Process-based Principles for Restoring River Ecosystems

被引:550
作者
Beechie, Timothy J. [1 ]
Sear, David A. [2 ]
Olden, Julian D. [3 ]
Pess, George R. [1 ]
Buffington, John M. [4 ]
Moir, Hamish [5 ]
Roni, Philip
Pollock, Michael M. [1 ]
机构
[1] NOAA, Fisheries NW Fisheries Sci Ctr, Seattle, WA USA
[2] Univ Southampton, Sch Geog, Southampton SO9 5NH, Hants, England
[3] Univ Washington, Sch Aquat & Fishery Sci, Seattle, WA 98195 USA
[4] US Forest Serv, Rocky Mt Res Stn, Boise, ID USA
[5] Macaulay Inst, Aberdeen, Scotland
关键词
river restoration; ecosystem dynamics; ecosystem processes; GENERAL PROTOCOL; RESTORATION; CHANNEL; STREAM; SEDIMENT; DYNAMICS; DEBRIS; CONNECTIVITY; BIODIVERSITY; VEGETATION;
D O I
10.1525/bio.2010.60.3.7
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Process-based restoration aims to reestablish normative rates and magnitudes of physical, chemical, and biological processes that sustain river and floodplain ecosystems. Ecosystem conditions at any site are governed by hierarchical regional, watershed, and reach-scale processes controlling hydrologic and sediment regimes; floodplain and aquatic habitat dynamics; and riparian and aquatic biota. We outline and illustrate four process-based principles that ensure river restoration will be guided toward sustainable actions: (1) restoration actions should address the root causes of degradation, (2) actions must be consistent with the physical and biological potential of the site, (3) actions should be at a scale commensurate with environmental problems, and (4) actions should have clearly articulated expected outcomes for ecosystem dynamics. Applying these principles will help avoid common pitfalls in river restoration, such as creating habitat types that are outside of a site's natural potential, attempting to build static habitats in dynamic environments, or constructing habitat features that are ultimately overwhelmed by unconsidered system drivers.
引用
收藏
页码:209 / 222
页数:14
相关论文
共 77 条
[51]   The natural flow regime [J].
Poff, NL ;
Allan, JD ;
Bain, MB ;
Karr, JR ;
Prestegaard, KL ;
Richter, BD ;
Sparks, RE ;
Stromberg, JC .
BIOSCIENCE, 1997, 47 (11) :769-784
[52]   Geomorphic changes upstream of beaver dams in Bridge Creek, an incised stream channel in the interior Columbia River basin, eastern Oregon [J].
Pollock, Michael M. ;
Beechie, Timothy J. ;
Jordan, Chris E. .
EARTH SURFACE PROCESSES AND LANDFORMS, 2007, 32 (08) :1174-1185
[53]   Hydrologic spiralling: The role of multiple interactive flow paths in stream ecosystems [J].
Poole, G. C. ;
O'Daniel, S. J. ;
Jones, K. L. ;
Woessner, W. W. ;
Bernhardt, E. S. ;
Helton, A. M. ;
Stanford, J. A. ;
Boer, B. R. ;
Beechie, T. J. .
RIVER RESEARCH AND APPLICATIONS, 2008, 24 (07) :1018-1031
[54]   Human appropriation of renewable fresh water [J].
Postel, SL ;
Daily, GC ;
Ehrlich, PR .
SCIENCE, 1996, 271 (5250) :785-788
[55]   A collaborative and adaptive process for developing environmental flow recommendations [J].
Richter, BD ;
Warner, AT ;
Meyer, JL ;
Lutz, K .
RIVER RESEARCH AND APPLICATIONS, 2006, 22 (03) :297-318
[56]  
Richter BD, 2007, ECOL SOC, V12
[57]   Global review of the physical and biological effectiveness of stream habitat rehabilitation techniques [J].
Roni, Phil ;
Hanson, Karrie ;
Beechie, Tim .
NORTH AMERICAN JOURNAL OF FISHERIES MANAGEMENT, 2008, 28 (03) :856-890
[58]   The application of palaeohydrology in river management [J].
Sear, D. A. ;
Arnell, N. W. .
CATENA, 2006, 66 (1-2) :169-183
[59]  
Sear D A., 2006, The Geomorphic and Hydrological Response of New Forest Streams to River Restoration
[60]   RIVER RESTORATION AND GEOMORPHOLOGY [J].
SEAR, DA .
AQUATIC CONSERVATION-MARINE AND FRESHWATER ECOSYSTEMS, 1994, 4 (02) :169-177