Much effort, little success: causes for the low ecological efficacy of restoration measures in German surface waters

被引:20
作者
Brettschneider, Denise Jasmin [1 ]
Spring, Taschina [1 ]
Blumer, Moritz [1 ]
Welge, Lukas [1 ]
Dombrowski, Andrea [1 ]
Schulte-Oehlmann, Ulrike [1 ]
Sundermann, Andrea [1 ,2 ,3 ]
Oetken, Matthias [1 ]
Oehlmann, Joerg [1 ]
机构
[1] Goethe Univ Frankfurt Main, Inst Ecol Evolut & Divers, Dept Aquat Ecotoxicol, Max von Laue Str 13, D-60438 Frankfurt, Germany
[2] Senckenberg Res Inst, Dept Limnol & Conservat, Clamecystr 12, D-63571 Gelnhausen, Germany
[3] Nat Hist Museum Frankfurt, Clamecystr 12, D-63571 Gelnhausen, Germany
关键词
Water Framework Directive; Ecological status; Restoration success; Hydromorphological restoration; Time scale; Catchment scale; Reach scale; Local scale; BENTHIC INVERTEBRATE COMMUNITIES; RIVER RESTORATION; STREAM RESTORATION; LAND-USE; HYDROMORPHOLOGICAL RESTORATION; FINE SEDIMENT; HABITAT HETEROGENEITY; HEADWATER STREAMS; MOTORWAY RUNOFF; GROUND BEETLES;
D O I
10.1186/s12302-023-00736-1
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
BackgroundFor more than 20 years, restoration measures have been conducted on watercourses in Germany to increase habitat diversity and thus promote biodiversity. However, their ecological efficacy often proved to be limited. While some studies report an increase in species diversity, others show little evidence of improvement even many years after the implementation of restoration measures. In general, ecological efficacy of hydromorphological restoration measures is highest for terrestrial and semiaquatic groups of organisms such as floodplain vegetation and ground beetles. According to the literature, macrophytes responded most strongly to in-stream restoration measures, while fish stocks showed little improvement and macroinvertebrates showed little or no effect in terms of species richness and diversity. These findings raise the question of reasons for the low ecological efficacy of hydromorphological restoration measures, especially for macroinvertebrate communities. The following literature review and a case study for the river Horloff will provide possible indications for failing success of intensive restoration measures.ResultsOne reason for the inadequate ecological status of many restored river stretches is the inappropriate scaling of restoration measures. Often, small-scale restoration measures are planned, although the respective water bodies exhibit stressors at the catchment scale that impair the ecological efficacy of restoration measures. In particular, chemical contamination of running waters is often insufficiently addressed in the planning and implementation of restoration measures and hampers efficacy of hydromorphological restoration measures. For a holistic water resource management, the planning and implementation of measures should therefore be more closely coordinated and harmonized between federal states and neighboring countries. For this purpose, the establishment of so-called river basin communities is suitable, as they already exist today on the rivers Rhine, Danube, Meuse, Weser, Elbe, Ems, Eider, Schlei/Trave, Warnow/Peene.ConclusionThe literature review indicated that for a successful recolonization of restored river stretches by macroinvertebrates and the enhancement of the ecological status, large-scale stressors, i.e., stressors acting at the catchment scale, should be eliminated initially by restoration measures focusing on the chemical contamination and the surrounding land use. Structural restoration measures acting on the reach or local scale should ideally be implemented contemporarily to the removal of large-scale stressors like chemical contamination.
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页数:22
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共 157 条
[11]   The effects of motorway runoff on freshwater ecosystems .3. Toxicant confirmation [J].
Boxall, ABA ;
Maltby, L .
ARCHIVES OF ENVIRONMENTAL CONTAMINATION AND TOXICOLOGY, 1997, 33 (01) :9-16
[12]   Dispersal as a limiting factor in the colonization of restored mountain streams by plants and macroinvertebrates [J].
Brederveld, Robert J. ;
Jaehnig, Sonja C. ;
Lorenz, Armin W. ;
Brunzel, Stefan ;
Soons, Merel B. .
JOURNAL OF APPLIED ECOLOGY, 2011, 48 (05) :1241-1250
[13]   Poison in paradise: increase of toxic effects in restored sections of two rivers jeopardizes the success of hydromorphological restoration measures [J].
Brettschneider, Denise J. ;
Misovic, Andrea ;
Schulte-Oehlmann, Ulrike ;
Oetken, Matthias ;
Oehlmann, Joerg .
ENVIRONMENTAL SCIENCES EUROPE, 2019, 31 (1)
[14]   Detection of chemically induced ecotoxicological effects in rivers of the Nidda catchment (Hessen, Germany) and development of an ecotoxicological, Water Framework Directive-compliant assessment system [J].
Brettschneider, Denise J. ;
Misovic, Andrea ;
Schulte-Oehlmann, Ulrike ;
Oetken, Matthias ;
Oehlmann, Joerg .
ENVIRONMENTAL SCIENCES EUROPE, 2019, 31 (1)
[15]   The mode of bioturbation triggers pesticide remobilization from aquatic sediments [J].
Bundschuh, Mirco ;
Schletz, Marco ;
Goedkoop, Willem .
ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY, 2016, 130 :171-176
[16]   Effects of organic pollutants from wastewater treatment plants on aquatic invertebrate communities [J].
Bunzel, Katja ;
Kattwinkel, Mira ;
Liess, Matthias .
WATER RESEARCH, 2013, 47 (02) :597-606
[17]   Effects of climate-driven temperature changes on the diversity of freshwater macroinvertebrates [J].
Burgmer, T. ;
Hillebrand, H. ;
Pfenninger, M. .
OECOLOGIA, 2007, 151 (01) :93-103
[18]   Transport mechanisms of contaminants released from fine sediment in rivers [J].
Cheng, Pengda ;
Zhu, Hongwei ;
Zhong, Baochang ;
Wang, Daozeng .
ACTA MECHANICA SINICA, 2015, 31 (06) :791-798
[19]   The failed-levee effect: Do societies learn from flood disasters? [J].
Collenteur, R. A. ;
de Moel, H. ;
Jongman, B. ;
Di Baldassarre, G. .
NATURAL HAZARDS, 2015, 76 (01) :373-388
[20]   The storage and provenance of fine sediment on the channel bed of two contrasting lowland permeable catchments, UK [J].
Collins, A. L. ;
Walling, D. E. .
RIVER RESEARCH AND APPLICATIONS, 2007, 23 (04) :429-450