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Plausible energy demand patterns in a growing global economy with climate policy

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  • Semieniuk, Gregor
  • Taylor, Lance
  • Rezai, Armon
  • Foley, Duncan

Abstract

Reducing energy demand has become a key mechanism for limiting climate change, but practical problems with large energy savings in a growing global economy and, importantly, in its lower-income parts remain. Using new energy-GDP data, we show that adopting the same near-term low-energy growth trajectory in all regions in IPCC scenarios limiting global warming to 1.5°C presents an unresolved policy challenge. We discuss this challenge of combining energy demand reductions with robustincome growth for the 6.4 billion people in middle and low income countries in light of economic development’s reliance on industrialisation. Our results highlight the importance of addressing limits to energy demand reduction in integrated assessment modelling when regional economic development is powered by industrialization and instead exploring faster energy supply decarbonization. Insights from development economics and other disciplines could help generate plausible assumptions given the financial, investment and stability issues involved.

Suggested Citation

  • Semieniuk, Gregor & Taylor, Lance & Rezai, Armon & Foley, Duncan, 2020. "Plausible energy demand patterns in a growing global economy with climate policy," Ecological Economic Papers 39, WU Vienna University of Economics and Business.
  • Handle: RePEc:wiw:wus045:8085
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    Cited by:

    1. Santos, João & Borges, Afonso S. & Domingos, Tiago, 2021. "Exploring the links between total factor productivity and energy efficiency: Portugal, 1960–2014," Energy Economics, Elsevier, vol. 101(C).
    2. Omer, Ozlem & Capaldo, Jeronim, 2023. "The risks of the wrong climate policy for developing countries: Scenarios for South Africa," Ecological Economics, Elsevier, vol. 211(C).
    3. Zhang, Yanfang & Wei, Jinpeng & Gao, Qi & Shi, Xunpeng & Zhou, Dequn, 2022. "Coordination between the energy-consumption permit trading scheme and carbon emissions trading: Evidence from China," Energy Economics, Elsevier, vol. 116(C).
    4. Michael Carnegie LaBelle & Géza Tóth & Tekla Szép, 2022. "Not Fit for 55: Prioritizing Human Well-Being in Residential Energy Consumption in the European Union," Energies, MDPI, vol. 15(18), pages 1-25, September.
    5. Charles A. S. Hall, 2022. "The 50th Anniversary of The Limits to Growth : Does It Have Relevance for Today’s Energy Issues?," Energies, MDPI, vol. 15(14), pages 1-13, July.
    6. Fang, Yan Ru & Peng, Wei & Urpelainen, Johannes & Hossain, M.S. & Qin, Yue & Ma, Teng & Ren, Ming & Liu, Xiaorui & Zhang, Silu & Huang, Chen & Dai, Hancheng, 2023. "Neutralizing China's transportation sector requires combined decarbonization efforts from power and hydrogen supply," Applied Energy, Elsevier, vol. 349(C).
    7. Andrius Zuoza & Vaida Pilinkienė, 2021. "Energy Efficiency and Carbon Emission Impact on Competitiveness in the European Energy Intensive Industries," Energies, MDPI, vol. 14(15), pages 1-16, August.
    8. Fouquet, Roger & Hippe, Ralph, 2022. "Twin transitions of decarbonisation and digitalisation: a historical perspective on energy and information in European economies," LSE Research Online Documents on Economics 115544, London School of Economics and Political Science, LSE Library.
    9. Ur Rehman, Faheem & Islam, Md. Monirul, 2023. "Does energy infrastructure spur total factor productivity (TFP) in middle-income economies? An application of a novel energy infrastructure index," Applied Energy, Elsevier, vol. 336(C).
    10. Brockway, Paul E. & Sorrell, Steve & Semieniuk, Gregor & Heun, Matthew Kuperus & Court, Victor, 2021. "Energy efficiency and economy-wide rebound effects: A review of the evidence and its implications," Renewable and Sustainable Energy Reviews, Elsevier, vol. 141(C).
    11. Servaas Storm, 2023. "Lance Taylor (1940–2022): Reconstructing Macroeconomics," Development and Change, International Institute of Social Studies, vol. 54(5), pages 1331-1353, September.
    12. Su, Chi-Wei & Yuan, Xi & Tao, Ran & Shao, Xuefeng, 2022. "Time and frequency domain connectedness analysis of the energy transformation under climate policy," Technological Forecasting and Social Change, Elsevier, vol. 184(C).
    13. Ignacio Mauleón, 2021. "Aggregated World Energy Demand Projections: Statistical Assessment," Energies, MDPI, vol. 14(15), pages 1-13, July.

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