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Adsorption properties of benzene and water vapor on hyper-cross-linked polymers

机译:苯和水蒸气在超交联聚合物上的吸附性能

摘要

A series of hyper-cross-linked polymers (HCPs) was synthesized via a post-cross-linking reaction using low-cross-linked polydivinylbenzene (PDVB) as precursor and 4,40-bis(chloromethyl)biphenyl (BCMBP) as cross-linking reagent. The effects of various amounts of BCMBP on the structures of the hyper-cross-linked polymers were discussed. The resultant typical HCP-1.3 possesses hierarchical micro/meso pore structures and a high stability up to 400 degrees C. The increased specific surface area and total pore volume of HCP-1.3, which reach 1231 m(2) g(-1) and 1.99 cm(3) g(-1), respectively, imply the high cross-linking ability of BCMBP. In order to study the adsorption properties of HCP-1.3, benzene and water were selected as typical adsorbates for their non-polar and polar characteristics. The static adsorption amount of benzene on HCP-1.3 is 30.0 mmol g(-1), which is two times higher than the corresponding adsorbed water amount, suggesting a potential hydrophobic property of HCP-1.3. Dynamic adsorption was performed with a fixed-bed column to simulate the real situation under dry and 30% relative humidity conditions. The results show the dynamic adsorption amount under the 30% relative humidity condition is as high as 90% of the value under dry conditions, implying HCP-1.3 would be a promising adsorbent for VOC adsorption under both dry and humid conditions.
机译:通过低交联的聚二乙烯基苯(PDVB)作为前体和4,40-双(氯甲基)联苯(BCMBP)作为交联剂,通过后交联反应合成了一系列超交联聚合物(HCP)。连接试剂。讨论了各种量的BCMBP对超交联聚合物结构的影响。生成的典型HCP-1.3具有分层的微孔/中孔结构,并在400摄氏度以下具有很高的稳定性。HCP-1.3的比表面积和总孔体积增加,达到了1231 m(2)g(-1)和1.99 cm(3)g(-1),分别表示BCMBP的高交联能力。为了研究HCP-1.3的吸附性能,选择苯和水作为其非极性和极性特性的典型吸附物。苯在HCP-1.3上的静态吸附量为30.0 mmol g(-1),比相应的吸附水量高两倍,表明HCP-1.3具有潜在的疏水性。用固定床色谱柱进行动态吸附以模拟干燥和相对湿度为30%的实际情况。结果表明,在30%相对湿度条件下的动态吸附量高达在干燥条件下的动态吸附量的90%,这表明HCP-1.3在干燥和潮湿条件下均是有希望的VOC吸附剂。

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