C Dating of Cremated Bones
The Issue of Sample Contamination
Datos Bibliográficos
| ID | 9243797 |
|---|---|
| Autores | Mark Van Strydonck (0000-0002-9074-4526), M Boudin (0000-0002-3991-1026), G De Mulder (0000-0002-4180-502X) |
| Año | 2009 |
| Volumen | 51 |
| Número | 2 |
| Páginas | 553-568 |
| Fecha de publicación | 2009-01-01 |
| Peer Reviewed | Sí |
| Open Access | Sí |
| Tipo | ARTICLE |
| Revista | Radiocarbon (JOURNAL) |
| Identificadores de la revista | ISSN: 0033-8222 • E-ISSN: 1945-5755 |
| Editorial | Cambridge University Press (CUP) (PUBLISHER) |
| DOI | 10.1017/s0033822200055922 |
| OpenAlex | W1835135450 |
| Idioma | EN |
| Citas recibidas | 57 |
| Referencias citadas | 26 |
Recent comparative studies have proven the validity of radiocarbon dates of cremated bones. The issue of sample contamination has, however, been overlooked in most studies. Analyses of cremated bone samples has shown that in some cases, cremated bones are contaminated. This contamination is more distinct near the surface of the bones and depends on the compactness of the cremated bone as well as on the site conditions. δ 13 C is not a good estimator to discriminate between contaminated and uncontaminated bones. An acetic acid pretreatment is the most appropriate method to clean samples, but it is better to remove the surface and to avoid cremated bones that are not entirely white (cremation temp
Archaeology · Chromatography · Contamination · Geography · Mineralogy · Radiocarbon dating · Archaeology and ancient environmental studies · Chemistry · Forensic Anthropology and Bioarchaeology Studies · Paleopathology and ancient diseases · Geology
From bone to ash
Radiocarbon dating of biological apatites
Growing Evidence of a Younger than Clovis Cultural Affiliation
Radiocarbon dating of the Son Pellisser lime burial (Calvià, Mallorca)
The skeletons of Lauricocha
Determining the roots of Urnfield Culture at Přáslavice, Czech Republic
Transition from hunting to animal husbandry in Southern, Western and Eastern Finland
Old wood’ effect in radiocarbon dating of prehistoric cremated bones
Multi-proxy analyses reveal regional cremation practices and social status at the Late Bronze Age site of Herstal, Belgium
Can calcined bones be used to date Final Palaeolithic and Mesolithic open-air sites? A case-study from the Scheldt basin (NW Belgium)
From revolution to convention
Grobišče na Obrežju
The Tempo of Bronze Age Barrow Use
Lively landscapes
Géochimie isotopique des ossements brûlés
Isotope Geochemistry of Burned Bones
Chariots and Context
Novel multidisciplinary approach detects multiple individuals within the same Late Bronze–Early Iron Age cremation graves
The Carbon Origin of Structural Carbonate in Bone Apatite of Cremated Bones
C Dates and Spatial Statistics
Anomalous Radiocarbon Dates from the Early Medieval Cremation Graves from Broechem (Flanders, Belgium)
Preparation and Dating of Mortar Samples—Mortar Dating Inter-Comparison Study (Modis)
Comparing Methods for Co 2 Purification of Cremated Bone Samples
Unraveling the Occupation History of the Cremation Cemetery at Wijnegem/Blikstraat (Belgium)
Adoption and Evaluation of a sample Pretreatment Protocol for Radiocarbon Dating of Cremated Bones at Hekal
C Chronology of Burial Grounds of the Andronovo Period (Middle Bronze Age) in Baraba Forest Steppe, Western Siberia
Final Neolithic and Bronze Age Funerary Practices and Population Dynamics in Belgium, the Impact of Radiocarbon Dating Cremated Bones
C Dating of “Brandgrubengräber” from the Bronze Age to the Roman Period in Western Flanders (Belgium)
