Hostname: page-component-586b7cd67f-vdxz6 Total loading time: 0 Render date: 2024-11-27T23:19:12.406Z Has data issue: false hasContentIssue false

Probabilistic Cost Effectiveness in Agricultural Nonpoint Pollution Control

Published online by Cambridge University Press:  09 September 2016

William T. McSweeny
Affiliation:
Department of Agricultural Economics and Rural Sociology, Pennsylvania State University, University Park, PA
James S. Shortle
Affiliation:
Department of Agricultural Economics and Rural Sociology, Pennsylvania State University, University Park, PA

Abstract

Conceptual weaknesses in the use of costs of average abatement as a measure of the cost effectiveness of agricultural nonpoint pollution control are examined. A probabilistic alternative is developed. The focus is on methods for evaluating whole-farm pollution control plans rather than individual practices. As a consequence, the analysis is presented in a chance-constrained activity analysis framework because activity analysis procedures are a practical and well developed device for screening farm plans. Reliability of control is shown to be as important as reduction targets in designing farm plans for pollution control. Furthermore, broad-axe prescriptions of technology in the form of Best Management Practices may perform poorly with respect to cost effectiveness.

Type
Articles
Copyright
Copyright © Southern Agricultural Economics Association 1990

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Baumol, W.T. and Oates, W.E.. The Theory of Environmental Policy. New York, NY: Cambridge University Press, 1988.Google Scholar
Beavis, B. and Walker, M.. “Achieving Environmental Standards with Stochastic Discharges.J. Environ. Econ. Manage., 10(1983): 103111.Google Scholar
Burn, D.H. and McBean, E.A.. “Optimization Modeling of Water Quality in an Uncertain Environment.Water Resour. Res., 21(1985):934940.CrossRefGoogle Scholar
Charnes, A. and Cooper, W.. “Deterministic Equivalents for Optimizing and Satisfying Under Chance Constraints.Oper. Res., 11(1964): 1839.Google Scholar
Dicks, M.R. efinitional Consistency of Conservation Provisions of the 1981 Food Security Act. Staff Report No. AGE861214, NRED, ERS, USDA, Washington, DC, January, 1987.Google Scholar
Maler, K.G. Environmental Economics. Baltimore, MD: Johns Hopkins University Press for Resources for the Future Inc., 1974.Google Scholar
McSweeny, W.T. and Kramer, R.A.. “The Integration of Farm Programs for Achieving Soil Conservation and Nonpoint Pollution Control Objectives.Land Econ., 62(1986):159173.Google Scholar
Milon, J.W.Optimizing Nonpoint Source Controls in Water Quality Regulations.Water Resour. Bull., 239(1987):387396.CrossRefGoogle Scholar
Murtaugh, B.A. and Saunders, M.A.. MINOS 5.0 User's Guide. Systems Optimization Lab. Tech. Report, SOL 83-20, Dept. Operations Res., Stanford University, December, 1983.Google Scholar
Paris, W. and Easter, C.D.. “A Stochastic Programming Model with Stochastic Technology and Prices. The Case of Australian Agriculture.” Am. J. Agr. Econ., 67(1985): 120129.Google Scholar
Segerson, K.Uncertainty and Incentives for Nonpoint Pollution Control.J. Environ. Econ. Manage., 15(1988):8798.Google Scholar
Shortle, J.S. and Dunn, J.W.. “The Relative Efficiency of Agricultural Source Water Pollution Control Policies.Am. J. Agr. Econ., 68(1987):688697.Google Scholar
Stavros, R.W.The Development of an Evaluation Method for Best Management Practices on Agricultural Land.” Unpublished Ph.D. dissertation. Virginia Polytechnic Institute and State University, Blacksburg, VA, November 1987.Google Scholar
U.S. Department of Commerce, Bureau of Census. 1982 Census of Agriculture Preliminary Report, City of Suffolk, VA. U.S. Government Printing Office. Washington, DC. December, 1983.Google Scholar
U.S. Environmental Protection Agency. Office of Water Program Operations. Report to Congress: Nonpoint Pollution in the U.S., January, 1984.Google Scholar