Coastal Ecosystems in Transition. Группа авторов

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An overview. Washington, DC.

      80 US Environmental Protection Agency (2010). Chesapeake Bay Total Maximum Daily Load for nitrogen, phosphorus and sediment. Annapolis, MD.

      81 US Geological Survey (2018). Surface‐water data for the nation. http://dx.doi.org/10.5066/F7P55KJN

      82 Van Meter, K.J., Basu, N.B. & Van Cappellen, P. (2017). Two centuries of nitrogen dynamics: Legacy sources and sinks in the Mississippi and Susquehanna River Basins. Global Biogeochemical Cycles, 31(1), 2–23. https://doi:10.1002/2016gb005498

      83 Van Meter, K.J., Van Cappellen, P., & Basu, N.B. (2018). Legacy nitrogen may prevent achievement of water quality goals in the Gulf of Mexico. Science, 360(6387), 427–430. https://doi:10.1126/science.aar4462

      84 Vero, S.E., Basu, N.B., Van Meter, K., Richards, K.G., Mellander, P.‐E., Healy, M.G., & Fenton, O. (2017). Review: The environmental status and implications of the nitrate time lag in Europe and North America. Hydrogeology Journal, 26(1), 7–22. https://doi:10.1007/s10040‐017‐1650‐9

      85 Viaroli, P., Puma, F., & Ferrari, I. (2010). Aggiornamento delle conoscenze ecologiche sul bacino idrografico padano: una sintesi. Biologia Ambientale, 24, 7–19.

      86 Viaroli, P., Soana, E., Pecora, S., Laini, A., Naldi, M., Fano, E.A., & Nizzoli, D. (2018). Space and time variations of watershed N and P budgets and their relationships with reactive N and P loadings in a heavily impacted river basin (Po river, Northern Italy). Science of the Total Environment, 639, 1574–1587. https://doi:10.1016/j.scitotenv.2018.05.233

      87 Volf, G., Atanasova, N., Kompare, B. & Ožanić, N. (2013). Modeling nutrient loads to the northern Adriatic, Journal of Hydrology, 504, 182–193. https://doi:10.1016/j.jhydrol.2013.09.044

      88 Volf, G., Atanasova, N., Skerjanec, M., & Ozanic, N. (2018). Hybrid modeling approach for the northern Adriatic watershed management. Science of the Total Environment, 635, 353–363. https://doi:10.1016/j.scitotenv.2018.04.094

      89 Voulvoulis, N., Arpon, K.D., & Giakoumis, T. (2017). The EU Water Framework Directive: From great expectations to problems with implementation. Science of the Total Environment, 575, 358–366. https://doi:10.1016/j.scitotenv.2016.09.228

      90 Wagena, M.B., Collick, A.S., Ross, A.C., Najjar, R.G., Rau, B., Sommerlot, A.R., et al. (2018). Impact of climate change and climate anomalies on hydrologic and biogeochemical processes in an agricultural catchment of the Chesapeake Bay watershed, USA. Science of the Total Environment, 637–638, 1443–1454. https://doi:10.1016/j.scitotenv.2018.05.116

      91 Walter, R.C., & Merritts, D.J. (2008). Natural streams and the legacy of water‐powered mills. Science, 319(5861), 299–304. https://doi:10.1126/science.1151716

      92 Withers, P.J., & Jarvie, H.P. (2008). Delivery and cycling of phosphorus in rivers: A review. Science of the Total Environment, 400(1–3), 379–395. https://doi:10.1016/j.scitotenv.2008.08.002

      93 Zampieri, M., Scoccimarro, E., Gualdi, S., & Navarra, A. (2015). Observed shift towards earlier spring discharge in the main Alpine rivers. Science of the Total Environment, 503–504, 222–232. https://doi:10.1016/j.scitotenv.2014.06.036

      94 Zhang, Q., Ball, W.P., & Moyer, D.L. (2016). Decadal‐scale export of nitrogen, phosphorus, and sediment from the Susquehanna River basin, USA: Analysis and synthesis of temporal and spatial patterns. Science of the Total Environment, 563–564, 1016–1029. https://doi:10.1016/j.scitotenv.2016.03.104

      95 Zhang, Q., Brady, D.C., & Ball, W.P. (2013). Long‐term seasonal trends of nitrogen, phosphorus, and suspended sediment load from the non‐tidal Susquehanna River Basin to Chesapeake Bay. Science of the Total Environment, 452–453, 208–221. https://doi:10.1016/j.scitotenv.2013.02.012

      96 Zhang, Q., Brady, D.C., Boynton, W.R., & Ball, W.P. (2015). Long‐term trends of nutrients and sediment from the nontidal Chesapeake watershed: An assessment of progress by river and season. Journal of the American Water Resources Association, 51(6), 1534–1555. https://doi:10.1111/1752‐1688.12327

      97 Zhang, Q., Hirsch, R.M., & Ball, W.P. (2016). Long‐term changes in sediment and nutrient delivery from Conowingo Dam to Chesapeake Bay: Effects of reservoir sedimentation. Environmental Science and Technology, 50(4), 1877–1886. https://doi:10.1021/acs.est.5b04073

      98 Zhang, Q., Murphy, R.R., Tian, R., Forsyth, M.K., Trentacoste, E.M., Keisman, J., & Tango, P.J. (2018). Chesapeake Bay's water quality condition has been recovering: Insights from a multimetric indicator assessment of thirty years of tidal monitoring data. Science of the Total Environment, 637–638, 1617–1625. https://doi:10.1016/j.scitotenv.2018.05.025

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