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  Bioenergy for climate change mitigation: Scale and sustainability

Calvin, K., Cowie, A., Berndes, G., Arneth, A., Cherubini, F., Portugal‐Pereira, J., Grassi, G., House, J., Johnson, F. X., Popp, A., Rounsevell, M., Slade, R., Smith, P. (2021): Bioenergy for climate change mitigation: Scale and sustainability. - Global Change Biology Bioenergy, 13, 9, 1346-1371.
https://doi.org/10.1111/gcbb.12863

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 Creators:
Calvin, Katherine1, Author
Cowie, Annette1, Author
Berndes, Göran1, Author
Arneth, Almut1, Author
Cherubini, Francesco1, Author
Portugal‐Pereira, Joana1, Author
Grassi, Giacomo1, Author
House, Jo1, Author
Johnson, Francis X.1, Author
Popp, Alexander2, Author              
Rounsevell, Mark1, Author
Slade, Raphael1, Author
Smith, Pete1, Author
Affiliations:
1External Organizations, ou_persistent22              
2Potsdam Institute for Climate Impact Research, ou_persistent13              

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 Abstract: Many global climate change mitigation pathways presented in IPCC assessment reports rely heavily on the deployment of bioenergy, often used in conjunction with carbon capture and storage. We review the literature on bioenergy use for climate change mitigation, including studies that use top-down integrated assessment models or bottom-up modelling, and studies that do not rely on modelling. We summarize the state of knowledge concerning potential co-benefits and adverse side effects of bioenergy systems and discuss limitations of modelling studies used to analyse consequences of bioenergy expansion. The implications of bioenergy supply on mitigation and other sustainability criteria are context dependent and influenced by feedstock, management regime, climatic region, scale of deployment and how bioenergy alters energy systems and land use. Depending on previous land use, widespread deployment of monoculture plantations may contribute to mitigation but can cause negative impacts across a range of other sustainability criteria. Strategic integration of new biomass supply systems into existing agriculture and forest landscapes may result in less mitigation but can contribute positively to other sustainability objectives. There is considerable variation in evaluations of how sustainability challenges evolve as the scale of bioenergy deployment increases, due to limitations of existing models, and uncertainty over the future context with respect to the many variables that influence alternative uses of biomass and land. Integrative policies, coordinated institutions and improved governance mechanisms to enhance co-benefits and minimize adverse side effects can reduce the risks of large-scale deployment of bioenergy. Further, conservation and efficiency measures for energy, land and biomass can support greater flexibility in achieving climate change mitigation and adaptation.

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 Dates: 2021-07-102021-08-12
 Publication Status: Finally published
 Pages: -
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 Table of Contents: -
 Rev. Type: Peer
 Identifiers: DOI: 10.1111/gcbb.12863
Organisational keyword: RD3 - Transformation Pathways
PIKDOMAIN: RD3 - Transformation Pathways
MDB-ID: No data to archive
OATYPE: Gold Open Access
Working Group: Land-Use Management
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Title: Global Change Biology Bioenergy
Source Genre: Journal, SCI, Scopus, p3, GCB bioenergy
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Pages: - Volume / Issue: 13 (9) Sequence Number: - Start / End Page: 1346 - 1371 Identifier: CoNE: https://publications.pik-potsdam.de/cone/journals/resource/140715
Publisher: Wiley