Preparation of low‐cost peridotite ceramic microfiltration membrane for treating industrial wastewater

Author:

Harrati Achraf1ORCID,Arkame Youssef1,Adlane Sanaa2,Essate Ahlam2,Achiou Brahim23ORCID,El Bouari Abdeslam1ORCID,Aaddane Abdelleh2,Alami Younssi Saad2,Sadik Chaouki1

Affiliation:

1. Laboratory of Physical Chemistry, Materials and Catalysis (LCPMC), Geomaterials and Materials for Energy Team, Faculty of Sciences Ben M'Sick Hassan II University of Casablanca Casablanca Morocco

2. Laboratory of Materials, Membranes and Environment, Faculty of Sciences and Technologies of Mohammedia Hassan II University of Casablanca Casablanca Morocco

3. Institute of Science, Technology & Innovation (IST&I) Mohammed VI Polytechnic University (UM6P) Ben Guerir Morocco

Abstract

AbstractThe aim of this work is to fabricate a low‐cost ceramic microfiltration (MF) membrane made from a new geomaterial named peridotite. The membrane was prepared by uniaxial pressing and followed by sintering. The effect of sintering temperature, in the range of 1100–1225°C, on the permeability, porosity, mechanical strength, and pore size was investigated. The optimized MF membrane sintered at 1200°C exhibits 1198.9 L h−1 m−2 bar−1 of permeability, 36.41% of porosity, 12.9 MPa of mechanical strength, and 1.56 µm of pore size. The prepared membrane was used for the MF treatment of dairy wastewater. It was found that the membrane is able to remove 88.56% and 69.54% of turbidity and chemical oxygen demand, respectively. Furthermore, the cost of the peridotite membrane was estimated to be $10.3 m−2.

Publisher

Wiley

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