Tilo Ziehn
Biographic Data
| ID | 6822814 |
|---|---|
| NAME | Tilo Ziehn |
| GIVEN NAMES | Tilo |
| FAMILY NAME | Ziehn |
| SIGNATURE | ZIEHN T |
| AFFILIATIONS | CSIRO Oceans and Atmosphere |
| ORCID | 0000-0001-9873-9775 |
| VERIFIED | Yes |
| TOTAL WORKS | 9 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 9 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2020 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 0 |
Forestation in CMIP6
Forestation is expected to play an significant role as a terrestrial carbon dioxide removal technology in low-emission scenarios by storing carbon in the biosphere, thereby changing the physical properties of the land surface. To represent land use change, including afforestation and reforestation (AR), Earth system models (ESM) that contribute to the Coupled Model Intercomparison Project Phase 6 (CMIP6) draw on common projected land use data fro…
CMIP6 models agree on similar carbon cycle feedbacks between enhancing terrestrial and marine carbon sinks
Carbon dioxide removal (CDR) is a crucial component of climate mitigation required to reach international climate targets. However, gaps exist in our understanding of the responses and feedbacks of the Earth system to the deployment of CDR. In this study, we compare two complementary approaches that enhance the terrestrial and marine carbon sinks with afforestation and reforestation (A/R) and ocean alkalinity enhancement (OAE), respectively, unde…
European heat extremes under net-zero emissions
Projections of European heat extremes have been widely explored in the context of continued global warming. However, analyses of recent Earth system model simulations point to substantial climatic changes over multi-centennial timescales in net-zero emissions futures. Focusing on Europe, we address the gap in characterising heat extremes in long-term net-zero stabilised climates. We quantify the long-term effects of delayed mitigation on annual m…
Regional temperature extremes and vulnerability under net zero CO 2 emissions
Signatories to the Paris Agreement have pledged to keep global warming to well below 2 °C above pre-industrial levels and preferably below 1.5 °C above pre-industrial levels. Beyond over-shooting Paris Agreement warming levels followed by net negative emissions, achieving a state of net zero carbon dioxide emissions is required to satisfy Paris Agreement warming goals. Research on climate changes under net zero CO 2 emissions is very limited to d…
Preparing for a post-net-zero world
Studying climate stabilization at Paris Agreement levels
Constraining human contributions to observed warming since the pre-industrial period
Land carbon-concentration and carbon-climate feedbacks are significantly reduced by nitrogen and phosphorus limitation
We quantify the impact of nutrient (nitrogen and phosphorus) limitation on land carbon uptake and the sensitivity of this uptake to atmospheric carbon dioxide (CO 2 ) concentrations (land carbon-concentration feedback) and surface air temperature (land-carbon climate feedback). We analyse simulations of the Australian Earth System Model (ACCESS-ESM1.5) with a prescribed 1% yr −1 CO 2 increase in three different configurations: (1) without nutrien…
Soil carbon sequestration simulated in CMIP6-Lumip models
Land-use change affects both the quality and quantity of soil organic carbon (SOC) and leads to changes in ecosystem functions such as productivity and environmental regulation. Future changes in SOC are, however, highly uncertain owing to its heterogeneity and complexity. In this study, we analyzed the outputs of simulations of SOC stock by Earth system models (ESMs), most of which are participants in the Land-Use Model Intercomparison Project. …
No prominent works on this page.
Soil carbon sequestration simulated in CMIP6-Lumip models
Land-use change affects both the quality and quantity of soil organic carbon (SOC) and leads to changes in ecosystem functions such as productivity and environmental regulation. Future changes in SOC are, however, highly uncertain owing to its heterogeneity and complexity. In this study, we analyzed the outputs of simulations of SOC stock by Earth system models (ESMs), most of which are participants in the Land-Use Model Intercomparison Project. …
Studying climate stabilization at Paris Agreement levels
Constraining human contributions to observed warming since the pre-industrial period
Land carbon-concentration and carbon-climate feedbacks are significantly reduced by nitrogen and phosphorus limitation
We quantify the impact of nutrient (nitrogen and phosphorus) limitation on land carbon uptake and the sensitivity of this uptake to atmospheric carbon dioxide (CO 2 ) concentrations (land carbon-concentration feedback) and surface air temperature (land-carbon climate feedback). We analyse simulations of the Australian Earth System Model (ACCESS-ESM1.5) with a prescribed 1% yr −1 CO 2 increase in three different configurations: (1) without nutrien…
Preparing for a post-net-zero world
Regional temperature extremes and vulnerability under net zero CO 2 emissions
Signatories to the Paris Agreement have pledged to keep global warming to well below 2 °C above pre-industrial levels and preferably below 1.5 °C above pre-industrial levels. Beyond over-shooting Paris Agreement warming levels followed by net negative emissions, achieving a state of net zero carbon dioxide emissions is required to satisfy Paris Agreement warming goals. Research on climate changes under net zero CO 2 emissions is very limited to d…
Forestation in CMIP6
Forestation is expected to play an significant role as a terrestrial carbon dioxide removal technology in low-emission scenarios by storing carbon in the biosphere, thereby changing the physical properties of the land surface. To represent land use change, including afforestation and reforestation (AR), Earth system models (ESM) that contribute to the Coupled Model Intercomparison Project Phase 6 (CMIP6) draw on common projected land use data fro…
CMIP6 models agree on similar carbon cycle feedbacks between enhancing terrestrial and marine carbon sinks
Carbon dioxide removal (CDR) is a crucial component of climate mitigation required to reach international climate targets. However, gaps exist in our understanding of the responses and feedbacks of the Earth system to the deployment of CDR. In this study, we compare two complementary approaches that enhance the terrestrial and marine carbon sinks with afforestation and reforestation (A/R) and ocean alkalinity enhancement (OAE), respectively, unde…
European heat extremes under net-zero emissions
Projections of European heat extremes have been widely explored in the context of continued global warming. However, analyses of recent Earth system model simulations point to substantial climatic changes over multi-centennial timescales in net-zero emissions futures. Focusing on Europe, we address the gap in characterising heat extremes in long-term net-zero stabilised climates. We quantify the long-term effects of delayed mitigation on annual m…
Environmental Science (9 works) · Atmospheric sciences (5 works) · Climate change (5 works) · Geology (5 works) · Atmospheric and Environmental Gas Dynamics (4 works) · Climate variability and models (4 works) · Climatology (4 works) · Ecology (4 works) · Global warming (4 works) · Mathematics (4 works)