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Characterization of photocatalytic paints: a relationship between the photocatalytic properties - release of nanoparticles and volatile organic compounds

机译:光催化涂料的表征:光催化性能与纳米颗粒的释放与挥发性有机化合物的关系

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摘要

Photocatalytic TiO2 appears to be a promising material to eliminate many air pollutants such as nitrogen oxides (NO_x) and volatile organic compounds (VOCs). However, a number of questions remain unanswered prior to its full optimization. Some photocatalytic materials are already commercialized but their photocatalytic effects are questionable. In the present study, characterization of two paints for indoor and outdoor applications, one containing micro-sized titanium dioxide TiO2) particles and the other based on nano-TiO2, is undertaken in order to understand their environmental impact during the use phase. The photocatalytic efficiency of the paints is determined before and after climatic ageing. The degradation of the paints induced by their ageing is characterized in parallel. Powders, dispersions and paints applied on a substrate are investigated to characterize the state of the nanoparticles (NPs) as a function of their surrounding media. The abrasion of the photocatalytic materials indicates that the presence of TiO2 (NPs) enhances the organic matrix degradation of the paints due to a greater photocatalytic effect. The online and continuous measurements by PTR-ToF-MS indicate that the degradation of the organic matrix leads to release of organic compounds (formaldehyde, methanol, acetaldehyde and formic acid) into the air which suggests that monitoring only the removal of VOCs (in this case xylene) is not enough to make a proper evaluation of the effectiveness of photocatalytic paints towards VOC elimination. These VOCs emerge exclusively from the degradation of the organic matrix as much lower VOC emissions were measured in the case of the aged paint which exhibits a lower amount of organic components in the matrix. This study links the morphological observations, chemical determination, structural parameters and photocatalytic properties of the paints for future optimization of safer-by-design photocatalytic paints.
机译:光催化TiO2似乎是一种有希望的材料,用于消除许多空气污染物如氮氧化物(NO_X)和挥发性有机化合物(VOC)。但是,在完全优化之前,许多问题仍未得到答复。一些光催化材料已经商业化,但它们的光催化效果是可疑的。在本研究中,对室内和室外应用的两种涂料的表征,一种含有微尺寸的二氧化钛TiO 2)颗粒和基于纳米TiO2的另一个涂料,以便在使用期间了解它们的环境影响。涂料的光催化效率在气候老化之前和之后确定。其老化诱导的涂料的降解并联特征。研究施加在基材上的粉末,分散体和涂料,以表征作为其周围介质的函数的纳米颗粒(NPS)的状态。光催化材料的磨损表明,由于较大的光催化效应,TiO 2(NPS)的存在增强了涂料的有机基质劣化。 PTR-TOF-MS的在线和连续测量表明有机基质的降解导致释放有机化合物(甲醛,甲醇,乙醛和甲酸)进入空气中,这表明仅监测VOC的去除(在此壳二甲苯)是不足以对光催化涂料对VOC消除的有效性进行适当的评价。这些VOC专门从有机基质的降解中出现,在老化涂料的情况下测量了在基质中表现出较低量的有机组分的变老涂料的情况下测量了远低的VOC排放。本研究将涂料的形态学观察,化学测定,结构参数和光催化性能联系起来进行更安全的光催化涂料的未来优化。

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  • 来源
    《Environmental Science: Nano》 |2017年第10期|共12页
  • 作者单位

    Universite Grenoble Alpes CEA Laboratoire en Nanosecurite et Nanocaracterisation 17 Rue des Martyrs F-38054 Grenoble Cedex 9 France;

    Universite Grenoble Alpes CEA Laboratoire en Nanosecurite et Nanocaracterisation 17 Rue des Martyrs F-38054 Grenoble Cedex 9 France;

    Universite Grenoble Alpes CEA Laboratoire en Nanosecurite et Nanocaracterisation 17 Rue des Martyrs F-38054 Grenoble Cedex 9 France;

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  • 正文语种 eng
  • 中图分类 环境科学、安全科学;
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