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Author Ghabayen, S.; McKee, M.; Kemblowski, M.
Title (up) Ionic and Isotopic Ratios for Identification of Salinity Sources and Missing Data in the Gaza Aquifer Type Journal Article
Year 2006 Publication Journal of Hydrology Abbreviated Journal
Volume 318 Issue Pages 360-373
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Call Number THL @ christoph.kuells @ article Serial 87
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Author Christofi, C.; Bruggeman, A.; Kuells, C.; Constantinou, C.
Title (up) Isotope hydrology and hydrogeochemical modeling of Troodos Fractured Aquifer, Cyprus: The development of hydrogeological descriptions of observed water types Type Journal Article
Year 2020 Publication Applied Geochemistry Abbreviated Journal
Volume 123 Issue Pages 104780
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Publisher Pergamon Place of Publication Editor
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Call Number THL @ christoph.kuells @ christofi2020isotope Serial 206
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Author Gaye, C.B.
Title (up) Isotope techniques for monitoring groundwater salinization Type Journal Article
Year 2001 Publication Hydrogeology Journal Abbreviated Journal
Volume 9 Issue Pages 217-218
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Call Number THL @ christoph.kuells @ article Serial 83
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Author Rina, K.; Datta, P.S.; Singh, C.K.; Mukherjee, S.
Title (up) Isotopes and ion chemistry to identify salinization of coastal aquifers of Sabarmati River Basin Type Journal Article
Year 2013 Publication Abbreviated Journal Current Science
Volume 104 Issue 3 Pages 335-344
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Abstract The lower reaches of the Sabarmati River Basin in Gujarat have intense agricultural and industrial activities and this part is affected by problems of groundwater salinity. Here we attempt to assess the processes governing the causes of groundwater salinity in the coastal alluvial aquifer, employing δ18O and δD isotopes in integration with ionic ratio. The different hydrochemical facies such Na–Mg–HCO3–Cl, Na–Cl–SO4, Na–Mg–Cl–HCO3–SO4 and Na–Cl of groundwater show the occurrence of complex geochemical phenomenon in the study area. Ionic ratio (such as Mg2+/Ca2+, Na+/Cl−, SO24/Cl-, K+/Cl−) and isotopic composition (δ18O and δD) of groundwater indicate that while in coastal areas seawater intrusion is taking place, in inland areas various anthropogenic activities and overexploitation have induced salinity in groundwater. Over-pumping of groundwater has also induced lateral intermixing of highly saline water in the vicinity of coastal areas with relatively fresh/low saline groundwater along specific flow pathways.
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Publisher Current Science Association Place of Publication Editor
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Call Number THL @ christoph.kuells @ Serial 190
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Author Bahir, M.; Ouhamdouch, S.; Carreira, P.M.
Title (up) Isotopic and geochemical methods for studying water–rock interaction and recharge mode: application to the Cenomanian–Turonian and Plio-Quaternary aquifers of Essaouira Basin, Morocco Type Journal Article
Year 2018 Publication Mar. Freshwater Res. Abbreviated Journal
Volume 69 Issue 8 Pages 1290-1300
Keywords geochemistry, semi-arid area, stable isotopes, water resources.
Abstract Study of the Cenomanian–Turonian and Plio–Quaternary aquifers of Essaouira basin (Western Morocco), based on the interpretation of geochemical (major elements) and isotopic (18O, 2H, 13C and 14C) data, has aided the understanding of the hydrodynamics of these aquifers, which is greatly affected by tectonics. Hydrochemical characteristics based on the bivariate diagrams of major ions (Cl–, SO42–, NO3–, HCO3–, Na+, Mg2+, K+ and Ca2+) and electrical conductivity and mineral saturation indices indicate that the origins of groundwater mineralisation are the result of: (1) evaporite dissolution; (2) cation exchange reactions; (3) and evaporation processes. Radiogenic isotopes (3H and 14C) have highlighted the presence of significant recent recharge in the eastern part of the basin, with groundwater moving according to the general flow path (south-east to north-west). Stable isotope data from the Essaouira basin plot along the Global Meteoric Water Line and below the Local Meteoric Water Line. This suggests that groundwater has been recharged under several different climate regimes.
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Call Number THL @ christoph.kuells @ Serial 191
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