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Werner von Bloh

Biographic Data

ID6822004
NAMEWerner von Bloh
GIVEN NAMESWerner
FAMILY NAMEvon Bloh
SIGNATUREVON BLOH W
AFFILIATIONSPotsdam Institute for Climate Impact Research
ORCID0000-0002-7399-2704
VERIFIEDYes
TOTAL WORKS7
TOTAL CITATIONS4
AUTHOR COUNT7
EDITOR COUNT0
FIRST PUBLICATION YEAR2006
LATEST PUBLICATION YEAR2023
H-INDEX1
  • Earth beyond six of nine planetary boundaries

    Open Access•Katherine Richardson, Will Steffen et al.•ARTICLE•Science Advances•2023

    This planetary boundaries framework update finds that six of the nine boundaries are transgressed, suggesting that Earth is now well outside of the safe operating space for humanity. Ocean acidification is close to being breached, while aerosol loading regionally exceeds the boundary. Stratospheric ozone levels have slightly recovered. The transgression level has increased for all boundaries earlier identified as overstepped. As primary productio…

  • Exploring risks and benefits of overshooting a 1.5 °C carbon budget over space and time

    Open Access•Nico Bauer, David Keller et al.•ARTICLE•Environmental Research Letters•2023

    Temperature targets of the Paris Agreement limit global net cumulative emissions to very tight carbon budgets. The possibility to overshoot the budget and offset near-term excess emissions by net-negative emissions is considered economically attractive as it eases near-term mitigation pressure. While potential side effects of carbon removal deployment are discussed extensively, the additional climate risks and the impacts and damages have attract…

  • Importance of snow and glacier meltwater for agriculture on the Indo-Gangetic Plain

    Open Access•Hester Biemans, Christian Siderius et al.•ARTICLE•Nature Sustainability•2019•Cited by: 4•References: 7

  • Combined effects of climate and land-use change on the provision of ecosystem services in rice agro-ecosystems

    Open Access•Fanny Langerwisch, Tomáš Václavík et al.•ARTICLE•Environmental Research Letters•2017

    Irrigated rice croplands are among the world's most important agro-ecosystems. They provide food for more than 3.5 billion people and a range of other ecosystem services (ESS). However, the sustainability of rice agro-ecosystems is threatened by continuing climate and land-use changes. To estimate their combined effects on a bundle of ESS, we applied the vegetation and hydrology model LPJmL to seven study areas in the Philippines and Vietnam. We …

  • Drivers and patterns of land biosphere carbon balance reversal

    Open Access•Christoph Müller, Elke Stehfest et al.•ARTICLE•Environmental Research Letters•2016

    The carbon balance of the land biosphere is the result of complex interactions between land, atmosphere and oceans, including climatic change, carbon dioxide fertilization and land-use change. While the land biosphere currently absorbs carbon dioxide from the atmosphere, this carbon balance might be reversed under climate and land-use change ('carbon balance reversal'). A carbon balance reversal would render climate mitigation much more difficult…

  • Carbon dioxide and climate impulse response functions for the computation of greenhouse gas metrics: A multi-model analysis

    Open Access•Fortunat Joos, R Roth et al.•ARTICLE•Atmospheric Chemistry and Physics•2013

    The responses of carbon dioxide (CO2) and other climate variables to an emission pulse of CO2 into the atmosphere are often used to compute the Global Warming Potential (GWP) and Global Temperature change Potential (GTP), to characterize the response timescales of Earth System models, and to build reduced-form models. In this carbon cycle-climate model intercomparison project, which spans the full model hierarchy, we quantify responses to emissio…

  • Climate–Carbon Cycle Feedback Analysis: Results from the C4MIP Model Intercomparison

    Pierre Friedlingstein, Peter M Cox et al.•ARTICLE•Journal of Climate•2006

    Eleven coupled climate–carbon cycle models used a common protocol to study the coupling between climate change and the carbon cycle. The models were forced by historical emissions and the Intergovernmental Panel on Climate Change (IPCC) Special Report on Emissions Scenarios (SRES) A2 anthropogenic emissions of CO2 for the 1850–2100 time period. For each model, two simulations were performed in order to isolate the impact of climate change on the …

