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首页> 外文期刊>Separation and Purification Technology >Preparation and dye filtration property of electrospun polyhydroxybutyrate-calcium alginate/carbon nanotubes composite nanofibrous filtration membrane
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Preparation and dye filtration property of electrospun polyhydroxybutyrate-calcium alginate/carbon nanotubes composite nanofibrous filtration membrane

机译:电纺聚羟基丁酸酯-海藻酸钙/碳纳米管复合纳米纤维滤膜的制备及染料过滤性能

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Polyhydroxybutyrate-calcium alginate/carboxyl multi-walled carbon nanotubes composite nanofibrous filtration membranes (PHB-CaAlg/CMWCNT) were prepared by electrospinning technique combined with redissolving the top hydrogel nanofibrous layer to form dense thin film as barrier layer on PHB nanofibrous substrate through suitable water mist wetting process and Ca2+ cross-linking. The obtained PHB/CaAlg nanofibrous membrane by synchronization electrospinning could improve the hydrophilic property as middle layer and closely integrate with the top hydrogel layer. The morphology of the membranes was observed by SEM. The hydrophilic property, tensile mechanical property, dye adsorption and filtration properties were characterized. The results showed that the tensile mechanical property and hydrophilic property of PHB-CaAlg/CMWCNT membrane were significantly improved, and the dye Brilliant blue adsorption capacity was twice higher than PHB-CaAlg membrane. The flux and rejection rate of PHB-CaAlg/CMWCNT membrane for Brilliant blue were 32.95 L/m(2) h and 98.20%, respectively. The thickness of PHB-CaAlg/CMWCNT membrane was about 40-50 mu m and the membrane consisted of 20 mu m PHB nanofibrous substrate, 10 mu m PHB/CaAlg membrane and 10-20 mu m CaAlg/CMWCNT membrane. The optimum time of water mist wetting process and Ca2+ cross-linking was 5 min and 8 h, respectively. This PHB-CaAlg/CMWCNT membrane has promising applications as nano-filtration membrane with high flux and rejection rate for small organic molecules in wastewater under low operating pressure. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过静电纺丝技术结合顶部水凝胶纳米纤维层再溶解,在PHB纳米纤维基质上通过合适的水制备聚羟基丁酸酯-藻酸钙/羧基多壁碳纳米管复合纳米纤维滤膜(PHB-CaAlg / CMWCNT)。雾润湿过程和Ca2 +交联。通过同步静电纺丝法制得的PHB / CaAlg纳米纤维膜可改善中间层的亲水性,并与顶层水凝胶层紧密结合。通过SEM观察膜的形态。表征了其亲水性能,拉伸机械性能,染料吸附和过滤性能。结果表明,PHB-CaAlg / CMWCNT膜的拉伸力学性能和亲水性得到显着改善,染料艳蓝吸附能力是PHB-CaAlg膜的两倍。亮蓝PHB-CaAlg / CMWCNT膜的通量和截留率分别为32.95 L / m(2)h和98.20%。 PHB-CaAlg / CMWCNT膜的厚度为约40-50μm,该膜由20μm的PHB纳米纤维基质,10μm的PHB / CaAlg膜和10-20μm的CaAlg / CMWCNT膜组成。水雾润湿过程和Ca2 +交联的最佳时间分别为5分钟和8小时。该PHB-CaAlg / CMWCNT膜作为纳米过滤膜具有广阔的应用前景,在低工作压力下,该膜对废水中的有机小分子具有高通量和排斥率。 (C)2016 Elsevier B.V.保留所有权利。

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