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P(DMC-AM)阳离子高分子絮凝剂的制备
引用本文:韩运华,蒋薇,石磊. P(DMC-AM)阳离子高分子絮凝剂的制备[J]. 吉林化工学院学报, 2012, 29(11): 9-12
作者姓名:韩运华  蒋薇  石磊
作者单位:1. 吉林化工学院化工与材料工程学院,吉林吉林,132022
2. 吉林石化公司有机合成厂动力车间,吉林吉林,132021
摘    要:论述了高相对分子质量阳离子聚(甲基丙烯酰氧乙基三甲基氯化铵-丙烯酰胺)[P(DMC-AM)]絮凝剂的制备及絮凝性能研究,讨论了多种因素对絮凝效果的影响.当ω(单体)=40%;m(DMC):m(AM)=3:2;m(引发剂):m(单体)=0.05:100时,得到的阳离子型P(DMC-AM)高分子絮凝剂对造纸污水及生活废水有明显的絮凝作用.P(DMC-AM)的最佳絮凝条件为:相对分子质量为500万,用量为1.1~1.3mg/L,阳离子度为33%~38%,废水pH=3~7,在造纸污(废)水体系中,CODCr的去除率可达89%以上,透光率接近100%.

关 键 词:阳离子絮凝剂  丙烯酰胺  甲基丙烯酰氧乙基三甲基氯化铵  反相乳液聚合

Synthesis of Cationic Polymeric Flocculant -DMC Copolymer P ( DMC-AM )
HAN Yun-hua,JIANG Wei,SHI Lei. Synthesis of Cationic Polymeric Flocculant -DMC Copolymer P ( DMC-AM )[J]. Journal of Jilin Institute of Chemical Technology, 2012, 29(11): 9-12
Authors:HAN Yun-hua  JIANG Wei  SHI Lei
Affiliation:1.College of Chemical and Materials Engineering,Jilin Institute of Chemical Technology,Jilin City 132022,China;2.The Power Workshop of Jilin Petrochemical Company Organize Synthesis,Jilin City 132021,China)
Abstract:This paper deals with the preparation of cationic P(DMC-AM) flocculant and its capability of coagulation. Studies were focused on the factors influencing the flocculating performance.When w(monomers) = 40%,m(DMC):m(AM)=3:2,and m(initiator):m(monomers) = 0.5:100,the flocculant P(DMCAM) obtained had molecularweight =500×104andcationicdegree =33%~38%.Withdosage = lol-lo3mg/L, the COD removal efficiency in organic wastewater amounts to 89%,and the transmittance is nearly 100%.It is superior to other flocculants obviously.The bridge connecting action might be the main reason to form hard flocculating system.Also the structure morphology was studied by SEM method.The results show that we can find a lot of physical absorption sites,structure of cross netting is obvious,and the network weaves delicately among the fibers after flocculating.This indicates that actions of bridge uniting and electric neutralization are obvious,and the flocculating performance is excellent.
Keywords:cationic polymer flocculating agent  acrylamide  acryloxyethyl trimethylammonium chloride  inverse emulsion polymerization
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