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Improved Desulfurization Performance of Polyethyleneglycol Membrane by Incorporating Metal Organic Framework CuBTC

机译:引入金属有机骨架CuBTC改善聚乙二醇膜的脱硫性能

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摘要

In this paper, copper benzene-1,3,5-tricarboxylate (CuBTC) was incorporated into polyethylenglyol (PEG) to prepare a mixed matrix membrane (MMM) for pervaporation desulfurization. The characterization results showed that the prepared CuBTC particles had an ideal octahedral shape and micropores. The Cu in CuBTC interacts with thiophene via π-complexation, thus enhancing the separation performance of the hybrid membranes. The effect of CuBTC content and the operating condition on the pervaporation performance of the MMMs was investigated. An optimal pervaporation separation performance was acquired with a permeation flux of 2.21 kg/(m ·h) and an enrichment factor of 8.79, which were increased by 100% and 39% compared with the pristine PEG membrane. Moreover, the CuBTC-filled PEG membrane showed a good stability in the long-term desulfurization under a high operating temperature of 75 °C for five days.
机译:本文将1,3,5-三羧酸铜苯(CuBTC)掺入聚乙二醇(PEG)中以制备用于全蒸发脱硫的混合基质膜(MMM)。表征结果表明,制备的CuBTC颗粒具有理想的八面体形状和微孔。 CuBTC中的Cu通过π络合物与噻吩相互作用,从而增强了杂化膜的分离性能。研究了CuBTC含量和操作条件对MMM渗透汽化性能的影响。获得最佳的渗透蒸发分离性能,渗透通量为2.21 kg /(m·h),富集系数为8.79,与原始PEG膜相比,分别增加了100%和39%。此外,填充CuBTC的PEG膜在75°C的高工作温度下进行五天的长期脱硫显示出良好的稳定性。

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