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Tree Removals And Saline Seepage In Victorian Catchments: Some Hydrologic And Economic Results

Author

Listed:
  • Greig, P.J.
  • Devonshire, P.G.

Abstract

Average salt concentrations in a number of Victorian streams are related statistically to the proportions of their catchments cleared of trees for agriculture and to other catchment variables. A causal relationship is assumed, so that an economic evaluation of one of the external benefits of tree retention in a given catchment can be estimated. This is done by using the model to predict stream salinity increases that would occur with further clearing, and estimating the costs of such increases by either the costs experienced by water users, or the costs of restoring stream salinity to the original level. The methods are illustrated by application to a representative catchment.

Suggested Citation

  • Greig, P.J. & Devonshire, P.G., 1981. "Tree Removals And Saline Seepage In Victorian Catchments: Some Hydrologic And Economic Results," Australian Journal of Agricultural Economics, Australian Agricultural and Resource Economics Society, vol. 25(2), pages 1-15, August.
  • Handle: RePEc:ags:ajaeau:22865
    DOI: 10.22004/ag.econ.22865
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    Cited by:

    1. Urama, Kevin C. & Hodge, Ian D., 2006. "Are stated preferences convergent with revealed preferences? Empirical evidence from Nigeria," Ecological Economics, Elsevier, vol. 59(1), pages 24-37, August.
    2. Ian D. Hodge, 1982. "Rights To Cleared Land And The Control Of Dryland‐Seepage Salinity," Australian Journal of Agricultural and Resource Economics, Australian Agricultural and Resource Economics Society, vol. 26(3), pages 185-201, December.
    3. Young, Ralph, 1991. "The Economic Significance of Environmental Resources: A Review of the Evidence," Review of Marketing and Agricultural Economics, Australian Agricultural and Resource Economics Society, vol. 59(03), pages 1-26, December.
    4. Tisdell, Clement A., 1985. "Conserving and Planting Trees on Farms: Lessons from Australian Cases," Review of Marketing and Agricultural Economics, Australian Agricultural and Resource Economics Society, vol. 53(03), pages 1-10, December.
    5. Quiggin, John C., 1986. "Common Property, Private Property And Regulation The Case Of Dryland Salinity," Australian Journal of Agricultural Economics, Australian Agricultural and Resource Economics Society, vol. 30(2-3), pages 1-15, August.
    6. K. Mix & V. Lopes & W. Rast, 2015. "A Systems Approach to Understanding the Evolution of the Agro-Social-Ecological System of the Upper Rio Grande-San Luis Valley, Colorado," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 29(2), pages 233-251, January.
    7. Rose, Roger & Cox, Anthony, 1991. "Australia's natural resources: optimising present and future use," Australian Bureau of Agricultural and Resource Economics and Sciences (ABARES) Archive 316171, Australian Government, Australian Bureau of Agricultural and Resource Economics and Sciences.
    8. Sinden, Jack A. & Jones, A.D., 1985. "Eucalypt Dieback And Stocking Rates In Southern New England, New South Wales," Australian Journal of Agricultural Economics, Australian Agricultural and Resource Economics Society, vol. 29(2), pages 1-8, August.

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