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Environmental Sciences

D-Index
52
Citations
9081
World Ranking
4525
National Ranking
1683

Overview

Donald E. Weller is affiliated with the Smithsonian Environmental Research Center in the United States. Their research primarily spans the fields of Environmental Science and Earth and Planetary Sciences, with a strong focus on various subfields including Ecology, Oceanography, Nature and Landscape Conservation, Environmental Chemistry, and Global and Planetary Change.

The scientist's work covers several main topics such as Soil and Water Nutrient Dynamics, Marine and Coastal Plant Biology, Ecology and Vegetation Dynamics Studies, Peatlands and Wetlands Ecology, Fish Ecology and Management Studies, Coastal Wetland Ecosystem Dynamics, and Marine Biology and Ecology Research.

Among the recent scholarly publications credited to Donald E. Weller are the following:

  • The Chesapeake Bay program modeling system: Overview and recommendations for future development, 2021, published in Ecological Modelling
  • Rise of Ruppia in Chesapeake Bay: Climate change-driven turnover of foundation species creates new threats and management opportunities, 2023, published in Proceedings of the National Academy of Sciences
  • Scalability and performance tradeoffs in quantifying relationships between elevation and tidal wetland plant communities, 2021, published in Marine Ecology Progress Series
  • Environmental DNA reveals anadromous river herring habitat use and recolonization after restoration of aquatic connectivity, 2022, published in Environmental DNA
  • Structural Equation Models Suggest That On-Farm Noncrop Vegetation Removal Is Not Associated with Improved Food Safety Outcomes but Is Linked to Impaired Water Quality, 2022, published in Applied and Environmental Microbiology

Frequent coauthors collaborating with Donald E. Weller include Michael Hannam, Daniel L. Weller, Tanzy Love, Christopher J. Patrick, and Robert J. Orth.

Publication venues frequently featuring their work are bioRxiv (Cold Spring Harbor Laboratory), Ecological Modelling, Proceedings of the National Academy of Sciences, Marine Ecology Progress Series, and Environmental DNA.

Best Publications

  • SPATIAL CONSIDERATIONS FOR LINKING WATERSHED LAND COVER TO ECOLOGICAL INDICATORS IN STREAMS

    Ryan S. King;Matthew E. Baker;Dennis F. Whigham;Donald E. Weller

  • A Reevaluation of the -3/2 Power Rule of Plant Self-Thinning

    Donald E. Weller

  • Relating nutrient discharges from watersheds to land use and streamflow variability

    Thomas E. Jordan;David L. Correll;Donald E. Weller

  • Nutrient Interception by a Riparian Forest Receiving Inputs from Adjacent Cropland

    Thomas E. Jordan;David L. Correll;Donald E. Weller

  • Effects of agriculture on discharges of nutrients from Coastal Plain watersheds of Chesapeake Bay

    Thomas E. Jordan;David L. Correll;Donald E. Weller

  • Human contributions to terrestrial nitrogen flux

    Thomas E. Jordan;Donald E. Weller

  • Nutrient flux in a landscape: Effects of coastal land use and terrestrial community mosaic on nutrient transport to coastal waters

    David L. Correll;Thomas E. Jordan;Donald E. Weller

  • Long-term nutrient reductions lead to the unprecedented recovery of a temperate coastal region

    Jonathan S. Lefcheck;Jonathan S. Lefcheck;Robert J. Orth;William C. Dennison;David J. Wilcox

  • Self-Thinning Exponent Correlated with Allometric Measures of Plant Geometry

    Donald E. Weller

  • How novel is too novel? Stream community thresholds at exceptionally low levels of catchment urbanization

    Ryan S. King;Matthew E. Baker;Paul F. Kazyak;Donald E. Weller

  • Net anthropogenic phosphorus inputs: spatial and temporal variability in the Chesapeake Bay region

    Marc J. Russell;Marc J. Russell;Donald E. Weller;Thomas E. Jordan;Kevin J. Sigwart

  • HEURISTIC MODELS FOR MATERIAL DISCHARGE FROM LANDSCAPES WITH RIPARIAN BUFFERS

    Donald E. Weller;Thomas E. Jordan;David L. Correll

  • Improved methods for quantifying potential nutrient interception by riparian buffers

    Matthew E. Baker;Matthew E. Baker;Donald E. Weller;Thomas E. Jordan

  • Nutrients and chlorophyll at the interface of a watershed and an estuary

    Thomas E. Jordan;David L. Correll;Joseph J. Miklas;Donald E. Weller

  • Nonpoint source discharges of nutrients from Piedmont watersheds of Chesapeake Bay

    Thomas E. Jordan;David L. Correll;Donald E. Weller

  • Anthropogenic disturbance and streams: land use and land‐use change affect stream ecosystems via multiple pathways

    Kelly O. Maloney;Donald E. Weller

  • Transport of Nitrogen and Phosphorus from Rhode River watersheds during storm events

    David L. Correll;Thomas E. Jordan;Donald E. Weller

  • Accuracy and Precision of Tidal Wetland Soil Carbon Mapping in the Conterminous United States.

    James R. Holmquist;Lisamarie Windham-Myers;Norman Bliss;Stephen Crooks

  • Long-term trends in estuarine nutrients and chlorophyll, and short-term effects of variation in watershed discharge

    Thomas E. Jordan;David L. Correll;Joseph J. Miklas;Donald E. Weller

  • Sources of nutrient inputs to the Patuxent River estuary

    Thomas E. Jordan;Donald E. Weller;David L. Correll

  • Effects of land cover and geology on stream chemistry in watersheds of Chesapeake Bay

    Zhi-Jun Liu;Donald E. Weller;David L. Correll;Thomas E. Jordan

Frequent Co-Authors

Thomas E. Jordan
Thomas E. Jordan Smithsonian Environmental Research Center
David L. Correll
David L. Correll Smithsonian Environmental Research Center
Dennis F. Whigham
Dennis F. Whigham Smithsonian Environmental Research Center
James T. Morris
James T. Morris University of South Carolina
Tiffany G. Troxler
Tiffany G. Troxler Florida International University
Anson H. Hines
Anson H. Hines Smithsonian Environmental Research Center
Jonathan S. Lefcheck
Jonathan S. Lefcheck Smithsonian Environmental Research Center
Robert J. Orth
Robert J. Orth Virginia Institute of Marine Science
Joseph M. Smoak
Joseph M. Smoak University of South Florida St. Petersburg
Benjamin P. Horton
Benjamin P. Horton City University of Hong Kong

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