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Improvement of cement-based mortars by application of photocatalytic active Ti-Zn-Al nanocomposites

机译:应用光催化活性Ti-Zn-Al纳米复合材料改良水泥基砂浆

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摘要

Photocatalytic active TiO_2 has been extensively applied in construction material science due to its ability to remove pollutants from material surfaces. New inorganic-inorganic nanocomposite photocatalyst based on layered double hydroxides (LDHs) associated to TiO_2 were introduced in order to increase the compatibility of photocatalyst with cement-based mortars. Different materials were prepared and characterized: cement paste with Ti-Zn-Al powder, mortar with cement paste finishing layer containing Ti-Zn-Al LDH and mortar with Ti-Zn-Al coatings. Degradation of methylene blue under UV light was selected as photocatalytic test reaction. The correlation between surface properties and photocatalytic activity was analyzed. The synergetic effect between TiO_2 and Zn-Al-LDH contributes to pronounced photocatalytic performances, improving at the same time mortar performances as an important indicator of the compatibility of photocatalyst with mortar. The photocatalyst introduction procedure influences the active sites surface concentration, giving preference to surface coating method. However, introduction of photocatalyst into the bulk, having lower photocatalytic activity, results in an overall more stable system for prolonged application.
机译:光催化活性TiO_2由于具有从材料表面去除污染物的能力而被广泛应用于建筑材料科学。为了提高光催化剂与水泥砂浆的相容性,引入了新型的基于TiO_2的层状双氢氧化物(LDHs)的无机-无机纳米复合光催化剂。制备并表征了不同的材料:带有Ti-Zn-Al粉的水泥浆,带有包含Ti-Zn-Al LDH的水泥浆涂饰层的砂浆和带有Ti-Zn-Al涂层的砂浆。选择在紫外光下的亚甲基蓝降解作为光催化测试反应。分析了表面性质与光催化活性之间的关系。 TiO_2与Zn-Al-LDH的协同作用有助于显着的光催化性能,同时提高了砂浆性能,这是光催化剂与砂浆相容性的重要指标。光催化剂的引入程序会影响活性部位的表面浓度,因此优先选择表面涂覆方法。然而,将光催化剂引入到本体中,具有较低的光催化活性,导致总体上更稳定的体系以延长应用时间。

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