Erin Seybold
Biographic Data
| ID | 7992033 |
|---|---|
| NAME | Erin Seybold |
| GIVEN NAMES | Erin |
| FAMILY NAME | Seybold |
| SIGNATURE | SEYBOLD E |
| AFFILIATIONS | United States Geological Survey |
| ORCID | 0000-0002-0365-2333 |
| VERIFIED | Yes |
| TOTAL WORKS | 2 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 2 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2022 |
| LATEST PUBLICATION YEAR | 2022 |
| H-INDEX | 0 |
Winter runoff events pose an unquantified continental-scale risk of high wintertime nutrient export
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.…
Alternative stable states and hydrological regime shifts in a large intermittent river
Non-perennial rivers and streams make up over half the global river network and are becoming more widespread. Transitions from perennial to non-perennial flow are a threshold-type change that can lead to alternative stable states in aquatic ecosystems, but it is unknown whether streamflow itself is stable in either wet (flowing) or dry (no-flow) conditions. Here, we investigated drivers and feedbacks associated with regime shifts between wet and …
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Winter runoff events pose an unquantified continental-scale risk of high wintertime nutrient export
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.…
Alternative stable states and hydrological regime shifts in a large intermittent river
Non-perennial rivers and streams make up over half the global river network and are becoming more widespread. Transitions from perennial to non-perennial flow are a threshold-type change that can lead to alternative stable states in aquatic ecosystems, but it is unknown whether streamflow itself is stable in either wet (flowing) or dry (no-flow) conditions. Here, we investigated drivers and feedbacks associated with regime shifts between wet and …
Drainage basin (2 works) · Environmental Science (2 works) · Geography (2 works) · Geology (2 works) · Hydrology (agriculture (2 works) · Hydrology and Watershed Management Studies (2 works) · Precipitation (2 works) · Streamflow (2 works) · Aquifer (1 works) · Cryospheric studies and observations (1 works)