The direct mineralization of flue gas CO2 yields serviceable carbonates, thus combining CO2 utilization with its permanent storage. Such a process requires the rapid dissolution of a magnesium or calcium source at lean operating conditions. Motivated by its worldwide abundance, we have studied the dissolution kinetics of a lizardite-type serpentine that was 75% dehydroxylated by thermal pretreatment to maximize its reactivity. A continuous stirred liquid and gas flow-through setup was designed to perform far-from-equilibrium dissolution experiments at moderate temperatures ð30 C 6 T 6 120 CÞ; low CO2 partial pressures ð0:1 bar 6 pCO2 6 2 barÞ, using two different particle size fractions, and using a mineral acid instead of CO2 to var...
AbstractResearch in mineral carbonation has moved towards process concepts that combine the capture ...
AbstractThis communication explores the carbonation potential of activated serpentine at flue gas co...
Carbon capture and storage by mineralisation (CCSM) is a promising technology that sequesters CO2 fr...
The direct mineralization of flue gas CO2 yields serviceable carbonates, thus combining CO2 utilizat...
The direct mineralization of flue gas CO2 yields serviceable carbonates, thus combining CO2 utilizat...
The direct mineralization of flue gas CO2 yields serviceable carbonates, thus combining CO2 utilizat...
AbstractThis communication gives an overview of our study on the dissolution kinetics of thermally a...
This communication gives an overview of our study on the dissolution kinetics of thermally activated...
AbstractThis communication gives an overview of our study on the dissolution kinetics of thermally a...
AbstractThe dissolution of thermally activated serpentine (75% dehydroxylated) by direct flue-gas mi...
Mineral carbonation is known to be among the most efficient ways to reduce the anthropogenic emissio...
AbstractThe dissolution of thermally activated serpentine (75% dehydroxylated) by direct flue-gas mi...
Avoiding CO2 emissions to the atmosphere by its safe and permanent storage is required for all optio...
This contribution assesses the dissolution behaviour of serpentinite specimens, featuring distinct s...
Research in mineral carbonation has moved towards process concepts that combine the capture of CO2 f...
AbstractResearch in mineral carbonation has moved towards process concepts that combine the capture ...
AbstractThis communication explores the carbonation potential of activated serpentine at flue gas co...
Carbon capture and storage by mineralisation (CCSM) is a promising technology that sequesters CO2 fr...
The direct mineralization of flue gas CO2 yields serviceable carbonates, thus combining CO2 utilizat...
The direct mineralization of flue gas CO2 yields serviceable carbonates, thus combining CO2 utilizat...
The direct mineralization of flue gas CO2 yields serviceable carbonates, thus combining CO2 utilizat...
AbstractThis communication gives an overview of our study on the dissolution kinetics of thermally a...
This communication gives an overview of our study on the dissolution kinetics of thermally activated...
AbstractThis communication gives an overview of our study on the dissolution kinetics of thermally a...
AbstractThe dissolution of thermally activated serpentine (75% dehydroxylated) by direct flue-gas mi...
Mineral carbonation is known to be among the most efficient ways to reduce the anthropogenic emissio...
AbstractThe dissolution of thermally activated serpentine (75% dehydroxylated) by direct flue-gas mi...
Avoiding CO2 emissions to the atmosphere by its safe and permanent storage is required for all optio...
This contribution assesses the dissolution behaviour of serpentinite specimens, featuring distinct s...
Research in mineral carbonation has moved towards process concepts that combine the capture of CO2 f...
AbstractResearch in mineral carbonation has moved towards process concepts that combine the capture ...
AbstractThis communication explores the carbonation potential of activated serpentine at flue gas co...
Carbon capture and storage by mineralisation (CCSM) is a promising technology that sequesters CO2 fr...