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Review on low- and high-frequency sonolytic, sonophotolytic and sonophotochemical processes for inactivating pathogenic microorganisms in aqueous media

机译:低频和高频声分解,声光分解和声光化学方法灭活水性介质中的病原微生物

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Ultraviolet and ultrasound-based advanced oxidation processes (AOPs) are gaining considerable research attention for water treatment and disinfection. Compared to low-frequency ultrasound (LFUS, <100 kHz), high-frequency ultrasound (HFUS, >100 kHz and MHz range) for water disinfection remains much less investigated. The present review aims at surveying and discussing literature data on microbial inactivation in non-food aqueous media using HFUS alone and with AOPs. More specifically, the review covers sonophotolytic (US/UV) processes under sequential and simultaneous modes as well as sonophotochemical processes, where both low and high frequencies were applied. Addressing a state-of-the-art biomedical research, we have attempted to provide more insight into mechanical and sonochemical mechanisms of inactivation under ultrasonic exposure. Sonoporation, intracellular generation of reactive oxygen species (ROS), energy stimulation of aquaporins to deliver ROS, and injection of extracellular ROS into sonoporated cells have all been identified as primary ways of inactivation. Application of ultrasound in the 0.2-2 MHz range and mercury-free light sources to support the Minamata Convention on Mercury is an ongoing challenge for effective elimination of microbial pathogens from water and wastewater through sonophotolytic and sonophotochemical AOPs. (C) 2019 Elsevier Ltd. All rights reserved.
机译:紫外线和基于超声波的高级氧化工艺(AOP)在水处理和消毒方面获得了相当多的研究关注。与低频超声(LFUS,<100 kHz)相比,用于水消毒的高频超声(HFUS,> 100 kHz和MHz范围)仍然研究较少。本综述旨在调查和讨论有关单独使用HFUS和AOP的非食品水性介质中微生物灭活的文献数据。更具体地说,该综述涵盖了连续和同时模式下的声光分解(US / UV)过程以及应用了低频和高频的声光化学过程。针对最先进的生物医学研究,我们试图提供更多有关超声暴露下失活的机械和声化学机制的见解。超声操作,细胞内活性氧(ROS)的产生,水通道蛋白的能量刺激以递送ROS以及将细胞外ROS注入超声穿孔细胞均已被认为是灭活的主要方法。为了通过声光分解和声光化学AOP有效消除水和废水中的微生物病原体,应用0.2-2 MHz范围的超声波和无汞光源来支持《水am水银公约》是一项持续的挑战。 (C)2019 Elsevier Ltd.保留所有权利。

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