Negative emission technologies underpin socioeconomic scenarios consistent with the Paris Agreement. Afforestation and bioenergy coupled with carbon dioxide (CO2) capture and storage are the main land negative emission technologies proposed, but the range of nature-based solutions is wider. Here we explore soil amendment with powdered basalt in natural ecosystems. Basalt is an abundant rock resource, which reacts with CO2 and removes it from the atmosphere. Besides, basalt improves soil fertility and thereby potentially enhances ecosystem carbon storage, rendering a global CO2 removal of basalt substantially larger than previously suggested. As this is a fully developed technology that can be co-deployed in existing land systems, it is suit...
Restricting future global temperature increase to 2°C or less requires the adoption of negative emis...
International audienceLimiting global mean temperature changes to well below 2 ∘C likely requires a ...
Enhanced silicate rock weathering for long-term carbon dioxide sequestration has considerable potent...
International audienceNegative emission technologies underpin socioeconomic scenarios consistent wit...
Mafic igneous rocks, such as basalt, are composed of abundant calcium- and magnesium-rich silicate m...
Climate change is taking place due to significant emissions of greenhouse gases into the atmosphere....
Achieving national targets for net-zero carbon emissions will require atmospheric carbon dioxide rem...
The chemical weathering of rocks currently absorbs about 1.1 Gt CO2 a−1 being mainly stored as bicar...
Land‐based enhanced rock weathering (ERW) is a biogeochemical carbon dioxide removal (CDR) strategy ...
Land‐based enhanced rock weathering (ERW) is a biogeochemical carbon dioxide removal (CDR) strategy ...
Restricting future global temperature increase to 2°C or less requires the adoption of Negative Emis...
Restricting future global temperature increase to 2°C or less requires the adoption of negative emis...
International audienceLimiting global mean temperature changes to well below 2 ∘C likely requires a ...
Enhanced silicate rock weathering for long-term carbon dioxide sequestration has considerable potent...
International audienceNegative emission technologies underpin socioeconomic scenarios consistent wit...
Mafic igneous rocks, such as basalt, are composed of abundant calcium- and magnesium-rich silicate m...
Climate change is taking place due to significant emissions of greenhouse gases into the atmosphere....
Achieving national targets for net-zero carbon emissions will require atmospheric carbon dioxide rem...
The chemical weathering of rocks currently absorbs about 1.1 Gt CO2 a−1 being mainly stored as bicar...
Land‐based enhanced rock weathering (ERW) is a biogeochemical carbon dioxide removal (CDR) strategy ...
Land‐based enhanced rock weathering (ERW) is a biogeochemical carbon dioxide removal (CDR) strategy ...
Restricting future global temperature increase to 2°C or less requires the adoption of Negative Emis...
Restricting future global temperature increase to 2°C or less requires the adoption of negative emis...
International audienceLimiting global mean temperature changes to well below 2 ∘C likely requires a ...
Enhanced silicate rock weathering for long-term carbon dioxide sequestration has considerable potent...