静电自组装PDDA/CMCNa聚电解质复合纳滤膜及其性能
作者:杜子昂,秦振平1, 郭红霞2,王乃鑫1 张国俊1,纪树兰1
单位: 1.北京工业大学环境与能源工程学院;2. 北京工业大学材料科学与工程学院,
关键词: 羧甲基纤维素钠;复合纳滤膜;层层自组装;荷电性;亲水性;罗丹明B
出版年,卷(期):页码: 2015,35(1):64-69

摘要:
以聚丙烯腈(PAN)超滤膜为基膜,通过羧甲基纤维素钠(CMCNa)阴离子聚电解质和聚二甲基二烯丙基氯化铵(PDDA)阳离子聚电解质层层静电自组装(LbL)制备得到复合纳滤膜。考察了阴离子聚电解质溶液浓度、组装层数对膜表面荷电性、形貌和亲水性等的影响;同时研究了操作条件不同时该纳滤膜对罗丹明B染料分离性能变化。结果表明,CMCNa阴离子聚电解质浓度增大时,膜表面荷负电性和亲水性增强;当PDDA浓度为5.0g/L,CMCNa的浓度为2.0g/L,且组装4.0个派对层时,复合膜表面ζ电位约为-70mV,其接触角约为30°;制备的(5PDDA/2CMCNa)5.0-PAN复合纳滤膜,在25℃ 和0.60MPa的操作条件下,对0.4×10-3g/L的罗丹明B截留率达到90%,通量为42 L·m-2·h-1·MPa-1。
In this work, (PDDA/CMCNa)n-PAN composite NF membrane has been fabricated by layer-by-layer electrostatic self-assembly technology on PAN ultrafiltration membrane substrate, using negatively charged carboxymethyl cellulose sodium as anionic polyelectrolyte and PDDA as cationic polyelectrolyte. The variation of surface morphologies, ζ potential values and contact wetting angle with each deposited layer as well as the nanofiltration performance on dyeing solution of rhodamine B were investigated. The results indicated that the membrane surface showed more negatively charged and hydrophilic with increase of CMCNa anionic polyelectrolyte concentration. The ζ potential and the contact wetting angle of the membrane with 4.0 bi-layers was -70mV and 30°, respectively, when 5.0g/L of PDDA and 2.0g/L of CMCNa was self-assembled. The rejection of 0.4×10-3g/L of rhodamine B was more than 90% with flux of 42 L·m-2·h-1·MPa-1 at 25℃ and 0.60MPa pressure.
杜子昂(1988-),女,河北石家庄人,硕士研究生,研究方向为膜科学与化工分离技术;

参考文献:
[1]Ji Yanli,An Quanfu,Zhao Qiang,et al. Preparation of novel positively charged copolymer membranes for nanofiltration[J]. Journal of Membrane Science,2011,376:254~265.
[2]Du Runhong,Zhao Jiasen. Properties of poly(N,N-dimethylaminoethyl methacrylate)/polysulfone positively charged composite nanofiltration membrane[J]. Journal of Membrane Science,2004,239:183~188.
[3]Deng Huiyu,Xu Youyi,Chen Qingchun,et al. High flux positively charged nanofiltration membranes prepared by UV-initiated graft polymerization of methacrylatoethyl trimethyl ammonium chloride (DMC) on polysulfone membranes[J]. Journal of Membrane Science,2011,366:363~372.
[4]Zhong Peishan,Natalia Widjojo,Chung Tai-Shung,et al. Positively charged nanofiltration (NF) membranes via UV grafting on sulfonated polyphenylenesulfone (sPPSU) for effective removal of textile dyes from wastewater[J]. Journal of Membrane Science,2012,417~418:52~60.
[5]Ramamoorthy Malaisamy,Alan Talla-Nwafo,Kimberly L Jones. Polyelectrolyte modification of nanofiltration membrane for selective removal of monovalent anions[J]. Separation and Purification Technology,2011,77:367~374.
[6]Su Baowei,Wang Tingting,Wang Zongwen,et al. Preparation and performance of dynamic layer-by-layer PDADMAC/PSS nanofiltration membrane[J]. Journal of Membrane Science,2012,423~424:324~331.
[7]Gong Lili,Zhang Lei,Wang Naixin,et al. In situ ultraviolet-light-induced TiO2 nanohybrid superhydrophilic membrane for pervaporation dehydration[J]. Separation and Purification Technology,2014,122:32~40.
[8]Qin Zhenping,Geng Changle,Guo Hongxia,et al. Synthesis of positively charged polyelectrolyte multilayer membranes for removal of divalent metal ions [J]. Journal  Materials Research,2013,28(11):1449-1457.
[9]王宗文,苏保卫,高学理,等. 层层自组装PDADMAC/PSS 纳滤膜的制备[J]. 膜科学与技术,2012,32(1):27~32.
[10]Xu Zhengxia,Hu Chenyang,Hu Guoxin. Layer-by-layer self-assembly of multilayer films based on humic acid[J]. Thin Solid Films,2011,519:4324~4328.
[11]Luo Hui,Shen Qing,Ye Fan,et al. Structure and properties of layer-by-layer self-assembled chitosan/lignosulfonate multilayer film[J]. Material Science and Engineering C,2012,32:2001~2006。
[12]张守伟. 羧甲基纤维素钠/壳聚糖自组装多层膜的研究[D]:[学位论文].郑州大学,2012年.11~15。
[13]Marguerite Rinaudo. Main properties and current applications of some polysaccharides as biomaterials[J]. Polymer International,2008,57:397~430。

服务与反馈:
文章下载】【加入收藏

《膜科学与技术》编辑部 地址:北京市朝阳区北三环东路19号蓝星大厦 邮政编码:100029 电话:010-64426130/64433466 传真:010-80485372邮箱:mkxyjs@163.com

京公网安备11011302000819号