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Cationic Gelatin Graft Copolymers: Synthesis, Characterization and Application

机译:阳离子明胶接枝共聚物:合成,表征和应用

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A novel cationic gelatin graft copolymer was developed by the graft copolymerization reaction of gelatin with acrylamide (AM) and methacryloyloxyethyl trimethylammonium chloride (DMC) in this paper. The structure of graft copolymer was analyzed briefly by the analysis of infrared spectrum, and it was found that monomers (AM and DMC) actually were grafted onto the backbone of gelatin. The effect of reaction conditions such as the weight ratios of AM/gelatin or AM/DMC on grafting parameters and the application of the cationic graft copolymer as the dry strength agent in papermaking were investigated. Experiments showed that a graft copolymer with high the percent grafting and the grafting efficiency could be obtained by controlling the AM/gelatin weight ratio and AM/DMC weight ratio. The application test showed that the results obtained from the physical intensities of handsheets under the treatment of the grafted gelatin [gel-g-P(AM-co-DMC)] were great better than the control sample, which was due to the hydrogen bonds and ionic bonds among fibres in pulp and cationic graft copolymer.
机译:本文用聚明胶与丙烯酰胺(AM)和甲基丙烯酰氧基乙基三甲基氯化铵(DMC)的接枝共聚反应开发了一种新型阳离子明胶接枝共聚物。通过分析红外光谱简要地分析接枝共聚物的结构,发现单体(AM和DMC)实际上接枝到明胶的骨架上。研究了反应条件如am / gelatin或am / dmc的重量比在接枝参数上的影响和阳离子接枝共聚物作为造纸中的干强剂的应用。实验表明,通过控制AM /明胶重量比和AM / DMC重量比可以获得高百分比接枝和移植效率的接枝共聚物。施用测试表明,从接枝的明胶[GEL-GP(AM-CO-DMC)的处理下的手抄夹的物理强度获得的结果比对照样品更好,这是由于氢键和离子的纸浆中的纤维粘合和阳离子接枝共聚物。

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