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The geography of energy and education: Leaders, laggards, and lessons for achieving primary and secondary school electrification

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  • Sovacool, Benjamin K.
  • Ryan, Sarah E.

Abstract

Even though large-scale electricity networks have existed for more than a century, thousands of primary and secondary schools have no electricity. More than 80 percent of children in Sub-Saharan Africa attend primary schools that lack electricity, more than a quarter of village schools in India lack electricity access, and fewer than half of Peruvian schools are electrified. Collectively, nearly 200 million children attend schools not connected to any type of electricity supply—a number greater than the populations of Nigeria, Bangladesh, Russia or Japan. Throughout the globe, certain countries and regions lead the way in school electrification while others lag behind. Through the lens of energy and education geography, this Article identifies a series of interconnected challenges to electrifying schools. Obstacles span financing and technical reliability to bias in educational and energy funding to inability of electrification to yield net positive learning outcomes. Despite these challenges, solutions do exist, as the activities of emerging energy leaders demonstrate. High upfront costs can be mitigated by tapping into diverse financing streams and distributing risk through public private partnerships. Technical problems can be countered by stable policy frameworks with strong technical standards and certification schemes. Electrification efforts can be coupled with household and cooking programs that build community. This Article shows that schools can provide students with the light, heat, and modern tools of teaching they deserve if planners, investors, and policymakers make determined, coordinated efforts at providing energy for education.

Suggested Citation

  • Sovacool, Benjamin K. & Ryan, Sarah E., 2016. "The geography of energy and education: Leaders, laggards, and lessons for achieving primary and secondary school electrification," Renewable and Sustainable Energy Reviews, Elsevier, vol. 58(C), pages 107-123.
  • Handle: RePEc:eee:rensus:v:58:y:2016:i:c:p:107-123
    DOI: 10.1016/j.rser.2015.12.219
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    5. Falchetta, Giacomo & Stevanato, Nicolò & Moner-Girona, Magda & Mazzoni, Davide & Colombo, Emanuela & Hafner, Manfred, 2020. "M-LED: Multi-sectoral Latent Electricity Demand Assessment for Energy Access Planning," FEP: Future Energy Program 305213, Fondazione Eni Enrico Mattei (FEEM) > FEP: Future Energy Program.
    6. Liao, Chuan & Erbaugh, James T. & Kelly, Allison C. & Agrawal, Arun, 2021. "Clean energy transitions and human well-being outcomes in Lower and Middle Income Countries: A systematic review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 145(C).
    7. McCauley, Darren & Pettigrew, Kerry A. & Todd, Iain & Milchram, Christine, 2023. "Leaders and laggards in the pursuit of an EU just transition," Ecological Economics, Elsevier, vol. 205(C).
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