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Economic Land Use, Ecosystem Services and Microfounded Species Dynamics

Author

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  • Thomas Eichner
  • Rüdiger Pethig

Abstract

In an integrated economy-ecosystem model humans choose their land use and leave the residual land as habitat for three species forming a food chain. The size of habitat determines the diversity and abundance of species. That biodiversity generates, in turn, a flow of ecosystem services with public-good characteristics for human consumption. The ecosystem submodel yields (rather than assumes!) population growth functions with each species’ growth depending on the size of habitat. First the relationship between habitat and species growth (sustenance, decline and extinction) is explored. The laissez-faire economy is shown to result in an underprovision of habitat, making the case for land use restrictions for nature protection. The optimal land use policy is characterized with full regard of ecosystem dynamics. Finally, labor-augmenting technical change is introduced to generate ever increasing pressure towards further habitat reductions. In the laissez-faire economy the habitat is consequently squeezed to zero in the long-run so that all species are doomed. Social optimality demands, however, to refrain from using all land for economic purposes despite ever-growing labor productivity.

Suggested Citation

  • Thomas Eichner & Rüdiger Pethig, 2004. "Economic Land Use, Ecosystem Services and Microfounded Species Dynamics," CESifo Working Paper Series 1269, CESifo.
  • Handle: RePEc:ces:ceswps:_1269
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    References listed on IDEAS

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    Cited by:

    1. Rafat Alam & Nguyen Quyen, 2018. "The conversion of biodiversity-rich land and ecosystem services," Environmental Economics and Policy Studies, Springer;Society for Environmental Economics and Policy Studies - SEEPS, vol. 20(1), pages 157-178, January.
    2. Yoshida, Jun & Kono, Tatsuhito, 2020. "Land use policies considering a natural ecosystem," Regional Science and Urban Economics, Elsevier, vol. 83(C).
    3. Cong, Rong-Gang & Smith, Henrik G. & Olsson, Ola & Brady, Mark, 2014. "Managing ecosystem services for agriculture: Will landscape-scale management pay?," Ecological Economics, Elsevier, vol. 99(C), pages 53-62.
    4. Angela Münch, 2010. "Agri-Environmental Schemes and Grassland Biodiversity: Another Side of the Coin," Jena Economics Research Papers 2010-026, Friedrich-Schiller-University Jena.
    5. Christiaans, Thomas & Eichner, Thomas & Pethig, Rudiger, 2007. "Optimal pest control in agriculture," Journal of Economic Dynamics and Control, Elsevier, vol. 31(12), pages 3965-3985, December.
    6. Xie, Hualin & He, Yafen & Zhang, Ning & Lu, Hua, 2017. "Spatiotemporal changes and fragmentation of forest land in Jiangxi Province, China," Journal of Forest Economics, Elsevier, vol. 29(PA), pages 4-13.
    7. Andreas Löschel & Dirk Rübbelke, 2014. "On the Voluntary Provision of International Public Goods," Economica, London School of Economics and Political Science, vol. 81(322), pages 195-204, April.
    8. Walls, Margaret & Riddle, Anne, 2012. "Biodiversity, Ecosystem Services, and Land Use: Comparing Three Federal Policies," RFF Working Paper Series dp-12-08, Resources for the Future.
    9. Guy Meunier, 2020. "Land-sparing vs land-sharing with incomplete policies [Rethinking the causes of deforestation: lessons from economic models]," European Review of Agricultural Economics, Oxford University Press and the European Agricultural and Applied Economics Publications Foundation, vol. 47(2), pages 438-466.
    10. Eichner, Thomas & Pethig, Rudiger, 2006. "Economic land use, ecosystem services and microfounded species dynamics," Journal of Environmental Economics and Management, Elsevier, vol. 52(3), pages 707-720, November.
    11. Hertzler, Greg, 2008. "Dynamic Contingent Valuation and Choice Modelling for Ecosystem Services," 2008 Conference (52nd), February 5-8, 2008, Canberra, Australia 6024, Australian Agricultural and Resource Economics Society.
    12. Franco Mariuzzo & Patrick Paul Walsh & Ciara Whelan, 2004. "EU Merger Control in Differentiated Product Industries," CESifo Working Paper Series 1312, CESifo.
    13. Chen, Yong & Irwin, Elena G. & Jayaprakash, Ciriyam, 2009. "Dynamic modeling of environmental amenity-driven migration with ecological feedbacks," Ecological Economics, Elsevier, vol. 68(10), pages 2498-2510, August.
    14. Bartus, Gábor, 2008. "Van-e a gazdasági tevékenységeknek termodinamikai korlátja? [Is there a thermodynamic constraint on economic activity?]," Közgazdasági Szemle (Economic Review - monthly of the Hungarian Academy of Sciences), Közgazdasági Szemle Alapítvány (Economic Review Foundation), vol. 0(11), pages 1010-1022.
    15. Yoshida, Jun & Imoto, Tomoko & Kono, Tatsuhito, 2022. "Agricultural and urban land use policies to manage human–wildlife conflicts," MPRA Paper 115375, University Library of Munich, Germany.
    16. Thomas Christiaans & Thomas Eichner & Rüdiger Pethig, 2005. "A Micro-Level 'Consumer Approach' to Species Population Dynamics," CESifo Working Paper Series 1530, CESifo.
    17. Yoshida, Jun & Kono, Tatsuhito, 2022. "Cities and biodiversity: Spatial efficiency of land use," Journal of Economic Behavior & Organization, Elsevier, vol. 197(C), pages 685-705.
    18. Chen, Yong & Jayaprakash, Ciriyam & Irwin, Elena, 2012. "Threshold management in a coupled economic–ecological system," Journal of Environmental Economics and Management, Elsevier, vol. 64(3), pages 442-455.

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    More about this item

    Keywords

    land use; ecosystem dynamics; biodiversity; ecosystem services;
    All these keywords.

    JEL classification:

    • Q24 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Renewable Resources and Conservation - - - Land
    • Q57 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Environmental Economics - - - Ecological Economics

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