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  Energy systems in scenarios at net-zero CO2 emissions

DeAngelo, J., Azevedo, I., Bistline, J., Clarke, L., Luderer, G., Byers, E., Davis, S. J. (2021): Energy systems in scenarios at net-zero CO2 emissions. - Nature Communications, 12, 6096.
https://doi.org/10.1038/s41467-021-26356-y

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http://creativecommons.org/licenses/by/4.0/

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DeAngelo, Julianne1, ???ENUM_CREATORROLE_AUTHOR???
Azevedo, Inês1, ???ENUM_CREATORROLE_AUTHOR???
Bistline, John1, ???ENUM_CREATORROLE_AUTHOR???
Clarke, Leon1, ???ENUM_CREATORROLE_AUTHOR???
Luderer, Gunnar2, ???ENUM_CREATORROLE_AUTHOR???           
Byers, Edward1, ???ENUM_CREATORROLE_AUTHOR???
Davis, Steven J.1, ???ENUM_CREATORROLE_AUTHOR???
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1External Organizations, ou_persistent22              
2Potsdam Institute for Climate Impact Research, Potsdam, ou_persistent13              

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 ???ViewItemFull_lblAbstract???: Achieving net-zero CO2 emissions has become the explicitgoal of many climate-energy policies around the world. Although many studies have assessed net-zero emissions pathways, the common features and tradeoffs of energy systems across global scenarios at the point of net-zero CO2 emissions have not yet been evaluated. Here, we examine the energy systems of 177 net-zero scenarios and discuss their long-term technological and regional characteristics in the context of current energy policies. We find that, on average, renewable energy sources account for 60% of primary energy at net-zero (compared to ∼14% today), with slightly less than half of that renewable energy derived from biomass. Meanwhile, electricity makes up approximately half of final energy consumed (compared to ∼20% today), highlighting the extent to which solid, liquid, and gaseous fuels remain prevalent in the scenarios even when emissions reach net-zero. Finally, residual emissions and offsetting negative emissions are not evenly distributed across world regions, which may have important implications for negotiations on burden-sharing, human development, and equity.

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 ???ViewItemFull_lblDates???: 2021-10-202021-10-20
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 ???ViewItemFull_lblIdentifiers???: ???ENUM_IDENTIFIERTYPE_DOI???: 10.1038/s41467-021-26356-y
???ENUM_IDENTIFIERTYPE_PIKDOMAIN???: RD3 - Transformation Pathways
???ENUM_IDENTIFIERTYPE_ORGANISATIONALK???: RD3 - Transformation Pathways
???ENUM_IDENTIFIERTYPE_RESEARCHTK???: 1.5/2°C limit
???ENUM_IDENTIFIERTYPE_RESEARCHTK???: CO2 Removal
???ENUM_IDENTIFIERTYPE_RESEARCHTK???: Energy
???ENUM_IDENTIFIERTYPE_RESEARCHTK???: Mitigation
???ENUM_IDENTIFIERTYPE_REGIONALK???: Global
???ENUM_IDENTIFIERTYPE_MODELMETHOD???: REMIND
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???ViewItemFull_lblSourceTitle???: Nature Communications
???ViewItemFull_lblSourceGenre???: ???ENUM_GENRE_JOURNAL???, SCI, Scopus, p3, oa
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???ENUM_IDENTIFIERTYPE_PUBLISHER???: Nature