel biomass combustion in a spout fluidised-bed reactor
- Feasibility analysis of Ca-looping sorption enhanced steam reforming of bio-butanol for SOFC application: comparative study with steam and auto-thermal reforming
- Process simulations of blue hydrogen production by upgraded sorption enhanced steam methane reforming (SE-SMR) processes
- Multi-functionalized polysilsesquioxanes assisted synthesis of methylammonium tin bromide perovskite: A novel approach
- Role of Mixed Oxides in Hydrogen Production through the Dry Reforming of Methane over Nickel Catalysts Supported on Modified γ-Al2O3
- A review of CO2 sorbents for promoting hydrogen production in the sorption-enhanced steam reforming process
- Dynamic Model and Performance of an Integrated Sorption-enhanced Steam Methane Reforming Process with Separators for the Simultaneous Blue H2 Production and CO2 Capture
- Bi-Functional Catalyst/Sorbent for a H2-Rich Gas from Biomass Gasification
- CO2 Capture at Medium to High Temperature Using Solid Oxide-Based Sorbents: Fundamental Aspects, Mechanistic Insights, and Recent Advances.
- Influence of regeneration conditions on cyclic sorption-enhanced steam reforming of ethanol in fixed-bed reactor
- Olive Mill Wastewater Valorization through Steam Reforming Using Multifunctional Reactors: Challenges of the Process Intensification
- Chemical looping gasification and sorption enhanced gasification of biomass: a perspective
- Sorption enhanced steam reforming of methane over waste-derived CaO promoted MgNiAl hydrotalcite catalyst for sustainable H2 production
- Prediction of Combined Sorbent and Catalyst Materials for SE-SMR, Using QSPR and Multitask Learning
- Sorption enhanced reforming: A potential route to produce pure H2 with in-situ carbon capture
- Advances in hydrogen production from sustainable recourses through biological and thermochemical pathways: Review and bibliometric analysis
- ADVANCES IN COPPER-BASED CATALYSTS FOR SUSTAINABLE HYDROGEN PRODUCTION VIA METHANOL STEAM REFORMING
- A Comprehensive Technical, Environmental, Economic, and Bibliometric Assessment of Hydrogen Production Through Biomass Gasification, Including Global and Brazilian Potentials
- Advancements in sorption-enhanced steam reforming for clean hydrogen production: A comprehensive review
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