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Low-cost renewable electricity as the key driver of the global energy transition towards sustainability

Energy · 2021 · Vol. 227 · pp. 120467–120467
Dmitrii BogdanovManish RamArman AghahosseiniAshish GulagiAyobami Solomon OyewoMichael ChildUpeksha CalderaKristina SadovskaiaJavier FarfanLarissa de Souza Noel Simas BarbosaMahdi FasihiSiavash KhaliliThure TraberChristian Breyer

Abstract

Climate change threats and the necessity to achieve global Sustainable Development Goals demand unprecedented economic and social shifts around the world, including a fundamental transformation of the global energy system. An energy transition is underway in most regions, predominantly in the power sector. This research highlights the technical feasibility and economic viability of 100% renewable energy systems including the power, heat, transport and desalination sectors. It presents a technology-rich, multi-sectoral, multi-regional and cost-optimal global energy transition pathway for 145 regional energy systems sectionalised into nine major regions of the world. This 1.5 °C target compatible scenario with rapid direct and indirect electrification via Power-to-X processes and massive defossilisation indicates substantial benefits: 50% energy savings, universal access to fresh water and low-cost energy supply. It also provides an energy transition pathway that could lead from the current fossil-based system to an affordable, efficient, sustainable and secure energy future for the world.

Hybrid Renewable Energy SystemsIntegrated Energy Systems OptimizationWater-Energy-Food Nexus StudiesRenewable energyElectrificationEnvironmental economicsSustainabilityEnergy transitionNatural resource economicsElectricityEnergy engineeringBusinessEfficient energy use

Funding

  • Deutsche Bundesstiftung Umwelt
  • Stiftung Mercator
  • Business Finland
Citations
863
FWCI
38.19
field-weighted impact
References
78
Percentile
100%
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References
Renewable Power-to-Gas: A technological and economic review
Renewable Energy · 2015 · 2,454 citations
Learning rates for energy technologies
Energy Policy · 2001 · 905 citations
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