J F Cui
Biographic Data
| ID | 5215928 |
|---|---|
| NAME | J F Cui |
| GIVEN NAMES | J F |
| FAMILY NAME | Cui |
| SIGNATURE | CUI J F |
| AFFILIATIONS | Peking University |
| VERIFIED | No |
| TOTAL WORKS | 5 |
| TOTAL CITATIONS | 10 |
| AUTHOR COUNT | 5 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2010 |
| LATEST PUBLICATION YEAR | 2024 |
| H-INDEX | 1 |
Discrimination of Cereal Residue Adsorbed by Pottery Based on Metabolomics
The Origins of Slip for High‐Fired Chinese Ceramics
For Chinese high‐fired glazed ceramics, a slip can improve the quality of products in many ways; however, when and how the artisans started applying a slip before glazing is still relatively unknown. Some Han dynasty Jiangdong‐type calcium glazed wares were unearthed from two tomb groups in Zhejiang. The results show that under the calcium glaze layer, there is another slip coating, which contains high levels of iron and potassium. The underglaze…
The Earliest High‐Fired Glazed Ceramic in China
In the Majiayao cultural stratum of the Lajia site in Minhe County, Qinghai Province, much earthenware of rich variety and strong character has been found, among which the most special item is a suspected glazed white ceramic fragment. This study investigates this ceramic sherd and many other overfired objects. Energy‐dispersive X‐ray fluorescence spectroscopy, scanning electron microscopy – energy‐dispersive X‐ray spectroscopy, X‐ray diffraction…
The Chemical Composition and Production Area of Early Western Zhou Proto‐Porcelain Unearthed from Yejiashan Cemetery, Suizhou, China
The bodies and glazes of 27 early Western Zhou proto‐porcelain samples from Yejiashan cemetery, Hubei Province, were analysed using LA‐ICP–AES, SEM, XRD, a thermal expansion instrument and other analytical methods. The results indicated that the bodies of all samples were characterized by high silicon and low aluminium, and were made with porcelain stone raw materials found in the south of China. The glazes are typical of high‐temperature calcium…
Lead Isotope Analysis of Tang Sancai Pottery Glazes From Gongyi Kiln, Henan Province and Huangbao Kiln, Shaanxi Province
Through the use of MC–ICP–MS, this study analyses the lead isotope ratios of 19 Tang Sancai pottery glazes unearthed from the Gongyi and Huangbao kiln sites. According to their different lead isotope ratios, the two kilns can be grouped separately. The research also suggests that the Gongyi and Huangbao kilns are independent production centres of Tang Sancai in the Tang Dynasty. The data from the Huangbao kiln indicates that the lead in the glaze…
Lead Isotope Analysis of Tang Sancai Pottery Glazes From Gongyi Kiln, Henan Province and Huangbao Kiln, Shaanxi Province
Through the use of MC–ICP–MS, this study analyses the lead isotope ratios of 19 Tang Sancai pottery glazes unearthed from the Gongyi and Huangbao kiln sites. According to their different lead isotope ratios, the two kilns can be grouped separately. The research also suggests that the Gongyi and Huangbao kilns are independent production centres of Tang Sancai in the Tang Dynasty. The data from the Huangbao kiln indicates that the lead in the glaze…
The Earliest High‐Fired Glazed Ceramic in China
In the Majiayao cultural stratum of the Lajia site in Minhe County, Qinghai Province, much earthenware of rich variety and strong character has been found, among which the most special item is a suspected glazed white ceramic fragment. This study investigates this ceramic sherd and many other overfired objects. Energy‐dispersive X‐ray fluorescence spectroscopy, scanning electron microscopy – energy‐dispersive X‐ray spectroscopy, X‐ray diffraction…
Lead Isotope Analysis of Tang Sancai Pottery Glazes From Gongyi Kiln, Henan Province and Huangbao Kiln, Shaanxi Province
Through the use of MC–ICP–MS, this study analyses the lead isotope ratios of 19 Tang Sancai pottery glazes unearthed from the Gongyi and Huangbao kiln sites. According to their different lead isotope ratios, the two kilns can be grouped separately. The research also suggests that the Gongyi and Huangbao kilns are independent production centres of Tang Sancai in the Tang Dynasty. The data from the Huangbao kiln indicates that the lead in the glaze…
The Chemical Composition and Production Area of Early Western Zhou Proto‐Porcelain Unearthed from Yejiashan Cemetery, Suizhou, China
The bodies and glazes of 27 early Western Zhou proto‐porcelain samples from Yejiashan cemetery, Hubei Province, were analysed using LA‐ICP–AES, SEM, XRD, a thermal expansion instrument and other analytical methods. The results indicated that the bodies of all samples were characterized by high silicon and low aluminium, and were made with porcelain stone raw materials found in the south of China. The glazes are typical of high‐temperature calcium…
The Earliest High‐Fired Glazed Ceramic in China
In the Majiayao cultural stratum of the Lajia site in Minhe County, Qinghai Province, much earthenware of rich variety and strong character has been found, among which the most special item is a suspected glazed white ceramic fragment. This study investigates this ceramic sherd and many other overfired objects. Energy‐dispersive X‐ray fluorescence spectroscopy, scanning electron microscopy – energy‐dispersive X‐ray spectroscopy, X‐ray diffraction…
The Origins of Slip for High‐Fired Chinese Ceramics
For Chinese high‐fired glazed ceramics, a slip can improve the quality of products in many ways; however, when and how the artisans started applying a slip before glazing is still relatively unknown. Some Han dynasty Jiangdong‐type calcium glazed wares were unearthed from two tomb groups in Zhejiang. The results show that under the calcium glaze layer, there is another slip coating, which contains high levels of iron and potassium. The underglaze…
Discrimination of Cereal Residue Adsorbed by Pottery Based on Metabolomics
Archaeology (4 works) · Cultural Heritage Materials Analysis (4 works) · Geology (4 works) · Geology (4 works) · Materials Science (4 works) · Ceramic (3 works) · Geography (3 works) · Glaze (3 works) · Metallurgy (3 works) · Mineralogy (3 works)