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Coastal/Marine


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Home > Ecosystems > Coastal/Marine

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Aureococcus Anophagefferens Blooms and Nitrogen Concentrations A graph shows the relationship between nitrogen levels and the brown tide cell concentrations in Maryland's Chesapeake and Coastal Bays.   diagram,brown,tide,algae,blooms,concentrations,nitrogen
Aureococcus Anophagefferens Blooms and Nitrogen ConcentrationsRaster Graphic (PNG) Jane HawkeyIntegration and Application Network366 views1 downloads (Details)A graph shows the relationship between nitrogen levels and the brown tide cell concentrations in Maryland's Chesapeake and Coastal Bays. Add to lightbox
2005 Corsica River Fish Kill A graph depicts the low oxygen levels and high ammonium concentrations in 2005 that caused large algae blooms. This put more stress on the ecosystem, resulting in the fish kill. diagram,corsica,river,fish,kill,algae,blooms,harmful,stress,low,oxygen,hypoxia,
2005 Corsica River Fish KillRaster Graphic (PNG) Jane HawkeyIntegration and Application Network357 views8 downloads (Details)A graph depicts the low oxygen levels and high ammonium concentrations in 2005 that caused large algae blooms. This put more stress on the ecosystem, resulting in the fish kill.Add to lightbox
Trends in Hypoxic Volume Since 1970 A graph depicts the increasingly high levels of hypoxia in the Chesapeake Bay since 1970. diagram,hypoxia,oxygen,levels,low,graph,trends,1970,chesapeake,bay,hypoxic,volume
Trends in Hypoxic Volume Since 1970Raster Graphic (PNG) Jane HawkeyIntegration and Application Network309 views6 downloads (Details)A graph depicts the increasingly high levels of hypoxia in the Chesapeake Bay since 1970.Add to lightbox
Prorocentrum Minimum Levels since 1970 A graph depicts the trend of increasing prorocentrum minimum levels since 1970 in the Chesapeake Bay. diagram,algea,graph,blooms,harmful,magnitude,trends,chesapeake,bay,increasing,prorocentrum,minimum
Prorocentrum Minimum Levels since 1970Raster Graphic (PNG) Jane HawkeyIntegration and Application Network246 views2 downloads (Details)A graph depicts the trend of increasing prorocentrum minimum levels since 1970 in the Chesapeake Bay.Add to lightbox
Baby diamondback terrapin (Malaclemys terrapin A baby terrapin makes its way to the water. Chesapeake Bay,turtle,oyster,snail,reptile,native species,shoreline,marsh,Neavitt,Talbot County,Maryland
Baby diamondback terrapin (Malaclemys terrapinPhoto (JPG) Jane HawkeyIAN, UMCES243 views10 downloads (Details)A baby terrapin makes its way to the water.Add to lightbox
Shoreline Shoreline on Duck Pond, Neavitt Maryland Dock,waterfront,marsh,house,development,Chesapeake Bay,Balls Creek,Broad Creek,Maryland
ShorelinePhoto (JPG) Jane HawkeyIAN, UMCES219 views3 downloads (Details)Shoreline on Duck Pond, Neavitt MarylandAdd to lightbox
Storm Timing and Impacts on Chesapeake Bay Flora and Fauna The timing of tropical storms and hurricanes can have major impacts on the life histories of Chesapeake Bay flora and fauna. Changes in water salinity can cause early spawning in some species, such as the blue crab, and increased sediment can cause widespread die-off of seagrasses.   diagram,eco-rythm,storms,chesapeake,tropical,hurricanes,early,migration,timing
Storm Timing and Impacts on Chesapeake Bay Flora and FaunaRaster Graphic (PNG) Brianne Walsh, Tracey SaxbyIntegration and Application Network431 views21 downloads (Details)The timing of tropical storms and hurricanes can have major impacts on the life histories of Chesapeake Bay flora and fauna. Changes in water salinity can cause early spawning in some species, such as the blue crab, and increased sediment can cause widespread die-off of seagrasses. Add to lightbox
Conowingo Dam Reservoir and Susquehanna Flats Depiction In the section of the river above the dam builds up with sediment, making the dam shallower. High water flow causes scouring and the transport of sediment and associated nutrients over the dam.  On this other side of the dam phosphorus mobilizes in reaction with salt water.  Further down the river seagrass beds grow on the Susquehanna flats.    diagram,conowingo,dam,susquehanna,flats,sediment,deposition,scouring,sediment,transport,nutrients
Conowingo Dam Reservoir and Susquehanna Flats DepictionRaster Graphic (PNG) Brianne WalshIntegration and Application Network512 views35 downloads (Details)In the section of the river above the dam builds up with sediment, making the dam shallower. High water flow causes scouring and the transport of sediment and associated nutrients over the dam. On this other side of the dam phosphorus mobilizes in reaction with salt water. Further down the river seagrass beds grow on the Susquehanna flats. Add to lightbox
Chilika Lake Pollution Pressure As land use in the Chilika Lake area changes from forest to settlements and paddy agriculture sewage, and fertilizer and pesticides runoff increases into the Lake. This extra nutrient input results in algae blooms that float and sit on the bottom.  diagram,pollution,chilika,lake,runoff,pressure,agriculture,algae,blooms,sewage,pesticides,extra,nutrient,input
Chilika Lake Pollution PressureRaster Graphic (PNG) Jane HawkeyIntegration and Application Network358 views15 downloads (Details)As land use in the Chilika Lake area changes from forest to settlements and paddy agriculture sewage, and fertilizer and pesticides runoff increases into the Lake. This extra nutrient input results in algae blooms that float and sit on the bottom. Add to lightbox
Chilika Lake Sedimentation During monsoon season excess sediment is deposited in Chilika Lake, mostly from Mahanadi River tributaries, nearby settlements, and agricultural lands. As the Lake becomes more shallow and its sea outlets fill in with sediment, increased flooding occurs.      diagram,sediment,flooding,excess,monsoon,chilika,lake,sedimentation,shallow
Chilika Lake SedimentationRaster Graphic (PNG) Jane HawkeyIntegration and Application Network275 views14 downloads (Details)During monsoon season excess sediment is deposited in Chilika Lake, mostly from Mahanadi River tributaries, nearby settlements, and agricultural lands. As the Lake becomes more shallow and its sea outlets fill in with sediment, increased flooding occurs. Add to lightbox
Light and Dark Conditions Impact on Submerged Aquatic Vegetation Growth Excess nutrients will result in increased chlorophyll and turbidity, limiting the amount of light that reaches benthic sediment. Light is essential for healthy submerged aquatic vegetation growth. Diagram from "New Insights" (p.30)- http://ian.umces.edu/pdfs/ian_report_438.pdf
  diagram,light,dark,conditions,healthy,submerged,vegetation,growth,excess,nutrients
Light and Dark Conditions Impact on Submerged Aquatic Vegetation GrowthRaster Graphic (PNG) Brianne WalshIntegration and Application Network335 views36 downloads (Details)Excess nutrients will result in increased chlorophyll and turbidity, limiting the amount of light that reaches benthic sediment. Light is essential for healthy submerged aquatic vegetation growth. Diagram from "New Insights" (p.30)- http://ian.umces.edu/pdfs/ian_report_438.pdf
Add to lightbox
Hunting Island State Park, South Carolina View of the beach at Hunting Island State Park in South Carolina. photo,ocean,sea,Atlantic,SC,tree,dead tree,debris,foam
Hunting Island State Park, South CarolinaPhoto (JPG) Catherine WardIntegration and Application Network246 views4 downloads (Details)View of the beach at Hunting Island State Park in South Carolina.Add to lightbox

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