首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Improving UV seawater disinfection with immobilized TiO2: Study of the viability of photocatalysis (UV_(254)/TiO2) as seawater disinfection technology
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Improving UV seawater disinfection with immobilized TiO2: Study of the viability of photocatalysis (UV_(254)/TiO2) as seawater disinfection technology

机译:用固定化TiO2改善UV海水消毒:作为海水消毒技术的光催化活性(UV_(254)/ TiO2)的可行性研究

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摘要

Industries located in coastal areas and maritime transport: are economic activities that use large amounts of seawater. In most cases, this water requires disinfection treatment to avoid fouling problems in industrial facilities or to prevent environmental impacts after used seawater is released. This study proposes the photocatalysis with immobilized TiO2 as a disinfection treatment for seawater and evaluate its efficacy by comparing with UV254 radiation treatment. The experiments were carried out employing artificial seawater and using an annular UV reactor in the laboratory scale tests. Two species of marine bacteria were used as microbial indicators of the treatment efficacy: Alteromonas sp and Corynebacterium stationis. The photocatalytic treatment had faster disinfection kinetics than that using UV254 light for both bacteria species, being necessary between 30 and 33% less UV dose to achieve the same level of disinfection. The catalyst used for photocatalytic treatment showed a progressive decay of activity until its complete inactivation after 215 h of treatment, due to factors such as fouling or catalyst loss.
机译:沿海地区的产业和海上运输:是使用大量海水的经济活动。在大多数情况下,此水需要进行消毒处理,以避免工业设施中的结垢问题或防止使用过的海水释放后对环境的影响。这项研究提出了固定化TiO2的光催化作为海水消毒的方法,并通过与UV254辐射处理的比较来评估其功效。在实验室规模的测试中,使用人造海水并使用环形UV反应器进行了实验。两种海洋细菌被用作治疗效果的微生物指标:Alteromonas sp和Corynebacterium stationis。对于两种细菌而言,光催化处理的杀菌动力学均比使用UV254光快,因此要达到相同的消毒水平,所需的紫外线剂量要少30%至33%。由于结垢或催化剂损失等因素,用于光催化处理的催化剂在经过215小时的处理后直至其完全失活之前,其活性逐渐下降。

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