Literature DB >> 11915968

The concept of habitat diversity between and within ecosystems applied to river side-arm restoration.

C Amoros1.   

Abstract

Since returning an ecosystem to its pristine state may not be realistic in every situation, the concept of habitat diversity is proposed to help decision-makers in defining realistic restoration objectives. In order to maintain habitat diversity and enhance the long-term success of restoration, process-oriented projects should be preferred to species-oriented ones. Because the hydrogeomorphological processes that influence biodiversity operate at different spatiotemporal scales, three scales are considered: river sectors, floodplain waterbodies, and mesohabitats within each waterbody. Based on a bibliographical review, three major driving forces are proposed for incorporation into the design of restoration projects: (1) flow velocity and flood disturbances, (2) hydrological connectivity, and (3) water supply. On the sector scale, increased habitat diversity between waterbodies can be achieved by combining various intensities of these driving forces. On the waterbody scale, increased habitat diversity within the ecosystem can be achieved by varying water depth, velocity, and substrate. The concept is applied to a Rhĵne River sector (France) where three terrestrialized side arms will be restored. Two were designed to be flood scoured, one having an additional supply of groundwater, the other being connected to the river at both ends. The third cannot be scoured by floods because of upstream construction and would be supplied by river backflow through a downstream connection. Habitat diversity within the ecosystem is exemplified on one side arm through the design of a sinuous pathway combined with variation of water depth, wetted width, and substrate grain size. Self-colonization of the side arms is expected owing to the restoration of connectivity to upstream sources of potential colonizers.

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Year:  2001        PMID: 11915968     DOI: 10.1007/s002670010263

Source DB:  PubMed          Journal:  Environ Manage        ISSN: 0364-152X            Impact factor:   3.266


  2 in total

1.  Assessing the restoration success of river widenings: a landscape approach.

Authors:  Sigrun Rohde; Felix Kienast; Matthias Bürgi
Journal:  Environ Manage       Date:  2004-10       Impact factor: 3.266

2.  Large-scale controls on potential respiration and denitrification in riverine floodplains.

Authors:  Nina Welti; Elisabeth Bondar-Kunze; Gabriel Singer; Michael Tritthart; Sophie Zechmeister-Boltenstern; Thomas Hein; Gilles Pinay
Journal:  Ecol Eng       Date:  2012-05       Impact factor: 4.035

  2 in total

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