We present a review of the latest framework achievements in geoarchaeological sciences applied to microstratigraphic and biomolecular studies of prehistoric archaeological contexts, highlight- ing the importance of musealized archaeological stratigraphies. We assess how today’s scientific and technological accomplishments can be tailored for archaeological human ecology studies with analytical ensembles that provide unprecedented results. Sampling and processing workflows originating from resin consolidation and thin section micromorphology of undisturbed blocks of archaeological soils and sediments, guarantee subsampling accuracy at the micrometre scale granting access to individual components otherwise impossible to target: the achievable informa- tion yield makes even the smallest soil samples potential sources of pioneering discoveries. Yet, archaeological excavations are still the primary mode of retrieving new soil samples. We argue that, when dealing with archaeological sites that were excavated and partially musealised in the past, the exploration of related museum collections should be prioritized as perspective source of new study samples. Analysing old and potentially very informative samples, with an approach that we define as “Green Archaeology”, may represent a source of well-structured primary data as well as a means for planning new excavations, delivering novel discoveries while safeguarding site integrity and promoting Third Mission valorisation of sites and heritage dormant collections.

Integrating musealized archaeological sediment collections into current geoarchaeological analytical frameworks for sustainable research practices / S. Costanzo, M. Pappalardo, E. Starnini, E. Rossoni-Notterd, O. Notter, A. Moussous, M. Soares-Remiseiro, P. Fermo, M. Cremaschi, A. Zerboni. - In: METHODSX (AMSTERDAM). - ISSN 2215-0161. - 13:(2024 Dec), pp. 102897.1-102897.15. [10.1016/j.mex.2024.102897]

Integrating musealized archaeological sediment collections into current geoarchaeological analytical frameworks for sustainable research practices

S. Costanzo
Primo
;
P. Fermo;M. Cremaschi
Penultimo
;
A. Zerboni
Ultimo
Conceptualization
2024

Abstract

We present a review of the latest framework achievements in geoarchaeological sciences applied to microstratigraphic and biomolecular studies of prehistoric archaeological contexts, highlight- ing the importance of musealized archaeological stratigraphies. We assess how today’s scientific and technological accomplishments can be tailored for archaeological human ecology studies with analytical ensembles that provide unprecedented results. Sampling and processing workflows originating from resin consolidation and thin section micromorphology of undisturbed blocks of archaeological soils and sediments, guarantee subsampling accuracy at the micrometre scale granting access to individual components otherwise impossible to target: the achievable informa- tion yield makes even the smallest soil samples potential sources of pioneering discoveries. Yet, archaeological excavations are still the primary mode of retrieving new soil samples. We argue that, when dealing with archaeological sites that were excavated and partially musealised in the past, the exploration of related museum collections should be prioritized as perspective source of new study samples. Analysing old and potentially very informative samples, with an approach that we define as “Green Archaeology”, may represent a source of well-structured primary data as well as a means for planning new excavations, delivering novel discoveries while safeguarding site integrity and promoting Third Mission valorisation of sites and heritage dormant collections.
Archaeology, Geoarchaeology; Thin section micromorphology; Biomarkers; SedaDNA; Human ecology; Museum collections;
Settore GEO/04 - Geografia Fisica e Geomorfologia
Settore L-ANT/01 - Preistoria e Protostoria
Settore CHIM/01 - Chimica Analitica
Settore GEOS-03/A - Geografia fisica e geomorfologia
Settore ARCH-01/A - Preistoria e protostoria
Settore CHEM-01/A - Chimica analitica
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   FISR2019_00040
dic-2024
15-ago-2024
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1087329
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