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Environmental Kuznets Curve and Ecological Footprint: A Time Series Analysis

Author

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  • Marie-Sophie Hervieux

    (LEMNA - Laboratoire d'économie et de management de Nantes Atlantique - IEMN-IAE Nantes - Institut d'Économie et de Management de Nantes - Institut d'Administration des Entreprises - Nantes - UN - Université de Nantes)

  • Olivier Darné

    (LEMNA - Laboratoire d'économie et de management de Nantes Atlantique - IEMN-IAE Nantes - Institut d'Économie et de Management de Nantes - Institut d'Administration des Entreprises - Nantes - UN - Université de Nantes)

Abstract

In this paper we examine the Environmental Kuznets Curve (EKC) hypothesis using the Ecological Footprint (EF), a more comprehensive indicator of environmental degradation, through a time-series analysis for 15 countries covering the 1961-2007 period. We rst test the EKC hypothesis from traditional linear, quadratic and cubic functions, with standard and logarithmic speci cations. The EKC hypothesis is only supported for Chile and Uruguay with the quadratic functional form. We also nd that most of the countries exhibit a positive linear relationship between the EF and GDP. Finally, we study the long-term relationship between the EF and GDP. The results show evidence of long-term relationship between income and EF for some countries (Brazil, Chile, China, and Uruguay). More particularly, Spain displays a cubic relationship, in an N-shaped function form.

Suggested Citation

  • Marie-Sophie Hervieux & Olivier Darné, 2013. "Environmental Kuznets Curve and Ecological Footprint: A Time Series Analysis," Working Papers hal-00781958, HAL.
  • Handle: RePEc:hal:wpaper:hal-00781958
    Note: View the original document on HAL open archive server: https://hal.science/hal-00781958
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    Cited by:

    1. Shokoohi, Zeinab & Dehbidi, Navid Kargar & Tarazkar, Mohammad Hassan, 2022. "Energy intensity, economic growth and environmental quality in populous Middle East countries," Energy, Elsevier, vol. 239(PC).
    2. Koç, Pınar & Gülmez, Ahmet, 2021. "Analysis of relationships between nanotechnology applications, mineral saving and ecological footprint: Evidence from panel fourier cointegration and causality tests," Resources Policy, Elsevier, vol. 74(C).
    3. Muhammed Ashiq Villanthenkodath & Mohd Arshad Ansari & Daniel Balsalobre-Lorente & Elma Satrovic, 2024. "The Comprehensive Impact of Economic Growth on Environmental Quality: Insight Established on Material, Carbon, and Ecological Footprint," SN Operations Research Forum, Springer, vol. 5(3), pages 1-34, September.
    4. Cüneyt Kılıç & Semanur Soyyiğit & Seda Bayrakdar, 2024. "Economic Complexity, Ecological Footprint, and the Environmental Kuznets Curve: Findings from Selected Industrialized Countries," Journal of the Knowledge Economy, Springer;Portland International Center for Management of Engineering and Technology (PICMET), vol. 15(2), pages 7402-7427, June.
    5. Iftikhar Yasin & Nawaz Ahmad & M. Aslam Chaudhary, 2020. "Catechizing the Environmental-Impression of Urbanization, Financial Development, and Political Institutions: A Circumstance of Ecological Footprints in 110 Developed and Less-Developed Countries," Social Indicators Research: An International and Interdisciplinary Journal for Quality-of-Life Measurement, Springer, vol. 147(2), pages 621-649, January.
    6. Selim J rgen Ergun & Maria Fernanda Rivas, 2020. "Testing the Environmental Kuznets Curve Hypothesis in Uruguay using Ecological Footprint as a Measure of Environmental Degradation," International Journal of Energy Economics and Policy, Econjournals, vol. 10(4), pages 473-485.

    More about this item

    Keywords

    Environmental Kuznets Curve; Ecological Footprint;

    JEL classification:

    • Q0 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - General
    • Q5 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Environmental Economics

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