Kräftemessen zwischen Wasserkraft und Ökologie
von Daniel S. Hayes (Seite 8-11)
Couto, Thiago & Olden, Julian (2018): Global proliferation of small hydropower plants – science and policy. In: Front. Ecol. Environ., 16(2), 91–100.
Deemer, Bridget et al. (2016): Greenhouse Gas Emissions from Reservoir Water Surfaces: A New Global Synthesis. In: BioScience, 66, 949–964.
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Greimel Franz et al. (2018): Hydropeaking Impacts and Mitigation. In: Schmutz & Sendzimir (2018): Riverine Ecosystem Management, Science for Governing Towards a Sustainable Future.
Hayes, Daniel et al. (2018): Advancing towards functional environmental flows for temperate floodplain rivers. In: Sci. Tot. Environ., 633, 1089–1104.
Kelly-Richards, Sarah et al. (2017). Governing the transition to renewable energy: A review of impacts and policy issues in the small hydropower boom. In: Energy Policy, 101, 251–264.
Meyer Judy et al. (2007). The contribution of headwater streams to biodiversity in river networks. In: JAWRA, 43(1), 86–103.
Opperman, Jeff (2018): The Unexpectedly Large Impacts of Small Hydropower.
Online: https://www.forbes.com/sites/jeffopperman/2018/08/10/the-unexpectedly-large-impacts-of-small-hydropower/?sh=54d03c9f7b9d. Zugriff: 18.09.2018.
Schmutz, Stefan & Moog, Otto (2018): Dams: Ecological Impacts and Management. In: Schmutz & Sendzimir (2018): Riverine Ecosystem Management, Science for Governing Towards a Sustainable Future.
Seliger, Carina et al. (2016): Hy:Con: A Strategic Tool For Balancing Hydropower Development And Conservation Needs. In: River Res. Applic., 32(7), 1438–1449.
Unfer, Günther et al. (2011): Der Einfluss von Schwallbetrieb auf den Fischbestand der Oberen Drau.
Poff, LeRoy et al. (1997): The Natural Flow Regime. In: BioScience, 47(11), 769–784.
Poff, LeRoy & Schmidt, John (2016): How dams can go with the flow. In: Science, 353(6304), 1099–1100.