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Effects of technical interventions on flexibility of farming systems in Burkina Faso: Lessons for the design of innovations in West Africa

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  • Andrieu, Nadine
  • Descheemaeker, Katrien
  • Sanou, Thierry
  • Chia, Eduardo

Abstract

African farmers have always been exposed to climatic and economic variability and have developed a range of coping strategies. Such strategies form part of flexible farm management, an ability that may prove very valuable in the face of future climate change and market dynamics. The generally low productivity of African smallholder farming systems is usually addressed by research and development institutions by a variety of solutions for improving farm performance. However, changes to the system may affect the flexibility of farms and thus their ability to cope with variability. We quantified the added value of being flexible and how this flexibility is affected by technical changes, such as composting and cattle fattening recurrently proposed and promoted by research and development institutions and projects. The study was conducted in two villages of the agro-pastoral area of Burkina Faso, where livestock, cereals and cotton are the main farming activities. A whole-farm simulation model was developed based on information gathered during focus group meetings with farmers and detailed individual monitoring of farmers' practices. The model simulates farmers' decision rules governing the management of the cropping and livestock farm components, as well as crop and livestock production and farm gross margin. Using the existing decision rules, current farm performance was simulated by assessing the cereal balance, the fodder balance and the whole farm gross margin. Then, by comparing the mean and the coefficient of variation of these indicators resulting from (a) the existing decision rules (baseline scenario) and (b) a set of less flexible rules (rigid scenario), the added value of flexible management was revealed. The adoption of composting practices allowed a slight increase in gross margin associated with a decrease in its between-year variability in comparison with conventional practices. Cattle fattening only led to a higher gross margin in the years with high rainfall and low input prices when no management practices were used to limit dependence on external input. This kind of technical change thus requires increased management agility by farmers to deal with climatic and economic variability. We conclude that assessing the impact of technical interventions not only in terms of productivity but also in terms of changes in flexibility is useful for a better understanding of potential adoption of technical changes.

