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Hannes Böttcher

Biographic Data

ID6568200
NAMEHannes Böttcher
GIVEN NAMESHannes
FAMILY NAMEBöttcher
SIGNATUREBÖTTCHER H
AFFILIATIONSInternational Institute for Applied Systems Analysis
ORCID0000-0001-8238-3006
VERIFIEDYes
TOTAL WORKS10
TOTAL CITATIONS8
AUTHOR COUNT10
EDITOR COUNT0
FIRST PUBLICATION YEAR2008
LATEST PUBLICATION YEAR2021
H-INDEX2
  • Environmental and socioeconomic footprints of the German bioeconomy

    Open Access•Bringezu, Martin Distelkamp et al.•ARTICLE•Nature Sustainability•2021•References: 7

  • Independent data for transparent monitoring of greenhouse gas emissions from the land use sector – What do stakeholders think and need

    Open Access•Erika Romijn, Veronique De Sy et al.•ARTICLE•Environmental Science & Policy•2018•Cited by: 2

    The agriculture, forestry and other land use (AFOLU) sectors contribute substantially to the net global anthropogenic greenhouse gas (GHG) emissions. To reduce these emissions under the Paris Agreement, effective mitigation actions are needed that require engagement of multiple stakeholders. Emission reduction also requires that accurate, consistent and comparable datasets are available for transparent reference and progress monitoring. Availabil…

  • The dynamic soil organic carbon mitigation potential of European cropland

    Open Access•Stefan Frank, Erwin Schmid et al.•ARTICLE•Global Environmental Change•2015•Cited by: 1•References: 2

  • Climate change mitigation through livestock system transitions

    Open Access•Peter Havlík, Petr Havlík et al.•ARTICLE•Proceedings of the National…•2014

    Significance The livestock sector contributes significantly to global warming through greenhouse gas (GHG) emissions. At the same time, livestock is an invaluable source of nutrition and livelihood for millions of poor people. Therefore, climate mitigation policies involving livestock must be designed with extreme care. Here we demonstrate the large mitigation potential inherent in the heterogeneity of livestock production systems. We find that e…

  • How much land‐based greenhouse gas mitigation can be achieved without compromising food security and environmental goals?

    Open Access•Pete Smith, H Haberl et al.•ARTICLE•Global Change Biology•2013

    Feeding 9–10 billion people by 2050 and preventing dangerous climate change are two of the greatest challenges facing humanity. Both challenges must be met while reducing the impact of land management on ecosystem services that deliver vital goods and services, and support human health and well‐being. Few studies to date have considered the interactions between these challenges. In this study we briefly outline the challenges, review the supply‐ …

  • What causes differences between national estimates of forest management carbon emissions and removals compared to estimates of large-scale models

    Open Access•T A Groen, Pieter Johannes Verkerk et al.•ARTICLE•Environmental Science & Policy•2013

  • Choice of forest map has implications for policy analysis: A case study on the EU biofuel target

    Open Access•Lucia Seebach, Ian Mccallum et al.•ARTICLE•Environmental Science & Policy•2012•Cited by: 1•References: 3

  • Global land-use implications of first and second generation biofuel targets

    Open Access•Peter Havlík, Petr Havlík et al.•ARTICLE•Energy Policy•2011

  • Terrestrial ecosystem management for climate change mitigation

    Open Access•Michael Obersteiner, Hannes Böttcher et al.•ARTICLE•Current Opinion in Environmental…•2010•References: 6

  • Accounting of forest carbon sinks and sources under a future climate protocol—factoring out past disturbance and management effects on age–class structure

    Open Access•Hannes Böttcher, Werner A Kurz et al.•ARTICLE•Environmental Science & Policy•2008•Cited by: 4

  • Accounting of forest carbon sinks and sources under a future climate protocol—factoring out past disturbance and management effects on age–class structure

    Open Access•Hannes Böttcher, Werner A Kurz et al.•ARTICLE•Environmental Science & Policy•2008•Cited by: 4

  • Independent data for transparent monitoring of greenhouse gas emissions from the land use sector – What do stakeholders think and need

    Open Access•Erika Romijn, Veronique De Sy et al.•ARTICLE•Environmental Science & Policy•2018•Cited by: 2

