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Energy system transitions and low-carbon pathways in Australia, Brazil, Canada, China, EU-28, India, Indonesia, Japan, Republic of Korea, Russia and the United States

Panagiotis Fragkos, Heleen Laura van Soest, Roberto Schaeffer, Luke Reedman, Alexandre C. Köberle, Nick Macaluso, Stavroula Evangelopoulou, Alessia De Vita, Fu Sha, Chai Qimin, Jiang Kejun, Ritu Mathur, Swapnil Shekhar, Retno Gumilang Dewi, Silva Herran Diego, Ken Oshiro, Shinichiro Fujimori, Chan Park, George Safonov and Gokul Iyer

Energy, 2021, vol. 216, issue C

Abstract: The Paris Agreement invited Parties to develop low-emission development strategies. This study presents national low-emission scenarios to inform such strategies for Australia, Brazil, Canada, China, EU-28, India, Indonesia, Japan, Republic of Korea, Russia and the USA. We use country-level technology-rich energy-economy and integrated assessment models that include detailed representations of the energy, transport and land systems and provide insights on emissions, energy system and economic implications of low-emission pathways until 2050. We show that the low-emission pathways of most economies studied here are consistent with pathways limiting global temperature increase to well-below 2 °C, while emission reductions are achieved through uptake of renewable energy, energy efficiency improvements and electrification of energy services. The role of mitigation options like nuclear, carbon capture and storage (CCS) and advanced biofuels is differentiates across countries, depending on national priorities, specificities and resource endowments. The energy system transformation requires a pronounced reallocation of investments towards low-carbon technologies, but without raising significant affordability issues in most countries. National pathways improve the consistency between country policy plans with global temperature goals and capture structural heterogeneities and broad socio-economic considerations.

Keywords: Low-emission pathways; Mid-century low-emission strategies; Energy transition; National and global mitigation pathways; Energy system and integrated assessment models (search for similar items in EconPapers)
Date: 2021
References: View references in EconPapers View complete reference list from CitEc
Citations: View citations in EconPapers (39)

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Persistent link: https://EconPapers.repec.org/RePEc:eee:energy:v:216:y:2021:i:c:s0360544220324920

DOI: 10.1016/j.energy.2020.119385

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