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Biofouling Prevention of Ancient Brick Surfaces by TiO2-Based Nano-Coatings

机译:TiO2基纳米涂料预防古砖表面的生物积垢

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Brick constitutes a significant part of the construction materials used in historic buildings around the world. This material was used in Architectural Heritage for structural scope, and even for building envelopes. Thus, components made of clay brick were subjected to weathering for a long time, and this causes their deterioration. One of the most important causes for deterioration is biodeterioration caused by algae and cyanobacteria. It compromises the aesthetical properties, and, at a later stage, the integrity of the elements. In fact, traditional products used for the remediation/prevention of biofouling do not ensure long-term protection, and they need re-application over time. The use of nanotechnology, especially the use of photocatalytic products for the prevention of organic contamination of building fa?ades is increasing. In this study, TiO2-based photocatalytic nano-coatings were applied to ancient brick, and its efficiency towards biofouling was studied. A composed suspension of algae and cyanobacteria was sprinkled on the bricks’ surface for a duration of twelve weeks. Digital Image Analysis and colorimetric measurements were carried out to evaluate algal growth on specimens’ surfaces. Results show that photocatalytic nano-coating was able to inhibit biofouling on bricks’ surfaces. In addition, substrata (their porosity and roughness) clearly influences the adhesion of algal cells.
机译:砖构成了全球历史建筑中使用的建筑材料的重要组成部分。该材料已在《建筑遗产》中用于结构范围,甚至用于建筑围护结构。因此,由粘土砖制成的部件长时间经受风化,这导致它们的劣化。恶化的最重要原因之一是藻类和蓝细菌引起的生物降解。它损害了美学特性,并在后期损害了元素的完整性。实际上,用于补救/防止生物污垢的传统产品不能确保长期保护,并且需要随着时间的推移重新使用它们。纳米技术的使用,特别是光催化产品在防止建筑立面有机污染方面的应用正在增加。在这项研究中,将TiO2基光催化纳米涂料应用于古砖,并研究了其对生物污垢的效率。将藻类和蓝细菌组成的悬浮液撒在砖的表面上,持续十二周。进行了数字图像分析和比色法测量,以评估样品表面的藻类生长情况。结果表明,光催化纳米涂层能够抑制砖块表面的生物污染。此外,基质(其孔隙率和粗糙度)显然会影响藻类细胞的粘附。

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