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Impact of paint matrix composition and thickness of paint layer on the activity of photocatalytic paints

机译:涂料基体组成和涂料层厚度对光催化涂料活性的影响

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Silicate, acrylic and latex photocatalytic paints were analyzed in regards to impact of paint matrix composition and paint layer’s thickness on performance in two photocatalytic tests. These included performances in photocatalytic decomposition of benzo[a]pyrene (BaP) and assessment of photocatalytic activity through use of smart ink test. Silicate photocatalytic paints displayed lower photocatalytic activity in comparison to acrylic and latex photocatalytic paints in both tests, despite the similar content of nanocrystalline TiO2. Measurements of depth of UV light penetration through the paints layer were performed and it appeared, that more porous structure of coating resulted in deeper penetration of UV light. In the case of acrylic paint, the thickness of the photocatalytic layer was around 9 μm, but for silicate paint DR this thickness was higher, around 21 μm.
机译:在两次光催化测试中,分析了硅酸盐,丙烯酸和乳胶光催化涂料对涂料基体组成和涂料层厚度对性能的影响。其中包括苯并[a] photo(BaP)的光催化分解性能以及通过使用智能墨水测试评估光催化活性。与硅酸盐和乳胶光催化涂料相比,硅酸盐光催化涂料在两种测试中均显示出较低的光催化活性,尽管纳米晶TiO2含量相似。进行了紫外线穿过涂料层的渗透深度的测量,结果表明,涂​​层的多孔结构导致紫外线的渗透更深。在丙烯酸​​涂料的情况下,光催化层的厚度约为9μm,但对于硅酸盐涂料DR,该厚度较高,约为21μm。

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