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    Can desalination and clean energy combined help to alleviate global water scarcity?

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    Authors
    Sood, Aditya
    Smakhtin, Vladimir U.
    Date Issued
    2014-10
    Date Online
    2014-04
    Language
    en
    Type
    Journal Article
    Accessibility
    Limited Access
    Usage rights
    Copyrighted; all rights reserved
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    Citation
    Sood, Aditya; Smakhtin, Vladimir. 2014. Can desalination and clean energy combined help to alleviate global water scarcity? Journal of the American Water Resources Association, 50(5):1111-1123. doi: http://dx.doi.org/10.1111/jawr.12174
    Permanent link to cite or share this item: https://hdl.handle.net/10568/58383
    DOI: https://doi.org/10.1111/jawr.12174
    Abstract/Description
    The major present hindrance in using desalination to help alleviate global water scarcity is the cost of this technology, which, in turn is due to energy cost involved. This study examines historical trends in desalination and breaks up the cost of desalination into energy based and nonenergy based. It then develops the learning curves (relationship between cumulative production and market price) for desalination. Assuming that the photovoltaic (PV) technology will be the dominant form of energy used in the desalination process, the existing PV learning curve and desalination learning curve are combined to explore the viability of large-scale adoption of desalination in the future. The world has been divided into seven regions and it is assumed that water demand from desalinated water will be met only within the 100-km coastal belt. It is shown that, in most of the regions, other than sub-Saharan Africa, Central America, and South Asia (where water tariffs are low), the desalination (without considering energy) becomes viable by 2040. For PV technology, less than 1 million MW per annum growth is required till 2050 to make it affordable. Globally, desalination with renewable energy can become a viable option to replace domestic and industrial water demand in the 100-km coastal belt by 2050.
    Other CGIAR Affiliations
    Climate Change, Agriculture and Food Security; Water, Land and Ecosystems
    AGROVOC Keywords
    desalination; sea water; water scarcity; water demand; domestic water; energy; investment; costs; case studies
    Organizations Affiliated to the Authors
    International Water Management Institute
    Collections
    • IWMI Journal Articles [2510]
    • WLE Journal Articles [922]

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