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Impact of climate change on food security in India: an evidence from autoregressive distributed lag model

Author

Listed:
  • Biswabhusan Bhuyan

    (Department of Economics, Maharaja Purna Chandra (Autonomous) College)

  • Ranjan Kumar Mohanty

    (Xavier Institute of Management, XIM University)

  • Subhamitra Patra

    (Goa Institute of Management)

Abstract

Food security is a critical global issue, particularly in India, and it is further exacerbated by the challenges posed by climate change. This study aims to examine the influence of climate change on food security in India, utilizing annual time series data spanning from 1994 to 2019. Using the Autoregressive Distributed Lag (ARDL) method, the study investigates the relationship between climate variables, area under cultivation, population growth, agricultural subsidies, and food production. The findings indicate that expanding the cultivation area for food crops significantly enhances food security, with a 1% increase leading to a 2.4% increase in the short run and a 3.2% increase in the long run. Conversely, population growth has a detrimental effect on food security, with a 1% increase resulting in a decline of 3.8% in the short run and 7.8% in the long run. Climate variables also play a crucial role, as rising temperatures adversely impact food security, leading to a decrease of 1.2% in the short run and 1.7% in the long run for every 1% temperature increase. Rainfall, on the other hand, does not significantly affect food security in the long run, but a decrease in rainfall in the preceding period negatively impacts food security in the short run. Furthermore, agricultural subsidies, particularly fertilizer subsidies, impact food security positively in the short run but have adverse effects in the long run. The study highlights the importance of sustainable land management, temperature control measures, water reservation, and effective agricultural subsidies to address food security challenges. These findings provide valuable insights for policymakers in designing effective strategies to ensure food security in India.

