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The preparation of TiO_2 nanometer photocatalyst film by a hydrothermal method and its sterilization performance for Giardia lamblia

机译:水热法制备TiO_2纳米光催化剂膜及其对贾第鞭毛虫的杀菌性能

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The photocatalytic property of TiO_2 is utilized to sterilize the Giardia lamblia in an aqueous solution in this study. The TiO_2 colloidal solution used for the film was prepared by the modified hydrothermal method and it was directly coated on a UV-lamp, which was set up using a photoreactor manufactured in our laboratory. The TiO_2 film was very stably attached to the UV-lamp, and it was transparent until 5-time coating. The size of the TiO_2 particle in the film was distributed around 20-30 nm and the film thickness was about 200 nm per 1-time coating. The G. lamblia cell was just partially damaged under UV-irradiation without a TiO_2 photocatalyst, but the dead cell became very small and the dead body finally disappeared with an increase in the intensity of UV-irradiation after 2 h. In addition, under the TiO_2/UV-irradiation system, the sterilized (dead) rate of G. lamblia was very fast. The sterilizing power increased at lower pH in the initial step, but it rather increased at a higher pH in the final step. And the sterilization of G. lamblia was very sensitive to the temperature, and resulted in an increase in the sterilized rate at higher temperatures. On the basis of these experimental observations, it can be concluded that TiO_2 photocatalyst under UV-irradiation could be adopted as one of the sterilization modalities for the G. lamblia.
机译:本研究利用TiO_2的光催化性能对兰氏贾第鞭毛虫进行杀菌。通过改进的水热法制备用于薄膜的TiO_2胶体溶液,并将其直接涂覆在紫外灯上,该紫外灯是使用我们实验室制造的光反应器设置的。 TiO_2薄膜非常稳定地附着在UV灯上,直到5次涂覆才透明。薄膜中TiO_2颗粒的大小分布在20-30 nm左右,每1次涂层的薄膜厚度约为200 nm。在没有TiO_2光催化剂的情况下,兰伯利亚小球菌细胞仅在紫外线照射下受到了部分破坏,但死细胞变得非常小,并且随着2小时后紫外线照射强度的增加,死尸最终消失了。此外,在TiO_2 / UV辐射系统下,兰伯球菌的灭菌(死)速率非常快。在初始步骤中,灭菌能力在较低的pH值下会增加,但在最终步骤中,其灭菌能力会在较高的pH值下增加。而且,羊羔菌的灭菌对温度非常敏感,并导致较高温度下的灭菌速率增加。根据这些实验观察,可以得出结论,紫外线照射下的TiO_2光催化剂可以作为兰伯球菌的灭菌方式之一。

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