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Study of Sulphonation Processes of the Expanded Polystyrene waste and Properties of the Obtained Products

机译:扩增聚苯乙烯废物的磺化过程及所得产物的性能研究

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@@1.Introduction More and more attention is paid to polymer wastes recycling due to their hazard to the environment. Chemical modification can be one of the ways of effective waste management. Products with an incorporated sulphonic group via sulphonation exhibit increased strength, hydrophilicity and proton conductivity. These features have led to a variety of applications of sulphonated polymers such as batteries, sensors, displays, ion-exchange resins and polyelectrolytes. Among the known methods of polystyrene sulphonation the sulphonation under heterogeneous conditions seems to be the most profitable. Therefore we applied Neihoff method of sulphonation to convert polystyrene waste into a polymeric water soluble flocculent[1]. These sulphonated derivatives usually fred application in the industrial water treatment due to the several times lower consumption of coagulants, shorter flocculation time and improved sedimentation properties of suspensions. However the Neihof method of sulphonation requires the usage of a significant excess of sulphuric acid in proportion to the polymer constitutional unit. Also, the separation of the products from the acid is a difficult and energy consuming process. In order to decrease the environmental hazard of the reaction and to increase its economy we decided to study the usefulness of the silica sulphuric acid in the polystyrene sulphonation reaction. Using this sulphonating agent we wanted to obtain products with properties of cation-exchange resin.
机译:@@ 1.介绍越来越多的关注,由于它们对环境的危害,对聚合物废弃的浪费。化学改性可以是有效废物管理的方式之一。通过磺化的辛磺基具有掺入的产物表现出增加的强度,亲水性和质子电导率。这些特征导致了各种磺化聚合物的应用,例如电池,传感器,显示器,离子交换树脂和聚电解质。在多苯乙烯磺化的已知方法中,异质条件下的磺化似乎是最有利可图的。因此,我们应用Neihoff方法的磺化方法将聚苯乙烯废物转化为聚合物水溶性絮凝物[1]。这些磺化衍生物通常由于凝结剂的消耗量较低,较短的絮凝时间和悬浮液的改善性能而改善沉降性能,通常在工业水处理中的应用。然而,磺化的NeiHof方法需要与聚合物结构单元的比例使用显着过量的硫酸。而且,来自酸的产物的分离是一种困难和能量的过程。为了降低反应的环境危害并增加其经济,我们决定研究二氧化硅硫酸在聚苯乙烯磺酸反应中的有用性。使用这种磺化剂,我们希望获得具有阳离子交换树脂性质的产品。

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