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Five Decades of Productivity and Efficiency Changes in World Agriculture (1969–2013)

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  • Asif Reza Anik

    (Department of Agricultural Economics, Bangabandhu Sheikh Mujibur Rahman Agricultural University (BSMRAU), Salna, Gazipur 1706, Bangladesh)

  • Sanzidur Rahman

    (Faculty of Economics, Shandong University of Finance and Economics, Jinan 250001, China
    Plymouth Business School, University of Plymouth, Plymouth, Drake Circus, Plymouth PL4 8AA, UK)

  • Jaba Rani Sarker

    (Department of Agricultural Economics, Bangabandhu Sheikh Mujibur Rahman Agricultural University (BSMRAU), Salna, Gazipur 1706, Bangladesh)

Abstract

The present study applied the Färe–Primont index approach to estimate the total factor productivity (TFP) growth of world agriculture, covering the period 1969–2013. Overall, the world agricultural TFP grew at a rate of 0.44% p.a. This growth was mainly contributed to by technological progress and mix efficiency changes, while the contributions of technical efficiency and scale efficiency changes were negligible. TFP growth varied across regions, with South Asia at the top of the list (1.05% p.a.), and East Asia and the Pacific (0.18% p.a.) at the bottom. TFP components exerted differential influences amongst regions. For instance, mix efficiency played a dominant role in Sub-Saharan Africa, the Middle East and North Africa, whereas it was technical efficiency change in Latin America and the Caribbean region. The paper argues for region specific policy interventions emphasizing technical progress through investment in R&D and price and non-price interventions to improve economies of scope and scale of operation in the agricultural sector.

