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Sustainability of Groundwater Resources of Weathered and Fractured Schists in the Rural Areas of Galicia (Spain)

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http://hdl.handle.net/2183/30732
Atribución 4.0 Internacional
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Título
Sustainability of Groundwater Resources of Weathered and Fractured Schists in the Rural Areas of Galicia (Spain)
Autor(es)
Samper, Javier
Naves, Acacia
Pisani, Bruno
Dafonte, Jorge
Montenegro, Luis
García-Tomillo, Aitor
Data
2022
Cita bibliográfica
Samper, J., Naves, A., Pisani, B. et al. Sustainability of groundwater resources of weathered and fractured schists in the rural areas of Galicia (Spain). Environ Earth Sci 81, 141 (2022). https://doi.org/10.1007/s12665-022-10264-5
Resumo
[Abstract] Water supply deficits in droughts, groundwater pollution and climate change are the main challenges for the sustainability of groundwater resources from hard-rock aquifers in rural areas of Galicia (Spain). Here, we address the sustainability of groundwater resources of weathered and fractured schists in the rural areas of the Abegondo municipality. The conceptualization of the hydrogeology of the study area includes: (1) The weathered schist (regolith), (2) The decompressed highly fractured schist layer; and (3) An underlying slightly fractured schist. Groundwater flows mostly through the regolith and the highly fractured rock. Rainfall infiltration is the source of aquifer recharge. Groundwater discharges in seepage areas, springs and along creeks and valleys. The water table is generally shallow and shows seasonal oscillations of up to 4 m. The equivalent transmissivity of the regolith and the highly fractured schist ranges from 15 to 35 m2/days. The electrical resistivity tomography identifies a shallow water table and attests that the contact of the highly fractured schist and the slightly fractured schist is highly heterogeneous. Groundwater resources were quantified with a hydrological water balance model. The mean annual recharge is about 185 mm. Groundwater recharge at the end of the twenty-first century could decrease from 6 to 10% due to climate change. The decline in groundwater table could aggravate the shortages during droughts. Groundwater quality data show bacteriological and nitrate contamination due to the poor management of the manure in the fields and occasional discharges of slurry from pig and mink farms. Groundwater management and protection actions are proposed to prevent groundwater pollution and achieve a sustainable groundwater supply in the study area.
Palabras chave
Sustainability
Rural water supply
Groundwater resources
Schists
Climate change
Galicia
Groundwater pollution
 
Descrición
Financiado para publicación en acceso aberto: Universidade da Coruña/CISUG.
Versión do editor
https://doi.org/10.1007/s12665-022-10264-5
Dereitos
Atribución 4.0 Internacional

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