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Water Pollution and Riverbank Filtration for Water Supply Along River Nile, Egypt

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Abstract

In a developing country such as Egypt, there are growing challenges for providing water supply of good quality. Committing to the Millennium Development Goals (MDG) by providing access to clean drinking water supply is an additional challenge. This is primarily attributed to treatment costs, especially when large quantities of water are treated. The two sources of potable water supply in Egypt are groundwater and surface water, either from the River Nile or from the main irrigation canals. In 2008, the total drinking water production in Egypt was about 7.5 billion m3/year, the contributions from the Nile and groundwater being about 60% and 40%, respectively. Nile water in Egypt is facing rising sources of pollution despite all the programs for pollution control. Discharging industrial and domestic wastewater, return drainage of irrigated water, and flash flood into the River Nile represent the major sources of pollution. There are also widespread problems of iron, manganese, nitrate, and fecal coliform bacteria in the groundwater used for drinking water supply. Riverbank filtration (RBF) is a water treatment technique that can improve surface water quality. Current and previous results of water quality produced from RBF have proven its potential to treat Nile water and to avoid quality problems associated with source water. This paper illustrates the benefits of using RBF, the ability to resolve a broad range of water quality problems in an economic manner and to provide clean and safe drinking for the residents of a desert country such as Egypt.

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References

  • Abdalla FA, Shamrukh M (2009) Riverbank filtration as a new treatment technology in Nile Valley: Case study, AbuTieg City, Assiut, Egypt. NATO Advanced Research Workshop (Riverbank Filtration for Water Security in Desert Countries), Luxor, October 24–27, 2009

    Google Scholar 

  • Abd-Allah SM, Gaber HM (2004) Monitoring of pesticide residues in different sources of drinking water in some rural areas. Alexandria J Agric Res 49:112–124

    Google Scholar 

  • Abdel-Dayem S, Abdel-Gawad S, Fahmy H (2007) Drainage in Egypt: A story of determination, continuity, and success. Irrig Drain 56:S101–S111

    Article  Google Scholar 

  • Abdel-Dayem S, Abdel-Ghani M (1992) Concentration of agricultural chemicals. Proceedings of 6th Int. Symposium on Drainage and Water Table Control, TN, USA, pp. 353–360

    Google Scholar 

  • Abdel-Lah A, Shamrukh M (2001) Impact of septic on ground water quality in a Nile Valley Village, Egypt. 6th Int. Water Technology Conference (IWTC), Alexandria, Egypt, March 2001, pp. 237–245

    Google Scholar 

  • Abdel-Lah A, Shamrukh M (2006) Riverbank filtration: A promise method for water supply from Nile, Egypt. In: Proceedings of 7th International Symposium on Water Supply Technology, Yokohama, Japan, November 2006, pp. 385–395

    Google Scholar 

  • Abdel-Lah A, Shamrukh M, Shehata A (2002) Efficiency of iron and manganese removal from groundwater using aeration tower in Nile Valley, Egypt. 3rd International Symposium on Environmental Hydrology, American Society of Civil Engineers-Egypt Section (ASCE-EGS), Cairo, Egypt, April 2002, 7pp

    Google Scholar 

  • Abdel-Satar AM (2005) Water quality assessment of River Nile from Idfo to Cairo. Egypt J Aqua Res 31(2):200–223

    Google Scholar 

  • Abdo MH (2004) Environmental studies on the River Nile at Damietta Branch region, Egypt. J Egypt Acad Soc Environ Dev 5(2):85–104

    Google Scholar 

  • Ahmed AA (2009a) Using lithologic modeling techniques for aquifer characterization and groundwater flow modeling of the Sohag area, Egypt. Hydrogeol J 17(5):1189–1201

    Article  Google Scholar 

  • Ahmed AA (2009b) Using generic and pesticide DRASTIC GIS-based models for vulnerability assessment of the Quaternary Aquifer at Sohag, Egypt. Hydrogeol J 17(5):203–1217

