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首页> 外文期刊>The Korean journal of chemical engineering >Forward osmosis process membranes incorporated with functionalized P.ZnO nanoparticles for organic fouling control
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Forward osmosis process membranes incorporated with functionalized P.ZnO nanoparticles for organic fouling control

机译:掺入官能化P.ZnO纳米粒子的前渗透过程膜用于有机污垢控制

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摘要

The incorporation of functional nanoparticles in polyamide (PA) membranes is an efficient procedure for the thin film nanocomposite (TFN) membranes development with enhanced desalination efficiency. Our aim was to synthesize forward osmosis process (FOP) membranes incorporated with PIP-functionalized ZnO (P.ZnO) nanoparticles, which were produced with surface functionalities groups of amine, epoxy and hydroxyl. The outcomes of FTIR confirmed the synthesis of P.ZnO nanoparticles, while WCA, AFM and FESEM supported the alterations in chemical and physical attributes of the FOP membranes surface upon P.ZnO nanoparticles incorporation. In both reverse osmosis process (ROP) and FOP tests, outcomes illustrated that the TFN-P.ZnO0.03 membrane was the most promising FOP and ROP membrane as it exhibited 119% higher pure water flux (PWF) (in FOP test) than the base FOP membrane. In terms of FOP membrane fouling propensity, the TFN-P.ZnO0.03 membrane also illustrated lower fouling propensity compared to the base membrane. Our outcomes have provided novel intuition into the structure-efficiency correlation of TFN FOP membranes and can be advantageous for the synthesis of the wide confinement of nanoparticles incorporated FOP membranes.
机译:功能纳米颗粒的在聚酰胺(PA)膜的结合是用于薄膜纳米复合材料(TFN)的膜具有增强的脱盐效率发展有效的过程。我们的目的是合成具有PIP官能化的ZnO(P.ZnO)纳米颗粒,其被生产与胺,环氧基和羟基的表面功能基团引入正向渗透过程(FOP)膜。 FTIR的结果证实P.ZnO纳米粒子的合成,而WCA,AFM和FESEM支撑在FOP膜的化学和物理属性改变时P.ZnO纳米颗粒掺入表面。在这两种反渗透工艺(ROP)和FOP测试,结果示出的是TFN-P.ZnO0.03膜是最有前途的FOP和ROP膜,因为它显示出119%提高的纯水通量(PWF)(在FOP测试)比基FOP膜。在FOP膜污染倾向的观点出发,TFN-P.ZnO0.03膜相比基底膜还示出低结垢倾向。我们的结果提供了新颖的直觉到TFN FOP膜的结构效率相关,并且可以用于并入FOP膜纳米颗粒的宽限制的合成是有利的。

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