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Author Emadi*, M.; Baghernejad, M. doi  openurl
  Title Comparison of spatial interpolation techniques for mapping soil pH and salinity in agricultural coastal areas, northern Iran Type Journal Article
  Year (down) 2014 Publication Arch. Agron. Soil Sci. Abbreviated Journal  
  Volume 60:9 Issue Pages 1315-1327  
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  Call Number CUT @ phaedon.kyriakidis @ Emadia2014 Serial 136  
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Author Rajabi, M.M.; Ataie-Ashtiani, B. doi  openurl
  Title Sampling efficiency in Monte Carlo based uncertainty propagation strategies: Application in seawater intrusion simulations Type Journal Article
  Year (down) 2014 Publication Adv. Water Resour. Abbreviated Journal  
  Volume 67 Issue Pages 46-64  
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  Notes Approved no  
  Call Number CUT @ phaedon.kyriakidis @ Rajabi2014 Serial 153  
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Author Zhou*, H.; Gómez-Hernández, J.J.; Li, L. doi  openurl
  Title Inverse methods in hydrogeology: Evolution and recent trends Type Journal Article
  Year (down) 2014 Publication Adv. Water Resour. Abbreviated Journal  
  Volume 63 Issue Pages 22-37  
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  Publisher Elsevier BV Place of Publication Editor  
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  Call Number CUT @ phaedon.kyriakidis @ Zhou2014 Serial 170  
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Author Han, D.M.; Song, X.F.; Currell, M.J.; Yang, J.L.; Xiao, G.Q. url  openurl
  Title Chemical and isotopic constraints on evolution of groundwater salinization in the coastal plain aquifer of Laizhou Bay, China Type Journal Article
  Year (down) 2014 Publication Journal of Hydrology Abbreviated Journal  
  Volume 508 Issue Pages 12-27  
  Keywords Laizhou Bay, Coastal aquifers, Groundwater hydrochemistry, Stable isotopes, Saltwater intrusion  
  Abstract Summary A hydrochemical-isotopic investigation of the Laizhou Bay Quaternary aquifer in north China provides new insights into the hydrodynamic and geochemical relationships between freshwater, seawater and brine at different depths in coastal sediments. Saltwater intrusion mainly occurs due to two cones of depression caused by concentrated exploitation of fresh groundwater in the south, and brine water for salt production in the north. Groundwater is characterized by hydrochemical zonation of water types (ranging from Ca–HCO3 to Na–Cl) from south to north, controlled by migration and mixing of saline water bodies with the regional groundwater. The strong adherence of the majority of ion/Cl ratios to mixing lines between freshwater and saline water end-members (brine or seawater) indicates the importance of mixing under natural and/or anthropogenic influences. Examination of the groundwater stable isotope δ18O and δ2H values (between −9.5‰ and −3.0‰ and −75‰ and −40‰, respectively) and chloride contents (∼2 to 1000meq/L) of the groundwater indicate that the saline end-member is brine rather than seawater, and most groundwater samples plot on mixing trajectories between fresh groundwater (δ18O of between −6.0‰ and −9.0‰; Cl<5meq/L) and sampled brines (δ18O of approximately −3.0‰ and Cl>1000meq/L). Locally elevated Na/Cl ratios likely result from ion exchange in areas of long-term freshening. The brines, with radiocarbon activities of ∼30 to 60 pMC likely formed during the Holocene as a result of the sequence of transgression-regression and evaporation; while deep, fresh groundwater with depleted stable isotopic values (δ18O=−9.7‰ and δ2H=−71‰) and low radiocarbon activity (<20 pMC) was probably recharged during a cooler period in the late Pleistocene, as is common throughout northern China. An increase in the salinity and tritium concentration in some shallow groundwater sampled in the 1990s and re-sampled here indicates that intensive brine extraction has locally resulted in rapid mixing of young, fresh groundwater and saline brine. The δ18O and δ2H values of brines (∼−3.0‰ and −35‰) are much lower than that of modern seawater, which could be explained by 1) mixing of original (δ18O enriched) brine that was more saline than presently observed, with fresh groundwater recharged by precipitation and/or 2) dilution of the palaeo-seawater with continental runoff prior to and/or during brine formation. The first mechanism is supported by relatively high Br/Cl molar ratios (1.7×10−3–2.5×10−3) in brine water compared with ∼1.5×10−3 in seawater, which could indicate that the brines originally reached halite saturation and were subsequently diluted with fresher groundwater over the long-term. Decreasing 14C activities with increasing sampling depth and increasing proximity to the coastline indicate that the south coastal aquifer in Laizhou Bay is dominated by regional lateral flow, on millennial timescales.  
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  Call Number THL @ christoph.kuells @ Han201412 Serial 174  
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Author Nisi, B.; Raco B.; Dotsika, E. url  doi
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  Title Groundwater Contamination Studies by Environmental Isotopes: A review Type Book Chapter
  Year (down) 2014 Publication Environment, Energy and Climate Change I: Environmental Chemistry of Pollutants and Wastes Abbreviated Journal  
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  Publisher Springer-Verlag Berlin Heidelberg Place of Publication Editor E. Jimenez  
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  Notes Approved no  
  Call Number THL @ christoph.kuells @ Serial 186  
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