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Groundwater nitrate contamination integrated modeling for climate and water resources scenarios: The case of Lake Karla over-exploited aquifer

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Autore
Sidiropoulos P., Tziatzios G., Vasiliades L., Mylopoulos N., Loukas A.
Data
2019
Language
en
DOI
10.3390/w11061201
Soggetto
Agriculture
Aquifers
Climate change
Groundwater pollution
Hydrogeology
Lakes
Nitrates
Potable water
Agricultural activities
Agricultural management practice
Agricultural practices
Groundwater nitrates
Hydrological modeling
Integrated water resources modeling
Operational strategies
Over-exploited aquifers
Groundwater resources
agricultural management
agricultural practice
aquifer
climate change
groundwater pollution
groundwater resource
hydrological cycle
hydrological modeling
integrated approach
management practice
nitrate
water resource
water storage
Greece
Karla Lake
Magnesia
Thessaly
MDPI AG
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Abstract
Groundwater quantity and quality degradation by agricultural practices is recorded as one of the most critical issues worldwide. This is explained by the fact that groundwater is an important component of the hydrological cycle, since it is a source of natural enrichment for rivers, lakes, and wetlands and constitutes the main source of potable water. The need of aquifers simulation, taking into account water resources components at watershed level, is imperative for the choice of appropriate restoration management practices. An integrated water resources modeling approach, using hydrological modeling tools, is presented for assessing the nitrate fate and transport on an over-exploited aquifer with intensive and extensive agricultural activity under various operational strategies and future climate change scenarios. The results indicate that climate change affects nitrates concentration in groundwater, which is likely to be increased due to the depletion of the groundwater table and the decrease of groundwater enrichment in the future water balance. Application of operational agricultural management practices with the construction and use of water storage infrastructure tend to compensate the groundwater resources degradation due to climate change impacts. © 2019 by the authors.
URI
http://hdl.handle.net/11615/78966
Collections
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19735]

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