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Energy Basket Model : A Tool for Examining Household’s Choice of Cooking Fuels and Their Switching Pattern
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The theoretical literature on households’ choice of cooking fuels and their switching pattern was mainly dominated by the energy ladder hypothesis and fuel stacking model, where the former stated that households switch from the usage of dirty fuels to clean fuels along with a rise in income, while the latter maintained that households did not make full switching of the cooking fuels, and rather went for partial switching as they move up the energy ladder. However, in real-life propositions, both theories are relevant, and hence, it called for a new alternative energy fuel model, including the features of both energy ladder and fuel stacking under a combined shed. The present study tried to fill this research gap by developing a new approach called the ‘energy basket model,’ which incorporated the features of both energy ladder and fuel stacking models within a single framework and looked into the switching possibilities among different fuel combinations in both upward and downward directions. This newly developed model would serve as a key tool for understanding households’ choice of cooking fuels and their switching patterns.
Keywords
Cooking Fuel, Switching, Energy Ladder Model, Fuel Stacking Model, Energy Basket Model
JELClassification Codes : D10, I18, O1
Paper Submission Date : July 1, 2022 ; Paper sent back for Revision : July 20, 2022 ; Paper Acceptance Date : July 30, 2022
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- Adamu M. B. Adamu H. Ade S. M. & Akeh G. I. (2020). Household energy consumption in Nigeria: Areview on the applicability of the Energy Ladder Model. Journal of Applied Sciences and Environmental Management, 24(2), 237–244. https://doi.org/10.4314/jasem.v24i2.7
- Barnes D. F. & Floor W. M. (1996). Rural energy in developing countries: A challenge for economic development. Annual Review of Energy and the Environment,21(1),497–530. https://doi.org/10.1146/annurev.energy.21.1.497
- ESMAP. (2020). The state of access to modern energy cooking services. World Bank Group. http://documents.worldbank.org/curated/en/937141600195758792/The-State-of-Access-toModern-Energy-Cooking-Services
- Heltberg R. (2003). Household fuel and energy use in developing countries - A multicountry study. The World Bank. https://web.worldbank.org/archive/website00519/WEB/PDF/FUELUSEM.PDF
- Kowsari R. & Zerriffi H. (2011). Three dimensional energy profile: A conceptual framework for assessing householden ergyuse.Energy Policy,39(12),7505–7517. https://doi.org/10.1016/j.enpol.2011.06.030
- Masera O. Saatkamp B. & Kammen D. (2000). From linear fuel switching to multiple cooking strategies: A critique and alternative to the energy ladder model. World Development, 28(12), 2083–2103. https://doi.org/10.1016/s0305-750x(00)00076-0
- Price M. Barnard-Tallier M. & Troncoso K. (2021). Stacked: In their favour ? The complexities of fuel stacking and cooking transitions in Cambodia, Myanmar, and Zambia. Energies, 14(15), 4457. https://doi.org/10.3390/en14154457
- Rogers B. (2020). Cooking fuel “Stacking” implications for willingness to switch to clean fuels in peri-urban Kathmandu Valley, Nepal(Master's thesis). Duke University. https://hdl.handle.net/10161/20812
- Swarup V. A. & Rao K. R. (2015). An econometric approach to analysis of trends and patterns of household fuel choices in India. Indian Economic Review, 50(1), 105–129. http://www.jstor.org/stable/43917207
- Taylor M. Moran-Taylor M. Castellanos E. & Elías S. (2011). Burning for sustainability: Biomass energy, international migration, and the move to cleaner fuels and cookstoves in Guatemala. Annals of the Association of American Geographers,101(4),918–928. https://doi.org/10.1080/00045608.2011.568881
- Uhunamure S. E. Nethengwe N. S. & Musyoki A. (2017). Driving forces for fuelwood use in households in the Thulamela municipality, South Africa. Journal of Energy in Southern Africa, 28(1), 25–34. https://doi.org/10.17159/2413-3051/2017/v28i1a1635
- Van der Kroon B. Brouwer R. & Van Beukering P. (2013). The energy ladder: Theoretical myth or empirical truth? Results from a meta-analysis. Renewable and Sustainable Energy Reviews, 20, 504–513. https://doi.org/10.1016/j.rser.2012.11.045
- Yonemitsu A. Njenga M. Iiyama M. & Matsushita S. (2014). Household fuel consumption based on multiple fuel use strategies: A case study in Kibera Slums. APCBEE Procedia, 10, 331–340. https://doi.org/10.1016/j.apcbee.2014.10.062
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