[1] |
DAN W, MICHAEL R B. The fouling and cleaning of ultrafiltration membranes during the filtration of model tea component solutions[J]. Journal of Food Process Engineering, 2010, 30(3):293-323.
|
[2] |
ZHU L J, SONG H M, WANG J R, et al. Polysulfone hemodiafiltration membranes with enhanced anti-fouling and hemocompatibility modified by poly(vinyl pyrrolidone) via in situ cross-linked polymerization[J]. Materials Science and Engineering C, 2017, 74:159-166.
|
[3] |
SUN H Z, TANG B B, WU P Y. Development of hybrid ultrafiltration membranes with improved water separation properties using modified superhydrophilic metal-organic framework nanoparticles[J]. ACS Applied Materials & Interfaces, 2017, 9(25):21473-21484.
|
[4] |
WANG H D, LU X F, WANG Z H, et al. Improved surface hydrophilicity and antifouling property of polysulfone ultrafiltration membrane with poly(ethylene glycol) methyl ether methacrylate grafted graphene oxide nanofillers[J]. Applied Surface Science, 2017, 425:603-613.
|
[5] |
REZAEE R, NASSERI S, MAHVI A H, et al. Fabrication and characterization of a polysulfone-graphene oxide nanocomposite membrane for arsenate rejection from water[J]. Journal of Environmental Health Science Engineering, 2015, 13:61-72.
|
[6] |
PARK M S, PARK B J, KIM N U, et al. Ultrafiltration membranes based on hybrids of an amphiphilic graft copolymer and titanium isopropoxide[J]. Journal of Applied Polymer Science, 2018, 135(12):45932-45942.
|
[7] |
ZHANG J J, XU Y N, CHEN S W, et al. Enhanced antifouling and antibacterial properties of poly(ether sulfone) membrane modified through blending with sulfonated poly(aryl ether sulfone) and copper nanoparticles[J]. Applied Surface Science, 2018, 434:806-815.
|
[8] |
ABIDIN M N Z, GOH P S, ISMAIL A F, et al. Antifouling polyethersulfone hemodialysis membranes incorporated with poly(citric acid) polymerized multi-walled carbon nanotubes[J]. Materials Science and Engineering C, 2016, 68:540-550.
|
[9] |
KO K, YU Y J, KIM M J, et al. Improvement in fouling resistance of silver-graphene oxide coated polyvinylidene fluoride membrane prepared by pressurized filtration[J]. Separation and Purification Technology, 2018, 194:161-169.
|
[10] |
WANG H Y, ZHAO X Z, HE C J. Innovative permeation and antifouling properties of PVDF ultrafiltration membrane with stepped hollow SiO2 microspheres in membrane matrix[J]. Materials Letters, 2016, 182:376-379.
|
[11] |
EREN E, SARIHAN A, EREN B, et al. Preparation, characterization and performance enhancement of polysulfone ultrafiltration membrane using PBI as hydrophilic modifier[J]. Journal of Membrane Science, 2015, 475:1-8.
|
[12] |
LIU Z X, MI Z M, CHEN C H, et al. Preparation of hydrophilic and antifouling polysulfone ultrafiltration membrane derived from phenolphthalin by copolymerization method[J]. Applied Surface Science, 2017, 401:69-78.
|
[13] |
ZHANG Q H, JIANG J X, GAO F, et al. Engineering high-effective antifouling polyether sulfone membrane with P(PEG-PDMS-KH570)@SiO2 nanocomposite via in-situ sol-gel process[J]. Chemical Engineering Journal, 2017, 321:412-423.
|
[14] |
ALSOHAIMI I H, KUMAR M, ALGAMDI M S, et al. Antifouling hybrid ultrafiltration membranes with high selectivity fabricated from polysulfone and sulfonic acid functionalized TiO2 nanotubes[J]. Chemical Engineering Journal, 2017, 316:573-583.
|
[15] |
GAO H W, SUN X H, GAO C L. Antifouling polysulfone ultrafiltration membranes with sulfobetaine polyimides as novel additive for the enhancement of both water flux and protein rejection[J]. Journal of Membrane Science, 2017, 542:81-90.
|
[16] |
LI R J, WANG X N, CAI X, et al. A facile strategy to prepare superhydrophilic polyvinylidene fluoride (PVDF) based membranes and the thermodynamic mechanisms underlying the improved performance[J]. Separation and Purification Technology, 2018, 197:271-280.
|
[17] |
YU S P, ZHANG X, LI F Z, et al. Poly(vinyl pyrrolidone) modified poly(vinylidene fluoride) ultrafiltration membrane via a two-step surface grafting for radioactive wastewater treatment[J]. Separation and Purification Technology, 2018, 194:404-409.
|
[18] |
HOMAYOONFAL M, AKBARI A, MEHRNIA M R. Preparation of polysulfone nanofiltration membranes by UV-assisted grafting polymerization for water softening[J]. Desalination, 2010, 263(1/2/3):217-225.
|
[19] |
LIU F, HASHIM N A, LIU Y T, et al. Progress in the production and modification of PVDF membranes[J]. Journal of Membrane Science, 2011, 375(1/2):1-27.
