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PH-Induced switches of the oil- and water-selectivity of crosslinked polymeric membranes for gravity-driven oil-water separation
Journal article   Peer reviewed

PH-Induced switches of the oil- and water-selectivity of crosslinked polymeric membranes for gravity-driven oil-water separation

Ching-Ting Liu and Ying-Ling Liu
Journal of Materials Chemistry A, Vol.4(35), pp.13543-13548
2016

Abstract

Separation of an oil and water mixture in an energy-saving approach is highly attractive for addressing both environmental and energy issues. To achieve this goal, this work reports a porous membrane (CR-PBz-FbM), which is made of a crosslinked electrospun polybenzoxazine fiber mat and exhibits gravity-driven continuous oil-water separation and pH-induced switches of oil- and water-selectivity. The membrane shows a toluene permeation flux of 21750 L m -2 h -1 for immiscible oil-water separation, and a water permeation flux of 14 950 L m -2 h -1 after it has been turned from oil-selective to water-selective. The membrane still exhibits switching ability on the oil- and water-selectivity for separation of oil-water emulsions. Moreover, the CR-PBz-FbM membrane is mechanically robust and has high chemical stability. The attractive properties of the CR-PBz-FbM membrane lead to significant progress in oil-water separation from both environmental-protection and energy-saving viewpoints.

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