Suggested Citation

  • Asif Reza Anik & Sanzidur Rahman & Jaba Rani Sarker, 2020. "Five Decades of Productivity and Efficiency Changes in World Agriculture (1969–2013)," Agriculture, MDPI, vol. 10(6), pages 1-20, June.
  • Handle: RePEc:gam:jagris:v:10:y:2020:i:6:p:200-:d:366567
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    1. Shenggen Fan & Peter Hazell & Sukhadeo Thorat, 2000. "Government Spending, Growth and Poverty in Rural India," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 82(4), pages 1038-1051.
    2. D. S. Prasada Rao & T. J. Coelli, 2004. "Catch-up and Convergence in Global Agricultural Productivity," Indian Economic Review, Department of Economics, Delhi School of Economics, vol. 39(1), pages 123-148, January.
    3. Lajos Baráth & Imre Fertő, 2017. "Productivity and Convergence in European Agriculture," Journal of Agricultural Economics, Wiley Blackwell, vol. 68(1), pages 228-248, February.
    4. Bjurek, Hans, 1996. " The Malmquist Total Factor Productivity Index," Scandinavian Journal of Economics, Wiley Blackwell, vol. 98(2), pages 303-313, June.
    5. Tim J. Coelli & D. S. Prasada Rao, 2005. "Total factor productivity growth in agriculture: a Malmquist index analysis of 93 countries, 1980–2000," Agricultural Economics, International Association of Agricultural Economists, vol. 32(s1), pages 115-134, January.
    6. Ludeña, Carlos E., 2010. "Agricultural Productivity Growth, Efficiency Change and Technical Progress in Latin America and the Caribbean," IDB Publications (Working Papers) 1806, Inter-American Development Bank.
    7. Murgai, Rinku, 2001. "The Green Revolution and the productivity paradox: evidence from the Indian Punjab," Agricultural Economics, Blackwell, vol. 25(2-3), pages 199-209, September.
    8. 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.
    9. Ali, Mubarik & Byerlee, Derek, 2000. "Productivity growth and resource degradation in Pakistan's Punjab - a decomposition analysis," Policy Research Working Paper Series 2480, The World Bank.
    10. Derek Headey & Mohammad Alauddin & D.S. Prasada Rao, 2010. "Explaining agricultural productivity growth: an international perspective," Agricultural Economics, International Association of Agricultural Economists, vol. 41(1), pages 1-14, January.
    11. Maria Martinez Cillero & Fiona Thorne & Michael Wallace & James Breen, 2019. "Technology heterogeneity and policy change in farm-level efficiency analysis: an application to the Irish beef sector," European Review of Agricultural Economics, Oxford University Press and the European Agricultural and Applied Economics Publications Foundation, vol. 46(2), pages 193-214.
    12. Antonio Alvarez & Julio del Corral, 2010. "Identifying different technologies using a latent class model: extensive versus intensive dairy farms," European Review of Agricultural Economics, Oxford University Press and the European Agricultural and Applied Economics Publications Foundation, vol. 37(2), pages 231-250, June.
    13. Lajos Baráth & Imre Fertő & Heinrich Hockmann, 2020. "Technological Differences, Theoretical Consistency, and Technical Efficiency: The Case of Hungarian Crop-Producing Farms," Sustainability, MDPI, vol. 12(3), pages 1-18, February.
    14. N�stor A. Le Clech & Carmen Fillat Castej�n, 2017. "Productivity, efficiency and technical change in world agriculture: a f�re-primont index approach," Documentos de Trabajo dt2017-09, Facultad de Ciencias Económicas y Empresariales, Universidad de Zaragoza.
    15. Carlos Ludena, 2010. "Agricultural Productivity Growth, Efficiency Change and Technical Progress in Latin America and the Caribbean," Research Department Publications 4675, Inter-American Development Bank, Research Department.
    16. Lau, Lawrence J. & Yotopoulos, Pan A., 1989. "The meta-production function approach to technological change in world agriculture," Journal of Development Economics, Elsevier, vol. 31(2), pages 241-269, October.
    17. Thorbecke, Erik & Jung, Hong-Sang, 1996. "A multiplier decomposition method to analyze poverty alleviation," Journal of Development Economics, Elsevier, vol. 48(2), pages 279-300, March.
    18. Shane, Mathew & Teigen, Lloyd & Gehlhar, Mark & Roe, Terry, 2000. "Economic growth and world food insecurity: a parametric approach," Food Policy, Elsevier, vol. 25(3), pages 297-315, June.
    19. Sanzidur Rahman & Ruhul Salim, 2013. "Six Decades of Total Factor Productivity Change and Sources of Growth in Bangladesh Agriculture (1948–2008)," Journal of Agricultural Economics, Wiley Blackwell, vol. 64(2), pages 275-294, June.
    20. Xavier Irz & Lin Lin & Colin Thirtle & Steve Wiggins, 2001. "Agricultural Productivity Growth and Poverty Alleviation," Development Policy Review, Overseas Development Institute, vol. 19(4), pages 449-466, December.
    21. Paul V. Preckel & Jay T. Akridge & Michael A. Boland, 1997. "Efficiency measures for retail fertilizer dealers," Agribusiness, John Wiley & Sons, Ltd., vol. 13(5), pages 497-509.
    22. Hayami, Yujiro & Ruttan, Vernon W, 1970. "Agricultural Productivity Differences Among Countries," American Economic Review, American Economic Association, vol. 60(5), pages 895-911, December.
    23. Fuglie, Keith, 2015. "Accounting for growth in global agriculture," Bio-based and Applied Economics Journal, Italian Association of Agricultural and Applied Economics (AIEAA), vol. 4(3), pages 1-34, December.
    24. Mukherjee, Anit N. & Kuroda, Yoshimi, 2003. "Productivity growth in Indian agriculture: is there evidence of convergence across states?," Agricultural Economics, Blackwell, vol. 29(1), pages 43-53, July.
    25. Asif Reza Anik & Sanzidur Rahman & Jaba Rani Sarker, 2017. "Agricultural Productivity Growth and the Role of Capital in South Asia (1980–2013)," Sustainability, MDPI, vol. 9(3), pages 1-24, March.
    26. Musgrove, Philip, 1985. "Household Food Consumption in the Dominican Republic: Effects of Income, Price, and Family Size," Economic Development and Cultural Change, University of Chicago Press, vol. 34(1), pages 83-101, October.
    27. Michee Arnold Lachaud & Boris E. Bravo-Ureta & Carlos E. Ludena, 2017. "Agricultural productivity in Latin America and the Caribbean in the presence of unobserved heterogeneity and climatic effects," Climatic Change, Springer, vol. 143(3), pages 445-460, August.
    28. 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.
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