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The potential of polystyrene-block-polybutadiene-block-polystyrene triblock co-polymer as a base-polymer of polymer inclusion membranes (PIMs)

机译:聚苯乙烯 - 嵌段 - 聚丁二烯 - 嵌段 - 聚苯乙烯三嵌段共聚物作为聚合物包合物膜(PIM)的基础聚合物

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The use of polystyrene-block-polybutadiene-block-polystyrene triblock co-polymer (SBS) as the base-polymer of polymer inclusion membranes (PIMs) is studied for the first time. SBS is an inexpensive and accessible thermoplastic elastomer which possesses the required properties to be used as a base-polymer in PIMs, namely mechanical strength and high resistance to acids/bases. Its compatibility with commonly used extractants in PIMs was assessed and it was observed that successful PIMs could be obtained when di(2-ethylhexyl)phosphoric acid (D2EHPA), LIX84I or tri-n-octylamine (TOA) were used as the extractants. The performance of these PIMs was investigated for the extraction of Zn(II), Cu(II) and Cr(VI), respectively, although only the TOA-based PIMs did not perform well. Both D2EHPA- and LIX84I-based PIMs were characterized by water contact angle measurements, atomic force microscopy, differential scanning calorimetry, and Fourier transform infrared spectroscopy. In comparison with PIMs containing other base-polymers, the SBS-based PIMs were found to extract faster and more Zn(II) or Cu(II), and moreover, the LIX84I-based PIM did not require the inclusion of an expensive plasticizer unlike its counterparts containing other commonly used base-polymers. The stability of these PIMs was also assessed over three transport cycles (i.e., simultaneous extraction and back-extraction), and it was observed that the transport rate decreased significantly when using D2EHPA-based PIMs, and in the case of LIX84I-based membranes it stabilized after the first cycle.
机译:首次研究了作为聚合物包合物(PIMS)的基础聚合物的聚苯乙烯 - 嵌段 - 聚丁二烯 - 嵌段 - 聚苯乙烯三嵌段共聚物(SBS)。 SBS是一种廉价且可接近的热塑性弹性体,其具有在PIMS中用作碱聚合物的所需性质,即机械强度和对酸/碱的高抗性。评估其与PIMS中常用的提取物的相容性,观察到,当使用二(2-乙基己基)磷酸(D2ehPA),LiX84i或三-N-辛基胺(ToA)作为萃取剂时,可以获得成功的PIM。研究了这些PIMS的性能,分别研究了Zn(II),Cu(II)和Cr(vi)的提取,尽管只有TOA的PIM态度没有表现良好。基于D2ehPA和LIX84I的PIM均以水接触角测量,原子力显微镜,差分扫描量热法和傅里叶变换红外光谱。与含有其他基础聚合物的PIM相比,发现基于SBS的PIM速度提取更快,更高Zn(II)或Cu(II),而且,基于Lix84i的PIM不需要包含昂贵的增塑剂其对应于含有其他常用的碱聚合物的对应物。这些PIMS的稳定性也在三个运输循环(即同时提取和后萃取)上进行评估,观察到在使用基于D2ehPA的PIM的情况下,在基于D2ehPA的PIM的情况下,运输速率显着降低在第一个循环后稳定化。

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