首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Pervaporative performance of a PDMS/blended PES composite membrane for removal of toluene from water
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Pervaporative performance of a PDMS/blended PES composite membrane for removal of toluene from water

机译:PDMS / PES复合膜从水中去除甲苯的全蒸发性能

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摘要

A new membrane is developed, which is composed of highly crosslinked polydimethylsiloxane as the active layer on a support layer containing polyethersulfone and an appropriate additive (polyvinylpyrrolidone or polyethyleneglycol). The effect of porosity of the support layer on the performance of the fabricated membrane for pervaporative removal of toluene as a representative volatile organic compound from water is then studied. The support layer represents high porosity to improve the permeation rate of the composite membrane while it preserves the reasonable enrichment factor. It is shown that increasing in crosslinking time of the top layer decreases swelling degree of the membrane. The effects of operating parameters such as polymer concentration in the active layer, temperature, feed concentration, and stirring on the performance of pervaporative separation of toluene from water are evaluated. The results show that the enrichment factor is increased by increasing the polymer concentration in the top layer. The total activation energy and that for toluene are 29 and 0.22 kJ/mol, respectively. The increase in flux is retarded at high feed concentrations possibly due to a balance between cluster of water and the swelling effect. The membranes fabricated in the present study represent better pervaporative performances than those in literature.
机译:开发了一种新的膜,该膜由高度交联的聚二甲基硅氧烷作为活性层,该活性层位于包含聚醚砜和适当添加剂(聚乙烯吡咯烷酮或聚乙二醇)的支撑层上。然后研究了支撑层的孔隙率对所制得的膜的性能的影响,该膜用于从水中全蒸发除去作为代表性的挥发性有机化合物的甲苯。支撑层具有高孔隙率,可提高复合膜的渗透率,同时保留合理的富集系数。结果表明,增加顶层的交联时间降低了膜的溶胀度。评估了操作参数(例如活性层中的聚合物浓度,温度,进料浓度和搅拌)对甲苯与水的全汽分离性能的影响。结果表明,通过增加顶层中的聚合物浓度可以增加富集因子。总活化能和甲苯的总活化能分别为29和0.22kJ / mol。在高进料浓度下,通量的增加可能受阻,这可能是由于水团和溶胀作用之间的平衡所致。在本研究中制造的膜表现出比文献中更好的渗透性能。

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