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首页> 外文期刊>Water Science and Technology >Simultaneous photocatalytic oxidation of pharmaceuticals and inactivation of Escherichia coli in wastewater treatment plant effluents with suspended and immobilised TiO _2
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Simultaneous photocatalytic oxidation of pharmaceuticals and inactivation of Escherichia coli in wastewater treatment plant effluents with suspended and immobilised TiO _2

机译:悬浮和固定化TiO _2的废水处理厂废水中药物的同时光催化氧化和大肠杆菌的灭活

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摘要

Simultaneous Escherichia coli inactivation and oxidation of pharmaceuticals in simulated wastewater treatment plant effluents has been investigated using a photocatalytic treatment with TiO _2 in suspension and immobilised onto a fixed-bed reactor. Non-photocatalytic reference experiments of dark adsorption and photolysis showed a higher sensitivity of E. coli towards the chemical composition of water in comparison with the concentration of pharmaceuticals that remains unaffected. Moreover, it must be underlined that the presence of pharmaceuticals (including antibiotics) did not seem to affect the bacterial viability at such low concentrations. Concerning photocatalytic experiments, both suspended and immobilised TiO _2 were able to simultaneously inactivate and oxidise both kinds of pollutants (bacteria and pharmaceuticals). The fixed-bed reactor showed similar activity to that of the slurry without deactivation after several cycles of reuse. That makes TiO _2 photocatalysis a quite interesting technology for the treatment of drinking water supplies or wastewater plant effluents, allowing the removal of emerging contaminants such as pharmaceuticals during the disinfection treatment.
机译:使用悬浮液中的TiO _2并固定在固定床反应器上的光催化处理,研究了模拟废水处理厂废水中药物的同时大肠杆菌失活和氧化。暗吸附和光解的非光催化参考实验表明,与未受影响的药物浓度相比,大肠杆菌对水的化学成分具有更高的敏感性。此外,必须强调的是,在如此低的浓度下,药物(包括抗生素)的存在似乎并未影响细菌的生存能力。关于光催化实验,悬浮和固定的TiO _2均能够同时灭活和氧化两种污染物(细菌和药物)。固定床反应器在多次重复使用后显示出与浆料相似的活性,并且没有失活。这使得TiO _2光催化成为一种用于处理饮用水或废水厂废水的非常有趣的技术,从而可以在消毒处理过程中去除诸如药物之类的新兴污染物。

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