IDEAS home Printed from https://ideas.repec.org/a/spr/ssefpa/v10y2018i4d10.1007_s12571-017-0742-7.html
   My bibliography  Save this article

Is dry soil planting an adaptation strategy for maize cultivation in semi-arid Tanzania?

Author

Listed:
  • Marcos A. Lana

    (Swedish University of Agricultural Sciences (SLU)
    Leibniz Centre for Agricultural Landscape Research (ZALF))

  • Ana Carolina F. Vasconcelos

    (Federal University of Campina Grande)

  • Christoph Gornott

    (Potsdam Institute for Climate Impact Research (PIK))

  • Angela Schaffert

    (Hohenheim University)

  • Michelle Bonatti

    (Leibniz Centre for Agricultural Landscape Research (ZALF))

  • Johanna Volk

    (Freie Universität Berlin)

  • Frieder Graef

    (Leibniz Centre for Agricultural Landscape Research (ZALF))

  • Kurt Christian Kersebaum

    (Leibniz Centre for Agricultural Landscape Research (ZALF))

  • Stefan Sieber

    (Leibniz Centre for Agricultural Landscape Research (ZALF))

Abstract

Agriculture has the greatest potential to lift the African continent out of poverty and alleviate hunger. Among the countries in sub-Saharan Africa, Tanzania has an abundance of natural resources and major agricultural potential. However, one of the most important constraints facing Tanzania’s agricultural sector is the dependence on unreliable and irregular weather, including rainfall. A strategy to cope with climate uncertainty in semi-arid regions is to proceed with the sowing of the crop before the onset of the rainy season. The advantage is that when the rains start, seeds are already in the soil and can begin immediately the process of germination. The objective of this paper was to assess the effectiveness of dry-soil planting for maize as an adaptation strategy in the context of a changing climate in Dodoma, a semi-arid region in Tanzania. For this assessment, the DSSAT crop model was used in combination with climate scenarios based on representative concentration pathways. A probability of crop failure of more than 80% can be expected when sowing occurs during the planting window (of 21 days) starting on 1st November. The next planting window we assessed, starting on 23rd November (which was still before the onset of rain), presented significantly lower probabilities of crop failure, indicating that sowing before the onset of the rainy season is a suitable adaptation strategy. Results also indicated that, despite not reaching the highest maize grain yields, fields prepared for dry-soil planting still produced adequate yields. The cultivation of several fields using the dry planting method is a strategy farmers can use to cope with low rainfall conditions, since it increases the chances of harvesting at least some of the cultivated fields. We conclude that dry-soil planting is a feasible and valid technique, even in scenarios of climate change, in order to provide acceptable maize yields in semi-arid Tanzania.

Suggested Citation

  • Marcos A. Lana & Ana Carolina F. Vasconcelos & Christoph Gornott & Angela Schaffert & Michelle Bonatti & Johanna Volk & Frieder Graef & Kurt Christian Kersebaum & Stefan Sieber, 2018. "Is dry soil planting an adaptation strategy for maize cultivation in semi-arid Tanzania?," Food Security: The Science, Sociology and Economics of Food Production and Access to Food, Springer;The International Society for Plant Pathology, vol. 10(4), pages 897-910, August.
  • Handle: RePEc:spr:ssefpa:v:10:y:2018:i:4:d:10.1007_s12571-017-0742-7
    DOI: 10.1007/s12571-017-0742-7
    as

    Download full text from publisher

    File URL: http://link.springer.com/10.1007/s12571-017-0742-7
    File Function: Abstract
    Download Restriction: Access to the full text of the articles in this series is restricted.

    File URL: https://libkey.io/10.1007/s12571-017-0742-7?utm_source=ideas
    LibKey link: if access is restricted and if your library uses this service, LibKey will redirect you to where you can use your library subscription to access this item
    ---><---

    As the access to this document is restricted, you may want to search for a different version of it.