Suggested Citation

  • Biswabhusan Bhuyan & Ranjan Kumar Mohanty & Subhamitra Patra, 2025. "Impact of climate change on food security in India: an evidence from autoregressive distributed lag model," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 27(3), pages 6349-6369, March.
  • Handle: RePEc:spr:endesu:v:27:y:2025:i:3:d:10.1007_s10668-023-04139-3
    DOI: 10.1007/s10668-023-04139-3
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    1. Barrios, Salvador & Ouattara, Bazoumana & Strobl, Eric, 2008. "The impact of climatic change on agricultural production: Is it different for Africa?," Food Policy, Elsevier, vol. 33(4), pages 287-298, August.
    2. Abbas Ali Chandio & Yuansheng Jiang & Asad Amin & Munir Ahmad & Waqar Akram & Fayyaz Ahmad, 2023. "Climate change and food security of South Asia: fresh evidence from a policy perspective using novel empirical analysis," Journal of Environmental Planning and Management, Taylor & Francis Journals, vol. 66(1), pages 169-190, January.
    3. Dethier, Jean-Jacques & Effenberger, Alexandra, 2012. "Agriculture and development: A brief review of the literature," Economic Systems, Elsevier, vol. 36(2), pages 175-205.
    4. Jayatilleke S. Bandara & Yiyong Cai, 2014. "The impact of climate change on food crop productivity, food prices and food security in South Asia," Economic Analysis and Policy, Elsevier, vol. 44(4), pages 451-465.
    5. Kumar, Ajay & Sharma, Pritee, 2013. "Impact of climate variation on agricultural productivity and food security in rural India," Economics Discussion Papers 2013-43, Kiel Institute for the World Economy (IfW Kiel).
    6. M. Hashem Pesaran & Yongcheol Shin & Richard J. Smith, 2001. "Bounds testing approaches to the analysis of level relationships," Journal of Applied Econometrics, John Wiley & Sons, Ltd., vol. 16(3), pages 289-326.
    7. Bhuyan, Biswabhusan & Sahoo, Bimal Kishore & Suar, Damodar, 2020. "Nutritional status, poverty, and relative deprivation among socio-economic and gender groups in India: Is the growth inclusive?," World Development Perspectives, Elsevier, vol. 18(C).
    8. Abera Demeke & Alwin Keil & Manfred Zeller, 2011. "Using panel data to estimate the effect of rainfall shocks on smallholders food security and vulnerability in rural Ethiopia," Climatic Change, Springer, vol. 108(1), pages 185-206, September.
    9. Julius Kotir, 2011. "Climate change and variability in Sub-Saharan Africa: a review of current and future trends and impacts on agriculture and food security," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 13(3), pages 587-605, June.
    10. Timmer, C. Peter, 1995. "Getting agriculture moving: do markets provide the right signals?," Food Policy, Elsevier, vol. 20(5), pages 455-472, October.
    11. Biswabhusan Bhuyan & Bimal Kishore Sahoo & Damodar Suar, 2020. "Quantile Regression Analysis of Predictors of Calorie Demand in India: An Implication for Sustainable Development Goals," Journal of Quantitative Economics, Springer;The Indian Econometric Society (TIES), vol. 18(4), pages 825-859, December.
    12. Biswabhusan Bhuyan & Subhamitra Patra & Ranjan Kumar Bhuian, 2020. "Market Adaptability and Evolving Predictability of Stock Returns: An Evidence from India," Asia-Pacific Financial Markets, Springer;Japanese Association of Financial Economics and Engineering, vol. 27(4), pages 605-619, December.
    13. Maximilian Auffhammer & V. Ramanathan & Jeffrey Vincent, 2012. "Climate change, the monsoon, and rice yield in India," Climatic Change, Springer, vol. 111(2), pages 411-424, March.
    14. Subhamitra Patra & Gourishankar S. Hiremath, 2022. "An Entropy Approach to Measure the Dynamic Stock Market Efficiency," Journal of Quantitative Economics, Springer;The Indian Econometric Society (TIES), vol. 20(2), pages 337-377, June.
    15. Ranjan Kumar Mohanty & Sidheswar Panda & Biswabhusan Bhuyan, 2020. "Does Defence Spending and its Composition Affect Economic Growth in India?," Margin: The Journal of Applied Economic Research, National Council of Applied Economic Research, vol. 14(1), pages 62-85, February.
    16. Mozumdar, Lavlu, 2012. "Agricultural productivity and food security in the developing world," Bangladesh Journal of Agricultural Economics, Bangladesh Agricultural University, vol. 35(01-2).
    17. Birthal, P.S. & Khan, T.M. & Negi, D.S. & Agarwal, S., 2014. "Impact of Climate Change on Yields of Major Food Crops in India: Implications for Food Security," Agricultural Economics Research Review, Agricultural Economics Research Association (India), vol. 27(2).
    18. Md. Abdur Rashid Sarker & Khorshed Alam & Jeff Gow, 2014. "Assessing the effects of climate change on rice yields: An econometric investigation using Bangladeshi panel data," Economic Analysis and Policy, Elsevier, vol. 44(4), pages 405-416.
    19. Bishwa Bhaskar Choudhary & Smita Sirohi, 2022. "Understanding vulnerability of agricultural production system to climatic stressors in North Indian Plains: a meso-analysis," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 24(12), pages 13522-13541, December.
    20. BEN ZAIED, YOUNES & Zouabi, Oussama, 2015. "Climate change impacts on agriculture: A panel cointegration approach and application to Tunisia," MPRA Paper 64711, University Library of Munich, Germany.
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    More about this item

    Keywords

    Food security; Temperature; Rainfall; Fertilizer subsidies; ARDL; India;
    All these keywords.

    JEL classification:

    • Q11 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Agriculture - - - Aggregate Supply and Demand Analysis; Prices
    • Q15 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Agriculture - - - Land Ownership and Tenure; Land Reform; Land Use; Irrigation; Agriculture and Environment
    • Q18 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Agriculture - - - Agricultural Policy; Food Policy; Animal Welfare Policy
    • Q25 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Renewable Resources and Conservation - - - Water
    • C32 - Mathematical and Quantitative Methods - - Multiple or Simultaneous Equation Models; Multiple Variables - - - Time-Series Models; Dynamic Quantile Regressions; Dynamic Treatment Effect Models; Diffusion Processes; State Space Models

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