Department of Environmental Science and Engineering, Indian Institute of Technology (Indian School of Mines), Dhanbad, 826004, India.
Environ Sci Pollut Res Int. 2024 Nov;31(55):63603-63634. doi: 10.1007/s11356-024-35459-0. Epub 2024 Nov 13.
The membrane bioreactor (MBR) process synergistically combines biological treatment with membrane filtration, offering a compact design and enhanced operational flexibility. However, membrane fouling remains a critical bottleneck, limiting its widespread application, particularly in treating high-strength wastewater. Recent advances have demonstrated that integrating MBR systems with auxiliary processes such as adsorption, electrochemical treatments, algal-assisted systems, and others can significantly mitigate fouling and enhance treatment efficacy. This paper critically reviews various MBR hybrid configurations, examining their mechanisms, advantages, and limitations in terms of treatment performance and fouling control, while highlighting their potential to extend conventional MBR's applicability to challenging wastewaters and addressing operational challenges like economic viability and sustainability. Elaborated tables incorporating a wide variety of research studies within the realm of synchronization have been meticulously compiled to generate a comprehensive literature review.
膜生物反应器(MBR)工艺将生物处理与膜过滤协同结合,提供了紧凑的设计和增强的操作灵活性。然而,膜污染仍然是一个关键的瓶颈,限制了其广泛应用,特别是在处理高强度废水方面。最近的进展表明,将 MBR 系统与辅助工艺(如吸附、电化学处理、藻类辅助系统等)集成可以显著减轻污染并提高处理效果。本文批判性地回顾了各种 MBR 混合配置,研究了它们在处理性能和污染控制方面的机制、优势和局限性,同时强调了它们将传统 MBR 的适用性扩展到具有挑战性的废水中的潜力,并解决了经济可行性和可持续性等操作挑战。精心编制了详细的表格,其中包含了同步领域内的大量研究,以生成全面的文献综述。