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Adoption of improved biomass stoves and stove/fuel stacking in the REACCTING intervention study in Northern Ghana

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  • Dickinson, Katherine L.
  • Piedrahita, Ricardo
  • Coffey, Evan R.
  • Kanyomse, Ernest
  • Alirigia, Rex
  • Molnar, Timothy
  • Hagar, Yolanda
  • Hannigan, Michael P.
  • Oduro, Abraham Rexford
  • Wiedinmyer, Christine

Abstract

In order to support transitions away from open-fire cooking and toward cleaner household energy systems, a better understanding of users’ technology adoption patterns and preferences is needed. This paper highlights key factors influencing use of two types of biomass-burning stoves provided through the REACCTING (Research on Emissions, Air quality, Climate, and Cooking Technology in Northern Ghana) randomized intervention study. We examine traditional and improved stove use over a two year follow up period, finding that the more basic rocket stove was used at a higher rate than the higher-tech gasifier stove. While stove use patterns varied by stove group, region, primary cook occupation, and socioeconomic status, use of traditional stoves remained high across most groups. Users perceived that improved stoves were less suitable for cooking a staple dish, Tuo Zaafi (TZ), and technical problems (e.g., battery failures with the gasifier stove) also limited the effectiveness of the intervention. Moving forward, household energy policies should prioritize a range of technologies that have potential to meet local needs while delivering meaningful health and/or environmental benefits, recognizing that stove and fuel “stacking” is likely to persist. A greater focus on markets and enabling environments is needed to support sustainable and scalable energy transitions.

Suggested Citation

  • Dickinson, Katherine L. & Piedrahita, Ricardo & Coffey, Evan R. & Kanyomse, Ernest & Alirigia, Rex & Molnar, Timothy & Hagar, Yolanda & Hannigan, Michael P. & Oduro, Abraham Rexford & Wiedinmyer, Chri, 2019. "Adoption of improved biomass stoves and stove/fuel stacking in the REACCTING intervention study in Northern Ghana," Energy Policy, Elsevier, vol. 130(C), pages 361-374.
  • Handle: RePEc:eee:enepol:v:130:y:2019:i:c:p:361-374
    DOI: 10.1016/j.enpol.2018.12.007
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    Cited by:

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    2. Emodi, Nnaemeka Vincent & Haruna, Emmanuel Umoru & Abdu, Nizam & Aldana Morataya, Sergio David & Dioha, Michael O. & Abraham-Dukuma, Magnus C., 2022. "Urban and rural household energy transition in Sub-Saharan Africa: Does spatial heterogeneity reveal the direction of the transition?," Energy Policy, Elsevier, vol. 168(C).
    3. Novice Patrick Bakehe, 2021. "What drives biogas adoption in rural Lesotho?," African Development Review, African Development Bank, vol. 33(2), pages 357-367, June.
    4. Perros, T. & Allison, A.L. & Tomei, J. & Aketch, V. & Parikh, P., 2023. "Cleaning up the stack: Evaluating a clean cooking fuel stacking intervention in urban Kenya," Renewable and Sustainable Energy Reviews, Elsevier, vol. 188(C).
    5. Ashlinn K. Quinn & Kendra N. Williams & Lisa M. Thompson & Steven A. Harvey & Ricardo Piedrahita & Jiantong Wang & Casey Quinn & Ajay Pillarisetti & John P. McCracken & Joshua P. Rosenthal & Miles A. , 2021. "Fidelity and Adherence to a Liquefied Petroleum Gas Stove and Fuel Intervention during Gestation: The Multi-Country Household Air Pollution Intervention Network (HAPIN) Randomized Controlled Trial," IJERPH, MDPI, vol. 18(23), pages 1-18, November.
    6. Kar, Abhishek & Brauer, Michael & Bailis, Rob & Zerriffi, Hisham, 2020. "The risk of survey bias in self-reports vs. actual consumption of clean cooking fuels," World Development Perspectives, Elsevier, vol. 18(C).
    7. Lindgren, Samantha, 2021. "Cookstove implementation and Education for Sustainable Development: A review of the field and proposed research agenda," Renewable and Sustainable Energy Reviews, Elsevier, vol. 146(C).

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