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首页> 外文期刊>Separation and Purification Technology >Highly water selective silicotungstic acid(H4SiW12O40)incorporated novel sodium alginate hybrid composite membranes for pervaporation dehydration of acetic acid
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Highly water selective silicotungstic acid(H4SiW12O40)incorporated novel sodium alginate hybrid composite membranes for pervaporation dehydration of acetic acid

机译:高水选择性硅钨酸(H4SiW12O40)掺入的新型藻酸钠混合复合膜,用于乙酸的全蒸发脱水

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摘要

Silicotungstic acid incorporated sodium alginate(STA-NaAlg)hybrid composite membranes were prepared by incorporating 1,2,3 and 5 wt.% of silicotungstic acid(STA)into sodium alginate(NaAlg)and crosslinked with glutaraldehyde.Scanning electron microscopy and universal testing machine were used to investigate the morphology and the mechanical strength properties of the membranes.These membranes were tested for pervaporation(PV)dehydration of acetic acid at lower water concentrations of 10-25 wt.% in the feed.Addition of STA into NaAlg could result in a dramatic increase of water selectivity over that of plain NaAlg membrane dehydrating acetic acid for lowest STA containing NaAlg membrane.Thus,infinite selectivity was observed for STA-NaAlg membrane containing 1 wt.% of STA for all feed mixture compositions ranging from 10 to 25 wt.% water.With increasing STA content from 2,3 and 5 wt.% in NaAlg membranes,selectivities ranged from 22,491 to 288,12,848 to 192 and 6914 to 108,respectively for the studied composition range of the feed mixtures.PV performances of STA-NaAlg hybrid composite membranes were also tested at 40,50,60 and 70 deg C typically in case of 10 wt.% water-containing feed mixture,which indicated a decrease in selectivity and increase in flux for all hybrid composite membranes.Arrhenius plots of flux data versus reciprocal of temperature exhibited linear trends.The hydrophilic STA is responsible to offer increased selectivity and flux to water as compared to plain NaAlg membrane for the feed mixtures studied.Of all the membranes tested,the 1 wt.% STA containing NaAlg membrane exhibited the best PV performance characteristics.Temperature did not influence much the selectivity data of STA-NaAlg membrane containing 1 wt.% of STA up to 50 deg C,but flux increased with increasing temperature for all membranes.The results of this study are far superior to the previously reported data on acetic acid dehydration by the PV technique.
机译:通过将1,2,3和5 wt。%的硅钨酸(STA)掺入藻酸钠(NaAlg)中并与戊二醛交联来制备掺有硅钨酸的海藻酸钠(STA-NaAlg)混合复合膜。用机器研究膜的形貌和机械强度性能,测试了这些膜在进水10-25 wt。%的较低水浓度下乙酸的全蒸发(PV)脱水的能力。相对于普通的NaAlg膜脱水乙酸,对于最低含STA的NaAlg膜,水的选择性大大提高。因此,对于10%范围内的所有进料混合物,对于STA含量为1 wt%的STA-NaAlg膜,观察到了无限的选择性。到25 wt。%的水。随着NaAlg膜中STA含量从2,3和5 wt。%增加,选择性分别为22,491至288,12,848至192和6914至108还研究了STA-NaAlg杂化复合膜的PV性能,通常在40、50、60和70摄氏度下测试了10%(重量)的含水进料混合物的情况,这表明其降低了所有杂化复合膜的选择性和通量的增加。通量数据与温度倒数的阿伦尼乌斯图显示出线性趋势。亲水STA负责提供比普通NaAlg膜更高的水选择性和通量。在所有测试的膜中,含1wt。%的STA的NaAlg膜表现出最佳的PV性能特征。温度对含1wt。%的STA-NaAlg膜的选择性数据影响不大,直至50℃,但通量所有膜的温度都随着温度的升高而增加。这项研究的结果远远优于先前报道的通过PV技术进行乙酸脱水的数据。

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