    Google Scholar 

  • APHA AWWA, WEF (1998) Standard methods for the examination of water and wastewater 20th edn. American Public Health Association, American Water Work Association, Water Environment Federation, Washington, DC

    Google Scholar 

  • Awad MA, Nada AA, Hamza MS, Froehlich K (1995) Chemical and isotopic investigation of groundwater in Tahta region, Sohag-Egypt. Environ Geochem and Health 17(3):147–153

    Article  Google Scholar 

  • Badawy MI, Emababy MA (2010) Distribution of polycyclic aromatic hydrocarbons in drinking water in Egypt. Desalination 251(1-3):34–40

    Article  Google Scholar 

  • Caldwell TG (2006) Presentation of data for factors significant to yield from several riverbank filtration systems in the U.S. and Europe. Stephen A. In: Hubbs S (ed) Riverbank Filtration Hydrology, Springer, pp. 299–344

    Google Scholar 

  • CAPMAS (2007) Bulletin of collection, purification and distribution of water. Central Agency for Public Moblisation And Statistics, Egypt

    Google Scholar 

  • CAPMAS (2008) Water rationalization in Egypt. Central Agency for Public Moblisation And Statistics, Egypt

    Google Scholar 

  • Cosovic D, Hrsak V, Vojvodic V, Krznaric D (1996) Transformation of organic matter and bank filtration from a polluted stream. Water Res 30(12):2921–2928

    Article  Google Scholar 

  • Dash RR, Mehrotra I, Kumar P (2006) Natural bank / bed filtration: Water supply schemes in Uttaranchal, India. World Environmental and Water Resources Congress, ASCE

    Google Scholar 

  • Dash RR, Mehrotra I, Kumar P, Grischek T (2008) Lake bank filtration at Nainital, India: Water-quality evaluation. Hydrogeol J 16:1089–1099

    Article  Google Scholar 

  • Donia N (2007) Survey of potable water quality problems in Egypt. 11th International Water Technology Conference, Sharm El-Sheikh, Egypt, pp. 1049–1058

    Google Scholar 

  • Doussan C, Poitevin G, Ledoux E, Detay M (1997) Riverbank filtration: Modeling of the changes in water chemistry with emphasis on nitrogen species. J Contam Hydrol 25:129–156

    Article  Google Scholar 

  • EEAA (1992) Environmental action plan. Egyptian Environmental Affairs Agency (EEAA), Cairo

    Google Scholar 

  • EHCW (2007) Egyptian standards for drinking and domestic uses. Egyptian Higher Committee for Water, Egyptian Governmental Press, Egypt

    Google Scholar 

  • EI-Dib MA, Ali RK (1992) Trihalomethanes and halogenated organic formation in water treatment plant. Bull Environ Contam Toxicol 49:381–387

    Article  Google Scholar 

  • El-Dib MA, Ali RK (1995) THMs formation during chlorination of raw Nile River water. Water Res 29(I):375–378

    Article  Google Scholar 

  • El-Fouly MM, Fawzi AF (1994) Higher and better yields with less environmental pollution in Egypt through balanced fertilizers use. Proceedings of the International Symposium, Fertilizers and Environment, Salamanca, Spain, pp. 19–22

    Google Scholar 

  • El-Kabbany S, Rashed MM, Zayed MA (2000) Monitoring of the pesticide levels in some water supplies and agricultural land, in El-Haram, Giza (A.R.E). J Hazard Mater A72:11–21

    Article  Google Scholar 

  • Fadlelmawla A, Abdel-Halem M, Vissers M (1999) Preliminary plans for artificial recharge with reclaimed wastewater in Egypt. 9th Biennial Symposium on the Artificial Recharge of Groundwater, Tempe, AZ, June 10–12, 1999

    Google Scholar 

  • Hiscock KM, Grischek T (2002) Attenuation of groundwater pollution by bank filtration. J Hydrol 266:139–141

