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Efficiency and durability of a self-cleaning coating on concrete and stones under both natural and artificial ageing trials

机译:在自然和人工老化试验下,混凝土和石材上自洁涂层的效率和耐久性

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This study aimed to test the performance under long-term working conditions of a commercial self-cleaning coating, a water-based TiO2 sol, on three building materials important in recent and older European heritage; Portland limestone, Woodkirk sandstone and concrete. First, the compatibility of the coating (effect on petrophysical properties) with the substrates was demonstrated by examining aesthetic properties and water vapour permeability of the building materials and secondly, the self-cleaning ability of the TiO2 nanoparticles in degrading artificial stain (rhodamine B) under UV light was evaluated. Finally, the durability (lasting performance) of photocatalytic activity was assessed during one year of outdoor exposure trial and 2000 h of accelerated ageing in a chamber with UV radiation and condensation cycles. Results showed that photocatalytic activity was unaltered on concrete, whereas on sandstone, particularly after artificial ageing, it was reduced due to the removal of nanoparticles from the surface. On limestone, a decrease of TiO(2 )content was observed but photodegradation efficiency (ability to perform as self-cleaner) seemed not to be affected. (C) 2017 Elsevier B.V. All rights reserved.
机译:这项研究的目的是测试在三种具有近代和较旧欧洲遗产的重要建筑材料上,商业自清洁涂料(水基TiO2溶胶)在长期工作条件下的性能;波特兰石灰石,伍德基克砂岩和混凝土。首先,通过检查建筑材料的美学特性和水蒸气渗透性,证明了涂料与底材的相容性(对岩石物性的影响);其次,TiO2纳米粒子在降解人造污渍(罗丹明B)方面的自清洁能力在紫外光下进行评估。最后,在室外暴露试验的一年中以及在具有紫外线辐射和冷凝循环的室内加速老化2000小时期间,评估了光催化活性的耐久性(持久性能)。结果表明,光催化活性在混凝土上没有改变,而在砂岩上,特别是在人工老化后,由于从表面去除了纳米颗粒而降低了。在石灰石上,观察到TiO(2)含量降低,但光降解效率(作为自清洁剂的能力)似乎没有受到影响。 (C)2017 Elsevier B.V.保留所有权利。

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