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Winter runoff events pose an unquantified continental-scale risk of high wintertime nutrient export

Bibliographic Data

ID15548437
AuthorsErin Seybold (0000-0002-0365-2333, University of Vermont, corresponding author), Ravindra Dwivedi (0000-0001-9369-132X, University of Vermont), K N Musselman (0000-0001-8394-491X, Institute of Arctic and Alpine Research), Dustin W Kincaid (0000-0003-1640-685X, University of Vermont), Andrew W Schroth (0000-0001-5553-3208, University of Vermont), Aimée T Classen (0000-0002-6741-3470, University of Vermont), Julia Perdrial (0000-0002-2581-9341, University of Vermont), E Carol Adair (0000-0002-8567-9045, University of Vermont)
Year2022
Volume17
Issue10
Pages104044-104044
Publication date2022-10-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueEnvironmental Research Letters (JOURNAL)
Journal identifiersISSN: 1748-9326 • E-ISSN: 1748-9326
PublisherIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/ac8be5
OpenAlexW4302362795
LanguageEN
Citations received2
References cited4

Winters in snow-covered regions have warmed, likely shifting the timing and magnitude of nutrient export, leading to unquantified changes in water quality. Intermittent, seasonal, and permanent snow covers more than half of the global land surface. Warming has reduced the cold conditions that limit winter runoff and nutrient transport, while cold season snowmelt, the amount of winter precipitation falling as rain, and rain-on-snow have increased. We used existing geospatial datasets (rain-on-snow frequency overlain on nitrogen and phosphorous inventories) to identify areas of the contiguous United States (US) where water quality could be threatened by this change. Next, to illustrate the potential export impacts of these events, we examined flow and turbidity data from a large regional rain-on-snow event in the United States’ largest river basin, the Mississippi River Basin. We show that rain-on-snow, a major flood-generating mechanism for large areas of the globe (Berghuijs et al 2019 Water Resour. Res. 55 4582–93; Berghuijs et al 2016 Geophys. Res. Lett. 43 4382–90), affects 53% of the contiguous US and puts 50% of US nitrogen and phosphorus pools (43% of the contiguous US) at risk of export to groundwater and surface water. Further, the 2019 rain-on-snow event in the Mississippi River Basin demonstrates that these events could have large, cascading impacts on winter nutrient transport. We suggest that the assumption of low wintertime discharge and nutrient transport in historically snow-covered regions no longer holds. Critically, however, we lack sufficient data to accurately measure and predict these episodic and potentially large wintertime nutrient export events at regional to continental scales

Drainage basin · Geography · Hydrology (agriculture · Meteorology · Precipitation · Snow · Snowmelt · Storm · Streamflow · Surface runoff · Surface water · Water quality · Cryospheric studies and observations · Environmental Science · Hydrology and Watershed Management Studies · Soil and Water Nutrient Dynamics · Ecology · Geology

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Unique citing works2
Citations per year0,67
Citation span2023 - 2023 (1)
Citation velocityhistorical
Highly citedNo
Citation typesNeutral: 1

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