It has been shown that reactive soil minerals, specifically iron(III) (oxyhydr)oxides, can trap organic carbon in soils overlying intact permafrost, and may limit carbon mobilization and degradation as it is observed in other environments. However, the use of iron(III)-bearing minerals as terminal electron acceptors in permafrost environments and thus their stability and capacity to prevent carbon mobilization during permafrost thaw is poorly understood. We have followed the dynamic interactions between iron and carbon, using a space for time-approach, across a thaw gradient in Abisko (Sweden), where wetlands are expanding rapidly due to permafrost thaw. We show through bulk (selective extractions, EXAFS) and nanoscale analysis (correlative...
Iron (Fe) plays a key role in mediating organic carbon (OC) decomposition rates in permafrost soils....
Enhanced thawing of the permafrost in response to warming of the Earth’s high latitude regions expos...
Despite the importance of soil and surface waters freezing in permafrost landscapes, the behaviour o...
In permafrost soils, substantial amounts of organic carbon (OC) are potentially protected from micro...
The Earth’s high latitude regions are warming twice as fast as the global average which enhances the...
Mineral organic carbon (OC) interactions in soils and ice-rich sediments are key to stabilize OC and...
Climate change and its consequences stand before us as the greatest challenge of our generation. The...
Mineral organic carbon (OC) interactions in soils are key to stabilize carbon and mitigate greenhous...
Permafrost are permanently frozen ground found in northern latitudes. Deposits in permafrost regions...
Evidence is mounting that permafrost thaw represents a tipping element in the Earth climate system d...
Permafrost region covers 24% of the Earth’s total area and holds 1460-1600 Pg of carbon. A significa...
Permafrost contains 1400-1660 Gt of organic carbon (OC), from which 5-15% will likely be emitted as ...
Between 30 and 80% of soil organic carbon (OC) in permafrost environments can be stabilized by inter...
Ice-rich permafrost has been subject to abrupt thaw and thermokarst formation in the past and is vul...
The stabilizing properties of mineral-organic carbon interactions have been studied in many soil env...
Iron (Fe) plays a key role in mediating organic carbon (OC) decomposition rates in permafrost soils....
Enhanced thawing of the permafrost in response to warming of the Earth’s high latitude regions expos...
Despite the importance of soil and surface waters freezing in permafrost landscapes, the behaviour o...
In permafrost soils, substantial amounts of organic carbon (OC) are potentially protected from micro...
The Earth’s high latitude regions are warming twice as fast as the global average which enhances the...
Mineral organic carbon (OC) interactions in soils and ice-rich sediments are key to stabilize OC and...
Climate change and its consequences stand before us as the greatest challenge of our generation. The...
Mineral organic carbon (OC) interactions in soils are key to stabilize carbon and mitigate greenhous...
Permafrost are permanently frozen ground found in northern latitudes. Deposits in permafrost regions...
Evidence is mounting that permafrost thaw represents a tipping element in the Earth climate system d...
Permafrost region covers 24% of the Earth’s total area and holds 1460-1600 Pg of carbon. A significa...
Permafrost contains 1400-1660 Gt of organic carbon (OC), from which 5-15% will likely be emitted as ...
Between 30 and 80% of soil organic carbon (OC) in permafrost environments can be stabilized by inter...
Ice-rich permafrost has been subject to abrupt thaw and thermokarst formation in the past and is vul...
The stabilizing properties of mineral-organic carbon interactions have been studied in many soil env...
Iron (Fe) plays a key role in mediating organic carbon (OC) decomposition rates in permafrost soils....
Enhanced thawing of the permafrost in response to warming of the Earth’s high latitude regions expos...
Despite the importance of soil and surface waters freezing in permafrost landscapes, the behaviour o...