    References listed on IDEAS

    as
    1. Malte Meinshausen & S. Smith & K. Calvin & J. Daniel & M. Kainuma & J-F. Lamarque & K. Matsumoto & S. Montzka & S. Raper & K. Riahi & A. Thomson & G. Velders & D.P. Vuuren, 2011. "The RCP greenhouse gas concentrations and their extensions from 1765 to 2300," Climatic Change, Springer, vol. 109(1), pages 213-241, November.
    2. Robert Mendelsohn & Ariel Dinar, 2009. "Climate Change and Agriculture," Books, Edward Elgar Publishing, number 12990.
    3. Pradeep Kurukulasuriya & Robert Mendelsohn & Rashid Hassan & James Benhin & Temesgen Deressa & Mbaye Diop & Helmy Mohamed Eid & K. Yerfi Fosu & Glwadys Gbetibouo & Suman Jain & Ali Mahamadou & Renneth, 2006. "Will African Agriculture Survive Climate Change?," The World Bank Economic Review, World Bank, vol. 20(3), pages 367-388.
    4. Nelson, Gerald C. & Rosegrant, Mark W. & Palazzo, Amanda & Gray, Ian & Ingersoll, Christina & Robertson, Richard & Tokgoz, Simla & Zhu, Tingju & Sulser, Timothy B. & Ringler, Claudia & Msangi, Siwa & , 2010. "Food security, farming, and climate change to 2050: Scenarios, results, policy options," Research reports Gerald C. Nelson, et al., International Food Policy Research Institute (IFPRI).
    5. S. Seo & Robert Mendelsohn & Ariel Dinar & Rashid Hassan & Pradeep Kurukulasuriya, 2009. "A Ricardian Analysis of the Distribution of Climate Change Impacts on Agriculture across Agro-Ecological Zones in Africa," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 43(3), pages 313-332, July.
    6. Makarius V. Mdemu & Nuru Mziray & Henning Bjornlund & Japhet J. Kashaigili, 2017. "Barriers to and opportunities for improving productivity and profitability of the Kiwere and Magozi irrigation schemes in Tanzania," International Journal of Water Resources Development, Taylor & Francis Journals, vol. 33(5), pages 725-739, September.
    7. Richard H. Moss & Jae A. Edmonds & Kathy A. Hibbard & Martin R. Manning & Steven K. Rose & Detlef P. van Vuuren & Timothy R. Carter & Seita Emori & Mikiko Kainuma & Tom Kram & Gerald A. Meehl & John F, 2010. "The next generation of scenarios for climate change research and assessment," Nature, Nature, vol. 463(7282), pages 747-756, February.
    8. Frieder Graef & Götz Uckert & Jana Schindler & Hannes Jochen König & Hadijah A. Mbwana & Anja Fasse & Lutengano Mwinuka & Henry Mahoo & Laurent N. Kaburire & Paul Saidia & Yusto Mugisha Yustas & Valer, 2017. "Expert-based ex-ante assessments of potential social, ecological, and economic impacts of upgrading strategies for improving food security in rural Tanzania using the ScalA-FS approach," Food Security: The Science, Sociology and Economics of Food Production and Access to Food, Springer;The International Society for Plant Pathology, vol. 9(6), pages 1255-1270, December.
    9. -, 2009. "The economics of climate change," Sede Subregional de la CEPAL para el Caribe (Estudios e Investigaciones) 38679, Naciones Unidas Comisión Económica para América Latina y el Caribe (CEPAL).
    10. Sushil Pandey & Humnath Bhandari & Shijun Ding & Preeda Prapertchob & Ramesh Sharan & Dibakar Naik & Sudhir K. Taunk & Asras Sastri, 2007. "Coping with drought in rice farming in Asia: insights from a cross‐country comparative study," Agricultural Economics, International Association of Agricultural Economists, vol. 37(s1), pages 213-224, December.
    11. Oecd, 2009. "Climate Change and Africa," OECD Journal: General Papers, OECD Publishing, vol. 2009(1), pages 5-35.
    Full references (including those not matched with items on IDEAS)

