Water quality dynamics and hydrology in nitrate loaded riparian zones in the Netherlands

Riparian zones are known to function as buffers, reducing non-point source pollution from agricultural land to streams. In the Netherlands, riparian zones are subject to high nitrogen inputs. We combined hydrological, chemical and soil profile data with groundwater modelling to evaluate whether chro...

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Published inEnvironmental pollution (1987) Vol. 139; no. 1; pp. 143 - 156
Main Authors Hefting, Mariet, Beltman, Boudewijn, Karssenberg, Derek, Rebel, Karin, van Riessen, Mirjam, Spijker, Maarten
Format Journal Article
LanguageEnglish
Published Oxford Elsevier Ltd 2006
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Abstract Riparian zones are known to function as buffers, reducing non-point source pollution from agricultural land to streams. In the Netherlands, riparian zones are subject to high nitrogen inputs. We combined hydrological, chemical and soil profile data with groundwater modelling to evaluate whether chronically N loaded riparian zones were still mitigating diffuse nitrate fluxes. Hydraulic parameters and water quality were monitored over 2 years in 50 piezometres in a forested and grassland riparian zone. Average nitrate loadings were high in the forested zone with 87 g NO 3 −-N m −2 y −1 and significantly lower in the grassland zone with 15 g NO 3 −-N m −2 y −1. Groundwater from a second aquifer diluted the nitrate loaded agricultural runoff. Biological N removal however occurred in both riparian zones, the grassland zone removed about 63% of the incoming nitrate load, whereas in the forested zone clear symptoms of saturation were visible and only 38% of the nitrate load was removed. Riparian zones reduced nitrate from agricultural lands.
AbstractList Riparian zones are known to function as buffers, reducing non-point source pollution from agricultural land to streams. In the Netherlands, riparian zones are subject to high nitrogen inputs. We combined hydrological, chemical and soil profile data with groundwater modelling to evaluate whether chronically N loaded riparian zones were still mitigating diffuse nitrate fluxes. Hydraulic parameters and water quality were monitored over 2 years in 50 piezometres in a forested and grassland riparian zone. Average nitrate loadings were high in the forested zone with 87 g NO(3)(-)-N m(-2) y(-1) and significantly lower in the grassland zone with 15 g NO(3)(-)-N m(-2) y(-1). Groundwater from a second aquifer diluted the nitrate loaded agricultural runoff. Biological N removal however occurred in both riparian zones, the grassland zone removed about 63% of the incoming nitrate load, whereas in the forested zone clear symptoms of saturation were visible and only 38% of the nitrate load was removed.Riparian zones are known to function as buffers, reducing non-point source pollution from agricultural land to streams. In the Netherlands, riparian zones are subject to high nitrogen inputs. We combined hydrological, chemical and soil profile data with groundwater modelling to evaluate whether chronically N loaded riparian zones were still mitigating diffuse nitrate fluxes. Hydraulic parameters and water quality were monitored over 2 years in 50 piezometres in a forested and grassland riparian zone. Average nitrate loadings were high in the forested zone with 87 g NO(3)(-)-N m(-2) y(-1) and significantly lower in the grassland zone with 15 g NO(3)(-)-N m(-2) y(-1). Groundwater from a second aquifer diluted the nitrate loaded agricultural runoff. Biological N removal however occurred in both riparian zones, the grassland zone removed about 63% of the incoming nitrate load, whereas in the forested zone clear symptoms of saturation were visible and only 38% of the nitrate load was removed.
Riparian zones are known to function as buffers, reducing non-point source pollution from agricultural land to streams. In the Netherlands, riparian zones are subject to high nitrogen inputs. We combined hydrological, chemical and soil profile data with groundwater modelling to evaluate whether chronically N loaded riparian zones were still mitigating diffuse nitrate fluxes. Hydraulic parameters and water quality were monitored over 2 years in 50 piezometres in a forested and grassland riparian zone. Average nitrate loadings were high in the forested zone with 87 g NO(3)(-)-N m(-2) y(-1) and significantly lower in the grassland zone with 15 g NO(3)(-)-N m(-2) y(-1). Groundwater from a second aquifer diluted the nitrate loaded agricultural runoff. Biological N removal however occurred in both riparian zones, the grassland zone removed about 63% of the incoming nitrate load, whereas in the forested zone clear symptoms of saturation were visible and only 38% of the nitrate load was removed.
