静电纺多孔/无孔二醋纤复合膜的制备及过滤性能研究

张金宁1, 宋明玉1, 陈昀2, 曹建华2, 杨占平2, 徐阳1, 魏取福1*

化工新型材料 ›› 2018, Vol. 46 ›› Issue (5) : 52 -55.

PDF (3552KB)
化工新型材料 ›› 2018, Vol. 46 ›› Issue (5) : 52-55.
新材料与新技术

静电纺多孔/无孔二醋纤复合膜的制备及过滤性能研究

    张金宁1, 宋明玉1, 陈昀2, 曹建华2, 杨占平2, 徐阳1, 魏取福1*
作者信息 +

Preparation of porous/nonporous cellulose acetate composite membrane for air filtration

  • Zhang Jinning1, Song Mingyu1, Chen Yun2, Cao Jianhua2, Yang Zhanping2, Xu Yang1, Wei Qufu1
Author information +
文章历史 +
PDF (3636K)

摘要

采用静电纺丝技术,借助高挥发溶剂的制孔性,制备了多孔超细二醋酸纤维。通过调控纺丝过程中多孔超细二醋酸纤维和无孔纳米二醋酸纤维的比例,制备了不同交叉结构的多孔超细/无孔纳米二醋纤复合膜。通过扫描电镜观察纤维膜的形貌,利用电导率仪测试纺丝液电导率,运用黏度计测试纺丝液的黏度,利用多孔材料孔径分析仪测试复合膜的孔径分布,通过滤料综合性能测试台测试不同空气流量下复合膜的过滤性能。结果表明:随着无孔纳米纤维在复合膜中比例的增加,复合膜的孔径分布范围变窄,孔径减小,堆积密度增加;过滤效率和过滤阻力都呈增大的趋势;当纺丝过程中,多孔超细纤维与无孔纳米纤维纺丝针管数目比例为1∶2时,所制备的复合膜具有最好的品质因数,在空气流量为80L/min时,其过滤阻力仅为280Pa,过滤效率可达99.472%。

Abstract

Cellulose acetate porous ultrafine fibers were produced from highly volatile solvent system by electro-spinning.Different kinds of porous fibers/nonporous fibers interlaced structure composite membranes were prepared by adjusting the ratio of porous and nonporous fibers in the composite membranes.The surface morphology of membrane was studied by scanning electron microscopy (SEM),the conductivity of spinning solution was measured by a conductivity meter.The solution viscosity was measured with viscometer,the pore size distribution of membrane was measured by pore size analyzer and filtration performance of composite membrane with different air flow was measured.The results showed that,with the increasing of content of nano-sized nonporous fiber,the pore size distribution became narrower,the pore size decreased,the packing density of membrane increased,the filtration efficiency and pressure drop increased.And when the spinning jets ratio of ultrafine porous fiber and nano-sized nonporous fiber was 1∶2,the composite membranes had the best filtration performance.The pressure drop was 280Pa,the filtration efficiency was 99.472% when the air flow was 80L/min.

关键词

静电纺丝 / 交叉结构 / 多孔纤维 / 过滤性能

Key words

electro-spinning / hierarchical structure / porous fiber / filtration performance

引用本文

引用格式 ▾
静电纺多孔/无孔二醋纤复合膜的制备及过滤性能研究[J]. 化工新型材料, 2018, 46(5): 52-55 DOI:

登录浏览全文

4963

注册一个新账户 忘记密码

参考文献

[1] Yoon K H,Hsiao B S,Chu B.Functional nanofibers for environmental applications[J].Journal of Materials Chemistry,2008,18:5326-5334.
[2] Liu C,Hsu P C,Lee H W,et al.Transparent air filter for high-efficiency PM2.5 capture[J].Nature Communications,2015,DOI:10.1038/ncomms7205.
[3] Hung C H,Leung W W F.Filtration of nano-aerosol using nanofiber filter under low peclet number and transitional flow regime[J].Separation and Purification Technology,2015,79:34-42.
[4] Wang Na,Yang Yinjing,Al-Deyab Salem S,et al.Ultra-light 3D nanofibre-nets binary structurednylon 6-polyacrylonitrile membranes for efficient filtration of fine particulate matter[J].Journal of Material Chemistry A,2015,DOI:10.1039/c5ta06543g.
[5] Liu Yanan,Park Mira,Ding Bin,et al.Facile electrospun polyacrylonitrile/poly(acrylic acid) nanofibrous membranes for high efficiency particulate air filtration[J].Fibers and Polymer,2015,16:629-633.
[6] Wang Zhe,Pan Zhijuan.Preparation of hierarchical structured nano-sized/porous poly(lactic acid) composite fibrous membranes for air filtration[J].Applied Surface Science,2015,356:1168-1179.
[7] Liu Qingzhao,Xue Tao,Yang Lina,et al.Controllable synthesis of hierarchical porous mullite fiber network for gas filtration[J].Journal of the European Ceramic Society,2016,36:1691-1697.
[8] Desai Keyur,Kit Kevin,Li Jiajie,et al.Nanofibrous chitosan non-wovens for filtration applications[J].Polymer,2009,50(15):3661-3669.
[9] Kaur Satinderpal,Sundarrajan Subramanian,Rana Dipak,et al.Influence of electrospun fiber size on the separation efficiency of thin film nanofiltration composite membrane[J].Journal of Membrane Science,2012,392-393:101-111.
[10] Barhate R S,Ramakrishna Seeram.Nanofibrous filtering media:filtration problems and solutions from tiny materials[J].Journal of Membrane Science,2007,296:1-8.
[11] Casasola R,Thomas N L,Trybala A,et al.Electrospun poly lactic acid (PLA) fibres:effect of different solvent systems on fibre morphology and diameter[J].Polymer,2014,55(18):4728-4737.

基金资助

江苏省产学研联合创新资金前瞻性研究项目(BY2014023-06);江苏省普通高校研究生科研创新计划项目(KYLX15-1183);江苏高校优势学科建设工程资助项目(PAPD);江苏省产学研联合创新基金前瞻性研究项目(BY2016022-03)

AI Summary AI Mindmap
PDF (3552KB)

557

访问

0

被引

导航
相关文章

AI思维导图

/