Tim Beringer
Datos Biográficos
| ID | 6824149 |
|---|---|
| NOMBRE | Tim Beringer |
| NOMBRES | Tim |
| APELLIDO | Beringer |
| FIRMA | BERINGER T |
| AFILIACIONES | Potsdam Institute for Climate Impact Research |
| ORCID | 0000-0002-5567-8738 |
| VERIFICADO | Sí |
| TOTAL DE OBRAS | 10 |
| TOTAL DE CITAS | 0 |
| TOTAL COMO AUTOR | 10 |
| TOTAL COMO EDITOR | 0 |
| PRIMER AÑO DE PUBLICACIÓN | 2010 |
| AÑO MÁS RECIENTE DE PUBLICACIÓN | 2023 |
| ÍNDICE H | 0 |
CO 2 fertilization effect may balance climate change impacts on oil palm cultivation
Oil palm cultivation has become one of the world’s most important drivers of land use change in the tropics causing biodiversity loss and greenhouse gas emissions. The impact of climate change and rising carbon dioxide (CO 2 ) concentrations in the atmosphere on oil palm productivity is not well understood. If environmental change leads to declining palm oil yields in existing cultivation areas, cultivation areas may expand or shift to other regi…
Land-Management Options for Greenhouse Gas Removal and Their Impacts on Ecosystem Services and the Sustainable Development Goals
Land-management options for greenhouse gas removal (GGR) include afforestation or reforestation (AR), wetland restoration, soil carbon sequestration (SCS), biochar, terrestrial enhanced weathering (TEW), and bioenergy with carbon capture and storage (BECCS). We assess the opportunities and risks associated with these options through the lens of their potential impacts on ecosystem services (Nature's Contributions to People; NCPs) and the United N…
First process-based simulations of climate change impacts on global tea production indicate large effects in the World’s major producer countries
Modeling of climate change impacts have mainly been focused on a small number of annual staple crops that provide most of the world’s calories. Crop models typically do not represent perennial crops despite their high economic, nutritional, or cultural value. Here we assess climate change impacts on global tea production, chosen because of its high importance in culture and livelihoods of people around the world. We extended the dynamic global ve…
Assessing the efficiency of changes in land use for mitigating climate change
Negative emissions—Part 2
The most recent IPCC assessment has shown an important role for negative emissions technologies (NETs) in limiting global warming to 2 °C cost-effectively. However, a bottom-up, systematic, reproducible, and transparent literature assessment of the different options to remove CO2 from the atmosphere is currently missing. In part 1 of this three-part review on NETs, we assemble a comprehensive set of the relevant literature so far published, focus…
Negative emissions—Part 1
With the Paris Agreement's ambition of limiting climate change to well below 2 C, negative emission technologies (NETs) have moved into the limelight of discussions in climate science and policy. Despite several assessments, the current knowledge on NETs is still diffuse and incomplete, but also growing fast. Here, we synthesize a comprehensive body of NETs literature, using scientometric tools and performing an in-depth assessment of the quantit…
Productivity ranges of sustainable biomass potentials from non-agricultural land
Land is under pressure from a number of demands, including the need for increased supplies of bioenergy. While bioenergy is an important ingredient in many pathways compatible with reaching the 2 °C target, areas where cultivation of the biomass feedstock would be most productive appear to co-host other important ecosystems services. We categorize global geo-data on land availability into productivity deciles, and provide a geographically explici…
Additional CO2 emissions from land use change — Forest conservation as a precondition for sustainable production of second generation bioenergy
The economic potential of bioenergy for climate change mitigation with special attention given to implications for the land system
Author: Popp, Alexander et al.; Genre: Journal Article; Finally published : 2011; Open Access; Title: The economic potential of bioenergy for climate change mitigation with special attention given to implications for the land system
The global technical potential of bio-energy in 2050 considering sustainability constraints
Bio-energy, that is, energy produced from organic non-fossil material of biological origin, is promoted as a substitute for non-renewable (e.g., fossil) energy to reduce greenhouse gas (GHG) emissions and dependency on energy imports. At present, global bio-energy use amounts to approximately 50 EJ/yr, about 10% of humanity's primary energy supply. We here review recent literature on the amount of bio-energy that could be supplied globally in 205…
Sin obras prominentes en esta página.
