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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Guanidinium-functionalized nanofiltration membranes integrating anti-fouling and antimicrobial effects
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Guanidinium-functionalized nanofiltration membranes integrating anti-fouling and antimicrobial effects

机译:胍官能化纳滤膜整合抗污垢和抗菌效应

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Biofouling, as one of the membrane foulings, is the major obstacle limiting the application of polyamide (PA) thin-film composite (TFC) nanofiltration (NF) membranes in reclamation of wastewaters and treatment of industrial fluids. Herein, we introduced a facile and effective strategy for the modification of traditional PA-TFC NF membranes to improve water permeability and biofouling resistance. Specifically, three reactive guanidine molecules were successfully bonded onto the surface of PA-TFC membranes using chemical reactions between the amine groups of guanidine and the residual acyl chloride groups on the nascent PA-TFC membrane. The covalent attachment of guanidines can significantly enhance water permeability without compromising salt rejection. For instance, for 2 g L-1 Na2SO4 aqueous solution, the water flux of NFM2 increased from 25.2 L m(-2) h(-1) to 68.4 L m(-2) h(-1) at 25 degrees C and 0.6 MPa compared to the traditional piperazine (PIP)-trimesoyl chloride (TMC) membrane, while around 98.3%. Na2SO4 rejection was maintained. Moreover, the membranes were endowed with easy-cleaning properties, which can remarkably prevent foulant adhesion, with the water flux recovery ratio being as high as 98.9%. The developed TFC membranes also showed excellent anti-adhesive and antimicrobial activities against Gram-negative Escherichia coli K12 (E. coli), Gram-positive Bacillus pumilus LDS33 (B. pumilus) and Aspergillus parasiticus JFS (A. parasiticus). Therefore, the resultant guanidinium-functionalized NF membranes which have integrated high permselectivity and superior fouling resistance properties are promising materials for fabricating a new generation of anti-fouling/antimicrobial surfaces that are applicable to many applications such as water desalination and softening and wastewater treatment.
机译:作为膜污染之一的生物污垢是限制聚酰胺(PA)薄膜复合物(TFC)纳米滤膜(NF)膜在开垦废水和工业液的处理中的应用的主要障碍。在此,我们介绍了用于改性传统PA-TFC NF膜以改善水渗透性和生物膨胀性的抗体和有效策略。具体地,使用胍基胺基和残余酰氯基团上的甘氨酸胺基与新生PA-TFC膜上的化学反应成功地键合到PA-TFC膜的表面上的三种反应性胍分子。胍的共价附着可以显着提高水渗透性而不损害盐排斥。例如,对于2g L-1 Na 2 SO 4水溶液,NFM2的水通量从25.2L m(-2)H(-1)增加到25摄氏度的25.2 L m(-2)H(-1)至68.4 L m(-2)H(-1)与传统的哌嗪(PIP)-trimesoyl氯化物(TMC)膜相比,0.6MPa,而大约98.3%。保持Na2SO4排斥。此外,膜具有易清清洁性能,可显着防止污垢粘附,水通量回收率高达98.9%。发育的TFC膜还显示出优异的抗粘接和抗微生物活性,对抗革兰阴性大肠杆菌K12(大肠杆菌),革兰氏阳性芽孢杆菌LDS33(B.P.Pumilus)和曲霉(A.寄生虫)。因此,具有集成的高偏移力和优异的污垢抗性性能的所得胍官能化的NF膜是制造新一代抗结垢/抗微生物表面的有希望的材料,这些材料适用于许多应用,例如水脱盐和软化和废水处理。

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