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Innovative biological approaches for metal conservation

机译:金属保护的创新生物方法

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摘要

While often considered as harmful for cultural heritage, microorganisms can also be used for its safeguarding. Two research projects (BIOPATINAS and MAIA) using the capabilities of microorganisms for the conservation-restoration of metal artistic and archaeological objects are presented in this study. The objective of the BIOPATINAS project is to propose an alternative biological treatment for copper alloys artefacts. Taking advantage of unique properties of carefully selected fungal strains, the project relies on the conversion of existing corrosion patinas into more stable copper oxalates. The results demonstrated a different weathering behavior of the biopatina compared to standard treatments such as waxes or inhibitors. In the MAIA project, the unique capacities of some fungi and bacteria are studied for the stabilization of archeological iron. Based on the results achieved, a synergetic microbial consortium will be designed for the formation of stable iron compounds and the simultaneous removal of chloride ions that are the instigators of further corrosion after excavation. A careful assessment of the methodology is currently carried out over iron- and chloride-rich phases.
机译:尽管通常被认为对文化遗产有害,但微生物也可用于保护。这项研究提出了两个利用微生物能力保护金属艺术品和考古物品的研究项目(BIOPATINAS和MAIA)。 BIOPATINAS项目的目的是为铜合金制品提出一种替代性的生物处理方法。利用精心挑选的真菌菌株的独特性能,该项目依赖于将现有腐蚀铜绿转化为更稳定的草酸铜。结果表明,与标准疗法(例如蜡或抑制剂)相比,生物菌斑具有不同的耐候性。在MAIA项目中,研究了某些真菌和细菌独特的能力来稳定考古铁。根据获得的结果,将设计一个协同微生物联合体,以形成稳定的铁化合物并同时去除氯离子,而氯离子是开挖后进一步腐蚀的诱因。目前,在富含铁和氯化物的阶段对方法进行了仔细的评估。

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