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Styrene-butadiene rubber membranes for the pervaporative separation of benzene/cyclohexane mixtures

机译:苯乙烯-丁二烯橡胶膜,用于全蒸发分离苯/环己烷混合物

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摘要

Styrene-butadiene rubber membranes with methylene bridges, stemming from the concomitant in situ Friedel-Crafts alkylation during a chloromethylation reaction, were prepared and used in the pervaporative separation of benzene/cyclohexane mixtures. A set of four membranes with different crosslinking extents was achieved by the variation of the [Trimethylchlorosilane (TMCS)]/[Paraformaldehyde (PF)] molar ratios with respect to the styrene (St) unit. Study of the swelling of membranes by the mixture components individually and by their feed mixture compositions, 1: 1 and 1: 9, was conducted. The total flux (J) and the separation factor (α) were assessed as a function of the feed composition, temperature, and [St unit]/[TMCS]/[PF] molar ratios. The highest J and α measured in this study were 1401 g m~(-2) h ~(-1) and 28.50, respectively. The diffusion selectivity was found to depend on the crosslinking extent of the membrane.
机译:制备具有亚甲基桥的苯乙烯-丁二烯橡胶膜,其源于在氯甲基化反应中伴随的原位弗里德-克来福特烷基化反应,并将其用于苯/环己烷混合物的全蒸发分离。通过改变[三甲基氯硅烷(TMCS)] / [多聚甲醛(PF)]相对于苯乙烯(St)单元的摩尔比,可获得一组具有不同交联程度的四个膜。分别通过混合物组分及其进料混合物组成1:1和1:9对膜的溶胀进行了研究。根据进料组成,温度和[St单位] / [TMCS] / [PF]摩尔比评估总通量(J)和分离因子(α)。本研究中测得的最高J和α分别为1401 g m〜(-2)h〜(-1)和28.50。发现扩散选择性取决于膜的交联程度。

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