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  3. Bioenvironmental Systems Engineering / 生物環境系統工程學系
  4. Contamination potential of nitrogen compounds in the heterogeneous aquifers of the Choushui River alluvial fan, Taiwan
 
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Contamination potential of nitrogen compounds in the heterogeneous aquifers of the Choushui River alluvial fan, Taiwan

Journal
Journal of Contaminant Hydrology
Journal Volume
79
Journal Issue
3-4
Pages
135-155
Date Issued
2005
Author(s)
CHEN-WUING LIU  
DOI
10.1016/j.jconhyd.2005.07.001
URI
http://www.scopus.com/inward/record.url?eid=2-s2.0-26044460520&partnerID=MN8TOARS
http://scholars.lib.ntu.edu.tw/handle/123456789/316888
Abstract
This study aimed to analyze the contamination potential associated with the reactive transport of nitrate-N and ammonium-N in the Choushui River alluvial fan, Taiwan and to evaluate a risk region in developing a groundwater protection policy in 2021. In this area, an aquifer redox sequence provided a good understanding of the spatial distributions of nitrate-N and ammonium-N and of aerobic and anaerobic environments. Equiprobable hydraulic conductivity (K) fields reproduced by geostatistical methods characterized the spatial uncertainty of contaminant transport in the heterogeneous aquifer. Nitrogen contamination potential fronts for high and low threshold concentrations based on a 95% risk probability were used to assess different levels of risk. The simulated result reveals that the spatial uncertainty of highly heterogeneous K fields governs the contamination potential assessment of the nitrogen compounds along the regional flow directions. The contamination potential of nitrate-N is more uncertain than that for ammonium-N. The high nitrate-N concentrations (≧ 3 mg/L) are prevalent in the aerobic environment. The low concentration nitrate-N plumes (0.5-3 mg/L) gradually migrate to the mid-fan area and to a maximum distance of 15 km from the aerobic region. The nitrate-N plumes pose a potential human health risk in the aerobic and anaerobic environments. The ammonium-N plumes remain stably confined to the distal-fan and partial mid-fan areas. ? 2005 Elsevier B.V. All rights reserved.
Subjects
Ammonium-N; Geostatistical method; Hydraulic conductivity; Nitrate-N; Risk; Uncertainty
SDGs

[SDGs]SDG3

Other Subjects
Ammonium compounds; Aquifers; Concentration (process); Electric conductivity; Environmental protection; Groundwater; Impurities; Nitrates; Public policy; Redox reactions; Risks; Ammonium-N; Geostatistical methods; Nitrate-N; Uncertainty; Nitrogen compounds; ammonia; ground water; nitrate; nitrogen derivative; aquifer pollution; heterogeneous medium; hydraulic conductivity; nitrogen compound; pollutant transport; reactive transport; aquifer; article; concentration (parameters); environmental factor; environmental protection; geostatistical analysis; health hazard; hydraulic conductivity; plume; policy; prevalence; priority journal; probability; risk assessment; river; simulation; Taiwan; water contamination; Environmental Monitoring; Humans; Nitrates; Nitrogen Compounds; Risk Assessment; Rivers; Sensitivity and Specificity; Taiwan; Uncertainty; Water Pollutants, Chemical; Asia; Eastern Hemisphere; Eurasia; Far East; Taiwan; World
Type
journal article

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