Department of Chemical Engineering, Monash University, Clayton VIC 3800, Australia.
Membranes (Basel). 2015 Mar 20;5(1):136-49. doi: 10.3390/membranes5010136.
Internal concentration polarization (ICP) in forward osmosis (FO) process is a characteristic problem for asymmetric thin-film composite (TFC) FO membrane which leads to lower water flux. To mitigate the ICP effect, modification of the substrates' properties has been one of the most effective methods. A new polyethersulfone-based ultrafiltration membrane with increased surface porosity and high water flux was recently produced by incorporating Zn2GeO4 nanowires. The composite membrane was used as a substrate for the fabrication of TFC FO membrane, by coating a thin layer of polyamide on top of the substrate. The substrate and the nanowires were characterized by a range of techniques such as SEM, XRD, and contact angle goniometry. The water permeability and molecular weight cut-offs (MWCO) of the substrate; and the FO performance of the TFC membrane were also determined. The Zn2GeO4-modified membrane showed ~45% increase in water permeability and NaCl salt rejection of 80% under RO mode. In FO mode, the ratio of water flux to reverse solute flux was also improved. However, lower FO flux was obtained which could be due to ICP. The result shows that Zn2GO4 nanowire may be used as a modifier to the substrate to improve the quality of the polyamide layer on the substrate to improve the flux and selectivity, but not as effective in reducing ICP. This work demonstrates that the incorporation of nanomaterials to the membrane substrate may be an alternative approach to improve the formation of polyamide skin layer to achieve better FO performance.
正向渗透(FO)过程中的内浓差极化(ICP)是不对称薄膜复合(TFC)FO 膜的一个特征问题,会导致水通量降低。为了减轻 ICP 效应,改性基底的性质是最有效的方法之一。最近通过掺入 Zn2GeO4 纳米线制备了一种具有增加的表面孔隙率和高通量的新型聚醚砜基超滤膜。复合膜被用作 TFC FO 膜的基底,通过在基底上涂覆一层薄薄的聚酰胺。通过一系列技术对基底和纳米线进行了表征,例如 SEM、XRD 和接触角测角法。还测定了基底的水透过率和分子量截止值(MWCO);以及 TFC 膜的 FO 性能。Zn2GeO4 改性膜的水透过率提高了约 45%,在 RO 模式下 NaCl 盐的截留率为 80%。在 FO 模式下,水通量与反向溶质通量的比值也得到了提高。但是,FO 通量较低,这可能是由于 ICP。结果表明,Zn2GO4 纳米线可用作基底的改性剂,以改善基底上聚酰胺层的质量,从而提高通量和选择性,但在降低 ICP 方面效果并不明显。这项工作表明,将纳米材料掺入膜基底中可能是一种改善聚酰胺皮层形成的替代方法,以实现更好的 FO 性能。