Martina Sartori
Biographic Data
| ID | 6318212 |
|---|---|
| NAME | Martina Sartori |
| GIVEN NAMES | Martina |
| FAMILY NAME | Sartori |
| SIGNATURE | SARTORI M |
| AFFILIATIONS | Joint Research Center |
| ORCID | 0000-0002-2794-0532 |
| VERIFIED | Yes |
| TOTAL WORKS | 4 |
| TOTAL CITATIONS | 11 |
| AUTHOR COUNT | 4 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2015 |
| LATEST PUBLICATION YEAR | 2024 |
| H-INDEX | 2 |
Remaining Loyal to Our Soil
Soil loss by water erosion represents a key threat to land degradation worldwide. This study employs an integrated quantitative modelling approach to estimate its long-term global sustainability impacts. The global biophysical model estimates a mean increase of soil erosion rates of between 30 and 66% over the period 2015–2070 under alternative climate-economic scenarios, assuming different greenhouse gas concentration trajectories. In a subseque…
A linkage between the biophysical and the economic
Employing a linkage between a biophysical and an economic model, this study estimates the economic impact of soil erosion by water on the world economy. The global biophysical model estimates soil erosion rates, which are converted into land productivity losses and subsequently inserted into a global market simulation model. The headline result is that soil erosion by water is estimated to incur a global annual cost of eight billion US dollars to…
Unfolding the potential of the virtual water concept. What is still under debate
Connected we stand
Remaining Loyal to Our Soil
Soil loss by water erosion represents a key threat to land degradation worldwide. This study employs an integrated quantitative modelling approach to estimate its long-term global sustainability impacts. The global biophysical model estimates a mean increase of soil erosion rates of between 30 and 66% over the period 2015–2070 under alternative climate-economic scenarios, assuming different greenhouse gas concentration trajectories. In a subseque…
Connected we stand
A linkage between the biophysical and the economic
Employing a linkage between a biophysical and an economic model, this study estimates the economic impact of soil erosion by water on the world economy. The global biophysical model estimates soil erosion rates, which are converted into land productivity losses and subsequently inserted into a global market simulation model. The headline result is that soil erosion by water is estimated to incur a global annual cost of eight billion US dollars to…
Unfolding the potential of the virtual water concept. What is still under debate
Unfolding the potential of the virtual water concept. What is still under debate
Connected we stand
A linkage between the biophysical and the economic
Employing a linkage between a biophysical and an economic model, this study estimates the economic impact of soil erosion by water on the world economy. The global biophysical model estimates soil erosion rates, which are converted into land productivity losses and subsequently inserted into a global market simulation model. The headline result is that soil erosion by water is estimated to incur a global annual cost of eight billion US dollars to…
Remaining Loyal to Our Soil
Soil loss by water erosion represents a key threat to land degradation worldwide. This study employs an integrated quantitative modelling approach to estimate its long-term global sustainability impacts. The global biophysical model estimates a mean increase of soil erosion rates of between 30 and 66% over the period 2015–2070 under alternative climate-economic scenarios, assuming different greenhouse gas concentration trajectories. In a subseque…
Economics (4 works) · Agriculture (3 works) · Food security (3 works) · Geography (3 works) · Aeolian processes and effects (2 works) · Agricultural economics (2 works) · Computer Science (2 works) · Environmental Impact and Sustainability (2 works) · Environmental Science (2 works) · Land Use and Ecosystem Services (2 works)