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Water scarcity in the Kingdom of Saudi Arabia

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Abstract

Saudi Arabia (SA) is one of the world’s arid, most water-scarce nations without permanent water resources. The purpose of this article is to provide a comprehensive overview of Saudi Arabia’s water resources availability and reliability in terms of water supply, demand, and the major challenges that water faces. Saudi has an annual water supply of roughly 89.5 m3 per person as consumption is rising in parallel with the country’s rapid population growth and development. SA produces the most desalinated seawater in the world, accounting for 22% of worldwide consumption. Due to changes in agricultural demand, Saudi Arabia’s overall water needs in 2020 were 15.98 BCM. Apart from agricultural use, the food industry utilizes up to 80% of freshwater supplies, with only around 20% of rain recharging the aquifer, meaning that the region will still be water-stressed by 2025. In addition to wastewater reuse, water expenses should be split between private investors and the government, and water losses in cities should be collected and recycled. Water development projects must also be safeguarded and have long-term viability for the community’s future and well-being. Despite previous conservation efforts (public awareness campaigns, television and other public media messages, drip irrigation, and so on), more work is required, including improving water resource infrastructure, implementing environmental use of friendly technologies, and increasing economic feasibility, social acceptability, and management in light of the Sustainable Development Goals (SDG).

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References

  • Abderrahman WA (2000b) Water demand management and Islamic principles: a case study. Water Resour Dev 16(4):465–473

    Article  Google Scholar 

  • Abderrahman, W.A., 2000a. Water demand management in Saudi Arabia. In: Farukui, N.I., Biswas, A.K., Bino, M.J. (Eds.), Water Management in Islam. The International Development Research Centre (IDRC), pp. 68–78.

  • Alcamo, J., Döll, P., Kaspar, F., Siebert, S. Global change and global scenarios of water use and availability: an application of WaterGAP 1.0; University of Kassel: Kassel, Germany, 1997.

  • Al-Farra, T. Water security in the Gulf region. Gulf cooperation council’s challenges and prospects. Proceedings of the 11th Kovacs Colloquium, Paris, France, 2015; 101pages. IAHS Publisher.

  • Ali Mahmoud MS, Abdallh SM (2013) Water-demand management in the Kingdom of Saudi Arabia for enhancement environment. Comp Eng Intel Syst 4:26–49

    Google Scholar 

  • Al-Ibrahim AA (1990) Water use in Saudi Arabia: problems and policy implications. J Water Resour Plan Manag 116(3):375–388

    Article  Google Scholar 

  • Alkhudhiri A, Darwish NB, Hilal N (2019) Analytical and forecasting study for wastewater treatment and water resources in Saudi Arabia. J Water Proc Eng 32(100915):2021. https://doi.org/10.1016/j.jwpe.2019.100915

    Article  Google Scholar 

  • Alkolibi FM (2002) Possible effects of global warming on agriculture and water resources in Saudi Arabia: impacts and responses. Clim Change 54:225–245

    Article  Google Scholar 

  • Almazroui M, Abid MA, Athar H, Islam MN, Ehsan MA (2013) Inter-annual variability of rainfall over the Arabian Peninsula using the IPCC AR4 Global Climate Models. Int J Climatol 33(10):2328–2340

    Article  Google Scholar 

  • Alobireed, A. Global Water Desalination: a comparison between Saudi Arabia and the United States of America. 2021; 38 pages. Master dissertation, University of Pittsburgh, Pennsylvania, United States. http://d-scholarship.pitt.edu/id/eprint/40982. Accessed at 6 March, 2021.

  • Alrwis KN, Ghanem AM, Alnashwan OS, Al Duwais AM, Alaagib SB, Aldawdahi NM (2021) Measuring the impact of water scarcity on agricultural economic development in Saudi Arabia. Saudi J Biol Sci 28(1):191–195

    Article  Google Scholar 

  • Al-Suhaimy U. Saudi Arabia: the desalination nation. Asharq Al-Awsat. July 2, 2013. Available at: http://www.aawsat.net/2013/07/article.

  • Al-Zahrani KH, Baig MB, Straquadine GS. Food waste in the Kingdom of Saudi Arabia: implications for extension education, in food security and natural resource management, Climate Change, Springer, Cham, (2019); 73–101.

  • AQUASTAT. Saudi Arabia. Food and Agriculture Organization of the United Nations web site. Available at: http://www.fao.org/nr/water/aquastat/countries_regions/sau/index.stm. Accessed August 17, 2015.

