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Groundwater nitrate removal in riparian buffer zones
by
Hill, Alan R.
in
Agricultural watersheds
/ Aquifers
/ Bedrock
/ Biogeochemistry
/ Biogeosciences
/ Buffer zones
/ Buffers
/ Climate change
/ Denitrification
/ Earth and Environmental Science
/ Earth Sciences
/ Ecosystems
/ Environmental Chemistry
/ Flow paths
/ Fluxes
/ Glacial till
/ Groundwater
/ Hydrology
/ Interactions
/ Land use
/ Landscape
/ landscapes
/ Life Sciences
/ monitoring
/ Nitrate removal
/ Nitrates
/ Nitrogen removal
/ Nutrient removal
/ ORIGINAL PAPERS
/ Overland flow
/ Removal
/ Restoration
/ riparian areas
/ Riparian buffers
/ Riparian environments
/ Riparian land
/ Riparian zone
/ sand
/ Sand aquifers
/ Sediment
/ Sediment texture
/ Sediments
/ subsurface flow
/ Surface runoff
/ texture
/ uncertainty
/ Watersheds
2019
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Groundwater nitrate removal in riparian buffer zones
by
Hill, Alan R.
in
Agricultural watersheds
/ Aquifers
/ Bedrock
/ Biogeochemistry
/ Biogeosciences
/ Buffer zones
/ Buffers
/ Climate change
/ Denitrification
/ Earth and Environmental Science
/ Earth Sciences
/ Ecosystems
/ Environmental Chemistry
/ Flow paths
/ Fluxes
/ Glacial till
/ Groundwater
/ Hydrology
/ Interactions
/ Land use
/ Landscape
/ landscapes
/ Life Sciences
/ monitoring
/ Nitrate removal
/ Nitrates
/ Nitrogen removal
/ Nutrient removal
/ ORIGINAL PAPERS
/ Overland flow
/ Removal
/ Restoration
/ riparian areas
/ Riparian buffers
/ Riparian environments
/ Riparian land
/ Riparian zone
/ sand
/ Sand aquifers
/ Sediment
/ Sediment texture
/ Sediments
/ subsurface flow
/ Surface runoff
/ texture
/ uncertainty
/ Watersheds
2019
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Groundwater nitrate removal in riparian buffer zones
by
Hill, Alan R.
in
Agricultural watersheds
/ Aquifers
/ Bedrock
/ Biogeochemistry
/ Biogeosciences
/ Buffer zones
/ Buffers
/ Climate change
/ Denitrification
/ Earth and Environmental Science
/ Earth Sciences
/ Ecosystems
/ Environmental Chemistry
/ Flow paths
/ Fluxes
/ Glacial till
/ Groundwater
/ Hydrology
/ Interactions
/ Land use
/ Landscape
/ landscapes
/ Life Sciences
/ monitoring
/ Nitrate removal
/ Nitrates
/ Nitrogen removal
/ Nutrient removal
/ ORIGINAL PAPERS
/ Overland flow
/ Removal
/ Restoration
/ riparian areas
/ Riparian buffers
/ Riparian environments
/ Riparian land
/ Riparian zone
/ sand
/ Sand aquifers
/ Sediment
/ Sediment texture
/ Sediments
/ subsurface flow
/ Surface runoff
/ texture
/ uncertainty
/ Watersheds
2019
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Journal Article
Groundwater nitrate removal in riparian buffer zones
2019
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Overview
This review evaluates research in the past 20 years focusing on groundwater nitrate removal in the riparian zones of agricultural watersheds. Studies have reported a large range in the magnitude of groundwater and nitrate fluxes to buffers in different hydrogeologic settings. An earlier focus on buffers with shallow subsurface flow has expanded to include sites with deep flow paths and groundwater-fed overland flow. Nitrate removal efficiency and the width required for removal have been linked to riparian sediment texture and depth to an impervious layer. Denitrification has been identified as the dominant mechanism of nitrate removal based on evidence that this process occurs at depth in many buffers which contain buried organic-rich deposits. Several studies have assessed the cumulative effect of riparian buffers on nitrate removal at the watershed scale. Despite considerable research progress areas of uncertainty still remain. Buffers with coarse-textured sediments located in landscapes with upslope sand aquifers have received most attention. In contrast, few sites have been analysed in weathered bedrock and glacial till landscapes. Many studies have reported nitrate removal efficiency based on nitrate concentrations rather than measuring groundwater fluxes which assess the magnitude of nitrate removal. More information is needed on interactions between riparian hydrological flow paths and biogeochemical processes. Further research is recommended on the effect of riparian zone nitrate removal at the watershed scale and long-term monitoring with respect to buffer restoration, the ability to sustain nitrate removal and responses to land use and climate change.
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