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首页> 外文期刊>Journal of Materials Science >Antibiofouling thin-film composite membranes (TFC) by in situ formation of Cu-(m-phenylenediamine) oligomer complex
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Antibiofouling thin-film composite membranes (TFC) by in situ formation of Cu-(m-phenylenediamine) oligomer complex

机译:通过原位形成Cu-(M-苯二胺)寡聚体复合物的抗体抗膜复合膜(TFC)

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摘要

In situ formation of a Cu-(m-phenylenediamine) (Cu-mPD) oligomer complex from copper chloride during the interfacial polymerization process was successfully employed to produce modified thin-film composite reverse osmosis membranes (TFC-RO) with antibiofouling properties. Membranes were characterized by field emission scanning electron microscopy, Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), X-ray diffraction (XRD), atomic force microscopy, and contact angle measurements. Antibiofouling properties were studied using a colony-forming unit test with Escherichia coli. Moreover, an antiadhesion test was developed using fluorescence microscopy. Membrane performance using a cross-flow cell was evaluated, and copper concentration in permeate water was measured. FTIR, XPS and XRD results confirmed the formation of a Cu-mPD oligomer complex and its incorporation into the polyamide layer. A mechanism for formation of the oligomer within the membrane was proposed based on the interaction between the oxygen of the carbonyl group of the polyamide layer and copper ion of the Cu-mPD oligomer complex. The modified membrane showed a slight decrease in hydrophilicity and higher surface roughness. However, excellent antibacterial and antiadhesion effects were observed, attributed to copper toxicity as a result of Cu2+ ions release from the membrane surface. Release of copper ions in the permeate water was determined, and the maximum value observed was considered negligible according to the World Health Organization. The desalination performance of modified membrane showed an important salt rejection with stable water flux. In conclusion, a novel chemical method for the incorporation of Cu-mPD oligomer complex into the polyamide layer of TFC-RO membranes to improve their antibiofouling properties and desalination performance was achieved.
机译:在界面聚合过程中,原位形成来自氯化铜的Cu-(M-苯二胺)(Cu-MPD)低聚物复合物,成功地用于产生具有抗组合性质的改性薄膜复合反渗透膜(TFC-RO)。膜的特征在于现场发射扫描电子显微镜,傅里叶变换红外光谱(FTIR),X射线光电子能谱(XPS),X射线衍射(XRD),原子力显微镜和接触角测量。使用与大肠杆菌的菌落形成单元测试研究了抗困难性质。此外,使用荧光显微镜开发抗粘附试验。评价使用横流电池的膜性能,并测量渗透水中的铜浓度。 FTIR,XPS和XRD结果证实了Cu-MPD低聚物络合物的形成及其掺入聚酰胺层中。提出基于聚酰胺层的羰基与Cu-MPD低聚物络合物的碳基与铜离子之间的相互作用的相互作用来形成膜内的寡聚体的机制。改性膜显示了亲水性和更高的表面粗糙度略微降低。然而,由于Cu 2 +离子从膜表面释放而归因于铜毒性的优异抗菌和抗粘附效应。确定渗透水中铜离子的释放,根据世界卫生组织认为,观察到的最大值被认为是可忽略的。改性膜的脱盐性能显示出具有稳定的水通量的重要盐排斥。总之,实现了一种用于将Cu-MPD低聚物复合物掺入TFC-RO膜的聚酰胺层中的新化学方法,以改善其抗膨胀性能和脱盐性能。

著录项

  • 来源
    《Journal of Materials Science 》 |2018年第9期| 共14页
  • 作者单位

    Univ Chile AMTC Av Tupper 2007 Santiago 8370451 Chile;

    Univ Chile AMTC Av Tupper 2007 Santiago 8370451 Chile;

    Univ Chile AMTC Av Tupper 2007 Santiago 8370451 Chile;

    Univ Chile Fac Phys &

    Math Sci Phys Dept Santiago 8370415 Chile;

    Univ Chile AMTC Av Tupper 2007 Santiago 8370451 Chile;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学 ;
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