The Comprehensive Barnegat Bay Research Program

Buchanan, G.A.; Belton, T.J., and Paudel, B., 2017. The Comprehensive Barnegat Bay Research Program. In: Buchanan, G.A.; Belton, T.J., and Paudel, B. (eds.), A Comprehensive Assessment of Barnegat Bay-Little Egg Harbor, New Jersey. A comprehensive ecosystem research strategy was developed and initia...

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Veröffentlicht in:Journal of coastal research 2017-10, Vol.78 (sp1), p.1-6
Hauptverfasser: Buchanan, Gary A., Belton, Thomas J., Paudel, Bhanu
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description Buchanan, G.A.; Belton, T.J., and Paudel, B., 2017. The Comprehensive Barnegat Bay Research Program. In: Buchanan, G.A.; Belton, T.J., and Paudel, B. (eds.), A Comprehensive Assessment of Barnegat Bay-Little Egg Harbor, New Jersey. A comprehensive ecosystem research strategy was developed and initiated for the Barnegat Bay-Little Egg Harbor (BB-LEH) estuary in New Jersey, United States. This multiyear program (2011–15) examined several environmental management issues and questions involving concerns with water quality (e.g., nutrients) and the health of this ecosystem (e.g., eutrophication). Multiple projects ranging from the assessment of phytoplankton to fish to wetlands, as well as hydrodynamic/water quality and ecosystem modeling, were conducted each year to fill in critical data gaps and to define the bay's baseline condition for future comparisons (e.g., a nuclear generating station on the bay with a once-through cooling system will close in 2019). Issues of concern for environmental agencies and the public include nuisance jellyfish; excess nutrients; benefits of conservation zones; and the status of fish, crab, and shellfish populations. Three projects examined the potential for developing biological indicators of nutrient (i.e. nitrogen and phosphorus) effects. Three other projects studied the unique habitat features (i.e. salt marshes, sedge islands, submerged aquatic vegetation beds) in BB-LEH that may need protection and/or restoration. Ecosystem baseline conditions were examined by six projects, and data were used in the Ecopath-Ecosim model to predict potential future changes in the biomass of major biological groups and species using specific scenarios (i.e. closure of the Oyster Creek Nuclear Generating Station, reducing nutrient inputs and fishery management plans). Noteworthy is the collection of these data pre- and post-Superstorm Sandy, which made landfall a few kilometers south of the estuary in 2012. The subsequent 19 papers in this special issue provide an in-depth examination of these areas of concern, the results of which are exceedingly relevant to the management of this and other estuarine systems.
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The Comprehensive Barnegat Bay Research Program. In: Buchanan, G.A.; Belton, T.J., and Paudel, B. (eds.), A Comprehensive Assessment of Barnegat Bay-Little Egg Harbor, New Jersey. A comprehensive ecosystem research strategy was developed and initiated for the Barnegat Bay-Little Egg Harbor (BB-LEH) estuary in New Jersey, United States. This multiyear program (2011–15) examined several environmental management issues and questions involving concerns with water quality (e.g., nutrients) and the health of this ecosystem (e.g., eutrophication). Multiple projects ranging from the assessment of phytoplankton to fish to wetlands, as well as hydrodynamic/water quality and ecosystem modeling, were conducted each year to fill in critical data gaps and to define the bay's baseline condition for future comparisons (e.g., a nuclear generating station on the bay with a once-through cooling system will close in 2019). Issues of concern for environmental agencies and the public include nuisance jellyfish; excess nutrients; benefits of conservation zones; and the status of fish, crab, and shellfish populations. Three projects examined the potential for developing biological indicators of nutrient (i.e. nitrogen and phosphorus) effects. Three other projects studied the unique habitat features (i.e. salt marshes, sedge islands, submerged aquatic vegetation beds) in BB-LEH that may need protection and/or restoration. Ecosystem baseline conditions were examined by six projects, and data were used in the Ecopath-Ecosim model to predict potential future changes in the biomass of major biological groups and species using specific scenarios (i.e. closure of the Oyster Creek Nuclear Generating Station, reducing nutrient inputs and fishery management plans). Noteworthy is the collection of these data pre- and post-Superstorm Sandy, which made landfall a few kilometers south of the estuary in 2012. The subsequent 19 papers in this special issue provide an in-depth examination of these areas of concern, the results of which are exceedingly relevant to the management of this and other estuarine systems.