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Performance of large-scale irrigation projects in sub-Saharan Africa

Author

Listed:
  • Thomas P. Higginbottom

    (University of Manchester)

  • Roshan Adhikari

    (University of Manchester)

  • Ralitza Dimova

    (University of Manchester)

  • Sarah Redicker

    (University of Manchester)

  • Timothy Foster

    (University of Manchester)

Abstract

After a 30-year hiatus, large-scale irrigation projects have returned to the development agenda in sub-Saharan Africa (SSA). However, the magnitude and drivers of past schemes’ performance remains poorly understood. We quantify the performance, measured as the proportion of proposed irrigated area delivered, of 79 irrigation schemes from across SSA by comparing planning documents with estimates of current scheme size from satellite-derived land-cover maps. We find overwhelming evidence that investments have failed to deliver promised benefits, with schemes supporting a median 16% of proposed area, only 20 (25%) delivering >80% and 16 (20%) completely inactive. Performance has not improved over six decades and we find limited relationships with commonly stated causes of failure such as scheme size and climate. We attribute these findings to political and management frameworks underpinning irrigation development in SSA. First, an emphasis on national food security promotes low-value crops, reducing economic viability. Second, proposals are unrealistically large, driven by optimism bias and political incentives. Finally, centralized bureaucracies lack the technical expertise, local knowledge and financial resources to ensure long-term maintenance. Our findings highlight the need for greater learning from past investments’ outcomes if improvements in agricultural productivity and water security across SSA are to be realized.

Suggested Citation

  • Thomas P. Higginbottom & Roshan Adhikari & Ralitza Dimova & Sarah Redicker & Timothy Foster, 2021. "Performance of large-scale irrigation projects in sub-Saharan Africa," Nature Sustainability, Nature, vol. 4(6), pages 501-508, June.
  • Handle: RePEc:nat:natsus:v:4:y:2021:i:6:d:10.1038_s41893-020-00670-7
    DOI: 10.1038/s41893-020-00670-7
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    Citations

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    Cited by:

    1. Vijaya Ramachandran, 2021. "Convergence, Development, and Energy-Intensive Infrastructure in Africa: A Review of the Evidence," Sustainability, MDPI, vol. 13(19), pages 1-23, September.
    2. Siderius, C. & Biemans, H. & Kashaigili, J. & Conway, D., 2022. "Water conservation can reduce future water-energy-food-environment trade-offs in a medium-sized African river basin," Agricultural Water Management, Elsevier, vol. 266(C).
    3. Ayyad, Saher & Karimi, Poolad & Langensiepen, Matthias & Ribbe, Lars & Rebelo, Lisa-Maria & Becker, Mathias, 2022. "Remote sensing assessment of available green water to increase crop production in seasonal floodplain wetlands of sub-Saharan Africa," Agricultural Water Management, Elsevier, vol. 269(C).
    4. Chandra, Ankit & Heeren, Derek M. & Odhiambo, Lameck & Brozović, Nicholas, 2023. "Water-energy-food linkages in community smallholder irrigation schemes: Center pivot irrigation in Rwanda," Agricultural Water Management, Elsevier, vol. 289(C).

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