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Factors associated with the use of liquefied petroleum gas in Ghana vary at different stages of transition

Author

Listed:
  • Abhishek Kar

    (The Council on Energy, Environment and Water (CEEW))

  • Theresa Tawiah

    (Kintampo Health Research Centre, Research and Development Division, Ghana Health Service, Kintampo North Municipality)

  • Linnea Graham

    (Columbia University)

  • Georgette Owusu-Amankwah

    (Columbia University)

  • Misbath Daouda

    (Columbia University)

  • Flavio Malagutti

    (University of California)

  • Steve Chillrud

    (Columbia University)

  • Erin E. Harned

    (Columbia University)

  • Seidu Iddrisu

    (Kintampo Health Research Centre, Research and Development Division, Ghana Health Service, Kintampo North Municipality)

  • Edward A. Apraku

    (Kintampo Health Research Centre, Research and Development Division, Ghana Health Service, Kintampo North Municipality)

  • Richard Tetteh

    (Kintampo Health Research Centre, Research and Development Division, Ghana Health Service, Kintampo North Municipality)

  • Sule Awuni

    (Kintampo Health Research Centre, Research and Development Division, Ghana Health Service, Kintampo North Municipality)

  • Kelsey Jack

    (University of California)

  • Sulemana W. Abubakari

    (Kintampo Health Research Centre, Research and Development Division, Ghana Health Service, Kintampo North Municipality)

  • Darby Jack

    (Columbia University)

  • Kwaku P. Asante

    (Kintampo Health Research Centre, Research and Development Division, Ghana Health Service, Kintampo North Municipality)

Abstract

Clean-cooking transitions have the potential to generate large public health, environmental and societal gains for 2.6 billion people in the Global South. Here we use data from Ghana’s largest household energy survey (n = 7,389) to provide two main insights. First, regression analysis of 13 commonly cited socio-economic and demographic determinants of household fuel use indicates remarkably different relationships with clean-fuel use at different stages of the transition process. We propose a stage-based transition framework that can help inform the rollout of clean-cooking interventions. Second, we identify factors that are associated with the exclusive use of liquefied petroleum gas (LPG) using a statistically powered sample of exclusive LPG users (n = 693). We show that, all else equal, increases in wealth and urbanicity are not—contrary to conventional wisdom—associated with a transition from primary to exclusive LPG use. Whereas further research is needed to determine causality, our findings highlight the potential for more careful measurement, isolating each stage of the clean-cooking transition, to inform new insights and policy opportunities.

Suggested Citation

  • Abhishek Kar & Theresa Tawiah & Linnea Graham & Georgette Owusu-Amankwah & Misbath Daouda & Flavio Malagutti & Steve Chillrud & Erin E. Harned & Seidu Iddrisu & Edward A. Apraku & Richard Tetteh & Sul, 2024. "Factors associated with the use of liquefied petroleum gas in Ghana vary at different stages of transition," Nature Energy, Nature, vol. 9(4), pages 434-445, April.
  • Handle: RePEc:nat:natene:v:9:y:2024:i:4:d:10.1038_s41560-024-01462-5
    DOI: 10.1038/s41560-024-01462-5
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    References listed on IDEAS

