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Characterizing the Drivers of Global Food Trade Growth in 21th Century

Author

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  • Silvia Andrés González-Moralejo
  • Juan Francisco López Miquel

Abstract

21st century is characterised by a steady growth in the global demand for basic foodstuffs. This paper reviews the drivers of this growth, through a descriptive analysis of the main literature on the subject, in order to synthesize the most relevant information generated by researchers and position the current state of the issue. The results of the analysis suggest that emerging economies have taken over in the increase of food imports; this is due to the potential of countries such as China, India, Brazil and Russia, which have become propellers of the global economy. From the developing countries, the increase in population and income are the driving forces behind the dynamism of world food demand, whose direct consequences are the increase in per capita consumption, the acceleration of the urbanization process in these regions and the increase in the consumption of products with greater added value. In developed economies, increases in per capita income do not translate into increases in the demand for food; rather, its role with respect to global demand is to promote it as they deepen the production of biofuels, the liberalization of the agricultural sector and the signing of trade agreements. Finally, the work concludes by warning about the uncertainties that surround the demand for food imports, including the crucial role played by climate change.

Suggested Citation

  • Silvia Andrés González-Moralejo & Juan Francisco López Miquel, 2024. "Characterizing the Drivers of Global Food Trade Growth in 21th Century," Journal of Agricultural Science, Canadian Center of Science and Education, vol. 11(10), pages 1-14, April.
  • Handle: RePEc:ibn:jasjnl:v:11:y:2024:i:10:p:14
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    References listed on IDEAS

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    1. Gal Hochman & Deepak Rajagopal & David Zilberman, 2011. "The Effect of Biofuels on the International Oil Market," Applied Economic Perspectives and Policy, Agricultural and Applied Economics Association, vol. 33(3), pages 402-427.
    2. Hertel, Thomas W., 2015. "The Challenges of Sustainably Feeding a Growing Planet," 2015 Conference (59th), February 10-13, 2015, Rotorua, New Zealand 202525, Australian Agricultural and Resource Economics Society.
    3. Fan, Shenggen & Headey, Derek, 2010. "Reflections on the global food crisis: How did it happen? How has it hurt? And how can we prevent the next one?," Research reports 165, International Food Policy Research Institute (IFPRI).
    4. Gal Hochman & Deepak Rajagopal & David Zilberman, 2011. "The Effect of Biofuels on the International Oil Market-super- ," Applied Economic Perspectives and Policy, Agricultural and Applied Economics Association, vol. 33(3), pages 402-427.
    5. Larson, Bruce A. & Scatasta, Sara, 2005. "Modeling the impacts of environmental policies on agricultural imports," Journal of Policy Modeling, Elsevier, vol. 27(5), pages 565-574, July.
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    JEL classification:

    • R00 - Urban, Rural, Regional, Real Estate, and Transportation Economics - - General - - - General
    • Z0 - Other Special Topics - - General

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