|
[20] |
MILLER D J, DREYER D R, BIELAWSKI C W, et al. Surface modification of water purification membranes[J]. Angew. Chem. Int. Ed., 2017, 56(17):4662-4711.
|
[21] |
ZHANG D Y, XIONG S, SHI Y S, et al. Antifouling enhancement of polyimide membrane by grafting DEDA-PS zwitterions[J]. Chemosphere, 2018, 198:30-39.
|
[22] |
LIN Z, WU X D, ZHONG W Z, et al. Towards improved antifouling ability and separation performance of polyethersulfone ultrafiltration membranes through poly(ethylenimine) grafting[J]. Journal of Membrane Science, 2018, 554:125-133.
|
[23] |
WAN P, BERNARDS M, DENG B L. Modification of polysulfone (PSF) hollow fiber membrane (HFM) with zwitterionic or charged polymers[J]. Industrial & Engineering Chemistry Research, 2017, 56(26):7576-7584.
|
[24] |
WU C R, WANG Z Y, LIU S H, et al. Simultaneous permeability, selectivity and antibacterial property improvement of PVC ultrafiltration membranes via in-situ quaternization[J]. Journal of Membrane Science, 2018, 548:50-58.
|
[25] |
RAMANAN S N, SHAHKARAMIPOUR N, TRAN T, et al. Self-cleaning membranes for water purification by co-deposition of photo-mobile 4,4'-azodianiline and bio-adhesive polydopamine[J]. Journal of Membrane Science, 2018, 554:164-174.
|
[26] |
SHAHKARAMIPOUR N, RAMANAN S N, FISTER D. Facile grafting of zwitterions onto the membrane surface to enhance antifouling properties for wastewater reuse[J]. Industrial & Engineering Chemistry Research, 2017, 56(32):9202-9212.
|
[27] |
SOYEKWO F, ZHANG Q G, ZHEN L, et al. Borate crosslinking of polydopamine grafted carbon nanotubes membranes for protein separation[J]. Chemical Engineering Journal, 2018, 337:110-121.
|
[28] |
KIRSCHNER A Y, CHANG C C, KASEMSET S, et al. Fouling-resistant ultrafiltration membranes prepared via co-deposition of dopamine/zwitterion composite coatings[J]. Journal of Membrane Science, 2017, 541:300-311.
|
[29] |
彭开美, 丁伟, 涂伟萍, 等. 胍基聚合物的构建及应用[J]. 化学学报, 2016, 74(9):713-725. PENG K M, DING W, TU W P, et al. Construction of guanidinium-rich polymers and their applications[J]. Acta Chimica Sinica, 2016, 74(9):713-725.
|
[30] |
周艺璇, 王志, 董晨曦, 等. 双胍基化聚乙烯胺改性制备抗生物污染反渗透膜[J]. 化工学报, 2018, 69(2):858-865. ZHOU Y X, WANG Z, DONG C X, et al. Biguanidine functionalized polyvinylamine modified reverse osmosis membrane with improved anti-bacterial property[J]. CIESC Journal, 2018, 69(2):858-865.
|
[31] |
LI X, CAO Y M, YU H J, et al. A novel composite nanofiltration membrane prepared with PHGH and TMC by interfacial polymerization[J]. Journal of Membrane Science, 2014, 466:82-91.
|
[32] |
NIKKOLA J, LIU X, LI Y, et al. Surface modification of thin film composite RO membrane for enhanced anti-biofouling performance[J]. Journal of Membrane Science, 2013, 444:192-200.
|
[33] |
GUAN Y, XIAO H N, SULLIVAN H, et al. Antimicrobial-modified sulfite pulps prepared by in situ copolymerization[J]. Carbohydrate Polymers, 2007, 69(4):688-696.
|
[34] |
ZHANG Y M, JIANG J M, CHEN Y M. Synthesis and antimicrobial activity of polymericguanidine and biguanidine salts[J]. Polymer, 1999, (40):6189-6198.
|
[35] |
AHANI E, MONTAZER M, TOLIYAT T, et al. A novel biocompatible antibacterial product:nanoliposomes loaded with poly(hexamethylene biguanide chloride)[J]. Journal of Bioactive and Compatible Polymers, 2016, 32(3):242-262.
|
[36] |
王冬梅, 曹金丽, 张怡, 等. 红外光谱法研究聚乙烯亚胺的结构[J]. 光谱学与光谱分析, 2016, 36(10):199-200. WANG D M, CAO J L, ZHANG Y, et al. The structure characterization of polyethylenimine via FTIR[J]. Spectroscopy and Spectral Analysis, 2016, 36(10):199-200.
|
[37] |
ZANGMEISTER R A, MORRIS T A, TARLOV M J. Characterization of polydopamine thin films deposited at short times by autoxidation of dopamine[J]. Langmuir, 2013, 29(27):8619-8628.
|
[38] |
HUANG L C, ZHAO S, WANG Z, et al. In situ immobilization of silver nanoparticles for improving permeability, antifouling and anti-bacterial properties of ultrafiltration membrane[J]. Journal of Membrane Science, 2016, 499:269-281.
|