Solid sorbents for in-situ CO2 removal during sorption-enhanced steam reforming process: A review
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- Type
- review
- Published
- 2016-01-01
- Cited by
- 217
- References
- 122
- OpenAlex
- https://openalex.org/W1785924721
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:108411789
Keywords
Steam reforming, Sorbent, Carbonation, Sorption, Hydrogen production
References
- High temperature CO2 sorbents and their application for hydrogen production by sorption enhanced steam reforming process
- Equilibria and kinetics of CO2 adsorption on hydrotalcite adsorbent
- Elevated temperature carbon dioxide capture via reinforced metal hydrotalcite
- Modified CaO-based sorbent looping cycle for CO2 mitigation
- Conversion Limits in the Reaction of CO2 with Lime
- Advanced adsorbents based on MgO and K2CO3 for capture of CO2 at elevated temperatures
- Chemisorption of carbon dioxide on potassium-carbonate-promoted hydrotalcite.
- Enhanced ethanol steam reforming by CO2 absorption using CaO, CaO*MgO or Na2ZrO3
- Experimental and Modeling Studies on High-Temperature Capture of CO2 Using Lithium Zirconate Based Sorbents
- Performance of a combined CaO-based sorbent and catalyst on H2 production, via sorption enhanced methane steam reforming
- A direct synthesis of mesoporous carbon supported MgO sorbent for CO2 capture
- Adsorption of CO2 on Hydrotalcite-Derived Mixed Oxides: Sorption Mechanisms and Consequences for Adsorption Irreversibility
- Adsorption of Carbon Dioxide onto Hydrotalcite-like Compounds (HTlcs) at High Temperatures
- Calcium precursors for the production of CaO sorbents for multicycle CO2 capture.
- Enhanced hydrogen production from biomass with in situ carbon dioxide capture using calcium oxide sorbents
- Fabrication of CaO-based sorbents for CO₂ capture by a mixing method.
- Hydrogen production through CO2 sorption-enhanced methane steam reforming: Comparison between different adsorbents
- Development of regenerable MgO-based sorbent promoted with K2CO3 for CO2 capture at low temperatures.
- Development of synthetic CaO sorbents via CTAB-assisted sol–gel method for CO2 capture at high temperature
- Novel CaO-SiO2 sorbent and bifunctional Ni/Co-CaO/SiO2 complex for selective H2 synthesis from cellulose.
Cited by
- Advanced Chemical Looping Materials for CO2 Utilization: A Review
- Sorption-Enhanced Steam Reforming of Glycerol for Hydrogen Production over a NiO/NiAl2O4 Catalyst and Li2ZrO3-Based Sorbent
- Energy savings and reduction of CO2 emission using Ca(OH)2 incorporated zeolite as an additive for warm and hot mix asphalt production
- Sol-gel-derived, CaZrO3-stabilized Ni/CaO-CaZrO3 bifunctional catalyst for sorption-enhanced steam methane reforming
- Thermodynamic analysis of sorption‐enhanced water–gas shift reaction using syngases
- Process integration of dimethyl carbonate and ethylene glycol production from biomass and heat exchanger network design
- A radiofrequency heated reactor system for post-combustion carbon capture
- Reductive Calcination of Mineral Magnesite: Hydrogenation of Carbon Dioxide without Catalysts
- Kinetic study of the pyrolysis of Pinus cooperi and Quercus sideroxyla to obtain bio-oil and a thermodynamic analysis for hydrogen production
- Dynamic Liquefied Natural Gas (LNG) Processing with Energy Storage Applications
- Alkali Metal CO2 Sorbents and the Resulting Metal Carbonates: Potential for Process Intensification of Sorption-Enhanced Steam Reforming.
- Sorption enhanced steam reforming of biodiesel by-product glycerol on Ni-CaO-MMT multifunctional catalysts
- Progress on sorption-enhanced reaction process for hydrogen production
- Core-shell structured CaO-Ca9Al6O18@Ca5Al6O14/Ni bifunctional material for sorption-enhanced steam methane reforming
- Sorption enhanced steam methane reforming by Ni–CaO materials supported on mayenite
- New process for hydrogen production from raw coke oven gas via sorption-enhanced steam reforming: Thermodynamic analysis
- Hydrogen production by sorption-enhanced steam reforming of acetic acid over Ni/CexZr1−xO2-CaO catalysts
- Effect of Operating Conditions on Cryogenic Carbon Dioxide Removal
- Performance of novel CaO-based sorbents in high temperature CO2 capture under RF heating
- Multi-fluid reactive modeling of sorption enhanced steam reforming of coke oven gas in fluidized bed
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