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Characterization of nanoparticles released during construction of photocatalytic pavements using engineered nanoparticles

机译:使用工程纳米颗粒表征光催化路面施工过程中释放的纳米颗粒

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With the increasing use of titanium dioxide (TiO2) nanoparticles in self-cleaning materials such as photocatalytic concrete pavements, the release of nanoparticles into the environment is inevitable. Nanoparticle concentration, particle size, surface area, elemental composition, and surface morphology are pertinent to determine the associated risks. In this study, the potential of exposure to synthetic nanoparticles released during construction activities for application of photocatalytic pavements was measured during laboratory-simulated construction activities of photocatalytic mortar overlays and in an actual field application of photocatalytic spray coat. A scanning mobility particle sizer system measured the size distribution of nanoparticles released during laboratory and field activities. Since incidental nanoparticles are released during construction activities, nanoparticle emissions were compared to those from similar activities without nano-TiO2. Nanoparticle counts and size distribution suggest that synthetic nanoparticles are released during application of photocatalytic pavements. In order to identify the nanoparticle source, nanoparticles were also collected for offline characterization using transmission electron microscopy. However, positive identification of synthetic nanoparticles was not possible due to difficulties in obtaining high-resolution images. As a result, further research is recommended to identify nanoparticle composition and sources.
机译:随着二氧化钛(TiO 2 )纳米颗粒在自清洁材料(例如光催化混凝土路面)中的使用增加,不可避免地将纳米颗粒释放到环境中。纳米颗粒的浓度,粒径,表面积,元素组成和表面形态与确定相关风险有关。在这项研究中,在实验室模拟的光催化砂浆覆盖层的建筑活动期间以及在光催化喷涂层的实际应用中,测量了在施工活动期间释放的合成纳米颗粒在光催化路面施工中的暴露潜力。扫描淌度粒度仪系统测量了实验室和野外活动期间释放的纳米颗粒的尺寸分布。由于在施工过程中会释放附带的纳米颗粒,因此将纳米颗粒的排放与没有纳米TiO 2 的类似行为进行了比较。纳米颗粒的数量和大小分布表明,合成纳米颗粒在光催化铺装过程中会释放出来。为了鉴定纳米颗粒来源,还收集了纳米颗粒用于使用透射电子显微镜离线表征。但是,由于难以获得高分辨率图像,因此无法对合成纳米颗粒进行正面鉴定。因此,建议进一步研究以鉴定纳米颗粒的组成和来源。

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