Abstract Photocatalytic ceramic tiles: Challenges and technological solutions
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Photocatalytic ceramic tiles: Challenges and technological solutions

机译:光催化陶瓷砖:挑战和技术解决方案

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AbstractTitania-functionalized ceramic tiles are gaining space on the market of the self-cleaning photocatalytic building materials after a decade of industrial attempts and investigation on different technological issues. The present paper overviews the latest research on photocatalytic ceramic tiles in terms of process parameters, durability, cleanability and photoactivity, addressing challenges and solutions reported by academic and industrial sources. A special attention is paid to the superhydrophilicity and photocatalytic performance achievable on ceramic surfaces and their complex dependence on several factors (titania crystalline phase, deposition technique; firing temperature; thickness, roughness, specific surface area of the photoactive film; and so on). In particular, the methods used to deposit the titania layer, its degree of adhesion and effects on tile appearance (color, brightness, and roughness) are reviewed. Moreover, manufacturing a photocatalytic ceramic tile with a single firing step is still a challenge. Despite the international standards available on photocatalytic performance, the experimental parameters from one research to another may be quite different, therefore a performance comparison becomes virtually impossible. Nevertheless, among the available commercial products declared as photocatalytic ceramic tiles, just some of them revealed to be photoactive. From the data available, superhydrophilicity of tiles corresponded to contact angles with water in the 10–15° range. Specific photoactivity measured as methylene blue (MB) degradation resulted typically in the 2.8–3.4mol/m2h range; photonic efficiency was between 0.025 and 0.030%; while MB index was in the 15–20 range. Finally, the relationship of dye degradation with the self-cleaning property is also a question that remains unanswered.]]>
机译:摘要“>经过十年的工业尝试和对不同技术问题的研究,二氧化钛功能化瓷砖在自清洁光催化建筑材料市场上获得了空间。本文综述了光催化瓷砖在工艺参数、耐用性、清洁性和光活性方面的最新研究,解决了挑战和挑战学术和工业来源报告的解决方案。特别关注陶瓷表面的超亲水性和光催化性能,以及它们与几个因素(二氧化钛晶相、沉积技术、烧成温度、厚度、粗糙度、光活性膜的比表面积等)的复杂关系。特别是,对用于沉积二氧化钛层的方法、其粘附程度以及对瓷砖外观(颜色、亮度和粗糙度)的影响进行了综述。此外,单次烧成制备光催化瓷砖仍然是一个挑战。尽管有关于光催化性能的国际标准,但不同研究的实验参数可能有很大差异,因此几乎不可能进行性能比较。然而,在被宣布为光催化陶瓷砖的现有商业产品中,只有一些被证明具有光活性。根据现有数据,瓷砖的超亲水性对应于10–15°范围内与水的接触角。以亚甲基蓝(MB)降解测量的比光活性通常导致2.8–3.4mol/m2h范围;光子效率在0.025-0.030%之间;而MB指数在15-20之间。最后,染料降解与自清洁性能之间的关系也是一个尚未解决的问题]>

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