</description><identifier>ISSN: 0749-0208</identifier><identifier>EISSN: 1551-5036</identifier><identifier>DOI: 10.2112/SI78-001.1</identifier><language>eng</language><publisher>Fort Lauderdale: The Coastal Education and Research Foundation</publisher><subject>Algae ; Aquatic plants ; baseline conditions ; Biological effects ; Brackishwater environment ; Clams ; Coastal inlets ; Coasts ; Cooling systems ; Crabs ; Data ; Ecological sustainability ; Ecosystem models ; Ecosystems ; Eggs ; Environment models ; Environmental conservation ; Environmental management ; Environmental protection ; Estuaries ; Estuarine dynamics ; Estuarine environments ; Estuary ; Eutrophication ; Fish ; Fish conservation ; Fish populations ; Fisheries ; Fisheries management ; Fishery management ; Fishing ; Food safety ; Habitat conservation ; Harbors ; Hydrodynamics ; Indicator organisms ; Indicator species ; Jellyfishes ; Marine conservation ; Marine crustaceans ; Marine invertebrates ; Marine molluscs ; Mineral nutrients ; Modeling ; Modelling ; Nitrogen ; Nutrients ; Phosphorus ; Phytoplankton ; Plankton ; Protection ; Research methods ; Research programmes ; Restoration ; Salt marshes ; Saltmarshes ; Shellfish ; Studies ; Water quality ; Watershed management ; Wetlands</subject><ispartof>Journal of coastal research, 2017-10, Vol.78 (sp1), p.1-6</ispartof><rights>Coastal Education and Research Foundation, Inc. 2017</rights><rights>2017 Coastal Education and Research Foundation, Inc. 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In: Buchanan, G.A.; Belton, T.J., and Paudel, B. (eds.), A Comprehensive Assessment of Barnegat Bay-Little Egg Harbor, New Jersey. A comprehensive ecosystem research strategy was developed and initiated for the Barnegat Bay-Little Egg Harbor (BB-LEH) estuary in New Jersey, United States. This multiyear program (2011–15) examined several environmental management issues and questions involving concerns with water quality (e.g., nutrients) and the health of this ecosystem (e.g., eutrophication). Multiple projects ranging from the assessment of phytoplankton to fish to wetlands, as well as hydrodynamic/water quality and ecosystem modeling, were conducted each year to fill in critical data gaps and to define the bay's baseline condition for future comparisons (e.g., a nuclear generating station on the bay with a once-through cooling system will close in 2019). Issues of concern for environmental agencies and the public include nuisance jellyfish; excess nutrients; benefits of conservation zones; and the status of fish, crab, and shellfish populations. Three projects examined the potential for developing biological indicators of nutrient (i.e. nitrogen and phosphorus) effects. Three other projects studied the unique habitat features (i.e. salt marshes, sedge islands, submerged aquatic vegetation beds) in BB-LEH that may need protection and/or restoration. Ecosystem baseline conditions were examined by six projects, and data were used in the Ecopath-Ecosim model to predict potential future changes in the biomass of major biological groups and species using specific scenarios (i.e. closure of the Oyster Creek Nuclear Generating Station, reducing nutrient inputs and fishery management plans). Noteworthy is the collection of these data pre- and post-Superstorm Sandy, which made landfall a few kilometers south of the estuary in 2012. The subsequent 19 papers in this special issue provide an in-depth examination of these areas of concern, the results of which are exceedingly relevant to the management of this and other estuarine systems.</description><subject>Algae</subject><subject>Aquatic plants</subject><subject>baseline conditions</subject><subject>Biological effects</subject><subject>Brackishwater environment</subject><subject>Clams</subject><subject>Coastal inlets</subject><subject>Coasts</subject><subject>Cooling systems</subject><subject>Crabs</subject><subject>Data</subject><subject>Ecological sustainability</subject><subject>Ecosystem models</subject><subject>Ecosystems</subject><subject>Eggs</subject><subject>Environment models</subject><subject>Environmental conservation</subject><subject>Environmental management</subject><subject>Environmental protection</subject><subject>Estuaries</subject><subject>Estuarine dynamics</subject><subject>Estuarine environments</subject><subject>Estuary</subject><subject>Eutrophication</subject><subject>Fish</subject><subject>Fish conservation</subject><subject>Fish populations</subject><subject>Fisheries</subject><subject>Fisheries management</subject><subject>Fishery management</subject><subject>Fishing</subject><subject>Food safety</subject><subject>Habitat conservation</subject><subject>Harbors</subject><subject>Hydrodynamics</subject><subject>Indicator organisms</subject><subject>Indicator species</subject><subject>Jellyfishes</subject><subject>Marine conservation</subject><subject>Marine crustaceans</subject><subject>Marine invertebrates</subject><subject>Marine molluscs</subject><subject>Mineral