Abstract Reactive magnesium oxide (MgO)-based cement (RMC) can play a key role in carbon capture processes. However, knowledge on the driving forces that control the degree of carbonation and hydration and rate of reactions in this system remains limited. In this work, density functional theory-based simulations are used to investigate the physical nature of the reactions taking place during the fabrication of RMCs under ambient conditions. Parametric indicators such as adsorption energies, charge transfer, electron localization function, adsorption/dissociation energy barriers, and the mechanisms of interaction of H₂O and CO₂ molecules with MgO and brucite (Mg(OH)₂) clusters are considered. The following hydration and carbonation interact...
Cement industry is one of the main sources of greenhouse gases, which accounts for about 7% of globa...
Mg-Al mixed metal oxides (MMOs), derived from the decomposition of layered double hydroxides (LDHs),...
Magnesium oxide (MgO) has been investigated as a wet mineral carbonation adsorbent due to its relati...
[EN] Reactive magnesium oxide (MgO)-based cement (RMC) can play a key role in carbon capture process...
MgO cements have great potential for carbon sequestration as they have the ability to carbonate and ...
MgO cements have great potential for carbon sequestration as they have the ability to carbonate and ...
The hydration of reactive periclase (MgO) in the presence of hydromagnesite (Mg5(CO3)4(OH)2·4H2O) wa...
International audienceGeological carbon capture and sequestration (CCS) is a promising technology fo...
Abstract The role of organic ligands on the formation of hydrated magnesium carbonates (HMCs) has b...
Fossil fuels, especially coal, can support the energy demands of the world for centuries to come, if...
Fossil fuels, especially coal, can support the energy demands of the world for centuries to come, if...
Reactive magnesia (MgO) cements have emerged as a potentially more sustainable and technically super...
The role of organic ligands on the formation of hydrated magnesium carbonates (HMCs) has been remain...
International audienceSolid materials possessing basic properties are naturally covered by carbonate...
Aqueous mineral carbonation of brucite is an important mineralization route for carbon capture and s...
Cement industry is one of the main sources of greenhouse gases, which accounts for about 7% of globa...
Mg-Al mixed metal oxides (MMOs), derived from the decomposition of layered double hydroxides (LDHs),...
Magnesium oxide (MgO) has been investigated as a wet mineral carbonation adsorbent due to its relati...
[EN] Reactive magnesium oxide (MgO)-based cement (RMC) can play a key role in carbon capture process...
MgO cements have great potential for carbon sequestration as they have the ability to carbonate and ...
MgO cements have great potential for carbon sequestration as they have the ability to carbonate and ...
The hydration of reactive periclase (MgO) in the presence of hydromagnesite (Mg5(CO3)4(OH)2·4H2O) wa...
International audienceGeological carbon capture and sequestration (CCS) is a promising technology fo...
Abstract The role of organic ligands on the formation of hydrated magnesium carbonates (HMCs) has b...
Fossil fuels, especially coal, can support the energy demands of the world for centuries to come, if...
Fossil fuels, especially coal, can support the energy demands of the world for centuries to come, if...
Reactive magnesia (MgO) cements have emerged as a potentially more sustainable and technically super...
The role of organic ligands on the formation of hydrated magnesium carbonates (HMCs) has been remain...
International audienceSolid materials possessing basic properties are naturally covered by carbonate...
Aqueous mineral carbonation of brucite is an important mineralization route for carbon capture and s...
Cement industry is one of the main sources of greenhouse gases, which accounts for about 7% of globa...
Mg-Al mixed metal oxides (MMOs), derived from the decomposition of layered double hydroxides (LDHs),...
Magnesium oxide (MgO) has been investigated as a wet mineral carbonation adsorbent due to its relati...