氧化过程和陶瓷膜过滤在深度水处理中的集成:污染物-膜相互作用的综述

Bin Lin , Xinyue Deng , Jiahao Chen , Ze-Xian Low , Zhaoxiang Zhong , Weihong Xing
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引用次数: 0

摘要

膜过滤技术作为一种强大而有效的解决方案出现在全球缓解水资源短缺的努力中,提供了一种可靠的方法来提供清洁和安全的饮用水。然而,它的有效性受到严重的膜污染,特别是在高有机负荷和长时间运行的条件下。将氧化过程与陶瓷膜过滤相结合,为这些挑战提供了有希望的解决方案,利用陶瓷膜对侵略性氧化环境的优异抵抗力。尽管如此,在各种氧化过程中,陶瓷膜与有机污染物之间的复杂相互作用仍然没有得到充分的了解,但它们在污染动力学中是关键的。本文综述了氧化过程与陶瓷膜过滤系统的集成。我们关注陶瓷膜与有机污染物之间分子尺度相互作用的基本机制,这对于制定有效的减少污染的策略至关重要。讨论了综合工艺在深度水处理中的实际应用。我们首先研究了陶瓷膜独特的表面化学及其与有机污染物相互作用的机制。然后我们探讨氧化过程对这些相互作用和污染行为的影响。最后,我们讨论了将这种集成技术扩展到更广泛的水净化和再利用应用中的挑战和未来前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Integration of oxidation processes and ceramic membrane filtration for advanced water treatment: A review of foulant-membrane interactions

Integration of oxidation processes and ceramic membrane filtration for advanced water treatment: A review of foulant-membrane interactions
Membrane filtration technology emerges as a robust and efficient solution in the global effort to alleviate water scarcity, offering a reliable means to deliver clean and safe drinking water. However, its effectiveness is compromised by severe membrane fouling, particularly under conditions of high organic load and prolonged operation. Integrating oxidation processes with ceramic membrane filtration offers promising solutions to these challenges, leveraging the excellent resistance of ceramic membranes to aggressive oxidation environments. Despite this, the complex interactions between ceramic membranes and organic foulants under various oxidation processes remain inadequately understood, yet they are pivotal in fouling dynamics. This review examines the integration of oxidation processes with ceramic membrane filtration systems. We focus on the fundamental mechanisms of molecular-scale interactions between ceramic membranes and organic foulants, which are crucial for developing effective strategies to mitigate fouling. Practical applications of the integrated processes in advanced water treatment are also discussed. We first examine the mechanisms underlying the unique surface chemistry of ceramic membranes and their interactions with organic foulants. We then explore the influence of oxidation processes on these interactions and fouling behaviour. Finally, we discuss the challenges and future prospects for expanding this integrated technology to broader applications in water decontamination and reuse.
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