STEP carbon capture – The barium advantage
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- Type
- article
- Published
- 2013-09-01
- Cited by
- 66
- References
- 22
- OpenAlex
- https://openalex.org/W2013471572
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:96336911
Keywords
Electrolyte, Barium carbonate, Electrolysis, Carbon fibers, Barium
References
- Differential thermal analysis of phase equilibria in mixtures of anhydrous carbonates. II: Na2CO3-BaCO3
- Efficient STEP (solar thermal electrochemical photo) production of hydrogen – an economic assessment
- Studies on the binary system Li2CO3–BaCO3
- High solubility pathway for the carbon dioxide free production of iron.
- STEP cement: Solar Thermal Electrochemical Production of CaO without CO2 emission.
- Sequestering Atmospheric Carbon Dioxide
- Engineering TiO2 nanomaterials for CO2 conversion/solar fuels
- Electrochemical potential tuned solar water splitting.
- Energy levels of magnesium, Mg I through Mg XII
- STEP wastewater treatment: a solar thermal electrochemical process for pollutant oxidation.
- Post-combustion CO2 capture by aqueous ammonia: A state-of-the-art review
- Chemical mechanism of the high solubility pathway for the carbon dioxide free production of iron.
- STEP Iron, a Chemistry of Iron Formation without CO2 Emission: Molten Carbonate Solubility and Electrochemistry of Iron Ore Impurities
- Efficient Solar‐Driven Synthesis, Carbon Capture, and Desalinization, STEP: Solar Thermal Electrochemical Production of Fuels, Metals, Bleach
- A New Solar Carbon Capture Process: Solar Thermal Electrochemical Photo (STEP) Carbon Capture
- Separation and Capture of CO2 from Large Stationary Sources and Sequestration in Geological Formations—Coalbeds and Deep Saline Aquifers
- STEP (Solar Thermal Electrochemical Photo) Generation of Energetic Molecules: A Solar Chemical Process to End Anthropogenic Global Warming
- Recent advances in CO2 capture and utilization.
- Photochemical and photoelectrochemical reduction of CO2.
- A Potentially Useful Technology by Mimicking Nature—Rapid Conversion of Biomass and CO2 into Chemicals and Fuels under Hydrothermal Conditions
Cited by
- One-Pot Synthesis of Carbon Nanofibers from CO2.
- Thermodynamic and experimental approach of electrochemical reduction of CO2 in molten carbonates
- Towards efficient solar STEP synthesis of benzoic acid: Role of graphite electrode
- CO2 electrochemical reduction into CO or C in molten carbonates: a thermodynamic point of view
- Investigations to convert CO2, NaCl and H2O into Na2CO3 and HCl by thermal solar energy with high solar efficiency
- Lime in the limelight
- Analysis of carbon dioxide-to-methanol direct electrochemical conversion mediated by an ionic liquid
- A low temperature iron molten air battery
- A One‐Pot Synthesis of Hydrogen and Carbon Fuels from Water and Carbon Dioxide
- Ultrasound irradiation for desorption of carbon dioxide gas from aqueous solutions of monoethanolamine
- Overview on CO2 Valorization: Challenge of Molten Carbonates
- Sungas Instead of Syngas: Efficient Coproduction of CO and H2 with a Single Beam of Sunlight
- Production of Carbon via Electrochemical Conversion of CO2 in Carbonates Based Molten Salt
- Advances in understanding the mechanism and improved stability of the synthesis of ammonia from air and water in hydroxide suspensions of nanoscale Fe₂O₃.
- One-pot synthesis of nanostructured carbon materials from carbon dioxide via electrolysis in molten carbonate salts
- Carbon nanofibers, precious commodities from sunlight & CO2 to ameliorate global warming, and supplement: Carbon nanofibers (from fossil fuel) Electric Power Plants
- Thermodynamic assessment of CO2 to carbon nanofiber transformation for carbon sequestration in a combined cycle gas or a coal power plant
- Tracking airborne CO2 mitigation and low cost transformation into valuable carbon nanotubes
- Sustainable Electrochemical Synthesis of Large Grain- or Catalyst-Sized Iron
- A New Technology for Efficient, High Yield Carbon Dioxide and Water Transformation to Methane by Electrolysis in Molten Salts
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