    Article  Google Scholar 

  • IDSC (2009) Monthly report no 30. Information and Decision Support Center, Egypt, June 2009 (http://www.idsc.gov.eg/News/recentnews.aspx)

  • Ismail SS, Ramadan A (1995) Characterisation of Nile and drinking water quality by chemical and cluster analysis. Sci Total Environ 173/174:69–81

    Article  Google Scholar 

  • Massmann G, Sultenfuß J, Dunnbier U et al (2008) Investigation of groundwater residence times during bank filtration in Berlin: A multi-tracer approach. Hydrol Processes 22:788–801

    Article  Google Scholar 

  • MoH (2009) Results of water quality examinations. Central Water Laboratory in Cairo, Ministry of Health, Egypt

    Google Scholar 

  • Mohamed MA, Osman MA, Potter TL, Levin RE (1998) Lead and cadmium in Nile River water and finished drinking water in Greater Cairo, Egypt. Environ Int 24(7):767–772

    Article  Google Scholar 

  • Monika AM, Kedziorek A, Bourg CM (2009) Electron trapping capacity of dissolved oxygen and nitrate to evaluate Mn and Fe reductive dissolution in alluvial aquifers during riverbank filtration. J Hydrol 365:74–78

    Article  Google Scholar 

  • MSEA (2005) The annual report on the quality of water of the Nile River. Ministry of State for Environmental Affairs, Egypt

    Google Scholar 

  • MWRI (2002) Survey of Nile system pollution sources. APRP-Water Policy Activity, Ministry of Water Resources and Irrigation (MWRI), EPIQ Report No. 64

    Google Scholar 

  • MWRI (2003) Nile River water quality management study. WPRP-Water Policy Reform Program, Ministry of Water Resources and Irrigation (MWRI), IRG Report No. 67

    Google Scholar 

  • NAWQAM (1998) Present status of water quality in Egypt. National Water Quality and Availability Management Project (NAWQAM), National Water Research Centre, Canadian Executive Agency, Assessment Interim Report

    Google Scholar 

  • NAWQAM (2003) Nile Research Institute data. National Water Quality and Availability Management Project (NAWQAM), National Water Research Centre. Egypt

    Google Scholar 

  • NBI (2005) Nile Basin water quality monitoring baseline report. Transboundary Environmental Action Project, Nile Basin Initiative

    Google Scholar 

  • Ray C, Melin G, Linsky RB (2002) Riverbank filtration: Improving source water quality. Kluwer, The Netherlands

    Google Scholar 

  • Ray C (2001) Riverbank filtration: An analysis of parameters for optimal performance. AWWA annual conference, CD Proceedings

    Google Scholar 

  • Schmidt CK, Lange FT, Brauch HJ, Kühn W (2003a) Experiences with riverbank filtration and infiltration in Germany, DVGW-Water Technology Center, TZW, Germany

    Google Scholar 

  • Schmidt CK, Lange FT, Sacher F et al (2003b) Assessing the fate of organic micropollutants during riverbank filtration utilizing field studies and laboratory test systems. Geophys Res Abstr 5:08595

    Google Scholar 

  • Shamrukh M (1999) Effect of chemical fertilizers on groundwater quality in Upper Egypt. PhD thesis, Department of Civil Engineering, Minia University, Egypt

    Google Scholar 

  • Shamrukh M (2010) Seasonal and long-term changes in nitrate content of water supply wells in Upper Egypt. The 1st IWA Malaysia Young Water Professionals Conference (IWAYWP2010), Kuala Lumpur, Malaysia, 2–4 March 2010

    Google Scholar 

  • Shamrukh M, Abdel-Lah A (2004) Monitoring of agricultural nutrients in water supply wells, Upper Egypt. J Eng Appl Sci Cairo Univ 51(6):1135–1150

