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Hydrophilic nanofibrous composite membrane prepared by melt-blending extrusion for effective separation of oil/water emulsion

机译:熔融共混挤出制备亲水性纳米纤维复合膜,有效分离油/水乳液

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A polyethylene-co-polyvinyl alcohol (EVOH) nanofiber membrane was prepared by the melt blending extrusion and high-speed airflow deposition process. Then nano cellulose crystal/polyethylene-co-polyvinyl alcohol (NCC/EVOH) nanofiber composite membranes were obtained via coating and depositing the barrier layer on the surface of the nanofiber membrane. The basic structural properties and oil–water separation performance of the composite membranes were investigated. The results show that the deposited NCC formed a dense layer in the surface of the nanofiber membrane with smaller pore size, and had no effect on the continuous pore structure of the membrane. With increasing NCC content, the composite membranes showed an increase of tensile strength (from 9.969 MPa to 12.991 MPa) and a decrease of contact angle, pore size, and water flux. The water flux and the filtration flux of the composite membrane can be improved within a certain range by increasing the operating pressure. The NCC/EVOH nanofiber composite membranes were successfully applied for the separation of oil–water emulsion and exhibited a higher rejection rate (99.5%). Moreover, the NCC/EVOH nanofiber composite membranes possessed a higher recovery rate of filtration flux than unmodified EVOH nanofiber membranes and the commercial micro-filtration membranes.
机译:通过熔融共混挤出和高速气流沉积工艺制备了聚乙烯-共-聚乙烯醇(EVOH)纳米纤维膜。然后通过涂覆和沉积阻挡层在纳米纤维膜表面上获得纳米纤维素晶体/聚乙烯-共聚乙烯醇(NCC / EVOH)纳米纤维复合膜。研究了复合膜的基本结构性能和油水分离性能。结果表明,沉积的NCC在纳米纤维膜的表面形成致密层,孔径较小,对膜的连续孔结构没有影响。随着NCC含量的增加,复合膜的抗张强度(从9.969 MPa增加到12.991 MPa)增加,接触角,孔径和水通量减小。通过增加操作压力,可以在一定范围内提高复合膜的水通量和过滤通量。 NCC / EVOH纳米纤维复合膜已成功应用于油水乳状液的分离,并显示出更高的排斥率(99.5%)。此外,NCC / EVOH纳米纤维复合膜比未改性的EVOH纳米纤维膜和市售微滤膜具有更高的过滤通量回收率。

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