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  • Andrieu, Nadine & Descheemaeker, Katrien & Sanou, Thierry & Chia, Eduardo, 2015. "Effects of technical interventions on flexibility of farming systems in Burkina Faso: Lessons for the design of innovations in West Africa," Agricultural Systems, Elsevier, vol. 136(C), pages 125-137.
  • Handle: RePEc:eee:agisys:v:136:y:2015:i:c:p:125-137
    DOI: 10.1016/j.agsy.2015.02.010
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    1. Dostie, B. & Haggblade, S. & Randriamamonjy, J., 2002. "Seasonal poverty in Madagascar: magnitude and solutions," Food Policy, Elsevier, vol. 27(5-6), pages 493-518.
    2. Rodriguez, Daniel & Cox, Howard & deVoil, Peter & Power, Brendan, 2014. "A participatory whole farm modelling approach to understand impacts and increase preparedness to climate change in Australia," Agricultural Systems, Elsevier, vol. 126(C), pages 50-61.
    3. Adesina, A. A. & Ouattara, A. D., 2000. "Risk and agricultural systems in northern Cote d'Ivoire," Agricultural Systems, Elsevier, vol. 66(1), pages 17-32, October.
    4. Ingram, K. T. & Roncoli, M. C. & Kirshen, P. H., 2002. "Opportunities and constraints for farmers of west Africa to use seasonal precipitation forecasts with Burkina Faso as a case study," Agricultural Systems, Elsevier, vol. 74(3), pages 331-349, December.
    5. Powell, J. M. & Fernandez-Rivera, S. & Hiernaux, P. & Turner, M. D., 1996. "Nutrient cycling in integrated rangeland/cropland systems of the Sahel," Agricultural Systems, Elsevier, vol. 52(2-3), pages 143-170.
    6. Weiss, Christoph R., 2001. "On flexibility," Journal of Economic Behavior & Organization, Elsevier, vol. 46(3), pages 347-356, November.
      • Weiss, Christoph R. & Briglauer, Wolfgang, 2000. "On flexibility," FE Working Papers 0003, Christian-Albrechts-University of Kiel, Department of Food Economics and Consumption Studies.
    7. Abdulai, Awudu & CroleRees, Anna, 2001. "Determinants of income diversification amongst rural households in Southern Mali," Food Policy, Elsevier, vol. 26(4), pages 437-452, August.
    8. Podesta, Guillermo & Letson, David & Messina, Carlos & Royce, Fred & Ferreyra, R. Andres & Jones, James & Hansen, James & Llovet, Ignacio & Grondona, Martin & O'Brien, James J., 2002. "Use of ENSO-related climate information in agricultural decision making in Argentina: a pilot experience," Agricultural Systems, Elsevier, vol. 74(3), pages 371-392, December.
    9. Oecd, 2009. "Climate Change and Africa," OECD Journal: General Papers, OECD Publishing, vol. 2009(1), pages 5-35.
    10. Veysset, P. & Lherm, M. & Bébin, D., 2010. "Energy consumption, greenhouse gas emissions and economic performance assessments in French Charolais suckler cattle farms: Model-based analysis and forecasts," Agricultural Systems, Elsevier, vol. 103(1), pages 41-50, January.
    11. Manlay, Raphael J. & Ickowicz, Alexandre & Masse, Dominique & Feller, Christian & Richard, Didier, 2004. "Spatial carbon, nitrogen and phosphorus budget in a village of the West African savanna--II. Element flows and functioning of a mixed-farming system," Agricultural Systems, Elsevier, vol. 79(1), pages 83-107, January.
    12. Gicheha, M.G. & Edwards, G.R. & Bell, S.T. & Bywater, A.C., 2014. "Embedded risk management in dryland sheep systems I. Field results and development of a destocking algorithm," Agricultural Systems, Elsevier, vol. 124(C), pages 12-20.
    13. Berkhout, E.D. & Schipper, R.A. & Van Keulen, H. & Coulibaly, O., 2011. "Heterogeneity in farmers' production decisions and its impact on soil nutrient use: Results and implications from northern Nigeria," Agricultural Systems, Elsevier, vol. 104(1), pages 63-74, January.
    14. Ziervogel, Gina & Bithell, Mike & Washington, Richard & Downing, Tom, 2005. "Agent-based social simulation: a method for assessing the impact of seasonal climate forecast applications among smallholder farmers," Agricultural Systems, Elsevier, vol. 83(1), pages 1-26, January.
    15. Jones, J. W. & Keating, B. A. & Porter, C. H., 2001. "Approaches to modular model development," Agricultural Systems, Elsevier, vol. 70(2-3), pages 421-443.
    16. Cortez-Arriola, José & Rossing, Walter A.H. & Massiotti, Ricardo D. Améndola & Scholberg, Johannes M.S. & Groot, Jeroen C.J. & Tittonell, Pablo, 2015. "Leverages for on-farm innovation from farm typologies? An illustration for family-based dairy farms in north-west Michoacán, Mexico," Agricultural Systems, Elsevier, vol. 135(C), pages 66-76.
    17. van Rijn, Fédes & Bulte, Erwin & Adekunle, Adewale, 2012. "Social capital and agricultural innovation in Sub-Saharan Africa," Agricultural Systems, Elsevier, vol. 108(C), pages 112-122.
    18. Stonehouse, D. P. & de Vos, G. W. & Weersink, A., 2002. "Livestock manure systems for swine finishing enterprises," Agricultural Systems, Elsevier, vol. 73(3), pages 279-296, September.
    19. Robledo, Carmenza & Clot, Nicole & Hammill, Anne & Riché, Béatrice, 2012. "The role of forest ecosystems in community-based coping strategies to climate hazards: Three examples from rural areas in Africa," Forest Policy and Economics, Elsevier, vol. 24(C), pages 20-28.
    20. Kingwell, Ross S. & Pannell, David J. & Robinson, Stephen D., 1993. "Tactical responses to seasonal conditions in whole-farm planning in Western Australia," Agricultural Economics, Blackwell, vol. 8(3), pages 211-226, March.
    21. Torkamani, Javad, 2005. "Using a whole-farm modelling approach to assess prospective technologies under uncertainty," Agricultural Systems, Elsevier, vol. 85(2), pages 138-154, August.
    22. Gicheha, M.G. & Edwards, G.R. & Bell, S.T. & Burtt, E.S. & Bywater, A.C., 2014. "Embedded risk management in dryland sheep systems II. Risk analysis," Agricultural Systems, Elsevier, vol. 124(C), pages 1-11.
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