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Chalk stream restoration: Physical and ecological responses to gravel augmentation
by
Dolman, Lewis A.
, Kemp, Paul S.
, Vowles, Andrew S.
in
Abundance
/ Algae
/ Animals
/ Aquatic plants
/ Biodiversity
/ Biology and Life Sciences
/ Chalk
/ Community structure
/ Conservation of Natural Resources - methods
/ Creeks & streams
/ Dredging
/ Earth Sciences
/ Ecological effects
/ Ecological restoration
/ Ecology and Environmental Sciences
/ Ecosystem
/ Environmental aspects
/ Environmental protection
/ Environmental Restoration and Remediation - methods
/ Evaluation
/ Geologic Sediments
/ Gravel
/ Habitats
/ Invertebrates - physiology
/ Land use
/ Macroinvertebrates
/ Macrophytes
/ Management
/ People and places
/ Protection and preservation
/ River networks
/ River sediments
/ River systems
/ Rivers
/ Sediments
/ Streams
/ System effectiveness
/ Water depth
/ Water shortages
/ Wildlife conservation
2024
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Chalk stream restoration: Physical and ecological responses to gravel augmentation
by
Dolman, Lewis A.
, Kemp, Paul S.
, Vowles, Andrew S.
in
Abundance
/ Algae
/ Animals
/ Aquatic plants
/ Biodiversity
/ Biology and Life Sciences
/ Chalk
/ Community structure
/ Conservation of Natural Resources - methods
/ Creeks & streams
/ Dredging
/ Earth Sciences
/ Ecological effects
/ Ecological restoration
/ Ecology and Environmental Sciences
/ Ecosystem
/ Environmental aspects
/ Environmental protection
/ Environmental Restoration and Remediation - methods
/ Evaluation
/ Geologic Sediments
/ Gravel
/ Habitats
/ Invertebrates - physiology
/ Land use
/ Macroinvertebrates
/ Macrophytes
/ Management
/ People and places
/ Protection and preservation
/ River networks
/ River sediments
/ River systems
/ Rivers
/ Sediments
/ Streams
/ System effectiveness
/ Water depth
/ Water shortages
/ Wildlife conservation
2024
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Chalk stream restoration: Physical and ecological responses to gravel augmentation
by
Dolman, Lewis A.
, Kemp, Paul S.
, Vowles, Andrew S.
in
Abundance
/ Algae
/ Animals
/ Aquatic plants
/ Biodiversity
/ Biology and Life Sciences
/ Chalk
/ Community structure
/ Conservation of Natural Resources - methods
/ Creeks & streams
/ Dredging
/ Earth Sciences
/ Ecological effects
/ Ecological restoration
/ Ecology and Environmental Sciences
/ Ecosystem
/ Environmental aspects
/ Environmental protection
/ Environmental Restoration and Remediation - methods
/ Evaluation
/ Geologic Sediments
/ Gravel
/ Habitats
/ Invertebrates - physiology
/ Land use
/ Macroinvertebrates
/ Macrophytes
/ Management
/ People and places
/ Protection and preservation
/ River networks
/ River sediments
/ River systems
/ Rivers
/ Sediments
/ Streams
/ System effectiveness
/ Water depth
/ Water shortages
/ Wildlife conservation
2024
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Chalk stream restoration: Physical and ecological responses to gravel augmentation
Journal Article
Chalk stream restoration: Physical and ecological responses to gravel augmentation
2024
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Overview
To mitigate the morphological and ecological impacts of direct (e.g. dredging) and indirect (e.g. damaged river function) sediment loss, gravel augmentation is commonly practiced in river systems globally. Despite this, the effectiveness of this practice remains poorly understood, especially in less often considered systems such as chalk streams which present uncommon conditions (e.g. low stream power, stable flow) and may respond to interventions in ways that differ from systems more commonly studied. This study quantified immediate (0–1 years) and short-term (1–2 years) physical and ecological responses to gravel augmentation at two English chalk stream restoration sites: Home Stream (HS; River Test) and East Lodge (EL; River Itchen). We quantified habitat (depth, velocity, substrate composition), cover of different macrophytes, and macroinvertebrate (before-after-control-impact) abundance and community structure. Restoration reduced depth and increased gravel cover in both sites and decreased the cover of filamentous green algae in HS. Macroinvertebrate communities became more dominated by silt-intolerant taxa, while abundance [HS only] and taxon richness increased 1–2 years post-restoration. Whilst the responses found were generally positive in light of the restoration goals, the effects varied across sites, post-restoration time periods and ecological groups, emphasising the need for the more holistic monitoring of restoration projects considering community-level responses at different sites and systems over ecologically relevant timescales. This will help inform on the generality and longevity of responses and provide the evidence needed to develop sound restoration practice.
Publisher
Public Library of Science,Public Library of Science (PLoS)
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