Heat-treatment of serpentine minerals generates structural amorphicity and increases reactivity during subsequent mineral carbonation, a strategy for large-scale sequestration of CO2. This study employs thermal analyses (TGA-DSC) in conjunction with in-situ synchrotron powder X-ray diffraction (PXRD) to record concurrent mass loss, heat flow, and mineralogical changes during thermal treatment of antigorite. Isoconversional kinetic modelling demonstrates that thermal decomposition of antigorite is a complex multi-step reaction, with activation energies (Eα) varying between 290 and 515 kJ mol−1. We identify three intermediate phases forming during antigorite dehydroxylation, a semi-crystalline chlorite-like phase (γ-metaserpentine) showing an...
International audienceAntigorite dehydration has been studied in situ using time-resolved X-ray diff...
Serpentinite calcination currently represents a key step for its activation within ex situ aqueous m...
There has been increasing interest in carbon dioxide sequestration in mineral form, because there ar...
Mineral carbonation offers permanent and safe disposal of anthropogenic CO2. Well distributed and ab...
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...
This contribution demonstrates the sensitivity of antigorite dehydroxylation to treatment conditions...
Thermal dehydroxylation of serpentine minerals (Mg3Si2O5(OH)4) is a crucial step for mineral carbona...
This contribution demonstrates the sensitivity of antigorite dehydroxylation to treatment conditions...
This contribution demonstrates the sensitivity of antigorite dehydroxylation to treatment conditions...
This present contribution addresses the most important impediment for a large scale implementation o...
Research Doctorate - Doctor of Philosophy (PhD)This present contribution addresses the most importan...
Mineral carbonation is known to be among the most efficient ways to reduce the anthropogenic emissio...
This review examines studies on the dehydroxylation of serpentine minerals published in the open lit...
International audienceAntigorite dehydration has been studied in situ using time-resolved X-ray diff...
Serpentinite calcination currently represents a key step for its activation within ex situ aqueous m...
There has been increasing interest in carbon dioxide sequestration in mineral form, because there ar...
Mineral carbonation offers permanent and safe disposal of anthropogenic CO2. Well distributed and ab...
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...
This contribution demonstrates the sensitivity of antigorite dehydroxylation to treatment conditions...
Thermal dehydroxylation of serpentine minerals (Mg3Si2O5(OH)4) is a crucial step for mineral carbona...
This contribution demonstrates the sensitivity of antigorite dehydroxylation to treatment conditions...
This contribution demonstrates the sensitivity of antigorite dehydroxylation to treatment conditions...
This present contribution addresses the most important impediment for a large scale implementation o...
Research Doctorate - Doctor of Philosophy (PhD)This present contribution addresses the most importan...
Mineral carbonation is known to be among the most efficient ways to reduce the anthropogenic emissio...
This review examines studies on the dehydroxylation of serpentine minerals published in the open lit...
International audienceAntigorite dehydration has been studied in situ using time-resolved X-ray diff...
Serpentinite calcination currently represents a key step for its activation within ex situ aqueous m...
There has been increasing interest in carbon dioxide sequestration in mineral form, because there ar...