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of 5
pro vyhledávání: '"Erin C. Seybold"'
Autor:
Erin C. Seybold, Anna Bergstrom, C. Nathan Jones, Amy J. Burgin, Sam Zipper, Sarah E. Godsey, Walter K. Dodds, Margaret A. Zimmer, Margaret Shanafield, Thibault Datry, Raphael D. Mazor, Mathis L. Messager, Julian D. Olden, Adam Ward, Songyan Yu, Kendra E. Kaiser, Arial Shogren, Richard H. Walker
Publikováno v:
Limnology and Oceanography Letters, Vol 8, Iss 6, Pp 804-811 (2023)
Externí odkaz:
https://doaj.org/article/04bb3f999c144bc496ef47ec0fb2f00e
Autor:
Manya Ruckhaus, Erin C. Seybold, Kristen L. Underwood, Bryn Stewart, Dustin W. Kincaid, James B. Shanley, Li Li, Julia N. Perdrial
Publikováno v:
Frontiers in Water, Vol 5 (2023)
The concurrent reduction in acid deposition and increase in precipitation impact stream solute dynamics in complex ways that make predictions of future water quality difficult. To understand how changes in acid deposition and precipitation have influ
Externí odkaz:
https://doaj.org/article/a710422c6ab9468cb6f516079fdbd0da
Autor:
John D. Schade, Erin C. Seybold, Travis Drake, Seth Spawn, William V. Sobczak, Karen E. Frey, Robert M. Holmes, Nikita Zimov
Publikováno v:
Polar Research, Vol 35, Iss 0, Pp 1-10 (2016)
Arctic streams are likely to receive increased inputs of dissolved nutrients and organic matter from thawing permafrost as climate warms. Documenting how Arctic streams process inorganic nutrients is necessary to understand mechanisms that regulate w
Externí odkaz:
https://doaj.org/article/9c2f46d4bf23414d8b2338c0152661bc
Autor:
Erin C Seybold, Ravindra Dwivedi, Keith N Musselman, Dustin W Kincaid, Andrew W Schroth, Aimee T Classen, Julia N Perdrial, E Carol Adair
Publikováno v:
Environmental Research Letters. 17:104044
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. W
Publikováno v:
Environmental Research Letters. 17:074005
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 ecosystem