Isotopes on the Beach, Part 1
Strontium Isotope Ratios as a Provenance Indicator for Lime Raw Materials Used in Roman Glass‐making
Dados Bibliográficos
| ID | 8352983 |
|---|---|
| Autores | Dieter Brems (KU Leuven, autor correspondente), Monica Ganio (0000-0003-0414-2834, KU Leuven), Kris Latruwe (Ghent University), Lieve Balcaen (0000-0002-1800-6932, Ghent University), Mike Carremans (KU Leuven), D GIMENO (0000-0002-9998-4518, Universitat de Barcelona), Alberta Silvestri (0000-0001-9747-3194, University of Padua), Frank Vanhaecke (0000-0002-1884-3853, Ghent University), P MUCHEZ (KU Leuven), P Degryse (0000-0003-3604-6505, KU Leuven) |
| Ano | 2013 |
| Volume | 55 |
| Fascículo | 2 |
| Páginas | 214-234 |
| Data de publicação | 2013-04-01 |
| Peer Reviewed | Sim |
| Open Access | Sim |
| Tipo | ARTICLE |
| Periódico | Archaeometry (JOURNAL) |
| Identificadores do periódico | ISSN: 0003-813X • E-ISSN: 1475-4754 |
| Editora | Wiley (PUBLISHER • GB) |
| DOI | 10.1111/j.1475-4754.2012.00702.x |
| OpenAlex | W1549824071 |
| Idioma | EN |
| Citações recebidas | 41 |
| Referências citadas | 35 |
The provenancing of Roman natron glass is one of the most challenging problems in the field of archaeometry. Although the use of Sr and Nd isotope ratios and trace element signatures as an indication of provenance has proven promising, there are still many unknowns. In this study, the influence of the different raw materials on the final Sr isotopic composition of Roman natron glass is examined. It is shown that the 87 Sr/ 86 Sr ratio in natron glass is significantly influenced by the silicate fraction of the sand used and does not always provide a clear indication of the lime source used
Archaeological science · Archaeology · Geochemistry · Geography · Isotope · Isotopes of strontium · Lime · Metallurgy · Mineralogy · Provenance · Raw material · Silicate · Strontium · Trace element · Building materials and conservation · Chemistry · Cultural Heritage Materials Analysis · Geology · Maritime and Coastal Archaeology · Materials Science
Life and Death in Neolithic Southeastern Italy
Western Mediterranean sand deposits as a raw material for Roman glass production
Zarys zasadniczych problemów metodycznych w badaniach składu chemicznego szkieł zabytkowych (wybrane przykłady)
Things that Travelled
A new perspective
Isoscape modelling choices and their implications for archaeological mobility interpretations
Pixe–Pige investigation of Roman Imperial vessels and window glass from Mt. Kosmaj, Serbia (Moesia Superior)
Mosaic tesserae from Italy and the production of Mediterranean coloured glass (4th century BCE–4th century CE). Part II
Geochemical investigation of Late Roman glass and available raw material at the industrial complex of Tel Yavne, Israel
Provenance of polychrome and colourless 8th–4th century BC glass from Pieria, Greece
Dating Nathan
New evidence on the provenance of Red Lustrous Wheel-made Ware (RLW)
Amorphous glass fragments from archaeological surface surveys
Tracing the primary production location of core-formed glass vessels, Mediterranean Group I
Characterisation of Byzantine and early Islamic primary tank furnace glass
Application of strontium isotope analysis to provenance studies of Early Bronze Age North-Mesopotamian Metallic Ware
Chemical analyses and production technology of archaeological glass from Athienou-Malloura, Cyprus
Compositional Characteristics of Jamestown “Tryal” Glass (Virginia, ca 1608)
A unique recipe for glass beads at Iron Age Sardis
Determining the Sr isotopic composition of waterlogged wood – Cleaning more is not always better
Purple haze
Identifying migrants in Roman London using lead and strontium stable isotopes
A large-scale Sr and Nd isotope baseline for archaeological provenance in Silk Road regions and its application to plant-ash glass
Roman and late-Roman glass from north-eastern Italy
Production, mixing and provenance of Late Bronze Age mixed alkali glasses from northern Italy
Glass production for the Silk Road? Provenance and trade of islamic glasses using isotopic and chemical analyses in a geological context
A glimmer of the eastern Adriatic
Geochemical heterogeneity of sand deposits and its implications for the provenance determination of Roman glass
Import globally, recycle locally
Stranded in Novo Mesto
The Atlantic Road. Late Antique/Early Medieval Glass Trade in the Iberian North-West
Chemical and strontium isotope analysis of Yaozhou celadon glaze
The Exploration of Sr Isotopic Analysis Applied to Chinese Glazes
The Production and Circulation of Carthaginian Glass Under the Rule of the Romans and the Vandals (Fourth to Sixth Century ad )
Trace Element Analysis in Provenancing R oman Glass‐Making
Isotopes on the Beach, Part 2
On the making, mixing and trading of glass from the Roman military fort at Oudenburg (Belgium)
Different glassmaking technologies in the production of Iron Age black glass from Italy and Slovakia
Sixth-century AD glassware from Jelica, Serbia-an increasingly complex picture of late antiquity glass composition
Splinters to splendours
How much is known about glassy materials in Bronze and Iron Age Italy? New data and general overview
The Use of Marine Molluskan Shells for Roman Glass and Local Raw Glass Production in the Eifel Area (Western Germany)
Compositional Categories of Ancient Glass
Glass production in Late Antiquity and the Early Islamic period
The composition of the continental crust
Strontium Isotopes from the Earth to the Archaeological Skeleton
Short contribution
The composition of ‘naturally coloured’ late Roman vessel glass from Britain and the implications for models of glass production and supply
Evidence for glass ‘recycling’ using Pb and Sr isotopic ratios and Sr-mixing lines
Western Mediterranean sand deposits as a raw material for Roman glass production
Natron as a flux in the early vitreous materials industry
Pliny the Elder and Sr–Nd isotopes
Sand for Roman Glass Production
Evaporites of the Wadi Natrun
Data on 61 Chemical Elements for the Characterization of Three Major Glass Compositions in Late Antiquity and the Middle Ages
Strontium Isotopes in the Investigation of Early Glass Production
Isotopes on the Beach, Part 2
| Obras citantes distintas | 41 |
|---|---|
| Citações por ano | 2,93 |
| Intervalo de citações | 2012 - 2026 (15) |
| Velocidade de citação | current |
| Altamente citado | Não |
| Tipos de citação | Neutras: 38 |