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Role of Agroforestry on Farmland Productivity in Semi-arid Farming Regions of Zimbabwe

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  • Parwada, Cosmas
  • Chipomho, Justin
  • Mapope, Nyamande
  • Masama, Edmore
  • Simango, Kennedy

Abstract

Farmland productivity is low in the semi-arid regions (NR IV and V) of Zimbabwe due to desertification and land degradation. Nevertheless, demand for food is increasing geometrically hence the need to increase output per unit area. Agroforestry (AF) which is an ecologically based and dynamic system that integrates multi-purpose trees on farms can increase productivity and offer resilience to climate change vagaries. However, the role of AF in Zimbabwean smallholder farming systems is still not well investigated. Therefore, this review explores the role of agroforestry on agricultural productivity in the semi-arid regions of Zimbabwe. The aim was to enhance sustainable food security among the rural poor through sustainable agriculture. Incorporating multi-purpose trees on agricultural lands can significantly restore soil productivity and offer soil resilience to erosion by water and wind. If well implemented, the AF can be a viable option in mitigating the impacts of drought on agriculture in these drier and marginalized areas.

Suggested Citation

  • Parwada, Cosmas & Chipomho, Justin & Mapope, Nyamande & Masama, Edmore & Simango, Kennedy, 2022. "Role of Agroforestry on Farmland Productivity in Semi-arid Farming Regions of Zimbabwe," Research on World Agricultural Economy, Nan Yang Academy of Sciences Pte Ltd (NASS), vol. 3(2), May.
  • Handle: RePEc:ags:reowae:321875
    DOI: 10.22004/ag.econ.321875
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    References listed on IDEAS

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    1. Alexandratos, Nikos & Bruinsma, Jelle, 2012. "World agriculture towards 2030/2050: the 2012 revision," ESA Working Papers 288998, Food and Agriculture Organization of the United Nations, Agricultural Development Economics Division (ESA).
    2. Phiri, Donald & Franzel, Steven & Mafongoya, Paramu & Jere, Isaac & Katanga, Roza & Phiri, Stanslous, 2004. "Who is using the new technology? The association of wealth status and gender with the planting of improved tree fallows in Eastern Province, Zambia," Agricultural Systems, Elsevier, vol. 79(2), pages 131-144, February.
    3. Mazvimavi, Kizito & Twomlow, Steve, 2009. "Socioeconomic and institutional factors influencing adoption of conservation farming by vulnerable households in Zimbabwe," Agricultural Systems, Elsevier, vol. 101(1-2), pages 20-29, June.
    4. Shepherd, Keith D. & Shepherd, Gemma & Walsh, Markus G., 2015. "Land health surveillance and response: A framework for evidence-informed land management," Agricultural Systems, Elsevier, vol. 132(C), pages 93-106.
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    Productivity Analysis;

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