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在 LED 照射下,水热合成 TiO 基复合光催化剂对大肠杆菌的优越消毒效果:环境因素的影响和消毒机制。

Superior disinfection effect of Escherichia coli by hydrothermal synthesized TiO-based composite photocatalyst under LED irradiation: Influence of environmental factors and disinfection mechanism.

机构信息

Graduate School of Life and Environmental Sciences, University of Tsukuba, 1-1-1 Tennoudai, Tsukuba, Ibaraki, 305-8577, Japan.

Research Institute for Environmental Management Technology, National Institute of Advanced Industrial Science and Technology, 16-1 Onogawa, Tsukuba, Ibaraki, 305-8569, Japan.

出版信息

Environ Pollut. 2019 Apr;247:847-856. doi: 10.1016/j.envpol.2019.01.082. Epub 2019 Jan 28.

DOI:10.1016/j.envpol.2019.01.082
PMID:30731310
Abstract

The photocatalytic inactivation of Escherichia coli (E. coli) under light-emitting diode (LED) light irradiation was performed with P/Ag/AgO/AgPO/TiO photocatalyst to investigate the photocatalytic bactericidal activity. Our work showed that this composite photocatalyst possessed remarkable bacterial disinfection ability and could completely inactivate 10 cfu/mL of E. coli within just 40 min under the optimum catalyst loading of 0.5 g/L. The effects of different environmental factors, including light wavelength, light intensity, temperature, solution pH and inorganic ions, on the inactivation efficiency were evaluated. The results showed that bacteria inactivation by P/Ag/AgO/AgPO/TiO was more favorable with blue colored LED irradiation, light intensity at 750 W/m, temperature in the range of 30-37 °C and pH values at natural or slightly alkaline condition. The existence of different inorganic ions under normal environmental level had no significant impact on the bactericidal performance. In addition, during the inactivation process, the morphology changes of E. coli cells were directly observed by scanning electron microscope (SEM) and further proved by the measurement of K leakage from the inactivated E. coli. The results demonstrated that the photocatalytic inactivation caused drastic damage on bacterial cells membrane. Furthermore, the mechanisms of photocatalytic bacterial inactivation were also systemically studied and the results confirmed that the excellent disinfection activity of P/Ag/AgO/AgPO/TiO resulted from the major reactive species: h and ·O from photocatalytic process instead of the leakage of Ag (≤0.085 ± 0.005 mg/L) from photocatalyst. These results indicate that P/Ag/AgO/AgPO/TiO photocatalyst has promising potential for real water sterilization application.

摘要

采用 P/Ag/AgO/AgPO/TiO 光催化剂在发光二极管(LED)光照射下对大肠杆菌(E. coli)进行光催化灭活,以研究光催化杀菌活性。我们的工作表明,这种复合光催化剂具有显著的杀菌能力,在最佳催化剂负载量为 0.5 g/L 下,仅需 40 min 即可完全灭活 10 cfu/mL 的大肠杆菌。评估了不同环境因素(包括波长、光强、温度、溶液 pH 值和无机离子)对灭活效率的影响。结果表明,在蓝色 LED 照射、750 W/m 光强、30-37°C 温度和自然或略碱性条件下,P/Ag/AgO/AgPO/TiO 对细菌的灭活更有利。在正常环境水平下存在不同的无机离子对杀菌性能没有显著影响。此外,在灭活过程中,通过扫描电子显微镜(SEM)直接观察大肠杆菌细胞形态的变化,并通过测量灭活大肠杆菌中 K 的泄漏进一步证实。结果表明,光催化灭活对细菌细胞膜造成了严重的破坏。此外,还系统地研究了光催化细菌灭活的机制,结果证实 P/Ag/AgO/AgPO/TiO 优异的消毒活性来自于主要的活性物质:光催化过程中的 h 和·O,而不是光催化剂中 Ag 的泄漏(≤0.085 ± 0.005 mg/L)。这些结果表明,P/Ag/AgO/AgPO/TiO 光催化剂在实际水消毒应用中具有广阔的应用前景。

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