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Optimal recovery paths for perturbations of trophic level bioeconomic systems

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  • Wilen, James
  • Brown, Gardner Jr.

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  • Wilen, James & Brown, Gardner Jr., 1986. "Optimal recovery paths for perturbations of trophic level bioeconomic systems," Journal of Environmental Economics and Management, Elsevier, vol. 13(3), pages 225-234, September.
  • Handle: RePEc:eee:jeeman:v:13:y:1986:i:3:p:225-234
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    Cited by:

    1. Albers, H. J. & Goldbach, M. J., 2000. "Irreversible ecosystem change, species competition, and shifting cultivation," Resource and Energy Economics, Elsevier, vol. 22(3), pages 261-280, July.
    2. Sims, Charles & Aadland, David & Finnoff, David, 2010. "A dynamic bioeconomic analysis of mountain pine beetle epidemics," Journal of Economic Dynamics and Control, Elsevier, vol. 34(12), pages 2407-2419, December.
    3. Martin D. Smith, 2007. "Generating Value in Habitat-Dependent Fisheries: The Importance of Fishery Management Institutions," Land Economics, University of Wisconsin Press, vol. 83(1), pages 59-73.
    4. Yamazaki, Satoshi & Jennings, Sarah & Quentin Grafton, R. & Kompas, Tom, 2015. "Are marine reserves and harvest control rules substitutes or complements for rebuilding fisheries?," Resource and Energy Economics, Elsevier, vol. 40(C), pages 1-18.
    5. John Tschirhart, 2012. "Biology as a Source of Non-convexities in Ecological Production Functions," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 51(2), pages 189-213, February.
    6. Wilen, Christopher D. & Wilen, James E., 2012. "Fishing down the food chain revisited: Modeling exploited trophic systems," Ecological Economics, Elsevier, vol. 79(C), pages 80-88.
    7. Melstrom, Richard T. & Horan, Richard D., 2013. "Managing excessive predation in a predator-endangered prey setting," Ecological Economics, Elsevier, vol. 90(C), pages 85-93.
    8. Eppink, Florian V. & van den Bergh, Jeroen C.J.M., 2007. "Ecological theories and indicators in economic models of biodiversity loss and conservation: A critical review," Ecological Economics, Elsevier, vol. 61(2-3), pages 284-293, March.
    9. Kasperski, Stephen, 2016. "Optimal multispecies harvesting in the presence of a nuisance species," Marine Policy, Elsevier, vol. 64(C), pages 55-63.
    10. Martin D. Smith & Larry B. Crowder, 2011. "Valuing Ecosystem Services with Fishery Rents: A Lumped-Parameter Approach to Hypoxia in the Neuse River Estuary," Sustainability, MDPI, vol. 3(11), pages 1-39, November.
    11. Sanchirico, James N. & Smith, Martin D. & Lipton, Douglas W., 2008. "An empirical approach to ecosystem-based fishery management," Ecological Economics, Elsevier, vol. 64(3), pages 586-596, January.
    12. Tibor Neugebauer, 2005. "Bioeconomics Of Sustainable Harvest Of Competing Species: A Comment," Others 0503012, University Library of Munich, Germany.
    13. David Finnoff & John Tschirhart, 2003. "Protecting an Endangered Species While Harvesting Its Prey in a General Equilibrium Ecosystem Model," Land Economics, University of Wisconsin Press, vol. 79(2), pages 160-180.
    14. Melstrom, Richard T. & Salau, Kehinde Rilwan & Shanafelt, David W., 2019. "The Optimal Timing of Reintroducing Captive Populations Into the Wild," Ecological Economics, Elsevier, vol. 156(C), pages 174-184.
    15. Finnoff, David & Tschirhart, John, 2003. "Harvesting in an eight-species ecosystem," Journal of Environmental Economics and Management, Elsevier, vol. 45(3), pages 589-611, May.

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