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Titania-coated glass microballoons and cenospheres for environmental applications

机译:涂有二氧化钛的玻璃微球和空心球

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摘要

Functional titania coatings on glass microballoons (GMBs) and cenospheres have a broad range of potential environmental applications, primarily in purifi_cation of drinking water and treatment of industrial wastewater. The heterogeneous photocatalytic capabilities of titania films and particles have been extensively examined in the literature as effective alternatives to current technologies. Although the chemistry of titania films for photocatalysis has been studied, titania-coated GMBs have not yet been extensively considered and the materials sci_ence aspects of the titania-GMB and titania-cenosphere systems have not been addressed. We have examined the microstructure, morphology, and mechanical properties of titania coatings on both cenospheres and commercially produced GMBs. Scanning electron microscopy was used to examine coating coverage and defects. Energy dispersive X-ray spectroscopy and Raman spectroscopy were used for element and phase identification, respectively. Hardness and modulus measurements of the titania coatings and the GMB and cenosphere materials were done by nanoindentation. Additionally, the photocatalytic activity of the titania-coated GMB system was tested on Procion Red dye using two different types of mixing, a magnetic stirrer and an aeration bubbler apparatus. The titania coatings showed good coverage and retention except in the case of magnetic stirring, where significant coating loss was observed.
机译:玻璃微气球(GMBs)和空心球上的功能性二氧化钛涂层具有广泛的潜在环境应用,主要用于饮用水的净化和工业废水的处理。二氧化钛薄膜和颗粒的非均相光催化能力已在文献中进行了广泛研究,以作为当前技术的有效替代方案。尽管已经研究了用于光催化的二氧化钛薄膜的化学性质,但尚未广泛考虑涂覆二氧化钛的GMB,并且尚未解决二氧化钛-GMB和二氧化钛-脑液层系统的材料科学问题。我们已经检查了在空心层和商业生产的GMB上二氧化钛涂层的微观结构,形态和机械性能。扫描电子显微镜用于检查涂层的覆盖率和缺陷。能量色散X射线光谱和拉曼光谱分别用于元素鉴定和相鉴定。二氧化钛涂层以及GMB和空心层材料的硬度和模量测量是通过纳米压痕法完成的。另外,使用两种不同类型的混合,磁力搅拌器和曝气鼓泡器设备,在Procion Red染料上测试了涂覆二氧化钛的GMB系统的光催化活性。除了在磁力搅拌的情况下观察到明显的涂层损失之外,二氧化钛涂层显示出良好的覆盖和保留。

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