封护材料对千手观音金箔表面易脆毛霉菌生理代谢及腐蚀作用的影响
CSTR:
作者:
作者单位:

1.重庆大学 环境与生态学院, 重庆 400045;2.大足石刻研究院, 重庆 402360

作者简介:

贺嫱(1994- ),女,主要从事藻类及环境微生物研究,E-mail:2496288210@qq.com。
HE Qiang (1994- ), main research interests: algae and environmental microorganisms, E-mail: 2496288210@qq.com.

通讯作者:

蒋思维(通信作者),男,研究馆员,E-mail:1240071816@qq.com。
郭劲松(通信作者),男,教授,博士生导师,E-mail:guo0768@cqu.edu.cn。

中图分类号:

TU-87;K879.3

基金项目:

国家文物保护专项资金(文物保函〔2011〕262号);重庆市技术创新与应用发展专项重点项目(CSTB2022TIAD-KPX0095)


Effects of sealing materials on the physiological metabolism and corrosion action of Mucor fragilis on the gold foil surface of the Thousand-handed and Thousand-eyed Avalokitesvara
Author:
Affiliation:

1.College of Environment and Ecology, Chongqing University, Chongqing 400045, P. R. China;2.Dazu Engraving Research Institute, Chongqing 402360, P. R. China

Fund Project:

National Special Funds for Cultural Heritage Conservation (Letter on Cultural Heritage Conservation [2011] No. 262); Special Key Project of Chongqing Technology Innovation and Application Development (No. CSTB2022TIAD-KPX0095)

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    摘要:

    大足石刻千手观音造像是宋代石窟艺术的代表作品之一。该造像虽于2015年完成修复,后却因保存环境未得到有效改善而面临局部金箔起翘、开裂及微生物侵蚀等问题。前期对金箔环境微生物腐蚀机制的研究表明,微生物代谢的基质材料诱导微生物定殖及金箔表面微环境发生变化,但对封护材料对金箔表面微生物定殖与腐蚀机制的关联性仍缺乏深入研究。构建含生漆、松节油-生漆和桐油-生漆的易脆毛霉菌(Mucor fragilis)培养体系,并结合金箔表面腐蚀模拟实验,系统评估不同封护材料对微生物生理代谢及对金箔腐蚀过程的影响。结果表明:生漆可与毛霉菌形成稳定的生物膜结构,提供物理屏障并抑制有机酸分泌,实现对金箔的有效保护;松节油-生漆虽漆膜结构不均,但凭借其持续弱碱性环境和低浓度胞外聚合物(EPS)有效抑制微生物黏附,表现出一定的长期防护潜力;桐油-生漆在初期通过氧化胁迫抑制微生物生长,但随着脂肪酸作为碳源被利用,其长期防护能力逐渐减弱。

    Abstract:

    The Dazu Thousand-handed and Thousand-eyed Avalokitesvara is widely regarded as a seminal example of Song Dynasty grotto art. Although the statue was restored in 2015, the preservation environment has not been effectively improved. It still suffers from issues such as gold foil delamination, cracking, and microbial erosion. Preliminary investigations by our research group into the microbial corrosion mechanisms on the gold foil indicated that the substrates generated from microbial metabolism could induce microbial colonization and alter the microenvironment of the gold foil surface. Nonetheless, the relationship between sealing materials and the microbiological colonization and corrosion processes on gold foil remains insufficiently studied. The present study established a Mucor fragilis-based culture system, incorporating raw lacquer, turpentine-modified lacquer, and tung oil-modified lacquer as sealing materials. These systems were combined with simulated corrosion experiments on gold foil surfaces to systematically evaluate the effects of different sealing materials on microbial physiological metabolism and the corrosion process. The results indicated that raw lacquer formed a stable biofilm structure with Mucor fragilis, providing both physical barrier and inhibition of organic acid secretion, thereby offering effective protection for the gold foil. Although the film morphology of turpentine-modified lacquer was relatively heterogeneous, its sustained mildly alkaline environment and low extracellular polymeric substances (EPS) concentration effectively suppressed microbial adhesion, suggesting a certain long-term protection potential. Tung oil-modified lacquer initially inhibited microbial growth through oxidative stress, but its protective effect diminished over time as fatty acid components were utilized as carbon sources.

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贺嫱,蔡亮,蒋思维,冯雪梅,杨豪,赵岗,郭劲松.封护材料对千手观音金箔表面易脆毛霉菌生理代谢及腐蚀作用的影响[J].土木与环境工程学报(中英文),2026,48(3):119-127. HE Qiang, CAI Liang, JIANG Siwei, FENG Xuemei, YANG Hao, ZHAO Gang, GUO Jinsong. Effects of sealing materials on the physiological metabolism and corrosion action of Mucor fragilis on the gold foil surface of the Thousand-handed and Thousand-eyed Avalokitesvara[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2026,48(3):119-127.10.11835/j. issn.2096-6717.2025.111

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  • 收稿日期:2025-07-21
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  • 在线发布日期: 2026-06-10
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