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耀州窑天青釉瓷的科技分析OA

Scientific Analysis of Sky-blue Glazed Porcelain from the Yaozhou Kiln

中文摘要英文摘要

耀州窑于五代时期创烧天青釉青瓷,是研究天青釉青瓷技术起源和传播的重要窑口.本文通过检测五代耀州窑天青釉青瓷标本化学组成、Fe 元素价态及显微结构,探索耀州窑天青釉青瓷的组成配方和呈色机制,在此基础上,讨论五代时期耀州窑青釉到天青釉所进行的配方调整和技术革新路线.研究表明:天青釉配方通过改变助熔剂配比,促进钙釉向钙碱釉转变,同时通过对烧制技术的控制,使其获得析晶—分相结构,促使天青釉色和乳浊感的呈现;瓷釉中 Fe2+约占总铁的 1/3,表明耀州窑天青釉烧成过程中存在一定还原气氛;结合显微结构分析,其天青色和乳浊感主要与钙长石析晶及分相结构的物理散射有关,Fe 价态则影响釉层基础色调.汝窑与耀州窑天青釉有着非常相似的化学组成比例,通过成分对比发现:两窑口天青釉在化学组成和显微结构上具有相似性,反映出天青釉烧造过程中相近的配方目标和工艺控制要求;而弃煤择柴、满釉支烧、二次烧成则是耀州窑和汝窑烧造天青釉的共同特点.

