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Durable photocatalytic thin coatings for road applications

机译:用于道路应用的耐用的光催化薄涂层

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摘要

In this study, 6 different coatings have been developed as photocatalytic coatings based on TiO2, which can be applied to concrete for road applications. The goal of these coatings is to degrade pollutants such as nitrogen oxides and volatile organic compounds emitted by road transport. The coatings are synthesized by sol-gel process in organic or water solvent or by a functionalization technique with hydroxybenzoic acid on commercial TiO2 nanoparticles (P25). These suspensions are deposited by dip-coating or spray-coating on three different concrete substrates: pavement blocks, brushed or exposed aggregates road concrete. For each process, particular attention has been paid to the development of TiO2 synthesis that will be easily produced on a larger scale. The samples are characterized with photocatalytic test on NOx degradation, mechanical resistance test and resistance to freeze-thaw cycles in presence of de-icing salts. Except from the samples resulting from the sol-gel organic route, all other samples show a NOx degradation between 10 and 45%. From resistance point of view, the best coating is the TiO2 P25/E coating synthesized by functionalization of P25 nanoparticles. Results highlight that anatase TiO2 is well present at the surface of the sample and an optimal TiO2 loading exists for this coating. The TiO2 P25/E coating shows promising properties for road applications. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本研究中,已成为基于TiO2的光催化涂层的6种不同的涂层,其可以应用于用于道路应用的混凝土。这些涂层的目标是降低污染物,例如公路运输发出的氮氧化物和挥发性有机化合物。通过在有机或水溶剂中或通过在商业TiO2纳米颗粒上用羟基苯甲酸的官能化技术在有机或水溶剂中或通过官能化技术合成涂层(P25)。这些悬浮液通过三种不同的混凝土基板上的浸涂或喷涂涂层沉积:路面块,刷牙或暴露的聚集体道路混凝土。对于每个过程,已经特别注意了TiO2合成的发展,这将在更大的规模上容易地生产。样品的特征在于在脱冰盐存在下对NOx降解,机械性阻抗试验和抗冻融循环的光催化试验。除了由溶胶 - 凝胶有机途径产生的样品外,所有其他样品显示出10至45%之间的NOx降解。从电阻的角度来看,最佳涂层是通过P25纳米颗粒的官能化合成的TiO 2 P25 / E涂层。结果突出显示锐钛矿TiO2在样品表面良好存在,并且存在该涂层的最佳TiO2负载。 TiO2 P25 / E涂层显示道路应用的有希望的性能。 (c)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Construction and Building Materials》 |2019年第10期|422-434|共13页
  • 作者单位

    Univ Liege Dept Chem Engn Nanomat Catalysis & Electrochem B6a Quartier Agora Allee Six Aout 11 B-4000 Liege Belgium;

    Univ Liege Dept Chem Engn Nanomat Catalysis & Electrochem B6a Quartier Agora Allee Six Aout 11 B-4000 Liege Belgium;

    Univ Liege Dept Chem Engn Nanomat Catalysis & Electrochem B6a Quartier Agora Allee Six Aout 11 B-4000 Liege Belgium;

    Univ Liege Dept ArGEnCo Urban & Environm Engn B52 Quartier Polytech Allee Decouverte 9 B-4000 Liege Belgium;

    Belgian Rd Res Ctr BRRC Woluwedal 42 B-1200 Brussels Belgium;

    Univ Liege Dept Chem Engn Nanomat Catalysis & Electrochem B6a Quartier Agora Allee Six Aout 11 B-4000 Liege Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sol-gel process; TiO2 film; Photocatalytic concrete; NOx reduction; Road application;

    机译:溶胶 - 凝胶工艺;TiO2薄膜;光催化混凝土;NOx减少;道路应用;

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