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Surface Modification of Cellulose Acetate Membrane Using Thermal Annealing to Enhance Produced Water Treatment

机译:醋酸纤维素膜的表面改性使用热退火增强产生的水处理

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This study is performed primarily to investigate the effect of surface modification of cellulose acetate using thermal annealing on the enhancement of membrane performance for produced water treatment. In this study, Cellulose Acetate membranes were casted using dry/wet phase inversion technique. The effect of additive and post-treatment using thermal annealing on the membrane surface were examined for produced water treatment. Therma annealing was subjected to membrane surface at 60 and 70 °C for 5, 10 and 15 second, respectively. Membrane characterizations were done using membrane flux and rejection with produced water as a feed, Scanning Electron Microscopy (SEM) and Fourier Transform Infra Red (FTIR) analysis. Experimental results showed that asymmetric cellulose acetate membrane can be made by dry/wet phase inversion technique. The results from the Scanning Electron Microscopy (FESEM) analysis was also confirmed that polyethylene glycol as additivie in dope solution and thermal annealing was affected the morphology and membrane performance for produced water treatment, respectively. Scanning electron microscopy micrographs showed that the selective layer and the substructure of membrane became denser and more compact after the thermal annealing processes. Therefore, membrane rejection was significantly increased while the flux was slighty decreased, respectively. The best membrane performance is obtained on the composition of 18 wt % cellulose acetate, poly ethylene glycol 5 wt% with thermal annealing at 70 ~°C for 15 second.
机译:该研究主要是为了研究醋酸纤维素表面改性的影响,使用热退火对生产水处理进行膜性能的增强。在该研究中,使用干/湿相反转技术铸造醋酸纤维素膜。检查添加剂和后处理在膜表面上使用热退火的效果进行水处理。 Therma退火分别在60和70℃下进行膜表面,分别为5,10和15秒。使用膜通量和用产水作为饲料的抑制来进行膜特征,扫描电子显微镜(SEM)和傅里叶变换红外线(FTIR)分析。实验结果表明,不对称纤维素醋酸纤维膜可以通过干/湿相倒置技术制备。扫描电子显微镜(FESEM)分析的结果也证实,聚乙二醇作为掺杂剂溶液中的ADDITIVIE和热退火的结果分别影响了生产水处理的形态和膜性能。扫描电子显微镜显微照片显示,在热退火过程后,膜的选择层和膜的子结构变得更浓,更紧凑。因此,膜排斥显着增加,同时磁通量分别减少。在18wt%乙酸纤维素的组合物上获得最佳膜性能,聚乙二醇5wt%在70〜℃下热退火15秒。

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