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Author Kisi, O.; Ajri, S.; Jörgens, K.C.; Karande, A.; Kraus, S.; Naumann, B.; Nierman, K.; Seel, W.; Kulls, C. openurl 
  Title (up) Comments on “Splitting tensile strength prediction of sustainable high-performance concrete using machine learning techniques” by Wu, Yangi et al., https://doi. org/10.1007/s11356-022-22048-2 Type Journal Article
  Year 2023 Publication Environmental Science and Pollution Research Abbreviated Journal  
  Volume 30 Issue 50 Pages 109854-109855  
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  Publisher Springer Berlin Heidelberg Berlin/Heidelberg Place of Publication Editor  
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  Call Number THL @ christoph.kuells @ kisi2023comments Serial 222  
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Author Emadi*, M.; Baghernejad, M. doi  openurl
  Title (up) Comparison of spatial interpolation techniques for mapping soil pH and salinity in agricultural coastal areas, northern Iran Type Journal Article
  Year 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 Carrera*, J.; Hidalgo, J.J.; Slooten, L.J.; Vázquez-Suñé, E. doi  openurl
  Title (up) Computational and conceptual issues in the calibration of seawater intrusion models Type Journal Article
  Year 2010 Publication Hydrogeol. J. Abbreviated Journal  
  Volume 18 Issue Pages 131-145  
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  Call Number CUT @ phaedon.kyriakidis @ Carrera2010 Serial 147  
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Author Varouchakis, E.A.; Theodoridou, P.G.; Karatzas, G.P. doi  openurl
  Title (up) Decision-making tool for groundwater level spatial distribution and risk assessment using geostatistics in R Type Journal Article
  Year 2020 Publication J. Hazard. Toxic Radioact. Waste Abbreviated Journal  
  Volume 24 (1) Issue Pages 04019031  
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  Call Number CUT @ phaedon.kyriakidis @ varouchakis2020 Serial 106  
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Author Han, D.; Currell, M.J. url  doi
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  Title (up) Delineating multiple salinization processes in a coastal plain aquifer, northern China: hydrochemical and isotopic evidence Type Journal Article
  Year 2018 Publication Hydrology and Earth System Sciences Abbreviated Journal  
  Volume 22 Issue 6 Pages 3473-3491  
  Keywords Isotopes, China, multiple salinization  
  Abstract Groundwater is an important water resource for agricultural irrigation and urban and industrial utilization in the coastal regions of northern China. In the past 5 decades, coastal groundwater salinization in the Yang–Dai river plain has become increasingly serious under the influence of anthropogenic activities and climatic change. It is pivotal for the scientific management of coastal water resources to accurately understand groundwater salinization processes and their causative factors. Hydrochemical (major ion and trace element) and stable isotopic (δ18O and δ2H) analysis of different water bodies (surface water, groundwater, geothermal water and seawater) were conducted to improve understanding of groundwater salinization processes in the plain's Quaternary aquifer. Saltwater intrusion due to intensive groundwater pumping is a major process, either by vertical infiltration along riverbeds which convey saline surface water inland, and/or direct subsurface lateral inflow. Trends in salinity with depth indicate that the former may be more important than previously assumed. The proportion of seawater in groundwater is estimated to have reached up to 13 % in shallow groundwater of a local well field. End-member mixing calculations also indicate that the geothermal water with high total dissolved solids (up to 10.6 g L−1) with depleted stable isotope compositions and elevated strontium concentrations (> 10 mg L−1) also mixes locally with water in the overlying Quaternary aquifers. This is particularly evident in samples with elevated Sr ∕ Cl ratios (> 0.005 mass ratio). Deterioration of groundwater quality by salinization is also clearly exacerbated by anthropogenic pollution. Nitrate contamination via intrusion of heavily polluted marine water is evident locally (e.g., in the Zaoyuan well field); however, more widespread nitrate contamination due to other local sources such as fertilizers and/or domestic wastewater is evident on the basis of NO3 ∕ Cl ratios. This study provides an example of how multiple geochemical indicators can delineate different salinization processes and guide future water management practices in a densely populated water-stressed coastal region.  
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  Call Number THL @ christoph.kuells @ hess-22-3473-2018 Serial 81  
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