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Search results - wetlands with all orientations (Direct link to search results)
Climate Change Effects on Assateague Island's Inland Wetlands   A diagram illustrates the the current issues facing the inland wetland ecosystem on Assateague Island as well as the impacts climate change will have on this area.   diagram,climate,change,impacts,effects,inland,wetlands,Assateague,island.
Climate Change Effects on Assateague Island's Inland Wetlands Raster Graphic (PNG) Jane HawkeyIntegration & Application Network30 views1 downloads (Details)A diagram illustrates the the current issues facing the inland wetland ecosystem on Assateague Island as well as the impacts climate change will have on this area. Add to lightbox
Lower Mississippi Land Cover Map Lower Mississippi land use is dominated by developed, forested and cropland areas, and has the largest proportion of wetlands of the entire Mississippi River Basin. Diagram from "Lower Mississippi River Basin" (p. 1) - http://ian.umces.edu/press/newsletters/publication/446/lower_mississippi_river_basin_report_card_workshop_newsletter_2014-05-21/ diagram,lower,mississippi,river,land,cover,cropland,forest,developed,wetlands
Lower Mississippi Land Cover MapRaster Graphic (PNG) Jane ThomasIntegration & Application Network8 views0 downloads (Details)Lower Mississippi land use is dominated by developed, forested and cropland areas, and has the largest proportion of wetlands of the entire Mississippi River Basin. Diagram from "Lower Mississippi River Basin" (p. 1) - http://ian.umces.edu/press/newsletters/publication/446/lower_mississippi_river_basin_report_card_workshop_newsletter_2014-05-21/Add to lightbox
Floating Wetlands Structure and Impact Emergent wetland species are planted in a buoyant matrix that floats at the water surface. The roots of these plants grow through the matrix and take up the nutrients they need to grow directly from the water, potentially decreasing nutrient concentrations.   diagram,floating,wetlands,water,quality,plants,chesapeake,bay,watershed,stormwater,nutrients
Floating Wetlands Structure and ImpactRaster Graphic (PNG) Brianne WalshIntegration & Application Network11 views5 downloads (Details)Emergent wetland species are planted in a buoyant matrix that floats at the water surface. The roots of these plants grow through the matrix and take up the nutrients they need to grow directly from the water, potentially decreasing nutrient concentrations. Add to lightbox
Coastal Wetlands Resilience to Climate Change Comparison Coastal wetlands that are protected from erosion have an adequate sediment supply to build upwards, and will likely be more resilient to the effects of climate change. Diagram from "Chesapeake Bay Report Card 2013" (p.1)- http://ian.umces.edu/press/report_cards/publication/447/2013_chesapeake_bay_report_card_2014-05-23/   diagram,climate,change,coastal,wetlands,resilience,effects,erosion,protection,sediment,supply
Coastal Wetlands Resilience to Climate Change ComparisonRaster Graphic (PNG) Alexandra FriesIntegration & Application Network34 views6 downloads (Details)Coastal wetlands that are protected from erosion have an adequate sediment supply to build upwards, and will likely be more resilient to the effects of climate change. Diagram from "Chesapeake Bay Report Card 2013" (p.1)- http://ian.umces.edu/press/report_cards/publication/447/2013_chesapeake_bay_report_card_2014-05-23/ Add to lightbox
Typha x glauca (White Cattail) Typha x glauca is a sterile F1 hybrid between Typha angustifolia and Typha latifolia.  Found in freshwater habitats such as interior wetlands of Assateague Island, Maryland. symbol,vector,illustration,cattails,aquatic plant,freshwater,inland,wetlands,Assateague,Angiosperms,Monocots,Commelinids,Poales,Typhaceae,Typha,x glauca,hybrid,F1,sterile
Typha x glauca (White Cattail)Vector Graphic (SVG) Jane HawkeyIntegration and Application Network276 views101 downloads (Details)Typha x glauca is a sterile F1 hybrid between Typha angustifolia and Typha latifolia. Found in freshwater habitats such as interior wetlands of Assateague Island, Maryland.Add to lightbox
Homeowner is allowed to fill in wetlands On a property that was grandfathered to build on a tiny waterfront lot, the owner was allowed by the local zoning department to fill in a low wetland where his well (white pipe) and dock electric service (right center of photo) were located. As this photo documents, this low area was frequently flooded. sea level rise,flooding,critical area,development,Talbot County,Maryland
Homeowner is allowed to fill in wetlandsPhoto (JPG) Jane HawkeyIntegration & Application Network1265 views4 downloads (Details)On a property that was grandfathered to build on a tiny waterfront lot, the owner was allowed by the local zoning department to fill in a low wetland where his well (white pipe) and dock electric service (right center of photo) were located. As this photo documents, this low area was frequently flooded.Add to lightbox
