Neolithic burial pottery from the Jiaojia site, China
A multi‐analytical study
Bibliographic Data
| ID | 8353145 |
|---|---|
| Authors | Chao Yuan (0000-0001-7902-802X, School of History and Culture Shandong University Jinan China), Fen Wang (0000-0003-1035-2205, School of History and Culture Shandong University Jinan China, corresponding author), Shiling Yuan (0000-0002-4073-9470, School of Chemistry and Chemical Engineering Shandong University Jinan China) |
| Year | 2022 |
| Volume | 64 |
| Issue | 6 |
| Pages | 1359-1376 |
| Publication date | 2022-12-01 |
| Peer Reviewed | Yes |
| Open Access | Yes |
| Type | ARTICLE |
| Venue | Archaeometry (JOURNAL) |
| Journal identifiers | ISSN: 0003-813X • E-ISSN: 1475-4754 |
| Publisher | Wiley (PUBLISHER • GB) |
| DOI | 10.1111/arcm.12792 |
| OpenAlex | W4281263557 |
| Language | EN |
| Citations received | 3 |
| References cited | 29 |
The present study focuses on middle and late Dawenkou Culture burial pottery—cookware, drinking ware, and tableware—recently unearthed from the Jiaojia site. Through the application of X‐ray fluorescence (XRF), Fourier transform infrared spectroscopy (FTIR), and X‐ray diffraction (XRD), we have revealed for the first time that the compositional difference of Jiaojia burial pottery is related to the category and function of wares. Calcium‐poor clay was used for cookware and tableware, whereas calcium‐rich clay was used for drinking ware. The pottery body's mineralogical assemblage and chemical composition results point to the careful selection and preparation of raw materials and oxidizing fire temperatures between 750 and 950°C. In most cases, the temperatures used for firing drinking ware were generally higher than those used for firing tableware and cookware
Archaeology · Fourier transform infrared spectroscopy · Geography · Metallurgy · Mineralogy · Pottery · Archaeology and ancient environmental studies · Building materials and conservation · Chemical Engineering · Cultural Heritage Materials Analysis · Engineering · Geology · Materials Science
Characterization of ceramic from the Early Bronze Age Xinzhai site, Henan Province, China, by using a multi-analytical approach
Variation in acquisition strategies for white pottery vessels during the Longshan period in the Haidai area of China
Plant diet and pottery vessels function at the Jiaojia site during middle-late Dawenkou culture in Shandong Province, China
Instrumental Neutron Activation Analysis and Multivariate Statistics for Pottery Provenance
Characterization of pottery from the Neolithic Huadizui site, Henan province, China by using a multi‐analytical approach
Handbook of Archaeological Sciences
Thermal and spectroscopic characterization of archeological pottery from Ambari, Assam
Investigation of Neolithic pottery from Ebrahimabad in the central plateau of Iran, utilising chemical–mineralogical and microstructural analyses
Technological transfer? Comparative analysis of 2nd–3rd/4th century CE “Late Roman” pottery from Taymāʾ, Saudi Arabia, and Petra, Jordan
Manufacturing techniques of sacrificial pottery from Jiaojia site, China, during the Dawenkou Culture
Archaeometric study of medieval pottery excavated at Stari (Old) Ras, Serbia
Characterization of the early Byzantine pottery from Caričin Grad (South Serbia) in terms of composition and firing temperature
Radiocarbon Dating and Diet
Log‐ratio Compositional Data Analysis in Archaeometry
Multi‐method (FTIR, XRD, PXRF) analysis of Ertebølle pottery ceramics from Scania, southern Sweden
The technology of Copper Age funerary pottery from Central Italy
Illuminating the Late Mesolithic
Ceramic raw materials
Amphora production in the Guadalquivir valley (Spain) during the Late Roman period
Infrared spectroscopy in the mineralogical characterization of ancient pottery
| Unique citing works | 3 |
|---|---|
| Citations per year | 0,75 |
| Citation span | 2022 - 2025 (4) |
| Citation velocity | recent |
| Highly cited | No |
| Citation types | Neutral: 1 |