Eva Rocha
Biographic Data
| ID | 4436327 |
|---|---|
| NAME | Eva Rocha |
| GIVEN NAMES | Eva |
| FAMILY NAME | Rocha |
| SIGNATURE | ROCHA E |
| AFFILIATIONS | Archéozoologie et Archéobotanique |
| ORCID | 0000-0002-0981-3919 |
| VERIFIED | Yes |
| TOTAL WORKS | 2 |
| TOTAL CITATIONS | 1 |
| AUTHOR COUNT | 2 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2024 |
| LATEST PUBLICATION YEAR | 2024 |
| H-INDEX | 1 |
Short-term modifications in the chemical structure of wood charcoals: Implications for anthracological investigations
Archaeological wood charcoals offer a unique window to study paleoclimates through their 13C isotope composition (δ13C) provided that (i) past heating temperatures are assessed to correct δ13C modifications related to carbonisation, and (ii) they have not been modified by post-depositional processes occurring in soil after their formation. Our goal was to assess how post-depositional processes can modify (i) the determination of past heating temp…
Preservation of δ13C signatures in oak charred wood: Application to the “forest” of Notre-Dame de Paris
The fire of the Notre-Dame de Paris’s cathedral (NDP) in 2019 brought a unique opportunity to study the past environmental conditions in the region during the High Middle Ages through the charred oak beams of the “Forest” (name given to its framework). However, as a preamble, there is a need to evaluate the preservation of the stable carbon isotope signatures (δ13C) in response to changes in molecular composition, occurring with carbonisation. To…
Preservation of δ13C signatures in oak charred wood: Application to the “forest” of Notre-Dame de Paris
The fire of the Notre-Dame de Paris’s cathedral (NDP) in 2019 brought a unique opportunity to study the past environmental conditions in the region during the High Middle Ages through the charred oak beams of the “Forest” (name given to its framework). However, as a preamble, there is a need to evaluate the preservation of the stable carbon isotope signatures (δ13C) in response to changes in molecular composition, occurring with carbonisation. To…
Short-term modifications in the chemical structure of wood charcoals: Implications for anthracological investigations
Archaeological wood charcoals offer a unique window to study paleoclimates through their 13C isotope composition (δ13C) provided that (i) past heating temperatures are assessed to correct δ13C modifications related to carbonisation, and (ii) they have not been modified by post-depositional processes occurring in soil after their formation. Our goal was to assess how post-depositional processes can modify (i) the determination of past heating temp…
Preservation of δ13C signatures in oak charred wood: Application to the “forest” of Notre-Dame de Paris
The fire of the Notre-Dame de Paris’s cathedral (NDP) in 2019 brought a unique opportunity to study the past environmental conditions in the region during the High Middle Ages through the charred oak beams of the “Forest” (name given to its framework). However, as a preamble, there is a need to evaluate the preservation of the stable carbon isotope signatures (δ13C) in response to changes in molecular composition, occurring with carbonisation. To…
Archaeology (2 works) · Forestry (2 works) · Geography (2 works) · activated carbon and charcoal (1 works) · Archaeology and ancient environmental studies (1 works) · Biodiversity (1 works) · Biology (1 works) · Dead wood (1 works) · Ecology (1 works) · Engineering (1 works)