School of Chemistry, College of Science, University of Tehran, P.O. Box 14155-6619, Tehran, Iran; Department of Mechanical Engineering, 10-367, Donadeo Innovation Center for Engineering, Advanced Water Research Lab (AWRL), University of Alberta, Edmonton, AB, Canada.
School of Chemistry, College of Science, University of Tehran, P.O. Box 14155-6619, Tehran, Iran.
Chemosphere. 2020 Jan;238:124691. doi: 10.1016/j.chemosphere.2019.124691. Epub 2019 Aug 27.
In recent years, forward osmosis (FO) has represented numerous potential applications in safe water production. In this study, we improved the performance of FO thin film composite (TFC) membranes for the removal of trace organic compounds (TOrCs) by tuning the chemistry of its top active layer. The TFC membranes were synthesized by interfacial polymerization (IP) reaction between amine-containing monomers, e.g., meta-phenylene diamine (MPD) or para-phenylenediamine (PPD), and an acid chloride monomer, e.g., trimesoyl chloride (TMC). Owing to three free amine functionals over main core, melamine was used in the amine monomers solution to increase cross-linking among polyamide chains. Chemical and morphological characterization of the prepared membranes confirmed that melamine was successfully incorporated into the chemical structure of the top PA layer. Two agricultural toxic materials (atrazine and diazinon) were used to investigate the capability of the newly fabricated membranes in the removal of TOrCs. The obtained results showed that melamine-improved FO membranes provided higher atrazine and diazinon rejections in two different FO membrane configurations, including active layer facing feed solution (ALF) and active layer facing draw solution (ALD). The highest rejections of both diazinon (99.4%) and atrazine (97.3%) were achieved when the melamine modified MPD-based membrane served in ALF mode with 2 M NaCl as a draw solution.
近年来,正向渗透(FO)在安全饮用水生产方面具有许多潜在的应用。在这项研究中,我们通过调整其顶层活性层的化学性质来提高 FO 薄膜复合(TFC)膜去除痕量有机化合物(TOrCs)的性能。TFC 膜是通过含胺单体(如间苯二胺(MPD)或对苯二胺(PPD))和酰氯单体(如均苯三甲酰氯(TMC))之间的界面聚合(IP)反应合成的。由于主链上有三个游离的胺官能团,三聚氰胺被用于胺单体溶液中,以增加聚酰胺链之间的交联。制备的膜的化学和形态特征证实了三聚氰胺已成功地掺入到顶层 PA 层的化学结构中。两种农业有毒物质(莠去津和二嗪农)被用于研究新制备的膜在去除 TOrCs 方面的能力。所得结果表明,在两种不同的 FO 膜构型中,包括活性层面向进料溶液(ALF)和活性层面向汲取溶液(ALD),三聚氰胺改性的 FO 膜提供了更高的莠去津和二嗪农去除率。当以 2 M NaCl 为汲取液的三聚氰胺改性 MPD 基膜在 ALF 模式下运行时,二嗪农(99.4%)和莠去津(97.3%)的去除率最高。