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Global food stability and its socio‐economic determinants towards sustainable development goal 2 (Zero Hunger)

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  • Xi Chen
  • Chenyang Shuai
  • Ya Wu

Abstract

Food security is guaranteed only when unexpected shocks, e.g., epidemics, economic crises, and extreme climates can be well responded to the stable food supply. Food stability, which is not exclusive of the status that we have enough food stock to satisfy a population's food demand to avoid people from hunger for a certain period until the regular food supply recovers, has never been quantified. Here, we propose a new metric, the ratio of stock to demand, to quantify how domestic food consumption need of a population can be satisfied by the domestic food stock. This study collects the data available for 117 economies from 1991 to 2018 to analyze the grain stock‐demand ratio (GSDR) and its determinants of the world. In terms of GSDR, global food stability has increased. In particular, the increased stability found expression in Asia and Africa. The increased stability was mainly driven by the growth of grain stock‐production ratio (GSPR) and grain cropping yield (GCY) most significantly from 2000 to 2010 and the decrease of average labor input in unit agricultural land (ALI) majorly from 1991 to 2000. Meanwhile, GSDR was pulled down significantly by the sharp fall of grain crop land (% of total agricultural land) (GCL) from the year 1991 to 2000 and continuous decrease of employment in agriculture (% of total employment) (EIA) particularly from 2000 to 2018. Based on the results, policy suggestions are proposed towards sustainable development goal 2 (Zero Hunger).

Suggested Citation

  • Xi Chen & Chenyang Shuai & Ya Wu, 2023. "Global food stability and its socio‐economic determinants towards sustainable development goal 2 (Zero Hunger)," Sustainable Development, John Wiley & Sons, Ltd., vol. 31(3), pages 1768-1780, June.
  • Handle: RePEc:wly:sustdv:v:31:y:2023:i:3:p:1768-1780
    DOI: 10.1002/sd.2482
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    1. R. P. Pradhan, 2007. "Indian Agriculture in the Globalization Era: The Performance and Determinants," Journal of Global Economy, Research Centre for Social Sciences,Mumbai, India, vol. 3(1), pages 3-12, February.
    2. Dr Kevin Z. Chen, Dr Shenggen Fan and Dr Suresh Chandra Babu & S. Mahendra Dev & Funing Zhong, 2015. "Trade and stock management to achieve national food security in India and China?," China Agricultural Economic Review, Emerald Group Publishing Limited, vol. 7(4), pages 641-654, November.
    3. Xiang, Xiwang & Ma, Minda & Ma, Xin & Chen, Liming & Cai, Weiguang & Feng, Wei & Ma, Zhili, 2022. "Historical decarbonization of global commercial building operations in the 21st century," Applied Energy, Elsevier, vol. 322(C).
    4. S. Mahendra Dev & Funing Zhong, 2015. "Trade and stock management to achieve national food security in India and China?," China Agricultural Economic Review, Emerald Group Publishing Limited, vol. 7(4), pages 641-654, November.
    5. Umar Ijaz Ahmed & Liu Ying & Muhammad Khalid Bashir & Muhammad Abid & Farhad Zulfiqar, 2017. "Status and determinants of small farming households' food security and role of market access in enhancing food security in rural Pakistan," PLOS ONE, Public Library of Science, vol. 12(10), pages 1-15, October.
    6. Ang, B.W & Zhang, F.Q & Choi, Ki-Hong, 1998. "Factorizing changes in energy and environmental indicators through decomposition," Energy, Elsevier, vol. 23(6), pages 489-495.
    7. Tongwei Qiu & S.T. Boris Choy & Biliang Luo, 2022. "Is small beautiful? Links between agricultural mechanization services and the productivity of different-sized farms," Applied Economics, Taylor & Francis Journals, vol. 54(4), pages 430-442, January.
    8. Pooja Sharma & Ashok Gulati, 2015. "Approaches to Food Security in Brazil, China, India, Malaysia, Mexico, and Nigeria: Lessons for Developing Countries," Working Papers id:6427, eSocialSciences.
    9. Olufemi Daniel Bolarinwa & Kolawole Ogundari & Adebayo B. Aromolaran, 2020. "Intertemporal evaluation of household food security and its determinants: evidence from Rwanda," Food Security: The Science, Sociology and Economics of Food Production and Access to Food, Springer;The International Society for Plant Pathology, vol. 12(1), pages 179-189, February.
    10. Thomas Wessel, 1984. "The agricultural foundations of civilization," Agriculture and Human Values, Springer;The Agriculture, Food, & Human Values Society (AFHVS), vol. 1(2), pages 9-12, March.
    11. Xinping Chen & Zhenling Cui & Mingsheng Fan & Peter Vitousek & Ming Zhao & Wenqi Ma & Zhenlin Wang & Weijian Zhang & Xiaoyuan Yan & Jianchang Yang & Xiping Deng & Qiang Gao & Qiang Zhang & Shiwei Guo , 2014. "Producing more grain with lower environmental costs," Nature, Nature, vol. 514(7523), pages 486-489, October.
    12. Paudel, Gokul P. & KC, Dilli Bahadur & Rahut, Dil Bahadur & Justice, Scott E. & McDonald, Andrew J., 2019. "Scale-appropriate mechanization impacts on productivity among smallholders: Evidence from rice systems in the mid-hills of Nepal," Land Use Policy, Elsevier, vol. 85(C), pages 104-113.
    13. Xuhui Wang & Chuang Zhao & Christoph Müller & Chenzhi Wang & Philippe Ciais & Ivan Janssens & Josep Peñuelas & Senthold Asseng & Tao Li & Joshua Elliott & Yao Huang & Laurent Li & Shilong Piao, 2020. "Emergent constraint on crop yield response to warmer temperature from field experiments," Nature Sustainability, Nature, vol. 3(11), pages 908-916, November.
    14. Kimenju, Simon Chege & De Groote, Hugo, 2010. "Economic Analysis of Alternative Maize Storage Technologies in Kenya," 2010 AAAE Third Conference/AEASA 48th Conference, September 19-23, 2010, Cape Town, South Africa 96419, African Association of Agricultural Economists (AAAE).
    15. Yuanyuan Chen & Changhe Lu, 2018. "A Comparative Analysis on Food Security in Bangladesh, India and Myanmar," Sustainability, MDPI, vol. 10(2), pages 1-13, February.
    16. Katrin Reincke & Elisa Vilvert & Anja Fasse & Frieder Graef & Stefan Sieber & Marcos A. Lana, 2018. "Key factors influencing food security of smallholder farmers in Tanzania and the role of cassava as a strategic crop," Food Security: The Science, Sociology and Economics of Food Production and Access to Food, Springer;The International Society for Plant Pathology, vol. 10(4), pages 911-924, August.
    17. Bashir, Muhammad Khalid & Schilizzi, Steven & Pandit, Ram, 2012. "Food Security and Its Determinants at the Crossroads in Punjab, Pakistan," Working Papers 126033, University of Western Australia, School of Agricultural and Resource Economics.
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