The global technical potential of bio-energy in 2050 considering sustainability constraints
Bio-energy, that is, energy produced from organic non-fossil material of biological origin, is promoted as a substitute for non-renewable (e.g., fossil) energy to reduce greenhouse gas (GHG) emissions and dependency on energy imports. At present, global bio-energy use amounts to approximately 50 EJ/yr, about 10% of humanity's primary energy supply. We here review recent literature on the amount of bio-energy that could be supplied globally in 205…
The economic potential of bioenergy for climate change mitigation with special attention given to implications for the land system
Author: Popp, Alexander et al.; Genre: Journal Article; Finally published : 2011; Open Access; Title: The economic potential of bioenergy for climate change mitigation with special attention given to implications for the land system
Additional CO2 emissions from land use change — Forest conservation as a precondition for sustainable production of second generation bioenergy
Productivity ranges of sustainable biomass potentials from non-agricultural land
Land is under pressure from a number of demands, including the need for increased supplies of bioenergy. While bioenergy is an important ingredient in many pathways compatible with reaching the 2 °C target, areas where cultivation of the biomass feedstock would be most productive appear to co-host other important ecosystems services. We categorize global geo-data on land availability into productivity deciles, and provide a geographically explici…
Assessing the efficiency of changes in land use for mitigating climate change
Negative emissions—Part 2
The most recent IPCC assessment has shown an important role for negative emissions technologies (NETs) in limiting global warming to 2 °C cost-effectively. However, a bottom-up, systematic, reproducible, and transparent literature assessment of the different options to remove CO2 from the atmosphere is currently missing. In part 1 of this three-part review on NETs, we assemble a comprehensive set of the relevant literature so far published, focus…
Negative emissions—Part 1
With the Paris Agreement's ambition of limiting climate change to well below 2 C, negative emission technologies (NETs) have moved into the limelight of discussions in climate science and policy. Despite several assessments, the current knowledge on NETs is still diffuse and incomplete, but also growing fast. Here, we synthesize a comprehensive body of NETs literature, using scientometric tools and performing an in-depth assessment of the quantit…
Land-Management Options for Greenhouse Gas Removal and Their Impacts on Ecosystem Services and the Sustainable Development Goals
Land-management options for greenhouse gas removal (GGR) include afforestation or reforestation (AR), wetland restoration, soil carbon sequestration (SCS), biochar, terrestrial enhanced weathering (TEW), and bioenergy with carbon capture and storage (BECCS). We assess the opportunities and risks associated with these options through the lens of their potential impacts on ecosystem services (Nature's Contributions to People; NCPs) and the United N…
First process-based simulations of climate change impacts on global tea production indicate large effects in the World’s major producer countries
Modeling of climate change impacts have mainly been focused on a small number of annual staple crops that provide most of the world’s calories. Crop models typically do not represent perennial crops despite their high economic, nutritional, or cultural value. Here we assess climate change impacts on global tea production, chosen because of its high importance in culture and livelihoods of people around the world. We extended the dynamic global ve…
CO 2 fertilization effect may balance climate change impacts on oil palm cultivation
Oil palm cultivation has become one of the world’s most important drivers of land use change in the tropics causing biodiversity loss and greenhouse gas emissions. The impact of climate change and rising carbon dioxide (CO 2 ) concentrations in the atmosphere on oil palm productivity is not well understood. If environmental change leads to declining palm oil yields in existing cultivation areas, cultivation areas may expand or shift to other regi…
Environmental Science (10 obras) · Economics (9 obras) · Agroforestry (8 obras) · Natural resource economics (8 obras) · Ecology (7 obras) · Greenhouse gas (7 obras) · Land use (6 obras) · Agriculture (5 obras) · Climate change (5 obras) · Agricultural land (4 obras)