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Exploration of nanocomposite membranes composed of phosphotungstic acid in sodium alginate for separation of aqueous-organic mixtures by pervaporation

机译:海藻酸钠中由磷钨酸组成的纳米复合膜的研究,用于通过全蒸发分离水-有机混合物

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摘要

Phosphotungstic acid (PTA) in unmodified and modified form (by ammonium carbonate) was incorporated as filler nanoparticles in different compositions (3%, 5%, 7% and 10%) in sodium alginate (NaAlg) to develop nanocomposite membranes (NCMs) by solution casting method and cross-linked with glutar-aldehyde. The performance of these NCMs has been tested over that of pristine NaAlg membrane for dehydration of isopropanol and ethanol via the pervaporation (PV) technique. Membranes were characterized by a variety of techniques. The PV performance was investigated over the feed water composition of 10-30wt.% and temperature interval of 30-60 °C. Improvement in separation performance was observed for the modified membranes than the unmodified membranes, suggesting the importance of chemical modification of PTA nanoparticles to avoid the leaching problem. The NaAlg membrane containing 10wt.% modified PTA showed the highest PV performance, clearly indicating the effect of adding modified PTA.
机译:以未改性和改性形式(由碳酸铵)制成的磷钨酸(PTA)作为填料纳米粒子掺入海藻酸钠(NaAlg)中的不同组成(3%,5%,7%和10%)中,从而开发出纳米复合膜(NCM)。溶液浇铸法并与戊二醛交联。这些NCM的性能已经过原始NaAlg膜的测试,可通过全蒸发(PV)技术进行异丙醇和乙醇的脱水。膜具有多种技术特征。在10-30wt。%的进水组成和30-60°C的温度区间内研究了PV性能。观察到改性膜比未改性膜的分离性能有所提高,这表明对PTA纳米粒子进行化学改性以避免浸出问题的重要性。含有10wt。%改性PTA的NaAlg膜显示出最高的PV性能,清楚地表明了添加改性PTA的效果。

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