nutrients</subject><subject>Modeling</subject><subject>Modelling</subject><subject>Nitrogen</subject><subject>Nutrients</subject><subject>Phosphorus</subject><subject>Phytoplankton</subject><subject>Plankton</subject><subject>Protection</subject><subject>Research methods</subject><subject>Research programmes</subject><subject>Restoration</subject><subject>Salt marshes</subject><subject>Saltmarshes</subject><subject>Shellfish</subject><subject>Studies</subject><subject>Water quality</subject><subject>Watershed management</subject><subject>Wetlands</subject><issn>0749-0208</issn><issn>1551-5036</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2017</creationdate><recordtype>article</recordtype><sourceid>ABUWG</sourceid><sourceid>AFKRA</sourceid><sourceid>AZQEC</sourceid><sourceid>BENPR</sourceid><sourceid>CCPQU</sourceid><sourceid>DWQXO</sourceid><sourceid>GNUQQ</sourceid><recordid>eNp9kMtLw0AQxhdRMFYv3oWAFxHS7uwjuzlq8VEoKFrPyyaZ9IHN1t1U6H_vhohHTzPD9-ObmY-QS6BjBsAm7zOlM0phDEckASkhk5TnxyShShQZZVSfkrMQNhHJtVAJmSxWmE7ddudxhW1Yf2N6b32LS9vF5pC-YUDrq1X66t3S2-05OWnsZ8CL3zoiH48Pi-lzNn95mk3v5lnJFO8yYTXTOS0Uy-uSU67KokIuOWBteSmoRl1XlGltda5y3fAKBNYAcbKygJKPyPXgu_Pua4-hMxu3921caaBQqr9ey0jdDlTlXQgeG7Pz6631BwPU9IGYPhATvzUQ4asB3oTO-T9SCAFagoj6zaCXa-da_M_qB0RFZks</recordid><startdate>20171001</startdate><enddate>20171001</enddate><creator>Buchanan, Gary A.</creator><creator>Belton, Thomas J.</creator><creator>Paudel, Bhanu</creator><general>The Coastal Education and Research Foundation</general><general>Coastal Education and Research Foundation, Inc. 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Belton, T.J., and Paudel, B., 2017. The Comprehensive Barnegat Bay Research Program. In: Buchanan, G.A.; Belton, T.J., and Paudel, B. (eds.), A Comprehensive Assessment of Barnegat Bay-Little Egg Harbor, New Jersey. A comprehensive ecosystem research strategy was developed and initiated for the Barnegat Bay-Little Egg Harbor (BB-LEH) estuary in New Jersey, United States. This multiyear program (2011–15) examined several environmental management issues and questions involving concerns with water quality (e.g., nutrients) and the health of this ecosystem (e.g., eutrophication). Multiple projects ranging from the assessment of phytoplankton to fish to wetlands, as well as hydrodynamic/water quality and ecosystem modeling, were conducted each year to fill in critical data gaps and to define the bay's baseline condition for future comparisons (e.g., a nuclear generating station on the bay with a once-through cooling system will close in 2019). Issues of concern for environmental agencies and the public include nuisance jellyfish; excess nutrients; benefits of conservation zones; and the status of fish, crab, and shellfish populations. Three projects examined the potential for developing biological indicators of nutrient (i.e. nitrogen and phosphorus) effects. Three other projects studied the unique habitat features (i.e. salt marshes, sedge islands, submerged aquatic vegetation beds) in BB-LEH that may need protection and/or restoration. Ecosystem baseline conditions were examined by six projects, and data were used in the Ecopath-Ecosim model to predict potential future changes in the biomass of major biological groups and species using specific scenarios (i.e. closure of the Oyster Creek Nuclear Generating Station, reducing nutrient inputs and fishery management plans). Noteworthy is the collection of these data pre- and post-Superstorm Sandy, which made landfall a few kilometers south of the estuary in 2012. The subsequent 19 papers in this special issue provide an in-depth examination of these areas of concern, the results of which are exceedingly relevant to the management of this and other estuarine systems.</abstract><cop>Fort Lauderdale</cop><pub>The Coastal Education and Research Foundation</pub><doi>10.2112/SI78-001.1</doi><tpages>6</tpages></addata></record>
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subjects Algae
Aquatic plants
baseline conditions
Biological effects
Brackishwater environment
Clams
Coastal inlets
Coasts
Cooling systems
Crabs
Data
Ecological sustainability
Ecosystem models
Ecosystems
Eggs
Environment models
Environmental conservation
Environmental management
Environmental protection
Estuaries
Estuarine dynamics
Estuarine environments
Estuary
Eutrophication
Fish
Fish conservation
Fish populations
Fisheries
Fisheries management
Fishery management
Fishing
Food safety
Habitat conservation
Harbors
Hydrodynamics
Indicator organisms
Indicator species
Jellyfishes
Marine conservation
Marine crustaceans
Marine invertebrates
Marine molluscs
Mineral nutrients
Modeling
Modelling
Nitrogen
Nutrients
Phosphorus
Phytoplankton
Plankton
Protection
Research methods
Research programmes
Restoration
Salt marshes
Saltmarshes
Shellfish
Studies
Water quality
Watershed management
Wetlands
title The Comprehensive Barnegat Bay Research Program
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