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The US freshwater supply shortage: Experiences with desalination as part of the solution

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  • Emily Yuhas
  • Tom Daniels

Abstract

Parts of the USA are facing impending shortages of freshwater. One proposed solution is the construction of desalination plants to turn seawater into freshwater. Although seawater desalination plants are widely used in the Middle East, especially Saudi Arabia, there are few desalination plants in the USA. In 2003, Tampa Bay Water built the largest desalination plant in North America. Persistent operating problems and escalating costs have caused the utility to re-evaluate its reliance on the seawater desalination plant as part of a long-term regional water supply strategy. In addition, environmental effects of the plant are uncertain. Advances in reverse osmosis technology have significantly reduced desalination costs. However, desalination of seawater is still more expensive than other freshwater supply sources and demand management measures. With time and research, seawater desalination may prove to be a sustainable, cost-effective source of new freshwater supplies, especially if plants are coupled with renewable energy sources. Until then, the development of small-scale groundwater desalination plants, the re-use of water, water conservation, and a more efficient allocation of water through higher prices and rising block rates will be important strategies in meeting growing water demand. Moreover, it is important to improve the coordination between water supply planning and land use planning as populations continue to increase.

Suggested Citation

  • Emily Yuhas & Tom Daniels, 2006. "The US freshwater supply shortage: Experiences with desalination as part of the solution," Journal of Environmental Planning and Management, Taylor & Francis Journals, vol. 49(4), pages 571-585.
  • Handle: RePEc:taf:jenpmg:v:49:y:2006:i:4:p:571-585
    DOI: 10.1080/09640560600747661
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    Cited by:

    1. Yiğit Sağlam, 2019. "Welfare Implications of Water Scarcity: Higher Prices of Desalination," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 73(4), pages 995-1022, August.

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