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Photocatalytic and Pozzolanic Properties of Nano-SiO2/Al2O3-TiO2 Powder for Functional Mortar

机译:纳米SiO2 / Al2O3-TiO2粉体的功能化砂浆的光催化和火山灰性能

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摘要

The present study intended to find a way to use TiO2, one of the most widely used photocatalysts, as a construction material. To that end, nano-SiO2/Al2O3-TiO2 powder (NTCP) was synthesized by coating SiO2 and Al2O3 support materials with TiO2. The NTCP was anatase phase spherical particles, specific surface areas were 319 m2/g and 267 m2/g for the SiO2-TiO2 powder and Al2O3-TiO2 powder. UV absorption test results showed the developed NTCP had a light absorption peak at wavelengths of 380 nm or below, and its absorbance was much larger than that of commercial TiO2. The NTCP formed smaller pores on the surface than commercial TiO2. As a result, the flow of the mortar decreased as the adsorption strength increased and combined a large number of water molecules. In addition, the Pozzolanic reaction by SiO2 and Al2O3 used as support materials produced many calcium silicate hydrate (C-S-H) and calcium aluminate hydrate (C-A-H). This has shown an increased strength of mortar mixed with the NTCP by promoting a nucleation effect and reducing the filling effect and the number of harmful holes in the mortar.
机译:本研究旨在找到一种使用最广泛使用的光催化剂之一的TiO2作为建筑材料的方法。为此,通过用TiO 2涂覆SiO 2和Al 2 O 3载体材料来合成纳米SiO 2 / Al 2 O 3 -TiO 2粉末(NTCP)。 NTCP为锐钛矿相球形颗粒,SiO2-TiO2和Al2O3-TiO2粉末的比表面积分别为319 m 2 / g和267 m 2 / g。紫外吸收测试结果表明,所开发的NTCP在380 nm或更低的波长处具有光吸收峰,并且其吸收率比市售TiO2大得多。与商用TiO2相比,NTCP在表面形成了更小的孔。结果,随着吸附强度的增加,砂浆的流量减少,并结合了大量的水分子。此外,SiO 2 和Al 2 O 3 作为载体材料的火山灰反应产生了许多硅酸钙水合物(CSH)和铝酸钙水合物(CAH)。这显示出通过促进成核作用并减少填充效果和砂浆中有害孔的数量,提高了砂浆与NTCP混合的强度。

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