Vermont EPSCoR Publications and Products


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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
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
Shang L. Climate Change and Land Use/Cover Change Impacts on Watershed Hydrology, Carbon, Nutrient Dynamics - A Case Study in Missisquoi River Watershed. Burlington, VT: University of Vermont; 2018.
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 alter N:P stoichiometry differently in deep and shallow sites in a large lake. GLEON 17 [Internet]. 2015 . Available from: http://gleon.org/sites/default/files/uploaded/PosterAbstract.pdf
Isles PDF, Xu Y, Stockwell JD, Schroth AW. Climate-driven changes in energy and mass inputs alter N:P stoichiometry differently in deep and shallow sites in a large lake. GLEON 17 [Internet]. 2015 . Available from: http://gleon.org/sites/default/files/uploaded/PosterAbstract.pdf
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
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
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
Perdrial JN, Adler T, Bristol C, Underwood KL, Rizzo DM, Wen H, Li L, Harpold AA, Sterle G, Hanley J. Combining complex systems analyses with process observations to understand stream dissolved organic carbon across scales. Goldschmidt 2020 [Internet]. 2020 . Available from: https://goldschmidtabstracts.info/2020/2060.pdf
Perdrial JN, Cincotta MM, Armfield J, Adler T, Shanley JB, Underwood KL, Rizzo DM, Wen H, Li L, Harpold A, et al. Combining long-term observations with experiments to test hypotheses on stream water dissolved organic carbon dynamics at the Sleepers River Research Watershed. In: 2018 AGU (American Geophysical Union) Fall Meeting. 2018 AGU (American Geophysical Union) Fall Meeting. Washington, DC: American Geophysical Union (AGU); 2018. Available from: https://agu.confex.com/agu/fm18/meetingapp.cgi/Paper/407615
Perdrial JN, Cincotta MM, Armfield J, Adler T, Shanley JB, Underwood KL, Rizzo DM, Wen H, Li L, Harpold A, et al. Combining long-term observations with experiments to test hypotheses on stream water dissolved organic carbon dynamics at the Sleepers River Research Watershed. In: 2018 AGU (American Geophysical Union) Fall Meeting. 2018 AGU (American Geophysical Union) Fall Meeting. Washington, DC: American Geophysical Union (AGU); 2018. Available from: https://agu.confex.com/agu/fm18/meetingapp.cgi/Paper/407615
Hu LB, Savidge C, Rizzo DM, Hayden NJ, Hagadorn JW, Dewoolkar MM. Commonly Used Porous Building Materials - Geomorphic Pore Structure and Fluid Transport. Journal of Materials in Civil Engineering. 2012 [cited 0BC]:121004140005006.
Hrycik AR, Shambaugh A, Stockwell JD. Comparison of FlowCAM and microscope biovolume measurements for a diverse freshwater phytoplankton community. Journal of Plankton Research [Internet]. 2019 ;41(6):849 - 864. Available from: https://academic.oup.com/plankt/article-abstract/41/6/849/5622696
Hrycik AR, Shambaugh A, Stockwell JD. Comparison of FlowCAM and microscope biovolume measurements for a diverse freshwater phytoplankton community. Journal of Plankton Research [Internet]. 2019 ;41(6):849 - 864. Available from: https://academic.oup.com/plankt/article-abstract/41/6/849/5622696
Hrycik A, Shambaugh A, Stockwell J. A comparison of FlowCam and microscopy methods for phytoplankton community assessment in Lake Champlain. In: Lake Champlain Research Conference. Lake Champlain Research Conference. Burlington, VT: Lake Champlain Basin Program; 2018. Available from: http://www.lcbp.org/water-environment/data-monitoring/lake-champlain-research-conference/
Hrycik A, Shambaugh A, Stockwell J. A comparison of FlowCam and microscopy methods for phytoplankton community assessment in Lake Champlain. In: Lake Champlain Research Conference. Lake Champlain Research Conference. Burlington, VT: Lake Champlain Basin Program; 2018. Available from: http://www.lcbp.org/water-environment/data-monitoring/lake-champlain-research-conference/
Gouli V, Provost C, Parker BL, Skinner M, Gouli S. Comparison of two methods for estimation of spray deposits after application of microbial pesticides. Biocontrol Science and Technology [Internet]. 2010 [cited 0BC];20(3):331 - 337. Available from: http://www.tandfonline.com/doi/abs/10.1080/09583150903522117#preview
Kanat LH, Springston GE, Sevi AF. Complex earth slide-flows in glaciolacustrine deposits over the past 100 years in Jeffersonville, Vermont. In: 2015 Geological Society of America Northeastern Section Meeting (50th Anniversary). 2015 Geological Society of America Northeastern Section Meeting (50th Anniversary). Bretton Woods, NH; 2015. Available from: https://gsa.confex.com/gsa/2015NE/webprogram/Paper252867.html
Kanat LH, Springston GE, Sevi AF. Complex earth slide-flows in glaciolacustrine deposits over the past 100 years in Jeffersonville, Vermont. In: 2015 Geological Society of America Northeastern Section Meeting (50th Anniversary). 2015 Geological Society of America Northeastern Section Meeting (50th Anniversary). Bretton Woods, NH; 2015. Available from: https://gsa.confex.com/gsa/2015NE/webprogram/Paper252867.html
Oswald EM, Pontius J, Rayback SA, Schaberg PG, Wilmot SH, Dupigny-Giroux L-A. The complex relationship between climate and sugar maple health: Climate change implications in Vermont for a key northern hardwood species. Forest Ecology and Management [Internet]. 2018 ;422:303 - 312. Available from: https://www.nrs.fs.fed.us/pubs/56083
Underwood KL, Libby S, Pytlik S, Jaquith S, Smith C, McKinley D. A Conservation Partnership to Restore Ecosystem Services along the New Haven River. In: 38th Annual New England Association of Environmental Biologists conference. 38th Annual New England Association of Environmental Biologists conference. Burlington VT; 2014.
Bitterman P, Bennett DA, Secchi S. Constraints on farmer adaptability in the Iowa-Cedar River Basin. Environmental Science & Policy [Internet]. 2019 ;92(February 2019):9 - 16. Available from: https://www.sciencedirect.com/science/article/pii/S1462901118302260#ack0005
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
Block BD, Stockwell JD, J Marsden E. Contributions of winter foraging to the annual growth of thermally dissimilar fish species. Hydrobiologia [Internet]. 2020 ;847(20):4325 - 4341. Available from: http://link.springer.com/10.1007/s10750-020-04428-2

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