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The supply and demand for pollution control: Evidence from wastewater treatment

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  • McConnell, Virginia D.
  • Schwarz, Gregory E.

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  • McConnell, Virginia D. & Schwarz, Gregory E., 1992. "The supply and demand for pollution control: Evidence from wastewater treatment," Journal of Environmental Economics and Management, Elsevier, vol. 23(1), pages 54-77, July.
  • Handle: RePEc:eee:jeeman:v:23:y:1992:i:1:p:54-77
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    Citations

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    Cited by:

    1. Earnhart, Dietrich, 2004. "Regulatory factors shaping environmental performance at publicly-owned treatment plants," Journal of Environmental Economics and Management, Elsevier, vol. 48(1), pages 655-681, July.
    2. Giovanni Fraquelli & Roberto Giandrone, 2001. "Waste Water Purification In Italy: Costs And Structure Of The Technology," CERIS Working Paper 200102, CNR-IRCrES Research Institute on Sustainable Economic Growth - Torino (TO) ITALY - former Institute for Economic Research on Firms and Growth - Moncalieri (TO) ITALY.
    3. Lavergne, Pascal & Thomas, A., 1997. "Semiparametric estimation and testing in models of adverse selection, with an aplication to environmental regulation," DES - Working Papers. Statistics and Econometrics. WS 6221, Universidad Carlos III de Madrid. Departamento de Estadística.
    4. Newell, Richard G & Stavins, Robert N, 2003. "Cost Heterogeneity and the Potential Savings from Market-Based Policies," Journal of Regulatory Economics, Springer, vol. 23(1), pages 43-59, January.
    5. Yates, Andrew J. & Doyle, Martin W. & Rigby, J.R. & Schnier, Kurt E., 2013. "Market power, private information, and the optimal scale of pollution permit markets with application to North Carolina's Neuse River," Resource and Energy Economics, Elsevier, vol. 35(3), pages 256-276.
    6. Fernandez, Linda, 1997. "Estimation of Wastewater Treatment Objectives through Maximum Entropy," Journal of Environmental Economics and Management, Elsevier, vol. 32(3), pages 293-308, March.
    7. Ching-Yao Irene Lai & C.C. Yang, 2014. "Scale Effect Versus Induced Policy Response In The Environmental Kuznets Curve: The Case Of U.S. Water Pollution," Contemporary Economic Policy, Western Economic Association International, vol. 32(2), pages 435-450, April.
    8. Frederick, Kenneth & Schwarz, Gregory, 2000. "Socioeconomic Impacts of Climate Variability and Change on U.S. Water Resources," RFF Working Paper Series dp-00-21, Resources for the Future.
    9. Stavins, Robert & Newell, Richard, 2000. "Abatement-Cost Heterogeneity and Anticipated Savings from Market-Based Environmental Policies," Working Paper Series rwp00-006, Harvard University, John F. Kennedy School of Government.
    10. Lopamudra Chakraborti, 2021. "Impact of upstream plant level pollution on downstream water quality: evidence from the clean water act," Journal of Environmental Planning and Management, Taylor & Francis Journals, vol. 64(3), pages 517-535, February.
    11. Elbakidze, Levan & Beeson, Quinn, 2020. "State Regulatory Heterogeneity and Clean Water Act Compliance," 2020 Annual Meeting, July 26-28, Kansas City, Missouri 304638, Agricultural and Applied Economics Association.
    12. Frederick, Kenneth D. & Schwarz, Gregory E., 2000. "Socioeconomic Impacts of Climate Variability and Change on U.S. Water Resources," Discussion Papers 10786, Resources for the Future.
    13. Lopamudra Chakraborti & Kenneth E. McConnell, 2012. "Does Ambient Water Quality Affect the Stringency of Regulations? Plant-Level Evidence of the Clean Water Act," Land Economics, University of Wisconsin Press, vol. 88(3), pages 518-535.
    14. Bishwanath Goldar & Badal Mukherji, 1998. "Pollution Abatement Cost Function: Methodological And Estimation Issues," Working papers 56, Centre for Development Economics, Delhi School of Economics.

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