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On the influence of environmental factors on harvest: the French Guiana shrimp fishery paradox

Author

Listed:
  • Nicolas Sanz

    (CEREGMIA, Université des Antilles et de la Guyane)

  • Bassirou Diop

    (CEREGMIA, Université des Antilles et de la Guyane)

  • Fabian Blanchard

    (Université de Guyane, CNRS, IFREMER
    Ifremer)

  • Luis Lampert

    (Ifremer, Centre Bretagne)

Abstract

The purpose of this paper is to investigate the environmental nature of the French Guiana shrimp fishery dynamics through an empirical analysis. To do so, we specify a global harvest production function, in which the output depends on the number of days at sea and the stock level. In addition, we use some environmental variables representing the ‘El Niño’ and ‘la Niña’ phenomena, the sea surface temperature, and the flow of some Amazonian rivers as instruments. This method enables us to correct the well-known simultaneous bias between the harvest and the stock levels and to show that harvest is significantly dependent on the environmental factors analyzed, which may compromise the future of the French Guiana shrimp fishery in the context of climate change.

Suggested Citation

  • Nicolas Sanz & Bassirou Diop & Fabian Blanchard & Luis Lampert, 2017. "On the influence of environmental factors on harvest: the French Guiana shrimp fishery paradox," Environmental Economics and Policy Studies, Springer;Society for Environmental Economics and Policy Studies - SEEPS, vol. 19(2), pages 233-247, April.
  • Handle: RePEc:spr:envpol:v:19:y:2017:i:2:d:10.1007_s10018-016-0153-6
    DOI: 10.1007/s10018-016-0153-6
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    1. Edward Barbier & Ivar Strand, 1998. "Valuing Mangrove-Fishery Linkages – A Case Study of Campeche, Mexico," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 12(2), pages 151-166, September.
    2. Healey, MC & Hennessey, T, 1998. "The paradox of fairness: The impact of escalating complexity on fishery management," Marine Policy, Elsevier, vol. 22(2), pages 109-118, March.
    3. Gakushi Ishimura & Sam Herrick & Ussif Sumaila, 2013. "Fishing games under climate variability: transboundary management of Pacific sardine in the California Current System," Environmental Economics and Policy Studies, Springer;Society for Environmental Economics and Policy Studies - SEEPS, vol. 15(2), pages 189-209, April.
    4. Michiyuki Yagi & Shunsuke Managi, 2011. "Catch limits, capacity utilization and cost reduction in Japanese fishery management," Agricultural Economics, International Association of Agricultural Economists, vol. 42(5), pages 577-592, September.
    5. Barbier, Edward B., 2000. "Valuing the environment as input: review of applications to mangrove-fishery linkages," Ecological Economics, Elsevier, vol. 35(1), pages 47-61, October.
    6. Edward B. Barbier, 2003. "Habitat–Fishery Linkages And Mangrove Loss In Thailand," Contemporary Economic Policy, Western Economic Association International, vol. 21(1), pages 59-77, January.
    7. Hausman, Jerry, 2015. "Specification tests in econometrics," Applied Econometrics, Russian Presidential Academy of National Economy and Public Administration (RANEPA), vol. 38(2), pages 112-134.
    8. Trond Bjørndal, 1989. "Production in a Schooling Fishery: The Case of the North Sea Herring Fishery," Land Economics, University of Wisconsin Press, vol. 65(1), pages 49-56.
    9. Sun, Chin-Hwa & Chiang, Fu-Sung & Tsoa, Eugene & Chen, Min-Hsiang, 2006. "The effects of El Nino on the mackerel purse-seine fishery harvests in Taiwan: An analysis integrating the barometric readings and sea surface temperature," Ecological Economics, Elsevier, vol. 56(2), pages 268-279, February.
    10. Trond Bjørndal & Daniel V. Gordon, 1993. "The Opportunity Cost of Capital and Optimal Vessel Size in the Norwegian Fishing Fleet," Land Economics, University of Wisconsin Press, vol. 69(1), pages 98-107.
    11. Julio Peña & Claudio Agostini & Sebastián Vergara, 2007. "Fish stock endogeneity in a harvest function: "El Niño" effects on the Chilean jack mackerel fishery," Revista de Analisis Economico – Economic Analysis Review, Universidad Alberto Hurtado/School of Economics and Business, vol. 22(2), pages 75-99, December.
    12. Trond Bjørndal & Jon M. Conrad & Kjell G. Salvanes, 1993. "Stock Size, Harvesting Costs, and the Potential for Extinction: The Case of Sealing," Land Economics, University of Wisconsin Press, vol. 69(2), pages 156-167.
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    Cited by:

    1. Diop, Bassirou & Sanz, Nicolas & Duplan, Yves Jamont Junior & Guene, El Hadji Mama & Blanchard, Fabian & Pereau, Jean-Christophe & Doyen, Luc, 2018. "Maximum Economic Yield Fishery Management in the Face of Global Warming," Ecological Economics, Elsevier, vol. 154(C), pages 52-61.
    2. Bassirou Diop & Nicolas Sanz & Yves Jamont Junior Duplan & Elhadji Mama Guene & Fabian Blanchard & Luc Doyen & Jean-Christophe Pereau, 2015. "Global warming and the collapse of the French Guiana shrimp fishery," Working Papers hal-01243305, HAL.
    3. Diop, Bassirou & Blanchard, Fabian & Sanz, Nicolas, 2018. "Mangrove increases resiliency of the French Guiana shrimp fishery facing global warming," Ecological Modelling, Elsevier, vol. 387(C), pages 27-37.
    4. Zachary Porreca, 2021. "Assessing ocean temperature’s role in fishery production," Journal of Bioeconomics, Springer, vol. 23(3), pages 237-256, October.
    5. Nicolas Sanz & Bassirou Diop, 2015. "A search-matching model of fisheries," Working Papers hal-01228851, HAL.
    6. Domenico Cucina & Manuel Rizzo & Eugen Ursu, 2018. "Identification of multiregime periodic autotregressive models by genetic algorithms," Post-Print hal-03187870, HAL.
    7. Nicolas Sanz & Bassirou Diop, 2022. "Endogenous catch per unit effort and congestion externalities between vessels in a search‐matching model: Evidence from the French Guiana shrimp fishery," Bulletin of Economic Research, Wiley Blackwell, vol. 74(3), pages 838-853, July.

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    More about this item

    Keywords

    Fisheries; Harvest production function; El Niño; La Niña; Amazonian rivers;
    All these keywords.

    JEL classification:

    • Q22 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Renewable Resources and Conservation - - - Fishery

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