Riparian zones are known to function as buffers, reducing non-point source pollution from agricultural land to streams. In the Netherlands, riparian zones are subject to high nitrogen inputs. We combined hydrological, chemical and soil profile data with groundwater modelling to evaluate whether chronically N loaded riparian zones were still mitigating diffuse nitrate fluxes. Hydraulic parameters and water quality were monitored over 2 years in 50 piezometres in a forested and grassland riparian zone. Average nitrate loadings were high in the forested zone with 87 g NO sub(3) super(-)-N m super(-2) y super(-1) and significantly lower in the grassland zone with 15 g NO sub(3) super(-)-N m super(-2) y super(-1). Groundwater from a second aquifer diluted the nitrate loaded agricultural runoff. Biological N removal however occurred in both riparian zones, the grassland zone removed about 63% of the incoming nitrate load, whereas in the forested zone clear symptoms of saturation were visible and only 38% of the nitrate load was removed. Riparian zones reduced nitrate from agricultural lands.
Riparian zones are known to function as buffers, reducing non-point source pollution from agricultural land to streams. In the Netherlands, riparian zones are subject to high nitrogen inputs. We combined hydrological, chemical and soil profile data with groundwater modelling to evaluate whether chronically N loaded riparian zones were still mitigating diffuse nitrate fluxes. Hydraulic parameters and water quality were monitored over 2 years in 50 piezometres in a forested and grassland riparian zone. Average nitrate loadings were high in the forested zone with 87 g NO 3 −-N m −2 y −1 and significantly lower in the grassland zone with 15 g NO 3 −-N m −2 y −1. Groundwater from a second aquifer diluted the nitrate loaded agricultural runoff. Biological N removal however occurred in both riparian zones, the grassland zone removed about 63% of the incoming nitrate load, whereas in the forested zone clear symptoms of saturation were visible and only 38% of the nitrate load was removed. Riparian zones reduced nitrate from agricultural lands.
Author Spijker, Maarten
Beltman, Boudewijn
van Riessen, Mirjam
Karssenberg, Derek
Hefting, Mariet
Rebel, Karin
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  surname: Hefting
  fullname: Hefting, Mariet
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  surname: Karssenberg
  fullname: Karssenberg, Derek
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  givenname: Karin
  surname: Rebel
  fullname: Rebel, Karin
  organization: Department of Geobiology, Faculty of Biology, Utrecht University, PO Box 80084, 3508 TB Utrecht, The Netherlands
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  givenname: Mirjam
  surname: van Riessen
  fullname: van Riessen, Mirjam
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  givenname: Maarten
  surname: Spijker
  fullname: Spijker, Maarten
  organization: The Netherlands Centre for Geo-ecological Research (ICG), Faculty of Geographical Sciences, Utrecht University, PO Box 80115, 3508 TC Utrecht, The Netherlands
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Issue 1
Keywords Nitrate removal
Dilution
Groundwater
N-saturation
Riparian wetlands
Grassland
Forests
Pollution control
Pollution prevention
Nitrates
Agricultural soil
Runoff water
Nitrogen
Hydrology
Hydrochemistry
Selfpurification
Riparian
Surface water
Water quality
Stream
Water pollution
Performance
Wetland
Ground water
Language English
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Snippet Riparian zones are known to function as buffers, reducing non-point source pollution from agricultural land to streams. In the Netherlands, riparian zones are...
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StartPage 143
SubjectTerms agricultural runoff
Agronomy. Soil science and plant productions
analysis
Applied sciences
biodegradation
Biological and medical sciences
Biological and physicochemical phenomena
chemistry
denitrification
Dilution
Earth sciences
Earth, ocean, space
Ecosystem
Engineering and environment geology. Geothermics
Environmental Monitoring
Environmental Monitoring - methods
Exact sciences and technology
Fundamental and applied biological sciences. Psychology
Geological Phenomena
Geology
grasslands
Groundwater
groundwater contamination
methods
N-saturation
Natural water pollution
Netherlands
nitrate nitrogen
Nitrate removal
Nitrates
Nitrates - analysis
Nitrogen
Nitrogen - analysis
Osmolar Concentration
Poaceae
Pollution
pollution load
Pollution, environment geology
Rain
riparian areas
riparian forests
Riparian wetlands
Rivers
Rivers - chemistry
Soil and water pollution
Soil Pollutants
Soil Pollutants - analysis
Soil science
Trees
water flow
Water Movements
Water Pollutants, Chemical
Water Pollutants, Chemical - analysis
water quality
Water treatment and pollution
wetlands
Title Water quality dynamics and hydrology in nitrate loaded riparian zones in the Netherlands
URI https://dx.doi.org/10.1016/j.envpol.2005.04.023
https://www.ncbi.nlm.nih.gov/pubmed/15996804
https://www.proquest.com/docview/19847889
https://www.proquest.com/docview/46802599
https://www.proquest.com/docview/70182964
Volume 139
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