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Global food security in 2050: the role of agricultural productivity and climate change

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  • Baldos, Uris Lantz C.
  • Hertel, Thomas W.

Abstract

In this paper, we examine how the complexities introduced by trends in agricultural productivity and climate change affect the future of global food security. We use a partial equilibrium model of global agriculture incorporating a food security module that links changes in the average dietary energy intake to shifts in the full caloric distribution, allowing us to compute changes in the incidence, headcount and average depth of malnutrition. After validating the model against an historical period, we implement a series of future scenarios to understand the impacts of key exogenous drivers on selected food security outcomes. Our results show improvements in global food security for the period 2006–2050. Despite growing population and increased biofuel demand, baseline income growth, coupled with projected increases in agricultural productivity lead to a 24 per cent rise in global average dietary energy intake. Consequently, the incidence of malnutrition falls by 84 per cent, lifting more than half a billion people out of extreme hunger. However, these results hinge heavily on agricultural productivity growth. Without such growth, there could be a substantial setback on food security improvements. Climate change adds uncertainty to these projections, depending critically on the crop yield impacts of increasing CO2 concentrations in the atmosphere.

Suggested Citation

  • Baldos, Uris Lantz C. & Hertel, Thomas W., 2014. "Global food security in 2050: the role of agricultural productivity and climate change," Australian Journal of Agricultural and Resource Economics, Australian Agricultural and Resource Economics Society, vol. 58(4), October.
  • Handle: RePEc:ags:aareaj:280194
    DOI: 10.22004/ag.econ.280194
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    1. Babu, Suresh Chandra & Tashmatov, Alisher, 1999. "Attaining food security in Central Asia--emerging issues and challenges for policy research," Food Policy, Elsevier, vol. 24(4), pages 357-362, August.
    2. Schneider, Uwe A. & Havlík, Petr & Schmid, Erwin & Valin, Hugo & Mosnier, Aline & Obersteiner, Michael & Böttcher, Hannes & Skalský, Rastislav & Balkovic, Juraj & Sauer, Timm & Fritz, Steffen, 2011. "Impacts of population growth, economic development, and technical change on global food production and consumption," Agricultural Systems, Elsevier, vol. 104(2), pages 204-215, February.
    3. Siwa Msangi & Mandy Ewing & Mark Rosegrant, 2010. "Biofuels and Agricultural Growth: Challenges for Developing Agricultural Economies and Opportunities for Investment," Natural Resource Management and Policy, in: Madhu Khanna & Jürgen Scheffran & David Zilberman (ed.), Handbook of Bioenergy Economics and Policy, chapter 0, pages 73-90, Springer.
    4. McCalla, Alex F & Revoredo, Cesar L., 2001. "Prospects for global food security: a critical appraisal of past projections and predictions," 2020 vision discussion papers 35, International Food Policy Research Institute (IFPRI).
    5. Lopez, Humberto & Serven, Luis, 2006. "A normal relationship ? Poverty, growth, and inequality," Policy Research Working Paper Series 3814, The World Bank.
    6. McCalla, Alex F. & Revoredo, Cesar L., 2001. "Prospects for global food security," 2020 vision briefs 71, International Food Policy Research Institute (IFPRI).
    7. Ludena, Carlos E. & Hertel, Thomas W. & Preckel, Paul V. & Foster, Kenneth A. & Nin Pratt, Alejandro, 2006. "Productivity Growth and Convergence in Crop, Ruminant and Non-Ruminant Production: Measurement and Forecasts," 2006 Annual Meeting, August 12-18, 2006, Queensland, Australia 25392, International Association of Agricultural Economists.
    8. Foster, James & Greer, Joel & Thorbecke, Erik, 1984. "A Class of Decomposable Poverty Measures," Econometrica, Econometric Society, vol. 52(3), pages 761-766, May.
    9. Pingali, Prabhu, 2007. "Westernization of Asian diets and the transformation of food systems: Implications for research and policy," Food Policy, Elsevier, vol. 32(3), pages 281-298, June.
    10. Alexandratos, Nikos & Bruinsma, Jelle, 2012. "World agriculture towards 2030/2050: the 2012 revision," ESA Working Papers 288998, Food and Agriculture Organization of the United Nations, Agricultural Development Economics Division (ESA).
    11. Gerald C. Nelson & Dominique Mensbrugghe & Helal Ahammad & Elodie Blanc & Katherine Calvin & Tomoko Hasegawa & Petr Havlik & Edwina Heyhoe & Page Kyle & Hermann Lotze-Campen & Martin Lampe & Daniel Ma, 2014. "Agriculture and climate change in global scenarios: why don't the models agree," Agricultural Economics, International Association of Agricultural Economists, vol. 45(1), pages 85-101, January.
    12. Claudia Rokx & Rae Galloway & Lynn Brown, 2002. "Prospects for Improving Nutrition in Eastern Europe and Central Asia," World Bank Publications - Books, The World Bank Group, number 14009.
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    Food Security and Poverty;

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