Vermont EPSCoR Publications and Products


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Conference Paper and Presentation
Giles CD, Rutila EC, Schroth AW, Druschel GK. Characterization of Particulate Phosphorus in a Hydrologic Transect of the Lake Champlain Basin, Vermont, USA: Phosphorus Species Analysis and Enzyme Lability. In: Gordon Research Conference: The Metabolic Basis of Ecology. Gordon Research Conference: The Metabolic Basis of Ecology. Biddeford, ME; 2012. Available from: https://www.grc.org/programs.aspx?id=13259
Zia A, Schroth AW, Xu Y, Isles PDF. Combined Temperature and Precipitation Variability May Increase the Frequency of Harmful Algal Blooms in Lake Champlain, 1992-2100. In: 2017 AGU (American Geophysical Union) Chapman Conference. 2017 AGU (American Geophysical Union) Chapman Conference. San Juan, PR: American Geophysical Union (AGU); 2017. Available from: https://agu.confex.com/agu/17chapman1/webprogram/Paper201893.html
Journal Article
Giles CD, Lee LG, Cade-Menun BJ, Hill JE, Isles PDF, Schroth AW, Druschel GK. Characterization of Organic Phosphorus Form and Bioavailability in Lake Sediments using P Nuclear Magnetic Resonance and Enzymatic Hydrolysis. Journal of Environment Quality [Internet]. 2015 . Available from: https://dl.sciencesocieties.org/publications/jeq/abstracts/0/0/jeq2014.06.0273
Kurek MR, Harir M, Shukle JT, Schroth AW, Schmitt-Kopplin P, Druschel G. Chemical fractionation of organic matter and organic phosphorus extractions from freshwater lake sediment. Analytica Chimica Acta [Internet]. 2020 ;1130:29 - 38. Available from: https://www.sciencedirect.com/science/article/abs/pii/S0003267020307455
Zia A, Schroth AW, Hecht JS, Isles PDF, Clemins PJ, Turnbull S, Bitterman P, Tsai Y-S, Mohammed IN, Bucini G, et al. Climate change‐legacy phosphorus synergy hinders lake response to aggressive water policy targets. Earth's Future [Internet]. 2022 ;10(5):e2021EF002234. Available from: https://onlinelibrary.wiley.com/doi/10.1029/2021EF002234
Isles PDF, Xu Y, Stockwell JD, Schroth AW. Climate-driven changes in energy and mass inputs systematically alter nutrient concentration and stoichiometry in deep and shallow regions of Lake Champlain. Biogeochemistry [Internet]. 2017 . Available from: http://link.springer.com/10.1007/s10533-017-0327-8
Frazar S, Gold A, Addy K, Moatar F, Birgand F, Schroth AW, Kellogg DQ, Pradhanang S. Contrasting behavior of nitrate and phosphate flux from high flow events on small agricultural and urban watersheds. Biogeochemistry [Internet]. 2019 ;145(1-2):141 - 160. Available from: https://link.springer.com/article/10.1007%2Fs10533-019-00596-z
Zia A, Bomblies A, Schroth AW, Koliba C, Isles PDF, Tsai Y-S, Mohammed IN, Bucini G, Clemins PJ, Turnbull S, et al. Coupled impacts of climate and land use change across a river-lake continuum: insights from an integrated assessment model of Lake Champlain’s Missisquoi Basin, 2000-2040. Environmental Research Letters [Internet]. 2016 ;11(11):114026. Available from: http://stacks.iop.org/1748-9326/11/i=11/a=114026?key=crossref.46f2304a408b74e1eb473acc5fa39830
Rosenberg BD, Schroth AW. Coupling of reactive riverine phosphorus and iron species during hot transport moments: impacts of land cover and seasonality. Biogeochemistry [Internet]. 2017 :1-20. Available from: http://link.springer.com/article/10.1007/s10533-016-0290-9/fulltext.html