Hermann Lotze-Campen
Biographic Data
| ID | 1574766 |
|---|---|
| NAME | Hermann Lotze-Campen |
| GIVEN NAMES | Hermann |
| FAMILY NAME | Lotze-Campen |
| SIGNATURE | LOTZE-CAMPEN H |
| AFFILIATIONS | Earth System Analysis, Potsdam Institute for Climate Impact Research, D-14412 Potsdam, Germany; and |
| VERIFIED | No |
| TOTAL WORKS | 17 |
| TOTAL CITATIONS | 57 |
| AUTHOR COUNT | 16 |
| EDITOR COUNT | 1 |
| FIRST PUBLICATION YEAR | 2006 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 3 |
Precision justice in climate adaptation
Climate adaptation promises resilience, yet persistent disparities suggest that current investments fail to identify who remains most vulnerable and why. We introduce precision justice - a diagnostic framework centered on asymmetric climate sensitivity that distinguishes households suffering steep yield losses under adverse conditions from those able to benefit under favorable conditions. Applying this framework to 569 maize-producing smallholder…
Assessing the impacts of technological change on food security and climate change mitigation in China’s agriculture and land-use sectors
The role of food and land use systems in achieving India’s sustainability targets
The food and land use sector is a major contributor to India’s total greenhouse gas (GHG) emissions. On one hand, India is committed to sustainability targets in the Agriculture, Forestry and Other Land Use (AFOLU) sectors, on the other, there is little clarity whether these objectives can align with national developmental priorities of food security and environmental protection. This study fills the gap by reviewing multiple corridors to sustain…
Beyond land-use intensity
Large-scale bioenergy production
Large-scale 2nd generation bioenergy deployment is a key element of 1.5 °C and 2 °C transformation pathways. However, large-scale bioenergy production might have negative sustainability implications and thus may conflict with the Sustainable Development Goal (SDG) agenda. Here, we carry out a multi-criteria sustainability assessment of large-scale bioenergy crop production throughout the 21st century (300 EJ in 2100) using a global land-use model…
Taking account of governance
Climate change effects on agriculture
Significance Plausible estimates of climate change impacts on agriculture require integrated use of climate, crop, and economic models. We investigate the contribution of economic models to uncertainty in this impact chain. In the nine economic models included, the direction of management intensity, area, consumption, and international trade responses to harmonized crop yield shocks from climate change are similar. However, the magnitudes differ …
The global economic long-term potential of modern biomass in a climate-constrained world
Low-stabilization scenarios consistent with the 2 °C target project large-scale deployment of purpose-grown lignocellulosic biomass. In case a GHG price regime integrates emissions from energy conversion and from land-use/land-use change, the strong demand for bioenergy and the pricing of terrestrial emissions are likely to coincide. We explore the global potential of purpose-grown lignocellulosic biomass and ask the question how the supply price…
Investigating afforestation and bioenergy CCS as climate change mitigation strategies
The land-use sector can contribute to climate change mitigation not only by reducing greenhouse gas (GHG) emissions, but also by increasing carbon uptake from the atmosphere and thereby creating negative CO2 emissions. In this paper, we investigate two land-based climate change mitigation strategies for carbon removal: (1) afforestation and (2) bioenergy in combination with carbon capture and storage technology (bioenergy CCS). In our approach, a…
Valuing the impact of trade on local blue water
Conservation of undisturbed natural forests and economic impacts on agriculture
Climate Change, Justice and Sustainability
Rich nations are mainly responsible for global greenhouse gas emissions, and they are financially and institutionally better placed to adapt to the impacts of global climate change. Developing countries, though, must face issues such as severe droughts, floods, and other environmental changes associated with the Earth’s warming, with far fewer resources to adapt at their disposal. This volume examines the way climate change is affecting the lives…
Additional CO2 emissions from land use change — Forest conservation as a precondition for sustainable production of second generation bioenergy
Challenges for land system science
Climate change risks for African agriculture
The Intergovernmental Panel on Climate Change (IPCC) assessment of major risks for African agriculture and food security caused by climate change during coming decades is confirmed by a review of more recent climate change impact assessments (14 quantitative, six qualitative). Projected impacts relative to current production levels range from −100% to +168% in econometric, from −84% to +62% in process-based, and from −57% to +30% in statistical a…
Improved data for integrated modeling of global environmental change
The assessment of global environmental changes, their impact on human societies, and possible management options requires large-scale, integrated modeling efforts. These models have to link biophysical with socio-economic processes, and they have to take spatial heterogeneity of environmental conditions into account. Land use change and freshwater use are two key research areas where spatial aggregation and the use of regional average numbers may…
From LTER to LTSER
Haberl, H., V. Winiwarter, K. Andersson, R. U. Ayres, C. Boone, A. Castillo, G. Cunfer, M. Fischer-Kowalski, W. R. Freudenburg, E. Furman, R. Kaufmann, F. Krausmann, E. Langthaler, H. Lotze-Campen, M. Mirtl, C. L. Redman, A. Reenberg, A. Wardell, B. Warr, and H. Zechmeister 2006. From LTER to LTSER: conceptualizing the socioeconomic dimension of long-term socioecological research. Ecology and Society 11(2): 13. https://doi.org/10.5751/ES-01786-11…
Challenges for land system science
From LTER to LTSER