  • Assaf, H. Water resources and climate change, in water sustainable management of a scarce resource, Arab Forum for Environment and Development, Beirut, Lebanon, (2010); 25–38.

  • Ayres, R.M., Mara, D.D., 1996. Analysis of wastewater for use in agriculture: a laboratory manual of parasitological and bacteriological techniques. World Health Organization (WHO), Geneva, Switzerland.

  • Chang, A.C., Pan, G., Page, A.L., Asano, T., 2002. Developing human health-related chemical guidelines for reclaimed water and sewage sludge applications in agriculture. Prepared for World Health, Organization, 2002.

  • Chowdhury S, Al-Zahrani M (2015a) Characterizing water resources and trends of sector wise water consumptions in Saudi Arabia. J King Saud Univ Eng Sci 27(1):68–82

    Google Scholar 

  • Chowdhury, S., Al-Zahrani, M., 2012. Implications of climate change on water resources in Saudi Arabia. The Arabian J. Science and Engineering (AJSE), in press. https://doi.org/10.1007/s13369-013-0565-6.

  • Chowdhury, S., Champagne, P., 2006. Use of treated wastewater: evaluation of wastewater minimization strategies using fuzzy technique. In: Proceedings of the Conference on Advanced Technology in the Environmental Field (ATEF), February 6–8, 2006. Spain.

  • CIA, 2011. CIA Fact Book: Available at: <https://www.cia.gov/library/publications/the-world-factbook/> (accessed 20.09.11).

  • Damkjaer S, Taylor R (2017) The measurement of water scarcity: defining a meaningful indicator. Ambio 46(5):513–531

    Article  Google Scholar 

  • Davis J (2005) Private-sector participation in the water and sanitation sector. Annu Rev Environ Resour 30:145–183

    Article  Google Scholar 

  • DeNicola E, Aburizaiza OS, Siddique A, Khwaja H, Carpenter DO (2015a) Climate change and water scarcity: the case of Saudi Arabia. Ann Glob Health 81(3):342–353

    Article  Google Scholar 

  • Dosi C, Easter KW (2002) Water scarcity: institutional change, water markets, and privatization in economic studies on food, agriculture, and the environment. Springer, Boston, MA, pp 91–115

    Google Scholar 

  • Drewes JE, Patricio RC, Amy GL (2012a) Water reuse in the Kingdom of Saudi Arabia–status, prospects and research needs. Water Sci Technol: Water Supply 12(6):926–936

    Google Scholar 

  • Elhadj, E., 2004. Household water and sanitation services in Saudi Arabia: an analysis of economic, political and ecological issues. SOAS Water Research Group, Occasional Paper 56.

  • Evenett SJ (2019) Protectionism, state discrimination, and international business since the onset of the global financial crisis. J Int Bus Policy 2(1):9–36

    Article  Google Scholar 

  • Falkenmark M, Lundqvist J, Widstrand C (1989) Macro-scale water scarcity requires micro-scale approaches-aspects of vulnerability in semi-arid development. Nat Res Forum 13:258–267

    Article  CAS  Google Scholar 

  • FAO (Food and Agriculture Organization of the United Nations), 2003. Review of World Water Resources by Country, 2003. Water Report No. 23; FAO: Rome, Italy.

  • FAO (Food and Agriculture Organization), 1998. Proceedings of the Second Expert Consultation on National Water Policy Reform in the Near East, Cairo, Egypt, 24–25 November 1997.

  • FAO (Food and Agriculture Organization), 2009. Irrigation in the Middle East region in figures. Food and Agriculture Organization of the United Nations. FAO Water Reports 34, Rome.

  • Frenken K (2009) Irrigation in the Middle East region in figures AQUASTAT Survey-2008. Water Rep 34:355–375 (http://www.fao.org/3/a-i0936e.pdf)

    Google Scholar 

  • GAS, General Authority of Statistics, 2019. Statistical indicators for sustainable development goals, Statistical report on the current status 2019. https://www.stats.gov.sa/sites/default/files/Pdf. Accessed at 24 October, 2021

  • GAS, General Authority of Statistics, 2020. Quantity of water used and produced from non-conventional sources in Saudi Arabia in 2010–2018. https://www.stats.gov.sa/sites/default/files/quantity_of_water_used_and_produced_from_non_-_conventional_sources_in_saudi_arabia_in_2010_-_2018_0. pdf. Accessed at 24 December, 2021

  • Ghanim AA (2019) Water resources crisis in Saudi Arabia, challenges and possible management options: an analytic review. Int J Environ Ecol Eng 13(2):51–56

    Google Scholar 

  • Gleick PH (2000) A look at twenty-first century water resources development. Water Int 25(1):127–138

    Article  Google Scholar 

  • GOSA, Government of Saudi Arabia, 2016. Vision 2030. http//www.vision2030.gov.sa/en. Accessed at 25 December, 2021.

