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The water supply footprint (WSF): a strategic planning tool for sustainable regional and local water supplies
Authors:Gernot StoeglehnerAuthor Vitae  Peter EdwardsAuthor Vitae  Peter DanielsAuthor Vitae
Institution:a University of Natural Resources and Life Sciences, Vienna, Department of Landscape, Spatial and Infrastructure Sciences, Institute of Spatial Planning and Rural Development, Peter-Jordan-Strasse 82, A-1190 Vienna, Austria
b Griffith University, Griffith School of Environment and Environmental Futures Centre, 170 Kessels Road, Nathan 4111, Brisbane, Australia
c Swedish University of Agricultural Sciences, Department of Forest Products, Box 7008, 75007 Uppsala, Sweden
d Graz University of Technology, Institute of Process and Particle Engineering, Inffeldgasse 21b 8010 Graz, Austria
Abstract:This paper introduces a new methodological approach of the ecological footprint explicitly addressing the sustainability of water supplies, which we call the water supply footprint (WSF). The WSF calculates the catchment area or water supply hinterland of a certain society and can serve as a strategic planning tool for local or regional water supplies linking the water demand with the water supply in a water supply footprint matrix. Based on regional water balances it estimates how much water can be appropriated for human use in an environmentally sustainable way.The proposed method is tested on the South East Queensland water supply in Australia, an area where water use restrictions are regularly imposed on the population. Applying the proposed method indicates that supply shortages may be avoided by considerably changing the organisation of water supply, thereby reducing and possibly even avoiding the necessity for large-scale supply side measures like additional sweet water reservoirs or desalination plants. In that way it is demonstrated that the WSF method is applicable at an early and strategic stage of water supply planning.
Keywords:Water supplies  Ecological footprint  Water footprint  Water supply footprint  Sustainable water supplies
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