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Publications

Deciphering the origin of riverine phytoplankton using in situ chlorophyll sensors

Peipoch, M., and S. Ensign. 2022. Limnology and Oceanography Letters 7(2): 159–166 ...

Beyond the light effect: how hydrologic and geomorphologic stream features control microbial distribution across pool sequences in a temperate headwater stream

Ouellet V., M.D. Daniels, M. Peipoch, L. Zgleszewski, N. Watson, E. Gibson, S. Krause, and J. Kan. 2022. Ecohydrology 15(2): e2380 ...

Delaware River Watershed Initiative Pollution Assessment: Stage 1 Project Report

Aufdenkampe, A.K., D.B. Arscott, B. Evans, and L. Perez. 2021. Stroud Water Research Center Report #2022-003 ...

Local environment and individuals’ beliefs: the dynamics shaping public support for sustainability policy in an agricultural landscape

Granco, G., M. Caldas, J. Bergtold, J.L. Heier Stamm, M. Mather, M. Sanderson, M. Daniels, A. Sheshukov, D. Haukos,and S. Ramsey. 2022. Journal of Environmental Management 301: 113776 ...

Dynamics of bacterial communities during a seasonal hypoxia at the Bohai Sea: Coupling and response between abundant and rare populations

Wu, C., J. Kan, D.D. Narale, K. Liu, and J. Sun. 2022. Journal of Environmental Sciences 111: 324–329 ...

Spatial variability in streambed microbial community structure across two watersheds

Akinwole, P., J. Kan, L.A. Kaplan, and R.H. Findlay. 2021. Microbiology Spectrum 9(3) e01972-21 ...

Epiphytic bacteria are essential for the production and transformation of algae-derived carboxyl-rich alicyclic molecule (CRAM)-like DOM

Liu, Y., J. Kan, C. He, Q. Shi, Y. Liu, Z. Fan, J. Sun. 2021. Microbiology Spectrum9(2): e01531-21 ...

Model My Watershed: an investigation into the role of big data, technology, and models in promoting student interest in watershed action

Marcum-Dietrich, N., S. Kerlin, A. Hendrix, N. Sorhagen, C. Staudt, and Z. Krauss. 2021. The Journal of Environmental Education 52(4) ...