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Côte d'Ivoire's electricity challenge in 2050: Reconciling economic development and climate commitments

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  • Assoumou, Edi
  • McIsaac, Florent

Abstract

In closing its economic gap with emerging markets, Côte d’Ivoire will face a substantial increase in electricity demand over the next three decades. Côte d’Ivoire has signed the Paris Agreement that aims to achieve a balance between anthropogenic emissions by sources, including electricity, and absorption by sinks of greenhouse gases in the second half of the century. This This paper develops a forward-looking tool to explore electricity technology investment paths compatible with both rapidly increasing electricity demand and the Paris Agreement. We build a TIMES model for Côte d’Ivoire and run scenarios with two sets of reasonable assumptions that represent two competing, and probable visions of the future costs of coal and photovoltaic technologies. The results show that a carbon tax of about US$21 in 2035 and US$82 in 2050 on electricity generation will ensure low-carbon electricity generation in line with the Paris Agreement. Although a low-carbon energy mix would create significantly more jobs, the two main challenges in achieving this energy mix will be to install as much as 24 GW of photovoltaic power by 2050 or to achieve a socially accepted carbon tax.

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  • Assoumou, Edi & McIsaac, Florent, 2022. "Côte d'Ivoire's electricity challenge in 2050: Reconciling economic development and climate commitments," Energy Policy, Elsevier, vol. 160(C).
  • Handle: RePEc:eee:enepol:v:160:y:2022:i:c:s0301421521005462
    DOI: 10.1016/j.enpol.2021.112681
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    1. Dioha, Michael O. & Kumar, Atul, 2020. "Exploring the energy system impacts of Nigeria's Nationally Determined Contributions and low-carbon transition to mid-century," Energy Policy, Elsevier, vol. 144(C).
    2. Millot, Ariane & Krook-Riekkola, Anna & Maïzi, Nadia, 2020. "Guiding the future energy transition to net-zero emissions: Lessons from exploring the differences between France and Sweden," Energy Policy, Elsevier, vol. 139(C).
    3. Ur Rehman, Syed Aziz & Cai, Yanpeng & Mirjat, Nayyar Hussain & Walasai, Gordhan Das & Nafees, Mohammad, 2019. "Energy-environment-economy nexus in Pakistan: Lessons from a PAK-TIMES model," Energy Policy, Elsevier, vol. 126(C), pages 200-211.
    4. Ortega, Margarita & Río, Pablo del & Ruiz, Pablo & Nijs, Wouter & Politis, Savvas, 2020. "Analysing the influence of trade, technology learning and policy on the employment prospects of wind and solar energy deployment: The EU case," Renewable and Sustainable Energy Reviews, Elsevier, vol. 122(C).
    5. David Klenert & Linus Mattauch & Emmanuel Combet & Ottmar Edenhofer & Cameron Hepburn & Ryan Rafaty & Nicholas Stern, 2018. "Making carbon pricing work for citizens," Nature Climate Change, Nature, vol. 8(8), pages 669-677, August.
    6. Diallo, Arouna & Moussa, Richard K., 2020. "The effects of solar home system on welfare in off-grid areas: Evidence from Côte d’Ivoire," Energy, Elsevier, vol. 194(C).
    7. Amorim, Filipa & Simoes, Sofia G. & Siggini, Gildas & Assoumou, Edi, 2020. "Introducing climate variability in energy systems modelling," Energy, Elsevier, vol. 206(C).
    8. Assoumou, Edi & Maïzi, Nadia, 2011. "Carbon value dynamics for France: A key driver to support mitigation pledges at country scale," Energy Policy, Elsevier, vol. 39(7), pages 4325-4336, July.
    9. Tang, Keyi & Shen, Yingjiao, 2020. "Do China-financed dams in Sub-Saharan Africa improve the region's social welfare? A case study of the impacts of Ghana's Bui Dam," Energy Policy, Elsevier, vol. 136(C).
    10. Miria A. Pigato, 2019. "Fiscal Policies for Development and Climate Action," World Bank Publications - Books, The World Bank Group, number 31051, December.
    11. Ram, Manish & Aghahosseini, Arman & Breyer, Christian, 2020. "Job creation during the global energy transition towards 100% renewable power system by 2050," Technological Forecasting and Social Change, Elsevier, vol. 151(C).
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