Hydrochemical characterization of groundwater in wadi Sayyah, Western Saudi Arabia
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American Public Health Association (APHA) (2005) Standard methods for the examination of water and wastewater, 20th edn. APHA-AWWA-WET, Washington
Bardsen A, Bjorvatn K, Selvig KA (1996) Variability in fluoride content of subsurface water reservoirs. Acta Odontol Scand 54:343–347
Choi BY, Yun ST, Yu SY, Lee PK, Park SS, Chae GT, Mayer B (2005) Hydrochemistry of urban groundwater in Seoul, South Korea: effect of land-use and pollutant recharge. Environ Geol 48:979–990. doi: 10.1007/s00254-004-1205-y
Cobbina SJ, Nyame FK, Obiri S (2012) Groundwater in the Sahelian region of Northern Ghana, West Africa. Res J Environ Earth Sci 4(4):482–2491
Collins R, Jenkins A (1996) The impact of agricultural land use on stream chemistry in the middle hills of the Himalayas, Nepal. J Hydrol 185:71–86
Domenico PA, Schwartz FW (1998) Physical and chemical hydrogeology. Wiley, New York
Doneen LD (1964) Notes on water quality in agriculture. Published as a water science and engineering paper 4001, Dept. of Water Science and Engineering, University of California
Freeze RA, Cherry JA (1979) Groundwater. Prentice-Hall, Inc., New Jersy p 553
Hem JD (1989) Study and interpretation of the chemical characteristics of natural water, 3rd edn. United States Geological Survey Water Supply Paper 2254
Igboekwe MU, Akankpo AO, Udoinyang IE (2011) Hydrochemical evaluation of groundwater quality in Michael Okpara University of Agriculture, Umudike and its environs, Southeastern Nigeria. J Water Resour Prot 3:925–929
Karanth KR (1989) Hydrogeology. McGraw-Hill, New Delhi
Kurumbein WC, Graybill FA (1965) An introduction to statistical models in geology. McGraw-Hill, New York
Loizidou M, Kapetanios EG (1993) Effect of leachate from landfills on underground water quality. Sci Total Environ 128:69–81. doi: 10.1016/0048-9697(93)90180-E
Manavalan S, Vysetti B, Al Hussin M, Al Jemaili M, Thota, Gnaneshwar R, Ramavati M, Bonathu D, Soday R (2007) Assessment of groundwater quality in a structurally deformed granitic terrain in Hyderabad, India. Environ Monit. Assess 131:117–127. doi: 10.1007/s10661-006-9461-9
Mohan R, Singh AK, Tripathi JK, Chowdhary GC (2000) Hydrochemistry and quality assessment of ground water in Naini Industrial area, Allahabad District, Uttar Pradesh. J Geol Soc Ind 55:77–89
Moore TA, Al-Rehalie MH (1989) Geologic map of the Makkah Quadrangle, Sheet 21D. Kingdom of Saudi Arabia, Ministry of Petroleum and Mineral Resources, Directorate General of Mineral Resources. Jeddah, Saudi Arabia
Piper AM (1944) A graphical procedure in the geochemical interpretation of water. Trans Am Geophys Union 25:914–928
Ragunath HM (1987) Groundwater. Wiley Eastern, New Delhi
Rajmohan N, Elango L (2005) Nutrient chemistry of groundwater in an intensively irrigated region of southern India. J Environ Geol 47:820–830
Ramesh K, Bhuvana Jagadeewari P (2012) Hydrochemical characteristics of groundwater for domestic and irrigation purposes in Periyakulam Taluk of Theni District, Tamil Nadu. I. Res J Environ Sci 1:19–27
Ramsay CF (1986) Geologic map of the Rabigh Quadrangle, sheet 22D, Deputy Ministry for Mineral Resources, Ministry of Petroleum and Mineral Resources, Jeddah, Saudi Arabia
Richards LA (US Salinity Laboratory) (1954) Diagnosis and improvement of saline and alkaline soils. US Department of Agriculture hand book. p 60
Salah A, Al-Ruwaih F, Shehata M (1999) Hydrogeochemical processes operating within the main aquifers of Kuwait. J Arid Environ 42:195–209
Sawyer GN, McCartly DL (1967) Chemistry of sanitary engineers 2nd edn. McGraw Hill, New York, p 518
Schoeller H (1977) Geochemistry of groundwater. In Groundwater studies—An international guide for research and practice. UNESCO, Paris, Ch. 15, pp 1–18)
Şen Z (1983) Hydrology of Saudi Arabia, Symposium on Water Resources in Saudi Arabia, Riyadh, pp A68–A94
Emmannoel V. Silva-Filho, Renato G. Sobral Barcellos, Christophe Emblanch, Bernard Blavoux, Silvia Maria Sella, Michel Daniel, Roland Simler, Julio Cesar Wasserman (2009). Groundwater chemical characterization of a Rio De Janeiro aquifer, SE-Brazil. J S Am Earth Sci, 27:100–108
Subrahmani T, Elango L, Damodarswamy SR (2005) Groundwater quality and its suitability for drinking and agricultural use in Chithar river basin, Tamil Nadu, India. Environ Geol 47:1099–1110. doi: 10.1007/s00254-005-1243-0
Subrahmanyam K, Yadaiah P (2000) Assessment of the impact of industrial effluents on water quality in Patancheru and environs, Medak district, Andhra Pradesh, India. Hydrogeol J 9(3):297–312. doi: 10.1007/s100400000120
Swan ARH, Sandilands M (1995) Introduction to geological data analysis. Blackwell Science, UK, p 446
Tisdale S, Nelson W (1975) Soil fertility and fertilizer, Macmillan Publishing Co. Inc., New York, p 240
Todd DK (2001) Groundwater hydrology. Wiley, Canada, pp 280–281
Udayalaxmi G, Himabindu D, Ramadass G (2010) Geochemical evaluation of groundwater quality in selected areas of Hyderabad, AP, India. Ind J Sci Technol. vol 3, no 5
United Nations Environmental program (UNEP) (1999) Global Environmental outlook 2000, Earthscan, UK
Walton WC (1970) Groundwater resources evaluation. McGraw Hill Book Co, New York
Wenzel WW, Blum WEH (1992) Fluoride speciation and mobility in fluoride contaminated soil and minerals. J Soil Sci 153:357–364
WHO (1971) International standards for drinking water. World Health Organization, Geneva
WHO (1983) Guidelines to drinking water quality. World Health Organization, Geneva, p 186