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Characterization of cationic polyacrylamide-grafted starch flocculant synthesized by one-step reaction

机译:一步法合成阳离子聚丙烯酰胺接枝淀粉絮凝剂的表征

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Cationic polyacrylamide-grafted starch (St-g-CPAM) flocculant was prepared by using corn starch and acrylamide (AM) as monomers, dimethyl diallyl ammonium chloride (DMDAAC) as cationic monomer through solution polymerization. The effects of initiator, reaction temperature, and monomer concentration on flocculation, the efficiency of grafting, and the yield of grafting were investigated. The results show that the optimal conditions of the polymerization are as follows: the concentration of ceric ammonium nitrate is 0.5%, the reaction temperature is 60°C, the concentration of total monomer is 20%, and the monomer ratio between AM and DMDAAC is 7: 3. The flocculation capability was characterized by turbidity reduction. The thermal behavior, chemical structure, and microstructure of St-g-CPAM were also investigated by thermal gravimetric, IR, and SEM analyses.
机译:以玉米淀粉和丙烯酰胺(AM)为单体,二甲基二烯丙基氯化铵(DMDAAC)为阳离子单体,通过溶液聚合制备阳离子聚丙烯酰胺接枝淀粉(St-g-CPAM)絮凝剂。研究了引发剂,反应温度和单体浓度对絮凝,接枝效率和接枝产率的影响。结果表明,该聚合反应的最佳条件为:硝酸铈铵的浓度为0.5%,反应温度为60℃,总单体的浓度为20%,AM与DMDAAC的单体比为: 7:3。絮凝能力的特征在于降低浊度。还通过热重,IR和SEM分析研究了St-g-CPAM的热行为,化学结构和微观结构。

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