Loss of surficial sedimentary carbon stocks in seagrass meadows subjected to intensive clam harvesting.
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- Type
- article
- Published
- 2022-01-31
- Cited by
- 15
- References
- 59
- Access
- Open access
- OpenAlex
- https://openalex.org/W4210570606
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:246451011
Keywords
Seagrass, Blue carbon, Environmental science, Oceanography, Intertidal zone
References
- Seagrass sediments as a global carbon sink: Isotopic constraints
- Variability of sedimentary organic carbon in patchy seagrass landscapes.
- Valuing the European 'coastal blue carbon' storage benefit.
- A blueprint for blue carbon: toward an improved understanding of the role of vegetated coastal habitats in sequestering CO2
- No detectable impact of small-scale disturbances on ‘blue carbon’ within seagrass beds
- Seagrass landscapes and their effects on associated fauna: A review
- Rapid recovery of the intertidal seagrass Zostera japonica following intense Manila clam (Ruditapes philippinarum) harvesting activity in Korea
- Salt marsh plants carbon storage in a temperate Atlantic estuary illustrated by a stable isotopic analysis based approach
- The distribution of seagrass (Zostera noltii) in the Ria Formosa lagoon system and the implications of clam farming on its conservation
- Can traditional harvesting methods for cockles be accommodated in a Special Area of Conservation
- Population-level effects of clam harvesting on the seagrass Zostera noltii
- From open access to co-governance and conservation: The case of women shellfish collectors in Galicia (Spain)
- Impact of seagrass loss and subsequent revegetation on carbon sequestration and stocks
- Effects of clam harvesting on sexual reproduction of the seagrass Zostera noltii
- Variability in the Carbon Storage of Seagrass Habitats and Its Implications for Global Estimates of Blue Carbon Ecosystem Service
- Accelerating loss of seagrasses across the globe threatens coastal ecosystems
- Seagrass ecosystems as a globally significant carbon stock
- A Global Crisis for Seagrass Ecosystems
- Seagrasses in Portugal: A most endangered marine habitat
- Effects of recreational clam harvesting on eelgrass (Zostera marina) and associated infaunal invertebrates: in situ manipulative experiments
Cited by
- Seagrass Invertebrate Fisheries, Their Value Chains and the Role of LMMAs in Sustainability of the Coastal Communities—Case of Southern Mozambique
- Trade-Offs and Synergies Between Seagrass Ecosystems and Fishing Activities: A Global Literature Review
- Sedimentary organic carbon and nitrogen stocks of intertidal seagrass meadows in a dynamic and impacted wetland: Effects of coastal infrastructure constructions and meadow establishment time.
- Sedimentary Organic Carbon and Nitrogen Sequestration Across a Vertical Gradient on a Temperate Wetland Seascape Including Salt Marshes, Seagrass Meadows and Rhizophytic Macroalgae Beds
- A Multi-Attribute Approach for Low-Carbon and Intensive Land Use of Jinan, China
- Population structure and habitat assessment for two commercial clam species exploited in small-scale fisheries
- Disentangling interactions between seagrasses and small-scale fisheries using scientific and local traditional knowledge
- Effects of herbivore on seagrass, epiphyte and sediment carbon sequestration in tropical seagrass bed.
- Exploring the newly emerging effects of native seagrasses on survival and growth of non-native juvenile clams
- Recovery of the Seagrass Zostera noltei and Commercial Bivalve Populations After Shellfish Harvesting
- Long-term responses of intertidal and subtidal seagrasses to anthropogenic disturbances and sea warming in the northwestern pacific coast
- Nonuniform organic carbon stock loss in soils across disturbed blue carbon ecosystems
- Anthropogenic destabilization of sediment carbon pools threatens the long-term climate mitigation potential of temperate seagrass meadows
- Seagrass resistance and gleaning methods efficiency: short-term impacts
- Microbial Mediation of Biogeochemical Cycles in Seagrass Ecosystems: Functions, Stressors, and Technological Innovations
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