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Synthesis and characterization of polyester thin film composite membrane via interfacial polymerization: Fouling behaviour of uncharged solute

机译:通过界面聚合的聚酯薄膜复合膜的合成与表征:无充电溶质的污垢行为

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Most hydrolysis studies on biomass in Malaysia produce high amount of xylose and glucose compared to other monosaccharides and most of them are acidic. Thin film composite (TFC) membrane developed via interfacial polymerization using triethanolamine (TEOA) and trimesoyl chloride (TMC) as monomers allows separation at low pH to occur without damaging its performance. Comparative studies were carried out on membranes with and without the thin film layer formed via interfacial polymerization on the polyethersulfone (PES) support. The surfaces of the membranes were characterized by field emission scanning electronic microscopy (FESEM), attenuated total reflectance Fourier transform infrared (ATR-FTIR) spectroscopy, and hydrophilicity via contact angle measurement. In addition, the performance and uncharged solute fouling behaviour of TFC membrane were also investigated. The TFC membrane used for characterization purposes was prepared at TEOA concentration of 4 % w/v in 1 × 10~(-6) M sodium hydroxide solution, TMC concentration of 0.25 % w/v in pure hexane, reaction time of 45 minutes, and cured at temperature of 60 °C. Characterization results showed a huge different between the synthesized TFC membrane and the un-synthesized PES membrane in term of surface properties and morphology. Nanofiltration results indicate that the formation of thin layer on top of PES support membrane improved the separation performance compared to PES support membrane. The synthesised polyester TFC membrane have irreversible fouling of 11.02 (±5.60) % and reversible fouling of 5.59 % using water as cleaning agent.
机译:相比其他单糖在马来西亚的生物质水解大多数研究生产木糖和葡萄糖含量高,其中大部分是酸性的。使用三乙醇胺(TEOA)和均苯三甲酰氯(TMC)作为单体通过界面聚合开发薄膜复合(TFC)膜允许而不破坏其性能发生在低pH下的分离。比较研究了有和没有通过在聚醚砜(PES)支撑界面聚合形成的薄膜层上进行膜。通过场发射扫描电子显微镜(FESEM),衰减全反射傅里叶变换红外(ATR-FTIR)光谱,并通过接触角测量亲水性膜的表面进行了表征。此外,TFC膜的性能和不带电的溶质污染行为进行了研究。用于表征目的的TFC膜在4%w / v的浓度TEOA中制备1×10〜(-6)M氢氧化钠溶液,0.25%TMC的浓度重量/在纯己烷V,45分钟反应时间,和在60℃的温度下固化。表征结果表明合成的TFC膜和在表面性质和形态的术语未合成的PES膜之间的巨大差异。纳滤结果表明,相比于PES支撑膜上PES支撑膜的顶部薄层的形成改善了分离性能。将合成的聚酯TFC膜具有11.02(±5.60)不可逆污染%和使用水作为清洗剂的5.59%可逆污垢。

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