Claudio Zaccone
Biographic Data
| ID | 4131402 |
|---|---|
| NAME | Claudio Zaccone |
| GIVEN NAMES | Claudio |
| FAMILY NAME | Zaccone |
| SIGNATURE | ZACCONE C |
| AFFILIATIONS | University of Foggia |
| ORCID | 0000-0003-4391-354X |
| VERIFIED | Yes |
| TOTAL WORKS | 5 |
| TOTAL CITATIONS | 4 |
| AUTHOR COUNT | 5 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2013 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 1 |
Soil health in a conflict-affected area: An open-source Google Earth Engine framework to map land degradation in Gaza
Armed conflict accelerates soil and vegetation degradation, but field assessments and monitoring are often only possible at a later stage and/or indirectly, for example, through remote sensing data. We used the Dynamic World v1, a land-cover open-source dataset derived from Sentinel-2 imagery, to quantify land-cover change in Gaza (Palestinian territories) between September 2023 and September 2025. After cloud/shadow masking and 10 m spatial esti…
Holocene vegetation history and human impact in the eastern Italian Alps: A multi-proxy study on the Coltrondo peat bog, Comelico Superiore, Italy
The present study aims to reconstruct vegetation development, climate changes and human impact using an ombrotrophic peat core from the Coltrondo bog in the eastern Italian Alps. Evidence from pollen, micro-charcoal, major and trace elements, and lead isotopes from this 7,900 years old peat deposit has been combined, and several climatic oscillations and phases of human impact detected. In particular, human presence was recorded in this area of t…
Soils as a record of the past
The first continuous Late Glacial – Holocene peat bog multi-proxy record from the Dolomites (NE Italian Alps)
Comparative evaluation of the mineralogical composition of Sphagnum peat and their corresponding humic acids, and implications for understanding past dust depositions
Holocene vegetation history and human impact in the eastern Italian Alps: A multi-proxy study on the Coltrondo peat bog, Comelico Superiore, Italy
The present study aims to reconstruct vegetation development, climate changes and human impact using an ombrotrophic peat core from the Coltrondo bog in the eastern Italian Alps. Evidence from pollen, micro-charcoal, major and trace elements, and lead isotopes from this 7,900 years old peat deposit has been combined, and several climatic oscillations and phases of human impact detected. In particular, human presence was recorded in this area of t…
Soils as a record of the past
The first continuous Late Glacial – Holocene peat bog multi-proxy record from the Dolomites (NE Italian Alps)
Comparative evaluation of the mineralogical composition of Sphagnum peat and their corresponding humic acids, and implications for understanding past dust depositions
Holocene vegetation history and human impact in the eastern Italian Alps: A multi-proxy study on the Coltrondo peat bog, Comelico Superiore, Italy
The present study aims to reconstruct vegetation development, climate changes and human impact using an ombrotrophic peat core from the Coltrondo bog in the eastern Italian Alps. Evidence from pollen, micro-charcoal, major and trace elements, and lead isotopes from this 7,900 years old peat deposit has been combined, and several climatic oscillations and phases of human impact detected. In particular, human presence was recorded in this area of t…
Soil health in a conflict-affected area: An open-source Google Earth Engine framework to map land degradation in Gaza
Armed conflict accelerates soil and vegetation degradation, but field assessments and monitoring are often only possible at a later stage and/or indirectly, for example, through remote sensing data. We used the Dynamic World v1, a land-cover open-source dataset derived from Sentinel-2 imagery, to quantify land-cover change in Gaza (Palestinian territories) between September 2023 and September 2025. After cloud/shadow masking and 10 m spatial esti…
Geology (4 works) · Geology and Paleoclimatology Research (4 works) · Peatlands and Wetlands Ecology (4 works) · Archaeology (3 works) · Bog (3 works) · Geography (3 works) · Holocene (3 works) · Ombrotrophic (3 works) · Peat (3 works) · Physical geography (3 works)