Integrated life-cycle assessment of electricity-supply scenarios confirms global environmental benefit of low-carbon technologies

Norwegian University of Science and Technology · University of California, Santa Barbara · +4 more institutions

PubMed
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Abstract

Decarbonization of electricity generation can support climate-change mitigation and presents an opportunity to address pollution resulting from fossil-fuel combustion. Generally, renewable technologies require higher initial investments in infrastructure than fossil-based power systems. To assess the tradeoffs of increased up-front emissions and reduced operational emissions, we present, to our knowledge, the first global, integrated life-cycle assessment (LCA) of long-term, wide-scale implementation of electricity generation from renewable sources (i.e., photovoltaic and solar thermal, wind, and hydropower) and of carbon dioxide capture and storage for fossil power generation. We compare emissions causing…

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739
total citations
FWCI
52.10
Percentile
100%
References
109
Citations per year

Authors

10

Topics & keywords

Keywords
  • Environmental science
  • Renewable energy
  • Electricity generation
  • Climate change mitigation
  • Life-cycle assessment
  • Photovoltaic system
  • Greenhouse gas
  • Fossil fuel
UN Sustainable Development Goals
  • Responsible consumption and production
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