    The agriculture, forestry and other land use (AFOLU) sectors contribute substantially to the net global anthropogenic greenhouse gas (GHG) emissions. To reduce these emissions under the Paris Agreement, effective mitigation actions are needed that require engagement of multiple stakeholders. Emission reduction also requires that accurate, consistent and comparable datasets are available for transparent reference and progress monitoring. Availabil…

  • The dynamic soil organic carbon mitigation potential of European cropland

    Open Access•Stefan Frank, Erwin Schmid et al.•ARTICLE•Global Environmental Change•2015•Cited by: 1•References: 2

  • Choice of forest map has implications for policy analysis: A case study on the EU biofuel target

    Open Access•Lucia Seebach, Ian Mccallum et al.•ARTICLE•Environmental Science & Policy•2012•Cited by: 1•References: 3

  • Accounting of forest carbon sinks and sources under a future climate protocol—factoring out past disturbance and management effects on age–class structure

    Open Access•Hannes Böttcher, Werner A Kurz et al.•ARTICLE•Environmental Science & Policy•2008•Cited by: 4

  • Terrestrial ecosystem management for climate change mitigation

    Open Access•Michael Obersteiner, Hannes Böttcher et al.•ARTICLE•Current Opinion in Environmental…•2010•References: 6

  • Global land-use implications of first and second generation biofuel targets

    Open Access•Peter Havlík, Petr Havlík et al.•ARTICLE•Energy Policy•2011

  • Choice of forest map has implications for policy analysis: A case study on the EU biofuel target

    Open Access•Lucia Seebach, Ian Mccallum et al.•ARTICLE•Environmental Science & Policy•2012•Cited by: 1•References: 3

  • How much land‐based greenhouse gas mitigation can be achieved without compromising food security and environmental goals?

    Open Access•Pete Smith, H Haberl et al.•ARTICLE•Global Change Biology•2013

    Feeding 9–10 billion people by 2050 and preventing dangerous climate change are two of the greatest challenges facing humanity. Both challenges must be met while reducing the impact of land management on ecosystem services that deliver vital goods and services, and support human health and well‐being. Few studies to date have considered the interactions between these challenges. In this study we briefly outline the challenges, review the supply‐ …

  • What causes differences between national estimates of forest management carbon emissions and removals compared to estimates of large-scale models

    Open Access•T A Groen, Pieter Johannes Verkerk et al.•ARTICLE•Environmental Science & Policy•2013

  • Climate change mitigation through livestock system transitions

    Open Access•Peter Havlík, Petr Havlík et al.•ARTICLE•Proceedings of the National…•2014

    Significance The livestock sector contributes significantly to global warming through greenhouse gas (GHG) emissions. At the same time, livestock is an invaluable source of nutrition and livelihood for millions of poor people. Therefore, climate mitigation policies involving livestock must be designed with extreme care. Here we demonstrate the large mitigation potential inherent in the heterogeneity of livestock production systems. We find that e…

  • The dynamic soil organic carbon mitigation potential of European cropland

    Open Access•Stefan Frank, Erwin Schmid et al.•ARTICLE•Global Environmental Change•2015•Cited by: 1•References: 2

  • Independent data for transparent monitoring of greenhouse gas emissions from the land use sector – What do stakeholders think and need

    Open Access•Erika Romijn, Veronique De Sy et al.•ARTICLE•Environmental Science & Policy•2018•Cited by: 2

    The agriculture, forestry and other land use (AFOLU) sectors contribute substantially to the net global anthropogenic greenhouse gas (GHG) emissions. To reduce these emissions under the Paris Agreement, effective mitigation actions are needed that require engagement of multiple stakeholders. Emission reduction also requires that accurate, consistent and comparable datasets are available for transparent reference and progress monitoring. Availabil…

  • Environmental and socioeconomic footprints of the German bioeconomy

    Open Access•Bringezu, Martin Distelkamp et al.•ARTICLE•Nature Sustainability•2021•References: 7

Environmental Science (9 works) · Business (7 works) · Economics (7 works) · Greenhouse gas (7 works) · Natural resource economics (7 works) · Environmental resource management (6 works) · Ecology (5 works) · Geography (5 works) · Land use (5 works) · Agriculture (4 works)

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