An overview of superhydrophobic ceramic membrane surface modification for oil-water separation
Обзор модификации поверхности керамических мембран для разделения нефти и воды с приданием супергидрофобных свойств
2021-03-01
SCID: 54.1/u6fvhpqz
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membrane foulingoil-water separationsuperhydrophobic ceramic membranessuperhydrophobic-superoleophilic substratessurface modification
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Abstract (AI)
The discharge of oily wastewater and offshore oil spills contaminates the biotic and aquatic environment and ultimately result in the destruction of the ecosystem. Recently, the application of ceramic membranes has gained prodigious attention due to its efficiency in oil-water separation process. Ceramic membranes developed from inorganic materials are considered as the most promising technology for the treatment of industrial wastewater. Besides, different types superhydrophobic-superoleophilic substrates are being developed using various substrate materials to tailor its purpose for higher efficiency. Nonetheless, fouling and clogging phenomena restrict the performance of ceramic membrane in oil-water separation. This review emphasizes the recent innovation on superhydrophobic methods for the modification of ceramic membranes for oil-water recovery. It comprises of an overview of the preparation technique of ceramic membrane using various techniques. Moreover, the different types of hydrophobic ceramic membrane modification using chemical agents and consequent effects on oil-water separation were discussed in detail. Furthermore, the technical challenges and issues associated with the applications of superhydrophobic-superoleophilic ceramic membrane for oil-water separation were discussed. Finally, future direction in the research of cost-efficient approach to produce superhydrophobic ceramic membranes for oil-water filtration process is enumerated.
Key Findings
1
Ceramic membranes are identified as a promising technology for treating industrial oily wastewater and separating oil from water.
2
Fouling and clogging are highlighted as major limitations restricting ceramic membrane performance during oil–water separation.
3
Superhydrophobic–superoleophilic surface modifications are reviewed as strategies to improve ceramic membrane performance in oil–water separation.
4
The review covers ceramic membrane fabrication methods and chemical-agent-based hydrophobic modifications, including their effects on separation behavior.
5
The review identifies technical challenges and emphasizes the need for cost-efficient methods to produce superhydrophobic ceramic membranes for oil–water filtration.
Research Object
superhydrophobic ceramic membranes for oil–water separation
Research Subject
surface-modification methods, anti-fouling performance, and oil–water separation efficiency of ceramic membranes
Publication Details
Publication Date
2021-03-01
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