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Microbiologically Induced Carbonate Precipitation in the Restoration and Conservation of Cultural Heritage Materials

机译:微生物学诱导的碳酸盐沉淀在文化遗产材料的恢复和保护中

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摘要

Microbiologically induced carbonate precipitation (MICP) is a well-known biogeochemical process that allows the formation of calcium carbonate deposits in the extracellular environment. The high concentration of carbonate and calcium ions on the bacterial surface, which serves as nucleation sites, promotes the calcium carbonate precipitation filling and binding deteriorated materials. Historic buildings and artwork, especially those present in open sites, are susceptible to enhanced weathering resulting from environmental agents, interaction with physical-chemical pollutants, and living organisms, among others. In this work, some published variations of a novel and ecological surface treatment of heritage structures based on MICP are presented and compared. This method has shown to be successful as a restoration, consolidation, and conservation tool for improvement of mechanical properties and prevention of unwanted gas and fluid migration from historical materials. The treatment has revealed best results on porous media matrixes; nevertheless, it can also be applied on soil, marble, concrete, clay, rocks, and limestone. MICP is proposed as a potentially safe and powerful procedure for efficient conservation of worldwide heritage structures.
机译:微生物诱导的碳酸碳酸盐沉淀(MICP)是众所周知的生物地球化学方法,其允许在细胞外环境中形成碳酸钙沉积物。细菌表面上的高浓度和钙离子用作成核位点,促进碳酸钙沉淀填充和结合劣化材料。历史建筑和艺术品,特别是那些在开放地点的艺术品,易于增强由环境代理产生的风化,与物理化学污染物和生物体相互作用。在这项工作中,提出了一些基于MICP的遗产结构的新颖和生态表面处理的一些公布变化。该方法显示成功作为恢复,整合和保护工具,以改善从历史材料的机械性能和预防不需要的气体和流体迁移。治疗揭示了多孔介质基质的最佳结果;尽管如此,它也可以应用于土壤,大理石,混凝土,粘土,岩石和石灰岩上。麦克白被提议是高效保护全球遗产结构的潜在安全和强大的程序。

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