How do instream flow increase and gravel augmentation impact biological communities in large rivers: A case study on the Upper Rhine River

Author:

Staentzel C.1ORCID,Arnaud F.2ORCID,Combroux I.1ORCID,Schmitt L.1ORCID,Trémolières M.1,Grac C.13ORCID,Piégay H.2ORCID,Barillier A.4,Chardon V.1ORCID,Beisel J.-N.13ORCID

Affiliation:

1. CNRS, LIVE UMR 7362; Université de Strasbourg; F-67000 Strasbourg France

2. CNRS, EVS UMR 5600; Université de Lyon; F-69000 Lyon France

3. Ecole Nationale du Génie de l'Eau et de l'Environnement de Strasbourg (ENGEES); F-67070 Strasbourg France

4. Centre d'ingénierie hydraulique (CIH); Electricité de France (EDF), Savoie Technolac; F-73374 Le Bourget-du-Lac France

Funder

Électricité de France

European Regional Development Fund

Publisher

Wiley

Subject

General Environmental Science,Water Science and Technology,Environmental Chemistry

Reference62 articles.

1. AFNOR 2004 Qualité de l'eau. Détermination de l'indice biologique global normalisé (IGBN) Association française de normalisation 1 16

2. Connectivity and biocomplexity in waterbodies of riverine floodplains;Amoros;Freshwater Biology,2002

3. Monitoring gravel augmentation in a large regulated river and implications for process-based restoration;Arnaud;Earth Surface Processes and Landforms,2017

4. The elusive model of a biological invasion process: Time to take differences among aquatic and terrestrial ecosystems into account?;Beisel;Ethology, Ecology and Evolution,2001

5. Spatiotemporal trends for exotic species in French freshwater ecosystems: Where are we now?;Beisel;Hydrobiologia,2017

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