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β-silicon nitride membrane with robust inorganic-organic hybrid hydrophobic surface for water-in-oil emulsion separation.

Authors :
Wang, Jun-Wei
Abadikhah, Hamidreza
Wang, Fei-Hong
Yin, Liang-Jun
Xu, Xin
Source :
Ceramics International. Jun2022, Vol. 48 Issue 12, p17589-17595. 7p.
Publication Year :
2022

Abstract

Robust hydrophobic membranes are promising for effective separation of water-in-oil emulsion, which is becoming extremely critical challenge in many sectors, including oil refinery and petrochemical industries. In this paper, robust hydrophobic ceramic membrane was fabricated and successfully applied for the water-in-oil emulsion separation process. First, porous β-silicon nitride (Si 3 N 4) membranes with unique rod-like grains and three-dimensional network structure were fabricated. The preparation procedure was optimized considering the morphological properties, porosity, permeability and mechanical characteristics. Then, the optimized membrane was converted to a hydrophobic structure with water contact angle of 136.1°. The hydrophobic modification was achieved using organosilane pyrolysis coating method, which resulted in the formation of a robust inorganic-organic hybrid hydrophobic coating layer on the membrane structure. The hydrophobic membrane was employed for the separation of water-in-oil emulsion. At a feed pressure of 1 bar, a permeate flow of 80 L/m2 h with a water rejection of 94.3% was obtained. The presented hydrophobic silicon nitride membrane in this study is promising for a range of water-in-oil emulsion separation applications, particularly in harsh conditions. [Display omitted] • β-Si 3 N 4 membrane with three-dimensional network structure were fabricated. • The membrane was converted to a hydrophobic by inorganic-organic hybrid coating. • The coating layer contains covalent internal structure and -CH 3 terminal groups. • The coated membrane was successfully applied in separation of water-in-oil emulsion. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02728842
Volume :
48
Issue :
12
Database :
Academic Search Index
Journal :
Ceramics International
Publication Type :
Academic Journal
Accession number :
156632709
Full Text :
https://doi.org/10.1016/j.ceramint.2022.03.027