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Polypropylene membranes modified with interpenetrating polymer networks for the removal of chromium ions

机译:用互穿聚合物网络改性的聚丙烯膜,用于去除铬离子

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Polypropylene (PP) membranes incorporating poly[(ar-vinylbenzyl) trimethylammonium chloride] P(ClVBTA), and poly[sodium (styrene sulfonate)] P(SSNa) were modified via an in situ radical polymerization synthesis. Two methods were used for impregnation of the reactive solution: pressure injection and plasma superficial activation with argon gas. The following conditions were varied: the monomer concentrations, number of injections, and cross-linked concentration. The modified polypropylene membranes were then characterized using scanning electron microscopy/energy dispersive X-ray spectroscopy, Fourier transform-infrared spectroscopy, electrokinetic potential, and Donnan dialysis for the chromium ions transport. The modified membranes exhibited a hydrophilic character with a water uptake capacity between 15% and 20% and a percent modification between 2.5% and 4.0%. This was compared with the results of an unmodified polypropylene membrane as the blank and the mentioned polypropylene membrane has not the capacity to uptake water because this kind of material is highly hydrophobic. Hexavalent chromium ions were efficiently transported by the modified membranes containing P(ClVBTA) via a plasma method and it achieved 59.2% extraction at pH 9.0 using a 1-mol L-1 NaCl extraction agent. Therefore, unmodified polypropylene membrane shows an extraction percentage close to 10% from the hexavalent chromium ions at pH 9.0. In the same way, the trivalent chromium transport using membranes modified with P(SSNa) achieved 49.0% extraction at pH 2.0 using 1 x 10(-1) mol L-1 HNO3 and 1 mol L-1 NaCl as the extraction agents. Moreover, the unmodified polypropylene membrane reached a value close to 10% from the trivalent chromium ions using 1 x 10(-1) mol L-1 HNO3 and 1 mol L-1 NaCl. (c) 2015 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2015, 132, 41953.
机译:通过原位自由基聚合合成法,对掺有聚[(芳乙烯基苄基)三甲基氯化铵] P(ClVBTA)和聚[(苯乙烯磺酸钠)] P(SSNa)的聚丙烯(PP)膜进行改性。两种方法用于反应溶液的浸渍:压力注入和氩气等离子体表面活化。改变以下条件:单体浓度,进样次数和交联浓度。然后使用扫描电子显微镜/能量色散X射线光谱仪,傅立叶变换红外光谱仪,电动势和Donnan渗析对铬离子的传输进行表征。改性膜表现出亲水性,其吸水量在15%至20%之间,改性百分率在2.5%至4.0%之间。将该结果与未改性的聚丙烯膜作为空白的结果进行比较,并且所述聚丙烯膜不具有吸水的能力,因为这种材料是高度疏水的。六价铬离子可通过等离子方法通过含P(ClVBTA)的改性膜有效地运输,并使用1摩尔L-1 NaCl萃取剂在pH 9.0时达到59.2%的萃取率。因此,未改性的聚丙烯膜在pH 9.0时从六价铬离子中的提取率接近10%。同样,使用1×10(-1)mol L-1 HNO3和1 mol L-1 NaCl作为萃取剂,使用P(SSNa)修饰的膜进行的三价铬运输在pH 2.0时实现了49.0%的萃取。此外,使用1 x 10(-1)mol L-1 HNO3和1 mol L-1 NaCl,未改性聚丙烯膜的三价铬离子值接近10%。 (c)2015 Wiley Periodicals,Inc. J. Appl。 Polym。科学2015,132,41953。

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