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Karami*, S., Madani, H., Katibeh, H., & Marj, A. F. (2018). Assessment and modeling of the groundwater hydrogeochemical quality parameters via geostatistical approaches. Appl. Water Sci., 8:23.
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Ranjbar*, A., & Ehteshami, M. (2019). Spatio‑temporal mapping of salinity in the heterogeneous coastal aquifer. Appl. Water Sci., 9, 32.
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de Montety, V., Radakovitch, O., Vallet-Coulomb, C., Blavoux, B., Hermitte, D., & Valles, V. (2008). Origin of groundwater salinity and hydrogeochemical processes in a confined coastal aquifer: case of the Rhône delta (Southern France). Applied Geochemistry, 23(8), 2337–2349.
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Zhao, Q., Su, X., Kang, B., Zhang, Y., Wu, X., & Liu, M. (2017). A hydrogeochemistry and multi-isotope (Sr, O, H, and C) study of groundwater salinity origin and hydrogeochemcial processes in the shallow confined aquifer of northern Yangtze River downstream coastal plain, China. Applied Geochemistry, 86, 49–58.
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Khaska, M., Salle], C. [L. G. L., Lancelot, J., team, A. S. T. E. R., Mohamad, A., Verdoux, P., et al. (2013). Origin of groundwater salinity (current seawater vs. saline deep water) in a coastal karst aquifer based on Sr and Cl isotopes. Case study of the La Clape massif (southern France). Applied Geochemistry, 37, 212–227.
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