Haberl, H., V. Winiwarter, K. Andersson, R. U. Ayres, C. Boone, A. Castillo, G. Cunfer, M. Fischer-Kowalski, W. R. Freudenburg, E. Furman, R. Kaufmann, F. Krausmann, E. Langthaler, H. Lotze-Campen, M. Mirtl, C. L. Redman, A. Reenberg, A. Wardell, B. Warr, and H. Zechmeister 2006. From LTER to LTSER: conceptualizing the socioeconomic dimension of long-term socioecological research. Ecology and Society 11(2): 13. https://doi.org/10.5751/ES-01786-11…
Assessing the impacts of technological change on food security and climate change mitigation in China’s agriculture and land-use sectors
From LTER to LTSER
Haberl, H., V. Winiwarter, K. Andersson, R. U. Ayres, C. Boone, A. Castillo, G. Cunfer, M. Fischer-Kowalski, W. R. Freudenburg, E. Furman, R. Kaufmann, F. Krausmann, E. Langthaler, H. Lotze-Campen, M. Mirtl, C. L. Redman, A. Reenberg, A. Wardell, B. Warr, and H. Zechmeister 2006. From LTER to LTSER: conceptualizing the socioeconomic dimension of long-term socioecological research. Ecology and Society 11(2): 13. https://doi.org/10.5751/ES-01786-11…
Climate change risks for African agriculture
The Intergovernmental Panel on Climate Change (IPCC) assessment of major risks for African agriculture and food security caused by climate change during coming decades is confirmed by a review of more recent climate change impact assessments (14 quantitative, six qualitative). Projected impacts relative to current production levels range from −100% to +168% in econometric, from −84% to +62% in process-based, and from −57% to +30% in statistical a…
Improved data for integrated modeling of global environmental change
The assessment of global environmental changes, their impact on human societies, and possible management options requires large-scale, integrated modeling efforts. These models have to link biophysical with socio-economic processes, and they have to take spatial heterogeneity of environmental conditions into account. Land use change and freshwater use are two key research areas where spatial aggregation and the use of regional average numbers may…
Climate Change, Justice and Sustainability
Rich nations are mainly responsible for global greenhouse gas emissions, and they are financially and institutionally better placed to adapt to the impacts of global climate change. Developing countries, though, must face issues such as severe droughts, floods, and other environmental changes associated with the Earth’s warming, with far fewer resources to adapt at their disposal. This volume examines the way climate change is affecting the lives…
Additional CO2 emissions from land use change — Forest conservation as a precondition for sustainable production of second generation bioenergy
Challenges for land system science
Conservation of undisturbed natural forests and economic impacts on agriculture
Climate change effects on agriculture
Significance Plausible estimates of climate change impacts on agriculture require integrated use of climate, crop, and economic models. We investigate the contribution of economic models to uncertainty in this impact chain. In the nine economic models included, the direction of management intensity, area, consumption, and international trade responses to harmonized crop yield shocks from climate change are similar. However, the magnitudes differ …
The global economic long-term potential of modern biomass in a climate-constrained world
Low-stabilization scenarios consistent with the 2 °C target project large-scale deployment of purpose-grown lignocellulosic biomass. In case a GHG price regime integrates emissions from energy conversion and from land-use/land-use change, the strong demand for bioenergy and the pricing of terrestrial emissions are likely to coincide. We explore the global potential of purpose-grown lignocellulosic biomass and ask the question how the supply price…
Investigating afforestation and bioenergy CCS as climate change mitigation strategies
The land-use sector can contribute to climate change mitigation not only by reducing greenhouse gas (GHG) emissions, but also by increasing carbon uptake from the atmosphere and thereby creating negative CO2 emissions. In this paper, we investigate two land-based climate change mitigation strategies for carbon removal: (1) afforestation and (2) bioenergy in combination with carbon capture and storage technology (bioenergy CCS). In our approach, a…
Valuing the impact of trade on local blue water
Taking account of governance
Large-scale bioenergy production
Large-scale 2nd generation bioenergy deployment is a key element of 1.5 °C and 2 °C transformation pathways. However, large-scale bioenergy production might have negative sustainability implications and thus may conflict with the Sustainable Development Goal (SDG) agenda. Here, we carry out a multi-criteria sustainability assessment of large-scale bioenergy crop production throughout the 21st century (300 EJ in 2100) using a global land-use model…
Beyond land-use intensity
The role of food and land use systems in achieving India’s sustainability targets
The food and land use sector is a major contributor to India’s total greenhouse gas (GHG) emissions. On one hand, India is committed to sustainability targets in the Agriculture, Forestry and Other Land Use (AFOLU) sectors, on the other, there is little clarity whether these objectives can align with national developmental priorities of food security and environmental protection. This study fills the gap by reviewing multiple corridors to sustain…
Assessing the impacts of technological change on food security and climate change mitigation in China’s agriculture and land-use sectors
Precision justice in climate adaptation
Climate adaptation promises resilience, yet persistent disparities suggest that current investments fail to identify who remains most vulnerable and why. We introduce precision justice - a diagnostic framework centered on asymmetric climate sensitivity that distinguishes households suffering steep yield losses under adverse conditions from those able to benefit under favorable conditions. Applying this framework to 569 maize-producing smallholder…
Economics (13 works) · Ecology (12 works) · Natural resource economics (12 works) · Environmental Science (11 works) · Agricultural economics (9 works) · Agriculture (9 works) · Geography (9 works) · Land use (9 works) · Land use, land-use change and forestry (8 works) · Environmental resource management (7 works)