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Electrophoretic Deposition of Titanium Dioxide Thin Films for Photocatalytic Water Purification Systems

机译:用于光催化净水系统的二氧化钛薄膜的电泳沉积

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In this study, electrophoretic deposition (EPD) technique was used to deposit titanium dioxide (TiOsub2/sub) thin films on conducting glass substrates for application in water purification from organic contaminants. Phenol was used as a model pollutant. The EPD suspension related parameters and deposition conditions were first optimized for good quality film deposits. The suspension stability and deposition conditions that result in good adherence of TiOsub2/sub particles to the substrate with homogeneous film coatings, is ethanol with a pH of 3.0, a TiOsub2/sub solid loading of 4.0 wt%, a 0.2 wt% iodine concentration in the solvent and a deposition voltage of 20.0V in a time of 210.0s. The photocatalytic activity of TiOsub2/sub thin films decreases exponentially with the ultraviolet light (UV) illumination time and it is also dependent on film thickness, sintering temperature and the intensity of the UV light. Highest rate of photocatalytic activity is observed at an optimal film thickness of 95.0 ± 2.0µm sintered at 300.0°C. The implications of these results are discussed for design of inexpensive waste water purification systems for light industries before discharge into the ecosystem.
机译:在这项研究中,电泳沉积(EPD)技术用于在导电玻璃基板上沉积二氧化钛(TiO 2 )薄膜,用于从有机污染物中纯化水。苯酚用作模型污染物。首先对EPD悬浮液相关的参数和沉积条件进行了优化,以获得高质量的薄膜沉积物。悬浮稳定性和沉积条件是TiO 2 固体载量,导致TiO 2 颗粒与具有均质膜涂层的基材良好粘附,其pH为3.0的乙醇在210.0s的时间内,溶剂中碘浓度为4.0wt%,碘浓度为0.2wt%,沉积电压为20.0V。 TiO 2 薄膜的光催化活性随紫外光照射时间呈指数下降,并且还取决于膜厚,烧结温度和紫外光强度。在300.0°C下烧结的最佳膜厚为95.0±2.0µm时,观察到最高的光催化活性。在为排放到生态系统中的轻工业设计廉价的废水净化系统时,讨论了这些结果的含义。

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