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Assessing a Modified Carbonate Digestion Protocol for Increased Carbon Dioxide Recovery During Cremated Bone Pretreatment

Dados Bibliográficos

ID9243786
AutoresMaddalena Giannì (0000-0002-8099-3553), Griffith (0000-0001-5168-9897), Rachel Wood (0000-0002-1694-3295), David Chivall (0000-0003-4961-3847)
Ano2024
Volume66
Fascículo5
Páginas1109-1119
Data de publicação2024-10-01
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoRadiocarbon (JOURNAL)
Identificadores do periódicoISSN: 0033-8222 • E-ISSN: 1945-5755
EditoraCambridge University Press (CUP) (PUBLISHER)
DOI10.1017/rdc.2024.97
OpenAlexW4403609661
IdiomaEN
Referências citadas31

Cremated bones are a commonly preserved material and often found in burial environments where unburned bone may not be preserved. As such direct radiocarbon dating of cremated bone could be essential in determining the chronology of an event. Pretreatment of cremated bone exploits the structural carbonate component of the bone which survives cremation. However, due to the low abundance (ca. 0.1%) of this component, the extraction of an amount of endogenous carbon sufficient for radiocarbon dating may represent a challenge. Here we investigate two modifications to the phosphoric acid digestion protocol used during the preparation of cremated bones at the Oxford Radiocarbon Accelerator Unit (ORAU). The first of these was to use ultrasonication to release evolved CO 2 from the viscous phosphoric acid and cremated bone mixture that is formed during digestion. The second was to double the amount of time during which evolved CO 2 was removed from the reaction vessel by transfer into a cryogenically cooled ampoule. Ultrasonication of the digestion mixture failed to produce a significantly higher carbon yield, while double-time collection resulted in an average 21.5±13.8% increase of C yield without affecting the measured age. Extending the collection time can better enable reliable dating of small (less than 1 g) samples

Carbon dioxide · Carbonate · Chromatography · Geochemistry · Mineralogy · Radiocarbon dating · Bone and Dental Protein Studies · Chemistry · Dental Trauma and Treatments · Environmental Science · Forensic Anthropology and Bioarchaeology Studies · Medicine · Environmental Chemistry · Geology · Organic Chemistry · Paleontology

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