[Background and purpose]Sky-blue glaze is one of the most celebrated glaze colors in the history of Chinese celadon,which represents a major technological and aesthetic achievement after the secret-color wares of the Yue Kiln.The Yaozhou Kiln,one of the most important ceramic production centers in northern China,began producing sky-blue glazed porcelain during the Five Dynasties period,therefore occupying a key position in discussions of the origin,formation and transmission of sky-blue celadon technology.Although the chemical composition and coloring mechanism of Ru ware have been systematically studied,the glaze recipe,technological pathway and color-forming mechanism of the Five Dynasties sky-blue porcelain from the Yaozhou Kiln remain insufficiently clarified.In particular,it is necessary to explain how Yaozhou potters transformed earlier celadon glaze into sky-blue glaze through recipe modification and firing control and how this technological route relates to the later development of sky-blue glaze at the Ru Kiln.Based on the chemical composition,Fe valence state and glaze microstructure of Yaozhou sky-blue porcelain shards,the present study was aimed to clarify the glaze formulation and color-generating mechanism of this ware,thus reconstructing the technical innovations involved in the transition from celadon to sky-blue porcelain during the Five Dynasties.Yaozhou sky-blue glaze was also compared with Ru ware in order to reveal both the common principles and the kiln-specific features of their technological development. [Methods]Fourteen shards of sky-blue glazed porcelain from the Yaozhou Kiln were selected for scientific analysis,including eleven specimens dated to the Five Dynasties and three dated to the transitional period from the end of the Five Dynasties to the beginning of the Northern Song dynasty.The samples include bowls,dishes,plates,rims and zhan,preserving technological features,such as decorative slip,spur marks,crackles and palm-eye marks.The major and minor elemental compositions of the glaze layers were determined by using energy-dispersive X-ray fluorescence spectroscopy with a BRUKER ARTAX 400 micro-XRF instrument.Measurements were performed under Rh target radiation at 30 kV and 900 μA in a helium atmosphere for 300 s with a beam diameter of 1 mm,while Corning glass standards were used for calibration.To determine the oxidation state of iron in the glaze,X-ray absorption fine structure spectroscopy was conducted at beamline BL14W1 of the Shanghai Synchrotron Radiation Facility,using Fe,Fe2O3 and Fe3O4 as reference standards.In addition,polished glaze cross-sections were examined by using SEM-EDS after cutting,polishing,HF etching,rinsing and ultrasonic cleaning,so as to reveal the crystallization and phase-separation features of the glaze.The analytical results were then compared with literature compositional data for the Five Dynasties Yaozhou celadon,official Ru ware and civilian Ru ware.Parameters,such as the SiO2/Al2O3 molar ratio and the RO coefficient were used to identify the direction of glaze reformulation from celadon to sky-blue glaze. [Results]Chemical composition of the Yaozhou sky-blue glaze is relatively stable,suggesting a controlled and consistent glaze recipe.The average composition is 63.34 wt.%SiO2,12.65 wt.%Al2O3,2.58 wt.%Fe2O3,14.35 wt.%CaO,1.18 wt.%MgO,3.54 wt.%K2O and 0.42 wt.%Na2O.Relatively high contents of MgO,MnO and P2O5 indicate that plant ash was an important fluxing component in the glaze.Compared with the Five Dynasties Yaozhou celadon,the sky-blue glaze contains less SiO2 but more Al2O3,CaO and K2O.The average SiO2/Al2O3 molar ratio decreases from 11.17 in celadon to 8.54 in sky-blue glaze,indicating a relative decrease in high-silica components or in the SiO2/Al2O3 ratio,while clay-related components were increased and the flux proportion was adjusted.At the same time,the RO coefficient reveals a tendency for the glaze system to evolve from calcium glaze toward calcium-alkali glaze,which would have broadened the melting range,increased the high-temperature viscosity of the melt and hence helped maintain a thicker and more uniform glaze layer.The Yaozhou sky-blue glaze is a crystallization-phase separation glaze.During firing,anorthite crystals precipitated in the glaze,which were commonly accompanied by phase-separated structures around crystal margins and in intercrystalline spaces.These phase-separated domains often appear as droplet-like particles with diameters of about 100 nm,satisfying the conditions for Rayleigh scattering,whereas the crystal size falls within the range for Mie scattering.Such a combined crystallization-phase separation structure provides the physical basis for the glaze's opalescent appearance and jade-like texture.This also implies that Yaozhou potters had mastered a controlled cooling process that allowed sufficient time for both crystal precipitation and phase separation.XAFS analysis results indicate that iron in the glaze exists in mixed valence states.Based on the absorption-edge position,Fe2+is estimated to account for about one-third of total iron.This proportion is lower than that reported for Ru glaze,in which Fe2+accounts for about one-half of total Fe,indicating that although Yaozhou also employed reduction firing,its reducing atmosphere was less effectively controlled than that of the Ru kiln.Comparison with Ru official ware and civilian Ru ware shows that Yaozhou and Ru sky-blue glazes ultimately converged toward very similar compositional proportions,but possibly through different compositional adjustment pathways:Yaozhou's reduced content of quartz on the basis of its celadon recipe versus Ru ware's increased proportion of clay materials on the basis of the Linru ware recipe.In firing technology,the two kiln systems also shared several notable features,including wood firing instead of coal,full-glaze support firing and secondary firing. [Conclusions]The production of Five Dynasties sky-blue glaze at the Yaozhou kiln was the result of deliberate glaze reformulation and sophisticated firing control rather than accidental variation.Firstly,potters adjusted the proportion of fluxing agents,so that the glaze evolved from a calcium glaze toward a calcium-alkali glaze,while simultaneously reducing quartz input and lowering the SiO2/Al2O3 ratio.This promoted the formation of crystallization-phase separation structures and provided the material basis for the opalescent,jade-like texture and sky-blue appearance of the glaze.Secondly,the glaze contains mixed-valence iron,with Fe accounting for about one-third of the total Fe,confirming that reduction firing was essential to color generation but also showing that the reducing atmosphere in the Yaozhou Kiln was weaker than that in the Ru Kiln.Thirdly,although the Yaozhou and Ru Kilns followed different glaze-reformulation routes,they arrived at highly similar compositional characteristics and shared several firing practices,such as wood firing,full-glaze support firing and secondary firing.These findings not only clarify the technological mechanism of sky-blue glaze of the Yaozhou Kiln,but also provide important evidence for understanding the developmental relationship between the Yaozhou and Ru Kilns in the history of Chinese celadon technology.

陈禹来;温睿;张茂林;汪丽华

陕西省考古研究院,陕西 西安 710054西北大学 文化遗产学院,陕西 西安 710127景德镇陶瓷大学 古陶瓷研究中心,江西 景德镇 333403中国科学院上海高等研究院,上海 201210

化学化工

天青釉耀州窑汝窑釉料配方XAFS析晶—分相

sky-blue glazeYaozhou KilnRu Kilnglaze recipeXAFScrystallization-phase separation

《陶瓷学报》 2026 (3)

581-589,9

国家社会科学基金(24CKG025)陕西省自然科学基础研究计划(2025JC-YBQN351)陕西省"三秦博创"人才支持项目(2024SQBC025).

10.13957/j.cnki.tcxb.2026.03.013

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