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Synergy achieved in silver-TiO_2 nanocomposites for the inhibition of biofouling on limestone

机译:银-TiO_2纳米复合材料中的协同作用可抑制石灰石上的生物结垢

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Biodeterioration of stone monuments is estimated to be as high as 20-30% of the total degradation suffered by Cultural Heritage constructions. With regard to this problem, bactericidal treatments are mainly based on cleaning. These processes, while effective in the short term, require frequent reapplications increasing potential damages to the monument. Silver nanoparticles offer many advantages over traditionally employed products, such as their prolonged biocide efficacy and their low toxicity to humans and environment. The aim of this study was to evaluate the applicability and effectiveness of seven nanocomposite treatments based on titanium dioxide and/or silver nanoparticles to prevent biodeterioration of limestone monuments. These nanocomposites were characterized by UV Visible spectrophotometry, Dynamic Light Scattering and Electron Microscopy. To assess their bactericidal activity, accelerated weathering tests were performed on limestones from the quarry of Utrera, a source widely employed in such iconic monuments as the Cathedral of Seville (Spain). Furthermore, the samples of biopatina employed in our assays stemmed from the fa ades of historical buildings from Seville. Our results show that silver and titanium dioxide nanocomposites stabilized by citrate achieve a high biocide effect while maintaining color alterations at a low level.
机译:据估计,石碑的生物退化高达文化遗产建筑遭受的总退化的20-30%。关于这个问题,杀菌处理主要基于清洁。这些过程虽然在短期内有效,但需要频繁地重新应用,从而增加了对纪念碑的潜在损害。银纳米颗粒与传统使用的产品相比具有许多优势,例如它们具有延长的杀菌作用以及对人体和环境的低毒性。这项研究的目的是评估基于二氧化钛和/或银纳米颗粒的七种纳米复合材料治疗方法的有效性和有效性,以防止石灰石遗迹的生物退化。这些纳米复合材料的特征在于紫外可见分光光度法,动态光散射和电子显微镜。为了评估其杀菌活性,对乌特雷拉采石场的石灰石进行了加速的耐候性测试,乌特雷拉采石场广泛使用于塞维利亚大教堂(西班牙)等标志性古迹中。此外,在我们的分析中使用的生物模型样本来自塞维利亚的历史建筑外观。我们的结果表明,柠檬酸盐稳定的银和二氧化钛纳米复合材料具有很高的杀生物效果,同时将颜色变化保持在较低水平。

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