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MBR 中膜污染控制的高级氧化工艺的机理和策略:膜污染物去除与混合液性能改善。

Mechanisms and Strategies of Advanced Oxidation Processes for Membrane Fouling Control in MBRs: Membrane-Foulant Removal versus Mixed-Liquor Improvement.

机构信息

Key Laboratory of Integrated Regulation and Resources Development on Shallow Lakes, Ministry of Education, College of Environment, Hohai University, 1 Xikang Road, Nanjing 210098, P. R. China.

State Key Laboratory of Pollution Control and Resources Reuse, Shanghai Institute of Pollution Control and Ecological Security, College of Environmental Science and Engineering, Tongji University, Siping Road, Shanghai 200092, P. R. China.

出版信息

Environ Sci Technol. 2024 Jul 2;58(26):11213-11235. doi: 10.1021/acs.est.4c02659. Epub 2024 Jun 17.

Abstract

Membrane bioreactors (MBRs) are well-established and widely utilized technologies with substantial large-scale plants around the world for municipal and industrial wastewater treatment. Despite their widespread adoption, membrane fouling presents a significant impediment to the broader application of MBRs, necessitating ongoing research and development of effective antifouling strategies. As highly promising, efficient, and environmentally friendly chemical methods for water and wastewater treatment, advanced oxidation processes (AOPs) have demonstrated exceptional competence in the degradation of pollutants and inactivation of bacteria in aqueous environments, exhibiting considerable potential in controlling membrane fouling in MBRs through direct membrane foulant removal (MFR) and indirect mixed-liquor improvement (MLI). Recent proliferation of research on AOPs-based antifouling technologies has catalyzed revolutionary advancements in traditional antifouling methods in MBRs, shedding new light on antifouling mechanisms. To keep pace with the rapid evolution of MBRs, there is an urgent need for a comprehensive summary and discussion of the antifouling advances of AOPs in MBRs, particularly with a focus on understanding the realizing pathways of MFR and MLI. In this critical review, we emphasize the superiority and feasibility of implementing AOPs-based antifouling technologies in MBRs. Moreover, we systematically overview antifouling mechanisms and strategies, such as membrane modification and cleaning for MFR, as well as pretreatment and in-situ treatment for MLI, based on specific AOPs including electrochemical oxidation, photocatalysis, Fenton, and ozonation. Furthermore, we provide recommendations for selecting antifouling strategies (MFR or MLI) in MBRs, along with proposed regulatory measures for specific AOPs-based technologies according to the operational conditions and energy consumption of MBRs. Finally, we highlight future research prospects rooted in the existing application challenges of AOPs in MBRs, including low antifouling efficiency, elevated additional costs, production of metal sludge, and potential damage to polymeric membranes. The fundamental insights presented in this review aim to elevate research interest and ignite innovative thinking regarding the design, improvement, and deployment of AOPs-based antifouling approaches in MBRs, thereby advancing the extensive utilization of membrane-separation technology in the field of wastewater treatment.

摘要

膜生物反应器(MBR)是一种成熟且广泛应用的技术,在全球范围内有大量的大型工厂用于城市和工业废水处理。尽管已经广泛采用,但膜污染仍是 MBR 更广泛应用的一个重大障碍,需要不断研究和开发有效的防污策略。作为极具前景、高效且环保的水和废水处理化学方法,高级氧化工艺(AOP)在水中污染物降解和细菌灭活方面表现出了非凡的能力,在通过直接膜污染物去除(MFR)和间接混合液改善(MLI)来控制 MBR 中的膜污染方面具有很大的潜力。基于 AOP 的防污技术的研究最近大量涌现,推动了 MBR 中传统防污方法的革命性发展,为防污机制提供了新的思路。为了跟上 MBR 的快速发展,迫切需要对 AOP 在 MBR 中的防污进展进行全面总结和讨论,特别是要了解 MFR 和 MLI 的实现途径。在这篇重要的综述中,我们强调了在 MBR 中实施基于 AOP 的防污技术的优越性和可行性。此外,我们系统地概述了基于特定 AOP 的防污机制和策略,例如 MFR 的膜改性和清洗,以及 MLI 的预处理和原位处理,这些 AOP 包括电化学氧化、光催化、芬顿和臭氧氧化。此外,我们根据 MBR 的运行条件和能耗,为 MBR 中防污策略(MFR 或 MLI)的选择提供了建议,并为特定的基于 AOP 的技术提出了监管措施建议。最后,我们根据 AOP 在 MBR 中的现有应用挑战,包括低防污效率、增加的额外成本、金属污泥的产生和对聚合物膜的潜在损害,强调了未来的研究前景。本综述提供的基本见解旨在提高研究兴趣,激发创新思维,设计、改进和部署基于 AOP 的 MBR 防污方法,从而推动膜分离技术在废水处理领域的广泛应用。

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