Application of a triblock copolymer additive modified polyvinylidene fluoride membrane for effective oil/water separation
Author(s) -
Shusu Shen,
K. P. Liu,
Jingjing Yang,
Yan Li,
Ruke Bai,
Xiaoji Zhou
Publication year - 2018
Publication title -
royal society open science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.84
H-Index - 51
ISSN - 2054-5703
DOI - 10.1098/rsos.171979
Subject(s) - polyvinylidene fluoride , membrane , chemical engineering , materials science , copolymer , permeation , emulsion , filtration (mathematics) , membrane fouling , polymer , fluoride , fouling , chromatography , composite material , chemistry , inorganic chemistry , biochemistry , statistics , mathematics , engineering
A hollow fibre membrane was fabricated by blending polyvinylidene fluoride (PVDF) with a triblock copolymer additive polymer that has both hydrophilic and oleophobic surface properties. The novel membrane was characterized and examined for oil/water separation under various system conditions, including different cross-flow rate, feed temperature, trans-membrane pressure, and its rejection and cleaning efficiency, etc. By applying the membrane into the filtration of synthesized oil/water emulsion, the membrane constantly achieved an oil rejection rate of above 99%, with a relatively constant permeate flux varied in the range of 68.9–59.0 l m −2 h −1 . More importantly, the fouling of the used membrane can be easily removed by simple water flushing. The membrane also demonstrated a wide adaptability for different types of real oily wastewater, even at very high feed oil concentration (approx. 115 000 mg l −1 in terms of chemical oxygen demand (COM)). Hence, the novel triblock copolymer additive-modified PVDF membrane can have a great prospect in the continuing effort to expand the engineering application of polymeric membranes for oily wastewater treatment.
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