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Photocatalytic Nanocomposites for the Protection of European Architectural Heritage

机译:光催化纳米复合材料保护欧洲建筑遗产

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摘要

In the field of stone protection, the introduction of inorganic nanoparticles, such as TiO2, ZnO, and Ag in polymeric blends can enhance the protective action of pristine treatments, as well as confer additional properties (photocatalytic, antifouling, and antibacterial). In the framework of the “Nano-Cathedral” European project, nanostructured photocatalytic protective treatments were formulated by using different TiO2 nanoparticles, solvents, and silane/siloxane systems in the blends. The results about the characterization and application of two promising nano-TiO2 based products applied on Apuan marble and Ajarte limestone are here reported, aiming at investigating the complex system “treatment/stone-substrate”. The nanocomposites show better performances when compared to a commercial reference siloxane based protective treatment, resulting in different performances once applied on different carbonatic substrates, with very low and high open porosity, confirming the necessity of correlating precisely the characteristics of the stone material to those of the protective formulations. In particular, the TiO2 photocatalytic behavior is strictly linked to the amount of available nanoparticles and to the active surface area. The alkyl silane oligomers of the water-based formulation have a good penetration into the microstructure of Ajarte limestone, whereas the solvent-based and small size monomeric formulation shows better results for Apuan marble, granting a good coverage of the pores. The encouraging results obtained so far in lab will be confirmed by monitoring tests aiming at assessing the effectiveness of the treatments applied in pilot sites of historical Gothic Cathedrals.
机译:在石材保护领域,将无机纳米粒子(例如TiO2,ZnO和Ag)引入聚合物共混物中可增强原始处理的保护作用,并赋予其他特性(光催化,防污和抗菌)。在“纳米大教堂”欧洲项目的框架内,通过在共混物中使用不同的TiO2纳米颗粒,溶剂和硅烷/硅氧烷体系,配制了纳米结构的光催化保护处理剂。本文报道了有关在Apuan大理石和Ajarte石灰石上使用的两种有前途的基于纳米TiO2的产品的表征和应用的结果,旨在研究复杂的系统“处理/石材-基底”。与市售的基于参考硅氧烷的保护性处理相比,纳米复合材料表现出更好的性能,一旦施用于不同的碳质基材上,具有非常低和高的开孔率的不同性能,从而证实了将石材的特性与石材的特性精确相关的必要性。防护配方。特别地,TiO 2的光催化行为与有效纳米颗粒的量和活性表面积严格相关。水基配方的烷基硅烷低聚物可很好地渗透到Ajarte石灰石的微观结构中,而溶剂基小尺寸单体配方则对Apuan大理石显示出更好的效果,从而很好地覆盖了孔隙。迄今为止,在实验室中获得的令人鼓舞的结果将通过监视测试来证实,这些测试旨在评估在历史悠久的哥特式大教堂的试点中所采用的治疗的有效性。

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