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Evaluating the performance of chitosan and chitosan-palm membrane for water treatment: preparation, characterization and purification study

机译:评估壳聚糖和壳聚糖 - 棕榈膜进行水处理的性能:制备,表征和净化研究

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In this research, the membranes were stemmed from the biopolymer containing quaternary amine moieties (Chitosan and Chitosan-palm) for nanofiltration purposes. The developed membranes were fully featured using different characterization techniques (SEM), (TGA), zeta potential, and contact angle measurement. The membrane’s features were systematically characterized in hydrophilicity contact angle, surface morphology, and charge on the surface, acidity, and water permeability. The permeability of water for the chitosan membrane with palm was 3.04?±?0.12?L m ?2 h ?1 bar ?1 twice as the average permeability of the pristine chitosan membrane 1.68?±?0.04?L m ?2 .h ?1 .bar ?1 . The salt rejection was enhanced (from 5% for NaCl to 70% for MgCl 2 in the same condition). These membranes could endure up to 22?bar. Therefore, the developed Chitosan and chitosan-palm membranes are more noteworthy for water treatment than the other commercially available membranes and costly activated carbons.
机译:在该研究中,膜源于含纳滤液的季胺部分(壳聚糖和壳聚糖 - 棕榈)的生物聚合物。 使用不同的表征技术(SEM),(TGA),Zeta电位和接触角测量来完全特征。 膜的特征在系统地具有亲水性接触角,表面形态,以及表面,酸度和水渗透性的电荷。 用棕榈壳聚糖膜的水的渗透率为3.04?±0.12?1 m?2小时?1巴?1两次作为原始壳聚糖膜的平均渗透性为1.68?0. 04?l m?2 .h? 1.bar?1。 在相同条件下增强盐排斥(从NaCl 2的5%至70%)。 这些膜可以持续到22个?吧。 因此,开发的壳聚糖和壳聚糖 - 棕榈膜对水处理比其他商业上可获得的膜和昂贵的碳的碳纤维更令人敬畏。

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