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Sediment vulnerability ranking for river basins across the contiguous U.S. using integrated biophysical and social-ecological data

September 15, 2026

Nearly half of streams and rivers in the United States (U.S.) have fair to poor conditions for aquatic ecosystem health as declared by the U.S. Environmental Protection Agency, and sediment was identified as a primary factor impairing these waterbodies. We rank sediment vulnerability using physical, ecological, and socioeconomic datasets in 163 4-digit Hydrologic Unit Codes within 18 regions across the contiguous U.S. based on the National Hydrography Dataset. We refer to sediment vulnerability as the potential for excess sediment to adversely impact social-ecological aspects of streams and rivers. Metrics were organized into six variable groups: (1) geomorphic setting, (2) modeled sediment and phosphorus, (3) hydrologic conditions, (4) anthropogenic factors and land use, (5) socioeconomic considerations, and (6) measures of ecosystem sensitivity. Correlations and principal component analysis were used to reduce and select metrics that explained the highest variability across basins. Results from the regional analysis identify basins with higher sediment vulnerability in each region, whereas national results identify hotspots of highly ranked basins in the Midwest and the central U.S. with a concentration of moderately to highly ranked basins in the south-central and southwestern U.S. Indicators of socioeconomic and ecological vulnerability integrated with physical drivers of sediment production help identify important gaps in sediment monitoring and research.

Publication Year 2026
Title Sediment vulnerability ranking for river basins across the contiguous U.S. using integrated biophysical and social-ecological data
DOI 10.1111/1752-1688.70149
Authors Nicholas A. Sutfin, Allen C. Gellis, Nancy T. Baker, Christopher H. Conaway, Katherine Skalak
Publication Type Article
Publication Subtype Journal Article
Series Title Journal for the American Water Resource Association
Index ID 70280514
Record Source USGS Publications Warehouse
USGS Organization Washington Water Science Center; Ohio-Kentucky-Indiana Water Science Center; WMA - Earth System Processes Division
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