    Google Scholar 

  • Shamrukh M, Abdel-Wahab A (2008) Riverbank filtration for sustainable water supply: Application to a large-scale facility on the Nile River. Clean Technol Environ Policy 10(4):351–358

    Article  Google Scholar 

  • Smith E (2009) Faculty Profile. AUC Bulletin, American University in Cairo, December 2009

    Google Scholar 

  • Shepherd RG (1989) Correlations of permeability and grain size. Groundwater 27(5):633–638

    Google Scholar 

  • Soltan ME (1998) Characterization, classification, and evaluation of some ground water samples in Upper Egypt. Chemosphere 37(4):735–745

    Article  Google Scholar 

  • Sontheimer H (1980) Experiences with riverbank filtration along the Rhine River. J Am Water Works Assoc 72:386–390

    Google Scholar 

  • Stuyfzand PJ (1998) Fate of pollutants during artificial recharge and bank filtration in the Netherlands. Artificial Recharge of Groundwater (J.H. Peters, editor), Water Research Association, Medmenham, England, pp 119–125

    Google Scholar 

  • Tufenkji N, Ryan JN, Elimelech M (2002) The promise of bank filtration. Environ Sci Technol 36(21):422A–428A

    Article  Google Scholar 

  • UNDP (2005) Egypt Human Development report, choosing our future: Towards a new social contract. United Nations Development Programme

    Google Scholar 

  • UNDP (2008) Egypt Human Development report, Egypts social contract: The role of civil society. United Nations Development Programme

    Google Scholar 

  • UNICEF (2005) Water for life: Making it happen. WHO/UNICEF Joint Monitoring Programme for Water Supply and Sanitation, United Nations Childrens Fund, New York

    Google Scholar 

  • Wahab RA, Badawy MI (2004) Water quality assessment of the River Nile system: An overview. Biomed Environ Sci 17:87–100

    Google Scholar 

  • Weiss WJ, Bouwer EJ, Aboytes R et al (2005) Riverbank filtration for control of microorganisms: Results from field monitoring. Water Res 39(10):1990–2001

    Article  Google Scholar 

  • Weiss WJ, Bouwer EJ, Ball WP et al (2003) Study of water quality improvements during riverbank filtration at three Midwestern United States drinking water utilities. Geophys Res Abstr 5:04297

    Google Scholar 

  • Wett B, Jarosch H, Ingerle K (2002) Flood induced infiltration affecting a bank filtrate well at the River Enns, Austria. J Hydrol 266(3–4):222–234

    Article  Google Scholar 

  • WHO (1996) Guidelines for Drinking Water Quality, 2nd edition, World Health Organization, Geneva

    Google Scholar 

  • World Bank (2005) Arab Republic of Egypt: Country environmental analysis 1992–2002. The World Bank, Washington DC

    Google Scholar 

  • Zaghloul ZM Abdallah AM (1985) Underground water pollution in the Nile Delta area. Egypt J Geol 29(1–2):1–10

    Google Scholar 

  • Zakaria AM, El-Sharouny HM, Ali WS (2007) Microcystin concentrations in the Nile River sediments and removal of microcystin-LR by sediments during batch experiments. Arch Environ Contam Toxicol 2(4):489–495

    Google Scholar 

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Acknowledgments

Authors are grateful to the Assiut Company for Water and Wastewater and to new Naga-Hamadi Barrage for technical support during this research work. We are greatly indebted to the two reviewers who provided helpful comments on earlier drafts of this paper.

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Correspondence to Mohamed Shamrukh .

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Shamrukh, M., Abdel-Wahab, A. (2011). Water Pollution and Riverbank Filtration for Water Supply Along River Nile, Egypt. In: Shamrukh, M. (eds) Riverbank Filtration for Water Security in Desert Countries. NATO Science for Peace and Security Series C: Environmental Security. Springer, Dordrecht. https://doi.org/10.1007/978-94-007-0026-0_2

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