A Review on Current Development of Membranes for Oil Removal from Wastewaters
Обзор современного развития мембран для удаления нефти из сточных вод
2020-04-07
SCID: 54.1/5zbhjgbt
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ceramic membraneshydrophilic polymeric membranesmembrane foulingmembrane separationoil removal from wastewater
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Abstract (AI)
The current situation with the problems associated with the removal of oil from wastewaters by membranes is being explored. Many types of membranes have been investigated-organic polymers, inorganic or ceramic species and hybrids of the two. Polymeric membranes can be designed to facilitate the passage of oil, but the more successful approach is with hydrophilic types that encourage the passage of water. Ceramic membranes have an advantage here as they are less often irreversibly fouled and give a higher recovery of oil, with a lower flux decline. Furthermore, they can be cleaned up by a simple heating procedure. More attention should be given to understanding the mechanism of fouling so that operating conditions can be optimised to further reduce fouling and further decrease the flux decline, as well as assisting in the design of antifouling membranes. Another obstacle to ceramic membrane use is the high cost of manufacture. Cheaper starting materials such as clays have been surveyed.
Key Findings
1
Ceramic membranes can be regenerated through a relatively simple heating procedure.
2
Ceramic membranes show less irreversible fouling, higher oil recovery, and lower flux decline than many alternatives.
3
Hydrophilic polymeric membranes generally outperform oil-permeable designs by promoting water passage during oil–water separation.
4
Membrane technologies for oil removal from wastewater include organic polymers, inorganic or ceramic membranes, and hybrid materials.
5
Understanding fouling mechanisms is essential for optimizing operation, designing antifouling membranes, and reducing flux decline; high manufacturing cost remains a barrier, motivating investigation of clay-based materials.
Research Object
Membranes used for oil removal from wastewaters, including polymeric, ceramic, and hybrid membranes
Research Subject
Membrane separation performance and fouling in oil-containing wastewater treatment, including oil/water passage, flux decline, cleanability, recovery, and manufacturing-cost constraints
Publication Details
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2020-04-07
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