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Using structural restrictions to achieve theoretical consistency in benefit transfers

Author

Listed:
  • Stephen C. Newbold

    (U.S. EPA, National Center for Environmental Economics)

  • Patrick J. Walsh

    (Landcare Research)

  • D. Matthew Massey

    (U.S. EPA, National Center for Environmental Economics)

  • Julie Hewitt

    (U.S. EPA, Office of Water)

Abstract

Analysts often extrapolate estimates of the value of environmental improvements reported in prior studies to evaluate new policy proposals, a practice sometimes referred to as “benefit transfer.” Benefit transfer functions are frequently specified based on statistical considerations alone. However, such a purely statistical approach can lead to willingness-to-pay functions that fail to satisfy some aspects of theoretical consistency that may be especially important for policy evaluations. In this paper, we examine several previous meta-analyses of nonmarket valuation studies in light of the adding-up condition, which is one important aspect of theoretical validity. We then use meta-regression to estimate a new willingness-to-pay function for surface water quality improvements intended to be used for benefit transfers. We estimate the meta-regression model using summary results from 51 previously published stated preference studies. An important feature of our approach is that we develop the meta-regression estimating equation to ensure that the resulting benefit transfer function will necessarily comply with the adding-up condition. This is achieved by first specifying a marginal willingness-to-pay function and then deriving an expression for total willingness-to-pay. This leads to a non-linear estimating equation, so we estimate the parameters of the model using non-linear least squares. We discuss the advantages and disadvantages of our approach relative to other structural approaches, and we compare our empirical results to a more traditional nonstructural meta-regression model. Finally, we examine the quantitative importance of imposing the adding-up condition in our case study by performing some illustrative calculations of willingness-to-pay for hypothetical water quality improvements using both structural and non-structural models.

Suggested Citation

  • Stephen C. Newbold & Patrick J. Walsh & D. Matthew Massey & Julie Hewitt, 2018. "Using structural restrictions to achieve theoretical consistency in benefit transfers," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 69(3), pages 529-553, March.
  • Handle: RePEc:kap:enreec:v:69:y:2018:i:3:d:10.1007_s10640-017-0209-5
    DOI: 10.1007/s10640-017-0209-5
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    Cited by:

    1. Robert J. Johnston & Elena Y. Besedin & Benedict M. Holland, 2019. "Modeling Distance Decay Within Valuation Meta-Analysis," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 72(3), pages 657-690, March.
    2. Meya, Jasper N. & Drupp, Moritz A. & Hanley, Nick, 2021. "Testing structural benefit transfer: The role of income inequality," Resource and Energy Economics, Elsevier, vol. 64(C).
    3. Dennis Guignet & Matthew T. Heberling & Michael Papenfus & Olivia Griot, 2022. "Property Values, Water Quality, and Benefit Transfer: A Nationwide Meta-analysis," Land Economics, University of Wisconsin Press, vol. 98(2), pages 191-218.
    4. Choi, Dong Soon & Ready, Richard, 2021. "Measuring benefits from spatially-explicit surface water quality improvements: The roles of distance, scope, scale, and size," Resource and Energy Economics, Elsevier, vol. 63(C).
    5. Robert J. Johnston & Ewa Zawojska, 2020. "Relative Versus Absolute Commodity Measurements in Benefit Transfer: Consequences for Validity and Reliability," American Journal of Agricultural Economics, John Wiley & Sons, vol. 102(4), pages 1245-1270, August.
    6. Hermine Vedogbeton & Robert J. Johnston, 2020. "Commodity Consistent Meta-Analysis of Wetland Values: An Illustration for Coastal Marsh Habitat," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 75(4), pages 835-865, April.
    7. Moeltner, Klaus, 2019. "Bayesian nonlinear meta regression for benefit transfer," Journal of Environmental Economics and Management, Elsevier, vol. 93(C), pages 44-62.
    8. Farreras Verónica & Lauro Carolina & Abraham Laura & Vaccarino Emilce & Salvador Pablo F., 2023. "Políticas De Gestión De Los Recursos Hídricos. Un Enfoque Económico E Hidrológico En El Oasis Norte De Mendoza," Asociación Argentina de Economía Política: Working Papers 4652, Asociación Argentina de Economía Política.
    9. Newbold, Stephen C. & Johnston, Robert J., 2020. "Valuing non-market valuation studies using meta-analysis: A demonstration using estimates of willingness-to-pay for water quality improvements," Journal of Environmental Economics and Management, Elsevier, vol. 104(C).
    10. D'Alberto, Riccardo & Zavalloni, Matteo & Raggi, Meri & Viaggi, Davide, 2021. "A Statistical Matching approach to reproduce the heterogeneity of willingness to pay in benefit transfer," Socio-Economic Planning Sciences, Elsevier, vol. 74(C).
    11. Abbie A. Rogers & Fiona L. Dempster & Jacob I. Hawkins & Robert J. Johnston & Peter C. Boxall & John Rolfe & Marit E. Kragt & Michael P. Burton & David J. Pannell, 2019. "Valuing non-market economic impacts from natural hazards," Natural Hazards: Journal of the International Society for the Prevention and Mitigation of Natural Hazards, Springer;International Society for the Prevention and Mitigation of Natural Hazards, vol. 99(2), pages 1131-1161, November.
    12. Nathan W. Chan & Casey J. Wichman, 2022. "Valuing Nonmarket Impacts of Climate Change on Recreation: From Reduced Form to Welfare," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 81(1), pages 179-213, January.
    13. Richard C. Bishop & Kevin J. Boyle, 2021. "On Adding-Up as a Validity Criterion for Stated-Preference Studies," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 80(3), pages 587-601, November.
    14. Moeltner, Klaus & Puri, Roshan & Johnston, Robert J. & Besedin, Elena & Balukas, Jessica & Le, Alyssa, 2022. "Locally Weighted Meta-Regression and Benefit Transfer," 2022 Annual Meeting, July 31-August 2, Anaheim, California 322359, Agricultural and Applied Economics Association.
    15. Jasper N. Meya, 2018. "Environmental Inequality and Economic Valuation," Working Papers V-416-18, University of Oldenburg, Department of Economics, revised Dec 2018.
    16. Jasper N. Meya, 2020. "Environmental Inequality and Economic Valuation," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 76(2), pages 235-270, July.
    17. Robert J. Johnston & Ewa Zawojska, 2018. "Benefit Transfer and Commodity Measurement Scales: Consequences for Validity and Reliability," Working Papers 2018-26, Faculty of Economic Sciences, University of Warsaw.
    18. Jasper N. Meya & Stefan Baumgärtner & Moritz A. Drupp & Martin F. Quaas, 2020. "Inequality and the Value of Public Natural Capital," CESifo Working Paper Series 8752, CESifo.

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