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March 10, 2021Polymers334 citationsOpen Access

Fouling and Chemical Cleaning of Microfiltration Membranes: A Mini-Review

AGAysegul GulJHJakub HrůzaFYFatma Yalçinkaya

Key Points

  • To review the mechanisms underlying microfiltration membrane fouling and analyze key operational parameters governing chemical cleaning efficiency in water treatment.
  • Reviewed literature on microfiltration fouling drivers, including particle and solute size, membrane microstructure, interfacial interactions, and porosity.
  • Assessed physical and chemical cleaning methods, focusing on the influence of chemical agent concentration, contact time, and process temperature.
  • Fouling severity is strongly governed by membrane porosity, microstructure, and the physicochemical interactions between the membrane, solute, and solvent.
  • Chemical cleaning performance depends on optimizing reagent concentration, cleaning duration, and operating temperature to effectively restore membrane flux.

Abstract

Membrane fouling is one of the main drawbacks encountered during the practical application of membrane separation processes. Cleaning of a membrane is important to reduce fouling and improve membrane performance. Accordingly, an effective cleaning method is currently of crucial importance for membrane separation processes in water treatment. To clean the fouling and improve the overall efficiency of membranes, deep research on the cleaning procedures is needed. So far, physical, chemical, or combination techniques have been used for membrane cleaning. In the current work, we critically reviewed the fouling mechanisms affecting factors of fouling such as the size of particle or solute; membrane microstructure; the interactions between membrane, solute, and solvent; and porosity of the membrane and also examined cleaning methods of microfiltration (MF) membranes such as physical cleaning and chemical cleaning. Herein, we mainly focused on the chemical cleaning process. Factors affecting the chemical cleaning performance, including cleaning time, the concentration of chemical cleaning, and temperature of the cleaning process, were discussed in detail. This review is carried out to enable a better understanding of the membrane cleaning process for an effective membrane separation process.

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Cite This Study

Gul et al. (2021) studied this question.

synapsesocial.com/papers/69dc1717796be608a2b64eb9https://doi.org/10.3390/polym13060846
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