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Assessing the land use changes and greenhouse gas emissions of biofuels: elucidating the crop yield effects

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  • Alexandre Gohin

    (SMART-LERECO - Structures et Marché Agricoles, Ressources et Territoires - INRA - Institut National de la Recherche Agronomique - AGROCAMPUS OUEST)

Abstract

Available estimates of the land use changes and greenhouse gas emissions of biofuels fer significantly across economic models. This paper focuses on the impacts of price-induced yield assumptions on U.S. corn ethanol results. These assumptions have dramatic impacts within the FAPRI modeling framework, but limited ones within the GTAP-BIO model. I show that these sensitivity to yield assumption results are not comparable because the ex ante land and production elasticities assumed in these two models are not comparable. The analysis reveals that the current focus solely on the value of the price-induced yield elasticity can be misleading.

Suggested Citation

  • Alexandre Gohin, 2014. "Assessing the land use changes and greenhouse gas emissions of biofuels: elucidating the crop yield effects," Post-Print hal-01209050, HAL.
  • Handle: RePEc:hal:journl:hal-01209050
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    Citations

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    Cited by:

    1. T. Brunelle & P. Dumas & W. Ben Aoun & Benoit Gabrielle, 2018. "Unravelling Land-Use Change Mechanisms at Global and Regional Scales," Biophysical Economics and Resource Quality, Springer, vol. 3(3), pages 1-14, September.
    2. Alexandre Gohin, 2015. "Understanding the revised land use changes and greenhouse gas emissions induced by biofuels," Working Papers SMART 15-08, INRAE UMR SMART.
    3. Gohin, Alexandre, 2015. "Understanding the revised land use changes and greenhouse gas emissions induced by biofuels," Working Papers 208914, Institut National de la recherche Agronomique (INRA), Departement Sciences Sociales, Agriculture et Alimentation, Espace et Environnement (SAE2).
    4. Iglesias Pinedo, Wilman J., 2021. "The impact of Renewable Energy Standards on the biomass supply and agricultural land demand in the US Great Plains Region," 2021 Annual Meeting, August 1-3, Austin, Texas 314085, Agricultural and Applied Economics Association.
    5. Hyunseok Kim & GianCarlo Moschini, 2018. "The Dynamics of Supply: U.S. Corn and Soybeans in the Biofuel Era," Land Economics, University of Wisconsin Press, vol. 94(4), pages 593-613.
    6. Gohin, Alexandre, 2016. "Understanding the revised CARB estimates of the land use changes and greenhouse gas emissions induced by biofuels," Renewable and Sustainable Energy Reviews, Elsevier, vol. 56(C), pages 402-412.
    7. Sampson, Gabriel S. & Al-Sudani, Amer & Bergtold, Jason, 2021. "Local irrigation response to ethanol expansion in the High Plains Aquifer," Resource and Energy Economics, Elsevier, vol. 66(C).
    8. Debnath, Deepayan & Whistance, Jarrett & Thompson, Wyatt, 2017. "The causes of two-way U.S.–Brazil ethanol trade and the consequences for greenhouse gas emission," Energy, Elsevier, vol. 141(C), pages 2045-2053.
    9. Basak Bayramoglu & Jean-François Jacques, 2016. "The economic and environmental effects of a biofuel mandate policy: the case of France [Les effets économiques et environnementaux d’une politique d’incorporation obligatoire de biocarburants : le ," Post-Print hal-02877013, HAL.
    10. Ehsanreza Sajedinia & Wallace E. Tyner, 2021. "Use of General Equilibrium Models in Evaluating Biofuels Policies," World Scientific Book Chapters, in: Peter Dixon & Joseph Francois & Dominique van der Mensbrugghe (ed.), POLICY ANALYSIS AND MODELING OF THE GLOBAL ECONOMY A Festschrift Celebrating Thomas Hertel, chapter 14, pages 437-465, World Scientific Publishing Co. Pte. Ltd..
    11. Sajedinia, Ehsanreza & Tyner, Wally, 2017. "Use of General Equilibrium Models in Evaluating Biofuels Policies," Conference papers 332885, Purdue University, Center for Global Trade Analysis, Global Trade Analysis Project.

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    Keywords

    responses; demand;

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