Felipe Yunta
Biographic Data
| ID | 6717762 |
|---|---|
| NAME | Felipe Yunta |
| GIVEN NAMES | Felipe |
| FAMILY NAME | Yunta |
| SIGNATURE | YUNTA F |
| AFFILIATIONS | Joint Research Centre |
| ORCID | 0000-0002-7053-9760 |
| VERIFIED | Yes |
| TOTAL WORKS | 3 |
| TOTAL CITATIONS | 1 |
| AUTHOR COUNT | 3 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2024 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 1 |
Enhancing the SDG 15.3.1 land-cover transition matrix using multidecadal vegetation indicators
Sustainable Development Goal (SDG) 15.3.1, ‘Proportion of degraded land,’ assesses land degradation using three core sub-indicators: land productivity, land cover (LC), and soil organic carbon. The LC sub-indicator evaluates global trends through a transition matrix defined in the UNCCD Good Practice Guidance (GPG), classifying land cover changes as degradation, improvement, or stability. However, this approach does not capture intra-class transi…
Opportunities for optimizing phosphorus inputs in EU agricultural soils
Excessive phosphorus (P) fertilization has resulted in elevated soil P concentrations in some regions in the EU. Legacy soil P imposes a risk for soil functioning and may lead to P losses into the aquatic environment. Recent proposed EU policies aim to optimize P inputs and mitigate excessive soil P concentrations. We present a framework to estimate how much and where P inputs in EU agricultural (cropland and grassland) soils can be optimized. Th…
Soil pollution in the European Union – An outlook
Soil pollution in the European Union (EU) is poorly quantified, because of several years of reduced attention and limited funding on soil research and monitoring. Moreover, issues such as different monitoring methodologies within Member States (MS), and quantification methods focused on pseudototal rather than the available fraction of pollutants, has been limiting our understanding of risk under soil pollution. Despite that, thanks to efforts fr…
Soil pollution in the European Union – An outlook
Soil pollution in the European Union (EU) is poorly quantified, because of several years of reduced attention and limited funding on soil research and monitoring. Moreover, issues such as different monitoring methodologies within Member States (MS), and quantification methods focused on pseudototal rather than the available fraction of pollutants, has been limiting our understanding of risk under soil pollution. Despite that, thanks to efforts fr…
Soil pollution in the European Union – An outlook
Soil pollution in the European Union (EU) is poorly quantified, because of several years of reduced attention and limited funding on soil research and monitoring. Moreover, issues such as different monitoring methodologies within Member States (MS), and quantification methods focused on pseudototal rather than the available fraction of pollutants, has been limiting our understanding of risk under soil pollution. Despite that, thanks to efforts fr…
Opportunities for optimizing phosphorus inputs in EU agricultural soils
Excessive phosphorus (P) fertilization has resulted in elevated soil P concentrations in some regions in the EU. Legacy soil P imposes a risk for soil functioning and may lead to P losses into the aquatic environment. Recent proposed EU policies aim to optimize P inputs and mitigate excessive soil P concentrations. We present a framework to estimate how much and where P inputs in EU agricultural (cropland and grassland) soils can be optimized. Th…
Enhancing the SDG 15.3.1 land-cover transition matrix using multidecadal vegetation indicators
Sustainable Development Goal (SDG) 15.3.1, ‘Proportion of degraded land,’ assesses land degradation using three core sub-indicators: land productivity, land cover (LC), and soil organic carbon. The LC sub-indicator evaluates global trends through a transition matrix defined in the UNCCD Good Practice Guidance (GPG), classifying land cover changes as degradation, improvement, or stability. However, this approach does not capture intra-class transi…
Business (2 works) · Environmental protection (2 works) · Environmental Science (2 works) · Agricultural engineering (1 works) · Agriculture (1 works) · Chemistry (1 works) · Climate change (1 works) · Economics (1 works) · Engineering (1 works) · Environmental and Social Impact Assessments (1 works)