Annual Review of Energy and the Environment · 2002 · 354 citations · 59 references
Carbon DioxideEngineeringChemistryWaste Carbon DioxideOrganic GeochemistryChemical EngineeringCarbon Capture And StorageCarbon CycleCarbon NeutralityCarbon SequestrationGreenhouse Gas SequestrationCarbon SinkWaste ManagementCarbonizationFossil FuelsEnvironmental EngineeringCarbonate ChemistryGeochemistryCarbon Utilization
Fossil fuel use threatens the environment unless virtually all anthropogenic CO₂ is captured and permanently stored, and carbonate chemistry offers a promising permanent storage solution for the required trillions of tons of CO₂. Carbonate sequestration forms stable solids by reacting CO₂ with metal oxides, requiring an extractive minerals industry to supply base ions for neutralizing carbonic acid.
▪ Abstract Fossil fuels play a crucial role in satisfying growing world energy demands, but their continued use could cause irreparable harm to the environment. Unless virtually all anthropogenic carbon dioxide is captured, either at the source or subsequently from the air, and disposed of safely and permanently, fossil fuels may have to be phased out over the next few decades. Sequestration of waste carbon dioxide will require methods that can safely store several trillion tons of carbon dioxide. Long-term storage of a gaseous substance is fraught with uncertainty and hazards, but carbonate chemistry offers permanent solutions to the disposal problem. Carbonates can be formed from carbon dioxide and metal oxides in reactions that are thermodynamically favored and exothermic, which result in materials that can be safely and permanently kept out of the active carbon stocks in the environment. Carbonate sequestration methods require the development of an extractive minerals industry that provides the base ions for neutralizing carbonic acid.
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M.W. Thring · Electronics and Power · 1977 · 7.4K citations
Geochemical Consequences of Increased Atmospheric Carbon Dioxide on Coral Reefs
Joan A. Kleypas, Robert W. Buddemeier, David Archer et al. · Science · 1999 · 1.4K citations
Carbon dioxide disposal in carbonate minerals
Klaus S. Lackner, C. Wendt, Darryl P. Butt et al. · Energy · 1995 · 977 citations
Carbon Dioxide Disposal, Carbon Sequestration, Biogeochemistry +7