Linked from
The 31 pages that link to Blue carbon, each with the reason it gives.
WetlandRelated: Salt marshes and mangroves are wetland habitats recognized for storing coastal carbon.
Carbon sequestrationRelated: Coastal habitats can accumulate carbon-rich sediments over long periods.
MangroveRelated: Mangrove forests store carbon in biomass and in deep, waterlogged sediments.
Seagrass meadowRelated: Meadows trap organic matter and can store carbon in seabed sediments.
Wetland conservationRelated: Protecting carbon-rich coastal wetlands can prevent emissions from disturbed soils.
Mangrove forestRelated: Mangrove sediments can retain large amounts of organic carbon over long periods.
Marine conservationRelated: Protecting carbon-rich coastal habitats can support climate mitigation alongside biodiversity goals.
Kelp forestRelated: Kelp exports carbon, though its long-term storage depends on where that material goes.
Carbon sinkRelated: It identifies coastal ecosystems as potential targets for conservation and restoration.
Wetland restorationRelated: Restored coastal wetlands can recover carbon storage alongside habitat and water-quality functions.
Aquatic plantRelated: Seagrass and other aquatic vegetation can retain carbon in sediments.
Tidal flatRelated: Some vegetated tidal flats and adjoining wetlands bury organic carbon in sediment.
Coastal squeezeRelated: Loss of vegetated coastal habitat can diminish long-term carbon storage.
Salt marshRelated: Salt-marsh soils can retain carbon in accumulated organic matter.
Mangrove restorationRelated: Carbon storage is a major climate benefit assessed in restoration projects.
Seaweed farmingNarrower topic: Seaweed growth removes dissolved carbon, but durable storage depends on what happens to harvested biomass.
Organic matterRelated: Organic matter buried in coastal sediments contributes to long-lived ecosystem carbon stores.
Wetland lossRelated: Uncertain carbon accounting complicates estimates of climate impacts from coastal wetland loss.
Blue economyRelated: Blue-carbon projects connect habitat conservation with climate finance and coastal benefits.
Coastal wetlandRelated: Wetland vegetation and waterlogged soils can retain carbon for long periods.
KelpRelated: Kelp fixes carbon, though the scale and permanence of its storage remain debated.
MarshRelated: Coastal marsh soils can store carbon over long periods.
Ocean conservationRelated: Protecting carbon-rich coastal habitats can link biodiversity goals with climate mitigation.
SeaweedNarrower topic: Seaweed carbon storage is often discussed alongside the broader idea of blue carbon.
MudflatRelated: Organic-rich mudflat sediment can retain carbon, though storage varies by site.
SeagrassRelated: Seagrass sediments can retain carbon for long periods, making meadows a blue-carbon ecosystem.
Mangrove crabRelated: Crab feeding and burrowing influence how mangrove soils process and retain organic carbon.
Edible seaweedRelated: Seaweed farming raises questions about how much cultivated algae contributes to durable carbon storage.
Flooded grasslands and savannasRelated: Some flooded landscapes border coastal wetlands, but inland savannas are not usually classified as blue-carbon ecosystems.
Marine coastal ecosystemRelated: Seagrass beds, mangroves, and tidal marshes can accumulate carbon in sediments.
Scylla serrataRelated: Mangrove habitat used by mud crabs also stores carbon, connecting crab production to coastal ecosystem protection.