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Separation of organic mixtures by pervaporation using crosslinked rubber membranes

机译:使用交联的橡胶膜通过全蒸发分离有机混合物

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Natural rubber (NR) and poly(styrene-co-butadiene) rubber (SBR) has been crosslinked with sulfur and accelerator with three different doses of varied accelerator to sulfur ratios to obtain three crosslinked membranes from each of these two rubbers (NR-1, NR-2 and NR-3 and SBR-1, SBR-2 and SBR-3). These six rubber membranes were used for pervaporative separation of toluene-methanol mixture up to 10 wt% of toluene in feed. It has been found that with increase in accelerator to sulfur ratio from membrane-3 to membrane-1, the vulcanization system shifts from conventional to efficient system resulting in higher degree of crosslink density and permeation selectivity. All of these membranes showed reasonably good range of flux (45.26 gm/m~2 h for NR-3 to 12.0 gm/m~2 h for SBR-1) and separation factor (162 for SBR-1 to 35.12 for NR-3) for 0.55 wt% of toluene in feed. Among these membranes NR-1 and SBR-1 with highest crosslink density showed maximum separation factor for toluene along with good flux. It has also been found that for comparable crosslink density SBR membranes showed better separation factor than NR membranes.
机译:天然橡胶(NR)和聚(苯乙烯-共-丁二烯)橡胶(SBR)已通过硫和促进剂以三种不同剂量的不同促进剂与硫的比例进行交联,从而从这两种橡胶(NR-1 ,NR-2和NR-3以及SBR-1,SBR-2和SBR-3)。这六个橡胶膜用于甲苯和甲醇混合物的全汽化分离,最高进料中甲苯的含量为10 wt%。已经发现,随着促进剂与硫的比率从膜3到膜1的增加,硫化体系从常规体系转变为有效体系,从而导致更高程度的交联密度和渗透选择性。所有这些膜都显示出合理的通量范围(NR-3为45.26 gm / m〜2 h,SBR-1为12.0 gm / m〜2 h)和分离系数(SBR-1为162 NR-3为35.12) )进料中甲苯的0.55 wt%在这些膜中,具有最高交联密度的NR-1和SBR-1表现出最大的甲苯分离因子和良好的通量。还发现对于可比的交联密度,SBR膜显示出比NR膜更好的分离因子。

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