  • Haider H, Sadiq R, Tesfamariam S (2014) Performance indicators for small-and medium-sized water supply systems: a review. Environ Rev 22(1):1–40

    Article  Google Scholar 

  • Halverson, N. What California can learn from Saudi Arabia’s water mystery. Reveal News. April 22, 2015.

  • Heal the Bay. (2023). Ocean-water desalination: a solution or a problem? Available at: https://healthebay.org/sites/default/files/Desalination%20FAQ%20Sheet_final.pdf.

  • Jones E, Qadir M, van Vliet MTH, Smakhtin V, Kang S (2019) The state of desalination and brine production: a global outlook. Sci Total Environ 657(2019):1343–1356

    Article  CAS  Google Scholar 

  • Kingdom of Saudi Arabia (KSA) populations, 2020. Urban versus rural from 1955 to 2020.https://www.worldometers.info/demographics/saudi-arabia-emographics/. Accessed at 14 October, 2020.

  • Lippman TW. Biggest Mideast crisis: growing water scarcity. Business Mirror. May 24, 2014. Available at: http://www.ipsnews.net/2014/05/biggest-mideast-crisis-probably-dontknow-enough/. Accessed August 17, 2015.

  • MAW (Ministry of Agriculture and Water), 1982. Census of agriculture according to farm size, 1981–82. MAW, Riyadh.

  • MAW (Ministry of Agriculture and Water), 1984. Water Atlas of Saudi Arabia. Riyadh, MAW.

  • MAW (Ministry of Agriculture and Water), 1992. Agricultural Statistical Year Book. Vol. 7, Ministry of Agriculture and Water, Riyadh, Department of Economic Studies and Statistics.

  • Mays LW (2011) Water Resources Engineering, 2nd edn. John Wiley and Sons Inc, NJ, USA

    Google Scholar 

  • MEWA, Ministry of Environment, Water and Agriculture. Statistical Year Book; Ministry of Environment, Water, and Agriculture. 2019; 57–96. Riyadh, Saudi Arabia.

  • MOEP (The Ministry of Economy and Planning), 2010. The Ninth Development Plan (2010–2014). The Kingdom of Saudi Arabia.

  • Molden D. Water for food water for life: a comprehensive assessment of water management in agriculture. 2013; 664 pages. Routledge Press.

  • MOP (Ministry of Planning), 1985. Fourth Development Plan: 1985–1990. MOP, Riyadh.

  • MOWE (Ministry of Water and Electricity), 2009. The Ministry of Water and Electricity Annual Report 2009. Riyadh, Saudi Arabia.

  • Napoli, C., Wise, B., Wogan, D. and Yaseen, L. (2016). Policy options for reducing water for agriculture in Saudi Arabia. Available at: file:///C:/Users/IEC/Downloads/KS-1630-DP024A-Policy-Options-for-Reducing-Water-for-Agriculture-in-SA.pdf.

  • Ng SW, Zaghloul S, Ali HI, Harrison G, Popkin BM (2011) The prevalence and trends of overweight, obesity and nutrition-related non-communicable diseases in the Arabian Gulf States. Obes Rev 12:1–13

    Article  CAS  Google Scholar 

  • Ouda OK (2016) Treated wastewater use in Saudi Arabia: challenges and initiatives. Int J Water Resour Dev 32(5):799–809

    Article  Google Scholar 

  • Panagopoulos A, Haralambous KJ (2020) Environmental impacts of desalination and brine treatment-challenges and mitigation measures. Mar Pollut Bull 161:111773

    Article  CAS  Google Scholar 

  • Pearce, F. When the rivers run dry, fully revised and updated edition: Water-the defining crisis of the twenty-first century, (2018). 311pp. Beacon Press.

  • Pereira LS, Cordery I, Iacovides I. Coping with water scarcity: addressing the challenges. 2009; 7–24. Springer Science and Business Media.

  • Postel SL. Securing water for people, crops, and ecosystems: new mindset and new priorities, in Natural Resources Forum. Oxford, UK, (2003); 27(2): 89–98). Blackwell Publishing Ltd.

