Enhanced weathering of mafic and ultra-mafic minerals has been suggested as a strategy for carbon dioxide removal (CDR) and a contribution to achieve a balance between global CO2 sources and sinks (net zero emission). This study was designed to assess CDR by dissolution of ultramafic sand (UMS) in artificial seawater (ASW). Fine grained UMS with an olivine content of ~75% was reacted in ASW for up to 134 days at 1 bar and 21.5–23.9°C. A decline in total alkalinity (TA) was observed over the course of the experiments. This unexpected result indicates that TA removal via precipitation of cation-rich authigenic phases exceeded the production of TA induced by olivine dissolution. The TA decline was accompanied by a decrease in dissolved inorgan...
Chemical weathering of silicate minerals consumes atmospheric CO2 and is a fundamental component of ...
Carbon dioxide removal (CDR) approaches are efforts to reduce the atmospheric CO2 concentration. Her...
Chemical weathering of silicate minerals consumes atmospheric CO2 and is a fundamental component of ...
Enhanced weathering of mafic and ultra-mafic minerals has been suggested as a strategy for carbon di...
Enhanced weathering of (ultra)basic silicate rocks such as olivine-rich dunite has been proposed as ...
The Earth’s climate is increasingly warming due to ongoing anthropogenic carbon dioxide (CO2) emissi...
Overview on simulated CO2 removal experiments via olivine dissolution on land and ocean is given
Abstract: Carbon dioxide removal (CDR) technologies at a gigaton scale need to be developed and impl...
Enhanced weathering of (ultra)basic silicate rocks such as olivine-rich dunite has been proposed as...
Every year about 10-14 million m3 of sediments are dredged in the Port of Rotterdam (PoR) as part of...
Enhanced weathering of olivine has been suggested as a measure to lower the atmospheric CO2 level an...
Crushed olivine was added to a soil core to mimic enhanced weathering, and water was continually dri...
The potential of Coastal Ocean Alkalinization (COA), a carbon dioxide removal (CDR) climate engineer...
AbstractEnhanced weathering of olivine has been suggested as a measure to lower the atmospheric CO2 ...
We investigate the potential of a specific geoengineering technique: the carbon sequestration by art...
Chemical weathering of silicate minerals consumes atmospheric CO2 and is a fundamental component of ...
Carbon dioxide removal (CDR) approaches are efforts to reduce the atmospheric CO2 concentration. Her...
Chemical weathering of silicate minerals consumes atmospheric CO2 and is a fundamental component of ...
Enhanced weathering of mafic and ultra-mafic minerals has been suggested as a strategy for carbon di...
Enhanced weathering of (ultra)basic silicate rocks such as olivine-rich dunite has been proposed as ...
The Earth’s climate is increasingly warming due to ongoing anthropogenic carbon dioxide (CO2) emissi...
Overview on simulated CO2 removal experiments via olivine dissolution on land and ocean is given
Abstract: Carbon dioxide removal (CDR) technologies at a gigaton scale need to be developed and impl...
Enhanced weathering of (ultra)basic silicate rocks such as olivine-rich dunite has been proposed as...
Every year about 10-14 million m3 of sediments are dredged in the Port of Rotterdam (PoR) as part of...
Enhanced weathering of olivine has been suggested as a measure to lower the atmospheric CO2 level an...
Crushed olivine was added to a soil core to mimic enhanced weathering, and water was continually dri...
The potential of Coastal Ocean Alkalinization (COA), a carbon dioxide removal (CDR) climate engineer...
AbstractEnhanced weathering of olivine has been suggested as a measure to lower the atmospheric CO2 ...
We investigate the potential of a specific geoengineering technique: the carbon sequestration by art...
Chemical weathering of silicate minerals consumes atmospheric CO2 and is a fundamental component of ...
Carbon dioxide removal (CDR) approaches are efforts to reduce the atmospheric CO2 concentration. Her...
Chemical weathering of silicate minerals consumes atmospheric CO2 and is a fundamental component of ...