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首页> 外文期刊>Materials Characterization >TiO_2 coatings synthesized by liquid flame spray and low temperature sol-gel technologies on autoclaved aerated concrete for air-purifying purposes
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TiO_2 coatings synthesized by liquid flame spray and low temperature sol-gel technologies on autoclaved aerated concrete for air-purifying purposes

机译:液体火焰喷涂和低温溶胶-凝胶技术在高压灭菌加气混凝土上合成的TiO_2涂料,用于空气净化

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摘要

This article reports for the first time in literature the successful application of two TiO_2 synthesis-coating technologies, i.e. low temperature sol-gel (LTS) and liquid flame spraying (LFS), to develop autoclaved aerated concrete with air-purifying properties. Significant differences in crystal and agglomerate sizes, specific surface areas and crystal phase compositions have been observed in the synthesized photocatalytic coatings. These were, however, not reflected in their respective air purification performance as indicated by toluene removal efficiencies around 60% (TOL inlet concentration of 14 ppm_v 23℃, 50% relative humidity and 3 min gas residence time) for both coating types. The different nano-scale characteristic effects indicate to compensate each other so that the overall photocatalytic activities as observed in our test set-up and conditions do no differ for both synthesis-coating technologies. The toluene elimination rates reported here (approx. 40 mg TOL-m~(-2)-h~(-1)) are significantly higher than that reported in previous research using high temperature sol-gel techniques or commercial TiO_2 embedded in a cementitious matrix. Moreover, LTS and LFS technologies cannot only be easily applied on precast materials during manufacturing, they can also be applied on existing buildings. Based on these promising results and application potential, further research that systematically investigates the photocatalytic effect of different synthesis-coating parameters is highly encouraged to further improve the knowledge about these technologies.
机译:本文首次在文献中首次报道了低温溶胶凝胶(LTS)和液体火焰喷涂(LFS)这两种TiO_2合成涂层技术在成功开发具有空气净化性能的蒸压加气混凝土中的成功应用。在合成的光催化涂层中已经观察到晶体和附聚物尺寸,比表面积和晶相组成的显着差异。然而,这两种涂层类型的甲苯去除率均在60%(TOL入口浓度为14 ppm_v 23℃,相对湿度为50%,气体停留时间为3分钟)附近,这并没有反映在它们各自的空气净化性能中。不同的纳米级特征效应表明相互补偿,因此两种合成涂层技术在我们的测试设置和条件中观察到的总体光催化活性没有差异。此处报道的甲苯消除速率(约40 mg TOL-m〜(-2)-h〜(-1))显着高于先前使用高温溶胶-凝胶技术或嵌入胶结剂中的商用TiO_2进行的研究报告。矩阵。此外,LTS和LFS技术不仅可以轻松地在制造过程中应用于预制材料,还可以应用于现有建筑物。基于这些有希望的结果和应用潜力,强烈鼓励开展进一步的研究,系统地研究不同合成涂层参数的光催化作用,以进一步提高对这些技术的了解。

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