    Citations

    Citations are extracted by the CitEc Project, subscribe to its RSS feed for this item.
    as


    Cited by:

    1. Festo Richard Silungwe & Frieder Graef & Sonoko Dorothea Bellingrath-Kimura & Emmanuel A Chilagane & Siza Donald Tumbo & Fredrick Cassian Kahimba & Marcos Alberto Lana, 2019. "Modelling Rainfed Pearl Millet Yield Sensitivity to Abiotic Stresses in Semi-Arid Central Tanzania, Eastern Africa," Sustainability, MDPI, vol. 11(16), pages 1-18, August.
    2. Mahmoud F. Seleiman & Nasser Al-Suhaibani & Salah El-Hendawy & Kamel Abdella & Majed Alotaibi & Ali Alderfasi, 2021. "Impacts of Long- and Short-Term of Irrigation with Treated Wastewater and Synthetic Fertilizers on the Growth, Biomass, Heavy Metal Content, and Energy Traits of Three Potential Bioenergy Crops in Ari," Energies, MDPI, vol. 14(11), pages 1-22, May.

    Most related items

    These are the items that most often cite the same works as this one and are cited by the same works as this one.
    1. 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.
    2. Isaure Delaporte & Mathilde Maurel, 2018. "Adaptation to climate change in Bangladesh," Climate Policy, Taylor & Francis Journals, vol. 18(1), pages 49-62, January.
    3. Byela Tibesigwa & Martine Visser & Jane Turpie, 2017. "Climate change and South Africa’s commercial farms: an assessment of impacts on specialised horticulture, crop, livestock and mixed farming systems," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 19(2), pages 607-636, April.
    4. McCarl, Bruce A. & Attavanich, Witsanu & Musumba, Mark & Mu, Jianhong E. & Aisabokhae, Ruth, 2011. "Land Use and Climate Change," MPRA Paper 83993, University Library of Munich, Germany, revised 2014.
    5. Gupta, Rishabh & Mishra, Ashok, 2019. "Climate change induced impact and uncertainty of rice yield of agro-ecological zones of India," Agricultural Systems, Elsevier, vol. 173(C), pages 1-11.
    6. Tanimonure, Victoria Adeyemi, 2021. "Impact of Climate Adaptation Strategies on the Net Farm Revenue of Underutilized Indigenous Vegetables’ (UIVs) Production in Southwest Nigeria," 2021 Conference, August 17-31, 2021, Virtual 315903, International Association of Agricultural Economists.
    7. Boris O. K. Lokonon & Aly A. Mbaye, 2019. "Implications of Climate-Related Factors on Living Standards: Evidence from Sub-Saharan Africa," Economics Bulletin, AccessEcon, vol. 39(2), pages 1404-1417.
    8. Carlo Fezzi & Ian Bateman, 2015. "The Impact of Climate Change on Agriculture: Nonlinear Effects and Aggregation Bias in Ricardian Models of Farmland Values," Journal of the Association of Environmental and Resource Economists, University of Chicago Press, vol. 2(1), pages 57-92.
    9. Jonathan E. Ogbuabor & Emmanuel I. Egwuchukwu, 2017. "The Impact of Climate Change on the Nigerian Economy," International Journal of Energy Economics and Policy, Econjournals, vol. 7(2), pages 217-223.
    10. Gebreegziabher, Zenebe & Stage, Jesper & Mekonnen, Alemu & Alemu, Atlaw, 2011. "Climate Change and the Ethiopian Economy: A Computable General Equilibrium Analysis," RFF Working Paper Series dp-11-09-efd, Resources for the Future.
    11. Asfaw, Solomon & Scognamillo, Antonio & Caprera, Gloria Di & Sitko, Nicholas & Ignaciuk, Adriana, 2019. "Heterogeneous impact of livelihood diversification on household welfare: Cross-country evidence from Sub-Saharan Africa," World Development, Elsevier, vol. 117(C), pages 278-295.
    12. Solomon Asfaw & Nancy McCarthy & Leslie Lipper & Aslihan Arslan & Andrea Cattaneo, 2016. "What determines farmers’ adaptive capacity? Empirical evidence from Malawi," Food Security: The Science, Sociology and Economics of Food Production and Access to Food, Springer;The International Society for Plant Pathology, vol. 8(3), pages 643-664, June.
