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Climate Change Awareness and Joint Decision to Adopt Agroforestry and Conservation Agriculture Practices in Zambia

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  • Moses C. Tembo
  • Elias Kuntashula
  • Thomson Kalinda

Abstract

Climate change is one of the biggest challenges that small holder farmers face in Sub-Saharan Africa, including Zambia. In response to this, various interventions such as Agroforestry (AF) and Conservation Agriculture (CA) have been promoted within the country so as to enhance uptake among farmers and ultimately mitigate climate change. However, the adoption rates of these technologies has been low. To understand the adoption process several adoption studies have focused on the effects of socio-economic and other institutional factors on adoption of the technologies. The direct link between small holder farmer’s climate change awareness and the uptake of both AF and CA is an area that has received less attention among these studies. This paper estimates the effect of climate change awareness on the adoption of AF and CA, and establishes whether the adoption of the two technologies is jointly determined in Zambia. Data used emanated from the Indaba Agricultural Policy Research Institute (IAPRI) and University of Zambia (UNZA) Climate Change and Land Use Project that implemented a supplemental climate change survey in 2013 on Rural Agricultural Livelihood Survey (RALS 2012) panel sample of 1,231 households in six districts of Zambia. Results showed that the majority of farmers (77.2 %) were aware of climate change issues and their consequences on agriculture production and the environment. It was also observed that holding other factors constant, a farmer aware of climate change and its consequences was 6% more likely to adopt both AF and CA compared to those not aware. The decision to adopt AF and CA was found to be jointly determined by farmers. In addition to climate change awareness, the other factors affecting the joint decision to adopt the two technologies included gender, farmer group membership of the household head as well as ownership of radio sets and rippers. There is need therefore to deliberately increase climate change awareness among smallholder farmers and promote the simultaneous uptake of both AF and CA through the mass media and the provision of an environment that increases accessibility to tools that ease up the uptake of these technologies.

Suggested Citation

  • Moses C. Tembo & Elias Kuntashula & Thomson Kalinda, 2017. "Climate Change Awareness and Joint Decision to Adopt Agroforestry and Conservation Agriculture Practices in Zambia," Journal of Sustainable Development, Canadian Center of Science and Education, vol. 10(4), pages 107-107, July.
  • Handle: RePEc:ibn:jsd123:v:10:y:2017:i:4:p:107
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    References listed on IDEAS

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    1. Oluyede Clifford Ajayi & Festus K. Akinnifesi & Gudeta Sileshi & Sebastian Chakeredza, 2007. "Adoption of renewable soil fertility replenishment technologies in the southern African region: Lessons learnt and the way forward," Natural Resources Forum, Blackwell Publishing, vol. 31(4), pages 306-317, November.
    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. Knowler, Duncan & Bradshaw, Ben, 2007. "Farmers' adoption of conservation agriculture: A review and synthesis of recent research," Food Policy, Elsevier, vol. 32(1), pages 25-48, February.
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    JEL classification:

    • R00 - Urban, Rural, Regional, Real Estate, and Transportation Economics - - General - - - General
    • Z0 - Other Special Topics - - General

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