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The Appalachians are a landscape filled with globally-significant biological diversity and cultural resources that provides essential benefits to large cities and surrounding human communities. The region is also rich in energy resources that meet national and regional demands for energy. As wind, natural gas, and oil energy development expand along with traditional coal, there is an increasing need for research to inform discussions on how to meet immediate and future energy needs while sustaining the health of natural systems. To help address this need, the Appalachian LCC awarded a grant to The Nature Conservancy to assess current and future energy development across the entire region. Assessing Future Energy...
Scientists will employ land use change build-out scenaria for future energy development demand to quantify future impacts on forest habitats across the Appalachian LCC. We propose to create maps of wind, oil and gas, and coal development potential for the entire study area and use these maps and published projections from federal and state land management agencies to model future build-out scenaria.
Developing consistent region-wide information to ensure enough water for people and wildlife.
Stream habitats for this project were classified using six primary attributes: size, gradient, temperature, hydrology, buffering capacity, and confinement.
Unifying state-based stream classifications into a single consistent system, principal investigators at The Nature Conservancy developed a hierarchical classification system and map for stream and river systems for the Appalachian LCC that represents the region’s natural flowing-water aquatic habitats. This river classification information is needed to develop and implement instream flow standards and management recommendations so that environmental flows can become integral to all water management decisions from the onset.The study includes a report describing the methods used to evaluate and develop the classification system, a literature review of existing stream classifications, and a GIS stream data set. The...
This study developed a mapped classification system for stream and river systems in the Appalachian LCC region to inform conservation planning for aquatic biodiversity. Stream habitats were classified using six primary attributes: size, gradient, temperature, hydrology, buffering capacity, and confinement. Information on each variable was based on extensive data compiled or modeled. Variable classes were then combined to yield a regional taxonomy.
Request for Applications for the Stream Classification Project
Identifying aquatic ecosystems requires a classification of stream and lake features into recognizable categories. Although a number of nationally recognized terrestrial community classifications exist, currently there is no national or international standard for classifying aquatic communities or ecosystems. Despite the lack of a national aquatic community classification, aquatic ecosystem classifications and frameworks have been developed at a variety of spatial scales to reflect the distribution of aquatic biological communities. This report reviews these freshwater classification frameworks, providing detailed analysis and application examples of taxonomic, environmental, and hydrologic classifications in use...
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Assessing Future Energy Development across the Appalachian LCC used models that combined data on energy development trends and identified where these may intersect with important natural resource and ecosystem services to give a more comprehensive picture of what potential energy development could look like in the Appalachians. Ultimately this information is intended to support dialogue and conservation on how to effectively avoid, minimize, and offset impacts from energy development to important natural areas and the valuable services they provide.A final report from the study outlines the major findings of the potential footprint from coal, wind, and natural gas development. Models that depicts the probability...
The classification unifies existing geomorphic and hydrologic classifications that occur within the LCC. It represents aquatic habitat types across this region in a manner that is appropriate and useful for building ecological flow ecology relationships and other conservation planning tools.
The goal of this project is to develop a hierarchical classification for stream and river systems within the Appalachian Landscape Conservation Cooperative (LCC). This classification system will identify and consistently map ecologically similar types of rivers and streams using a flexible hierarchical set of geomorphic and hydrologic variables deemed appropriate for classification by the participating states and relevant to the spatial scale of management.
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Forest cores are derived by applying an inverse buffer (-100m) to forest patches to represent the area of contiguous interior forest habitat. Forest patches are defined as areas of contiguous natural cover bound by non-natural edge or linear fragmenting features (roads, railroads, transmission lines, natural gas pipelines). The following land cover types were selected from the 2006 National Land Cover Database (NLCD) to define “natural cover”: deciduous forest, coniferous forest, mixed [deciduous-coniferous] forest, scrub-shrub, woody wetland, and emergent wetland. Forest patches were delineated based on non-forest edge (from the NLCD) and the following linear fragmenting features:electric transmission lines (from...
Categories: Data; Types: ArcGIS REST Map Service, ArcGIS Service Definition, Citation, Downloadable, Map Service; Tags: Academics & scientific researchers, AppLCC, Appalachian, Appalachian, Appalachians, All tags...
Principal investigators at The Nature Conservancy developed a hierarchical classification system and map for stream and river systems for the Appalachian LCC that represents the region’s natural flowing-water aquatic habitats.
The product is intended to complement state-based stream classifications by unifying them into a single consistent system that represents the region’s natural flowing-water aquatic habitats. The results can be used to understand ecological flow relationships and inform conservation planning for aquatic biodiversity in the region.


    map background search result map search result map Pennsylvania Watersheds with a Documented Bat Occurrence Assessing Future Energy Development Across the Appalachians Future Energy Development Tool Public Pennsylvania Watersheds with a Documented Bat Occurrence Future Energy Development Tool Public Assessing Future Energy Development Across the Appalachians