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Photocatalytic treatment techniques using titanium dioxide nanoparticles for antibiotic removal from water

机译:使用二氧化钛纳米粒子的光催化处理技术从水中去除抗生素

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摘要

The increasing of emerging micropollutants presence in drinking water sources have brought new challenges to existing water treatment systems (WTS), highlighting the need of innovative and low-cost technological solutions. Recent advances in nanotechnology enable highly efficient and multifunctional processes, providing sustainable alternatives to current water treatment practices. This chapter presents the results of several pilot-scale studies developed to assess the effects of TiO2 nanoparticles on antibiotic removal efficiency, using different low-cost photocatalytic reactors. The characterization of its photo-oxidation kinetics also performed considering different test scenarios in order to assess the effects of the major abiotic parameters on oxytetracycline (OTC) removal efficiency, which achieved the maximum values of 96% and 98% using the photocatalysis with TiO? and the photocatalytic filtration, respectively. It must be highlighted the surprising regeneration ability showed by the photocatalytic porous medium, developed at a lab-scale, which can completely recover its oxidative properties after few hours of simple sun exposure.
机译:饮用水源中新出现的微量污染物的增加,给现有的水处理系统(WTS)带来了新的挑战,突出了对创新和低成本技术解决方案的需求。纳米技术的最新进展实现了高效和多功能的过程,为当前的水处理实践提供了可持续的替代方法。本章介绍了使用不同的低成本光催化反应器进行的几项中试研究的结果,这些研究旨在评估TiO2纳米颗粒对抗生素去除效率的影响。为了评估主要的非生物参数对土霉素的去除效率的影响,还考虑了不同的测试场景,对其光氧化动力学进行了表征,使用TiO2进行光催化可达到96%和98%的最大值。和光催化过滤。必须强调的是,在实验室规模开发的光催化多孔介质显示出令人惊讶的再生能力,在简单的日晒几小时后即可完全恢复其氧化性能。

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