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Mixed-matrix membranes with enhanced antifouling activity: probing the surface-tailoring potential of Tiron and chromotropic acid for nano-TiO2

机译:具有增强的防污活性的混合基质膜:探查Tiron和发色酸对纳米TiO2的表面定制潜力

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摘要

Mixed-matrix membranes (MMMs) were developed by impregnating organofunctionalized nanoadditives within fouling-susceptible polysulfone matrix following the non-solvent induced phase separation (NIPS) method. The facile functionalization of nanoparticles of anatase TiO2 (nano-TiO2) by using two different organoligands, viz. Tiron and chromotropic acid, was carried out to obtain organofunctionalized nanoadditives, FT-nano-TiO2 and FC-nano-TiO2, respectively. The structural features of nanoadditives were evaluated by X-ray diffraction, X-ray photoelectron spectroscopy, Raman and Fourier transform infrared spectroscopy, which established that Tiron leads to the blending of chelating and bridging bidentate geometries for FT-nano-TiO2, whereas chromotropic acid produces bridging bidentate as well as monodentate geometries for FC-nano-TiO2. The surface chemistry of the studied membranes, polysulfone (Psf): FT-nano-TiO2 UF and Psf: FC-nano-TiO2 UF, was profoundly influenced by the benign distributions of the nanoadditives enriched with distinctly charged sites (SO3H+), as evidenced by superior morphology, improved topography, enhanced surface hydrophilicity and altered electrokinetic features. The membranes exhibited enhanced solvent throughputs, viz. 3500–4000 and 3400–4300 LMD at 1 bar of transmembrane pressure, without significant compromise in their rejection attributes. The flux recovery ratios and fouling resistive behaviours of MMMs towards bovine serum albumin indicated that the nanoadditives could impart stable and appreciable antifouling activity, potentially aiding in a sustainable ultrafiltration performance.
机译:遵循非溶剂诱导相分离(NIPS)方法,通过将有机官能化的纳米添加剂浸渍在易结垢的聚砜基质中来开发混合基质膜(MMM)。通过使用两种不同的有机配体,轻松实现了锐钛矿型TiO2(纳米TiO2)纳米颗粒的功能化。进行了Tiron和变色酸的制备,分别获得了有机功能化的纳米添加剂FT-nano-TiO2和FC-nano-TiO2。通过X射线衍射,X射线光电子能谱,拉曼光谱和傅立叶变换红外光谱对纳米添加剂的结构特征进行了评估,结果表明Tiron导致了FT-nano-TiO2的螯合和桥联双齿几何结构的混合,而变色酸可生产FC-纳米-TiO2的桥接双齿和单齿几何。所研究的膜,聚砜(Psf):FT-nano-TiO2 UF和Psf:FC-nano-TiO2 UF的表面化学受到富含明显带电位点的纳米添加剂的良性分布的影响( - SO 3 H + ),如卓越的形态,改善的形貌,增强的表面亲水性和改变的电动特性所证明。膜表现出提高的溶剂通量,即。跨膜压力为1 bar时3500–4000和3400–4300 LMD,而其截留特性却没有显着降低。 MMM对牛血清白蛋白的通量回收率和抗污垢行为表明,纳米添加剂可赋予稳定且可观的抗污垢活性,潜在地有助于可持续的超滤性能。

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