基于超细纳米纤维高效低阻复合滤材的制备及性能研究

路通1, 卜婉君1, 李俊丽1, 相贺伟1, 刘凡1, 刘东奇2*

化工新型材料 ›› 2023, Vol. 51 ›› Issue (1) : 259 -263.

PDF
化工新型材料 ›› 2023, Vol. 51 ›› Issue (1) : 259-263. DOI: 10.19817/j.cnki.issn1006-3536.2023.01.049
开发与应用

基于超细纳米纤维高效低阻复合滤材的制备及性能研究

    路通1, 卜婉君1, 李俊丽1, 相贺伟1, 刘凡1, 刘东奇2*
作者信息 +

Preparation and performance of high-efficiency and low-resistance superfine nanofiber-based composite filter material

  • Lu Tong1, Bu Wanjun1, Li Junli1, Xiang Hewei1, Liu Fan1, Liu Dongqi2
Author information +
文章历史 +
PDF

摘要

以湿法无纺布为支撑层、纺粘无纺布为保护层,熔喷静电棉/纳米纤维/超细纳米纤维为核心过滤层,制备出一种具有多级梯度过滤的复合滤材,并讨论了不同选材和工艺参数对滤材性能的影响。SEM分析表明,该滤材呈现明显的梯度尺度结构。过滤测试结果表明,该滤材初始过滤效率达99.65%,且去除静电后仍能保持在90%以上,而滤阻仅有15.7Pa。与传统熔喷滤材相比,该产品显示出优异的高效低阻性能,而且不受静电衰减的影响,大大增加了滤材使用寿命,在空气过滤领域具有广阔的应用前景。

Abstract

Using wet nonwoven fabric as support layer,spunbonded nonwoven fabric as protective layer and melt blown nonwoven fabric/nanofiber membrane/superfine nanofiber as core filter layer,a composite filter material with multi-stage gradient filtration was prepared.The effects of different material selection and process parameters on the performance of filter media were discussed.The SEM result showed that the filter material had an obvious gradient scale structure.The filtration test result revealed that the initial filtration efficiency of the filter material was 99.65%,and it was still maintained above 90% after removing the static electricity,while the filtration resistance was only 15.7Pa.Compared with the traditional melt blown filter material,the product exhibited excellent performance of high efficiency and low resistance,and was not affected by electrostatic attenuation.Its service life could be greatly increased and it should have a great application prospect in the field of air filtration.

关键词

静电纺丝 / 纳米纤维 / 梯度结构 / 空气过滤

Key words

electrospinning / nanofiber / gradient structure / air filtration

引用本文

引用格式 ▾
基于超细纳米纤维高效低阻复合滤材的制备及性能研究[J]. 化工新型材料, 2023, 51(1): 259-263 DOI:10.19817/j.cnki.issn1006-3536.2023.01.049

登录浏览全文

4963

注册一个新账户 忘记密码

参考文献

[1] Whittaker A,BéruBé K,Jones T,et al.Killer smog of London,50 years on:particle properties and oxidative capacity[J].Science of the Total Environment,2004,334:435-445.
[2] 孙彧,马振峰,牛涛,等.最近40年中国雾日数和霾日数的气候变化特征[J].气候与环境研究,2013,18(3):397-406.
[3] 徐晓斌.我国霾和光化学污染观测研究进展[J].应用气象学报,2016,27(5):604-619.
[4] Lelieveld J,Evans J S,Fnais M,et al.The contribution of outdoor air pollution sources to premature mortality on a global scale[J].Nature,2015,525(7569):367-371.
[5] Kleinman L I,Lipfert F W,Metropolitan New York in the greenhouse:air quality and health effects[J].Annals of the New York Academy of Sciences,2010,790:91-110.
[6] Apte J S,Marshall J D,Cohen A J,et al.Addressing global mortality from ambient PM2.5[J].Environmental Science & Technology,2015,49(13):8057-8066.
[7] 张海峰,梁小鹏,张星,等.驻极体聚丙烯熔喷非织造材料加载过滤性能研究[J].南通大学学报(自然科学版),2020,19(3):61-67.
[8] 魏楚,钱晓明,钱幺.纳米纤维复合空气过滤材料的研究进展[J].化工新型材料,2020,48(8):32-36+41.
[9] 刘惠.极细二维纳米蛛网空气过滤材料的设计构筑及性能研究[D].上海:东华大学,2020.
[10] 刘兆麟.纳米蛛网纤维材料的可控构筑与应用[J].材料导报,2019,33(5):907-916.
[11] Hu J P,Wang X F,Ding B,et al.One-step electro-spinning/netting technique for controllably preparing polyurethane nano-fiber/net[J].Macromolecular Rapid Communications,2011,32(21):1729-1734.
[12] Xue J J,Wu T,Dai Y,et al.Electrospinning and electrospun nanofibers:methods,materials,and applications[J].Chemical Reviews,2019,119(8):5298-5415.
[13] Huang Z M,Zhang Y Z,Kotaki M,et al.A review on polymer nanofibers by electrospinning and their applications in nanocomposites[J].Composites Science and Technology,2003,63:2223-2253.
[14] Cao M Y,Gu F,Rao C C,et al.Improving the electrospinning process of fabricating nanofibrous membranes to filter PM2.5[J].The Science of the Total Environment,2019,666:1011-1021.
[15] 吴延鹏,钟乔洋,邢奕,等.静电纺丝纳米纤维膜空气过滤研究进展[J].精细化工,2021,38(8):1530-1541.
[16] 张展,陈品源,晋艺,等.口罩用纳米纤维膜的最新进展研究[J].轻纺工业与技术,2021,50(4):88-89.
[17] 洪贤良,陈小晖,张建青,等.静电纺多级结构空气过滤材料的研究进展[J].纺织学报,2020,41(6):174-182.
[18] 张金宁,宋明玉,陈昀,等.交叉静电纺聚氨酯/聚丙烯腈高效低阻空气过滤膜的制备研究[J].化工新型材料,2018,46(2):107-110.
[19] Xiong J,Zhou M J,Zhang H N,et al.Sandwich-structured fibrous membranes with low filtration resistance for effective PM2.5 capture via one-step needleless electrospinning[J].Materials Research Express,2018,6:1-8.
[20] Robert B,Nallathambi G.A concise review on electrospun nanofibres/nanonets for filtration of gaseous and solid constituents (PM2.5) from polluted air[J].Colloid and Interface Science Communications,2020,37:100275.
[21] 皇甫晨晨,邓炳耀,刘庆生.静电纺聚丙烯腈复合滤料的制备与性能[J].化工新型材料,2016,44(12):226-228.

基金资助

河南省高等学校重点科研项目(21A540002)

AI Summary AI Mindmap
PDF

612

访问

0

被引

导航
相关文章

AI思维导图

/