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    1. Ruiz-Mercado, Ilse & Masera, Omar & Zamora, Hilda & Smith, Kirk R., 2011. "Adoption and sustained use of improved cookstoves," Energy Policy, Elsevier, vol. 39(12), pages 7557-7566.
    2. Karimu, Amin & Mensah, Justice Tei & Adu, George, 2016. "Who Adopts LPG as the Main Cooking Fuel and Why? Empirical Evidence on Ghana Based on National Survey," World Development, Elsevier, vol. 85(C), pages 43-57.
    3. Ellison Carter & Li Yan & Yu Fu & Brian Robinson & Frank Kelly & Paul Elliott & Yangfeng Wu & Liancheng Zhao & Majid Ezzati & Xudong Yang & Queenie Chan & Jill Baumgartner, 2020. "Household transitions to clean energy in a multiprovincial cohort study in China," Nature Sustainability, Nature, vol. 3(1), pages 42-50, January.
    4. Herington, M.J. & van de Fliert, E. & Smart, S. & Greig, C. & Lant, P.A., 2017. "Rural energy planning remains out-of-step with contemporary paradigms of energy access and development," Renewable and Sustainable Energy Reviews, Elsevier, vol. 67(C), pages 1412-1419.
    5. Abhishek Kar & Shonali Pachauri & Rob Bailis & Hisham Zerriffi, 2019. "Using sales data to assess cooking gas adoption and the impact of India’s Ujjwala programme in rural Karnataka," Nature Energy, Nature, vol. 4(9), pages 806-814, September.
    6. Carlos F. Gould & Johannes Urpelainen, 2020. "The Gendered Nature of Liquefied Petroleum Gas Stove Adoption and Use in Rural India," Journal of Development Studies, Taylor & Francis Journals, vol. 56(7), pages 1309-1329, June.
    7. Heltberg, Rasmus, 2005. "Factors determining household fuel choice in Guatemala," Environment and Development Economics, Cambridge University Press, vol. 10(3), pages 337-361, June.
    8. Jennyfer Wolf & Daniel Mäusezahl & Hector Verastegui & Stella M. Hartinger, 2017. "Adoption of Clean Cookstoves after Improved Solid Fuel Stove Programme Exposure: A Cross-Sectional Study in Three Peruvian Andean Regions," IJERPH, MDPI, vol. 14(7), pages 1-12, July.
    9. Robert Bailis & Rudi Drigo & Adrian Ghilardi & Omar Masera, 2015. "The carbon footprint of traditional woodfuels," Nature Climate Change, Nature, vol. 5(3), pages 266-272, March.
    10. Richenda Van Leeuwen & Alex Evans & Besnik Hyseni, 2017. "Increasing the Use of Liquefied Petroleum Gas in Cooking in Developing Countries," World Bank Publications - Reports 26569, The World Bank Group.
    11. Heltberg, Rasmus, 2004. "Fuel switching: evidence from eight developing countries," Energy Economics, Elsevier, vol. 26(5), pages 869-887, September.
    12. Sunil Mani & Abhishek Jain & Saurabh Tripathi & Carlos F. Gould, 2020. "Sustained LPG use requires progress on broader development outcomes," Nature Energy, Nature, vol. 5(6), pages 430-431, June.
    13. Matthew Shupler & Judith Mangeni & Theresa Tawiah & Edna Sang & Miranda Baame & Rachel Anderson de Cuevas & Emily Nix & Emmanuel Betang & Jason Saah & Mieks Twumasi & Seeba Amenga-Etego & Reginald Qua, 2021. "Modelling of supply and demand-side determinants of liquefied petroleum gas consumption in peri-urban Cameroon, Ghana and Kenya," Nature Energy, Nature, vol. 6(12), pages 1198-1210, December.
    14. van der Kroon, Bianca & Brouwer, Roy & van Beukering, Pieter J.H., 2014. "The impact of the household decision environment on fuel choice behavior," Energy Economics, Elsevier, vol. 44(C), pages 236-247.
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    Cited by:

    1. Rose, Julian & Ankel-Peters, Jörg & Hodel, Hanna & Sall, Medoune & Bensch, Gunther, 2024. "Lost in transition: The decline of LPG usage and the charcoal renaissance in urban Senegal," Ruhr Economic Papers 1076, RWI - Leibniz-Institut für Wirtschaftsforschung, Ruhr-University Bochum, TU Dortmund University, University of Duisburg-Essen.
    2. Bensch, Gunther & Grimm, Michael, 2024. "Behavioural constraints in energy technology uptake: Evidence from real-purchase offers in rural Rwanda and Senegal," Ruhr Economic Papers 1081, RWI - Leibniz-Institut für Wirtschaftsforschung, Ruhr-University Bochum, TU Dortmund University, University of Duisburg-Essen.

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