Frost weathering is effective in arctic and subarctic climate zones where chemical reactions are limited by the reduced availability of liquid water and the prevailing low temperature. However, small scale mineral dissolution reactions are nevertheless important for the generation of porosity by allowing infiltration of surface water with subsequent fracturing due to growth of ice and carbonate minerals. Here we combine textural and mineralogical observations in natural samples of partly serpentinized ultramafic rocks with a discrete element model describing the fracture mechanics of a solid when subject to pressure from the growth of ice and carbonate minerals in surface-near fractures. The mechanical model is coupled with a reaction–diffu...
Interaction of rocks with fluids can significantly change mineral assemblage and structure. This so-...
Changes in permafrost conditions in high mountain rocks have increased the risk of dangerous instabi...
In this study we use numerical experiments to analyze reactive flow and transport behavior in discre...
The investigation of carbonate formation at low temperature during weathering of ultramafic rocks ha...
Storing carbon dioxide in the subsurface as carbonate minerals has the benefit of long-term stabilit...
The volumetric expansion of freezing pore water is widely assumed to be a major cause of rock fractu...
Olivine and pyroxene-bearing rocks in the oceanic crust react with hydrothermal fluids producing cha...
Whereas the dissolution of pure single phases (e.g. olivine and other mafic minerals) has been the f...
In cold regions, the presence of moisture combined with freezing temperatures leads to a phys- ical ...
During chemical weathering there is the potential for a positive feedback process to occur: Chemical...
International audienceThe volumetric expansion of freezing pore water is widely assumed to be a majo...
One of the most promising, cost-effective, and readily available technologies for reducing greenhous...
Hydration reactions in mantle peridotites substituting olivine with serpentine causes a volume chang...
Ultramafic rocks – that are usually located deep below the Earth's surface – are occasionally exhume...
Carbonation of partially serpentinized and weathered peridotites was studied experimentally under hy...
Interaction of rocks with fluids can significantly change mineral assemblage and structure. This so-...
Changes in permafrost conditions in high mountain rocks have increased the risk of dangerous instabi...
In this study we use numerical experiments to analyze reactive flow and transport behavior in discre...
The investigation of carbonate formation at low temperature during weathering of ultramafic rocks ha...
Storing carbon dioxide in the subsurface as carbonate minerals has the benefit of long-term stabilit...
The volumetric expansion of freezing pore water is widely assumed to be a major cause of rock fractu...
Olivine and pyroxene-bearing rocks in the oceanic crust react with hydrothermal fluids producing cha...
Whereas the dissolution of pure single phases (e.g. olivine and other mafic minerals) has been the f...
In cold regions, the presence of moisture combined with freezing temperatures leads to a phys- ical ...
During chemical weathering there is the potential for a positive feedback process to occur: Chemical...
International audienceThe volumetric expansion of freezing pore water is widely assumed to be a majo...
One of the most promising, cost-effective, and readily available technologies for reducing greenhous...
Hydration reactions in mantle peridotites substituting olivine with serpentine causes a volume chang...
Ultramafic rocks – that are usually located deep below the Earth's surface – are occasionally exhume...
Carbonation of partially serpentinized and weathered peridotites was studied experimentally under hy...
Interaction of rocks with fluids can significantly change mineral assemblage and structure. This so-...
Changes in permafrost conditions in high mountain rocks have increased the risk of dangerous instabi...
In this study we use numerical experiments to analyze reactive flow and transport behavior in discre...