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Fabrication of fullerenol-incorporated thin-film nanocomposite forward osmosis membranes for improved desalination performances

机译:富勒烯醇掺入薄膜纳米复合材料前向渗透膜的制备,提高脱盐性能

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摘要

Development and use of novel membranes for forward osmosis (FO) applications have gained popularity throughout the world. To enhance FO membrane performance, a novel thin-film nanocomposite membrane was fabricated by interfacial polymerization incorporating Fullerenol (C~(60)(OH)~(n)) nanomaterial, having n in the range of 24–28 into the active layer. Different concentrations of fullerenol loading (100, 200, 400, and 800?ppm) were added to the top skin layer. The structural and surface properties of the pure thin-film composite membrane (TFC) and fullerenol-incorporated thin-film nanocomposite (FTFC) membranes, were characterized by ATR-FTIR, SEM, and AFM. FO performance and separation properties were evaluated in terms of water flux, reverse salt flux, antifouling propensity, water permeability and salt permeability for all TFC and FTFC membranes. Osmotic performance tests showed that FTFC membranes achieved higher water flux and reverse salt flux selectivity compared with those of TFC membranes. The FTFC membrane with a fullerenol loading of 400?ppm exhibited a water flux of 26.1?L?m_(?2)?h_(?1)(LMH), which is 83.03% higher than that of the TFC membrane with a specific reverse salt flux of 0.18?g/L using 1?M sodium chloride draw solution against deionized water in FO mode. The fullerenol incorporation in FTFC membranes also contributed to a decreased fouling propensity.
机译:用于前进渗透(FO)应用的新型膜的开发和使用在全世界都越来越受欢迎。为了增强膜性能,通过掺入富勒烯(C〜(60)(OH)〜(n))纳米材料的界面聚合来制造一种新型薄膜纳米复合材料膜,其在24-28的范围内,进入活性层。将不同浓度的富勒烯醇加载(100,200,400和800→ppm)加入到顶部表层中。通过ATR-FTIR,SEM和AFM表征纯薄膜复合膜(TFC)和富含烯醇掺入的薄膜纳米复合材料(FTFC)膜的结构和表面性质。在所有TFC和FTFC膜的水通量,逆盐通量,防污渗透性,水渗透性和盐渗透性方面评估了性能和分离性能。渗透性能测试表明,与TFC膜相比,FTFC膜与TFC膜相比达到了更高的水通量和逆向盐通量选择性。具有400μlαppm的富含烯醇负载的FTFC膜表现出26.1〜1的水通量为26.1℃_(α2)?H _(α1)(LMH),其比TFC膜具有比具有特异性反向的TFC膜的水通量使用1·m氯化钠在FO模式下使用1·m氯化钠溶液的盐通量0.18Ω·g / l。 FTFC膜中的富勒烯醇掺入也有助于降低污垢倾向。

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