    13. Ayala Wineman & Thomas S Jayne, 2018. "Land Prices Heading Skyward? An Analysis of Farmland Values across Tanzania," Applied Economic Perspectives and Policy, Agricultural and Applied Economics Association, vol. 40(2), pages 187-214.
    14. Schmidtner, Eva & Dabbert, Stephan & Lippert, Christian, 2015. "Do Different Measurements of Soil Quality Influence the Results of a Ricardian Analysis? – A Case Study on the Effects of Climate Change on German Agriculture," German Journal of Agricultural Economics, Humboldt-Universitaet zu Berlin, Department for Agricultural Economics, vol. 64(02), June.
    15. Elizabeth L. Roos & Heinrich R. Bohlmann & Jan H. van Heerden & Nicholas Kilimani, 2016. "Counting the cost of drought induced productivity losses in an agro-based economy: The case of Uganda," Working Papers 616, Economic Research Southern Africa.
    16. Melania Michetti & Matteo Zampieri, 2014. "Climate–Human–Land Interactions: A Review of Major Modelling Approaches," Land, MDPI, vol. 3(3), pages 1-41, July.
    17. Robert Becker Pickson & Ge He, 2021. "Smallholder Farmers’ Perceptions, Adaptation Constraints, and Determinants of Adaptive Capacity to Climate Change in Chengdu," SAGE Open, , vol. 11(3), pages 21582440211, July.
    18. Fabri, Charlotte & Moretti, Michele & Passel, Steven Van, 2021. "On the (Ir)relevance of Heatwaves in Climate Change Impacts on European Agriculture," 2021 Conference, August 17-31, 2021, Virtual 314966, International Association of Agricultural Economists.
    19. Oluwatoyin Matthew & Romanus Osabohien & Fasina Fagbeminiyi & Afolake Fasina, 2018. "Greenhouse Gas Emissions and Health Outcomes in Nigeria: Empirical Insight from Auto-regressive Distribution Lag Technique," International Journal of Energy Economics and Policy, Econjournals, vol. 8(3), pages 43-50.
    20. Chau Trinh Nguyen & Frank Scrimgeour, 2022. "Measuring the impact of climate change on agriculture in Vietnam: A panel Ricardian analysis," Agricultural Economics, International Association of Agricultural Economists, vol. 53(1), pages 37-51, January.

    Corrections

    All material on this site has been provided by the respective publishers and authors. You can help correct errors and omissions. When requesting a correction, please mention this item's handle: RePEc:spr:ssefpa:v:10:y:2018:i:4:d:10.1007_s12571-017-0742-7. See general information about how to correct material in RePEc.

    If you have authored this item and are not yet registered with RePEc, we encourage you to do it here. This allows to link your profile to this item. It also allows you to accept potential citations to this item that we are uncertain about.

    If CitEc recognized a bibliographic reference but did not link an item in RePEc to it, you can help with this form .

    If you know of missing items citing this one, you can help us creating those links by adding the relevant references in the same way as above, for each refering item. If you are a registered author of this item, you may also want to check the "citations" tab in your RePEc Author Service profile, as there may be some citations waiting for confirmation.

    For technical questions regarding this item, or to correct its authors, title, abstract, bibliographic or download information, contact: Sonal Shukla or Springer Nature Abstracting and Indexing (email available below). General contact details of provider: http://www.springer.com .

    Please note that corrections may take a couple of weeks to filter through the various RePEc services.

    IDEAS is a RePEc service. RePEc uses bibliographic data supplied by the respective publishers.