Analysis of Pigments of Ming Dynasty Polychrome Paintings Composition in the Juehuang Hall of the Mingjiao Temple
ZHANG Wen-jie1, ZHANG Yu2, CAO Zhen-wei3, HAN Xiang-na1*, GUO Hong1
1. Key Laboratory of Archaeomaterials and Conservation, Ministry of Education, Institute for Cultural Heritage and History of Science & Technology, University of Science and Technology Beijing, Beijing 100083, China
2. School of Architecture, Southwest Jiaotong University, Chengdu 610031, China
3. The Ancient Architecture Department of the Palace Museum, Beijing 100009, China
Abstract:Mingjiao Temple is located in Chengdu, Sichuan Province. The Juehuang Hall is the only surviving structure of the original Mingjiao Temple complex. The main part of the hall was constructed during the early Hongwu period of the Ming Dynasty (1368—1382) and was completed no later than the first year of the Chenghua reign (1465). The interior of Juehuang Hall retains a significant number of Ming Dynasty murals, which exhibit the distinctive characteristics of the official architectural style of the Northern country. These murals are a rare example of Ming Dynasty architectural painting and hold significant research value. Previous research on the paintings in the Juehuang Hall has focused on their form and aesthetic style, with no scientific analysis of their production techniques and materials. This study employs a high-resolution digital microscope, laser Raman spectrometer, scanning electron microscope, and energy dispersive spectrometer to analyze and identify the pigments from the paintings in the Juehuang Hall. The results indicate that the green pigments in the Mingjiao Temple's Juehuang Hall paintings are malachite and copper chloride, the red pigments are iron oxideand red lead, the white pigment is lead white, the blue pigment is indigo, and the black pigment is carbon black. Furthermore, the eaves paintings within the Juehuang Hall exhibit multi-layered paintings and the practice of mixing pigments for color adjustment. Synthetic ultramarine and Paris green are absent in these eaves paintings, which were commonly used in the Qing Dynasty's middle and later periods. The painting technique, characterized by the direct application of pigments onto the wooden components without a preparatory ground layer, suggests that these paintings are likely remnants from the Ming Dynasty, aligning with the documented period of the paintings' creation. This study is the first scientific analysis of the production techniques and materials of the Juehuang Hall paintings, and the preliminary findings have enriched the understanding of the application of pigments in Ming Dynasty architectural paintings, providing a reference for subsequent research and conservation efforts.
Key words:Mingjiao temple; Juehuang Hall; Ming dynasty paintings; Raman spectroscopy
章文杰,张 宇,曹振伟,韩向娜,郭 宏. 明教寺觉皇殿明代彩画颜料成分分析[J]. 光谱学与光谱分析, 2025, 45(05): 1389-1394.
ZHANG Wen-jie, ZHANG Yu, CAO Zhen-wei, HAN Xiang-na, GUO Hong. Analysis of Pigments of Ming Dynasty Polychrome Paintings Composition in the Juehuang Hall of the Mingjiao Temple. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2025, 45(05): 1389-1394.
[1] The Chengdu Cultural Relics and Archaeology Research Institute(成都文物考古研究所). Sichuan Cultural Relics(四川文物), 2011, (5): 24.
[2] LEI Zhong-bin, WU Yu-qing, ZHANG Tao, et al(雷中宾,吴玉清,张 涛,等). Surface Technology(表面技术), 2017, 46(2): 8.
[3] WEN Juan, XU Bo-kai, HU Jun-jian, et al(文 娟, 徐博凯, 胡军舰, 等). Sciences of Conservation and Archaeology(文物保护与考古科学), 2023, 35(4): 104.
[4] HUANG Jian-hua, YANG Lu, SHEN Mao-sheng, et al(黄建华, 杨 璐, 申茂盛, 等). Journal of Northwest University(Natural Science Edition)[西北大学学报(自然科学版)], 2022, 52(4): 691.
[5] SU Bo-min(苏伯民). Research on the Conservation of Cave Temples and Earthen Sites(石窟与土遗址保护研究), 2022, 1(1): 47.
[6] ZHANG Xi-huan(章西焕). China Non-Metalic Mining Industry Herald(中国非金属矿工业导刊), 2020, (4): 10.
[7] WANG Jin-yu, WANG Jin-cong(王进玉,王进聪). Dunhuang Research(敦煌研究), 2002,(4): 23.
[8] LI Yue, LIU Meng-yu(李 越,刘梦雨). Palace Museum Journal(故宫博物院院刊),2018, (6): 45.
[9] MA Jun-jie, LI Yan, WU Fu-rong, et al(马峻杰,李 岩,吴福容,等). Spectroscopy and Spectral Analysis(光谱学与光谱分析), 2024, 44(4): 983.
[10] YANG Hong, LIU Meng-yu, LEI Yong(杨 红, 刘梦雨, 雷 勇). Journal of Gugong Studies(故宫学刊), 2015, (3): 276.
[11] LI Guang-hua, CHEN Yao, MA Yue, et al(李广华, 陈 垚, 马 越, 等). Sciences of Conservation and Archaeology(文物保护与考古科学), 2018, 30(6): 96.
[12] CAO Zhen-wei(曹振伟). Construction and Architecture(建筑), 2023, (8): 90.
[13] ZHANG Xiao-bo(张晓波). Traditional Chinese Architecture and Gardens(古建园林技术), 2017, (2): 28.
[14] LIU Meng-xuan, TIAN Lin(刘梦璇, 田 林). Study on Natural and Cultural Heritage(自然与文化遗产研究), 2019, 4(12): 129.