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June 1, 2026Journal of Water Chemistry and Technology0 citations

An Overview of the Analysis, Distribution, and Treatment of Microplastics in Industrial Wastewater

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AKAmita KhatriMSManju SinghMYMeenu Yadav

Key Points

  • The study aims to address the pollution caused by microplastics in industrial wastewater and presents various treatment strategies.
  • Review of membrane-based filters and bioreactors
  • Discussion of conventional and advanced treatment methods
  • Analysis of reactor design for sustainable solutions
  • Advanced membrane techniques demonstrated improved efficiency in removing microplastics.
  • Hybrid approaches combining various treatment methods showed promise in enhancing removal capacity.
  • Effective strategies like biodegradation and engineered methods were identified as viable solutions.

Abstract

Microplastics (MPs) as a predominant pollutant is a huge trouble to the environment. MPs pose an immense challenge, with the ability to bioaccumulate and ultimately disturb human health, biodiversity, aquatic animals, etc. MPs comprising various toxic organic chemicals, antibiotics, and heavy metals have adverse environmental consequences. MPs in industrial wastewater must be treated with different methods depending on its characteristics. Conventional treatment systems have high operating costs, low biodegradability, and toxicity for industrial wastewater. Advanced techniques encompass various phase-changing processes, such as coagulation–flocculation, flotation, and membrane operations. Among membrane technologies, ultra- (UF), nano- (NF), and microfiltration (MF) are widely used, while dynamic membranes have recently gained attention due to their effectiveness in removing MPs. Additionally, hybrid membrane approaches, like advanced oxidation processes (AOPs), electrochemical processes, and adsorption techniques, can be combined to enhance MPs removal efficiency and mitigate membrane fouling. Some researchers emphasize the utilization of chemical or biological digestion and engineered methods like biodegradation and wet oxidation. This review paper primarily focuses on reactor design and the functionality of various membrane-based filters and bioreactors to develop practical, sustainable membrane technologies that address the challenging issue of MPs pollution in industrial wastewater. The primary objective is to outline the daunting problem of MPs pollution and explore key strategies for addressing it effectively.

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Cite This Study

Khatri et al. (2026) studied this question.

synapsesocial.com/papers/6a1d21ba02fbce91306379f7https://doi.org/10.3103/s1063455x26030045
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