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The Role Of Soil Test Information In Reducing Groundwater Pollution

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  • Fleming, Ronald A.
  • Adams, Richard M.
  • Ervin, David E.

Abstract

Testing soils for nutrients is expected to improve groundwater quality. However, it is unknown whether soil testing will improve groundwater quality sufficiently to decrease the demand for direct regulation of agricultural practices. Focusing on an irrigated agricultural region in eastern Oregon, the economic and environmental aspects of soil testing are assessed using a spatially distributed, dynamic simulation model which links economic behavior with the physical processes that determine groundwater quality. Results indicate that soil testing of all fields increases farm profits and reduced groundwater nitrate concentration. However, the benefits are small in terms of potential improvements in groundwater quality

Suggested Citation

  • Fleming, Ronald A. & Adams, Richard M. & Ervin, David E., 1998. "The Role Of Soil Test Information In Reducing Groundwater Pollution," Journal of Agricultural and Resource Economics, Western Agricultural Economics Association, vol. 23(1), pages 1-19, July.
  • Handle: RePEc:ags:jlaare:31171
    DOI: 10.22004/ag.econ.31171
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    References listed on IDEAS

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    1. Fleming, R. A. & Adams, R. M., 1997. "The Importance of Site-Specific Information in the Design of Policies to Control Pollution," Journal of Environmental Economics and Management, Elsevier, vol. 33(3), pages 347-358, July.
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    4. Scott L. Johnson & Richard M. Adams & Gregory M. Perry, 1991. "The On-Farm Costs of Reducing Groundwater Pollution," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 73(4), pages 1063-1073.
    5. Debertin, David L., 1985. "Developing Realistic Agricultural Production Functions for Use in Undergraduate Classes," Journal of Agricultural and Applied Economics, Cambridge University Press, vol. 17(2), pages 207-214, December.
    6. Bruce A. Babcock & Alicia L. Carriquiry & Hal S. Stern, 1996. "Evaluation of Soil Test Information in Agricultural Decisionā€Making," Journal of the Royal Statistical Society Series C, Royal Statistical Society, vol. 45(4), pages 447-461, December.
    7. H.P. Mapp & D.J. Bernardo & G.J. Sabbagh & S. Geleta & K.B. Watkins, 1994. "Economic and Environmental Impacts of Limiting Nitrogen Use to Protect Water Quality: A Stochastic Regional Analysis," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 76(4), pages 889-903.
    8. Darrell J. Bosch & Zena L. Cook & Keith O. Fuglie, 1995. "Voluntary versus Mandatory Agricultural Policies to Protect Water Quality: Adoption of Nitrogen Testing in Nebraska," Review of Agricultural Economics, Agricultural and Applied Economics Association, vol. 17(1), pages 13-24.
    9. Douglas M. Larson & Gloria E. Helfand & Brett W. House, 1996. "Second-Best Tax Policies to Reduce Nonpoint Source Pollution," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 78(4), pages 1108-1117.
    10. Chowdhury, Manzoor E. & Lacewell, Ronald D., 1996. "Implications Of Alternative Policies On Nitrate Contamination Of Groundwater," Journal of Agricultural and Resource Economics, Western Agricultural Economics Association, vol. 21(1), pages 1-14, July.
    11. Keith O. Fuglie & Darrell J. Bosch, 1995. "Economic and Environmental Implications of Soil Nitrogen Testing: A Switching-Regression Analysis," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 77(4), pages 891-900.
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    Cited by:

    1. Knapp, Keith C. & Baerenklau, Kenneth A., 2006. "Ground Water Quantity and Quality Management: Agricultural Production and Aquifer Salinization over Long Time Scales," Journal of Agricultural and Resource Economics, Western Agricultural Economics Association, vol. 31(3), pages 1-26, December.
    2. Ibendahl, Gregory & Fleming, Ronald A., 2007. "Controlling aquifer nitrogen levels when fertilizing crops: A study of groundwater contamination and denitrification," Ecological Modelling, Elsevier, vol. 205(3), pages 507-514.

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