Center of Research Excellence in Desalination & Water Treatment, King Fahd University of Petroleum & Minerals, Dhahran 31261, Saudi Arabia; Center for Environment & Water, King Fahd University of Petroleum & Minerals, Dhahran 31261, Saudi Arabia.
Dept. of Mechanical & Nuclear Engineering, University of Sharjah, Sharjah 27272, United Arab Emirates; Desalination Research Group, University of Sharjah, Sharjah 27272, United Arab Emirates.
Sci Total Environ. 2021 Apr 15;765:142721. doi: 10.1016/j.scitotenv.2020.142721. Epub 2020 Oct 6.
Reverse Osmosis (RO) is becoming increasingly popular for seawater desalination and wastewater reclamation. However, fouling of the membranes adversely impacts the overall process efficiency and economics. To date, several strategies and approaches have been used in RO plants and investigated at the laboratory-scale for their effectiveness in the control of different fouling types. Amid growing concerns and stringent regulations for the conservation of environment, there is an increasing trend to identify technologies that are effective in fouling mitigation as well as friendly to the environment. The present review elaborates on the different types of environment-friendly technologies for membrane fouling control that are currently being used or under investigation. It commences with a brief introduction to the global water crisis and the potential of membrane-based processes in overcoming this problem. This is followed by a section on membrane fouling that briefly describes the major fouling types and their impact on the membrane performance. Section 3 discusses the predominant fouling control/prevention strategies including feedwater pretreatment, membrane and spacer surface modification and membrane cleaning. The currently employed techniques are discussed together with their drawbacks, with some light being shed on the emerging technologies that have the ability to overcome the current limitations. The penultimate section provides a detailed discussion on a variety of eco-friendly/chemical free techniques investigated to control different fouling types. These include both control and prevention strategies, for example, bioflocculation and electromagnetic fields, as well as remediation techniques such as osmotic backwashing and gas purging. In addition, quorum sensing has been specifically discussed for biofouling remediation. The promising findings from different studies are presented followed by a discussion on their drawbacks and limitations. The review concludes with a need for carrying out fundamental studies to develop better understanding of the eco-friendly processes discussed in the penultimate section and their optimization for possible integration into the RO plants.
反渗透(RO)技术在海水淡化和废水回收领域越来越受欢迎。然而,膜污染会严重影响整个过程的效率和经济性。迄今为止,已经有几种策略和方法在 RO 工厂中使用,并在实验室规模上进行了研究,以评估它们在控制不同类型污染方面的有效性。随着人们对环境保护的关注日益增加和法规日益严格,人们越来越倾向于寻找既能有效减轻污染又对环境友好的技术。本综述详细阐述了目前正在使用或正在研究的用于控制膜污染的几种环保技术。本文首先简要介绍了全球水资源危机以及膜基工艺在克服这一问题方面的潜力。接着介绍了膜污染,简要描述了主要的污染类型及其对膜性能的影响。第 3 节讨论了主要的污染控制/预防策略,包括进水预处理、膜和间隔物表面改性以及膜清洗。讨论了目前使用的技术及其缺点,并对一些具有克服当前限制能力的新兴技术进行了探讨。倒数第二节详细讨论了为控制不同污染类型而研究的各种环保/无化学技术。这些技术包括控制和预防策略,例如生物絮凝和电磁场,以及修复技术,如反渗透冲洗和气体吹扫。此外,还专门讨论了群体感应在生物污染修复方面的应用。介绍了不同研究的有前途的发现,然后讨论了它们的缺点和局限性。本文最后总结了需要进行基础研究,以更好地了解倒数第二节中讨论的环保工艺,并对其进行优化,以便可能将其集成到 RO 工厂中。