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Influences of sulfonation level on the nanofiltration performance of sulfonated graphene oxide polyamide nanocomposite membranes

机译:磺化水平对磺化石墨烯氧化物聚酰胺纳米复合膜的纳米滤波性能的影响

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In this study, thin-film nanocomposite (TFN) membranes containing sulfonated graphene oxide (SGO) were prepared and used for water desalination. SGO sulfonation level influences on the physicochemical and separation performance of the prepared TFNs were studied. The TFN membranes were synthesized by interfacial polymerization of 1,3-Phenylene diamine (MPD),1,3,5-benzenetricarbonyl trichloride, and sodium dodecyl sulfate as an additive on polyethersulfone support, while GO and SGOs were dispersed in an aqueous solution of MPD. The physicochemical characterization of GO and SGO samples revealed that the sulfonation level of GO greatly influences the interlayer d-spacing, ion exchange capacity, and zeta potential of GO. Morphology analysis confirmed that GO and SGO were incorporated into the polyimide layer and that the SGO sulfonation level greatly influences the surface morphologies of TFN membranes. Generally, SGO incorporated TFN membranes provided higher hydrophilicity, water uptake, and more desirable surface morphologies for the desalination processes. Increasing the sulfonation level from 25 to 50% wt of sulfanilic acid to GO led to a notable improvement in the salt rejection of SGO-incorporated TFNs, and it reached to about 97% for Na2SO4. This was also accompanied by a considerable increase in these membranes' pure water flux, compared to the GOcontaining TFN membranes (- 42%) and the TFC membranes (- 4 times). Furthermore, the flux recovery ratio of this membrane was about 24% higher compared to the unmodified membranes, indicating the promising influences of the sulfonated groups on the compatibility, recovery and the reuse of TFN membranes.
机译:在该研究中,制备薄膜纳米复合材料(TFN)含有磺化石墨烯(SGO)的膜并用于水脱盐。研究了对制备的TFN的物理化学和分离性能的SgO磺化水平影响。通过1,3-亚苯基二胺(MPD),1,3,5-苯甲烷基三氯化物的界面聚合来合成TFN膜,以及在聚醚砜载体上作为添加剂的十二烷基硫酸钠,而GO和SGOS分散在水溶液中MPD。 Go和Sge样本的物理化学表征揭示了磺化水平大大影响了层间D-间距,离子交换能力和Zeta电位。形态学分析证实,将GO和SgO掺入聚酰亚胺层中,并且Sge磺化水平大大影响TFN膜的表面形态。通常,SgO掺入的TFN膜提供脱盐过程的更高的亲水性,水吸收和更理想的表面形态。将磺化水平从25-50%加入磺酸的磺酸液中,导致Sgo掺入的TFN的盐排斥的显着改善,并且达到Na 2 SO 4的约97%。与Gocontaining TFN膜( - 42%)和TFC膜( - 4次)相比,这也伴随着这些膜的纯净水通量的相当大增加。此外,与未修饰的膜相比,该膜的助焊剂回收率约为24%,表明磺化基团对TFN膜的相容性,回收率和再利用的有前途的影响。

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