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Desert Water Harvesting to Benefit Wildlife: A Simple, Cheap, And Durable Sub-Surface Water Harvester for Remote Locations

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Abstract.

A sub-surface desert water harvester was constructed in the sagebrush steppe habitat of south-central Idaho, U.S.A. The desert water harvester utilizes a buried micro-catchment and three buried storage tanks to augment water for wildlife during the dry season. In this region, mean annual precipitation (MAP) ranges between about 150–250 mm (6″–10″), 70% of which falls during the cold season, November to May. Mid-summer through early autumn, June through October, is the dry portion of the year. During this period, the sub-surface water harvester provides supplemental water for wildlife for 30–90 days, depending upon the precipitation that year. The desert water harvester is constructed with commonly available, “over the counter” materials. The micro-catchment is made of a square-shaped, 20 mL. “PERMALON” polyethylene pond liner (approximately 22.9 m × 22.9 m = 523 m2) buried at a depth of about 60 cm. A PVC pipe connects the harvester with two storage tanks and a drinking trough. The total capacity of the water harvester is about 4777 L (1262 U.S. gallons) which includes three underground storage tanks, a trough and pipes. The drinking trough is refined with an access ramp for birds and small animals. The technology is simple, cheap, and durable and can be adapted to other uses, e.g. drip irrigation, short-term water for small livestock, poultry farming etc. The desert water harvester can be used to concentrate and collect water from precipitation and run-off in semi-arid and arid regions. Water harvested in such a relatively small area will not impact the ground water table but it should help to grow small areas of crops or vegetables to aid villagers in self-sufficiency.

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References

  • Donkin, R.A.: 1979, Agricultural Terracing in the Aboriginal New World. University of Arizona Press, Tucson.

    Google Scholar 

  • Evenari, M.L., Shanan, L. and Tadmor, N.: 1982, The Negev: The Challenge of the Desert,Harvard University Press, Cambridge.

    Google Scholar 

  • Hack, J.T.: 1942, ‘The changing physical environment of the Hopi Indians of Arizona,’ Papers of the Peabody Museum of American Archaeology and Ethnology, Harvard, vol. 35, pp.1–85.

    Google Scholar 

  • Hibbert, A.R.: 1983, ‘Water yield improvement potential by vegetation management on western rangelands’, Water Resour. Bull. 19, 375–381.

    Google Scholar 

  • Jones, J.R. and Debyle, N. V.: 1988, ‘Soils’, in: N.V. Debyle and R.P. Reed Jr. (eds), National List of Plant Species that Occur in Wetlands: Intermountain (Region 8). U.S. Department of Interior Fisheries and Wildlife Service, St. Petersburg, Florida. Biological Report 88(26.8), pp. 65–70.

  • Nabhan, G.: 1984, ‘Soil fertility renewal and water harvesting in Sonoran Desert agriculture: The Papago example’, Arid Lands Newslett. 20, 21–28.

    Google Scholar 

  • Neimeijer, D.: 1993, Indigenous Runoff Farming in a Changing Environment: The Case of Kassala’s Border Area, Sudan. University of Amsterdam, Amsterdam.

  • Sandor, J.A.: 1995, ‘Searching Soil for Clues about Southwest Prehistoric Agriculture,’ in: H.W. Toll (ed), Procceedings of the New Mexico Archaeological Council Symposium on Southwest Agriculture.

  • Sturges, D.L. and Talber, R.D.:1981, ‘Management of blowing snow on sagebrush rangelands’, J. Soil Water Conserv. 36(5) 287–292.

    Google Scholar 

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Correspondence to William E. Rice.

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Rice, W.E. Desert Water Harvesting to Benefit Wildlife: A Simple, Cheap, And Durable Sub-Surface Water Harvester for Remote Locations. Environ Monit Assess 99, 251–257 (2004). https://doi.org/10.1007/s10661-004-4030-6

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  • DOI: https://doi.org/10.1007/s10661-004-4030-6

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