A comprehensive review of RO membrane fouling: Mechanisms, categories, cleaning methods and pretreatment technologies

IF 5.4 Q2 ENGINEERING, ENVIRONMENTAL
Yousef A. Tayeh , Motasem Y.D. Alazaiza , Tharaa M. Alzghoul , Mohammed JK Bashir
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Abstract

As the global water crisis intensifies, reverse osmosis (RO) membranes play a pivotal role in desalination and industrial water treatment. However, membrane fouling significantly hampers their effectiveness, reducing water quality and production rates while increasing operational costs and maintenance demands. This review addresses the critical gaps in understanding the mechanisms of fouling, categorizing it into four distinct types: inorganic scaling, organic fouling, biofouling, and colloidal fouling, each presenting unique challenges to membrane performance. We delve into both external and internal fouling mechanisms, highlighting how contaminants obstruct membranes through different pathways. Additionally, we provide an in-depth evaluation of existing cleaning methodologies, distinguishing between conventional methods and emerging non-conventional techniques such as osmotic backwashing and ultrasonic cleaning. While physical cleaning methods effectively address reversible fouling, chemical treatments remain essential for irreversible fouling, despite their potential risks to membrane integrity. Furthermore, we explore innovative pretreatment technologies that show promise in mitigating fouling and extending membrane lifespan. By synthesizing current knowledge and pinpointing specific areas for future research—particularly in emerging technologies—this review aims to enhance the operational efficiency of RO membranes and contribute to sustainable solutions for the escalating global water crisis.

Abstract Image

反渗透膜污染的机理、分类、清洗方法和预处理技术综述
随着全球水危机的加剧,反渗透(RO)膜在海水淡化和工业水处理中发挥着关键作用。然而,膜污染严重阻碍了其有效性,降低了水质和产量,同时增加了运营成本和维护需求。这篇综述解决了在理解污染机制方面的关键空白,将其分为四种不同的类型:无机结垢、有机污染、生物污染和胶体污染,每一种都对膜的性能提出了独特的挑战。我们深入研究了外部和内部的污染机制,强调污染物如何通过不同的途径阻碍膜。此外,我们对现有的清洗方法进行了深入的评估,区分了传统方法和新兴的非传统技术,如渗透反冲洗和超声波清洗。虽然物理清洗方法可以有效地解决可逆性污染,但化学处理仍然是解决不可逆性污染的关键,尽管它们对膜的完整性有潜在的风险。此外,我们探索创新的预处理技术,有望减轻污染和延长膜的寿命。通过综合现有知识和确定未来研究的具体领域,特别是新兴技术,本综述旨在提高反渗透膜的运行效率,并为不断升级的全球水危机提供可持续的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of hazardous materials advances
Journal of hazardous materials advances Environmental Engineering
CiteScore
4.80
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