Fabrication and characterization of a cost-effective ceramic microfiltration membrane by utilizing local raw materials

In this study, we reported the preparation of a cylindrical ceramic membrane (diameter of 8 cm and length of 10 cm) by the slip-casting method from clay, kaolin, starch, and palm kernel shell ash. The membrane was obtained by sintering the fabricated membrane filter at 900 °C for 5 h. The membrane was characterized by X-ray fluorescence, X-ray diffraction, Fourier-transform infrared spectroscopy, scanning electron microscopy, porosity, and water absorption. The average pore size, apparent porosity, and water absorption of the membrane were obtained as 6.60 μm, 60%, and 37.8%, respectively, along with density, flow rate, and thickness. The prepared membrane showed excellent chemical resistance. The overall fabrication cost of the membrane was estimated at $73. These results indicate that the raw materials used in this work could serve as alternatives to microfiltration membranes for various chemical and biochemical processes.

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Publication Details

Journal
Advances in Applied Ceramics Structural Functional and Bioceramics
Published
2026-09-30
DOI
https://doi.org/10.1177/17436753261492391
Primary Topic
Membrane Separation Technologies
Type
article
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article

Fabrication and characterization of a cost-effective ceramic microfiltration membrane by utilizing local raw materials

Godfred Ohemeng‐Boahen, Martina Francisca Baidoo, Helen Michelle Korkor Essandoh, Augustine Owusu Sekyere
Advances in Applied Ceramics Structural Functional and Bioceramics
Membrane Separation Technologies
article

Fabrication and characterization of a cost-effective ceramic microfiltration membrane by utilizing local raw materials

Godfred Ohemeng‐Boahen, Martina Francisca Baidoo, Helen Michelle Korkor Essandoh, Augustine Owusu Sekyere
article en

Abstract

In this study, we reported the preparation of a cylindrical ceramic membrane (diameter of 8 cm and length of 10 cm) by the slip-casting method from clay, kaolin, starch, and palm kernel shell ash. The membrane was obtained by sintering the fabricated membrane filter at 900 °C for 5 h. The membrane was characterized by X-ray fluorescence, X-ray diffraction, Fourier-transform infrared spectroscopy, scanning electron microscopy, porosity, and water absorption. The average pore size, apparent porosity, and water absorption of the membrane were obtained as 6.60 μm, 60%, and 37.8%, respectively, along with density, flow rate, and thickness. The prepared membrane showed excellent chemical resistance. The overall fabrication cost of the membrane was estimated at $73. These results indicate that the raw materials used in this work could serve as alternatives to microfiltration membranes for various chemical and biochemical processes.

Advances in Applied Ceramics Structural Functional and Bioceramics
Kwame Nkrumah University of Science and Technology (GH)
Openalex Percentile: Top 22%
Membrane Separation Technologies
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