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July 14, 2025Materials24 citationsOpen Access

A Critical Review of Membrane Distillation Using Ceramic Membranes: Advances, Opportunities and Challenges

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FAFrancesca AlessandroFMFrancesca Macedonio

Key Points

  • Membrane distillation is a process for effective water purification and desalination, utilizing ceramic membranes for enhanced performance.
  • Ceramic membranes offer advantages such as high thermal stability and chemical resistance, outperforming traditional polymeric membranes.
  • Challenges for ceramic membranes include high fabrication costs and limited scalability for large-scale applications in wastewater treatment.
  • Surface modification techniques present new opportunities for improving the functionality of ceramic membranes in advanced distillation configurations.

Abstract

Membrane distillation (MD) has attracted increasing attention as a thermally driven separation process for water purification, desalination, and wastewater treatment. Its primary advantages include high rejection of non-volatile solutes, compatibility with low-grade or waste heat sources, and operation at ambient pressure. Despite these benefits, large-scale implementation remains limited due to the lack of membrane materials capable of withstanding harsh operating conditions and maintaining their hydrophobic character. Polymeric membranes have traditionally been used in MD applications; however, their limited thermal and chemical stability compromises long-term performance and reliability. In contrast, ceramic membranes are emerging as a promising alternative, offering superior mechanical strength, chemical resistance, and thermal stability. Nevertheless, their broader adoption in MD is hindered by several challenges, including high thermal conductivity, surface wettability, high fabrication costs, and limited scalability. This review provides a critical assessment of current developments, key opportunities, and ongoing challenges associated with the use of ceramic membranes in MD. Particular emphasis is placed on advances in surface modification techniques and the emerging applications in advanced MD configurations.

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Cite This Study

Alessandro et al. (2025) studied this question.

synapsesocial.com/papers/689a02afe6551bb0af8cc1c6https://doi.org/10.3390/ma18143296
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