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March 3, 2026Industrial & Engineering Chemistry Research2 citations

Nanomaterial-Functionalized Tubular Ceramic Membranes: Design, Fabrication, and Prospects for Sustainable Separation

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ZMZunaira MaqsoodWuhan Institute of TechnologyHWHaonan WuDalian University of TechnologyNWNingyuan WangWuhan Institute of Technology

Key Points

  • Improved performance in water purification is achieved through nanomaterial-functionalized ceramic membranes, combining durability and selectivity.
  • Recent developments include innovations in scalable fabrication methods such as extrusion and freeze casting, enhancing industrial applicability.
  • Critical aspects like coating uniformity and long-term stability are highlighted, addressing significant challenges in membrane technology.
  • Insights gained from this review suggest a roadmap for advancing tubular ceramic membrane applications in resource recovery.

Abstract

Nanomaterial-functionalized tubular ceramic membranes have emerged as a new generation of advanced separation platforms that integrate the mechanical robustness and chemical stability of ceramics with the tunable selectivity and multifunctionality of nanomaterials. This review comprehensively summarizes recent advances in their fabrication, surface modification, and performance enhancement, with emphasis on scalable fabrication strategies such as extrusion, freeze casting, and various coating or infiltration techniques. A wide range of nanomaterials─including metal–organic frameworks (MOFs), metal oxides, carbon-based nanostructures, and core–shell composites─have been employed to endow membranes with tailored adsorption, electrostatic, and size-selective transport properties. The review uniquely addresses key gaps in the existing literature, particularly the limited focus on tubular membrane configurations, which are industrially favored due to their superior mechanical integrity and ease of modular integration. A distinct contribution of this review is its structured analysis of performance enhancement, followed by a critical discussion on the paramount challenges of coating uniformity, interfacial adhesion, and long-term stability─aspects often overlooked yet crucial for practical deployment. The review concludes by synthesizing these insights to provide a clear roadmap for developing the next generation of scalable, durable, and sustainable tubular ceramic membranes for water purification and resource recovery.

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Cite This Study

Maqsood et al. (2026) studied this question.

synapsesocial.com/papers/69a75f8cc6e9836116a2b004https://doi.org/10.1021/acs.iecr.5c04344
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