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Effects of TiO2 nanostructure and operating parameters on optimized water disinfection processes: A comparative study

机译:TiO2纳米结构和操作参数对优化水消毒过程的影响:对比研究

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This paper reports the performance of bacterial disinfection using 3D dendritic titanium dioxide with nanoribbon structures (3DD-TiO2), which is newly developed by the researchers. Characterization of 3DD-TiO2 using SEM and TEM shows that the diameter of nanoribbons is nearly 18 nm only, resulting in an aspect ratio of more than 50. The hierarchical porous structure of the 3DD-TiO2 would greatly favor the improvement of photocatalytic activity via enlarging the specific surface area. In comparison with the same-sized microspheres and commercial Degussa P25, which are both spherically structured, 3DD-TiO2 displays a consistently better performance under the tested environment. Without UV illumination, the removal efficiency of Escherichia coli by 3DD-TiO2 is 6.4% and 8.7% higher than that of microspheres and P25, respectively. Under UV radiation, the disinfection kinetic constant k of the disinfection reaction using 3DD-TiO2 is 23.2% and 33.9% higher than that of using microspheres and P25, respectively. A series of optimization studies have been carried out to identify the optimum operating parameters of a photocatalytic process using 3DD-TiO2. The results tend to suggest: (a) optimum catalyst concentration is around 100mg/L; (b) the optimum temperature for bacteria inactivation ranges between 10 °C and 20 °C; (c) presence of humic acid and anions (SO_4~(2-)) exhibits an inhibitory effect on water disinfection process; and (d) cations (Ca~(2+)) enhance the disinfection rate. These optimum operating parameters could be directly referenced for full-scale applications in future.
机译:本文报道了研究人员新开发的具有纳米带结构的3D树状二氧化钛(3DD-TiO2)的细菌消毒性能。使用SEM和TEM表征3DD-TiO2的结果表明,纳米带的直径仅接近18 nm,长径比大于50。3DD-TiO2的层级多孔结构将极大地促进光催化活性的提高。比表面积。与相同大小的微球和商业化的Degussa P25均为球形结构相比,在测试环境下3DD-TiO2表现出始终如一的更好性能。在没有紫外线照射的情况下,3DD-TiO2去除大肠杆菌的效率分别比微球和P25高6.4%和8.7%。在紫外线辐射下,使用3DD-TiO2的消毒反应的消毒动力学常数k分别比使用微球和P25的消毒动力学常数k高23.2%和33.9%。为了确定使用3DD-TiO2的光催化过程的最佳操作参数,已进行了一系列优化研究。结果倾向于表明:(a)最佳催化剂浓度约为100mg / L; (b)细菌灭活的最佳温度为10°C至20°C; (c)腐殖酸和阴离子(SO_4〜(2-))的存在对水消毒过程具有抑制作用; (d)阳离子(Ca〜(2+))提高了消毒率。这些最佳工作参数可在将来直接用于全面应用。

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