Raw water quality prognosis

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Artikelnummer
05399_2009_SP1_01
Hydrogeochemical modelling of raw water quality - a planning and forecasting tool
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Nitrate pollution of groundwater due to excessive application of fertilizers and manure in agriculture is an increasing problem in many countries and displays a major threat to drinking water supply. Ensuring future drinking water supply requires a sustainable management of water resources regarding both quantity and quality. As illustrated by the case study of the Rasseln Waterworks (Moenchengladbach, Germany) a reactive transport model has been developed. The model calculates the development of ground- and raw water quality for each of the three aquifers used for drinking water production under consideration of all relevant hydrogeochemical and geo-hydraulic processes as well as temporal changes in fertilizer and manure application on arable land. Monitored trends in raw water quality can be retraced retrospectively. For predefi ned scenarios of nitrate input long-term forecasts of raw water quality are calculated. Thus, this model is an appropriate tool to test the effi ciency of agricultural measures on raw water quality development.
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Autoren Carsten Hansen/Tina Seebode, Axel Bergmann, Roland Schindler, Wolfgang van Berk and Wolfgang Podewils
Erscheinungsdatum 30.06.2009
Format PDF
Zeitschrift gwf - Wasser|Abwasser - Special 1 2009
Verlag DIV Deutscher Industrieverlag GmbH
Sprache English
Seitenzahl 5
Titel Raw water quality prognosis
Untertitel Hydrogeochemical modelling of raw water quality - a planning and forecasting tool
Beschreibung Nitrate pollution of groundwater due to excessive application of fertilizers and manure in agriculture is an increasing problem in many countries and displays a major threat to drinking water supply. Ensuring future drinking water supply requires a sustainable management of water resources regarding both quantity and quality. As illustrated by the case study of the Rasseln Waterworks (Moenchengladbach, Germany) a reactive transport model has been developed. The model calculates the development of ground- and raw water quality for each of the three aquifers used for drinking water production under consideration of all relevant hydrogeochemical and geo-hydraulic processes as well as temporal changes in fertilizer and manure application on arable land. Monitored trends in raw water quality can be retraced retrospectively. For predefi ned scenarios of nitrate input long-term forecasts of raw water quality are calculated. Thus, this model is an appropriate tool to test the effi ciency of agricultural measures on raw water quality development.
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