Hydrogeochemical evaluation of shallow alluvial aquifer of Wadi Marwani, western Saudi Arabia
Tài liệu tham khảo
Abdulrazzak, M.J., Sorman, A.U., Aborizaiza, O.S., 1992. Estimation of Natural Groundwater Recharge. Final Report of Project No. ARP-6-170, v. 1, Submitted to KACST, King Abdulaziz City, Saudi Arabia.
Al-Nujaidi, H.A., 1978. Hydrogeology of Wadi Marwani–Khulais. M. Sc. Thesis, Institute of Applied Geology, King Abdulaziz University, Jeddah, Kingdom of Saudi Arabia, 259p.
Al-Shaibani, 2008, Hydrogeology and hydrochemistry of a shallow alluvial aquifer, western Saudi Arabia, Hydrogeol. J., 16, 155, 10.1007/s10040-007-0220-y
Appelo, 2005
Arnade, 1999, Seasonal correlation of well contamination and septic tank distance, Ground Water, 37, 920, 10.1111/j.1745-6584.1999.tb01191.x
Bazuhair, 1996, Chloride mass-balance method for estimating ground water recharge in arid areas: examples from western Saudi Arabia, J. Hydrol., 186, 153, 10.1016/S0022-1694(96)03028-4
Bazuhair, A.S., Hussein, T.M., Ibrahim, K.E., Al-Yamani, M.S., 1992. Hydrogeophysical Studies of Khulais Basin, Western Region, Saudi Arabia. Unpublished Report No. 85/411 King Abdulaziz University, Jeddah, Saudi Arabia, 207p.
Bhatt, 1996, Hydrogeochemistry of the upper Ganges River, India, J. Geol. Soc. India, 48, 171
Domenico, 1998
Freeze, 1979
Gillion, R.J., Alley, W.M., Gurtz, M.E., 1995. Design of the National Water-Quality Assessment Program: Occurrence and Distribution of Water-Quality Conditions. US Geol. Surv. Circ. 1112, 33p.
Graniel, 1999, Effects of urbanization on groundwater resources of Merida, Yucatan, Mexico, Environ. Geol., 37, 303, 10.1007/s002540050388
Helmut, 2000, Soil and groundwater contamination and remediation technology in Europe, 3
Hem, J.D., 1989. Study and Interpretation of the Chemical Characteristics of Natural Water, third ed. US Geological Survey Water-Supply Paper 2254, Washington, United States Government Printing Office, 263p.
Italoconsult, 1967. Final Report on Water Supply Survey on J.M.T. Area. Ministry of Agriculture and Water, Riyadh, Saudi Arabia.
Italoconsult, 1976. Detailed Investigations of the Wadi Khulais Basin. Unpublished Report, Ministry of Agriculture and Water, Riyadh, Saudi Arabia.
Karanth, 1997
Lewis, W.J., Foster, S.S.D., Drasar, B., 1982. The Risk of Groundwater Pollution by On-Site Sanitation in Developing Countries. WHO-1RCWD Rep 01-82, Dubendorf, Switzerland.
Nolan, 1999, Nitrate behavior in groundwater of southeastern USA, J. Environ. Qual., 28, 1518, 10.2134/jeq1999.00472425002800050017x
Parkhurst, D.L., 1995. User’s Guide to PHREEQC – A Computer Program for Speciation, Reaction-Path, Advective-Transport, and Inverse Geochemical Calculations. US Geological Survey Water-Resources Investigations Report 95-4227, 143p.
Parkhurst, D.L., Appelo, A.A.J., 1999. User’s Guide to PHREEQC (Version 2) – A Computer Program for Speciation, Batch-Reaction, One-Dimensional Transport, and Inverse Geochemical Modeling. US Geological Survey, Water-Resources Investigations 99–4259, 312p.
American Public Health Association (APHA), 1998. Standard Methods for the Examination of Water and Wastewater, 20th ed. APHA-AWWA-WET, Washington, DC.
Ramsay, C.R., 1986. Geologic Map of the Rabigh Quadrangle, Sheet 22 D, Kingdom of Saudi Arabia, Scale 1: 250 000.
Rosen, 1999, Estimating rainfall recharge and soil water residence times in Pukekohe, New Zealand, by combining geophysical, chemical, and isotopic methods, Ground Water, 37, 836, 10.1111/j.1745-6584.1999.tb01182.x
Saxena, 2001, Dissolution of fluoride in groundwater: a water-reaction study, Environ. Geol., 40, 1084, 10.1007/s002540100290
Saxena, 2003, Inferring the chemical parameters for the dissolution of fluoride in groundwater, Environ. Geol., 43, 731, 10.1007/s00254-002-0672-2
Skiba, W.J., 1980. The form and evolution of late Precambrian plutonic masses in the Jiddah-Rabigh-Wadi al Quaha area, Saudi Arabia. In: Evolution and Mineralization of the Arabian–Nubian Shield (Al-Shanti, A.M.S. convenor) Institute of Applied Geology, King Abdulaziz University, Jeddah, Bulletin 3(3), pp. 106–120.
Skiba, W.J., Gilboy, C.F., 1975. Geology of the Rabigh-Khulays Quadrangle, 2/39, Kingdom of Saudi Arabia (Unpublished Manuscript in DGMR Technical Library), 2 volumes, 597p.
Sliva, 2001, Buffer area versus whole catchment approaches to studying land-use impact on river water quality, Water Res., 35, 3462, 10.1016/S0043-1354(01)00062-8
Smith-Carrington, A.K., Bridge, L.R., Robertson, A.S., Foster, S.D., 1983. The Nitrate Pollution Problem in Groundwater Supplies from Jurassic Limestones in Central Lincolnshire. Institute Geological Sciences Report 83-3. Natural Environmental Research Council, London, UK.
Spalding, 1993, Occurrence of nitrate in groundwater – a review, J. Environ. Qual., 22, 392, 10.2134/jeq1993.00472425002200030002x
Subba Rao, 1998, Variation of fluoride in groundwaters of crystalline terrain, J. Environ. Hydrol., 6, 1
Tijani, 1994, Hydrochemical assessment of groundwater in Moro area, Kwara State, Nigeria, Environ. Geol., 24, 194, 10.1007/BF00766889
Trauth, 1997, Nonpoint pollution of groundwater in urban areas, Water Res., 31, 2711, 10.1016/S0043-1354(97)00124-3
WHO, 1993. Guidelines for Drinking-Water Quality, vol. 1. Recommendations. WHO, Geneva.
Wilcox, L.V., 1955. Classification and Use of Irrigation Waters. US Dept. Agric. Circ., p. 969.
Wood, 1995, Chemical and isotopic method for quantifying ground-water recharge in a regional, semiarid environment, Ground Water, 33, 458, 10.1111/j.1745-6584.1995.tb00302.x