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Effect of Adoption of Climate-Smart-Agriculture Technologies on Cereal Production, Food Security and Food Diversity in Central Mali

Author

Listed:
  • Penda Sissoko

    (Institute Economie Rurale, Bamako BP 258, Mali)

  • Sékou Sala Guindo

    (Institute Economie Rurale, Bamako BP 258, Mali)

  • Sadio Togola

    (Institute Economie Rurale, Bamako BP 258, Mali)

  • Bakary Désiré Dembélé

    (Institute Economie Rurale, Bamako BP 258, Mali)

  • Lars Kåre Grimsby

    (Department of International Environment and Development Studies (Noragric), Faculty of Landscape and Society, Norwegian University of Life Sciences, 1432 Ås, Norway)

  • Jens B. Aune

    (Department of International Environment and Development Studies (Noragric), Faculty of Landscape and Society, Norwegian University of Life Sciences, 1432 Ås, Norway)

Abstract

Over a period of two years, this study analyzes the effect on food security of introducing new technologies through farmer field schools in the project “Adapting Agriculture and Livestock to Climate Change” (ACC). A household survey was conducted to compare 125 households in villages that were part of the project to 79 households in villages that were not part of the project. These two groups were compared regarding cereal surplus production, the number of food-secure months and food diversity. The data were analyzed using analysis of variance, a two-sample t-test and boxplots. The project was implemented in the semiarid regions of Segou and Koulikoro in Mali. The technologies introduced were microdosing of mineral fertilizer, seed priming, new cereal varieties, horticulture, poultry and goat production, assisted natural regeneration and ridging. Microdosing of mineral fertilizer and seed priming was adopted by more than 85% of the households in the ACC villages. Grain yields of pearl millet, sorghum and maize increased by 418, 429 and 673 kg/ha, respectively, ( p < 0.0001) due to seed priming and microdosing. This resulted in a cereal surplus of 756 kg in the ACC households, while the surplus in the non-ACC households was 161 kg. In addition, the ACC households were food secure for two months longer than the non-ACC households and consumed food from one more food group than the non-ACC households. This study shows that, despite the difficult situation in Mali, it is possible to improve food security by introducing improved technologies.

Suggested Citation

  • Penda Sissoko & Sékou Sala Guindo & Sadio Togola & Bakary Désiré Dembélé & Lars Kåre Grimsby & Jens B. Aune, 2023. "Effect of Adoption of Climate-Smart-Agriculture Technologies on Cereal Production, Food Security and Food Diversity in Central Mali," Agriculture, MDPI, vol. 13(6), pages 1-15, June.
  • Handle: RePEc:gam:jagris:v:13:y:2023:i:6:p:1196-:d:1163514
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    References listed on IDEAS

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    1. Smale, Melinda & Theriault, Veronique & Vroegindewey, Ryan, 2020. "Nutritional implications of dietary patterns in Mali," African Journal of Agricultural and Resource Economics, African Association of Agricultural Economists, vol. 15(3), September.
    2. Solomon Asfaw & Federica Di Battista & Leslie Lipper, 2016. "Agricultural Technology Adoption under Climate Change in the Sahel: Micro-evidence from Niger," Journal of African Economies, Centre for the Study of African Economies, vol. 25(5), pages 637-669.
    3. Mathieu Ouédraogo & Prosper Houessionon & Robert B. Zougmoré & Samuel Tetteh Partey, 2019. "Uptake of Climate-Smart Agricultural Technologies and Practices: Actual and Potential Adoption Rates in the Climate-Smart Village Site of Mali," Sustainability, MDPI, vol. 11(17), pages 1-19, August.
    4. Melinda Smale & Veronique Theriault & Amidou Assima & Yenizie Kone, 2020. "Nutritional Implications of Dietary Patterns in Mali," Feed the Future Innovation Lab for Food Security Policy Research Briefs 303679, Michigan State University, Department of Agricultural, Food, and Resource Economics, Feed the Future Innovation Lab for Food Security (FSP).
    5. Henk Berg & Suzanne Phillips & Marcel Dicke & Marjon Fredrix, 2020. "Impacts of farmer field schools in the human, social, natural and financial domain: a qualitative review," Food Security: The Science, Sociology and Economics of Food Production and Access to Food, Springer;The International Society for Plant Pathology, vol. 12(6), pages 1443-1459, December.
    6. Bola Amoke Awotide & Adebayo Ogunniyi & Kehinde Oluseyi Olagunju & Lateef Olalekan Bello & Amadou Youssouf Coulibaly & Alexander Nimo Wiredu & Bourémo Kone & Aly Ahamadou & Victor Manyong & Tahirou Ab, 2022. "Evaluating the Heterogeneous Impacts of Adoption of Climate-Smart Agricultural Technologies on Rural Households’ Welfare in Mali," Agriculture, MDPI, vol. 12(11), pages 1-16, November.
    7. Eriksen, Siri & Schipper, E. Lisa F. & Scoville-Simonds, Morgan & Vincent, Katharine & Adam, Hans Nicolai & Brooks, Nick & Harding, Brian & Khatri, Dil & Lenaerts, Lutgart & Liverman, Diana & Mills-No, 2021. "Adaptation interventions and their effect on vulnerability in developing countries: Help, hindrance or irrelevance?," World Development, Elsevier, vol. 141(C).
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