Assessing a Modified Carbonate Digestion Protocol for Increased Carbon Dioxide Recovery During Cremated Bone Pretreatment
Bayesian Modeling of Wood-Age Offsets in Cremated Bone
A Merovingian Surprise
A Reassessment of the Routine Pretreatment Protocol for Radiocarbon Dating Cremated Bones
Radiocarbon Dating the 3rd Millennium Bc in the Central Balkans
Barrow Necropolis from the 3rd and 2nd Millennia BC in Western Ukraine. A Bayesian Modeling and Isotopic Study
Sample Preparation Methods Used at the Australian National University Radiocarbon Facility
Chronology of the S'Hospitalet Vell Naveta Village
AMS 14 C Dating at the Scottish Universities Environmental Research Centre (Suerc) Radiocarbon Dating Laboratory
The Chronology of the Neolithic Necropolis Bòbila Maduell-Can Gambús in the Northeast Iberian Peninsula
C Dating and Material Analysis of the Lime Burial of Cova de Na Dent (Mallorca, Spain)
Carbon Exchanges between Bone Apatite and Fuels during Cremation
Challenging the Traditional Chronological Framework of Funerary Rituals in the Meuse-Demer-Scheldt Region
Dating Gods
Absolute Dates of Artifacts From Lusatian Urnfield Cemetery at Brzezie, Greater Poland
When Dental Enamel is Put to the Acid Test
The Impact of Cremated Bone Dating on the Archaeological Chronology of the Low Countries
Radiocarbon Dating Cremated Bone
Pretreatment Protocols Performed at the Royal Institute for Cultural Heritage (Rich) Prior to Ams 14 C Measurements
Chronology of the Danish Bronze Age Based on 14 C Dating of Cremated Bone Remains
Radiocarbon Dating of Mesolithic Open‐air Sites in the Coversand Area of the North‐west European Plain
Early postglacial hunter-gatherers show environmentally driven 'false logistic' growth in a low productivity environment
Calcined Bone as a Reliable Medium for Radiocarbon Dating
On the chronology of the Uluzzian
Divergence, diet, and disease
Impact of prolonged heating on the color and crystallinity of bone
The Protohistoric 'Quicklime Burials' from the Balearic Islands
Inscribed sandstone fragments of Hole, Norway
Social formation and collapse in the Tisza-Maros region
The Archaeology of Human Bones
Burning and boiling of modern deer bone
New Method of Collagen Extraction for Radiocarbon Dating
Prähistorische Anthropologie
Burnt bones and teeth
Characterisation and blind testing of radiocarbon dating of cremated bone
Exchange of carbon with biological apatite
Early Diagenetic Evolution of Bone Phosphate
The Effects of Sample Treatment and Diagenesis on the Isotopic Integrity of Carbonate in Biogenic Hydroxylapatite
Preservation of13C/12C Original Ratio and14C Dating of the Mineral Fraction of Human Bones From Saharan Tombs, Niger
Aspects of the chemistry of modern and fossil biological apatites
A Cremated Bone Intercomparison Study
The Influence of Contaminating (Fossil) Carbonate and the Variations of δ 13 C in Mortar Dating
Dating of Cremated Bones
Re-Evaluation of the Late Bronze Age and Early Iron Age Chronology of the Western Belgian Urnfields Based on 14 C Dating of Cremated Bones
Bomb Radiocarbon Dating of Animal Tissues and Hair
Sample Throughput and Data Quality at the Leibniz-Labor AMS Facility
Mineralogical Studies On Bone Apatite and Their Implications for Radiocarbon Dating
The Impact of Cremated Bone Dating on the Archaeological Chronology of the Low Countries
| Obras citantes distintas | 57 |
|---|---|
| Citas por año | 3,35 |
| Intervalo de citas | 2009 - 2026 (18) |
| Velocidad de citación | current |
| Altamente citado | No |
| Tipos de cita | Neutras: 57 |