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Transboundary Pollution Externalities: Think Globally, Act Locally?

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  • Davide La Torre
  • Danilo Liuzzi
  • Simone Marsiglio

Abstract

We analyze the implications of transboundary pollution externalities on environmental policymaking in a spatial and finite time horizon setting. We focus on a simple regional optimal pollution control problem in order to compare the global and local solutions in which, respectively, the transboundary externality is and is not taken into account in the determination of the optimal policy by individual local policymakers. We show that the local solution is suboptimal and as such a global approach to environmental problems is effectively needed. Our conclusions hold true in different frameworks, including situations in which the spatial domain is either bounded or unbounded, and situations in which macroeconomic-environmental feedback effects are taken into account. We also show that if every local economy implements an environmental policy stringent enough, then the global average level of pollution will fall. If this is the case, over the long run the entire global economy will be able to achieve a completely pollution-free status.

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  • Davide La Torre & Danilo Liuzzi & Simone Marsiglio, 2019. "Transboundary Pollution Externalities: Think Globally, Act Locally?," Papers 1910.04469, arXiv.org.
  • Handle: RePEc:arx:papers:1910.04469
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    Cited by:

    1. Boucekkine, Raouf & Fabbri, Giorgio & Federico, Salvatore & Gozzi, Fausto, 2021. "From firm to global-level pollution control: The case of transboundary pollution," European Journal of Operational Research, Elsevier, vol. 290(1), pages 331-345.
    2. Raouf Boucekkine & Giorgio Fabbri & Salvatore Federico & Fausto Gozzi, 2018. "Geographic Environmental Kuznets Curves: The Optimal Growth Linear-Quadratic Case," AMSE Working Papers 1813, Aix-Marseille School of Economics, France.
    3. Boucekkine, Raouf & Ruan, Weihua & Zou, Benteng, 2023. "The irreversible pollution game," Journal of Environmental Economics and Management, Elsevier, vol. 120(C).
    4. Boucekkine, Raouf & Fabbri, Giorgio & Federico, Salvatore & Gozzi, Fausto, 2022. "Managing spatial linkages and geographic heterogeneity in dynamic models with transboundary pollution," Journal of Mathematical Economics, Elsevier, vol. 98(C).
    5. Boucekkine, Raouf & Fabbri, Giorgio & Federico, Salvatore & Gozzi, Fausto, 2021. "From firm to global-level pollution control: The case of transboundary pollution," European Journal of Operational Research, Elsevier, vol. 290(1), pages 331-345.
    6. Andrea Caravaggio & Mauro Sodini, 2020. "Local Environmental Quality and Heterogeneity in an OLG Agent-Based Model with Network Externalities," Discussion Papers 2020/257, Dipartimento di Economia e Management (DEM), University of Pisa, Pisa, Italy.
    7. Simone Marsiglio & Nahid Masoudi, 2022. "Reclamation of a resource extraction site: A differential game approach," Metroeconomica, Wiley Blackwell, vol. 73(3), pages 770-802, July.
    8. Shoji Haruna & Rajeev K. Goel, 2023. "Transboundary Pollution Control with Both Production and Consumption Emissions," CESifo Working Paper Series 10667, CESifo.
    9. Davide La Torre & Danilo Liuzzi & Simone Marsiglio, 2022. "Geographical heterogeneities and externalities in an epidemiological‐macroeconomic framework," Journal of Public Economic Theory, Association for Public Economic Theory, vol. 24(5), pages 1154-1181, October.
    10. Andrea Caravaggio & Mauro Sodini, 2022. "Local environmental quality and heterogeneity in an OLG agent-based model with spatial externalities," Journal of Economic Interaction and Coordination, Springer;Society for Economic Science with Heterogeneous Interacting Agents, vol. 17(1), pages 287-317, January.

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