  • Pryor FL (2007) Water stress and water wars. Econ Peace Secur J 2(2):6

    Google Scholar 

  • Qadir M, Sharma BR, Bruggeman A, Choukr-Allah R, Karajeh F (2007) Non-conventional water resources and opportunities for water augmentation to achieve food security in water scarce countries. Agric Water Manag 87(1):2–22

    Article  Google Scholar 

  • Qadir, M and Smakhtin, V. (2021). Five unusual technologies for harvesting water in dry areas. Available at: https://theconversation.com/five-unusual-technologies-for-harvesting-water-in-dry-areas-154031.

  • Samad NA, Bruno VL (2013) The urgency of preserving water resources. Enviro News 2013(21):3–6

    Google Scholar 

  • Schilling J, Hertig E, Tramblay Y, Scheffran J (2020) Climate change vulnerability, water resources and social implications in North Africa. Reg Environ Change 20(1):1–12

    Article  Google Scholar 

  • Sojobi AO, Zayed T (2022) Impact of sewer overflow on public health: a comprehensive scientometric analysis and systematic review. Environ Res 203:111609

    Article  CAS  Google Scholar 

  • Sowers J, Vengosh A, Weinthal E (2011a) Climate change, water resources, and the politics of adaptation in the Middle East and North Africa. Clim Change 104(3):599–627

    Article  Google Scholar 

  • SSYB (Saudi Statistical Year Book), 2008. Water Consumption and Number of Subscribers. SSYB (Chapter 8).

  • Staff writer. Saudi water desalination industry posts highest global annual growth. Saudi Gazette. May 7, 2014. Available at:http://www.saudigazette.com.sa/index.cfm?method¼home.regcon&contentid¼20140507204347. Accessed August 17, 2015.

  • Population Stat, 2003. Historical demographical data for Saudi Arabia. Available at: <http://www.populstat.info/Asia/saudiarc.htm>.

  • SWCC, 2011. General organization of water desalination. Available at: <http://www.swcc.gov.sa/default.asp>.

  • SWCC, Saline Water Conversion Corporation, 2019. Annual Report, 2019. https://www.swcc.gov.sa/Arabic/MediaCenter/SWCCPublications/Publication files/Annual_Report_2019579972DE-2CB9–4E02–91F3–0DDB5D025391.Pdf. Accessed at 8 March, 2021.

  • Tarawneh QY, Chowdhury S (2018) Trends of climate change in Saudi Arabia: implications on water resources. Climate 6(1):8

    Article  Google Scholar 

  • UN (United Nations), 2020. Department of Economic and Social Affairs, Statistics Division. Sustainable Development Goal Indicators, 2020. https://unstats.un.org/sdgs/report/2020/goal-06/. Accessed on 15 March 2021.

  • UNDESA, United Nations Department of Economic and Social Affairs. Population Division. World Urbanization Prospects: The 2018 Revision (ST/ESA/SER. A/420), 2019; New York: United Nations.

  • Ursula, J.B., Peasey, A., 2002. Critical review of epidemiological evidence of the health effects of wastewater and excreta uses in agriculture. London School of Hygiene and Tropical Medicine.

  • USEPA, 2009. US Environmental Protection Agency. Review draft on control and mitigation of drinking water losses in distribution system. Office of Water (OW/OGWDW/DWPD), EPA MC-4606M. EPA 816-D-09–001, Washington DC.

  • World Bank Group (WB), 2021. Catalog Sources: World Development Indicators, data source: Food and Agriculture Organization, AQUASTAT data, 2021. http://data.worldbank.org/indicator. Accessed at 19 October, 2021.

  • Zekri S, Al-Maamari A. An overview of the water sector in MENA Region. Water Policies in MENA Countries, (2020); 1–17.

  • Zuhair, A., Nouh, M., El-Sayed, M., 1999. Flood harvesting in selected Arab States. Final Report, Institute of Water Resources.

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All of the authors (Faiza I.A. Abdella, Walaa I. El-Sofany, Dorsaf Mansour) contributed equally to data collection, drafting, processing, writing, editing, and reviewing the article.

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Correspondence to Faiza I. A. Abdella.

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This article reviews free data from Web of Science, Google Scholar, Google Webpage, and other websites that include replicable, up-to-date methods without the need for ethical approval aside from acknowledgments of authors and/or resources regarding Saudi Arabia’s water resources availability and reliability in terms of water supply, demand, and its major challenges.

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Abdella, F.I.A., El-Sofany, W.I. & Mansour, D. Water scarcity in the Kingdom of Saudi Arabia. Environ Sci Pollut Res 31, 27554–27565 (2024). https://doi.org/10.1007/s11356-024-33024-3

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