Article ID Journal Published Year Pages File Type
1056554 Journal of Environmental Management 2012 9 Pages PDF
Abstract

Identifying significant determinants of groundwater nitrate contamination is critical in order to define sensible agri-environmental indicators that support the design, enforcement, and monitoring of regulatory policies. We use data from approximately 1200 Austrian municipalities to provide a detailed statistical analysis of (1) the factors influencing groundwater nitrate contamination and (2) the predictive capacity of the Gross Nitrogen Balance, one of the most commonly used agri-environmental indicators. We find that the percentage of cropland in a given region correlates positively with nitrate concentration in groundwater. Additionally, environmental characteristics such as temperature and precipitation are important co-factors. Higher average temperatures result in lower nitrate contamination of groundwater, possibly due to increased evapotranspiration. Higher average precipitation dilutes nitrates in the soil, further reducing groundwater nitrate concentration. Finally, we assess whether the Gross Nitrogen Balance is a valid predictor of groundwater nitrate contamination. Our regression analysis reveals that the Gross Nitrogen Balance is a statistically significant predictor for nitrate contamination. We also show that its predictive power can be improved if we account for average regional precipitation. The Gross Nitrogen Balance predicts nitrate contamination in groundwater more precisely in regions with higher average precipitation.

► We provide a statistical analysis of determinants of groundwater nitrate levels. ► We assess the capacity of the Gross Nitrogen Balance to predict nitrate levels. ► High average temperature and precipitation decrease groundwater nitrate levels. ► The Gross Nitrogen Balance is a stat. significant predictor for nitrate levels. ► Its capacity can be improved if precipitation is taken into account.

Related Topics
Physical Sciences and Engineering Energy Renewable Energy, Sustainability and the Environment
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