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首页> 外文期刊>Separation and Purification Technology >Polyphosphazene membrane for desulfurization: Selecting poly[bis(trifluoroethoxy) phosphazene] for pervaporative removal of thiophene
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Polyphosphazene membrane for desulfurization: Selecting poly[bis(trifluoroethoxy) phosphazene] for pervaporative removal of thiophene

机译:用于脱硫的聚磷腈膜:选择聚[双(三氟乙氧基)磷腈]进行全蒸发去除噻吩

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Concerning the standstill state of pervaporation desulfurization, development of new pervaporation desulfurization membranes is vital. The polymer selection can be based on solubility parameter theory. Using group contribution method, the solubility parameter of poly[bis(trifluoroethoxy) phosphazene] (PTFEP) was calculated. The differences in solubility parameters between thiophene and polymers including PTFEP were calculated and investigated for their potential application as pervaporation desulfurization membranes. PTFEP had the most similar solubility parameter to thiophene among the polymers calculated in this work. The results indicated superior possibility for its application in pervaporation desulfurization. PTFEP was thus synthesized and characterized by DSC, GPC, XPS, ~1H-NMR and ~(31)P-NMR. The PTFEP composite membrane was fabricated and utilized in pervaporation removal of thiophene. A pretty high sulfur enrichment factor of 15.69 was obtained which confirmed the results suggested by the solubility parameter theory. Compared with literatures, we positively believe that an increase in solubility parameter differences causes a decrease in sulfur enrichment factor. Meanwhile, the swelling behavior and morphology of the membrane, the effect of feed temperature, and the effect of feed sulfur concentration were also investigated.
机译:关于全蒸发脱硫的静止状态,开发新的全蒸发脱硫膜至关重要。聚合物的选择可以基于溶解度参数理论。使用基团贡献法,计算了聚[双(三氟乙氧基)磷腈](PTFEP)的溶解度参数。计算并分析了噻吩与包括PTFEP在内的聚合物之间的溶解度参数差异,并研究了它们作为全蒸发脱硫膜的潜在应用。在这项工作中计算得出的聚合物中,PTFEP与噻吩的溶解度参数最相似。结果表明了其在全蒸发脱硫中的应用的巨大可能性。因此合成了PTFEP,并通过DSC,GPC,XPS,〜1H-NMR和〜(31)P-NMR进行了表征。制备了PTFEP复合膜,并用于全蒸发去除噻吩。获得了相当高的硫富集因子15.69,这证实了溶解度参数理论所建议的结果。与文献相比,我们肯定地认为,溶解度参数差异的增加会导致硫富集因子的降低。同时,还研究了膜的膨胀行为和形态,进料温度的影响以及进料硫浓度的影响。

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