Vaccinium corymbosum (Highbush blueberry) Highbush blueberry is one of the most important plants in the blueberry family. It is found around wetlands, in woodland clearings, and open meadows, and provides food for many birds and a few mammals. symbol,vector,illustration,Plantae,Ericales,Ericaceae,wildlife,shelter,nest,berry,protection,habitat
Vaccinium corymbosum (Highbush blueberry)Vector Graphic (SVG) Jane HawkeyIntegration and Application Network123 views55 downloads (Details)Highbush blueberry is one of the most important plants in the blueberry family. It is found around wetlands, in woodland clearings, and open meadows, and provides food for many birds and a few mammals.Add to lightbox
Sources, transport, and cycling of inorganic mercury and methylmercury to the marine environment Conceptual diagram illustrating the sources, transport, and cycling of inorganic mercury and methylmercury to the marine environment.  Diagram from "Tropical Connections: South Florida's marine environment" (pg. 137) - http://ian.umces.edu/press/publications/374/ diagram,transport,cycling,inorganic mercury,methylmercury,anthropogenic,microbial methylation,wetlands,atmospheric deposition,riverine discharge,diffusive flux,biotransport,sulfate,sulfide,redox,MeHg
Sources, transport, and cycling of inorganic mercury and methylmercury to the marine environmentRaster Graphic (PNG) Kris BeckertIntegration and Application Network, UMCES468 views26 downloads (Details)Conceptual diagram illustrating the sources, transport, and cycling of inorganic mercury and methylmercury to the marine environment. Diagram from "Tropical Connections: South Florida's marine environment" (pg. 137) - http://ian.umces.edu/press/publications/374/Add to lightbox
Protective natural resources Conceptual diagram illustrating how natural buffers can help prevent erosion and flooding in residential and urban areas. Diagram from "Comprehensive Strategy for Reducing Maryland's vulnerability to Climate Change Phase I" (pg. 20) - http://ian.umces.edu/press/publications/197/  diagram,wetlands,buffers,beach,flooding,urban,coastal,dune,forest,vegetation
Protective natural resourcesRaster Graphic (PNG) Jane ThomasIAN505 views45 downloads (Details)Conceptual diagram illustrating how natural buffers can help prevent erosion and flooding in residential and urban areas. Diagram from "Comprehensive Strategy for Reducing Maryland's vulnerability to Climate Change Phase I" (pg. 20) - http://ian.umces.edu/press/publications/197/ Add to lightbox
Protecting wetland migration corridors Conceptual diagram illustrating the process in which wetlands migrate during sea-level rise. Diagram from "Comprehensive Strategy for Reducing Maryland's vulnerability to Climate Change Phase I" (pg. 21) - http://ian.umces.edu/press/publications/197/  diagram,sea-level rise,climate change,migration,marsh,wetland,corridors,shoreline,residential,urban
Protecting wetland migration corridorsRaster Graphic (PNG) Jane ThomasIAN255 views36 downloads (Details)Conceptual diagram illustrating the process in which wetlands migrate during sea-level rise. Diagram from "Comprehensive Strategy for Reducing Maryland's vulnerability to Climate Change Phase I" (pg. 21) - http://ian.umces.edu/press/publications/197/ Add to lightbox
Floating Wetlands event On April 20,2012, the Waterfront Partnership, BioHabitats and Kids at Living Classroom created a floating wetland in the baltimore harbor. This included a public outreach event for students and other citizens. management,restoration,wetlands,baltimore,baltimore harbor,island,grass,regrowth,public outreach
Floating Wetlands eventPhoto (JPG) Caroline WicksEcoCheck167 views2 downloads (Details)On April 20,2012, the Waterfront Partnership, BioHabitats and Kids at Living Classroom created a floating wetland in the baltimore harbor. This included a public outreach event for students and other citizens.Add to lightbox
Floating Wetlands event On April 20,2012, the Waterfront Partnership, BioHabitats and Kids at Living Classroom created a floating wetland in the baltimore harbor. This included a public outreach event for students and other citizens. management,restoration,wetlands,baltimore,baltimore harbor,island,grass,regrowth,public outreach
Floating Wetlands eventPhoto (JPG) Caroline WicksEcoCheck113 views0 downloads (Details)On April 20,2012, the Waterfront Partnership, BioHabitats and Kids at Living Classroom created a floating wetland in the baltimore harbor. This included a public outreach event for students and other citizens.Add to lightbox

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