HUSSEIN, Hend Ahmed Ibrahim, Adam ŘÍČKA, Tomáš KUCHOVSKÝ a Maged Mostafa EL OSTA. Groundwater hydrochemistry and origin in the south-eastern part of Wadi El Natrun, Egypt. Arabian Journal of Geosciences. HEIDELBERG, GERMANY: SPRINGER HEIDELBERG, 2017, roč. 10, č. 7, s. nestránkováno, 14 s. ISSN 1866-7511. Dostupné z: https://dx.doi.org/10.1007/s12517-017-2960-x. |
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@article{1377682, author = {Hussein, Hend Ahmed Ibrahim and Říčka, Adam and Kuchovský, Tomáš and El Osta, Maged Mostafa}, article_location = {HEIDELBERG, GERMANY}, article_number = {7}, doi = {http://dx.doi.org/10.1007/s12517-017-2960-x}, keywords = {Hydrogeochemistry; Groundwater origin;. Groundwater protection; Wadi el-Natrun;.Egypt}, language = {eng}, issn = {1866-7511}, journal = {Arabian Journal of Geosciences}, title = {Groundwater hydrochemistry and origin in the south-eastern part of Wadi El Natrun, Egypt}, url = {http://link.springer.com/article/10.1007%2Fs12517-017-2960-x}, volume = {10}, year = {2017} }
TY - JOUR ID - 1377682 AU - Hussein, Hend Ahmed Ibrahim - Říčka, Adam - Kuchovský, Tomáš - El Osta, Maged Mostafa PY - 2017 TI - Groundwater hydrochemistry and origin in the south-eastern part of Wadi El Natrun, Egypt JF - Arabian Journal of Geosciences VL - 10 IS - 7 SP - nestránkováno EP - nestránkováno PB - SPRINGER HEIDELBERG SN - 18667511 KW - Hydrogeochemistry KW - Groundwater origin;. Groundwater protection KW - Wadi el-Natrun;.Egypt UR - http://link.springer.com/article/10.1007%2Fs12517-017-2960-x L2 - http://link.springer.com/article/10.1007%2Fs12517-017-2960-x N2 - The demand for water is rapidly increasing in Egypt, because of high population and agriculture production growth rate, which makes research of water resources necessary. The regional multi aquifer system of the Miocene Pleistocene age is discharged in Wadi El-Natrun area. Intensive aquifer overexploitation and agricultural development in the area is related to groundwater quality deterioration. Hydrochemical and hydrogeological data was evaluated to determine the groundwater origin and quality in the south-eastern part of wadi, which appears to be more significant for water supply owing to lower groundwater salinity. The dominance of the high mineralised Cl groundwater type was found, however, also less mineralised SO4 and HCO3 types were identified there. Based on the ion relations, halite and gypsum dissolution and ion exchange are the most important hydrochemical processes forming the groundwater chemical composition. The Cl dominated groundwater matches the discharge part of the regional hydrogeological system. Contrary the presence of HCO3 and SO4 hydrochemical types corresponds to the infiltration and transferring parts of the hydrogeological system indicating the presence of zones conducting low mineralised groundwater. The discharge area of the over-pumped aquifer in Wadi El Natrun lies 23 m beneath the sea level with the shoreline being at the distance of 100 km, thus there is a real risk of seawater intrusion. Using the hydrochemical facies evolution diagram, four samples in the centre of the discharge area indicate advanced seawater intrusion. The zones of the highest demand for groundwater quality protection were indicated based on a spatial pattern of hydrogeochemical composition. ER -
HUSSEIN, Hend Ahmed Ibrahim, Adam ŘÍČKA, Tomáš KUCHOVSKÝ a Maged Mostafa EL OSTA. Groundwater hydrochemistry and origin in the south-eastern part of Wadi El Natrun, Egypt. \textit{Arabian Journal of Geosciences}. HEIDELBERG, GERMANY: SPRINGER HEIDELBERG, 2017, roč.~10, č.~7, s.~nestránkováno, 14 s. ISSN~1866-7511. Dostupné z: https://dx.doi.org/10.1007/s12517-017-2960-x.
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