  • Importance of snow and glacier meltwater for agriculture on the Indo-Gangetic Plain

    Open Access•Hester Biemans, Christian Siderius et al.•ARTICLE•Nature Sustainability•2019•Cited by: 4•References: 7

  • Climate–Carbon Cycle Feedback Analysis: Results from the C4MIP Model Intercomparison

    Pierre Friedlingstein, Peter M Cox et al.•ARTICLE•Journal of Climate•2006

    Eleven coupled climate–carbon cycle models used a common protocol to study the coupling between climate change and the carbon cycle. The models were forced by historical emissions and the Intergovernmental Panel on Climate Change (IPCC) Special Report on Emissions Scenarios (SRES) A2 anthropogenic emissions of CO2 for the 1850–2100 time period. For each model, two simulations were performed in order to isolate the impact of climate change on the …

  • Carbon dioxide and climate impulse response functions for the computation of greenhouse gas metrics: A multi-model analysis

    Open Access•Fortunat Joos, R Roth et al.•ARTICLE•Atmospheric Chemistry and Physics•2013

    The responses of carbon dioxide (CO2) and other climate variables to an emission pulse of CO2 into the atmosphere are often used to compute the Global Warming Potential (GWP) and Global Temperature change Potential (GTP), to characterize the response timescales of Earth System models, and to build reduced-form models. In this carbon cycle-climate model intercomparison project, which spans the full model hierarchy, we quantify responses to emissio…

  • Drivers and patterns of land biosphere carbon balance reversal

    Open Access•Christoph Müller, Elke Stehfest et al.•ARTICLE•Environmental Research Letters•2016

    The carbon balance of the land biosphere is the result of complex interactions between land, atmosphere and oceans, including climatic change, carbon dioxide fertilization and land-use change. While the land biosphere currently absorbs carbon dioxide from the atmosphere, this carbon balance might be reversed under climate and land-use change ('carbon balance reversal'). A carbon balance reversal would render climate mitigation much more difficult…

  • Combined effects of climate and land-use change on the provision of ecosystem services in rice agro-ecosystems

    Open Access•Fanny Langerwisch, Tomáš Václavík et al.•ARTICLE•Environmental Research Letters•2017

    Irrigated rice croplands are among the world's most important agro-ecosystems. They provide food for more than 3.5 billion people and a range of other ecosystem services (ESS). However, the sustainability of rice agro-ecosystems is threatened by continuing climate and land-use changes. To estimate their combined effects on a bundle of ESS, we applied the vegetation and hydrology model LPJmL to seven study areas in the Philippines and Vietnam. We …

  • Importance of snow and glacier meltwater for agriculture on the Indo-Gangetic Plain

    Open Access•Hester Biemans, Christian Siderius et al.•ARTICLE•Nature Sustainability•2019•Cited by: 4•References: 7

  • Earth beyond six of nine planetary boundaries

    Open Access•Katherine Richardson, Will Steffen et al.•ARTICLE•Science Advances•2023

    This planetary boundaries framework update finds that six of the nine boundaries are transgressed, suggesting that Earth is now well outside of the safe operating space for humanity. Ocean acidification is close to being breached, while aerosol loading regionally exceeds the boundary. Stratospheric ozone levels have slightly recovered. The transgression level has increased for all boundaries earlier identified as overstepped. As primary productio…

  • Exploring risks and benefits of overshooting a 1.5 °C carbon budget over space and time

    Open Access•Nico Bauer, David Keller et al.•ARTICLE•Environmental Research Letters•2023

    Temperature targets of the Paris Agreement limit global net cumulative emissions to very tight carbon budgets. The possibility to overshoot the budget and offset near-term excess emissions by net-negative emissions is considered economically attractive as it eases near-term mitigation pressure. While potential side effects of carbon removal deployment are discussed extensively, the additional climate risks and the impacts and damages have attract…

Environmental Science (7 works) · Climate change (5 works) · Atmospheric sciences (4 works) · Climatology (4 works) · Ecology (4 works) · Ecosystem (4 works) · Greenhouse gas (4 works) · Atmospheric and Environmental Gas Dynamics (3 works) · Carbon cycle (3 works) · Climate model (3 works)

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