首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >High flux ultrafiltration membranes based on electrospun nanofibrous PAN scaffolds and chitosan coating
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High flux ultrafiltration membranes based on electrospun nanofibrous PAN scaffolds and chitosan coating

机译:基于静电纺纳米纤维PAN支架和壳聚糖涂层的高通量超滤膜

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Conventional ultrafiltration(UF)or nanofiltration(NF)filters for water treatments are based on porous membranes,typically manufactured by the phase immersion method.The torturous porosity in these membranes usually results in a relatively low flux rate.In this study,we demonstrated a new type of high flux UF/NF medium based on an electrospun nanofibrous scaffold(e.g.polyacrylonitrile,PAN)coupled with a thin top layer of hydrophilic,water-resistant,but water-permeable coating(e.g.chitosan).Such nanofibrous composite membranes can replace the conventional porous membranes and exhibit a much higher flux rate for water filtration.The interconnected porosity of the non-woven nanofibrous scaffold can be controlled partially by varying the fiber diameter(from about 100 nm to a few micrometers)through the electrospinning processing.The example membrane,containing an electrospun PAN scaffold with an average diameter from 124 to 720 nm and a porosity of about 70%,together with a chitosan top layer having a thickness of about 1 mum,although not yet fully optimized,exhibited a flux rate that is an order magnitude higher than commercial NF membranes in 24 h of operation,while maintaining the same rejection efficiency(> 99.9%)for oily waste-water filtration.
机译:用于水处理的常规超滤(UF)或纳滤(NF)过滤器基于多孔膜,通常通过相浸法制造。这些膜中的曲折孔隙通常导致较低的通量率。在本研究中,我们证明了新型高通量超滤/纳滤介质,基于静电纺丝纳米纤维支架(例如聚丙烯腈,PAN)和一层薄薄的亲水,耐水但可透水的涂层(例如壳聚糖),可以替代此类纳米纤维复合膜传统的多孔膜具有更高的水过滤通量。通过电纺丝工艺可以通过改变纤维直径(从100 nm到几微米)来部分控制非织造纳米纤维支架的互连孔隙率。示例膜,其包含平均直径为124至720 nm,孔隙率约为70%的电纺PAN支架以及壳聚糖顶层厚度约为1微米(尽管尚未完全优化)的流量在操作24小时后的流量比商用NF膜高一个数量级,同时保持了对含油废物的相同的拒收率(> 99.9%),水过滤。

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