This contribution demonstrates the sensitivity of antigorite dehydroxylation to treatment conditions and discusses the implications of the observations for scientific (i.e., dehydroxylation kinetics) and technological (i.e., energy efficient conditions and design of practical activation reactors) applications. At present, the energy cost of dehydroxylation of serpentinite ores represent the most important impediment for a large scale implementation of sequestering CO2 by mineralization. We have analyzed changes in antigorite's derivative thermogravimetric curves (DTG) and deduced factors affecting the mass loss profiles. The imposed heating rate, type of purge gas, type of comminution and sample mass all influence the dehydroxylation curve....
Thermal dehydroxylation of serpentine minerals (Mg3Si2O5(OH)4) is a crucial step for mineral carbona...
Mineral carbonation is known to be among the most efficient ways to reduce the anthropogenic emissio...
Coal can support a large fraction of global energy demands for centuries to come, if the environment...
This contribution demonstrates the sensitivity of antigorite dehydroxylation to treatment conditions...
This contribution demonstrates the sensitivity of antigorite dehydroxylation to treatment conditions...
This contribution describes a predictive framework expedient to the thermal processing of serpentini...
This contribution describes a predictive framework expedient to the thermal processing of serpentini...
This contribution describes a predictive framework expedient to the thermal processing of serpentini...
Heat-treatment of serpentine minerals generates structural amorphicity and increases reactivity duri...
This present contribution addresses the most important impediment for a large scale implementation o...
Mineral carbonation offers permanent and safe disposal of anthropogenic CO2. Well distributed and ab...
Research Doctorate - Doctor of Philosophy (PhD)This present contribution addresses the most importan...
There has been increasing interest in carbon dioxide sequestration in mineral form, because there ar...
This review examines studies on the dehydroxylation of serpentine minerals published in the open lit...
Serpentinite calcination currently represents a key step for its activation within ex situ aqueous m...
Thermal dehydroxylation of serpentine minerals (Mg3Si2O5(OH)4) is a crucial step for mineral carbona...
Mineral carbonation is known to be among the most efficient ways to reduce the anthropogenic emissio...
Coal can support a large fraction of global energy demands for centuries to come, if the environment...
This contribution demonstrates the sensitivity of antigorite dehydroxylation to treatment conditions...
This contribution demonstrates the sensitivity of antigorite dehydroxylation to treatment conditions...
This contribution describes a predictive framework expedient to the thermal processing of serpentini...
This contribution describes a predictive framework expedient to the thermal processing of serpentini...
This contribution describes a predictive framework expedient to the thermal processing of serpentini...
Heat-treatment of serpentine minerals generates structural amorphicity and increases reactivity duri...
This present contribution addresses the most important impediment for a large scale implementation o...
Mineral carbonation offers permanent and safe disposal of anthropogenic CO2. Well distributed and ab...
Research Doctorate - Doctor of Philosophy (PhD)This present contribution addresses the most importan...
There has been increasing interest in carbon dioxide sequestration in mineral form, because there ar...
This review examines studies on the dehydroxylation of serpentine minerals published in the open lit...
Serpentinite calcination currently represents a key step for its activation within ex situ aqueous m...
Thermal dehydroxylation of serpentine minerals (Mg3Si2O5(OH)4) is a crucial step for mineral carbona...
Mineral carbonation is known to be among the most efficient ways to reduce the anthropogenic emissio...
Coal can support a large fraction of global energy demands for centuries to come, if the environment...