Salt Marsh Diking and Restoration: Biogeochemical Implications of Altered Wetland Hydrology
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Summary
Results indicate that seawater restoration should proceed cautiously to avoid nutrient loading of surface waters in drained sites or sulfide toxicity in diked–waterlogged marshes.
- Type
- article
- Published
- 1999-07-01
- Cited by
- 200
- References
- 32
- OpenAlex
- https://openalex.org/W1969944831
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:1192269
Keywords
Spartina alterniflora, Alkalinity, Biogeochemical cycle, Salt marsh, Peat
References
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- Release of Nutrients and Metals Following Oxidation of Freshwater and Saline Sediment
- Salt marsh vegetation change in response to tidal restriction
- The Nitrogen Uptake Kinetics of Spartina Alterniflora in Culture
- Processes governing marsh formation in a rapidly subsiding coastal environment
- Impacts of Flow Restrictions on Salt Marshes: An Instance of Acidification
- Water Uptake by Roots Controls Water Table Movement and Sediment Oxidation in Short Spartina Marsh
- Effects of increased elevation and macro- and micronutrient additions onSpartina alterniflora transplant success in salt-marsh dieback areas in Louisiana
- Aeration, nitrogen and salinity as determinants of Spartina alterniflora Loisel. Growth response
- Ecological effects of coastal marsh impoundments: A review
- Biogeochemical effects of seawater restoration to diked salt marshes
- Carbon flow through oxygen and sulfate reduction pathways in salt marsh sediments1
- Bacteria and Mineral Cycling.
- Restoration of an impounded salt marsh in New England
- Accumulation of plant nutrients and heavy metals through sedimentation processes and accretion in a Louisiana salt marsh
- Phytochelatins: The Principal Heavy-Metal Complexing Peptides of Higher Plants
- Porewater evidence for a dynamic sedimentary iron cycle in salt marshes. [Spartina alterniflora]
Cited by
- Potential changes in ground-water flow and their effects on the ecology and water resources of the Cape Cod National Seashore, Massachusetts
- The Herring River Estuary: Understanding Salt Marsh Restoration and How to Predict the Response of Phragmites australis to Increased Tidal Flow
- Characterization of the Shallow Subsurface Geohydrology of the Ni-les'tun Unit on the Bandon Marsh National Wildlife Refuge
- Element speciation and behaviour in metal-rich Boreal river and estuarine systems using ultrafiltration and chemical modelling
- The Ecological Factors Influencing The Marsh-Upland Ecotonal Plant Community And Their Use As Part Of An Effective Restoration Strategy
- Soil and Vegetation Changes across a Restoration Chronosequence: An Evaluation of Wetlands Reserve Program (WRP) sites in West-central New York, USA
- A historical reconstruction and land use history of six tidal wetlands in Oregon
- New England salt marsh pools: Analysis of geomorphic and geographic parameters, macrophyte distribution, and nekton use
- The Salmon River estuary: restoring tidal inundation and tracking ecosystem response
- Spatial and temporal variations of soil organic carbon and total nitrogen pools in the coastal reclamation area, eastern China
- Biogeochemical constraints for restoration of sulphate-rich fens
- Decreased mobility of heavy metals in Haihe River sediments: The possible role of tide gate
- Effects of Tide Gate Replacement on Water Temperature ina Freshwater Slough in the Columbia River Estuary
- Estuarine Habitat Mitigation in Oregon: Policy Review, Analysis, and Recommended Improvements
- The Effects of Tide Gates on Estuarine Habitats and Migratory Fish
- Evaluation and analysis of acid sulphate soil remediation via tidal restoration
- Influence of Physical Manipulations on Short-Term Salt Marsh Morphodynamics: Examples from the North and Mid-Atlantic Coast, USA
- On biogeochemical processes influencing eutrophication and toxicity in riverine wetlands
- A Biogeochemical Study of Ditchplug and Natural Pools in the Sprague River Marsh, Phippsburg, ME
- Potential sensitivity of mires to drought, acidification and mobilisation of heavy metals: the sediment s/(Ca + Mg) ratio as diagnostic tool.
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