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耐盐性高吸水树脂的反相悬浮制备过程及其结构表征

Process and structure characterization of salt-tolerable super absorbent polymer prepared by inversed phase suspension polymerization

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【作者】 葛艳蕊张炳烛冯薇张林雅于明江

【Author】 GE Yan-rui~1,ZHANG Bing-zhu~2,FENG Wei~1,ZHANG Lin-ya~1,YU Ming-jiang~1(1.Department of Chemistry and Pharmacy Engineering,Hebei University of Science and Technology,Shijiazhuang 050018,China;2.Division of Science and Technology,Hebei University of Science and Technology,Shijiazhuang 050018,China)

【机构】 河北科技大学化学与制药工程学院河北科技大学科研处河北科技大学化学与制药工程学院 河北石家庄050018河北石家庄050018

【摘要】 采用反相悬浮法合成耐盐性高吸水丙烯酸盐共聚物P(KAA-AM-NAM),研究了分散剂种类和用量、共聚单体配比等因素对聚合过程及产物吸水性的影响。利用电导、像衬光学显微镜对反相悬浮聚合反应过程进行了研究,用红外和热重分析对树脂的分子结构和热稳定性进行了表征。结果表明:以TX-10磷酸酯为分散剂,TX-10磷酸酯质量分数5.88%,N-羟甲基丙烯酰胺质量分数为3.6%时,反应过程稳定,树脂具有较大吸液率。反相悬浮聚合体系反应过程是由油包水到油水连续相互相贯穿,最后到水凝胶和油相共存的状态。红外光谱显示树脂中存在大量亲水基团,热分析知其热分解温度约420℃,热稳定性良好。

【Abstract】 Super absorbent poly(potassium acrylate-acrylamide-N-hydroxymethyl acrylamide)was synthesized by(inversed) suspension polymerization.The effects of factors that influence the polymerization process and the water-absorption capability of product,such as kind and dosage of dispersing(agents),ratio between the monomers in the co-polymerization process et al were studied.The inversed suspension co-polymerization process was studied by electroconductivity data(analysis) and microscope observation,and the molecular structure,thermal stability of the product were characterized by FTIR and TG respectively.The experiment results showed that under the conditions that using TX-10 phosphate as dispersing(agent) with a dosage of 5.88(w/%)and the ratio of N-hydroxymethyl acrylamide of 3.6(w/%),the polymerization(process) is in a stable state.The system changes from a state of W/O phase to a state of both continuous water and oil phases with(mutual) penetration,and finally to a state of water gel co-existing with oil phase.FTIR data showed that the polymer has a big amount of hydrophilic groups and the product has a big liquid absorption capability.TG data showed that the product has good thermal stability.Its thermal decomposition temperature is about 420 ℃.

【基金】 河北省自然科学基金资助项目(200244)
  • 【文献出处】 日用化学工业 ,China Surfactant Detergent & Cosmetics , 编辑部邮箱 ,2007年01期
  • 【分类号】TQ324.8
  • 【被引频次】18
  • 【下载频次】503
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