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February 21, 2026Journal of Water Chemistry and Technology0 citations

Removal of Chromium Ions from Contaminated Water Solutions by Filtration Process Using Inorganic Membrane Developed by Slip Casting Method on Tubular Ceramic Supports

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CKCheikh KadiriFBFerhat Bouzerara

Key Points

  • This study aims to develop an inorganic membrane for chromium ion removal from contaminated water.
  • Prepared inorganic membrane using slip casting technique from local raw materials.
  • Characterized tubular samples using mercury inclusion porosimetry, scanning electron microscopy, and water permeability measurements.
  • Conducted filtration operation on chromium contaminated water to assess retention and charge characteristics.
  • Achieved 82% retention of chromium ions during filtration.
  • Measured mean pore radius of 10 nm and water permeability of 1000 L m–2 h–1 MPa–1.
  • Estimated membrane surface charge at –66.7 mC m−2 indicated strong selective rejection of chromium ions.

Abstract

Inorganic membrane was prepared from local raw materials using slip casting technique. Characterizations of prepared tubular samples have been made by mercury inclusion porosimetry (MIP), scanning electron microscopy (SEM), UV-visible spectrometer, water permeability plant and stream potential measurements. The obtained values are mean pores radius (10 nm), water permeability (1000 L m–2 h–1 MPa–1) and stream potential (–52 mV); these values clearly indicate the possibility of using this inorganic membrane in microfiltration, ultrafiltration and/or pre-nanofiltration processes. Results from filtration operation applied to chromium (Cr(III)) contaminated water: retention R(%) = 82% and estimated surface charge –66.7 mC m−2 show the important capacity of membrane to separate chromium ions from contaminated waters. Donnan equilibrium mechanism between membrane surface charge and solute ions has been proposed to explain the selective rejection behaviour of ions by inorganic membrane.

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Cite This Study

Kadiri et al. (2026) studied this question.

synapsesocial.com/papers/69994bef873532290d0200f0https://doi.org/10.3103/s1063455x26010030
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