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Study on the synthesis and application of starch-graft-poly(AM-co-DADMAC) by using a complex initiation system of CS-KPS

机译:CS-KPS复合引发体系合成淀粉接枝聚(AM-co-DADMAC)及其应用研究

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摘要

A graft copolymer was synthesized by graft copolymerization of starch with acrylamide (AM) and diallyldimethylammonium chloride (DADMAC). The copolymerization was carried out using a complex initiation system of cerium sulfate (CS) and potassium persulfate (KPS). The effects of reaction conditions on graft copolymerization and use of these copolymers as additives in papermaking was investigated. Experiments showed that a graft copolymer with higher grafting level, higher intrinsic viscosity and higher cationic degree could be obtained by changing the method of monomer addition and by controlling the ratio of DADMAC to AM. The graft copolymerization was more effective when the complex initiation system of CS-KPS was used. When adding 0.05% of the grafted starch [S-g-P(AM-co-DADMAC)] to the papermaking system, a higher filler retention was obtained than with cationic starch and cationic polyacrylamide when the cationic degree of S-g-P(AM-co-DADMAC) was 22% and its intrinsic viscosity was 7.35.
机译:通过淀粉与丙烯酰胺(AM)和二烯丙基二甲基氯化铵(DADMAC)的接枝共聚反应合成接枝共聚物。使用硫酸铈(CS)和过硫酸钾(KPS)的复杂引发体系进行共聚。研究了反应条件对接枝共聚反应的影响以及这些共聚物在造纸中作为添加剂的用途。实验表明,通过改变单体的添加方法和控制DADMAC与AM的比例,可以得到接枝水平,特性粘度和阳离子度较高的接枝共聚物。当使用CS-KPS的复杂引发体系时,接枝共聚更为有效。当将0.05%的接枝淀粉[SgP(AM-co-DADMAC)]添加到造纸系统中时,与阳离子淀粉和阳离子聚丙烯酰胺相比,当SgP(AM-co-DADMAC)的阳离子度为0时,填料保留率更高。 22%,其特性粘度为7.35。

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